s:11:\"srcLanguage\";i:0;}s:30:\"products.belprep_vac.intro.txt\";a:4:{s:4:\"text\";s:551:\"BELPREP VAC is a vacuum degasser with flow degassing option. The instrument is optimized for the heating pretreatment of samples for subsequent surface area and pore size analysis in vacuum or inert gas flow.

Sample preparation for gas sorption with this vacuum degasser is particularly efficient and fast, because it can be conducted at the same time as the measurement itself.

The BELPREP VAC vacuum degasser is available in two models:
BELPREP VAC II with 3 sample ports and BELPREP VAC III with 6 sample ports. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:42:\"products.belpycno-l.applications-intro.txt\";a:4:{s:4:\"text\";s:102:\"The gas pycnometer BELPYCNO L is suitable for the density measurement of a wide range of applications:\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:35:\"products.belpycno-l.applications.hl\";a:4:{s:4:\"text\";s:55:\"Accurate Density Determination for Various Applications\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:36:\"products.belpycno-l.applications.txt\";a:4:{s:4:\"text\";s:779:\"The BELPYCNO L gas pycnometer is equipped with up to 3 reference chamber volumes (20, 40 and 60 cm3) in order to give the best performance in combination with the chosen sample chamber (4, 20, 40, 60, 112 and 150 cm3). Independent of ambient temperature and pressure variations, the pycnometer allows density measurements which are not limited by time consuming calibration procedures.

Once calibrated the gas pycnometer carries out the analysis without any concerns. No contamination risks due to gas loading from reference chamber (high pressure) into sample chamber (low pressure), supported by programmable discharge restriction and easy use of paper filters. Variable loading pressure permits the analysis of foams and compressible samples.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:30:\"products.belpycno-l.benefits.4\";a:4:{s:4:\"text\";s:48:\"Built-in linearized absolute pressure transducer\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:30:\"products.belpycno-l.benefits.5\";a:4:{s:4:\"text\";s:68:\"Sample cell and reference volumes are separated from the electronics\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:30:\"products.belpycno-l.benefits.6\";a:4:{s:4:\"text\";s:53:\"Built-in accurate ATC (Automatic Temperature Control)\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:30:\"products.belpycno-l.benefits.7\";a:4:{s:4:\"text\";s:52:\"Short measurement time and fast system stabilization\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:30:\"products.belpycno-l.benefits.8\";a:4:{s:4:\"text\";s:37:\"Unrivalled reproducibility of results\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:43:\"products.belpycno-l.density_measurement.txt\";a:4:{s:4:\"text\";s:999:\"BELPYCNO L is a fully automated gas pycnometer for the determination of volume and skeleton density of powders, granulates, porous materials, mixtures, pastes and liquids. The combination of an internal temperature control and an absolute pressure transducer compensates any influences from ambient temperature and pressure fluctuations.

The gas pycnometer replaces the classical method of liquid displacement, utilizing a probing gas such as Helium which can reach even the smallest pores with less than one nanometer in diameter. Thus, the density of powders and porous materials can be determined exactly.

The gas pycnometer works as a standalone instrument or by connecting it to a computer. The included software is easy to use and offers full control and a wide array of functions, from programming the computer to the report and storage of analytical data and results. Additonally, the computed volume and density are displayed in-situ for each measurement step.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:37:\"products.belpycno-l.overview_features\";a:4:{s:4:\"text\";s:144:\"The BELPYCNO L allows the accurate measurement of the skeleton density of solids and powders, as well as the true density of pastes and liquids.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:27:\"products.belpycno.benefits1\";a:4:{s:4:\"text\";s:80:\"Highly precise measurement of the sample volumes thanks to variable cell volumes\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:27:\"products.belpycno.benefits2\";a:4:{s:4:\"text\";s:30:\"Sample cell cap without grease\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:27:\"products.belpycno.benefits3\";a:4:{s:4:\"text\";s:46:\"Convenient one-hand operation via touch screen\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:23:\"products.belpycno.intro\";a:4:{s:4:\"text\";s:361:\"The BELPYCNO is an analyzer for quick and reliable measurement of the true density of solid materials and powders using gas displacement.

The BELPYCNO offers high-resolution pressure measurement, variable cell volumes, greaseless, and one-touch sample cell cap. These features ensure high accuracy of the measurement result and easy operation.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:26:\"products.belpycno.options1\";a:4:{s:4:\"text\";s:31:\"Label printer for result output\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:26:\"products.belpycno.options2\";a:4:{s:4:\"text\";s:49:\"Sample weight acquisition from electronic balance\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:26:\"products.belpycno.options3\";a:4:{s:4:\"text\";s:58:\"Thermostatic water bath to maintain the sample temperature\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:35:\"products.belpycno.overview_features\";a:4:{s:4:\"text\";s:87:\"The BELPYCNO offers quick & reliable true density measurements via gas displacement\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:21:\"products.belrea.intro\";a:4:{s:4:\"text\";s:312:\"In the catalyst research field, of course, the performance of catalyst is important. Also, the research of reaction conditions is very important. The BELREA is a compact fixed-bed flow reactor. The reaction can be observed for a variety conditions. According to user\'s requirement, this system can be customized.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:55:\"products.belsorp-max-g.accessoires.consumable_goods.txt\";a:4:{s:4:\"text\";s:257:\"Our standard consumables consist of sample cells, filler rods, filters, O-rings, caps and weighing platforms that are required for adsorption measurements. NSD capsules, a variety of sample cells, quick seals, and much more are part of the consumable goods.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.belsorp-max-g.benefits.1\";a:4:{s:4:\"text\";s:134:\"Porosity analysis from micropore to mesopore and macropore by gas adsorption measurement of N2, Ar, CO2 and more\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.belsorp-max-g.benefits.2\";a:4:{s:4:\"text\";s:49:\"Low total surface area analysis with Kr at 77.4 K\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.belsorp-max-g.benefits.3\";a:4:{s:4:\"text\";s:168:\"High-quality, reproducible BET specific surface area (SSA) and pore size distribution (PSD) evaluation from an adsorption isotherm, starting from extremely low pressure\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.belsorp-max-g.benefits.4\";a:4:{s:4:\"text\";s:86:\"Gas and NET adsorption measurement via AFSMTM2, without the need for He gas\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.belsorp-max-g.benefits.5\";a:4:{s:4:\"text\";s:61:\"PSD analysis via GCMC & NLDFT with the BELMASTER software\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.belsorp-max-g.benefits.6\";a:4:{s:4:\"text\";s:81:\"Gas Dosing Optimization (GDO) dramatically boosts efficiency for data acquisition\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.belsorp-max-g.benefits.7\";a:4:{s:4:\"text\";s:54:\"IoT: Process monitoring via e-mail notification system\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:34:\"products.belsorp-max-g.benefits.hl\";a:4:{s:4:\"text\";s:53:\"Fast and Precise Characterization of Porous Materials\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:34:\"products.belsorp-max-g.intro.txt.1\";a:4:{s:4:\"text\";s:1215:\"The BELSORP MAX G is a powerful, compact, and economical model in Microtrac\'s BELSORP MAX series of BET specific surface area and pore size analyzers. It allows the measurement of gas adsorption isotherms starting from extremely low pressures for the evaluation of micro-, meso- and macroporous materials, as well as non-porous materials.

The analyzer is equipped with one measurement port, one dedicated port for saturated vapor pressure measurement, and one port for free space (dead volume) analysis. Each port is equipped with a dedicated pressure sensor for high-precision analyses.

The BELSORP MAX G surface area & pore size distribution analyzer is capable of analyzing a wide range of materials, including pellets, molded bodies, substrates, and finely dispersed samples thanks to specially designed sample tubes.

The unit also supports a wide range of adsorbates and measurement conditions. The instrument is available in two different versions, making it suitable for a wide range of applications: BELSORP MAX G LP (Low Pressure) and BELSORP MAX G MP (Medium Pressure). Either version is equipped with a specific pressure transducer to best suit your needs.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:34:\"products.belsorp-max-g.intro.txt.2\";a:4:{s:4:\"text\";s:249:\"Both BELSORP MAX G LP (Low Pressure) and BELSORP MAX G MP (Medium Pressure) are equipped with a turbomolecular pump (TMP), allowing pore size analysis from extremely low relative pressure. The individual configuration for these models is as follows:\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:43:\"products.belsorp-max-g.intro.txt.supplement\";a:4:{s:4:\"text\";s:74:\"Quick, Easy Characterization of Powder Materials with the Highest Accuracy\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:35:\"products.belsorp-max-g.key.afsm.txt\";a:4:{s:4:\"text\";s:1260:\"Innovative Free Space Measurement for Highest Accuracy (AFSMTM)

Strictly controlling the level of liquid coolants (e.g. liquid nitrogen or argon) is no longer required with the BELSORP MAX G. Instead, we have implemented our groundbreaking, continuous free space measurement method: the patented Advanced Free Space Measurement (AFSMTM). This method achieves the highest level of reproducibility by using a reference cell to follow the second-to-second changes of free space. First, the instrument determines the free space of the sample cell and reference cell. Then, as the analysis proceeds any changes to the system that might alter the measured Free Space are concurrent in both cells. Therefore, alterations in the measured free space can be continuously accounted for through the reference cell.

Examples of causes for free space fluctuations include: With this superior technique, environmental factors can be taken into account that were not considered before. For more information, please visit our knowledge base.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:36:\"products.belsorp-max-g.key.afsm2.txt\";a:4:{s:4:\"text\";s:605:\"Helium-Free Measurements (AFSMTM2)

By measuring the free space of a ‘blank’ sample tube in advance, measurements can be achieved without the need for helium gas. Using the same sample tube, in the same analysis conditions, the free space can be easily calculated using your sample’s mass and density. This method also reduces sample analysis time by cutting out the free space determination at the beginning of every sample measurement. With AFSMTM2, there is no need to match the liquid level of the coolant between the blank measurement and sample analysis.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:38:\"products.belsorp-max-g.key.compact.txt\";a:4:{s:4:\"text\";s:155:\"Compact & Lightweight

By optimizing the component materials, we have managed to provide a unit with a small footprint and low weight.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:44:\"products.belsorp-max-g.key.data-analysis.txt\";a:4:{s:4:\"text\";s:434:\"Data Analysis

Our BELMASTER analysis software is provided with the BELSORP MAX G, and enables the user to perform a wide variety of data analysis, including evaluating specific surface areas using the Langmuir or BET method, evaluating pore volumes by applying the t-plot method, conducting mesopore analyses with the DH or BJH method, micropore analyses via HK or SF method, or GCMC / NLDFT analyses, and much more.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:42:\"products.belsorp-max-g.key.ease-of-use.txt\";a:4:{s:4:\"text\";s:580:\"Ease of use – Simple Setting of Measurement Conditions

The BELSORP MAX G has a fully automated system that enables the user to easily setup measurement conditions through ‘Simple Mode’. This mode makes sample analysis a breeze by only requiring minimal user entry (e.g., sample information, pretreatment conditions and measurement range). This is particularly useful for unknown materials and for the application of standard operation procedures. Detailed measurement configurations can be set by experienced users by selecting the ‘Professional Mode’.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:34:\"products.belsorp-max-g.key.gdo.txt\";a:4:{s:4:\"text\";s:224:\"Gas Dosing Optimization (GDO)

The Gas Dosing Optimization (GDO) function calculates the optimal gas dosing amount from previous measurement results. This function can reduce measurement times significantly.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:43:\"products.belsorp-max-g.key.low-pressure.txt\";a:4:{s:4:\"text\";s:404:\"Ultra-Low Pressure Measurement

The BELSORP MAX G allows for high-accuracy measurement of adsorption isotherms in a wide range, starting from the ultra-low pressure region (P/P0 = 10-8, N2 @ 77 K) to atmospheric pressure. The BET surface area and pore size distribution analyzer includes a turbo molecular vacuum pump and low-voltage pressure transducer.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:43:\"products.belsorp-max-g.key.pretreatment.txt\";a:4:{s:4:\"text\";s:906:\"In-Situ Pretreatment (Optional)

For an accurate adsorption measurement, a pretreatment of the samples is required. The pretreatment process (also called activation process) is usually performed by applying vacuum under heat, which removes adsorbed gas and / or water molecules from the surface of the material without affecting the sample structure (avoiding denaturation).

Microtrac offers two options for sample pretreatment. First, it can be performed externally using our BELPREP equipment, which is usually preferred to increase sample throughput. Alternatively, the activation process can be performed directly at the measurement port of the BELSORP MAX G using a heater (see accessories list). This way, a transfer from the external pretreatment device to the measuring port can be avoided, which is an important option for sensitive samples (e.g. hydrophilic material).\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:35:\"products.belsorp-max-g.table_port.1\";a:4:{s:4:\"text\";s:6:\"Port 1\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:35:\"products.belsorp-max-g.table_port.2\";a:4:{s:4:\"text\";s:6:\"Port 2\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:42:\"products.belsorp-max-g.table_pressure-port\";a:4:{s:4:\"text\";s:30:\"Saturation vapor pressure port\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:39:\"products.belsorp-max-g.table_turbo-pump\";a:4:{s:4:\"text\";s:19:\"Turbomolecular pump\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:37:\"products.belsorp-max-g.table_values.1\";a:4:{s:4:\"text\";s:31:\"1,000 Torr, +10 Torr, +0.1 Torr\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:37:\"products.belsorp-max-g.table_values.2\";a:4:{s:4:\"text\";s:29:\"1,000 Torr, +10 Torr, +1 Torr\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:37:\"products.belsorp-max-g.table_values.3\";a:4:{s:4:\"text\";s:10:\"1,000 Torr\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:37:\"products.belsorp-max-g.table_values.4\";a:4:{s:4:\"text\";s:10:\"1,000 Torr\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:32:\"products.belsorp-max-g.table_yes\";a:4:{s:4:\"text\";s:3:\"yes\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:51:\"products.belsorp-max-II.accessoires.safety-cover.hl\";a:4:{s:4:\"text\";s:39:\"Further Other Options & Accessories\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:52:\"products.belsorp-max-II.accessoires.safety-cover.txt\";a:4:{s:4:\"text\";s:269:\"Among the safety cover (incl. automatic lock function), a fast evacuation line (for evacuation time/vacuum degree optimization), chemisorption option, BELCRYO (for accurate temperature control from 50K) and more are available. Detailed information available on request.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:34:\"products.belsorp-max-II.benefits.1\";a:4:{s:4:\"text\";s:88:\"Highly reproducible measurements of BET specific surface area and pore size distribution\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:35:\"products.belsorp-max-II.benefits.10\";a:4:{s:4:\"text\";s:87:\"Measures various material morphologies such as molded bodies, pellets, and fine powders\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:34:\"products.belsorp-max-II.benefits.2\";a:4:{s:4:\"text\";s:64:\"High throughput with simultaneous measurement of up to 4 samples\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:34:\"products.belsorp-max-II.benefits.3\";a:4:{s:4:\"text\";s:101:\"Patented AFSMTM free space correction guarantees best-in-class measurement reproducibility\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:34:\"products.belsorp-max-II.benefits.4\";a:4:{s:4:\"text\";s:81:\"Evaluation of materials with low specific surface areas by Kr adsorption at 77.4K\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:34:\"products.belsorp-max-II.benefits.5\";a:4:{s:4:\"text\";s:51:\"Evaluation of hydrophilic and hydrophobic materials\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:34:\"products.belsorp-max-II.benefits.6\";a:4:{s:4:\"text\";s:56:\"Adsorption rate measurement for various gases and vapors\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:34:\"products.belsorp-max-II.benefits.7\";a:4:{s:4:\"text\";s:71:\"Supports cyclic stability investigations through measurement scheduling\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:34:\"products.belsorp-max-II.benefits.8\";a:4:{s:4:\"text\";s:20:\"Chemisorption option\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:34:\"products.belsorp-max-II.benefits.9\";a:4:{s:4:\"text\";s:54:\"IoT: Process monitoring via e-mail notification system\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:35:\"products.belsorp-max-II.benefits.hl\";a:4:{s:4:\"text\";s:38:\"Superior Class of High-End Instruments\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:34:\"products.belsorp-max-II.features.1\";a:4:{s:4:\"text\";s:83:\"Highly reproducible BET specific surface area and pore size distribution evaluation\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:35:\"products.belsorp-max-II.features.10\";a:4:{s:4:\"text\";s:110:\"Specific surface area range: 0.01 m2/g or more (N2); 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The instrument is used for comprehensive characterization of surfaces including BET surface area and micropore analysis by measuring adsorption isotherms from extremely low pressures. Organic vapor sorption hydrophilicity / hydrophobicity characterization through water vapor adsorption, and chemisorption measurements are also supported.

Proprietary technology is used to carefully control temperature within the BELSORP MAX II, from the heated manifold block (50°C, opt. 80 °C) and air bath to the sample, while electropolished gas / vapor lines prevent surface wetting and corrosion. Pneumatic valves and VCR metal gaskets minimize leakage or outgassing under high vacuum, and up to four ports are available for high-throughput measurements that can be further accelerated using our proprietary Gas & Vapor Dosing Optimization (GDO) algorithm.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:44:\"products.belsorp-max-II.intro.txt.supplement\";a:4:{s:4:\"text\";s:105:\"From Beginner to Professional: Simple, Flexible, and Highly Accurate Characterization of Porous Materials\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:36:\"products.belsorp-max-II.key.afsm.txt\";a:4:{s:4:\"text\";s:750:\"Innovative Free Space Measurement for Highest Accuracy (AFSMTM)

Instead of trying to approximately control the liquid coolant level, our groundbreaking method of continuously monitoring fluctuations within the free space in a reference cell – Advanced Free Space Measurement, AFSMTM – has been shown to result in superior measurement precision compared with systems that rely on mechanical control of coolant level. This method accurately compensates for fluctuations within the free space caused by environmental factors such as: \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:48:\"products.belsorp-max-II.key.auto-measurement.txt\";a:4:{s:4:\"text\";s:301:\"Fully Automated Measurement (Optional)

Using our custom heaters enables the entire measurement process from pretreatment to adsorption / desorption isotherm measurement to be performed completely automatically, without having to remove or exchange heaters or Dewar vessels.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:45:\"products.belsorp-max-II.key.chemisorption.txt\";a:4:{s:4:\"text\";s:286:\"Chemisorption Measurements (Optional)

Static chemisorption measurements can be performed to, amongst other things, evaluate the activity of metal supported catalysts by metal dispersion analysis. This option includes an additional port for flow-pretreatment.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:45:\"products.belsorp-max-II.key.data-analysis.txt\";a:4:{s:4:\"text\";s:598:\"Data Analysis

The BELMASTER analysis software offers an intuitive and powerful interface for basic and advanced analysis operations, ranging from the simple display of adsorption / desorption isotherms and the evaluation of specific surface areas using the BET method to more complex evaluations of pore volumes by application of t-plots or αS methods. Several methods for mesopore or micropore analysis, and GCMC / NLDFT analysis for pore size distribution evaluation from micro to meso / macro pores are among the methods supported in the BELMASTER analysis software.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:35:\"products.belsorp-max-II.key.gdo.txt\";a:4:{s:4:\"text\";s:234:\"Gas Dosing Optimization (GDO)

The Gas Dosing Optimization (GDO) function automatically calculates the optimal gas dosing amount based on previous measurements, thus significantly reducing measurement times.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:44:\"products.belsorp-max-II.key.low-pressure.txt\";a:4:{s:4:\"text\";s:473:\"Extremely Low-Pressure Measurement

The BELSORP MAX II is equipped with a turbomolecular pump and 13.3 Pa (0.1 torr) low-pressure transducers to measure adsorption / desorption isotherms from extremely low relative pressures of p/p0≈10-9 to atmospheric pressure or ~9 bar (HP configuration only). High-quality pressure transducers are used for superior pressure resolution, measurement accuracy and precision compared to competing instruments.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:48:\"products.belsorp-max-II.key.multiple-samples.txt\";a:4:{s:4:\"text\";s:365:\"Simultaneous Measurement of Multiple Samples

Up to three samples can be analyzed simultaneously in high-precision mode, and up to four samples can be characterized simultaneously in standard mode or vapor adsorption measurement mode, making the BELSORP MAX II the instrument of choice for highly accurate measurements at high throughput.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:44:\"products.belsorp-max-II.key.pretreatment.txt\";a:4:{s:4:\"text\";s:595:\"Pretreatment of Samples at Measurement Port (Optional)

Samples are usually pretreated (activated) by heating up to an appropriate temperature under vacuum to remove adsorbed gas and / or water molecules from the surface of the material, without affecting the sample structure. This pretreatment can either be performed externally (e.g. using the BELPREP VAC II or VAC III pretreatment stations, preferred for high throughput) or in situ in the measurement port of the BELSORP MAX II using a heater (an optional accessory, preferred for highly sensitive or hydrophilic samples).\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:48:\"products.belsorp-max-II.key.sample-stability.txt\";a:4:{s:4:\"text\";s:236:\"Investigation on Sample Stability by Cycling Process / Measurement Schedules

Measurement schedules allow users to analyze the cycle stability of adsorbent materials without time-consuming manual intervention.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:43:\"products.belsorp-max-II.key.simple-mode.txt\";a:4:{s:4:\"text\";s:622:\"Ease of Use via Simple Mode

In Simple Mode, the user enters a minimal set of measurement conditions (sample information, pre-treatment conditions, and measurement range), which is particularly useful for unknown materials. Additionally, Simple Mode offers the Gas Dosing Optimization (GDO) function to determine optimal gas dosing amounts based on previous measurement results. This enables even inexperienced users to obtain optimal measurement results. Detailed measurement configurations can be set by experienced users in Professional Mode (e.g. gas dosing amounts, equilibrium conditions).\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:43:\"products.belsorp-max-II.key.vacuum-line.txt\";a:4:{s:4:\"text\";s:284:\"Fast Vacuum Line (Optional)

Installing a dedicated vacuum exhaust line enhances the attainable vacuum level in the sample section and enables measurement from extremely low relative pressures. It also shortens the time to reach the target degree of vacuum.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:48:\"products.belsorp-max-II.key.vapor-adsorption.txt\";a:4:{s:4:\"text\";s:398:\"Vapor Adsorption Measurement

Adsorption measurements of vapors, such as water and alcohol, are supported in the standard configuration. The system is fully temperature-controlled from liquid bottle to sample cell (water bath, air bath, and heated manifold block) to ensure measurement accuracy, and is equipped with electropolished lines to prevent condensation effects.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:47:\"products.belsorp-max-II.low-surface-krypton.txt\";a:4:{s:4:\"text\";s:401:\"The characterization of low specific surface area materials such as non-porous metallic materials, glass substrates, and films can be difficult or impossible with traditional gases like nitrogen (77 K) and argon (77 K or 87 K) due to detection limits. Instead, krypton gas adsorption can be used at liquid nitrogen temperature to determine the BET specific surface area down to 0.0005 m2/g.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:58:\"products.belsorp-max-II.low-surface-krypton.txt.supplement\";a:4:{s:4:\"text\";s:121:\"More information in application note #6: Evaluation of Low Specific Surface Area by Krypton Sorption Measurements at 77K.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.belsorp-max-II.models.hl\";a:4:{s:4:\"text\";s:43:\"Special Models of the BELSORP MAX II Series\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:36:\"products.belsorp-max-II.models_hp.hl\";a:4:{s:4:\"text\";s:17:\"BELSORP MAX II HP\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:37:\"products.belsorp-max-II.models_hp.txt\";a:4:{s:4:\"text\";s:865:\"The BELSORP MAX II HP has been added to the BELSORP MAX II product line as to enable measurements of gas adsorption, BET surface area, pore size distribution, vapor adsorption, and the evaluation of adsorption rates at high pressure. The instrument is used in applications such as: \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:36:\"products.belsorp-max-II.models_hv.hl\";a:4:{s:4:\"text\";s:17:\"BELSORP MAX II HV\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:37:\"products.belsorp-max-II.models_hv.txt\";a:4:{s:4:\"text\";s:714:\"The BELSORP MAX II HV is a special model to measure various types of vapor adsorption (water vapor, VOCs, and more) at higher temperatures than the standard configuration. The manifold block can be heated up to 80°C, enabling measurements under a wider range of conditions. The instrument is used in applications such as: \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:37:\"products.belsorp-max-II.models_xrd.hl\";a:4:{s:4:\"text\";s:20:\"BELSORP MAX II + XRD\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:38:\"products.belsorp-max-II.models_xrd.txt\";a:4:{s:4:\"text\";s:700:\"Some adsorbents such as porous coordination polymers (PCP / MOF) change their structure during the adsorption process. Such phenomena are encountered in applications such as gas storage, gas separation, and gas purification. This system integrated a BELSORP MAX II with a powder X-ray diffractometer to measure structural changes in the adsorbent as a function of the adsorbate loading, thus allowing more detailed studies of adsorption mechanisms. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:40:\"products.belsorp-max-II.vapor-results.hl\";a:4:{s:4:\"text\";s:36:\"Vapor Adsorption Measurement Results\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:47:\"products.belsorp-max-x-launch-campaign.button.1\";a:4:{s:4:\"text\";s:45:\"Webinar February 7th, 09:00 AM CET\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:47:\"products.belsorp-max-x-launch-campaign.button.2\";a:4:{s:4:\"text\";s:45:\"Webinar February 7th, 04:00 PM CET\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:46:\"products.belsorp-max-x-launch-campaign.hero.hl\";a:4:{s:4:\"text\";s:34:\"MaxXimize Your Sorption Experience\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:48:\"products.belsorp-max-x-launch-campaign.intro.txt\";a:4:{s:4:\"text\";s:480:\"Does this sound familiar to you? You want to perform high-quality analyses, but the number of samples never seems to go down. Simply setting up another instrument would not only be expensive, but often there is not enough space available. In addition, the costs for hardware, software, and maintenance increase with each new instrument you install in your laboratory. How would you like to increase your throughput with a single, flexible instrument?

The BELSORP MAX X.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:40:\"products.belsorp-max-x.accessories.txt.1\";a:4:{s:4:\"text\";s:320:\"Standard Accessories
The BELSORP MAX X is delivered with a wide range of standard accessories like Dewar vessel, thermal insulation cover / sleeve, P0 tube, sample cells, glass rods, sample funnel, sample cell holders, sample scattering prevention filter, reference sample, O-rings and more./p>\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:40:\"products.belsorp-max-x.accessories.txt.2\";a:4:{s:4:\"text\";s:270:\"Extensive Product Line-up
Various models are available for a variety of gas and vapor adsorption measurements. 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For inexperienced users or for measurements of unknown samples, BELCONTROL only requires basic sample information (name, mass, etc.), pre-treatment conditions (if not performed externally) and the measurement range.

Detailed control of the configuration and measurement settings is possible to optimize the measurement conditions (e.g. dosing settings, equilibrium criteria, leak test option, etc.). 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Combining high-precision pressure transducers (133.3 kPa, 1.333 kPa, and 0.0133 kPa) with hard-sealing pneumatic valves and metal gaskets, the analyzer has superior technology to minimize gas leakage and enable ultimate vacuum levels. Temperature in the BELSORP MAX X is carefully controlled using state-of-the-art technology, from the heated manifold block (50 °C, optional 80 °C) and air bath to the sample, while electropolished gas / vapor lines prevent surface wetting and corrosion.

Additionally, the new BELCONTROL operation software facilitates understanding of the structure and durability of materials through cyclical stability analysis, improves measurement and maintenance efficiency, and sends measurement results via e-mail – all resulting in maxXimized sample throughput. BELMASTER is the dedicated analysis software for advanced material evaluations. This instrument complies with ISO 9277, 15901-2 and 18852 and can be used for various material morphologies, such as molded bodies, pellets, and fine powders.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:43:\"products.belsorp-max-x.intro.txt.supplement\";a:4:{s:4:\"text\";s:114:\"A lot of Science in a little space: BELSORP MAX X. High-End Adsorption. Smallest Footprint. 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With dedicated accessories, a wide temperature range can be maintained during analysis or pre-treatment.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:36:\"products.belsorp-max-x.throughput.hl\";a:4:{s:4:\"text\";s:25:\"MaxXimize Your Throughput\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:47:\"products.belsorp-max-x.throughput.hl.supplement\";a:4:{s:4:\"text\";s:43:\"Simultaneous Measurement of up to 4 Samples\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:37:\"products.belsorp-max-x.throughput.txt\";a:4:{s:4:\"text\";s:540:\"BELSORP MAX X offers four independent ports and one dedicated port for saturated vapor pressure measurement. Up to three ports are equippable with a unique set of pressure transducers (0.0133 kPa, 1.33 kPa, 133.3 kPa) for better micropore analyses, allowing fully independent and simultaneous measurements over a wide range. 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Lab Space!\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:51:\"products.belsorp-max-x_launch-campaign.teaser_1.txt\";a:4:{s:4:\"text\";s:84:\"Would you like to save lab space without compromising on performance and efficiency?\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:50:\"products.belsorp-max-x_launch-campaign.teaser_2.hl\";a:4:{s:4:\"text\";s:31:\"MaxXimize Your
Throughput!\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:51:\"products.belsorp-max-x_launch-campaign.teaser_2.txt\";a:4:{s:4:\"text\";s:68:\"Would you like to increase the efficiency of your sorption analyses?\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:50:\"products.belsorp-max-x_launch-campaign.teaser_3.hl\";a:4:{s:4:\"text\";s:32:\"MaxXimize Your
Flexibility!\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:51:\"products.belsorp-max-x_launch-campaign.teaser_3.txt\";a:4:{s:4:\"text\";s:60:\"Are you ready for a fully customizable, upgradable analyzer?\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:50:\"products.belsorp-max-x_launch-campaign.teaser_4.hl\";a:4:{s:4:\"text\";s:32:\"We reveal the new BELSORP MAX X!\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:51:\"products.belsorp-max-x_launch-campaign.teaser_4.txt\";a:4:{s:4:\"text\";s:71:\"High-End Adsorption.
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Unrivaled Performance.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.belsorp-max.features.1\";a:4:{s:4:\"text\";s:45:\"Highly reproducible BET specific surface area\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:32:\"products.belsorp-max.features.10\";a:4:{s:4:\"text\";s:102:\"Supports a wide range of adsorbates and measurement conditions: Vapor adsorption, chemisorption option\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:32:\"products.belsorp-max.features.11\";a:4:{s:4:\"text\";s:33:\"3 measurement ports are available\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:32:\"products.belsorp-max.features.12\";a:4:{s:4:\"text\";s:29:\"Dynamic gas flow pretreatment\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.belsorp-max.features.2\";a:4:{s:4:\"text\";s:49:\"Pore size distribution evaluation from micropores\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.belsorp-max.features.3\";a:4:{s:4:\"text\";s:64:\"High throughput with simultaneous measurement of up to 3 samples\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.belsorp-max.features.4\";a:4:{s:4:\"text\";s:51:\"Advanced Free Space Measurement (AFSMTM)\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.belsorp-max.features.5\";a:4:{s:4:\"text\";s:63:\"Low specific surface area evaluation by Kr adsorption at 77.4 K\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.belsorp-max.features.6\";a:4:{s:4:\"text\";s:20:\"Chemisorption option\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.belsorp-max.features.7\";a:4:{s:4:\"text\";s:50:\"Evaluation of hydrophilic and hydrophobic material\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.belsorp-max.features.8\";a:4:{s:4:\"text\";s:110:\"Specific surface area range: 0.01 m2/g or more (N2); 0.0005 m2/g or more (Kr)\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.belsorp-max.features.9\";a:4:{s:4:\"text\";s:79:\"Pore size distribution range: 0.35 ~ 500 nm (N2, Ar, CO2)\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:30:\"products.belsorp-max.intro.txt\";a:4:{s:4:\"text\";s:1687:\"Microtrac’s BELSORP MAX is a high accuracy gas / vapor adsorption instrument capable of measuring up to three samples simultaneously over the entire relative pressure range. Our proprietary design, which minimizes permeation and leakage, combined with a set of pressure transducers - including a 13.3 Pa transducer - enables measurements of adsorption isotherms from extremely low to high relative pressures. Thanks to the high measurement accuracy based on the patented AFSMTM method, specific surface area (BET) & pore size distributions are evaluated with high reproducibility.

In addition, surface characterization by vapor sorption and chemisorption is possible. The instrument also offers dynamic gas flow pretreatment for oxidation and hydrogen reduction treatment. Moreover, it is possible to analyze the rate of adsorption. Different models are available with measurement ports that can be individually equipped with various pressure transducers. The BELSORP MAX uses our legacy software, which features a classic user interface. The main window shows the flow chart, real-time adsorption isotherm, and trend graph, giving a clear overview of measurement procedure. The software offers an Easy Mode to automatically set the measurement conditions according to the sample features, eliminating the need for detailed condition settings. Additionally, a Detailed Mode is available for experienced users, offering various configuration possibilities, e.g. dosing settings, equilibrium criteria, leakcheck option, and much more. Further, the System Check enables an easy functionality check of the instrument for the support of any service matters.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:29:\"products.belsorp-max.main.txt\";a:4:{s:4:\"text\";s:3013:\"Lorem ipsum dolor sit amet, consectetuer adipiscing elit. Aenean commodo ligula eget dolor. Aenean massa. Cum sociis natoque penatibus et magnis dis parturient montes, nascetur ridiculus mus. Donec quam felis, ultricies nec, pellentesque eu, pretium quis, sem. Nulla consequat massa quis enim. Donec pede justo, fringilla vel, aliquet nec, vulputate eget, arcu. In enim justo, rhoncus ut, imperdiet a, venenatis vitae, justo. Nullam dictum felis eu pede mollis pretium. Integer tincidunt. Cras dapibus. Vivamus elementum semper nisi. Aenean vulputate eleifend tellus. Aenean leo ligula, porttitor eu, consequat vitae, eleifend ac, enim. Aliquam lorem ante, dapibus in, viverra quis, feugiat a, tellus.

Phasellus viverra nulla ut metus varius laoreet. Quisque rutrum. Aenean imperdiet. Etiam ultricies nisi vel augue. Curabitur ullamcorper ultricies nisi. Nam eget dui. Etiam rhoncus. Maecenas tempus, tellus eget condimentum rhoncus, sem quam semper libero, sit amet adipiscing sem neque sed ipsum. Nam quam nunc, blandit vel, luctus pulvinar, hendrerit id, lorem. Maecenas nec odio et ante tincidunt tempus. Donec vitae sapien ut libero venenatis faucibus. Nullam quis ante. Etiam sit amet orci eget eros faucibus tincidunt. Duis leo. Sed fringilla mauris sit amet nibh. Donec sodales sagittis magna. Sed consequat, leo eget bibendum sodales, augue velit cursus nunc, quis gravida magna mi a libero. Fusce vulputate eleifend sapien. Vestibulum purus quam, scelerisque ut, mollis sed, nonummy id, metus. Nullam accumsan lorem in dui. Cras ultricies mi eu turpis hendrerit fringilla.

Vestibulum ante ipsum primis in faucibus orci luctus et ultrices posuere cubilia Curae; In ac dui quis mi consectetuer lacinia. Nam pretium turpis et arcu. Duis arcu tortor, suscipit eget, imperdiet nec, imperdiet iaculis, ipsum. Sed aliquam ultrices mauris. Integer ante arcu, accumsan a, consectetuer eget, posuere ut, mauris. Praesent adipiscing. Phasellus ullamcorper ipsum rutrum nunc. Nunc nonummy metus. Vestibulum volutpat pretium libero. Cras id dui. Aenean ut eros et nisl sagittis vestibulum. Nullam nulla eros, ultricies sit amet, nonummy id, imperdiet feugiat, pede. Sed lectus. Donec mollis hendrerit risus. Phasellus nec sem in justo pellentesque facilisis. Etiam imperdiet imperdiet orci. Nunc nec neque. Phasellus leo dolor, tempus non, auctor et, hendrerit quis, nisi. Curabitur ligula sapien, tincidunt non, euismod vitae, posuere imperdiet, leo. Maecenas malesuada.

Praesent congue erat at massa. Sed cursus turpis vitae tortor. Donec posuere vulputate arcu. Phasellus accumsan cursus velit. Vestibulum ante ipsum primis in faucibus orci luctus et ultrices posuere cubilia Curae; Sed aliquam, nisi quis porttitor congue, elit erat euismod orci, ac placerat dolor lectus quis orci. Phasellus consectetuer vestibulum elit. Aenean tellus metus, bibendum sed, posuere ac, mattis non, nunc. Vestibulum fringilla pede sit amet augue. In turpis. Pellentesque posuere. Praesent turpis.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:56:\"products.belsorp-mini-x.accessoires.consumable_goods.txt\";a:4:{s:4:\"text\";s:202:\"The standard consumables comprise sample cells, filler rods, filters, O-rings, caps and weighing platforms. Various sizes of sample cells, quick seals, and other optional consumables are also available.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:52:\"products.belsorp-mini-x.accessoires.gas-selector.txt\";a:4:{s:4:\"text\";s:108:\"The gas selector enables the connection of up to 4 adsorptives simultaneously (1 x Helium + 4 x adsorptive).\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:46:\"products.belsorp-mini-x.accessoires.heater.txt\";a:4:{s:4:\"text\";s:239:\"In-situ pretreatment of the sample from 50°C to 450°C. With this option, samples can be pretreated directly at the measurement port, without the need to transfer the sample cell before analysis. Particularly useful for sensitive samples.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:49:\"products.belsorp-mini-x.afsm.advantages.bullets.1\";a:4:{s:4:\"text\";s:50:\"LN2 level maintenance is less important\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:49:\"products.belsorp-mini-x.afsm.advantages.bullets.2\";a:4:{s:4:\"text\";s:64:\"Improves reproducibility both in surface area and in pore volume\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:49:\"products.belsorp-mini-x.afsm.advantages.bullets.3\";a:4:{s:4:\"text\";s:132:\"Enables adsorption isotherm of low surface area material without using krypton gas (down to 0.1 m2 in total surface area)\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:42:\"products.belsorp-mini-x.afsm.advantages.hl\";a:4:{s:4:\"text\";s:37:\"Advantages of Patented AFSM Technique\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.belsorp-mini-x.afsm.hl\";a:4:{s:4:\"text\";s:17:\"AFSMTM\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:42:\"products.belsorp-mini-x.afsm.hl.supplement\";a:4:{s:4:\"text\";s:40:\"Highest Accuracy at Lowest Surface Areas\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:45:\"products.belsorp-mini-x.afsm.table.c-constant\";a:4:{s:4:\"text\";s:10:\"C constant\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:42:\"products.belsorp-mini-x.afsm.table.caption\";a:4:{s:4:\"text\";s:41:\"*Correlation coefficient 0.9995 or higher\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:48:\"products.belsorp-mini-x.afsm.table.sample_amount\";a:4:{s:4:\"text\";s:17:\"Sample amount [g]\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:42:\"products.belsorp-mini-x.afsm.table.ssa_bet\";a:4:{s:4:\"text\";s:27:\"SSA BET [m2/g]*1\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:53:\"products.belsorp-mini-x.afsm.table.total_surface_area\";a:4:{s:4:\"text\";s:42:\"Total surface area in cell [m2]\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:32:\"products.belsorp-mini-x.afsm.txt\";a:4:{s:4:\"text\";s:928:\"The following measurements are conducted using our patented, Advanced Free Space Measurement (AFSMTM). This method allows for high reproducibility by using a reference cell to follow the changes in the free space volume. Our instrument measures the initial free space of the sample cell and reference cell. Since the change of the free space is equal in both cells (same environmental conditions), the change can be continuously followed by the pressure change of the reference cell.

In a product test, a certified reference material CRM-170 (nonporous alpha alumina; certified value of nitrogen BET specific surface area SSA: 1.05 ± 0.05 m2/g) is used to check the accuracy of measurement in low total surface area (TSA) measurements. Although the TSA is reduced from approx. 2 m2 to lower than 0.4 m2, the determined BET specific surface areas SSA stay almost identical.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:45:\"products.belsorp-mini-x.afsm2-steps_caption.1\";a:4:{s:4:\"text\";s:14:\"Sample exhaust\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:45:\"products.belsorp-mini-x.afsm2-steps_caption.2\";a:4:{s:4:\"text\";s:54:\"Free space (@room temperature) measurement with sample\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:45:\"products.belsorp-mini-x.afsm2-steps_caption.3\";a:4:{s:4:\"text\";s:14:\"Sample exhaust\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:45:\"products.belsorp-mini-x.afsm2-steps_caption.4\";a:4:{s:4:\"text\";s:51:\"Reference tube, p0 tube gas introduction\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:45:\"products.belsorp-mini-x.afsm2-steps_caption.5\";a:4:{s:4:\"text\";s:60:\"Free space (@adsorption temperature) measurement with sample\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:45:\"products.belsorp-mini-x.afsm2-steps_caption.6\";a:4:{s:4:\"text\";s:14:\"Sample exhaust\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:45:\"products.belsorp-mini-x.afsm2-steps_caption.7\";a:4:{s:4:\"text\";s:52:\"Adsorption measurement, free space change aquisition\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:45:\"products.belsorp-mini-x.afsm2-steps_caption.8\";a:4:{s:4:\"text\";s:14:\"Sample exhaust\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:45:\"products.belsorp-mini-x.afsm2-steps_caption.9\";a:4:{s:4:\"text\";s:5:\"Purge\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:52:\"products.belsorp-mini-x.afsm2-steps_caption.addendum\";a:4:{s:4:\"text\";s:73:\"AFSM2 (He-free method): Step 1 --> 4 --> 7 --> 8 --> 9\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:46:\"products.belsorp-mini-x.afsm2-steps_caption.hl\";a:4:{s:4:\"text\";s:22:\"AFSM (He-based method)\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:39:\"products.belsorp-mini-x.afsm2_caption.1\";a:4:{s:4:\"text\";s:71:\"Reference cell for measuring fluctuations within free space continously\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:39:\"products.belsorp-mini-x.afsm2_caption.2\";a:4:{s:4:\"text\";s:14:\"Reference cell\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:39:\"products.belsorp-mini-x.afsm2_caption.3\";a:4:{s:4:\"text\";s:11:\"Sample cell\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:39:\"products.belsorp-mini-x.afsm2_caption.4\";a:4:{s:4:\"text\";s:14:\"Liquid level 1\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:39:\"products.belsorp-mini-x.afsm2_caption.5\";a:4:{s:4:\"text\";s:14:\"Liquid level 2\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:38:\"products.belsorp-mini-x.afsm_caption.1\";a:4:{s:4:\"text\";s:23:\"Room temeprature change\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:38:\"products.belsorp-mini-x.afsm_caption.2\";a:4:{s:4:\"text\";s:15:\"Pref\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:38:\"products.belsorp-mini-x.afsm_caption.3\";a:4:{s:4:\"text\";s:15:\"Psmp\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:38:\"products.belsorp-mini-x.afsm_caption.4\";a:4:{s:4:\"text\";s:15:\"Intial pressure\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:38:\"products.belsorp-mini-x.afsm_caption.5\";a:4:{s:4:\"text\";s:77:\"The sample tube temperature changes due to the change of LN2 level\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:38:\"products.belsorp-mini-x.afsm_caption.6\";a:4:{s:4:\"text\";s:61:\"Liquid nitrogen temperature changes due to oxygen 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purpose\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:34:\"products.belsorp-mini-x.benefits.6\";a:4:{s:4:\"text\";s:43:\"Dedicated pressure transducer for each port\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:34:\"products.belsorp-mini-x.benefits.7\";a:4:{s:4:\"text\";s:85:\"Simultaneous control of up to 20 measurement ports via multi-device control (5 units)\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:34:\"products.belsorp-mini-x.benefits.8\";a:4:{s:4:\"text\";s:31:\"Short measurement time with GDO\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:34:\"products.belsorp-mini-x.benefits.9\";a:4:{s:4:\"text\";s:54:\"IoT: Process monitoring via e-mail notification 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The MINI X is equipped with up to 4 sample measurement ports and new high-throughput functions including multi-device control.

The BELSORP MINI X is meticulously designed to measure specific surface area, pore size distribution and pore volume with extreme accuracy. Equipped with dedicated pressure sensors on each sample measuring port and a dedicated port for saturated vapor pressure, it enables completely independent simultaneous measurements. The new measurement software improves user productivity by streamlining measurement procedures with in software step-by-step instructions, displaying the measurement progress and sending the measurement results via e-mail. Depending on your sample throughput, a 3-port and 4-port models are offered. Additionally, the new analysis software (BELMASTERTM) enables structural evaluation of a wider range of materials than ever before.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:44:\"products.belsorp-mini-x.intro.txt.supplement\";a:4:{s:4:\"text\";s:73:\"For simple, fast and highly accurate characterization of porous materials\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:36:\"products.belsorp-mini-x.key.afsm.txt\";a:4:{s:4:\"text\";s:1264:\"Innovative Free Space Measurement for Highest Accuracy (AFSMTM)

With AFSMTM, the level control of liquid coolant (e. g. liquid nitrogen or argon) is not necessary anymore. Instead, we have adopted our groundbreaking, continuous free space measurement method, the patented Advanced Free Space Measurement (AFSMTM). This method has achieved highest reproducibility by using a reference cell (empty sample cell; same type of sample cell used for measurement) to follow the second-to-second changes of free space. Our instrument determines an initial free space of the sample cell and reference cell. Since the change of the free space is equal in both cells (same environmental conditions), the free space change can be continuously followed by the pressure change of reference cell. Free space fluctuations caused by environmental factors can be considered:

With this superior technique, environmental factors can be taken into account that were not considered before.
For more information, please use our knowledge base.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:37:\"products.belsorp-mini-x.key.afsm2.txt\";a:4:{s:4:\"text\";s:693:\"Adsorption Measurement Without Using Helium Gas (AFSMTM2)

In a first step the free space measurement for a blank sample cell and a blank reference cell is performed with the adsorptive gas at the appropriate adsorption temperature. Then, the adsorption measurement can be achieved by utilizing both cells without using helium gas. In the same measurement condition, since the free space changes for both cells are same, the measurement results can be obtained in shorter measurement time. There is no need for time consuming operations such as keeping the liquid level of coolant constant between the blank measurement and adsorption measurement of the free space.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:39:\"products.belsorp-mini-x.key.compact.txt\";a:4:{s:4:\"text\";s:164:\"Compact & Lightweight

Through complete optimization and rationalization of the materials, we succeeded in reducing the device size and weight.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:45:\"products.belsorp-mini-x.key.data-analysis.txt\";a:4:{s:4:\"text\";s:594:\"Data Analysis

The analysis software BELMASTER allows users to obtain a wide variety of analysis results through operations, such as displaying adsorption / desorption isotherms, evaluating specific surface areas using BET method etc., evaluating pore volumes (from ultra-micro- to meso- and macropores) by applying the t-plot or αS method. Further, conducting mesopore analysis using the DH and BJH methods, micropore analysis using the HK or SF methods, or optional GCMC / NLDFT analysis are possible. Even more analysis options are given in our BELMASTER analysis software.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:43:\"products.belsorp-mini-x.key.ease-of-use.txt\";a:4:{s:4:\"text\";s:552:\"Ease of Use: Simple Setting of Measurement Software

The BELSORP MINI X is a fully automatic measurement system that enables the user to easily set the measurement conditions using Simple Mode. This mode allows for accurate measurements with minimal sample information (e.g. pre-treatment conditions and measuring range). This is particularly useful for unknown materials. Detailed measurement configurations can be set by experienced users in Professional mode. This system allows anyone to easily obtain accurate measurement results.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:35:\"products.belsorp-mini-x.key.gdo.txt\";a:4:{s:4:\"text\";s:334:\"Gas Dosing Optimization (GDO)

Simple Mode includes the Gas Dosing Optimization (GDO) option, which automatically calculates the optimal gas dosing amount from previous measurement results. With this function, the measurement set points can be reliably obtained and the measurement times can be reduced significantly.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:44:\"products.belsorp-mini-x.key.multifaceted.txt\";a:4:{s:4:\"text\";s:336:\"Multiple Measurement Options

This instrument brings together highly accurate measurements with several high throughput modes (e.g. Quick BET mode, Gas Dosing Optimization). It can be used flexibly depending on customer needs, while integrated step-by-step instructions make it easy to use even for inexperienced users.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:48:\"products.belsorp-mini-x.key.multiple-samples.txt\";a:4:{s:4:\"text\";s:195:\"Simultaneous Measurement of Multiple Samples

Up to 4 specimens can be measured simultaneously, enabling the measurement times for multiple samples to be shortened significantly.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:44:\"products.belsorp-mini-x.key.pretreatment.txt\";a:4:{s:4:\"text\";s:926:\"Optional Pretreatment of Samples at Measurement Port

For an accurate adsorption measurement, a pretreatment of the samples is required. The pretreatment process (often called an activation process) is usually performed by applying vacuum under heat to remove adsorbed gas and/or water molecules from the surface of the material without affecting the sample structure (avoid denaturation). Microtrac offers two options for sample pretreatment. Firstly, it can be performed externally using BELPREP VAC II or VAC III, which is usually preferred to increase sample throughput. Alternatively, the activation process can be performed directly at the measurement port of the BELSORP MINI X using a heater (see accessories list). Using the heater accessory, a transfer from the external pretreatment device to the measuring port can be avoided, which is an important option for sensitive (e.g. hydrophilic) samples.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:37:\"products.belsorp-mini-x.key.range.txt\";a:4:{s:4:\"text\";s:166:\"BET specific surface areas from 0.01 m2/g ~ (N2) and pore size distribution from 0.7 ~ 500 nm (option: 0.35 ~ 500 nm by molecular probe method).\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:41:\"products.belsorp-mini-x.psd-table.caption\";a:4:{s:4:\"text\";s:206:\"*1 BELSORP MINI X is equipped with 1000 torr pressure transducers; isotherm starts from ~p/p0 of 1x10-4
*2 Option: 0.35 nm possible by molecular probe method\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:36:\"products.belsorp-mini-x.quick-bet.hl\";a:4:{s:4:\"text\";s:14:\"Quick BET Mode\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:47:\"products.belsorp-mini-x.quick-bet.table.caption\";a:4:{s:4:\"text\";s:83:\"*Multi-point BET in the p/p0 range of 0.05 - 0.30, single-point BET at p/p0 of 0.20\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:55:\"products.belsorp-mini-x.quick-bet.table.multi-point-bet\";a:4:{s:4:\"text\";s:36:\"Multi-point BET SA [m2/g]\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:49:\"products.belsorp-mini-x.quick-bet.table.quick-bet\";a:4:{s:4:\"text\";s:9:\"Quick BET\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:56:\"products.belsorp-mini-x.quick-bet.table.single-point-bet\";a:4:{s:4:\"text\";s:37:\"Single-point BET SA [m2/g]\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:53:\"products.belsorp-mini-x.quick-bet.table.standard-mode\";a:4:{s:4:\"text\";s:13:\"Standard Mode\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:39:\"products.belsorp-mini-x.quick-bet.txt.1\";a:4:{s:4:\"text\";s:773:\"The Quick BET Mode can be used to maximize the sample throughput for BET specific surface area measurements. In this mode it is possible to measure three BET adsorption points of four samples in approx. 15 minutes (sample density required). Further, the Quick BET Mode offers two types of free space measurements: Firstly, the free space input option gives you the biggest opportunity to save time. Once the free space is determined for the sample cell, the free space measurement file (dvd file) can be reused for future quick BET measurements. Secondly, the free space can be determined with the actual measurement. A comparison of the obtained BET surface area from full-isotherm measurement (standard mode) and Quick BET Mode is given in the following graphs and table:\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:39:\"products.belsorp-mini-x.quick-bet.txt.2\";a:4:{s:4:\"text\";s:476:\"The measurement results obtained by multi-point BET in Standard Mode is assumed to be the most accurate result. The multi-point as well as single-point BET surface area measurements in Quick BET Mode are delivering fully comparable results compared to the standard mode, although the measurement time is significantly reduced to approx. 15 minutes for three samples (multi-point BET). This function is recommended for optimization of sample throughput e.g. in quality control.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.belsorp-mr1.benefits.1\";a:4:{s:4:\"text\";s:47:\"High accuracy, sensitivity, and reproducibility\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:32:\"products.belsorp-mr1.benefits.10\";a:4:{s:4:\"text\";s:34:\"Compact design without external PC\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.belsorp-mr1.benefits.2\";a:4:{s:4:\"text\";s:57:\"Possibility of simultaneous pre-treatment and measurement\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.belsorp-mr1.benefits.3\";a:4:{s:4:\"text\";s:109:\"BET single-point measurement in approx. 15 mins (including calibration but excluding pre-treatment of sample)\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.belsorp-mr1.benefits.4\";a:4:{s:4:\"text\";s:25:\"User-friendly touch panel\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.belsorp-mr1.benefits.5\";a:4:{s:4:\"text\";s:79:\"Auto Zero function equipped with highly sensitive thermal conductivity detector\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.belsorp-mr1.benefits.6\";a:4:{s:4:\"text\";s:78:\"Dedicated calibration valve enables simple and stable calibration measurements\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.belsorp-mr1.benefits.7\";a:4:{s:4:\"text\";s:75:\"Automatic measurement of temperature and pressure for accurate calibrations\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.belsorp-mr1.benefits.8\";a:4:{s:4:\"text\";s:69:\"Easy handling thanks to an automatic Dewar elevator and a cooling fan\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.belsorp-mr1.benefits.9\";a:4:{s:4:\"text\";s:73:\"Measurement results and trend data can be exported onto a USB flash drive\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:32:\"products.belsorp-mr1.benefits.hl\";a:4:{s:4:\"text\";s:44:\"Highly Efficient & Accurate Measurements\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:57:\"products.belsorp-mr1.function-principle_dynamic-method.hl\";a:4:{s:4:\"text\";s:27:\"What Is the Dynamic Method?\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:58:\"products.belsorp-mr1.function-principle_dynamic-method.txt\";a:4:{s:4:\"text\";s:1177:\"For BET surface area determination, volumetric adsorption is frequently used, dynamic flow adsorption offers a simpler and often preferred way to measure BET surface area. In the dynamic flow method, a sample is cooled with a coolant (e.g. liquid nitrogen) while an adsorbate gas of a known concentration (e.g. 30 % nitrogen diluted in He) is supplied.

As the adsorbate is adsorbed onto the sample and the concentration of the adsorbate gas in the gas mixture decreases, the fluctuation (peak) in the detector (TCD) signals can be determined. When adsorption reaches equilibrium, the concentration of adsorbed gas in the gas mixture returns to its original value, causing the TCD signals to return to their baseline. If cooling is stopped at this point (Dewar moves down), the adsorbate is desorbed from the sample.

This temporarily increases the concentration of the adsorbate gas in the mixture, causing the detector (TCD) to give a peak. After the desorption is completed, the TCD signals return to the baseline. As the desorption peak is sharper and more suitable for accurate integration, it is generally used to calculate the specific surface areas.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:30:\"products.belsorp-mr1.intro.txt\";a:4:{s:4:\"text\";s:1602:\"Microtrac’s BELSORP MR1 focusses on easy handling and the fast characterization of porous materials. This instrument is precisely designed to measure specific surface areas using dynamic BET (Brunauer-Emmett-Teller) single-point method. Measurement of the specific surface area utilizing BET theory is one of the most common analytical methods in material evaluation based on adsorption phenomena. Generally, the specific surface area of a sample is calculated based on the amount of nitrogen adsorbed at liquid nitrogen temperature. The amount of adsorption can be measured by different methods, e.g., volumetric (BELSORP MINI X or MAX II series), gravimetric or dynamic. The BELSORP MR1 make use of the dynamic method.

The BELSORP MR1 is a highly efficient, stand-alone device that allows simultaneous pre-treatment and sample measurement. Due to our highly sensitive thermal conductivity detectors (TCD), thermometers & pressure gauges, an accurate measurement result is achieved in approx. 15 minutes. The automatic Dewar movement, the calibration function and the operation via the touch panel make the BELSORP MR1 extremely user-friendly and suitable for inexperienced users.

The analysis results are calculated automatically as soon as the measurement is completed. After the measurement, the specific surface area is displayed without the need for tedious manual calculation. The respective measurement results (including whole lists ) can be transferred to a USB storage device, and are output as text files, Excel spreadsheets or printed report (rich text).\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:41:\"products.belsorp-mr1.intro.txt.supplement\";a:4:{s:4:\"text\";s:33:\"Compact, Fast and Highly Accurate\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:55:\"products.belsorp-series.accessoires.consumable_goods.hl\";a:4:{s:4:\"text\";s:25:\"Standard Consumable Goods\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:56:\"products.belsorp-series.accessoires.consumable_goods.txt\";a:4:{s:4:\"text\";s:217:\"The standard consumables comprise sample cells, filler rods, filters, liquid bottle, O-rings, caps and weighing platforms. Various sizes of sample cells, quick seals, and other optional consumables are also available.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:48:\"products.belsorp-series.accessoires.fast-evac.hl\";a:4:{s:4:\"text\";s:20:\"Fast Evacuation Line\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:49:\"products.belsorp-series.accessoires.fast-evac.txt\";a:4:{s:4:\"text\";s:124:\"The fast evacuation line is a dedicated vacuum exhaust line from the sample cells to achieve faster and lower vacuum degree.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:54:\"products.belsorp-series.accessoires.fully-automatic.hl\";a:4:{s:4:\"text\";s:22:\"Fully Automatic System\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:55:\"products.belsorp-series.accessoires.fully-automatic.txt\";a:4:{s:4:\"text\";s:466:\"Included are a Dewar vessel, Dewar cover, heater (450 °C), and a protective cover. The LN2 auto supply system is used for unattended operations: simply set the measurement conditions and start the measurement.
  1. No need for connection of heater (or external pretreatment); heater block is integrated

  2. No need for manual filling the of the Dewar vessel with LN2; automatically filled by auto-supply from tank
\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:51:\"products.belsorp-series.accessoires.gas-selector.hl\";a:4:{s:4:\"text\";s:12:\"Gas Selector\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:52:\"products.belsorp-series.accessoires.gas-selector.txt\";a:4:{s:4:\"text\";s:224:\"The integrated gas selector enables the connection of up to 10 additional gases besides 1 x helium and 1 x adsorptive* (*standard line is corrosion resistant). Up to two additional corrosion-resistant gas lines are possible.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:45:\"products.belsorp-series.accessoires.heater.hl\";a:4:{s:4:\"text\";s:6:\"Heater\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:46:\"products.belsorp-series.accessoires.heater.txt\";a:4:{s:4:\"text\";s:239:\"In-situ pretreatment of the sample from 50°C to 550°C. With this option, samples can be pretreated directly at the measurement port, without the need to transfer the sample cell before analysis. Particularly useful for sensitive samples.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:49:\"products.belsorp-series.accessoires.water_bath.hl\";a:4:{s:4:\"text\";s:10:\"Water Bath\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:50:\"products.belsorp-series.accessoires.water_bath.txt\";a:4:{s:4:\"text\";s:146:\"Easily swap the Dewar with a water bath for measurement temperatures ranging from -10°C to 70°C. A refrigerated / heated circulator is required.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:39:\"products.belsorp-series.accessories.txt\";a:4:{s:4:\"text\";s:92:\"Microtrac offers various accessories for its entire gas & vapor adsorption product line.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:46:\"products.belsorp-series.evaluation-software.hl\";a:4:{s:4:\"text\";s:19:\"Evaluation Software\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:57:\"products.belsorp-series.evaluation-software.hl.supplement\";a:4:{s:4:\"text\";s:99:\"Gas Adsorption Measurements of Porous & Non-porous Materials: MOFs, Zeolites, Carbons, and More\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:49:\"products.belsorp-series.evaluation-software.txt.1\";a:4:{s:4:\"text\";s:455:\"A sorption isotherm is defined as the relationship between the adsorbed amount onto an adsorbent and the equilibrium pressure of the adsorptive gas – commonly related to the saturation vapor pressure – at constant temperature. The gas sorption isotherm (e.g. nitrogen) delivers information about the specific surface area, pore size distribution and pore volume of measured material. In the following graph some exemplary sorption isotherms are shown.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:49:\"products.belsorp-series.evaluation-software.txt.2\";a:4:{s:4:\"text\";s:451:\"The specific surface area (SSA) refers to the accessible surface area of the sample and is of great importance in adsorption, homogeneous and heterogeneous catalytic reactions. The specific surface area can be calculated according to ISO 9277 with the BET method (BET: Brunauer, Emmett and Teller) or Langmuir method. The following graph shows an exemplary evaluation of the specific surface area according to the BET method in our BELMASTER software:\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:49:\"products.belsorp-series.evaluation-software.txt.3\";a:4:{s:4:\"text\";s:341:\"Select the right pressure range (multi point BET) or a measurement point (single point BET) and the surface area will be calculated automatically. Further, our BELMASTER software also provides the BET surface area calculation according to ISO 9277 Annex C (also known as Rouquerol-plot), which is recommended for microporous materials. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:53:\"products.belsorp-series.evaluation-software.txt.max-g\";a:4:{s:4:\"text\";s:453:\"The outstanding feature of the BELSORP MAX G is the availability of three different transducers (1000, 10 and 1 / 0.1 torr), enabling very low pressure adsorption isotherms, starting from p/p0 = 10-8 (N2 @ 77K) up to atmospheric pressure. As a result, pore size distributions from 0.35 up to 500 nm can be obtained. Further, low surface area measurements down to 0.0005 m2/g by using krypton gas are possible.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:54:\"products.belsorp-series.evaluation-software.txt.max-II\";a:4:{s:4:\"text\";s:431:\"The outstanding feature of the BELSORP MAX II is the availability of three different pressure transducers (1000, 10 and 0.1 torr), enabling measurements of materials with surface areas as low as 0.0005 m2/g using krypton gas. Sorption isotherms even from very low relative pressures of ~10-9 up to atmospheric pressure are possible. As a result, pore size distributions from 0.35 up to 500 nm can be analyzed.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:54:\"products.belsorp-series.evaluation-software.txt.mini-x\";a:4:{s:4:\"text\";s:560:\"The BELSORP MINI X’s ability to measure low-surface area samples with high accuracy without the need of krypton gas (no additional pressure transducer or cryogenic temperature controller required), along with its “Quick BET Mode”, which allows users to obtain BET specific surface areas (e.g. three-point-BET) of four samples in approx. 15 minutes, has cemented its place as a world class gas adsorption instrument. Pore size distributions from 0.7 up to 500 nm (optional 0.35 nm) are also achieved through the BELMASTER software from obtained isotherms.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:54:\"products.belsorp-series.nldft_gcmc-method.bjh_examples\";a:4:{s:4:\"text\";s:95:\"In the following part an example for pore size distribution calculation by BJH method is given:\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:47:\"products.belsorp-series.nldft_gcmc-method.txt.1\";a:4:{s:4:\"text\";s:744:\"Analysis of Pore Size Distribution via NLDFT & GCMC Method

The classical pore size distributions (PSD) are calculated by INNES method (slit shape) and BJH, DH, CI methods (cylinder shape), which evaluate mesopores based on the capillary condensation theory. HK (slit), SF (cylinder), and CY (cage) methods can also be used to evaluate micropores based on the adsorption potential theory. The DA method, as well as the DR method, are also commonly used for pore volume evaluation and pore structure evaluation. The new PSD and capacity evaluation methods, NLDFT and GCMC (optional for BELSORP MINI X), are used for wide range analyses (from micro- to meso and macropores) and more accurate methods, specified in ISO15901-2.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:47:\"products.belsorp-series.nldft_gcmc-method.txt.2\";a:4:{s:4:\"text\";s:1079:\"In recent years, attention has been focused on pore structure evaluation methods using computer simulations, such as the novel pore distribution analysis NLDFT (Non-localized Density Functional Theory) and GCMC (Grand Canonical Monte Carlo) method, which can analyze micropores to meso- and macropores using a unified theory. Pore size distributions obtained from the same adsorption isotherm are different between classical and novel PSD analyses, and even in between novel methods because the filling pressure obtained from each theory is different. Microtrac provides evaluation methods which cover a wide range of pore sizes and various adsorbates, such as N2 (77.4 K), Ar (87.3 K), and CO2 (298 K). It uses NLDFT / GCMC kernels of slit, cylinder, and cage pore models with carbon and metal oxide surface atoms, resulting in the most appropriate description of porous materials.

The BELMASTER software allows easy comparison between experimental and simulated isotherms, with the simulated isotherm serving as a basis for the PSD calculation.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:45:\"products.belsorp-series.operation-software.hl\";a:4:{s:4:\"text\";s:18:\"Operation Software\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:46:\"products.belsorp-series.operation-software.txt\";a:4:{s:4:\"text\";s:1267:\"The versatility of the BELSORP instruments, with their many features and possibilities, is complemented by our intuitive and user-friendly operation software. It guides the user step-by-step through the analysis process including setting up the analysis conditions, executing the measurements, when to fill and setup the liquid nitrogen or other bath, when to replace the gas cylinder, the degassing steps, and much more. The software has been crafted to make the instrument accessible to everyone, even inexperienced users.

Two measurement modes are offered: ‘Simple Mode’ and ‘Professional Mode’. Simple Mode enables easy operation, requiring minimal setup. You only need to enter the basic sample information (name, mass, etc.) and then select your pretreatment conditions and analysis conditions from a list of preset options. This is ideal for inexperienced users or measurements of unknown samples. If a prior measurement with comparable sorption behavior has been performed, GDO can be used to reduce the measurement time. Professional Mode allows detailed control of the configuration and measurement settings (e.g., dosing settings, equilibrium criteria, leak-check option, etc.), allowing the user to completely customize sample analysis.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:39:\"products.belsorp-series.table_adsorbate\";a:4:{s:4:\"text\";s:9:\"Adsorbate\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:49:\"products.belsorp-series.table_bulk-liquid-density\";a:4:{s:4:\"text\";s:19:\"Bulk liquid density\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:41:\"products.belsorp-series.table_interaction\";a:4:{s:4:\"text\";s:27:\"Interaction Surface and Gas\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:45:\"products.belsorp-series.table_kelvin-equation\";a:4:{s:4:\"text\";s:56:\"Kelvin equation
(Surface tension and contact angle)\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:53:\"products.belsorp-series.table_lennard-jones-potential\";a:4:{s:4:\"text\";s:62:\"Lennard-Jones potential
(Interaction and repulsion force)\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:39:\"products.belsorp-series.table_methods.1\";a:4:{s:4:\"text\";s:30:\"BJH, CI, DH,
INNES method\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:39:\"products.belsorp-series.table_methods.2\";a:4:{s:4:\"text\";s:17:\"HK, SF, CY method\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:39:\"products.belsorp-series.table_methods.3\";a:4:{s:4:\"text\";s:11:\"NLDFT, GCMC\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:40:\"products.belsorp-series.table_pore-range\";a:4:{s:4:\"text\";s:26:\"Applicable Pore Size Range\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:42:\"products.belsorp-series.table_size-range.1\";a:4:{s:4:\"text\";s:33:\"> 2 nm
Meso and macropore\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:42:\"products.belsorp-series.table_size-range.2\";a:4:{s:4:\"text\";s:25:\"0.4 - 2 nm
Micropore\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:42:\"products.belsorp-series.table_size-range.3\";a:4:{s:4:\"text\";s:35:\"0.35 - 500 nm
Whole pore range\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:36:\"products.belsorp-series.table_theory\";a:4:{s:4:\"text\";s:6:\"Theory\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:49:\"products.belsorp-series.table_thermodynamic-model\";a:4:{s:4:\"text\";s:31:\"Statistical thermodynamic model\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:29:\"products.belsorp_hp.intro.txt\";a:4:{s:4:\"text\";s:746:\"The BELSORP HP analyzer is used for high-pressure adsorption measurement.

The importance of high-pressure adsorption measurement is growing in various application fields like hydrogen or methane storage, pressure swing adsorption (PSA), CO2 absorption into hypolymer, and many more. However, the instruments for measuring high-pressure gas sorption are usually large-sized, expensive and difficult to use.

The BELSORP HP is a benchtop instrument for high-pressure adsorption measurement. It is compact, reasonably priced and easy to operate. Our profound expertise in adsorption science is reflected in the technology implemented in this analyzer. The BELSORP HP is used in research and industrial applications alike.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.belsorp_max_x.afsm.txt\";a:4:{s:4:\"text\";s:1115:\"Our patented "Advanced Free Space Measurement" (AFSMTM for short), is a revolutionary method for continuous measurement of free space during analyses of adsorption and desorption isotherms. In the conventional method, free space is measured before the isotherms begin to be measured, while the control of liquid nitrogen level and the amount of adsorption are always evaluated based on free space. However, this method can lead to errors in both free space and adsorption volume due to slight variations in liquid nitrogen level, dissolution of O2 in the atmosphere, and changes in room temperature.With AFSMTM, the free space is measured at each measurement point of the adsorption volume, eliminating the need to check the refrigerant level. In addition, changes in free space (due to shifts in room temperature) can be eliminated, resulting in highly reproducible measurements that are not affected by environmental changes. Since there is no complicated mechanism to control the liquid nitrogen level here, handling is improved, resulting in trouble-free measurements.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:55:\"products.belsorp_max_x.caption.ultra-low-pressure.txt.3\";a:4:{s:4:\"text\";s:8:\"、MS-5A\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.belsorp_max_x.intro.hl\";a:4:{s:4:\"text\";s:97:\"BELSORP MAX X: Our First-Class Adsorption Analyzer With the Lowest Weight and Highest Performance\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:32:\"products.belsorp_max_x.intro.txt\";a:4:{s:4:\"text\";s:1050:\"BELSORP MAX X: Our First-Class Adsorption Analyzer With the Lowest Weight and Highest PerformanceMicrotrac\'s BELSORP MAX X is the latest model in the BELSORP MAX series and features a compact design and reduced weight. This high precision gas / vapor adsorption analyzer is capable of measuring up to four samples over a wide range; from low to high pressure ranges, and from low temperatures to high temperatures. The BELSORP MAX X is equipped with a full-featured 0.0133 kPa pressure sensor. In addition, the analyzer features proprietary technology to minimize gas emissions. This allows for highly reproducible analyses of adsorption isotherms in extreme low pressure ranges. In addition, our new measurement software makes it easier to understand the structure and durability of materials, improve measurement and maintenance efficiency, and send measurement results via email - all resulting in increased work efficiency.

\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:64:\"products.belsorp_max_x.reductionmeasurement.feedback-control.txt\";a:4:{s:4:\"text\";s:339:\"Feedback Control of Gas Inlet Valve

By obtaining the gas introduction speed in accordance with the installation environment (secondary pressure of the supply gas cylinder (He, N2, etc.) prior to measurement, the optimal valve control is performed for each device in use, successfully reducing measurement time.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:51:\"products.belsorp_max_x.reductionmeasurement.gdo.txt\";a:4:{s:4:\"text\";s:356:\"Gas Dosing Optimization

By reading-in previously measured adsorption isotherm data, the optimal measurement conditions for the sample are automatically established. Any arbitrary measurement point can be conveniently added or deleted, enabling the user to easily determine the gas introduction amount, which used to be a troublesome task.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:58:\"products.belsorp_max_x.reductionmeasurement.range.bullet.1\";a:4:{s:4:\"text\";s:142:\"N2, specific surface area and pore distribution evaluation by adsorption measurements from very low to high relative pressure of Ar\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:58:\"products.belsorp_max_x.reductionmeasurement.range.bullet.2\";a:4:{s:4:\"text\";s:67:\"CO2 ultramicropore evaluation by adsorption measurements\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:58:\"products.belsorp_max_x.reductionmeasurement.range.bullet.3\";a:4:{s:4:\"text\";s:68:\"Evaluation of low specific surface area by Kr adsorption measurement\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:58:\"products.belsorp_max_x.reductionmeasurement.range.bullet.4\";a:4:{s:4:\"text\";s:133:\"Adsorption measurement of NH3, H2, CO2, O2, CH4, and other non-corrosive gases\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:58:\"products.belsorp_max_x.reductionmeasurement.range.bullet.5\";a:4:{s:4:\"text\";s:85:\"Evaluation of hydrophilicity and hydrophobicity by water vapor adsorption measurement\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:58:\"products.belsorp_max_x.reductionmeasurement.range.bullet.6\";a:4:{s:4:\"text\";s:81:\"Adsorption measurement of alcohol, benzene, and other non-corrosive vapors (VOCs)\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:58:\"products.belsorp_max_x.reductionmeasurement.range.bullet.7\";a:4:{s:4:\"text\";s:51:\"Various gases and vapor adsorption rate measurement\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:52:\"products.belsorp_max_x.reductionmeasurement.range.hl\";a:4:{s:4:\"text\";s:78:\"Supports a Wide Range of Adsorbents and a Wide Range of Measurement Conditions\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:53:\"products.belsorp_max_x.reductionmeasurement.range.txt\";a:4:{s:4:\"text\";s:125:\"Enables gas and vapor adsorption measurements with a variety of temperature devices, allowing measurements over a wide range.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:55:\"products.belsorp_max_x.reductionmeasurement.variety.txt\";a:4:{s:4:\"text\";s:430:\"Measurements can be made on a variety of materials including pellets, molds, substrates, as well as samples that are slightly dispersed or should not be exposed to the atmosphere.

The connector is equipped with a sample tube with an outer diameter of φ9 mm or φ14 mm. Special sample tubes for pellets and shaped samples as well as highly dispersible samples can be easily measured with the corresponding sample tubes.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:49:\"products.belsorp_max_x.reduction_measurement.hl.1\";a:4:{s:4:\"text\";s:29:\"Reduction of Measurement Time\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:49:\"products.belsorp_max_x.reduction_measurement.hl.2\";a:4:{s:4:\"text\";s:60:\"These two features shorten the measurement time by 50 - 70%:\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:45:\"products.belsorp_max_x.simultaneous.afsm.hl.1\";a:4:{s:4:\"text\";s:50:\"AFSMTM: World\'s Highest Reproducibility\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:53:\"products.belsorp_max_x.simultaneous.high_precision.hl\";a:4:{s:4:\"text\";s:48:\"High-precision mode (p/p0 =10 -0.997)\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:54:\"products.belsorp_max_x.simultaneous.high_precision.txt\";a:4:{s:4:\"text\";s:408:\"Measurement of adsorption / desorption isotherms with up to three samples. Allows measurement of saturation vapor pressure at any time through a dedicated port, as well as the accurate measurement of free space change in the sample area (patented AFSMTM). The instrument is suitable for research and development applications, such as evaluation of small sample volumes during material development.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:38:\"products.belsorp_max_x.simultaneous.hl\";a:4:{s:4:\"text\";s:43:\"Simultaneous Measurement of up to 4 Samples\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:51:\"products.belsorp_max_x.simultaneous.multi_sample.hl\";a:4:{s:4:\"text\";s:59:\"Multi-sample mode (p/p0 =10-8 -0.997)\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:52:\"products.belsorp_max_x.simultaneous.multi_sample.txt\";a:4:{s:4:\"text\";s:365:\"Measurement of adsorption / desorption isotherms with up to four samples. Allows measurement of saturated vapor pressure at any time through a dedicated port. The calculation of the change in free space in the sample section is done using a stored measurement file. This is suitable for screening applications with a high number of samples, such as quality control.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:39:\"products.belsorp_max_x.simultaneous.txt\";a:4:{s:4:\"text\";s:445:\"The instrument has four independent measurement ports and a dedicated port for saturated vapor pressure measurement. Each port is equipped with a special pressure sensor (F.S. 0.0133 kPa, 1.33 kPa, 133.3 kPa), which enables fully independent and simultaneous measurements. Two measurement modes can be selected depending on the application. Both the high precision and multi measurement modes are available from p/p0 =10-8.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:32:\"products.belsorp_mini-x.afsm.txt\";a:4:{s:4:\"text\";s:928:\"The following measurements are conducted using our patented, Advanced Free Space Measurement (AFSMTM). This method allows for high reproducibility by using a reference cell to follow the changes in the free space volume. Our instrument measures the initial free space of the sample cell and reference cell. Since the change of the free space is equal in both cells (same environmental conditions), the change can be continuously followed by the pressure change of the reference cell.

In a product test, a certified reference material CRM-170 (nonporous alpha alumina; certified value of nitrogen BET specific surface area SSA: 1.05 ± 0.05 m2/g) is used to check the accuracy of measurement in low total surface area (TSA) measurements. Although the TSA is reduced from approx. 2 m2 to lower than 0.4 m2, the determined BET specific surface areas SSA stay almost identical.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:50:\"products.belsorp_minix.accessoires.consumables.txt\";a:4:{s:4:\"text\";s:280:\"Our standard consumables consist of sample cells, filler rods, filters, O-rings, caps and weighing platforms that are required for adsorption isotherm measurements. Further, NSD capsules, various sizes of sample cells, quick seals, and much more are part of the consumable goods. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:56:\"products.belsorp_minix.belmaster.measurement_results.txt\";a:4:{s:4:\"text\";s:446:\"The sorption isotherm is known as the relation between the adsorbed amount onto an adsorbent and the equilibrium pressure of the adsorptive gas -commonly related to the saturation vapor pressure- at constant temperature. The gas sorption isotherm (e.g. nitrogen) delivers information about the specific surface area, pore size distribution and pore volume of measured material. In the following graph some exemplary sorption isotherms are shown. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:58:\"products.belsorp_minix.belmaster.measurement_results.txt.2\";a:4:{s:4:\"text\";s:436:\"The specific surface area (SSA) refers to the accessible surface area of the sample and is of great importance in adsorption, homogeneous or heterogeneous catalytic reactions. The specific surface area can be calculated according to ISO 9277 with the BET method (BET: Brunauer, Emmett and Teller) etc. The following graph shows an exemplary evaluation of the specific surface area according to the BET method in our BELMASTER software: \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:58:\"products.belsorp_minix.belmaster.measurement_results.txt.3\";a:4:{s:4:\"text\";s:824:\"Select the right pressure range (multi point BET) or measurement point (single point BET) and the surface area will be calculated automatically. Further, our BELMASTER software provides the BET surface area calculation according to ISO 9277 Annex C (also known as Rouquerol-plot) recommended for microporous materials.

The BELSORP MINI X impresses with the possibility of the measuring low-surface area samples with highest accuracy without the need of krypton gas (no additional pressure transducer or cryogenic temperature controller required). Alternatively, the measurement in the so called “Quick BET mode” allows to obtain BET specific surface areas (e.g. three-point-BET) of four samples in approx. 15 minutes. Further, pore size distributions from 0.7 up to 500 nm (optional 0.35 nm) can be obtained. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.belsorp_minix.features.1\";a:4:{s:4:\"text\";s:106:\"Up to four independent measurement ports and one dedicated port for saturated vapor pressure measurements \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:34:\"products.belsorp_minix.features.10\";a:4:{s:4:\"text\";s:54:\"Optional micropore analysis by molecular probe method \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:34:\"products.belsorp_minix.features.11\";a:4:{s:4:\"text\";s:39:\"Optional FDA 21 CFR Part 11 compliance \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.belsorp_minix.features.2\";a:4:{s:4:\"text\";s:37:\"Smallest & lightest in the world \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.belsorp_minix.features.3\";a:4:{s:4:\"text\";s:60:\"World highest reproducibility by patented AFSMTM \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.belsorp_minix.features.4\";a:4:{s:4:\"text\";s:111:\"Gas adsorption isotherm & NET adsorption measurement through AFSMTM2 without the need of He-gas \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.belsorp_minix.features.5\";a:4:{s:4:\"text\";s:133:\"Multifaceted instrument: High-precision measurements, multi-sample measurement, and quick BET measurement modes to suit your purpose \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.belsorp_minix.features.6\";a:4:{s:4:\"text\";s:44:\"Dedicated pressure transducer for each port \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.belsorp_minix.features.7\";a:4:{s:4:\"text\";s:86:\"Simultaneous control of up to 20 measurement ports via multi-device control (5 units) \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.belsorp_minix.features.8\";a:4:{s:4:\"text\";s:38:\"Short measurement time with GDO  \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.belsorp_minix.features.9\";a:4:{s:4:\"text\";s:55:\"IoT: Process monitoring via e-mail notification system \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:30:\"products.belsorp_minix.intro.1\";a:4:{s:4:\"text\";s:283:\"Microtrac’s BELSORP MINI X shows outstanding features resulting into the world’s highest repeatability with significantly reduced measurement time. The instrument is equipped with up to 4 sample measurement ports and new high-throughput functions including multi-device control. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:30:\"products.belsorp_minix.intro.2\";a:4:{s:4:\"text\";s:732:\"The BELSORP MINI X allows measuring specific surface area, pore size distribution and pore volume in highest precision. Equipped with dedicated pressure sensors on each sample measuring port and a dedicated port for saturated vapor pressure, it enables completely independent simultaneous measurements. The new measurement software improves user productivity by simplifying measurement procedures (e.g. with step-by-step instructions), displaying the measurement progress and sending the measurement results via e-mail. Depending on costumer’s sample throughput, 3-port and 4-port models are offered. Further, the new analysis software (BELMASTERTM) enables structural evaluation of a wider range of materials than ever before. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:41:\"products.belsorp_minix.key_features.1.txt\";a:4:{s:4:\"text\";s:137:\"0.01 m2/g ~ (N2) for BET specific surface area and 0.7~500 nm for pore size distribution (Option: 0.35~500 nm by molecular probe method) \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:37:\"products.belsorp_minix.key_features.2\";a:4:{s:4:\"text\";s:47:\"Simultaneous measurement of multiple specimens \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:41:\"products.belsorp_minix.key_features.2.txt\";a:4:{s:4:\"text\";s:133:\"Up to 4 specimens can be measured simultaneously, enabling the measurement times for multiple samples to be shortened significantly. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:37:\"products.belsorp_minix.key_features.3\";a:4:{s:4:\"text\";s:24:\"Multifaceted instrument \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:41:\"products.belsorp_minix.key_features.3.txt\";a:4:{s:4:\"text\";s:290:\"This instrument brings highly accurate measurements with several high throughput modes (e.g. Quick BET mode, Gas Dosing Optimization) together. It can be used flexibly depending on customer needs, while integrated step-by-step instructions make it easy to use even for inexperienced users. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:41:\"products.belsorp_minix.key_features.4.txt\";a:4:{s:4:\"text\";s:292:\"The Simple mode includes the Gas Dosing Optimization (GDO) option, which automatically calculates the optimal gas dosing amount from previous measurement results. With this function, the measurement set points can be reliably obtained and the measurement times can be reduced significantly. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:41:\"products.belsorp_minix.key_features.5.txt\";a:4:{s:4:\"text\";s:595:\"The analysis software BELMASTER provided with this instrument enables the user to obtain a wide variety of analysis results through operations such as displaying adsorption/desorption isotherm, evaluating specific surface areas using BET method etc., evaluating pore volumes (from ultra-micro- to meso- and macropores) by applying the t-plot or αS method. Further, conducting mesopore analysis using the DH and BJH methods, micropore analysis using the HK or SF methods, or optional GCMC/NLDFT analysis will be possible. Even more analysis options are given in our BELMASTER analysis software. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:41:\"products.belsorp_minix.key_features.6.txt\";a:4:{s:4:\"text\";s:604:\"In a first step the free space measurement for a blank sample cell and a blank reference cell is performed with the adsorptive gas at the appropriate adsorption temperature. Then, the adsorption measurement can be achieved by utilizing both cells without using helium gas. In the same measurement condition, since the free space changes for both cells are same, the measurement results can be obtained in shorter measurement time. There is no need for complicated operations such as keeping the liquid level of coolant constant between the blank measurement and adsorption measurement of the free space. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:41:\"products.belsorp_minix.key_features.7.txt\";a:4:{s:4:\"text\";s:841:\"For an accurate adsorption measurement, a pretreatment of the samples is required. The pretreatment process (also called activation process) is usually performed by applying vacuum under heat and removes adsorbed gas and/or water molecules from the surface of the material without affecting the sample structure (avoid denaturation). Microtrac offers two options for sample pretreatment. Firstly, it can be performed externally using BELPREP VAC II or VAC III, which is usually preferred to increase sample throughput. Alternatively, the activation process can be performed directly at the measurement port of the BELSORP MINI X using a heater (see accessories list). By this way, a transfer from the external pretreatment device to the measuring port can be avoided, which is an important option for sensitive (e.g. hydrophilic) samples. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:41:\"products.belsorp_minix.key_features.8.txt\";a:4:{s:4:\"text\";s:792:\"Level control of liquid coolant (e. g. liquid nitrogen or argon) is not required anymore. Instead, we have adopted our groundbreaking, continuous free space measurement method, the patented Advanced Free Space Measurement (AFSMTM). This method has achieved highest reproducibility by using a reference cell (empty sample cell; same type of sample cell used for measurement) to follow the second-to-second changes of free space. Our instrument determines an initial free space of the sample cell and reference cell. Since the change of the free space are equal in both cells (same environmental conditions), the free space change can be continuously followed by the pressure change of reference cell.
Free space fluctuations caused by environmental factors can be considered: \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:41:\"products.belsorp_minix.psd.table.optional\";a:4:{s:4:\"text\";s:30:\"(Optional for BELSORP MINI X) \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:30:\"products.belsorp_minix.psd.txt\";a:4:{s:4:\"text\";s:631:\"The classical pore size distributions (PSD) are the INNES method (slit shape) and BJH, DH, CI methods (cylinder shape), which evaluate mesopores based on the capillary condensation theory. HK (slit), SF (cylinder), and CY (cage) methods can also be used to evaluate micropores based on the adsorption potential theory. The DA method and DR method are also commonly used for pore volume evaluation as pore structure evaluation. The new PSD and capacity evaluation methods, NLDFT and GCMC (optional for BELSORP MINI X), are wide range analysis (from micro- to meso and macropores) and more accurate methods, specified in ISO15901-2. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:32:\"products.belsorp_minix.psd.txt.2\";a:4:{s:4:\"text\";s:990:\"In recent years, attention has been focused on pore structure evaluation methods using computer simulations, such as the novel pore distribution analysis NLDFT (Non-localized Density Functional Theory) and GCMC (Grand Canonical Monte Carlo) method, which can analyze micropores to meso- and macropores using a unified theory. Pore size distributions obtained from the same adsorption isotherm are different between classical and novel PSD analyses, and even in between novel methods because the filling pressure obtained from each theory is different. Microtrac provides evaluation methods which cover a wide range of pore sizes and various adsorbates, such as N2 (77.4 K), Ar (87.3 K), and CO2 (298 K). It uses NLDFT / GCMC kernels of slit, cylinder, and cage pore models with carbon and metal oxide surface atoms, resulting in the most appropriate description of porous materials.

In the following part an example for pore size distribution calculation by BJH method is given:\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:38:\"products.belsorp_minix.quick_bet.txt.1\";a:4:{s:4:\"text\";s:762:\"The Quick BET Mode can be used to maximize the sample throughput for BET specific surface area measurements. In this mode it is possible to measure three BET adsorption points of four samples in approx. 15 minutes (sample density required). The Quick BET Mode offers two types of free space measurements: Firstly, the free space input option is given as the most time saving possibility. Once the free space is determined for the sample cell, the free space measurement file (dvd file) can be reused for future quick BET measurements. Secondly, the free space can be determined with the actual measurement. A comparison of the obtained BET surface area from full-isotherm measurement (Standard Mode) and Quick BET Mode is given in the following graphs and table:\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:40:\"products.belsorp_mini_x.features.bullets\";a:4:{s:4:\"text\";s:1115:\"
Conforming to JIS Z8830, Z8831-2, K6217-7 and ISO 9277, 15901-2, 18852.NEW = New function of BELSORP MINI X\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.belsorp_mini_x.intro.txt\";a:4:{s:4:\"text\";s:458:\"The BELSORP MINI X measures the specific surface area/pore size distribution by volumetric gas adsorption technique. Microtrac\'s unique dead volume evaluation method (AFSM) ensures highly accurate and reproducible measurements free of environmental impact. This compact model analyzes up to 4 samples simultaneously with the highest level of precision and reproducibility worldwide. The measurement time is drastically reduced compared to other models.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:38:\"products.belsorp_mr_1.applications.txt\";a:4:{s:4:\"text\";s:249:\"BELSORP MR 1 can be used in various fields such as catalysts, fuel cells, batteries, textiles, polymer materials, medicine, pigments, cosmetics, magnetic powders, separation membranes, filters, toner, cement, ceramics, semiconductor materials, etc. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.belsorp_mr_1.intro.txt\";a:4:{s:4:\"text\";s:1056:\"The BELSORP MR 1 is designed for rapid and convenient BET single-point measurement.

Highly efficient measurement


Highly accurate measurement


Easy operability

\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:51:\"products.belsorp_mr_1.technical_data.result_display\";a:4:{s:4:\"text\";s:73:\"* *The result may display after 3~5 minutes from rising the Dewar vessel \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:40:\"products.belsorp_mr_6.advantages.bullets\";a:4:{s:4:\"text\";s:501:\"\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.belsorp_mr_6.intro.txt\";a:4:{s:4:\"text\";s:516:\"The specific surface area is one of several important characteristics for the evaluation of powder material. This instrument quickly and reliably measures the BET surface area of up to six samples. Measurement and pre-treatment are carried out simultaneously. The BELSORP MR 6 is used not only for research applications but also in quality control.

One sample measurement takes just 10 minutes*, excluding the time for pre-treatment. An intuitive software provides complete control of the measurement. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:43:\"products.bet-surface-area-anaylsis.singular\";a:4:{s:4:\"text\";s:25:\"BET Surface Area Analysis\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:43:\"products.bet_surface_area_analyzer.singular\";a:4:{s:4:\"text\";s:25:\"BET Surface Area Analyzer\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:48:\"products.bet_surface_pore_size_analyzer.singular\";a:4:{s:4:\"text\";s:50:\"BET Specific Surface Area & Pore Size Analyzer\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"products.bluewave.benefits.1\";a:4:{s:4:\"text\";s:146:\"Utilizing blue lasers, the resolution of the low-end measurements increases to dramatically improve the accuracy of measurements below one micron \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"products.bluewave.benefits.2\";a:4:{s:4:\"text\";s:162:\"Proprietary Modified Mie calculations allow users to accurately measure non-spherical particles that other particle analyzers struggle to accurately characterize \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"products.bluewave.benefits.3\";a:4:{s:4:\"text\";s:66:\"Seamless transition from wet to dry measurement reduces down-time \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"products.bluewave.benefits.4\";a:4:{s:4:\"text\";s:72:\"Fixed detectors provide rugged durability and assure proper positioning \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"products.bluewave.benefits.5\";a:4:{s:4:\"text\";s:66:\"Small bench footprint reduces demand on valuable laboratory space \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"products.bluewave.features.1\";a:4:{s:4:\"text\";s:68:\"Tri–laser, blue / red, multi-detector, multi-angle optical system \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"products.bluewave.features.2\";a:4:{s:4:\"text\";s:28:\"True blue lasers (not LEDs) \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"products.bluewave.features.3\";a:4:{s:4:\"text\";s:113:\"Algorithms that utilize Mie compensation and Modified Mie calculations for spherical and non-spherical materials \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"products.bluewave.features.4\";a:4:{s:4:\"text\";s:46:\"Measurement capability from 0.01 to 2,800 µm \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"products.bluewave.features.5\";a:4:{s:4:\"text\";s:25:\"Wet and dry measurements \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"products.bluewave.features.6\";a:4:{s:4:\"text\";s:27:\"Fixed detectors and lasers \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"products.bluewave.features.7\";a:4:{s:4:\"text\";s:122:\"Enclosed optical path ensures complete protection of the optical components leading to little or no operator intervention \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"products.bluewave.features.8\";a:4:{s:4:\"text\";s:22:\"Small bench footprint \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:39:\"products.bluewave.functionprinciple.txt\";a:4:{s:4:\"text\";s:1868:\"The patented tri-laser system allows light scattering measurements to be made from the forward low angle region to almost the entire angular spectrum (0.2 to 165 degrees). It does so by a combination of three lasers and two detector arrays, all in fixed positions.

The primary laser (on-axis) produces scatter from nearly on-axis to about 60 degrees, detected by a forward array and a high-angle array, both of which have logarithmic spacing of the detector segments. The second laser (off-axis) is positioned to produce scatter beyond the 60 degree level which is detected using the same detector arrays. The third laser (off-axis) is positioned to produce backscatter, again using the same detector arrays. This technique effectively multiplies the number of sensors that are available for detection of scattered light.

The calculation of the particle size distribution can be done with Fraunhofer or Mie calculation. Microtrac was the first on the market to introduce a special calculation mode to respect irregular shape instead of spherical particles. This algorithm has been further refined for transparent, absorbing and reflecting particles.

The BLUEWAVE is fitted with a sample circuit system (Sample dispersion controller) with short paths from dispersion unit to measurement cell to optimize sample flow. The speed of the centrifugal pump can be adjusted according to the viscosity or sedimentation properties of the sample. An ultrasonic tip is integrated and can be regulated by the software. All parameters important to homogenization and dispersion are thus highly controllable. All parts that come into contact with the sample are made from resistant materials like quartz glass, Teflon, stainless steel or Kalrex (chemical compatibility class I). A second integrated pump allows for automatic filling and cleaning. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:27:\"products.bluewave.intro.txt\";a:4:{s:4:\"text\";s:1189:\"Microtrac’s BLUEWAVE provides accurate, reliable, and repeatable particle size analysis for a diverse range of applications by utilizing the proven theory of Mie compensation for spherical particles and the proprietary principle of Modified Mie calculations for non-spherical particles.

The BLUEWAVE is optimized for materials below 1 micron delivering unsurpassed resolution. The BLUEWAVE measures particle size from 0.01 to 2,800 µm.

Microtrac has a tradition of delivering innovative solutions in particle size analysis through light scattering technology. The BLUEWAVE Laser Diffraction (LD) analyzer is a continuation of that tradition. Utilizing the patented tri-laser technology, the BLUEWAVE provides accurate, reliable and repeatable particle size information for applications ranging from research and development to production, process, and quality control. The BLUEWAVE complies with or exceeds ISO 13320-1 particle size analysis – light diffraction methods.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:39:\"products.breakthrough-curve-measurement\";a:4:{s:4:\"text\";s:30:\"Breakthrough curve measurement\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:53:\"products.camsizer-3d.3d-tracking.benefits_2d.bullet.1\";a:4:{s:4:\"text\";s:59:\"Particle size & shape measurement in random orientation\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:53:\"products.camsizer-3d.3d-tracking.benefits_2d.bullet.2\";a:4:{s:4:\"text\";s:58:\"Suitable for irregularly shaped material, natural products\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:53:\"products.camsizer-3d.3d-tracking.benefits_2d.bullet.3\";a:4:{s:4:\"text\";s:38:\"Results compatible with sieve analysis\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:47:\"products.camsizer-3d.3d-tracking.benefits_2d.hl\";a:4:{s:4:\"text\";s:22:\"Measurement in 2D Mode\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:53:\"products.camsizer-3d.3d-tracking.benefits_3d.bullet.1\";a:4:{s:4:\"text\";s:53:\"Separate distribution of length, width, and thickness\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:53:\"products.camsizer-3d.3d-tracking.benefits_3d.bullet.2\";a:4:{s:4:\"text\";s:42:\"Excellent detection of defective particles\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:53:\"products.camsizer-3d.3d-tracking.benefits_3d.bullet.3\";a:4:{s:4:\"text\";s:32:\"More accurate volume calculation\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:47:\"products.camsizer-3d.3d-tracking.benefits_3d.hl\";a:4:{s:4:\"text\";s:22:\"Measurement in 3D Mode\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:37:\"products.camsizer-3d.3d-tracking.hl.1\";a:4:{s:4:\"text\";s:31:\"3D Particle Tracking Technology\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:48:\"products.camsizer-3d.3d-tracking.hl.1.supplement\";a:4:{s:4:\"text\";s:21:\"Unique & Patented\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:37:\"products.camsizer-3d.3d-tracking.hl.2\";a:4:{s:4:\"text\";s:34:\"Revealing True Particle Morphology\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:37:\"products.camsizer-3d.3d-tracking.hl.3\";a:4:{s:4:\"text\";s:35:\"New Possibilities in Shape Analysis\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:48:\"products.camsizer-3d.3d-tracking.hl.3.supplement\";a:4:{s:4:\"text\";s:11:\"3D Beats 2D\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:38:\"products.camsizer-3d.3d-tracking.txt.1\";a:4:{s:4:\"text\";s:973:\"The CAMSIZER 3D utilizes a funnel, vibrating feed chute, LED strobe backlighting, powerful high-speed cameras, and sophisticated software to perform the measurements.

The particles travel down the vibrating feeder and fall into the sensing zone, creating a tumbling motion as they fall. The CAMSIZER software tracks each particle as it passes between light source and cameras, taking up to 250 images per second. As the particle is tracked, multiple images are recorded, measuring length, width, thickness, perimeter, area and various shape descriptors. The software automatically aligns the images for viewing, with up to 30 images per particle. This creates a “particle track”, a sequence of images of the same particle in different orientations. From this, distributions can be calculated, based on one or more size or shape parameters. Filters can be applied to isolate groups of particles of particular interest for more targeted analysis. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:38:\"products.camsizer-3d.3d-tracking.txt.2\";a:4:{s:4:\"text\";s:970:\"In the particle track, the software determines the width and the length of each particle projection:

Thus, for particles with three different dimensions (e. g. almonds), the size distributions of all three dimensions can be output separately.
3D Analysis is particularly advantageous for particles that are supposed to have a specific shape like spheres, rods (extrudates), lenses or ellipsoids (“rugby-ball”-shape). With the 3D tracking technology, each particle inevitably shows a wide variety of projections, which automatically also opens new possibilities in shape analysis.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:38:\"products.camsizer-3d.3d-tracking.txt.3\";a:4:{s:4:\"text\";s:749:\"In contrast, traditional 2D analysis captures only one image per particle in random orientation, even if the particle in measured multiple times at increased acquisition rate, there is no “mapping” of one image to another. Each individual image is treated as a new, independent measurement event. The true length, width, thickness, and shape is obscured by this. Rather, the “length” measured in 2D mode is a mixture between true 3D length and true 3D width; the “width” measured in 2D mode is a mixture between true 3D width and true 3D thickness. Only if the particles can be mechanically aligned, meaningful results are obtained in 2D mode. In the past, however, this was only feasible for some special particle shapes like cylinders.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:55:\"products.camsizer-3d.accessories.audit-trail-manager.hl\";a:4:{s:4:\"text\";s:19:\"Audit Trail Manager\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:56:\"products.camsizer-3d.accessories.audit-trail-manager.txt\";a:4:{s:4:\"text\";s:473:\"Audit Trail Manager
The Audit Trail Manager is a software extension that enables operation in accordance with the specifications of the 21 CFR part 11. This standard is particularly relevant in the pharmaceutical industry and its suppliers. The program option offers extensive user administration with various access levels and logs all processes in an encrypted database, the Audit Trail. Measurement results can be electronically signed for quality assurance.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:56:\"products.camsizer-3d.accessories.calibration-reticle.txt\";a:4:{s:4:\"text\";s:528:\"Calibration Reticle

A certified reference object is available for the CAMSIZER 3D, which allows the user to calibrate the device in a few seconds. This object is a glass pane that is inserted precisely into the measuring zone. Circles of various sizes are lithographically applied to the calibration reticle. The reproduction scale of the cameras is determined by measuring the circles. After completion of the calibration process, a protocol can be printed to document the proper condition of the CAMSIZER 3D.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:55:\"products.camsizer-3d.accessories.feeder-funnel-kits.txt\";a:4:{s:4:\"text\";s:546:\"Feeder and Funnel Kits

Different chutes and funnel sets are available for the CAMSIZER 3D, which are suitable for different sample volumes and particle size ranges. In 3D mode, the width of the feeder has an influence on the number of particle images in the 3D tracks, as narrower chutes enable a higher acquisition rate due to the reduced image size. However, the use of narrow chute increases the measurement time. MICROTRAC will be happy to advise you on the selection of the most suitable configuration for your application.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:52:\"products.camsizer-3d.accessories.guidance-sheets.txt\";a:4:{s:4:\"text\";s:468:\"Guidance Sheets
Guidance sheets are devices that channel the sample flow before it enters the measurement zone. This can be advantageous, for example, if particles jump on the chute due to their mechanical properties. The long shield prevents the particles from being thrown over the measuring shaft and guides them into the focal zone. Guidance sheets also provide protection from air currents that could cause unwanted turbulence in the measurement zone.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:53:\"products.camsizer-3d.accessories.sample-splitters.txt\";a:4:{s:4:\"text\";s:550:\"Sample Splitters
Any measurement is only as good as the sampling and sample preparation that preceded it. Particularly in the case of flowable bulk solids with a broad distribution, segregation will occur and lead to a wrong distribution of particle sizes in the sample aliquot. By using a sample divider, representative subsamples can be easily generated, guaranteeing a representative and meaningful result. MICROTRAC strongly recommends riffle splitters and rotary sample dividers from Retsch, also part of the Verder Scientific Group.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:36:\"products.camsizer-3d.accessories.txt\";a:4:{s:4:\"text\";s:261:\"Microtrac offers various sets of feed hoppers and chutes for specific applications. With the help of the feed guides, the sample stream can be oriented in a way that, for example, longish particles like extrudates are always measured in the correct orientation.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:48:\"products.camsizer-3d.applications.additional.txt\";a:4:{s:4:\"text\";s:392:\"Especially when products with specific geometry are produced, such as extrudates, abrasives, pharmaceutical pellets or fertilizer granules, shape analysis with the CAMSIZER 3D provides important measurement data determining the quality of the sample within a few minutes. Another advantage is that the method can be largely automated via automatic sample feeding systems or online connection.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:48:\"products.camsizer-3d.applications.coffee.caption\";a:4:{s:4:\"text\";s:157:\"Particle size distribution of a sample of coffee beans:
2D width (grey), 2D length (grey), 3D thickness (green), 3D width (red), 3D length (blue)
\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:43:\"products.camsizer-3d.applications.coffee.hl\";a:4:{s:4:\"text\";s:12:\"Coffee Beans\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:54:\"products.camsizer-3d.applications.coffee.hl.supplement\";a:4:{s:4:\"text\";s:24:\"The Power of 3D Analysis\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:44:\"products.camsizer-3d.applications.coffee.txt\";a:4:{s:4:\"text\";s:617:\"Many natural or man-made particles have three clearly distinguishable main axes. These include extrudates, pellets, or even almonds and coffee beans. The example shows the comparison of the length, width, and thickness measurement of a sample of coffee beans. For each size definition, the correct distribution is displayed. In comparison, the 2D length measurement is “too short” and the 2D width measurement is a mixture of the true thickness and true width. Consequently, the true thickness / length ratio of the 3D measurement is smaller and more narrowly distributed than the aspect ratio in the 2D analysis.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:47:\"products.camsizer-3d.applications.extrudates.hl\";a:4:{s:4:\"text\";s:10:\"Extrudates\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:58:\"products.camsizer-3d.applications.extrudates.hl.supplement\";a:4:{s:4:\"text\";s:26:\"Precise Length Measurement\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:48:\"products.camsizer-3d.applications.extrudates.txt\";a:4:{s:4:\"text\";s:527:\"With the patented 3D particle measurement, the length distribution of extrudates can be determined accurately. A rod-shaped ceramic extrudate with a length of 6-8 mm was measured in 3D mode, in 2D mode and with a caliper. The result shows that the 3D length corresponds to the result of the caliper, but the 2D length gives a distribution that is “too short”. Thus, the 3D image analysis is as accurate as the caliper measurement but characterizes a significantly larger number of particles in a fraction of the time. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:52:\"products.camsizer-3d.applications.fertilizer.caption\";a:4:{s:4:\"text\";s:225:\"Top: Non-spherical fertilizer pellet showing true shape on several images of the track, but also some circular projections.
Bottom: Spherical fertilizer pellets: Circular projection on every image of the 3D track.
\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:47:\"products.camsizer-3d.applications.fertilizer.hl\";a:4:{s:4:\"text\";s:10:\"Fertilizer\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:58:\"products.camsizer-3d.applications.fertilizer.hl.supplement\";a:4:{s:4:\"text\";s:37:\"Identification of Defective Particles\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:48:\"products.camsizer-3d.applications.fertilizer.txt\";a:4:{s:4:\"text\";s:516:\"Particle size and shape are important parameters for the quality of fertilizers. During the granulation process the pellets will be shaped as nearly spherical particles. A non-optimal process will first be recognized by a change in particle shape as the granulate will be ellipsoidal rather than spherical. The diameter will stay the same and it will not be reported in the standard sieve analysis. By measuring the roundness and aspect ratio the CAMSIZER 3D will detect even the smallest changes in product quality.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:53:\"products.camsizer-3d.applications.glass-beads.caption\";a:4:{s:4:\"text\";s:229:\"The 3D track shows two fused beads with an aspect ratio between 0.82 and 0.35 depending on the orientation. 3D analysis detects the true shape of particles from multiple projections and allows more accurate shape analysis.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:48:\"products.camsizer-3d.applications.glass-beads.hl\";a:4:{s:4:\"text\";s:11:\"Glass Beads\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:59:\"products.camsizer-3d.applications.glass-beads.hl.supplement\";a:4:{s:4:\"text\";s:34:\"Shape Analysis of Reflective Beads\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:49:\"products.camsizer-3d.applications.glass-beads.txt\";a:4:{s:4:\"text\";s:688:\"Glass beads are used, for example, in road markings to ensure traffic safety using high retro-reflectivity beads . Fused or deformed beads reduce the reflectivity, thus harming the product quality. The CAMSIZER 3D can measure the percentage of defective beads with better accuracy than conventional 2D detection because 2D only measures one random orientation, in which the true morphology of the particle can be obscured. The graph shows the distribution of the aspect ratio of a glass sample in 2D mode and in 3D mode. In the 3D measurement, more elongated particles are detected because each glass bead is examined from different angles which leads to a difference of 17% in this case.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:57:\"products.camsizer-3d.applications.pharma-granules.caption\";a:4:{s:4:\"text\";s:68:\"Coating differences of only 2.5 µm can be detected reliably.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:52:\"products.camsizer-3d.applications.pharma-granules.hl\";a:4:{s:4:\"text\";s:37:\"Pharmaceutical Granules & Pellets\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:63:\"products.camsizer-3d.applications.pharma-granules.hl.supplement\";a:4:{s:4:\"text\";s:32:\"High Resolution Size Measurement\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:53:\"products.camsizer-3d.applications.pharma-granules.txt\";a:4:{s:4:\"text\";s:671:\"The CAMSIZER 3D is ideally suited to characterize the growth of granules and pellets, i.e. in a granulation process. The results provide information about the thickness and homogeneity of coatings, dust fractions or oversized particles (agglomerates). This information is the basis for the prediction of such complex parameters as the release rate of an active pharmaceutical ingredient (API) from the granule in the human body. The example shows the initial material (green) and four coating steps (two repeated measurements for each). Even the last process step with a coating thickness of only 2.5 µm is reliably detected thanks to the extremely high reproducibility.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:65:\"products.camsizer-3d.applications.superabsorbent-polymers.caption\";a:4:{s:4:\"text\";s:53:\"Example image of Superabsorbent Polymers (SAP)\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:60:\"products.camsizer-3d.applications.superabsorbent-polymers.hl\";a:4:{s:4:\"text\";s:23:\"Superabsorbent Polymers\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:71:\"products.camsizer-3d.applications.superabsorbent-polymers.hl.supplement\";a:4:{s:4:\"text\";s:35:\"CAMSIZER 3D Replaces Sieve Analysis\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:61:\"products.camsizer-3d.applications.superabsorbent-polymers.txt\";a:4:{s:4:\"text\";s:571:\"Superabsorbent polymers can absorb large amounts of a liquid relative to their own mass. They are used in granular form, for example in baby diapers as a drying agent. Particle size is an essential quality criterion with a distribution that is usually between 100 µm and 1000 µm. Small particle size equals high specific surface area, hence faster liquid absorption. The specifications are typically based on classic sieve analyses. The CAMSIZER 3D delivers 100 % equivalent results and can fully replace this established but time-consuming and error-prone technique.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:35:\"products.camsizer-3d.autosampler.hl\";a:4:{s:4:\"text\";s:32:\"Autosampler for Batch Processing\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:46:\"products.camsizer-3d.autosampler.hl.supplement\";a:4:{s:4:\"text\";s:42:\"The Perfect Solution for Busy Laboratories\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:36:\"products.camsizer-3d.autosampler.txt\";a:4:{s:4:\"text\";s:701:\"The Autosampler is a fully automatic sample feeding system for the CAMSIZER 3D which can be easily retrofitted to existing instruments.

It processes up to 14 samples (extendable to 40 samples or more) in a row without the need for the operator’s intervention. The correct measurement settings can be read from the barcodes on the sample beaker. The Autosampler is suitable for continuous operation and allows effortlessly measuring more than 150 samples per day, even by untrained operators.

Typical applications for the CAMSIZER 3D Autosampler system include sand, superabsorbent polymers, rice, coke, tea, rubber granules, EPS, sugar, glass beads, salt, and many more.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:41:\"products.camsizer-3d.autosampler_title.hl\";a:4:{s:4:\"text\";s:11:\"Autosampler\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.camsizer-3d.benefits.1\";a:4:{s:4:\"text\";s:52:\"Patented 3D analysis with "Particle Tracking”\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:32:\"products.camsizer-3d.benefits.10\";a:4:{s:4:\"text\";s:36:\"Powerful, long-life LED light source\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:32:\"products.camsizer-3d.benefits.11\";a:4:{s:4:\"text\";s:16:\"Maintenance-free\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.camsizer-3d.benefits.2\";a:4:{s:4:\"text\";s:33:\"Up to 30 images of every particle\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.camsizer-3d.benefits.3\";a:4:{s:4:\"text\";s:81:\"Particle size and shape analysis from 20 µm to 30 mm without hardware adjustment\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.camsizer-3d.benefits.4\";a:4:{s:4:\"text\";s:38:\"Short measuring time of 2 to 5 minutes\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.camsizer-3d.benefits.5\";a:4:{s:4:\"text\";s:22:\"High sample throughput\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.camsizer-3d.benefits.6\";a:4:{s:4:\"text\";s:36:\"100% detection of oversize particles\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.camsizer-3d.benefits.7\";a:4:{s:4:\"text\";s:41:\"Excellent compatibility to sieve analysis\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.camsizer-3d.benefits.8\";a:4:{s:4:\"text\";s:25:\"Excellent reproducibility\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.camsizer-3d.benefits.9\";a:4:{s:4:\"text\";s:59:\"Evaluation of > 250 images / s in real time (in 3D mode)\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:32:\"products.camsizer-3d.benefits.hl\";a:4:{s:4:\"text\";s:40:\"The Most Powerful Dynamic Image Analysis\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:30:\"products.camsizer-3d.better.hl\";a:4:{s:4:\"text\";s:23:\"Better Than Ever Before\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.camsizer-3d.better.txt\";a:4:{s:4:\"text\";s:605:\"Compared to previous CAMSIZER models the CAMSIZER 3D features a significantly higher camera resolution and frame rate by employing a ZOOM camera with 9 megapixels and a BASIC camera with 5 megapixels at a frame rate of up to 250 fps.

This allows superior image quality and particle detection, for all coarse and fine samples. Broad and narrow distributions are measured with the same accuracy and precision.

The image width of the ZOOM camera is the same as that of the BASIC camera, which ensures excellent reproducibility of the measurement results within a short measurement time.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:45:\"products.camsizer-3d.changeover.hl.supplement\";a:4:{s:4:\"text\";s:47:\"Faster, more precise and additional information\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:49:\"products.camsizer-3d.dimensions-software.bullet.1\";a:4:{s:4:\"text\";s:19:\"Intuitive operation\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:50:\"products.camsizer-3d.dimensions-software.bullet.10\";a:4:{s:4:\"text\";s:43:\"21 CFR part 11 compatible version available\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:49:\"products.camsizer-3d.dimensions-software.bullet.2\";a:4:{s:4:\"text\";s:31:\"Clear arrangement of workspaces\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:49:\"products.camsizer-3d.dimensions-software.bullet.3\";a:4:{s:4:\"text\";s:29:\"User-defined report templates\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:49:\"products.camsizer-3d.dimensions-software.bullet.4\";a:4:{s:4:\"text\";s:45:\"Comparison of measurement results at a glance\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:49:\"products.camsizer-3d.dimensions-software.bullet.5\";a:4:{s:4:\"text\";s:46:\"Newly designed “Particle Viewer” workspace\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:49:\"products.camsizer-3d.dimensions-software.bullet.6\";a:4:{s:4:\"text\";s:46:\"Consistent measurement conditions through SOPs\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:49:\"products.camsizer-3d.dimensions-software.bullet.7\";a:4:{s:4:\"text\";s:43:\"Automatic testing of product specifications\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:49:\"products.camsizer-3d.dimensions-software.bullet.8\";a:4:{s:4:\"text\";s:21:\"Different user levels\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:49:\"products.camsizer-3d.dimensions-software.bullet.9\";a:4:{s:4:\"text\";s:15:\"LIMS connection\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:43:\"products.camsizer-3d.dimensions-software.hl\";a:4:{s:4:\"text\";s:35:\"DIMENSIONS Software for CAMSIZER 3D\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:54:\"products.camsizer-3d.dimensions-software.hl.supplement\";a:4:{s:4:\"text\";s:39:\"Everything in View From Start to Finish\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:44:\"products.camsizer-3d.dimensions-software.txt\";a:4:{s:4:\"text\";s:338:\"All parameters at a glance: Dynamic Digital Image Analysis provides a wealth of information about the sample material at hand. The powerful DIMENSIONS software records dozens of parameters on each individual particle and presents the results in a clear, standard-compliant measurement report that can be adapted to individual needs. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:41:\"products.camsizer-3d.dual-camera.bullet.1\";a:4:{s:4:\"text\";s:23:\"9 megapixel ZOOM camera\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:41:\"products.camsizer-3d.dual-camera.bullet.2\";a:4:{s:4:\"text\";s:24:\"5 megapixel BASIC camera\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:41:\"products.camsizer-3d.dual-camera.bullet.3\";a:4:{s:4:\"text\";s:65:\"Calibration within a few seconds with certified reference objects\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:41:\"products.camsizer-3d.dual-camera.bullet.4\";a:4:{s:4:\"text\";s:48:\"Wide measuring range without hardware adjustment\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:41:\"products.camsizer-3d.dual-camera.bullet.5\";a:4:{s:4:\"text\";s:43:\"Non-contact and non-destructive measurement\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:41:\"products.camsizer-3d.dual-camera.bullet.6\";a:4:{s:4:\"text\";s:22:\"Dust protected housing\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:41:\"products.camsizer-3d.dual-camera.bullet.7\";a:4:{s:4:\"text\";s:54:\"Rugged construction for use in production environments\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:41:\"products.camsizer-3d.dual-camera.bullet.8\";a:4:{s:4:\"text\";s:91:\"Automatic dust extraction in the measurement chamber to protect the user and the instrument\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:35:\"products.camsizer-3d.dual-camera.hl\";a:4:{s:4:\"text\";s:58:\"Extremely Wide Measuring Range with Dual Camera Technology\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:36:\"products.camsizer-3d.dual-camera.txt\";a:4:{s:4:\"text\";s:985:\"Microtrac’s unique dual camera technology is a landmark in the development of Dynamic Image Analysis. By simultaneously employing two cameras with different magnifications, extremely wide dynamic measuring ranges are achieved. This is accomplished without hardware adjustments or modifications and without compromising the accuracy.

Each camera is specialized for one size range. The ZOOM camera analyzes fine particles with highest resolution whereas the BASIC camera detects the larger particles with excellent statistics. A special algorithm combines the information provided by both cameras, covering a size range of more than three orders of magnitude.

This arrangement resolves a significant drawback of many image analysis systems that employ only one camera, e. g. microscopes. Such instruments either cannot correctly report the fine particles in wide size distributions, or the large particles are not captured reliably due to the small field of view.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.camsizer-3d.eyecatcher\";a:4:{s:4:\"text\";s:40:\"Unique and patented 3D particle tracking\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:35:\"products.camsizer-3d.intro.bullet.1\";a:4:{s:4:\"text\";s:352:\"Unique 3D Analysis: Thanks to the extended field of view and long drop distance, each particle is analyzed up to 30 times and in different orientations, making the actual, three-dimensional particle morphology accessible for analysis. The evaluation of the “3D tracks” also provides much more meaningful shape analysis than ever before.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:35:\"products.camsizer-3d.intro.bullet.2\";a:4:{s:4:\"text\";s:387:\"Proven 2-Camera System: The new ZOOM camera inside the CAMSIZER 3D (9 MPx) allows for the evaluation of fine particles with great accuracy. In combination with the BASIC camera (5 Mpx), this enables a wide measuring range from 20 µm to 30 mm. CAMSIZER 3D is the first choice for the analysis of dry, free-flowing bulk solids in both quality control and for research applications.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:30:\"products.camsizer-3d.intro.txt\";a:4:{s:4:\"text\";s:215:\"The CAMSIZER 3D particle analyzer combines all the advantages of dynamic image analysis (ISO 13322-2) in a completely redesigned measuring system, setting new standards in the characterization of bulk solids.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:53:\"products.camsizer-3d.replacing_sieve_analysis.caption\";a:4:{s:4:\"text\";s:95:\"Perfect compliance of sieve analysis and CAMSIZER measurement results for granulated fertilizer\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.camsizer-3d.review.txt.1\";a:4:{s:4:\"text\";s:81:\"I am truly amazed by the CAMSIZER’s ability to accurately measure the material.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.camsizer-3d.review.txt.2\";a:4:{s:4:\"text\";s:68:\"I highly recommend for any and all particle size and shape analysis.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.camsizer-3d.review.txt.3\";a:4:{s:4:\"text\";s:97:\"This product covers a very important area in materials analysis. Measurements are simple to make.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:57:\"products.camsizer-3d.table.autosampler_compressed-air_bar\";a:4:{s:4:\"text\";s:10:\"6 to 8 bar\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:50:\"products.camsizer-3d.table.autosampler_sample-feed\";a:4:{s:4:\"text\";s:209:\"14 samples can be placed on the conveyor belt simultaneously (opt. up to 40 samples);
continuous (and unattended) operation possible; sample feed by electro-pneumatic robot arm;
emergency stop-button\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.camsizer-3d.table.camera\";a:4:{s:4:\"text\";s:64:\"Dual Camera Technology, 9 MP + 5 MP; up to 250 images per second\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:44:\"products.camsizer-3d.table.measurement-range\";a:4:{s:4:\"text\";s:63:\"recommended range 20 μm to 30 mm (with no hardware adjustment)\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:46:\"products.camsizer-3d.table.measuring-principle\";a:4:{s:4:\"text\";s:57:\"2D and 3D Dynamic Image Analysis according to ISO 13322-2\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:41:\"products.camsizer-3d.table.measuring-time\";a:4:{s:4:\"text\";s:63:\"approx. 2 to 5 min (depends on required measurement statistics)\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:37:\"products.camsizer-3d.table.parameters\";a:4:{s:4:\"text\";s:62:\"particle size, shape, volume, density, transparency and number\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:35:\"products.camsizer-3d.table.software\";a:4:{s:4:\"text\";s:20:\"Microtrac DIMENSIONS\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:45:\"products.camsizer.dual_camera_technology_text\";a:4:{s:4:\"text\";s:1269:\"The dual camera system of the CAMSIZER P4 is superior to any other dynamic image analyzer in terms of width of size range, analysis speed, accurate shape detection and resolution.

The dual camera system provides optimized analysis conditions for small and large particles without compromising resolution or detection probability.

Therefore, wide range measurements from 20 μm to 30 mm with no hardware adjustments can be reproduced with excellent precision. The vibratory chute feeds the samples to the CAMSIZER P4 and all particles fall individually through the measurement field. During the measurement procedure the two digital cameras (low noise CCDs) operate simultaneously. The basic camera detects large particles and the zoom camera detects the small ones. The combination of the varying image scale on each of these cameras allows both small and large particles to be captured at a high resolution.

The frame rate and the area where the particles are detected determine the speed in which the particles can be measured. In order to replace the dual camera system with a single camera, it would require images with more than 40 megapixels with a frame rate of at least 30 Hz, which is impossible by today\'s standards.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:46:\"products.camsizer.dual_camera_technology_title\";a:4:{s:4:\"text\";s:22:\"Dual Camera Technology\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:42:\"products.camsizer.m1.accessories.bullets.1\";a:4:{s:4:\"text\";s:51:\"Holder for eight standard object plates, 76 x 28 mm\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:42:\"products.camsizer.m1.accessories.bullets.2\";a:4:{s:4:\"text\";s:42:\"Holder for four object plates, 76 x 52 mm \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:42:\"products.camsizer.m1.accessories.bullets.3\";a:4:{s:4:\"text\";s:29:\"Glass plate, 147 mm x 313 mm \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:42:\"products.camsizer.m1.accessories.bullets.4\";a:4:{s:4:\"text\";s:23:\"Holder for round filter\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:46:\"products.camsizer.m1.accessories.captions.mjet\";a:4:{s:4:\"text\";s:30:\"Sample preparation with M-Jet \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:53:\"products.camsizer.m1.accessories.captions.objectives.\";a:4:{s:4:\"text\";s:65:\"Optics with large working distance ensure reliable results  \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:50:\"products.camsizer.m1.accessories.captions.software\";a:4:{s:4:\"text\";s:47:\"Intuitive software, including Particle X-Plorer\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:56:\"products.camsizer.m1.accessories.captions.wide_selection\";a:4:{s:4:\"text\";s:29:\"Sample holder for Camsizer M1\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:40:\"products.camsizer.m1.accessories.intro.2\";a:4:{s:4:\"text\";s:139:\"In addition to the standard lenses with magnifications of 2.5x, 5x, 10x, 20x and 50x, one more lens can be used, for example 1.25 or 100x. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:36:\"products.camsizer.m1.accessories.txt\";a:4:{s:4:\"text\";s:247:\"The wide range of accessories available for CAMSIZER M1 provides everything you need for successful particle analysis. Four different sample holders can be quickly and easily inserted into the sample stage and ensure a high degree of flexibility. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:37:\"products.camsizer.m1.applications.txt\";a:4:{s:4:\"text\";s:249:\"Static Image Analysis with the CAMSIZER M1 is suitable for characterizing a wide range of disperse systems. 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An object slide with sample material is shifted stepwise along a camera system which acquires one image per step. The samples may be dry or wet (powders or suspensions). In contrast to dynamic image analysis, the sample is stationary during the measurement process; hence, the particle images show excellent quality and richness of detail.

At the start of each measurement, the particle size / particle shape analyzer CAMSIZER M1 determines the focal plane for the measurement area which ensures that all particle images in the selected area are pin-sharp (tilt compensation). All image and measurement data can be stored during analysis, providing manifold possibilities for subsequent data evaluation with the Particle X-Plorer module. When the measurement is finished, an overview image gives the user a good idea of the particle quality. Particles stretching over more than one measurement field can be pieced together by using the innovative stitching algorithm and may thus be evaluated although their size is larger than 1500 microns. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:32:\"products.camsizer.m1.intro.2.txt\";a:4:{s:4:\"text\";s:395:\"Up to six different magnifications and the precise sample stage with a position accuracy of <3 μm ensure optimum measurement conditions over the entire measuring range. The results are displayed as size and shape distributions with a variety of configurable measurement parameters. The Particle X-Plorer software allows for subsequent display and analysis of every single recorded particle. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:29:\"products.camsizer.m1.intro.hl\";a:4:{s:4:\"text\";s:59:\"Fully Automated static Image Analysis for very fine powders\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:30:\"products.camsizer.m1.intro.txt\";a:4:{s:4:\"text\";s:623:\"CAMSIZER M1 uses the measuring principle of static image analysis to determine the particle size and particle shape in a range from 0.5 μm to 1500 μm. The basis of the analyzer is a powerful microscope whose hard- and software is optimized for automated particle analysis.

For static image analysis (acc. to ISO 13322-1) the sample needs to be placed on an object slide or other carrier and is moved by an automatic sample stage to be photographed step by step by an 18.1 Megapixel camera. The sample remains static during image acquisition which ensures images of high quality and richness of detail. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:35:\"products.camsizer.m1.mjet.bullets.1\";a:4:{s:4:\"text\";s:50:\"Dispersion by negative pressure 10 kPa – 70 kPa \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:35:\"products.camsizer.m1.mjet.bullets.2\";a:4:{s:4:\"text\";s:29:\"Variety of dispersion nozzles\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:35:\"products.camsizer.m1.mjet.bullets.3\";a:4:{s:4:\"text\";s:31:\"Storage of eight SOPs possible \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:35:\"products.camsizer.m1.mjet.bullets.4\";a:4:{s:4:\"text\";s:52:\"Comfortable operation via touch pad and control knob\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:36:\"products.camsizer.m1.mjet.bullets.hl\";a:4:{s:4:\"text\";s:22:\"Benefits of the M-Jet:\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"products.camsizer.m1.mjet.hl\";a:4:{s:4:\"text\";s:46:\"Perfect Powder Dispersion with the M-Jet \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:39:\"products.camsizer.m1.mjet.hl.supplement\";a:4:{s:4:\"text\";s:53:\"Efficient sample preparation for microscopic analysis\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:35:\"products.camsizer.m1.mjet.intro.txt\";a:4:{s:4:\"text\";s:576:\"As any analysis is just as good as the preceding sample preparation, the dispersion module M-Jet was developed to ensure a homogeneous distribution and efficient dispersion of dry powders before measurement with CAMSIZER M1.

The new dispersion unit M-Jet ensures optimum sample preparation on various carriers for microscopic analysis. The function principle is based on negative pressure, compressed air supply is not required. Thanks to the unique nozzle geometry even finest powders are effectively separated and distributed uniformly on the object plate. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:43:\"products.camsizer.m1.mjet.static_dynamic.hl\";a:4:{s:4:\"text\";s:34:\"Static or Dynamic Image Analysis? \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:44:\"products.camsizer.m1.mjet.static_dynamic.txt\";a:4:{s:4:\"text\";s:1361:\"Particle characterization can be performed by Static or Dynamic Image Analysis. For Dynamic Image Analysis (ISO 13322-2), a particle stream is generated which is photographed and evaluated by cameras. Static Image Analysis (ISO 13322-1) is based on microscopy; the particles are placed on an object plate which is photographed step by step. Hence, the difference lies in the particle movement: for Dynamic Image Analysis the particles are captured in motion, for Static Image Analysis, they remain motionless.

Dynamic Image Analysis is ideally suited for routine measurements of bulk goods, powders, granules and suspensions. This method is characterized by high sample throughput, reliability and excellent reproducibility. It is often used as an alternative to conventional sieve analysis.

Static Image Analysis is predominantly used for measuring narrow size distributions with a focus on the characterization of very fine particles. This method provides high resolution and pin-sharp particle images which allow for size and shape description with utmost accuracy. This technique is widely used in research & development applications.

With the CAMSIZER series Microtrac offers powerful analysis systems for both measurement techniques. We are happy to advise you on which method is best suited for your requirements. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:42:\"products.camsizer.m1.superiority.bullets.1\";a:4:{s:4:\"text\";s:137:\"The analyzer is equipped with five lenses with magnifications from 2.5x to 50x. An additional lens (e. g. 100x) can be added on request. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:42:\"products.camsizer.m1.superiority.bullets.2\";a:4:{s:4:\"text\";s:120:\"An 18.1 Megapixel color camera captures particle images with excellent resolution for highly accurate analysis results. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:42:\"products.camsizer.m1.superiority.bullets.3\";a:4:{s:4:\"text\";s:101:\"The sample stage is controlled with a three-axis joystick with four programmable function keys. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:42:\"products.camsizer.m1.superiority.bullets.4\";a:4:{s:4:\"text\";s:252:\"The highly precise sample stage has a wide traversing range of 225 mm x 76 mm with a position accuracy of <3 μm and a positional repeatability of <1 μm. Thus, it is possible to analyze an area which corresponds to eight standard object slides. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:42:\"products.camsizer.m1.superiority.bullets.5\";a:4:{s:4:\"text\";s:151:\"The sample can be analyzed in transmitted or incident light. Powerful LED light sources guarantee homogeneous illumination and excellent image quality.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:42:\"products.camsizer.m1.superiority.bullets.6\";a:4:{s:4:\"text\";s:107:\"The highly efficient dispersion module M-Jet ensures perfect preparation of powder samples within seconds. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:35:\"products.camsizer.m1.superiority.hl\";a:4:{s:4:\"text\";s:21:\"Superiority in Detail\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:48:\"products.camsizer.p4.accessories.feed_chutes.txt\";a:4:{s:4:\"text\";s:387:\"The flow behavior of the sample is determined by the material properties and can be favorably influenced by choosing a suitable feed chute coating. Feed chutes made from high-quality stainless steel are used as standard. For some applications chutes made from aluminum can be advantageous. For the effective feed of different-sized particles, chutes with different widths are available. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:48:\"products.camsizer.p4.accessories.feed_guides.txt\";a:4:{s:4:\"text\";s:375:\"The use of a feed guide ensures that all particles fall in one plane without unwanted turbulence and can therefore be measured accurately. For special applications feed guides are available that align the particles in a preferred direction (e. g. extrudates). Our patented motorized guidance sheet enables the independent length and diameter analysis of elongated particles. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:49:\"products.camsizer.p4.accessories.feed_hoppers.txt\";a:4:{s:4:\"text\";s:295:\"Different hopper sizes are available for different amounts of sample. Hoppers can be supplied with a capacity of 0.6 l as well as 2.8 l and 3.5 l. For optimal sample feed these hoppers are available in different materials and with different coatings (stainless steel, aluminum hard-coat, etc.). \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:46:\"products.camsizer.p4.accessories.hl.supplement\";a:4:{s:4:\"text\";s:43:\"Optimum configuration for each application \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:36:\"products.camsizer.p4.applications.hl\";a:4:{s:4:\"text\";s:13:\"Applications \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:35:\"products.camsizer.p4.autosampler.hl\";a:4:{s:4:\"text\";s:15:\"The Autosampler\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:46:\"products.camsizer.p4.autosampler.hl.supplement\";a:4:{s:4:\"text\";s:36:\"CAMSIZER P4 in continuous operation \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:36:\"products.camsizer.p4.autosampler.txt\";a:4:{s:4:\"text\";s:389:\"The Autosampler is a fully automatic sample feeding system for the CAMSIZER P4 which can be easily retrofitted to existing instruments. It processes up to 14 samples (extendable to 40 samples) in a row without the need for the operator’s intervention. The correct measurement settings are read from the barcodes on the sample beaker. 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Thus, it is easily possible to replace time-consuming sieve analysis with CAMSIZER P4 without having to modify trusted quality criteria. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:34:\"products.camsizer.p4.comparison.hl\";a:4:{s:4:\"text\";s:61:\"By using the CAMSIZER P4, you benefit from these advantages: \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:39:\"products.camsizer.p4.comparison.sieve.1\";a:4:{s:4:\"text\";s:24:\"Simple size distribution\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:39:\"products.camsizer.p4.comparison.sieve.2\";a:4:{s:4:\"text\";s:20:\"Sample fractionation\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:39:\"products.camsizer.p4.comparison.sieve.3\";a:4:{s:4:\"text\";s:14:\"Time consuming\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:39:\"products.camsizer.p4.comparison.sieve.4\";a:4:{s:4:\"text\";s:11:\"Error prone\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:41:\"products.camsizer.p4.comparison.sieve.txt\";a:4:{s:4:\"text\";s:414:\"Sieve analysis is a well-known method for particle size characterization. While it is easy to carry out, it does take several process steps, is highly time consuming as well as error prone. We have a created a brochure to help decide why you should consider switching from sieving to dynamic image analysis to get better results in less time.

By using the CAMSIZER P4, you benefit from these advantages:\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.camsizer.p4.features.1\";a:4:{s:4:\"text\";s:92:\"Particle size and particle shape analysis from 20 μm to 30 mm without hardware adjustments \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:32:\"products.camsizer.p4.features.10\";a:4:{s:4:\"text\";s:27:\"Virtually maintenance-free \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.camsizer.p4.features.2\";a:4:{s:4:\"text\";s:67:\"Broad dynamic range for measuring wide particle size distributions \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.camsizer.p4.features.3\";a:4:{s:4:\"text\";s:67:\"High resolution for narrow mono-modal or multi-modal distributions \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.camsizer.p4.features.4\";a:4:{s:4:\"text\";s:35:\"100% detection of oversized grains \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.camsizer.p4.features.5\";a:4:{s:4:\"text\";s:42:\"Fully comparable to sieve analysis results\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.camsizer.p4.features.6\";a:4:{s:4:\"text\";s:135:\"A wealth of evaluation options (different size models, a variety of shape parameters, particle library, single frame evaluation, etc.) \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.camsizer.p4.features.7\";a:4:{s:4:\"text\";s:27:\"Outstanding reproducibility\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.camsizer.p4.features.8\";a:4:{s:4:\"text\";s:40:\"Evaluation of 60 images / s in real time\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.camsizer.p4.features.9\";a:4:{s:4:\"text\";s:26:\"Powerful LED light source \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:32:\"products.camsizer.p4.features.hl\";a:4:{s:4:\"text\";s:30:\"Particle Analyzer CAMSIZER P4 \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:39:\"products.camsizer.p4.function_principle\";a:4:{s:4:\"text\";s:1608:\"The particle analyzer CAMSIZER P4 uses the principle of dynamic image analysis (ISO 13322-2). The sample is transported to the measurement field via a vibratory feeder where the particles drop between a planar light source and two CCD cameras. The projected particle shadows are recorded at a rate of more than 60 images per second and analyzed. In this way almost every single particle in the bulk material flow is recorded and evaluated. Thus, it is possible to measure a wide range of particles from 20 µm to 30 mm extremely accurately, without having to switch measuring ranges or make adjustments.

Thanks to its extremely short exposure times, the novel LED strobe light source allows very sharp images to be produced and distortion-free determination of the projection areas. The sharp contrast allows, at the same time, details of the surface structure of the particles to be seen almost like through a microscope. The frequency of the light flashes is so high that the strobing is not visible to the naked eye.

With the unique dual-camera system optimum measurement conditions over the entire size range and therefore maximum precision is obtained with the particle analyzer. The zoom camera provides maximum resolution down to the fine range, while the basic camera also records larger particles and guarantees a high statistical certainty in the results. This ensures the excellent reproducibility of the CAMSIZER measuring results, even if only a relatively small sample amount is available. The results are saved in at least 3,000 size classes. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:44:\"products.camsizer.p4.important_advantages.hl\";a:4:{s:4:\"text\";s:66:\"The advantages of the Camsizer P4 in comparison to sieve analysis \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:52:\"products.camsizer.p4.important_advantages.supplement\";a:4:{s:4:\"text\";s:28:\" Better results in less time\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:30:\"products.camsizer.p4.intro.txt\";a:4:{s:4:\"text\";s:990:\"The CAMSIZER P4 analyzes particle size and shape of dry, free flowing bulk materials in a size range from 20 μm to 30 mm via Dynamic Image Analysis (ISO 13322-2).

The software controlled feed chute conveys the sample to the measurement zone, ensuring uniform sample feed and consistent analysis conditions. The particle stream passes an ultra-bright planar LED stroboscopic light source; the resulting shadow projections are captured and evaluated by a camera system. The particles fall freely during analysis, so the procedure is contact-free and non-destructive.

The CAMSIZER P4 particle analyzer provides extremely sharp images and determines a variety of different size and shape parameters for each detected particle. Analysis of hundreds of thousands or even millions of individual particles guarantees results with high statistical reliability. The typical measurement time is only 1 to 3 minutes with 60 images being evaluated per second in real time.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:34:\"products.camsizer.p4.principle.txt\";a:4:{s:4:\"text\";s:243:\"Two cameras operate during measurement: the BASIC camera (red) analyzes the larger particles, the ZOOM camera (blue) captures the small particles. This procedure ensures optimum measurement conditions for all particle sizes in a distribution. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:32:\"products.camsizer.p4.software.hl\";a:4:{s:4:\"text\";s:44:\"Powerful Measurement and Evaluation Software\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:43:\"products.camsizer.p4.software.hl.supplement\";a:4:{s:4:\"text\";s:44:\"Complex task with a quick and easy solution \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:35:\"products.camsizer.p4.software.txt.1\";a:4:{s:4:\"text\";s:768:\"All parameters at a glance: Dynamic Image Analysis provides a wealth of information about the sample material to be analyzed. The high-performance CAMSIZER software measures dozens of parameters from every single particle and presents the results in a clearly structured, standard compliant measurement report.

Functions like the comprehensive export option and the generation of synoptical tables or trend analyses are routine. Also, storage and automatic monitoring of predetermined product specifications are part of the software. Password protection prevents undesired modifications of measurement settings; hence, analyses may also be carried out by non-technical staff.

The CAMSIZER software is easily adapted to customer requirements: \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:43:\"products.camsizer.p4.software.txt.bullets.1\";a:4:{s:4:\"text\";s:60:\"Display of size and shape distributions as graphs or tables \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:43:\"products.camsizer.p4.software.txt.bullets.2\";a:4:{s:4:\"text\";s:49:\"Up to 3000 freely selectable measurement classes \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:43:\"products.camsizer.p4.software.txt.bullets.3\";a:4:{s:4:\"text\";s:23:\"Statistic data analysis\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:43:\"products.camsizer.p4.software.txt.bullets.4\";a:4:{s:4:\"text\";s:38:\"Comparative tables and trend analyses \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:43:\"products.camsizer.p4.software.txt.bullets.5\";a:4:{s:4:\"text\";s:41:\"Clearly structured measurement protocols \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:43:\"products.camsizer.p4.software.txt.bullets.6\";a:4:{s:4:\"text\";s:50:\"Different password-protected user levels provided \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:43:\"products.camsizer.p4.software.txt.bullets.7\";a:4:{s:4:\"text\";s:25:\"LIMS connection standard \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:43:\"products.camsizer.p4.software.txt.bullets.8\";a:4:{s:4:\"text\";s:52:\"21 CFR part 11 compliant software version available \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:43:\"products.camsizer.p4.software.txt.bullets.9\";a:4:{s:4:\"text\";s:36:\"Automatic testing of specifications \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:39:\"products.camsizer.p4.wide.measurings.hl\";a:4:{s:4:\"text\";s:68:\"Extremely Wide Measuring Range due to unique Dual Camera Technology \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:40:\"products.camsizer.p4.wide.measurings.txt\";a:4:{s:4:\"text\";s:1128:\"Microtrac’s unique dual camera technology is a landmark in the development of Dynamic Image Analysis (DIA). By simultaneously employing two cameras with different magnifications, extremely wide dynamic measuring ranges are archieved. This is accomplished without hardware adjustments or modifications and without compromising accuracy.

Each camera is specialized for one measuring range. The ZOOM camera analyzes fine particles with highest precision whereas the BASIC camera detects the larger particles with great statistical certainity. A special algorithm combines the information provided by both cameras and delivers the exact size distribution in a possible range of more than three decades!

This arrangement resolves a significant drawback of many image analysis systems that employ only one camera, e. g. microscopes. Such instruments either cannot correctly report the fine particles in wide size distributions, or the large particles are not captured due to the small field of view. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:36:\"products.camsizer.x2.accessoires.txt\";a:4:{s:4:\"text\";s:321:\"Microtrac offers a variety of hoppers and chutes for special applications. Dispersion nozzles and cuvettes are available in different aperture sizes to ensure optimum conditions for each measurement. Calibration of the CAMSIZER X2 only takes one minute and can be carried out by using a high-precision reference reticle. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.camsizer.x2.advantages.1\";a:4:{s:4:\"text\";s:105:\"Particle size and particle shape analysis from 0.8 μm to 8 mm with Dynamic Image Analysis (ISO 13322-2) \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:34:\"products.camsizer.x2.advantages.10\";a:4:{s:4:\"text\";s:70:\"Ultra-strong LEDs and high-resolution cameras for the clearest results\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:34:\"products.camsizer.x2.advantages.11\";a:4:{s:4:\"text\";s:43:\"Easy operation, virtually maintenance-free \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.camsizer.x2.advantages.2\";a:4:{s:4:\"text\";s:44:\"Precise analysis of wide size distributions \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.camsizer.x2.advantages.3\";a:4:{s:4:\"text\";s:70:\"Excellent resolution for narrow or multimodal size distributions \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.camsizer.x2.advantages.4\";a:4:{s:4:\"text\";s:64:\"Detection of small amounts of oversized or undersized particles \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.camsizer.x2.advantages.5\";a:4:{s:4:\"text\";s:70:\"Fully comparable to sieve analysis and laser diffraction results \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.camsizer.x2.advantages.6\";a:4:{s:4:\"text\";s:140:\"A wealth of evaluation options (different size models, a variety of shape parameters, particle library, single frame evaluation, etc.) \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.camsizer.x2.advantages.7\";a:4:{s:4:\"text\";s:28:\"Outstanding reproducibility \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.camsizer.x2.advantages.8\";a:4:{s:4:\"text\";s:56:\"Measurement time 1 – 3 minutes, high sample throughput\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.camsizer.x2.advantages.9\";a:4:{s:4:\"text\";s:58:\"Modular „X-Change“ system for dry and wet measurement \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:40:\"products.camsizer.x2.comparison_sieve.hl\";a:4:{s:4:\"text\";s:64:\"
Comparability to Sieve Analysis and Laser Diffraction
\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:41:\"products.camsizer.x2.comparison_sieve.txt\";a:4:{s:4:\"text\";s:1327:\"„Size“ is only defined unambiguously for spherical particles: the diameter is identical in all directions and orientations. For non-spherical particles, however, the dimensions can vary strongly, depending on the orientation and direction of measurement. Traditional sieve analysis, for example, separates particles on a wire mesh sieve stack with different aperture sizes into fractions.

The smallest possible sieve aperture that a particle can pass is defined by the particle’s smallest projection area. Hence, sieve analysis measures particles in a preferential orientation and provides information which is mostly based on the width of the particle. Particle size analysis with Laser Diffraction (LD) relates all measuring data to the diameter of a spherical particle model. Only dynamic image analysis offers different size definitions which can be ascertained simultaneously. This makes the results comparable to those obtained with other techniques.

The outstanding strength of DIA is the possibility to measure width and length of a particle and to provide a size distribution based on these parameters. The particle width (red curve) can easily be compared to sieve analysis results.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:46:\"products.camsizer.x2.dual_camera_technology.hl\";a:4:{s:4:\"text\";s:68:\"Extremely Wide Measuring Range due to Dual Camera Technology  \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:49:\"products.camsizer.x2.dual_camera_technology.intro\";a:4:{s:4:\"text\";s:1119:\"Microtrac’s unique dual camera technology is a landmark in the development of Dynamic Image Analysis (DIA). By simultaneously employing two cameras with different magnifications, extremely wide dynamic measuring ranges are archieved. This is accomplished without hardware adjustments or modifications and without compromising accuracy. Each camera is specialized for one measuring range.

The ZOOM camera analyzes fine particles with highest precision whereas the BASIC camera detects the larger particles with excellent statistics. A special algorithm combines the information provided by both cameras and delivers the exact size distribution in a possible range of more than three decades!

This arrangement resolves a significant drawback of many image analysis systems that employ only one camera, e. g. microscopes. Such instruments either cannot correctly report the fine particles in wide size distributions, or the large particles are not captured due to the small field of view. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:38:\"products.camsizer.x2.funtion_principle\";a:4:{s:4:\"text\";s:697:\"The CAMSIZER X2 uses the principle of Dynamic Image Analysis (DIA). The unique principle is fairly simple: Dispersed particles pass in front of two bright, pulsed LED light sources. The shadows of the particles are captured with two digital cameras.

One camera is optimized to analyse the small particles with high resolution, the other camera for the detection of the big particles with a good statistic, that means large field of view. Each camera is illuminated by one LED with optimized brightness, pulse length and field of view. A user-friendly software analyzes the size and shape of each particle, and finally calculates the respective distribution curves in realtime. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:34:\"products.camsizer.x2.intro.new.txt\";a:4:{s:4:\"text\";s:1128:\"The CAMSIZER X2 is a powerful, extremely versatile particle size and shape analyzer with a wide measuring range that combines state-of-the-art camera technology with flexible dispersion options. Based on the principle of Dynamic Image Analysis (ISO 13322-2), the CAMSIZER X2 provides precise particle size and shape information of powders, granules and suspensions in a measuring range from 0.8 μm to 8 mm.

The CAMSIZER X2 produces a particle flow which is characterized by an optical system with high resolution. An ultrabright LED stroboscopic light sources and two high-resolution digital cameras achieve a frame rate of more than 300 images per second which are evaluated in real time by a powerful software. Thus, the CAMSIZER X2 captures the images of hundreds of thousands to several millions of particles with highest accuracy within only 1 to 3 minutes.

The CAMSIZER X2 provides a wide selection of particle information which allows for comprehensive and reliable characterization of the sample material. It is suitable for use in R&D as well as for routine tasks in quality control.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:30:\"products.camsizer.x2.intro.txt\";a:4:{s:4:\"text\";s:1284:\"The quality control of fine powders can be substantially improved with the new CAMSIZER X2: More precise and faster analysis of particle size and particle shape helps to improve the product quality, reduce rejects and save labor costs, energy and raw materials.

The design of the CAMSIZER X2 is based on the well-proven optical particle measurement system Camsizer but is optimized for finer samples (from 0.8 µm to 8 mm). Not only the improved optical resolution but also new options for material feeding allow for an extended application range. Fine particles tend to agglomerate which makes it difficult to record the properties of a single particle. Therefore, it is important to have various possibilities of feeding the sample to the analysis area to be able to find for each material the optimum between the desired dispersion of the agglomerates and the undesired destruction of the individual particle.

The CAMSIZER X2 offers the flexible X-Change system: from the X-Fall module (free fall mode), which is the most gentle method for the material, to the X-Jet module with adjustable pressure and variable nozzle geometry and, additionally, the X-Flow module in which particles are dispersed in liquids, optionally by an ultrasonic probe. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:46:\"products.camsizer.x2.measurement_principle.txt\";a:4:{s:4:\"text\";s:263:\"Two cameras operate simultaneously during measurement: the BASIC camera (blue) analyzes the larger particles, the ZOOM camera (red) captures the small particles. This procedure ensures optimum measurement conditions for all particle sizes in a distribution. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:38:\"products.camsizer.x2.modular_design.hl\";a:4:{s:4:\"text\";s:41:\"Elaborate Design for Maximum Flexibility \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:39:\"products.camsizer.x2.modular_design.txt\";a:4:{s:4:\"text\";s:422:\"The CAMSIZER X2’s modular “X-Change” system offers three alternative dispersion options, permitting the selection of the optimum method for each sample type. The user may choose between wet dispersion with X-Flow or dry measurement either in free fall with X-Fall or in an air flow with X-Jet. The modules and cartridges are quickly and easily exchanged which makes working with the CAMSIZER X2 convenient and safe. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:43:\"products.camsizer.x2.modular_design.xfall.2\";a:4:{s:4:\"text\";s:38:\"Analysis of particle sizes up to 8 mm \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:43:\"products.camsizer.x2.modular_design.xfall.3\";a:4:{s:4:\"text\";s:25:\"Complete sample recovery \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:51:\"products.camsizer.x2.modular_design.xfall.bullets.1\";a:4:{s:4:\"text\";s:33:\"Gentle, contact-free measurement \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:44:\"products.camsizer.x2.modular_design.xfall.hl\";a:4:{s:4:\"text\";s:31:\"Gravity Dispersion with X-Fall \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:47:\"products.camsizer.x2.modular_design.xfall.intro\";a:4:{s:4:\"text\";s:411:\"Flowable, unagglomerated samples can be analyzed by using the X-Fall module. The measurement is non-destructive because the particles directly fall from a chute through the field of view. X-Fall is suitable for particle sizes up to 8 mm; the detection sensitivity for over-sized grains is extremely high. In contrast to dispersion by air pressure, the sample can be recovered after the measurement with X-Fall. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:44:\"products.camsizer.x2.modular_design.xflow.hl\";a:4:{s:4:\"text\";s:27:\"Wet Measurement with X-Flow\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:45:\"products.camsizer.x2.modular_design.xflow.txt\";a:4:{s:4:\"text\";s:394:\"The wet module X-Flow analyzes suspensions in a size range from 0.8 μm to 1 mm. The sample moves within a closed loop from the dispersion bath to the flow cell where the camera system captures the particle images. X-Flow comes with an ultrasonic bath and strong centrifugal pump to ensure efficient dispersion. Suitable dispersion media are water, alcohol, and also nonpolar organic solvents. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:50:\"products.camsizer.x2.modular_design.xjet.bullets.1\";a:4:{s:4:\"text\";s:42:\"Pressure adjustable from 0 kPa to 450 kPa \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:50:\"products.camsizer.x2.modular_design.xjet.bullets.2\";a:4:{s:4:\"text\";s:50:\"Effective dispersion, also for particles < 10 μm \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:50:\"products.camsizer.x2.modular_design.xjet.bullets.3\";a:4:{s:4:\"text\";s:38:\"Gentle measurement of friable samples \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:50:\"products.camsizer.x2.modular_design.xjet.bullets.4\";a:4:{s:4:\"text\";s:35:\"Quick analysis of large quantities \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:50:\"products.camsizer.x2.modular_design.xjet.bullets.5\";a:4:{s:4:\"text\";s:74:\"Different nozzle diameters available for the control of dispersion energy \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:43:\"products.camsizer.x2.modular_design.xjet.hl\";a:4:{s:4:\"text\";s:34:\"Air Pressure Dispersion with X-Jet\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:44:\"products.camsizer.x2.modular_design.xjet.txt\";a:4:{s:4:\"text\";s:442:\"Many materials tend to agglomerate due to surface forces. The X-Jet module effectively disperses the particles in an air flow while passing through a Venturi nozzle. The dispersion pressure can be set as required for individual particles. For sensitive granules, for example, reduced pressure ensures non-destructive measurement. After passing the measurement field, the sample is automatically removed from the analyzer by a vacuum cleaner. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:50:\"products.camsizer.x2.only_image_analysis.bullets.1\";a:4:{s:4:\"text\";s:24:\"Angularity of abrasives \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:50:\"products.camsizer.x2.only_image_analysis.bullets.2\";a:4:{s:4:\"text\";s:41:\"Analysis of broken fractions in granules \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:50:\"products.camsizer.x2.only_image_analysis.bullets.3\";a:4:{s:4:\"text\";s:41:\"Detection of agglomerates in glass beads \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:50:\"products.camsizer.x2.only_image_analysis.bullets.4\";a:4:{s:4:\"text\";s:144:\"Analysis of the roundness of plastic or metal powder particles for Additive Manufacturing (direct influence on flowability and packing density) \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:50:\"products.camsizer.x2.only_image_analysis.bullets.5\";a:4:{s:4:\"text\";s:46:\"Length and diameter of needle-shaped crystals \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:50:\"products.camsizer.x2.only_image_analysis.bullets.6\";a:4:{s:4:\"text\";s:139:\"Analysis of the roundness of sand particles to evaluate the usability as construction material or proppant, or for geological examinations \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:51:\"products.camsizer.x2.only_image_analysis.bullets.hl\";a:4:{s:4:\"text\";s:10:\"Examples: \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:43:\"products.camsizer.x2.only_image_analysis.hl\";a:4:{s:4:\"text\";s:59:\"Only Image Analysis Provides Information on Particle Shape \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:46:\"products.camsizer.x2.only_image_analysis.txt.1\";a:4:{s:4:\"text\";s:245:\"Bulk material properties like density, flowability, compactibility, conveying characteristics and surface condition are influenced by particle shape. This makes these parameters a crucial process and quality indicator in many application areas. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:46:\"products.camsizer.x2.only_image_analysis.txt.2\";a:4:{s:4:\"text\";s:273:\"Various parameters are available for shape quantification. These include width/length ratio (aspect ratio), circularity (calculated from area-to-perimeter ratio), symmetry, convexity, and compactness. Roundness is calculated from the curvature of the particles’ corners. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:32:\"products.camsizer.x2.review1.txt\";a:4:{s:4:\"text\";s:261:\"Been using this instrument for a while now for particle size analysis of our small molecule APIs. The performance, accuracy & reproducibility is excellent. The amazing part is its ability to work with very small sample size. Very happy with the instrument. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:32:\"products.camsizer.x2.review2.txt\";a:4:{s:4:\"text\";s:355:\"The product is very easy to use; we get a lot more information from this system than we did from our previous analyzer. The staff diligently works with developing and meeting our internal needs and has been more than willing to provide the education and background necessary to get the biggest bang for our buck! We are very pleased with this instrument. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:32:\"products.camsizer.x2.review3.txt\";a:4:{s:4:\"text\";s:194:\"Regularly used to characterise and monitor powder during recycling in LPBF. Ease of use and low sample quantity allows results on PSD and morphology to be seen in minutes for quality assurance. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:46:\"products.camsizer.x2.xchange.compressed_air.hl\";a:4:{s:4:\"text\";s:29:\"Dispersion by compressed air \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:47:\"products.camsizer.x2.xchange.compressed_air.txt\";a:4:{s:4:\"text\";s:306:\"The X-Jet module disperses the sample via a Venturi nozzle and is suitable for the effective analysis of powders. The actual measurement of the particles takes place in the air stream. Dispersion pressure may be set between 0 kPa and 460 kPa. This ensures optimum analysis conditions for all sample types. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:39:\"products.camsizer.x2.xchange.gravity.hl\";a:4:{s:4:\"text\";s:22:\"Dispersion by gravity \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:40:\"products.camsizer.x2.xchange.gravity.txt\";a:4:{s:4:\"text\";s:171:\"The X-Fall module is used for non-destructive measurement of sensitive samples in free fall to minimize particle breakage. The sample can be recovered after the analysis. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.camsizer.x2.xchange.hl\";a:4:{s:4:\"text\";s:23:\"Modular X-Change System\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:34:\"products.camsizer.x2.xchange.intro\";a:4:{s:4:\"text\";s:477:\"Correct sample preparation and dispersion of the particles before they pass the measurement field are as important as the actual analysis. Particularly for fine powders which tend to agglomerate, sufficient dispersion is crucial to the reliability of the measurement results. Therefore, various modes of sample feeding help to achieve separation of the agglomerates without destroying individual particles. Our Modular X-Change System fulfils this requirement in a perfect way.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:39:\"products.camsizer.x2.xchange.liquids.hl\";a:4:{s:4:\"text\";s:22:\"Dispersion in liquids \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:40:\"products.camsizer.x2.xchange.liquids.txt\";a:4:{s:4:\"text\";s:274:\"CAMSIZER X2 also offers the option to analyze particles in liquids with the X-Flow module. The suspension flows in a closed circle through a glass cell where the cameras record the particle images. The integrated ultrasonic unit further aids in the dispersion process. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:41:\"products.camsizer_3d.teaser.intro.bullets\";a:4:{s:4:\"text\";s:498:\"
\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:36:\"products.camsizer_3d.teaser.intro.hl\";a:4:{s:4:\"text\";s:61:\"Patented method for the determination of particle morphology \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:37:\"products.camsizer_3d.teaser.intro.txt\";a:4:{s:4:\"text\";s:1025:\"The CAMSIZER 3D is suitable for the analysis of particle size and shape of dry, free-flowing bulk material in a size range from 20 µ to 30 mm. During measurement, a stream of particles passes through an ultra-bright LED stroboscopic light source; the resulting shadow projections are captured and evaluated by a camera system. In addition to traditional 2-dimensional detection, which detects each particle only once and in any orientation, the CAMSIZER 3D applies a special, patented tracking method. In this process, up to 12 individual images of each particle passing the measuring zone are recorded and strung together, with each individual image showing the particle in a different orientation. The real, three-dimensional particle morphology thus becomes metrologically accessible.

As a result, the CAMSIZER 3D provides information on a wide variety of preliminary parameters as well as the distribution of the length, width and thickness of the sample material within a measurement time of only 1-3 minutes. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:26:\"products.camsizer_online.2\";a:4:{s:4:\"text\";s:798:\"Our CAMSIZER systems are reliable, rugged systems for the measurement of granules such as fertilizer, sand, sugar, stone and a wide variety of food industry products. We have designed our measuring method to be both intuitive and functional. The CAMSIZER ONLINE is acclaimed for its user-friendliness and application flexibility.

The CAMSIZER ONLINE system is renowned for its ability to produce and reproduce accurate, quick and reliable results that are easily calibrated to your quality control procedures. The CAMSIZER ONLINE can measure 32 morphological parameters of your material including size, shape, surface roughness, density, transparency, and of course 3D in one fast analysis. The CAMSIZER ONLINE can measure particles ranging in size from 30 µm to 35 mm. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:35:\"products.camsizer_online.features.1\";a:4:{s:4:\"text\";s:72:\"Characterizes 32 morphological parameters of your material including 3D \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:35:\"products.camsizer_online.features.2\";a:4:{s:4:\"text\";s:78:\"Non-contact measurement of dry particles ranging in size from 30 µm to 35 mm \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:35:\"products.camsizer_online.features.3\";a:4:{s:4:\"text\";s:70:\"Analyses 100 images per second with high-speed, high-resolution camera\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:35:\"products.camsizer_online.features.4\";a:4:{s:4:\"text\";s:39:\"Rugged design with a compact footprint \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:35:\"products.camsizer_online.features.5\";a:4:{s:4:\"text\";s:102:\"Self-cleaning mechanism, which reduces user intervention and increases optimal measurement capability \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:35:\"products.camsizer_online.features.6\";a:4:{s:4:\"text\";s:16:\"Explosion proof \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:35:\"products.camsizer_online.features.7\";a:4:{s:4:\"text\";s:57:\"Clean integration with 3rd party sample delivery devices \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:35:\"products.camsizer_online.features.8\";a:4:{s:4:\"text\";s:31:\"Optimized for control room use 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As of January 2021, all CAMSIZER instruments of the series 3D, X2, M1, and P4 come with the DIMENSIONS IA software.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:29:\"products.dimensions.faq.10.hl\";a:4:{s:4:\"text\";s:47:\"Can I work with DIMENSIONS during the analysis?\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:30:\"products.dimensions.faq.10.txt\";a:4:{s:4:\"text\";s:61:\"Yes, all Workspaces remain accessible during the measurement.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:29:\"products.dimensions.faq.11.hl\";a:4:{s:4:\"text\";s:79:\"Which evaluation options do the instruments offer with the DIMENSIONS software?\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:30:\"products.dimensions.faq.11.txt\";a:4:{s:4:\"text\";s:459:\"DIMENSIONS IA presents the results of particle size and shape analyses obtained with a CAMSIZER instrument. For each particle, dozens of morphological parameters are recorded.

DIMENSIONS LS presents the results of particle size analyses obtained with a NANOTRAC analyzer. Additionally, the results of different databases can be now compared.

With both versions, the result presentation can be easily adapted to virtually any requirement.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:29:\"products.dimensions.faq.12.hl\";a:4:{s:4:\"text\";s:59:\"For which applications is the DIMENSIONS software suitable?\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:30:\"products.dimensions.faq.12.txt\";a:4:{s:4:\"text\";s:262:\"The CAMSIZER as well as the NANOTRAC instruments are employed in almost every industry. Thanks to the easy operation and extensive evaluation options, DIMENSIONS IA and LS are the ideal tools for both routine analyses as well as for complex R&D applications.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:29:\"products.dimensions.faq.13.hl\";a:4:{s:4:\"text\";s:45:\"Is DIMENSIONS LS also available for the SYNC?\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:30:\"products.dimensions.faq.13.txt\";a:4:{s:4:\"text\";s:229:\"Currently, the DIMENSION LS software is only compatible with the NANOTRAC product series. Of course, DIMENSION LS will also be usable with the SYNC laser diffraction analyzer in the near future. More information will follow soon.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"products.dimensions.faq.2.hl\";a:4:{s:4:\"text\";s:39:\"Is DIMENSIONS suitable for my analyzer?\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:29:\"products.dimensions.faq.2.txt\";a:4:{s:4:\"text\";s:181:\"DIMENSIONS IA is compatible with CAMSIZERs of the 3D, X2, M1 and P4 generation.
DIMENSIONS LS is compatible with all NANOTRAC devices which run FLEX version 11.1.0.0 or higher.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"products.dimensions.faq.3.hl\";a:4:{s:4:\"text\";s:49:\"Can I continue to use my methods with DIMENSIONS?\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:29:\"products.dimensions.faq.3.txt\";a:4:{s:4:\"text\";s:76:\"Yes, all measurement conditions of the previous software can be transferred.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"products.dimensions.faq.4.hl\";a:4:{s:4:\"text\";s:46:\"Can I open and edit old files with DIMENSIONS?\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:29:\"products.dimensions.faq.4.txt\";a:4:{s:4:\"text\";s:80:\"Yes, older measuring data can be opened and edited with the DIMENSIONS software.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"products.dimensions.faq.5.hl\";a:4:{s:4:\"text\";s:30:\"How much does an upgrade cost?\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:29:\"products.dimensions.faq.5.txt\";a:4:{s:4:\"text\";s:363:\" We are happy to provide you with a quote for older models. 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DIMENSIONS is Microtrac\'s proprietary measurement and evaluation software for the dynamic image analysis and laser scattering product lines. The software comprises five clearly structured Workspaces for method development, operation of the analyzer, result presentation and evaluation of several analyses.

Individual Workspaces can be separated from the program and transferred to a second monitor to give you full control of all relevant processes and parameters. 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Microtrac’s particle analyzers CAMSIZER P4 and CAMSIZER X2 use the principle of Dynamic Image Analysis. Thanks to the patented dual camera technology these analyzers cover a wide dynamic measuring range from 20 µm to 30 mm and from 0.8 µm to 8 mm respectively. The dual camera technology is based on the simultaneous operation of two cameras, allowing for the detection of fine as well as coarse particles in a wide measuring range with high resolution and efficiency.

Dynamic Image Analysis is used for quality and process control in many different industries and for a great variety of applications. Thanks to its superior features, DIA often replaces conventional methods like sieve analysis or laser diffraction. Compared to these methods, image analysis offers a number of advantages: a wealth of different size and shape parameters are obtained with high precision from every single particle image. Hence, the resolution of the measurement results is greatly superior to that of other technologies. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:18:\"products.dip.outro\";a:4:{s:4:\"text\";s:441:\"Dynamic Image Analysis analyzes the shadow projections of particles. Both the CAMSIZER P4 and CAMSIZER X2 transform grayscale images through a multistep algorithm into binary images to determine the exact outlines.

All particle size and particle shape parameters are measured on this basis. The values of the single measurements are assigned to 10,000 size classes during the measurement, providing an extremely high resolution.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:27:\"products.dip.outro.headline\";a:4:{s:4:\"text\";s:44:\"Dynamic Image Analysis: Technological Basics\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:19:\"products.dip.outro2\";a:4:{s:4:\"text\";s:1049:\"Imaging methods offer the crucial advantage of using various size definitions, allowing for direct length and shape measurement.

Depending on the application, a variety of size parameters may be of interest:
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  2. If, however, the sample needs to be compared to a sieve analysis, the focus is on particle width as the particles’ orientation allows them to pass the sieve apertures with their smallest projection area.
In Dynamic Image Analysis particle size distributions are based on different size definitions. The parameter xc min defines the particle width, xFe max describes the length. Consequently, the xFe max result is bigger than xc min. The size definition xarea is based on the calculation of a circle with equivalent surface from each particle.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"products.dip.outro2.headline\";a:4:{s:4:\"text\";s:57:\"Size and Shape Parameters of Dynamic Image Analysis (DIA)\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:19:\"products.dip.outro3\";a:4:{s:4:\"text\";s:1219:\"The lower and upper limits of the measurement range of image analysis systems are determined by various factors (see ISO 13322-1 and -2). The lower limit is defined by the resolution of the camera. The decisive criterion is the smallest particle size which the optics can still reproduce on a single pixel (= picture element) on the camera chip.

The reproduction scale is ascertained with the help of calibration objects with exactly defined dimensions. The smallest measurable particle shadows at least half a pixel on the camera chip and this size is usually defined as the detection limit or lower limit of the measuring range.

The upper limit of the measuring range of DIA analyzers is determined by the field of view of the cameras.

Particle projections on the edge of the field of view have to be rejected because the correct particle size cannot be determined. This results in larger particles being underrepresented as they are more likely to be located near the edge. 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Laser light is focused on a volume of sample at the interface of the probe window and the dispersion. The high reflectivity sapphire window reflects a portion of the laser beam back to a photodiode detector. The laser light also penetrates the dispersion and the particle’s scattered light reflects at 180 degrees back to the same detector.

The scattered light from the sample has a low optical signal relative to the reflected laser beam. The reflected laser beam mixes with the scattered light from the sample, adding the high amplitude of the laser beam to the low amplitude of the raw scatter signal. This Laser Amplified Detection method provides up to 106 of times the signal to noise ratio of other DLS methods like Photon Correlation Spectroscopy (PCS) and NanoTracking (NT).

A Fast Fourier Transform (FFT) of the Laser Amplified Detection signal results in a linear frequency power spectrum which is then transformed into logarithmic space and deconvoluted to give the resulting particle size distribution. Combined with Laser Amplified Detection, this frequency power spectrum calculation provides robust calculation of all types of particle size distributions – narrow, broad, mono- or multi-modal – with no need for a priori information for algorithm fitting as it is for PCS.

Microtrac\'s Laser Amplified Detection method is unaffected by signal aberrations due to contaminants in the sample. Classical PCS instruments need to either filter the sample or create complicated measurement methods to eliminate these signal aberrations.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:32:\"products.nanotrac-flex.intro.txt\";a:4:{s:4:\"text\";s:1069:\"Microtrac’s NANOTRAC Flex is a highly flexible nanoparticle size analyzer based on Dynamic Light Scattering (DLS) which provides information on particle size, concentration, and molecular weight. It allows faster measurements with reliable technology, higher precision, and better accuracy. All of this combined into a compact DLS analyzer with a revolutionary fixed optical probe.

With the unique and flexible probe design and the use of the Laser Amplified Detection method in the NANOTRAC FLEX, the user is able to choose an appropriate vessel as a measurement cell to satisfy the needs of any application. This design also allows measurements of samples over a wide concentration range, monomodal or multimodal samples, all without prior knowledge of the particle size distribution. This is made possible through the use of the Frequency Power Spectrum (FPS) method instead of classical Photon Correlation Spectroscopy (PCS).\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:43:\"products.nanotrac-flex.intro.txt.supplement\";a:4:{s:4:\"text\";s:60:\"Dynamic Light Scattering – made easy with probe technology\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:50:\"products.nanotrac-flex.iterative_power_spectrum.hl\";a:4:{s:4:\"text\";s:55:\"Iterative Particle Size Calculation from Power Spectrum\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:51:\"products.nanotrac-flex.iterative_power_spectrum.txt\";a:4:{s:4:\"text\";s:232:\"1. Estimate size distribution | 2. Calculate estimated particle size | 3. Calculate error in particle size | 4. Correct estimated distribution | 5. Repeat 1-4 until error is minimized | 6. Minimum error distribution is best fit\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:32:\"products.nanotrac-flex.probe.txt\";a:4:{s:4:\"text\";s:1650:\"The unique design of the NANOTRAC FLEX probe allows to measure down to only one droplet, thus requiring only a minimum sample volume. The probe also easily fits into a 1.5 ml Eppendorf Tube®. With the NANOTRAC FLEX, every vessel can be used as a measurement vessel, and there is no need for cuvettes of any kind. This makes it possible to use the probe either at line or in line for monitoring the particles\' growth during a reaction.

During a reaction, the dispersion is either flowing or stirring. The dispersion motion will obscure the Brownian motion, and a Dynamic Light Scattering (DLS) measurement is normally not possible.

To measure in stirring or moving liquids, the FlowGuard can be used. This special cap for the NANOTRAC FLEX probe tip creates an enclosure around the probe, which shields the measurement surface from turbulent flow. An orifice ensures the constant exchange of the sample, while slowing down the stirring movement at the probe interface. This design ensures an accurate particle size distribution that is representative of the suspension outside the enclosure.

This probe design enables the measurement of samples over a wide concentration range, monomodal or multimodal samples, all without prior knowledge of the particle size distribution. The probe is also very easy and quick to clean between sample measurements of any kind. Additionally, the user can choose from a wide array of measurement cells to satisfy the needs of any application.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:37:\"products.nanotrac-flex.stabino-bit.hl\";a:4:{s:4:\"text\";s:47:\"Fast Zeta Potential Measurement & Titration\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:38:\"products.nanotrac-flex.stabino-bit.txt\";a:4:{s:4:\"text\";s:846:\"The STABINO ZETA provides very fast, precise, and reproducible zeta potential measurements due to its high resolution and data point density, respectively. The STABINO ZETA can measure the zeta potential of particles in a range of 0.3 nm to 300 µm, with a concentration range of up to 40% by volume.

Thanks to the unique measurement technology, the STABINO ZETA can determine five parameters simultaneously within a few seconds. In combination with Microtrac’s DLS analyzer, NANOTRAC FLEX, the size can be measured at the same time, in the same sample.

In addition, the STABINO ZETA has a built-in titration function where all the parameters are analyzed simultaneously at every dosage step. The determination of the isoelectric point is one of the possibilities of titration and is completed within a few minutes.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:42:\"products.nanotrac-wave_series.colloidal.hl\";a:4:{s:4:\"text\";s:41:\"Accurate Measurement of Colloidal Systems\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:40:\"products.nanotrac-wave_series.features.1\";a:4:{s:4:\"text\";s:27:\"180° backscatter DLS setup\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:40:\"products.nanotrac-wave_series.features.2\";a:4:{s:4:\"text\";s:64:\"Stable fixed optics sample interface – no adjustments required\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:40:\"products.nanotrac-wave_series.features.3\";a:4:{s:4:\"text\";s:45:\"Rapid field reversal prevents electro-osmosis\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:40:\"products.nanotrac-wave_series.features.4\";a:4:{s:4:\"text\";s:65:\"Robust mobility calculation as a function of power spectrum ratio\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:40:\"products.nanotrac-wave_series.features.5\";a:4:{s:4:\"text\";s:46:\"High concentration zeta potential measurements\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:40:\"products.nanotrac-wave_series.features.6\";a:4:{s:4:\"text\";s:55:\"Sample concentration and molecular weight determination\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:40:\"products.nanotrac-wave_series.features.7\";a:4:{s:4:\"text\";s:31:\"Universal solvent compatibility\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:40:\"products.nanotrac-wave_series.features.8\";a:4:{s:4:\"text\";s:57:\"Frequence Power Spectrum calculation model instead of PCS\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:40:\"products.nanotrac-wave_series.features.9\";a:4:{s:4:\"text\";s:56:\"Laser Amplified Detection – high signal to noise ratio\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:41:\"products.nanotrac-wave_series.features.hl\";a:4:{s:4:\"text\";s:43:\"Nanoparticle Size Analyzer NANOTRAC WAVE II\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:48:\"products.nanotrac-wave_series.function_principle\";a:4:{s:4:\"text\";s:1764:\"The optical bench of the nanoparticle size analyzer NANOTRAC WAVE II is a probe containing an optical fiber coupled with a Y splitter. Laser light is focused on a volume of sample at the interface of the probe window and the dispersion. The high reflectivity sapphire window reflects a portion of the laser beam back to a photodiode detector. The laser light also penetrates the dispersion and the particle’s scattered light reflects at 180 degrees back to the same detector.
The scattered light from the sample has a low optical signal relative to the reflected laser beam. The reflected laser beam mixes with the scattered light from the sample, adding the high amplitude of the laser beam to the low amplitude of the raw scatter signal. This Laser Amplified Detection method provides up to 106 of times the signal to noise ratio of other DLS methods like Photon Correlation Spectroscopy (PCS) and NanoTracking (NT).

A Fast Fourier Transform (FFT) of the Laser Amplified Detection signal results in a linear frequency power spectrum which is then transformed into logarithmic space and deconvoluted to give the resulting particle size distribution. Combined with Laser Amplified Detection, this frequency power spectrum calculation provides robust calculation of all types of particle size distributions – narrow, broad, mono-modal or multi-modal – with no need for a priori information for algorithm fitting as it is for PCS.

The Laser Amplified Detection method used in Microtrac particle analyzers is unaffected by signal aberrations due to contaminants in the sample. Classical PCS instruments need to either filter the sample or create complicated measurement methods to eliminate these signal aberrations.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:37:\"products.nanotrac-wave_series.hero.hl\";a:4:{s:4:\"text\";s:16:\"NANOTRAC WAVE II\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:39:\"products.nanotrac-wave_series.intro.txt\";a:4:{s:4:\"text\";s:1075:\"Microtrac’s NANOTRAC Wave II / Zeta is a highly flexible Dynamic Light Scattering (DLS) analyzer which provides information on particle size, zeta potential, concentration, and molecular weight. It allows faster measurements with reliable technology, higher precision, and better accuracy. All of this combined into a compact DLS analyzer with a revolutionary fixed optical probe.

With the unique and flexible probe design and the use of the Laser Amplified Detection method in the NANOTRAC Wave II / Zeta, the user is able to choose from a wide array of measurement cells that satisfy the needs of any application. This design also allows measurements of samples over a wide concentration range, monomodal or multimodal samples, all without prior knowledge of the particle size distribution. This is made possible through the use of the Frequency Power Spectrum (FPS) method instead of classical Photon Correlation Spectroscopy (PCS).\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:50:\"products.nanotrac-wave_series.intro.txt.supplement\";a:4:{s:4:\"text\";s:60:\"Dynamic Light Scattering – made easy with probe technology\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:42:\"products.nanotrac-wave_series.nano_zeta.hl\";a:4:{s:4:\"text\";s:52:\"Ideal for Nanoparticle & Zeta Potential Analysis\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:52:\"products.nanotrac-wave_series.power_spectrum.formula\";a:4:{s:4:\"text\";s:97:\"Mobility = C x (ratio of [PSD(on) – PSD(off)] / LI(off)
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\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:48:\"products.nanotrac-wave_series.power_spectrum.txt\";a:4:{s:4:\"text\";s:1814:\"The measurement of zeta potential in the NANOTRAC WAVE II particle size analyzer takes advantage of the same Frequency Power Spectrum methodology used for measuring nanoparticle size distributions. The same stable optics sample interface means no adjustments are required. The backscatter and laser amplified detection signals are collected as in the size measurement, and the rapid sequencing of applied electric fields prevents electroosmosis. The optical probe surface is coated to provide electrical contact with the sample. Two probes are used, one to determine the polarity of the particle charge at the slipping plane and one to measure the mobility of the particles in an electric field. Polarity is measured in a pulsed electric field, while mobility is measured in a high frequency sine wave electric field excitation. The zeta cell has two detection probes, on opposite sides, to detect polarity and mobility.

From the linear frequency power spectrum distribution (PSD), the Loading Index (LI), which is proportional to particle concentration, can be calculated. Loading Index values provide a single number for total scattering that can be used to determine particle mobility in microns / sec / volt / cm and particle polarity as + / -, positive or negative.

Measuring mobility and zeta potential begins by measuring the PSD and determining the LI with the excitation off. Then the PSD is measured with the high frequency sine wave on and a ratio is taken. Polarity is determined by measuring the LI before and after pulsed DC excitation. A ratio of LI after the excitation divided by LI before excitation of less than one is a positive polarity (concentration decreasing) and a ratio greater than one is negative (concentration increasing) for a positively charged probe surface.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.nanotrac-wave_series.txt\";a:4:{s:4:\"text\";s:1423:\"All NANOTRAC WAVE series analyzers use the same revolutionary probe technology for DLS measurements. Utilizing our Laser Amplified Detection method, repeatable and stable particle size measurements for all types of materials are provided.

The NANOTRAC WAVE II series can also calculate the sample concentration through the use of the power spectrum and the resulting loading index. Depending on the distribution calculation, concentration will be displayed in appropriate units such as cm3/ml or N/ml. It is also possible to calculate the molecular weight by either the hydrodynamic radius or a Debye plot.

The NANOTRAC WAVE II particle analyzer has multiple reusable samples cells in different sizes. There is a standard and micro volume Teflon cell for a wide range of materials. For more difficult to clean samples, there is a standard volume stainless steel cell, as well as a large volume stainless steel cell.

The NANOTRAC WAVE II Zeta particle analyzer has a special reusable zeta cell with an electrode for running zeta potential measurements. 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The patented Tri-Laser System provides accurate, reliable and repeatable particle size analysis for a diverse range of applications by utilizing the proven theory of Mie compensation for spherical particles and the proprietary principle of Modified Mie calculations for non-spherical particles. The S3500 measures particle size from 0.02 to 2,800 µm. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:26:\"products.s3500.review1.txt\";a:4:{s:4:\"text\";s:110:\"The S3500 has awesome image analysis capability. Using this instrument we have obtained high quality results. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:26:\"products.s3500.review2.txt\";a:4:{s:4:\"text\";s:132:\"Very easy to use system that provides consistent results. 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(*= non-spherical particles) \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"products.s3500_si.software.2\";a:4:{s:4:\"text\";s:21:\"percentage per class \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"products.s3500_si.software.3\";a:4:{s:4:\"text\";s:39:\"number of measured particles per class \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"products.s3500_si.software.4\";a:4:{s:4:\"text\";s:45:\"deviation of roundness (NSP*) per class in % \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"products.s3500_si.software.5\";a:4:{s:4:\"text\";s:41:\"deviation of total roundness (NSP*) in % \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"products.s3500_si.software.6\";a:4:{s:4:\"text\";s:32:\"roundness (NSP*) per class in % \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"products.s3500_si.software.7\";a:4:{s:4:\"text\";s:28:\"total roundness (NSP*) in % \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"products.s3500_si.software.8\";a:4:{s:4:\"text\";s:46:\"the length / thickness aspect ratio per class \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"products.s3500_si.software.9\";a:4:{s:4:\"text\";s:42:\"the length / thickness aspect ratio total \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:29:\"products.s3500_si.software.hl\";a:4:{s:4:\"text\";s:22:\"Software & Evaluation \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:30:\"products.s3500_si.software.txt\";a:4:{s:4:\"text\";s:241:\"All particles in the measuring field are measured. The measured distribution data is stored and can be displayed or printed (graph or table) during the measurement.

Data of measuring protocol compliant to ISO 9276-60 and 13322-2.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:23:\"products.s3500_si.txt.1\";a:4:{s:4:\"text\";s:774:\"
Based on our experience in imaging technology since 1986, we’ve developed the SI to characterize particle size and shape in various suspensions and emulsions. The S3500 SI can be operated as a stand-alone unit with one of our dispersion devices SDC or USVR.

Its design also allows to operate it in conjunction with the S3500 or Bluewave laser diffraction analyzers. The S3500 SI can be added right away when the diffraction system is installed, or at a later time as an upgrade. 

The SI particle analyzer is a compact measuring instrument that measures particle size distribution and the particle shape at the same time. The S3500 SI delivers superior quality results, higher production profitability and a fast return on investment.
\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:23:\"products.sandro-test.hl\";a:4:{s:4:\"text\";s:38:\"A LEADER IN PARTICLE CHARACTERIZATION \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:25:\"products.sandro-test.hl.2\";a:4:{s:4:\"text\";s:37:\"A leader in particle characterization\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:25:\"products.sandro-test.hl.3\";a:4:{s:4:\"text\";s:13:\"MicrotracBEL \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:25:\"products.sandro-test.hl.4\";a:4:{s:4:\"text\";s:5:\"Table\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:34:\"products.sandro-test.hl.supplement\";a:4:{s:4:\"text\";s:44:\"FROM THE WORLD OF PARTICLE CHARACTERIZATION \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:26:\"products.sandro-test.txt.3\";a:4:{s:4:\"text\";s:399:\"MicrotracBEL is a leading company that develops, manufactures and sells various gas and vapor adsorption amounts, BET surface area and pore size distribution measuring instruments for porous and non-porous materials using gas adsorption technology. The company also handles Microtrac particle size distribution measuring equipment by laser diffraction and scattering and DLS as the core technology. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:26:\"products.sandro-test.txt.4\";a:4:{s:4:\"text\";s:1615:\"
  Hans Peter  Volker
House yes no yes
Garden yes yes yes
Car yes yes no
\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:23:\"products.sdc.benefits.1\";a:4:{s:4:\"text\";s:74:\"Rugged surgical steel construction protects the instrument from corrosion \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:23:\"products.sdc.benefits.2\";a:4:{s:4:\"text\";s:102:\"High compatibility with samples allows for organizations to have multiple purposes for the instrument \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:23:\"products.sdc.benefits.3\";a:4:{s:4:\"text\";s:46:\"Ultrasonic power and duration is programmable \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:23:\"products.sdc.benefits.4\";a:4:{s:4:\"text\";s:78:\"Turbulence ensures sample is consistently dispersed, without external stirrer \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:23:\"products.sdc.benefits.5\";a:4:{s:4:\"text\";s:63:\"Self-cleaning ensures no carry over from previous measurements \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:24:\"products.sdc.benefits.hl\";a:4:{s:4:\"text\";s:23:\"Microtrac SDC Benefits \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:23:\"products.sdc.features.1\";a:4:{s:4:\"text\";s:64:\"Dispersion vessel constructed of surgical-grade stainless steel \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:23:\"products.sdc.features.2\";a:4:{s:4:\"text\";s:44:\"Compatible with organic or inorganic samples\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:23:\"products.sdc.features.3\";a:4:{s:4:\"text\";s:50:\"Integrated ultrasonic probe for sample dispersion \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:23:\"products.sdc.features.4\";a:4:{s:4:\"text\";s:78:\"Vessel features natural turbulence to ensure sample is dispersed at all times \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:23:\"products.sdc.features.5\";a:4:{s:4:\"text\";s:24:\"Self-cleaning mechanism \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:24:\"products.sdc.features.hl\";a:4:{s:4:\"text\";s:23:\"Microtrac SDC Features \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:21:\"products.sdc.intro.hl\";a:4:{s:4:\"text\";s:70:\"Capable of Delivering Suspensions to Microtrac Particle Size Analyzers\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:22:\"products.sdc.intro.txt\";a:4:{s:4:\"text\";s:225:\"The Sample Delivery Controller (SDC) works in conjunction with the Microtrac S3500 and Bluewave laser diffraction systems. The SDC is fully automated and is designed to deliver a well-dispersed sample quickly and accurately. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:17:\"products.sdc.name\";a:4:{s:4:\"text\";s:32:\"Sample Delivery Controller (SDC)\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:18:\"products.selection\";a:4:{s:4:\"text\";s:108:\"The table and whitepaper below explain the advantages and disadvantages of different measurement techniques.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:53:\"products.selection.camsizer_vs_sieve_analysis.caption\";a:4:{s:4:\"text\";s:99:\"Perfect compliance of sieve analysis and CAMSIZER P4 measurements results for granulated fertilizer\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:51:\"products.selection.camsizer_vs_sieve_analysis.intro\";a:4:{s:4:\"text\";s:718:\"Traditional sieve analysis frequently forms the basis for quality standards and product specifications between suppliers and customers. A rapid and efficient alternative like Microtrac\'s CAMSIZER systems must take this into account and be able to produce results that are fully comparable.

This is why the CAMSIZER software is provided with algorithms for emulating sieving processes.

In this way many users have been able to replace time-consuming sieve analysis by using the CAMSIZER without having to sacrifice the familiar quality specifications. 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Differential adsorption heat\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:47:\"products.selection.gas-adsorption.measurement.6\";a:4:{s:4:\"text\";s:15:\"Adsorption rate\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:49:\"products.selection.gas-adsorption.measurement.7-1\";a:4:{s:4:\"text\";s:71:\"Evaluation of hydrophilicity / hydrophobicity by water vapor adsorption\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:49:\"products.selection.gas-adsorption.measurement.7-2\";a:4:{s:4:\"text\";s:65:\"Evaluation of humidity control material by water vapor adsorption\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:47:\"products.selection.gas-adsorption.measurement.8\";a:4:{s:4:\"text\";s:18:\"VOC gas adsorption\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:47:\"products.selection.gas-adsorption.measurement.9\";a:4:{s:4:\"text\";s:69:\"Evaluation of lipophilicity / oleophobicity by hydrocarbon adsorption\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:53:\"products.selection.gas-adsorption.recommended_product\";a:4:{s:4:\"text\";s:19:\"Recommended Product\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:54:\"products.selection.gas-adsorption.typical_measurements\";a:4:{s:4:\"text\";s:20:\"Typical Measurements\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:47:\"products.selection.table.dynamic_image_analysis\";a:4:{s:4:\"text\";s:34:\"Dynamic Image
Analysis (DIA)\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:49:\"products.selection.table.dynamic_light_scattering\";a:4:{s:4:\"text\";s:36:\"Dynamic Light
Scattering (DLS)\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.selection.table.feature1\";a:4:{s:4:\"text\";s:30:\"Wide dynamic measurement range\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:34:\"products.selection.table.feature10\";a:4:{s:4:\"text\";s:53:\"High measurement speed,
short measurement times\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:34:\"products.selection.table.feature11\";a:4:{s:4:\"text\";s:15:\"Measuring range\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:34:\"products.selection.table.feature12\";a:4:{s:4:\"text\";s:26:\"Analysis of nano particles\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:34:\"products.selection.table.feature13\";a:4:{s:4:\"text\";s:53:\"Analysis of Zeta potential
and molecular weight\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:34:\"products.selection.table.feature14\";a:4:{s:4:\"text\";s:11:\"Versatility\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.selection.table.feature2\";a:4:{s:4:\"text\";s:33:\"Reproducibility and repeatability\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.selection.table.feature3\";a:4:{s:4:\"text\";s:40:\"High resolution for narrow distributions\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.selection.table.feature4\";a:4:{s:4:\"text\";s:23:\"Particle shape analysis\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.selection.table.feature5\";a:4:{s:4:\"text\";s:28:\"Direct measurement technique\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.selection.table.feature6\";a:4:{s:4:\"text\";s:52:\"Compatibility of results
with other techniques\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.selection.table.feature7\";a:4:{s:4:\"text\";s:38:\"Reliable detection of oversized grains\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.selection.table.feature8\";a:4:{s:4:\"text\";s:58:\"Robust hardware,
easy operation for routine analysis\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.selection.table.feature9\";a:4:{s:4:\"text\";s:32:\"Analysis of individual particles\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:42:\"products.selection.table.laser_diffraction\";a:4:{s:4:\"text\";s:17:\"Laser Diffraction\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:45:\"products.selection.table.performance_features\";a:4:{s:4:\"text\";s:20:\"Performance Features\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:39:\"products.selection.table.sieve_analysis\";a:4:{s:4:\"text\";s:29:\"Sieve Analysis
(Retsch)\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:46:\"products.selection.table.static_image_analysis\";a:4:{s:4:\"text\";s:27:\"Static Image
Analysis\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:24:\"products.selection.title\";a:4:{s:4:\"text\";s:36:\"Comparison of measurement techniques\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:35:\"products.selection.title.supplement\";a:4:{s:4:\"text\";s:60:\"Sieve Analysis, Laser Diffraction or Dynamic Image Analysis?\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:19:\"products.smls.intro\";a:4:{s:4:\"text\";s:433:\"Static Multiple Light Scattering (SMLS) is an optical method that allows for the direct characterization of native concentrated liquid dispersions. Microtrac’s TURBISCAN range uses this technology to provide accurate and rapid results. TURBISCAN was the first patented technology to provide tools that allow accelerated aging tests on unstressed products, thus becoming a reference for direct stability characterization technology.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:18:\"products.solutions\";a:4:{s:4:\"text\";s:9:\"Solutions\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:29:\"products.special_custom.intro\";a:4:{s:4:\"text\";s:858:\"

Even with one of the most varied and extensive ranges available, there are still occasions when a standard design simply does not meet a user’s precise requirements. That is when the real advantage in dealing direct with the manufacturer becomes clear, especially a manufacturer, who has the breadth and experience that Microtrac possesses.

In these situations we have the experience and skills to modify our standard designs or engineer bespoke solutions in order to achieve the appropriate levels of compliance. Below are some examples showing just a few types of high-end special products that are available.

Please note that for some countries, products in this range might have to undergo certification processes before we are able to supply them. Please contact us to discuss your requirements.

\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:27:\"products.stability-analyzer\";a:4:{s:4:\"text\";s:18:\"Stability Analyzer\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:39:\"products.stability-dispersibility.intro\";a:4:{s:4:\"text\";s:577:\"At Microtrac, we provide a variety of technologies and characterization tools to help you with product development, academic research and quality control in the fields of particle analysis, liquid dispersion, and formulation. You can use our technologies to measure particle size distribution, dispersibility and zeta potential, as well as to evaluate stability, shelf-life and redispersion properties. Our technologies are widely used in various industries and academic research centres. Explore our range and feel free to contact us if you need any guidance from our experts.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:59:\"products.stabino-zeta.accessoires.measuring_cell_10ml_black\";a:4:{s:4:\"text\";s:30:\"Measuring cell 10 ml - black -\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:58:\"products.stabino-zeta.accessoires.measuring_cell_1_3_ml.hl\";a:4:{s:4:\"text\";s:40:\"Measuring cell 1 ml and 3 ml with pestle\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:47:\"products.stabino-zeta.accessoires.piston_set.hl\";a:4:{s:4:\"text\";s:116:\"Piston set: 100 µ - 200 µ - 400 µ - 1000 µ - 1200 µ - 1500 µ - 2000 µ - conical\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:60:\"products.stabino-zeta.accessoires.tempered_measuring.cell.hl\";a:4:{s:4:\"text\";s:34:\"Tempered measuring cell 0 - 90 °C\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.stabino-zeta.intro.txt\";a:4:{s:4:\"text\";s:1340:\"For the accurate determination of the zeta potential and colloidal stability, the STABINO ZETA is the first choice. It can replace the classical zeta potential measurement and is able to perform very fast titrations.

Nowadays, particle surface charge and interface potentials, such as the zeta potential and the streaming potential, are widely used to characterize the stability of suspensions, emulsions and nanoparticles. These parameters have established as a typical measure representing the electrostatic repulsion between particles.

The STABINO ZETA has a high resolution and data point density, which allows very fast, precise and reproducible zeta potential measurements. It is possible to measure the zeta potential of particles in the range of 0.3 nm to 300 µm in a concentration range of up to 40 volume percent. Regarding the optimized measurement technology, the STABINO ZETA can measure up to 5 parameters simultaneously and within a few seconds: Zeta potential, streaming potential, conductivity, pH value, and temperature. In combination with our unique NANOTRAC FLEX, the particle size can also be measured as a sixth parameter simultaneously in the same sample.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:58:\"products.stabino-zeta.titration.advantages.5_parameters.hl\";a:4:{s:4:\"text\";s:41:\"5 measurement parameters at the same time\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:59:\"products.stabino-zeta.titration.advantages.5_parameters.txt\";a:4:{s:4:\"text\";s:265:\"To determine the quality of your samples, do you need more than just one measurement parameter? The STABINO ZETA provides you with information about the conductivity, zeta potential, streaming potential, temperature and pH of your sample with each measuring point. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:60:\"products.stabino-zeta.titration.advantages.adjusted_speed.hl\";a:4:{s:4:\"text\";s:25:\"Adjusted titration speed \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:61:\"products.stabino-zeta.titration.advantages.adjusted_speed.txt\";a:4:{s:4:\"text\";s:206:\"The titration speed of the STABINO ZETA can be adapted to the reaction speed of your sample. For this purpose, the software offers the possibility to define standard operating procedures (SOPs) as desired. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:55:\"products.stabino-zeta.titration.advantages.extension.hl\";a:4:{s:4:\"text\";s:37:\"Extension: In-situ size distribution \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:56:\"products.stabino-zeta.titration.advantages.extension.txt\";a:4:{s:4:\"text\";s:625:\"You are not only interested in the zeta potential of your sample, but also want to determine the particle size distribution?

The NANOTRAC FLEX can easily be combined with the STABINO ZETA, i.e. the NANOTRAC FLEX measuring probe can be integrated into the STABINO ZETA measuring cell. This allows the size distribution to be determined either alone or, for example, during a charge titration. Coagulation becomes "visible" in-situ based on particle size, and it is possible to identify the critical agglomeration point of a sample. 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Standards\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:37:\"products.surface-area-pore-size.intro\";a:4:{s:4:\"text\";s:341:\"These instruments are used to evaluate the specific surface area and pore size distribution of various solid materials such as powders, fibers, membranes, substrates and molds by gas adsorption and mercury intrusion.

Models are available for measuring pore size distribution ranging from nanometers to several hundred micrometers.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:48:\"products.surface-area-pore-size.methods.headline\";a:4:{s:4:\"text\";s:35:\"Pore size range and analysis method\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:62:\"products.surface_area_pore_size_distribution_analyzer.singular\";a:4:{s:4:\"text\";s:49:\"Surface Area and Pore Size Distribution Analyzer \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:35:\"products.sync.flowsync-with-mini.hl\";a:4:{s:4:\"text\";s:43:\"Sample Dispersion Unit for Wet Measurements\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:46:\"products.sync.flowsync-with-mini.hl.supplement\";a:4:{s:4:\"text\";s:28:\"FLOWSYNC & FLOWSYNC MINI\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:36:\"products.sync.flowsync-with-mini.txt\";a:4:{s:4:\"text\";s:1419:\"The FLOWSYNC models’ automated filling, de-aerating, pre-circulating and circulating operation means that each sample is handled with a consistency that improves the repeatability of particle size distribution and imaging data. The FLOWSYNC has a volume of 200 ml and the FLOWSYNC MINI a volume 40 ml.

Consistency: Only the FLOWSYNC has an in-line ultrasonic probe with variable power. It disperses agglomerated materials to ensure consistent sample dispersion during measurements.

Versatility: Users can program, save and recall unlimited SOP routines for fill, disperse, measure, rinse and run commands.

Connectivity: An integrated fill pump allows the user to connect any water or solvent source. The recirculator fills, de-aerates and dilutes automatically.

Auto-Dispersion: The fluid dynamics of the FLOWSYNC / FLOWSYNC MINI feature a built-in turbulence to ensure that all particles are moving constantly within the system, negating the need for an external stirrer.

Resistiveness: The FLOWSYNC / FLOWSYNC MINI can be operated with a wide variety of carrier fluids. In addition to water and alcohol, this includes organic solvents like hexane or toluene.

Self-Cleaning: The washing feature ensures that the walls of the sample vessel are thoroughly cleaned during the rinse cycle. This eliminates cross contamination from one sample to the next.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:25:\"products.sync.review1.txt\";a:4:{s:4:\"text\";s:67:\"Impressive results and analysis options. Short measurement runtime.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:25:\"products.sync.review2.txt\";a:4:{s:4:\"text\";s:89:\"Really easy to use. Fast and accurate results on many different samples liquid or solid. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:25:\"products.sync.review3.txt\";a:4:{s:4:\"text\";s:14:\"Great results.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:25:\"products.sync.review4.txt\";a:4:{s:4:\"text\";s:210:\"The Microtrac Sync is a very reliable means of generating size and shape data for a variety of particles that we study. I have been impressed with the ease of use and the support that is provided by Microtrac. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:25:\"products.sync.review5.txt\";a:4:{s:4:\"text\";s:43:\"Easy to use and very reproducible results. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:25:\"products.sync.review6.txt\";a:4:{s:4:\"text\";s:259:\"There was a little bit of a learning curve in terms of making sure that the powder was correctly suspended in the wet system to mitigate the possibility of air bubbles but the application team swiftly addressed the issues we were having. It runs beautifully. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:25:\"products.sync.review7.txt\";a:4:{s:4:\"text\";s:282:\"I have used Microtrac instruments for over 35 years and the dependability has been excellent. The instruments are easy to use and they present repeatable results. In my opinion, the name Microtrac is so widely used that it is often used in place of the term Particle Size Analysis. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:39:\"products.sync_campaign.applications.txt\";a:4:{s:4:\"text\";s:278:\"Discover the many different areas in which Microtrac\'s SYNC particle analyzer is used in detail by checking out our numerous application notes. In addition, we offer a comprehensive insight into the laser diffraction methodology, which you can access through our Knowledge Base.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:34:\"products.sync_campaign.benefits.hl\";a:4:{s:4:\"text\";s:13:\"Your Benefits\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:32:\"products.sync_campaign.bullets.1\";a:4:{s:4:\"text\";s:41:\"Trade-in option on your current equipment\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:32:\"products.sync_campaign.bullets.2\";a:4:{s:4:\"text\";s:70:\"Free SOP development – match SYNC results with your current analyzer\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:32:\"products.sync_campaign.bullets.3\";a:4:{s:4:\"text\";s:49:\"Free image analysis capability with any trade-ins\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:32:\"products.sync_campaign.bullets.4\";a:4:{s:4:\"text\";s:57:\"Pharma companies receive a free IQ / OQ with any trade-in\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:32:\"products.sync_campaign.bullets.5\";a:4:{s:4:\"text\";s:17:\"Free installation\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:32:\"products.sync_campaign.bullets.6\";a:4:{s:4:\"text\";s:17:\"Extended warranty\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:32:\"products.sync_campaign.bullets.7\";a:4:{s:4:\"text\";s:36:\"Excellent global after-sales service\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:37:\"products.sync_campaign.form.thank_you\";a:4:{s:4:\"text\";s:129:\"

Thank you for your inquiry!

Your inquiry has been successfully forwarded and will be processed as quickly as possible.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.sync_campaign.form.url\";a:4:{s:4:\"text\";s:33:\"/sync-campaign/sync-campaign-form\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.sync_campaign.headline\";a:4:{s:4:\"text\";s:10:\"Think SYNC\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:42:\"products.sync_campaign.headline.supplement\";a:4:{s:4:\"text\";s:60:\"Thinking about upgrading your laser diffraction unit?\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:32:\"products.sync_campaign.hero.hl.1\";a:4:{s:4:\"text\";s:34:\"Take your laser diffraction to the\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:32:\"products.sync_campaign.hero.hl.2\";a:4:{s:4:\"text\";s:10:\"next level\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:40:\"products.sync_campaign.image_caption.txt\";a:4:{s:4:\"text\";s:198:\"Advantage of Microtrac\'s synchronization measurement of laser diffraction and dynamic image analysis with the patented blend algorithm for the detection of a small number of oversized particles.​\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.sync_campaign.info.txt\";a:4:{s:4:\"text\";s:243:\"Want to know more? Click on the image to take a look at our extensive brochure for the SYNC particle analyzer, of which we will gladly send you a high-quality print version. Or watch the SYNC product video, showcasing its various capabilities.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"products.sync_campaign.txt.1\";a:4:{s:4:\"text\";s:512:\"Once again, Microtrac has expanded the possibilities in Laser Diffraction with its patented synchronous measurement technology. As well as easy, fast, accurate and repeatable Laser Diffraction measurements the SYNC also provides Dynamic Image Analysis for the same sample – in the same sample cell at the same time. 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The high sample throughput and the extremely wide measurement range from nanometers to millimeters are the reasons for the method’s popularity in so many laboratories. However, drawbacks of laser diffraction analyzers are poor resolution for large particles, limited sensitivity for oversize and the inability to measure particle shape. These downsides of laser diffraction, however are the strengths of image analysis. Thanks to the unique combination of both techniques, the SYNC particle analyzer provides information which is not available from laser diffraction alone and improves the overall accuracy of size measurement.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"products.sync_new.benefits.1\";a:4:{s:4:\"text\";s:140:\"Particle size and shape analysis from 0.01 to 4000 microns using laser diffraction (ISO 13320:2020) and dynamic image analysis (ISO 13322-2)\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"products.sync_new.benefits.2\";a:4:{s:4:\"text\";s:139:\"Excellent sub-micron detection using blue laser technology. Ability to resolve narrow and multi-modal distributions in the sub-micron range\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"products.sync_new.benefits.3\";a:4:{s:4:\"text\";s:97:\"Detection of small amounts of oversized or undersized fractions in the particle size distribution\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"products.sync_new.benefits.4\";a:4:{s:4:\"text\";s:183:\"Patented synchronous measurement technology and BLEND distribution analysis. One measurement run in the analyzer yields particle size distribution and over 30 morphological parameters\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"products.sync_new.benefits.5\";a:4:{s:4:\"text\";s:46:\"Fast measurement time – typically 30 seconds\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"products.sync_new.benefits.6\";a:4:{s:4:\"text\";s:113:\"Fast and easy switch between wet and dry measurement modules. Change from wet to dry mode in less than 15 seconds\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"products.sync_new.benefits.7\";a:4:{s:4:\"text\";s:76:\"Full IQ / OQ validation package compliant with FDA 21 CFR Part 11 guidelines\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:27:\"products.sync_new.change.hl\";a:4:{s:4:\"text\";s:32:\"CHANGE BETWEEN DRY & WET MODULES\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:38:\"products.sync_new.change.hl.supplement\";a:4:{s:4:\"text\";s:29:\"CONNECTIVITY & MODULARITY\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"products.sync_new.change.txt\";a:4:{s:4:\"text\";s:585:\"No other particle analyzer allows more rapid change from wet to dry and vice versa.

The modules can be removed from the analyzer with a single movement and reinstalled just as easily. All necessary cables and hoses are permanently connected to the back of the analyzer. This means that no changes to the measuring instrument or modules are required during the actual changeover.

Removal of measuring cells or tedious plugging and un-plugging of mechanical and electrical connections is no longer necessary. This makes the process a real plug-and-play operation.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:32:\"products.sync_new.combination.hl\";a:4:{s:4:\"text\";s:55:\"Combining Laser Diffraction with Dynamic Image Analysis\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:43:\"products.sync_new.combination.hl.supplement\";a:4:{s:4:\"text\";s:22:\"The best of two worlds\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.sync_new.combination.txt\";a:4:{s:4:\"text\";s:1621:\"Microtrac\'s SYNC provides traditional users of laser diffraction analyzers with exciting new capabilities to characterize their materials. The proven Tri-Laser technology provides accurate and repeatable laser diffraction results from light collected over 165 degrees of angular scatter. When combined with state of art camera technology capturing images of the particle stream at the same time, the SYNC analyzer offers not only size data from its laser diffraction system but significantly more information about the shape of the materials and the quality of the dispersion. Material is either dispersed in a carrier fluid for wet measurements in the FLOWSYNC or dispersed in air for dry powder measurements in the TURBOSYNC.

As the sample stream passes through a single measurement cell in the optical module of the analyzer, it is interrogated by the lasers. The stream is simultaneously illuminated by stroboscopic LED to allow the high-speed camera to take images of the same material. This allows users the flexibility to determine particle size distributions from an ensemble sample dispersion as well as the ability to examine single as well as groups of particles from the hundreds of thousands of images captured by the camera. The user ultimately has the ability to look individually at a laser diffraction or an image analysis, or at a combination of both using the patented BLEND feature. This combination provides QC users of the analyzer the ability to qualify their data using two methodologies at the same time and provides R&D users with a powerful tool to characterize new materials.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:24:\"products.sync_new.dia.hl\";a:4:{s:4:\"text\";s:33:\"INTEGRATED DYNAMIC IMAGE ANALYSIS\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:35:\"products.sync_new.dia.hl.supplement\";a:4:{s:4:\"text\";s:17:\"NEW OPPORTUNITIES\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:25:\"products.sync_new.dia.txt\";a:4:{s:4:\"text\";s:1301:\"The characterization of particulate systems, once dominated strictly by size measurements, is evolving. Dynamic Image Analysis DIA, which determines important parameters related to particle morphology, provides detailed information regarding the physical properties of materials. These key properties and the resulting manufactured product can change drastically with no significant differences reported in the Laser Diffraction size distribution. Image analysis can rapidly identify problems and significantly reduce troubleshooting time. Particles in a flowing stream, backlit by a high-speed strobe light, are photographed by a high-resolution digital camera to create a video file of images for the flowing particles.

More than 30 size and shape parameters are acquired for every particle. Although the measurement technology of DIA is straightforward, the data analysis used to identify and solve problems is very powerful. The analyzer software includes filter functions to search, display, and evaluate particles with specific properties or a combination of properties. 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Small particles scatter light at large angles while large ones scatter light at small angles. The scattered light intensity is collected continuously throughout the measurement. In Microtrac laser diffraction analyzers the evaluation is done using Microtrac\'s innovative modified Mie scattering theory. This algorithm produces accurate size distributions for both spherical and non-spherical particles as well as for both transparent and absorbing materials.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:30:\"products.sync_new.turbosync.hl\";a:4:{s:4:\"text\";s:38:\"DISPERSION MODULE FOR DRY MEASUREMENTS\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:41:\"products.sync_new.turbosync.hl.supplement\";a:4:{s:4:\"text\";s:9:\"TURBOSYNC\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:31:\"products.sync_new.turbosync.txt\";a:4:{s:4:\"text\";s:1329:\"The TURBOSYNC delivers a properly dispersed sample to the measuring cell of the analyzer, allowing for consistent and repeatable analyses. A moving sample tray introduces the powder into the measurement system.

Flexibility: Compressed air and flow condition settings up to 50 psi (345 kPa) allow the operator to achieve optimal dispersion, even for highly agglomerated materials. Dispersion conditions can be fine-tuned for measurement of even the most fragile materials.

Small sample volumes: Volumes can be as small 0.1 cm3. This is ideal for applications where the material is expensive or produced in small volumes.

Large sample volumes: The removable tray can hold larger quantities of powder. If required, multiple trays can be processed and combined into one measurement record.

Automatic sampling: The Microtrac FLEX software facilitates the automation of measurement cycles. Simply place the sample in the tray and press RUN. All data is saved on the system PC or can be exported to user networks.

Rapid Measurements: Measurement time is usually 10 - 40 seconds, depending on the properties of the material.

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Nulla consequat massa quis enim. Donec pede justo, fringilla vel, aliquet nec, vulputate eget, arcu. In enim justo, rhoncus ut, imperdiet a, venenatis vitae, justo. Nullam dictum felis eu pede mollis pretium. Integer tincidunt.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:38:\"products.turbiscan-ags.accessories.txt\";a:4:{s:4:\"text\";s:90:\"The TURBISCAN AGS comes with all you need to perform dispersibility and stability studies:\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:52:\"products.turbiscan-ags.accessories_robot-gripper.txt\";a:4:{s:4:\"text\";s:249:\"Robot Handling and Gripper

Robotic movement and sample grabbing have been fine-tuned for smooth and robust sample handling from the temperature chambers to the measurement units. The cycling time for a sample is less than a minute.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:52:\"products.turbiscan-ags.accessories_storage-racks.txt\";a:4:{s:4:\"text\";s:237:\"Storage Racks

Between measurements, the samples are stored in temperature-controlled racks. The TURBISCAN AGS comes with 3 separate and independent sample racks and each be set from RT+5°C up to 60°C (optional: 90°C)\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.turbiscan-ags.benefits.1\";a:4:{s:4:\"text\";s:101:\"Accelerated destabilization detection – up to 1,000 x faster than visual observation thanks to SMLS\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.turbiscan-ags.benefits.2\";a:4:{s:4:\"text\";s:121:\"Real stability: sample stability analysis without the need for dilution or mechanical stress, in concentrations up to 95%\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.turbiscan-ags.benefits.3\";a:4:{s:4:\"text\";s:73:\"Fully automated robot station, working 24/7 without any user intervention\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.turbiscan-ags.benefits.4\";a:4:{s:4:\"text\";s:130:\"3 thermo-controlled storage racks (from RT to 60°C) to simulate storage conditions and accelerate even more stability evaluations\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.turbiscan-ags.benefits.5\";a:4:{s:4:\"text\";s:130:\"Quantitative measurements of dispersion stability and shelf-life, migration velocity, particle size diameter, and other parameters\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.turbiscan-ags.benefits.6\";a:4:{s:4:\"text\";s:62:\"One-click stability ranking with the TURBISCAN Stability Index\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.turbiscan-ags.benefits.7\";a:4:{s:4:\"text\";s:24:\"Analyze up to 54 samples\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.turbiscan-ags.benefits.8\";a:4:{s:4:\"text\";s:18:\"ISO 9001 compliant\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:34:\"products.turbiscan-ags.intro.txt.1\";a:4:{s:4:\"text\";s:529:\"Stability is one of the key parameters for the development and quality control of dispersed systems, such as emulsions, suspensions, or foams.

Assessing the stability of such systems requires reliable and sensitive methods that can detect and quantify the physical phenomena involved, such as creaming, sedimentation, flocculation, or coalescence. The TURBISCAN AGS is a high-throughput stability analyzer to shorten formulations’ time-to-market and for quality control.

The TURBISCAN AGS combines:\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:34:\"products.turbiscan-ags.intro.txt.2\";a:4:{s:4:\"text\";s:220:\"TURBISCAN AGS is the ideal companion when dealing with large batches of samples, it operates 24/7 and without any human intervention, saving time on stability measurement and giving you the time to focus on what matters.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:41:\"products.turbiscan-ags.intro.txt.bullet.1\";a:4:{s:4:\"text\";s:105:\"TURBISCAN & SMLS technology for fast, quantitative, and reliable stability and shelf-life measurement\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:41:\"products.turbiscan-ags.intro.txt.bullet.2\";a:4:{s:4:\"text\";s:45:\"Automated sample handling system working 24/7\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:41:\"products.turbiscan-ags.intro.txt.bullet.3\";a:4:{s:4:\"text\";s:81:\"Storage unit for 54 samples split in 3 temperature-controlled racks (up to 60°C)\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:41:\"products.turbiscan-ags.intro.txt.bullet.4\";a:4:{s:4:\"text\";s:58:\"Smart software for automatic sample handling and reporting\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:44:\"products.turbiscan-ags.turbisoft-software.hl\";a:4:{s:4:\"text\";s:40:\"TURBISOFT AGS Software for TURBISCAN AGS\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:55:\"products.turbiscan-ags.turbisoft-software.hl.supplement\";a:4:{s:4:\"text\";s:27:\"Secure Your Data Collection\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:45:\"products.turbiscan-ags.turbisoft-software.txt\";a:4:{s:4:\"text\";s:769:\"When dealing with high-throughput analysis, software is essential to generate and treat all the data generated. The TURBISCAN AGS comes with 2 software packs: TURBISOFT AGS to secure your data collection as well as the sample handling, and TURBISOFT to interpret the data, compare the sample stability and generate reports. This offers the flexibility and freedom to acquire data and interpret the analysis on different computers and in different locations, all at the same time. TURBISOFT AGS has been designed for data acquisition, is user-friendly and only requires information to automatically start and run the analysis. TURBISOFT interprets and exports the results and has an intuitive and user-friendly interface to get the desired result with just a few clicks.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:38:\"products.turbiscan-dns.accessories.txt\";a:4:{s:4:\"text\";s:90:\"The TURBISCAN DNS comes with all you need to perform dispersibility and stability studies:\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:44:\"products.turbiscan-dns.accessories_tloop.txt\";a:4:{s:4:\"text\";s:378:\"TLOOP

The TLOOP module creates a circulation loop from a process or an outside batch to the measurement vials via a peristaltic pump. The liquid is pumped from the outside vessels to the measurement chamber, and back to the vessel. It measures the efficiency of dispersion processes such as pigment dispersion, emulsification studies, polymer dissolution, etc.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:48:\"products.turbiscan-dns.accessories_tmix.bullet.1\";a:4:{s:4:\"text\";s:194:\"Adjust the formulation by changing the pH, adding stabilizers / destabilizers, adding salt ... play with the formulation and directly measure the impact on the dispersion state – particle size\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:48:\"products.turbiscan-dns.accessories_tmix.bullet.2\";a:4:{s:4:\"text\";s:188:\"Apply shear inside the measurement vials, hence studying the powder hydration process, reconstitution of lyophilized products reconstitution, protein solubility, dispersibility studies ...\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:43:\"products.turbiscan-dns.accessories_tmix.txt\";a:4:{s:4:\"text\";s:181:\"TMIX

Thanks to the mixing module of the Turbiscan DNS (TMIX), mixing and agitation can be applied inside the measurement vials. This setup has multiple advantages:\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:43:\"products.turbiscan-dns.applications.food.hl\";a:4:{s:4:\"text\";s:4:\"Food\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:54:\"products.turbiscan-dns.applications.food.hl.supplement\";a:4:{s:4:\"text\";s:70:\"Plant Protein Solubilization, Emulsification, and Stability Properties\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:44:\"products.turbiscan-dns.applications.food.txt\";a:4:{s:4:\"text\";s:886:\"Plant proteins are increasingly popular in the food industry, as they offer various health, environmental, and ethical benefits compared to animal proteins. However, incorporating plant proteins into food products poses some challenges, as they have different physicochemical and functional properties than animal proteins. One of the main issues is the solubilization of plant proteins: due to their poor solubility, the solubilization affects their emulsification and stability properties. There are no methods to characterize the overall plant protein performances and chemists have to utilize multiple experiments and instruments in order to have a complete understanding of plant protein performances. Thanks to the TURBISCAN DNS solubilization speed and quality, emulsification and stabilization properties can be measured with the very same instrument and in a single experiment.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:62:\"products.turbiscan-dns.applications.particle-dispersibility.hl\";a:4:{s:4:\"text\";s:36:\"Chemistry – Raw Material Selection\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:73:\"products.turbiscan-dns.applications.particle-dispersibility.hl.supplement\";a:4:{s:4:\"text\";s:59:\"How Can Particle Dispersibility Measurement Help You? \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:63:\"products.turbiscan-dns.applications.particle-dispersibility.txt\";a:4:{s:4:\"text\";s:857:\"Dispersibility corresponds to uniformly dispersing particles into liquids and with a particle size as close as the primary particle size. Being crucial to match product specifications and get the most value out of the used raw material, dispersibility is impacted by the particle-to-particle interaction and must, as stated in ISO/TS22107:2021, be measured while processing the particle into the liquid and native sample (no dilution, no mechanical stress).

Thanks to the online capabilities of the TURBISCAN DNS, it is the first ready-to-use instrument to investigate particle dispersibility and helps the operator to formulate safe and cost-effective higher-performance formulations. Please take a look at our numerous applications and measurement examples to find the right raw materials, optimize processes, and look for alternative solvents.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:60:\"products.turbiscan-dns.applications.powder-reconstitution.hl\";a:4:{s:4:\"text\";s:31:\"Dehydrated Products and Powders\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:71:\"products.turbiscan-dns.applications.powder-reconstitution.hl.supplement\";a:4:{s:4:\"text\";s:38:\"Reconstitution and Rehydration Studies\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:61:\"products.turbiscan-dns.applications.powder-reconstitution.txt\";a:4:{s:4:\"text\";s:872:\"Dehydrated powders are used in various industries – such as the food, cosmetics and pharmaceutical industries – to maintain the quality and shelf-life of products. However, the reconstitution and rehydration of these powders can pose several challenges, such as ensuring the homogeneity, stability and functionality of the reconstituted product. It is therefore of utmost importance to investigate the factors that influence the reconstitution and rehydration behavior of dehydrated powders and optimize the conditions to achieve the best performance. Thanks to the "online" and "at rest" measurements you can study the ability of the powder to rehydrate, as well as the stability of the reconstituted product, in a single experiment and with a single device. 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In contrast, the TURBISCAN technology provides a fast and non-destructive way to detect and quantify sedimentation and particle size over time and can detect even small changes in highly concentrated samples without any dilution or mechanical stress. This makes it ideal for analyzing complex suspensions and formulations, and getting a quicker, reliable, and more accurate answer on sedimentation monitoring.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.turbiscan-dns.benefits.1\";a:4:{s:4:\"text\";s:74:\"For dispersibility and stability studies, using the unique SMLS technology\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.turbiscan-dns.benefits.2\";a:4:{s:4:\"text\";s:132:\"Online particle size determination on native samples and without any dilution at high frequencies (up to 10 measurements per second)\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.turbiscan-dns.benefits.3\";a:4:{s:4:\"text\";s:86:\"Accelerated destabilization detection – up to 1,000 x faster than visual observation\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.turbiscan-dns.benefits.4\";a:4:{s:4:\"text\";s:34:\"Temperature can be set up to 60°C\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.turbiscan-dns.benefits.5\";a:4:{s:4:\"text\";s:130:\"Quantitative measurements of dispersion stability and shelf-life, migration velocity, particle size diameter, and other parameters\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.turbiscan-dns.benefits.6\";a:4:{s:4:\"text\";s:45:\"Easy and repeatable redispersion measurements\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.turbiscan-dns.benefits.7\";a:4:{s:4:\"text\";s:197:\"TLOOP and TMIXmodules provide two possibilities for online measurements: either connect the DNS to your process via TLOOP or use vials as mini reactors by equipping them with specific blades (TMIX)\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.turbiscan-dns.benefits.8\";a:4:{s:4:\"text\";s:118:\"Click & analyze: The TURBISCAN DNS is a fully integrated platform – everything is included and perfectly aligned\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.turbiscan-dns.benefits.9\";a:4:{s:4:\"text\";s:18:\"ISO 9001 compliant\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:34:\"products.turbiscan-dns.intro.txt.1\";a:4:{s:4:\"text\";s:557:\"A unique platform for dispersibility and stability: The Turbiscan DNS comes with cutting-edge technology that offers a comprehensive solution for measuring the dispersibility and stability of emulsions, suspensions, and foams.

With its advanced optical system and sensitive detectors, powered by Static Multiple Light Scattering (SMLS), the TURBISCAN DNS can accurately detect and quantify changes in the physical properties of these complex systems over time. The measurement of the dispersibility and stability is done via two functions:\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:34:\"products.turbiscan-dns.intro.txt.2\";a:4:{s:4:\"text\";s:489:\"All measurements are done without dilution on the native sample to provide a clear and reliable measurement of the dispersion state and its evolution. This powerful instrument enables researchers and manufacturers to optimize their formulations, identify stability issues early on, and ensure consistent product quality. Whether you are developing new products or improving existing ones, the DNS provides the insights you need to make informed decisions and stay ahead of the competition.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:41:\"products.turbiscan-dns.intro.txt.bullet.1\";a:4:{s:4:\"text\";s:134:\"Measurement while processing the formulation or dispersion (online or mixing directly in measurement vials) → dispersibility studies\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:41:\"products.turbiscan-dns.intro.txt.bullet.2\";a:4:{s:4:\"text\";s:97:\"At rest, without any additional forces → fast and quantitative stability and shelf-life studies\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:44:\"products.turbiscan-dns.turbisoft-software.hl\";a:4:{s:4:\"text\";s:27:\"TURBISOFT for TURBISCAN DNS\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:55:\"products.turbiscan-dns.turbisoft-software.hl.supplement\";a:4:{s:4:\"text\";s:40:\"Dispersibility and Stability at a Glance\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.turbiscan-lab.benefits.1\";a:4:{s:4:\"text\";s:50:\"Static Multiple Light Scattering (SMLS) technology\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:34:\"products.turbiscan-lab.benefits.10\";a:4:{s:4:\"text\";s:18:\"ISO 9001 compliant\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.turbiscan-lab.benefits.2\";a:4:{s:4:\"text\";s:22:\"1 measurement position\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.turbiscan-lab.benefits.3\";a:4:{s:4:\"text\";s:122:\"Temperature range from room temperature (RT) up to 60°C, to observe destabilizations in real usage and storage conditions\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.turbiscan-lab.benefits.4\";a:4:{s:4:\"text\";s:86:\"Accelerated destabilization detection – up to 1,000 x faster than visual observation\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.turbiscan-lab.benefits.5\";a:4:{s:4:\"text\";s:121:\"Real stability: sample stability analysis without the need for dilution or mechanical stress, in concentrations up to 95%\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.turbiscan-lab.benefits.6\";a:4:{s:4:\"text\";s:130:\"Quantitative measurements of dispersion stability and shelf-life, migration velocity, particle size diameter, and other parameters\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.turbiscan-lab.benefits.7\";a:4:{s:4:\"text\";s:62:\"One-click stability ranking with the Turbiscan Stability Index\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.turbiscan-lab.benefits.8\";a:4:{s:4:\"text\";s:41:\"Barcode reader for easy sample management\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:33:\"products.turbiscan-lab.benefits.9\";a:4:{s:4:\"text\";s:95:\"Convenient: Plug & Play, free license software on multiple computers, limited footprint ...\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:32:\"products.turbiscan-lab.intro.txt\";a:4:{s:4:\"text\";s:780:\"The world reference stability analyzer TURBISCAN LAB enables fast and sensitive identification of destabilization mechanisms (creaming, sedimentation, flocculation, coalescence, and more). A temperature-controlled measurement cell allows either stability monitoring at specific storage temperatures or acceleration of the destabilization process with a temperature increase up to 60°C.

The TURBISCAN LAB can be used in both R&D and QC labs for the development and routine control of raw materials and final product formulations. The TURBISCAN technology not only detects stability evolution at an early stage (up to 1,000 times faster compared to visual testing), but also quantifies global formula alteration with the Turbiscan Stability Index (TSI) scale.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:44:\"products.turbiscan-lab.turbisoft-software.hl\";a:4:{s:4:\"text\";s:40:\"TURBISOFT Software for the TURBISCAN LAB\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:55:\"products.turbiscan-lab.turbisoft-software.hl.supplement\";a:4:{s:4:\"text\";s:40:\"Measurement Results in Just a Few Clicks\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:41:\"products.turbiscan-series.accessories.txt\";a:4:{s:4:\"text\";s:264:\"Several options are available to sample and test the stability of your products. From standard, disposable 20 ml vials glass vials to small volumes (down to 2 ml) and to match your specific needs (syringe type, very high viscosity sample ...). We got this covered!\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:63:\"products.turbiscan-series.accessories_calibration-standards.txt\";a:4:{s:4:\"text\";s:343:\"Calibration Standards

Each TURBISCAN comes with a set of standards to check instrument calibration. The TURBISCAN software, TURBISOFT, guides you step by step and once the procedure is finished, the software gives an "OK" signal. The test and results are saved, and the instrument checking procedure can be tracked.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:54:\"products.turbiscan-series.accessories_coring-vials.txt\";a:4:{s:4:\"text\";s:300:\"Coring Vials

There are samples that are either difficult to transfer or too fragile to be poured – the coring vials set helps to bypass this problem. The open base (which is manually closed with a stopper) allows a sticky sample or foam to be easily removed with the coring vials.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:57:\"products.turbiscan-series.accessories_on-demand-vials.txt\";a:4:{s:4:\"text\";s:366:\"On-Demand Vials (Syringe Type, Pressurized)

You have special requirements – and we have the solutions! Our development team loves challenges, which is why we can offer on-demand adapters for your work on very specific samples (syringes, pressurized vials, etc.). Perfect to study the stability in specific conditions (pressure) or for QC control.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:54:\"products.turbiscan-series.accessories_small-volume.txt\";a:4:{s:4:\"text\";s:292:\"Small Volume (4 ml)

Small sample volume? No problem. Small-volume vials and the specific adapter are available. The measurement can be done with as few as 2 ml. Another good news: the sample can be fully recovered, and TURBISCAN measurement is non-contact / non-destructive.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:56:\"products.turbiscan-series.accessories_standard-vials.txt\";a:4:{s:4:\"text\";s:409:\"Standard Vials (20 ml)

Cylindric glass vials have a recommended volume of approximately 20 ml. They are disposable to avoid chemical or bacterial contamination and decrease labor costs for washing and drying. The vials are closed thanks to a cap and a disposable PTFE seal to prevent evaporation in case of elevated temperature. 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It enables fast and reliable stability analysis of formulations (emulsions, suspensions, foams) and offers several advantages for analyzing the stability of dispersed systems. The TURBISCAN TRILAB allows the simultaneous and independent analysis of up to 3 samples, saving time and resources. It also offers a comprehensive and quantitative characterization of the physical phenomena involved in destabilization such as sedimentation, creaming, flocculation or coalescence. The extreme sensibility of SMLS technology not only saves time, but also offers accelerated stability tests by varying the temperature (20 to 60°C) and follows ISO recommendations (ISO/TR 13097:2013, ISO/TR 18811:2018). The stability measurement is carried out by a non-invasive, non-destructive measurement, whereby the integrity and originality of the samples is preserved. 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The TURBISIZE software can measure the distribution of particle size (ISO13317) and the distribution of migration speed for any data obtained with a TURBISCAN, without any need to dilute, prepare, or modify the sample.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:21:\"products.turbisize.hl\";a:4:{s:4:\"text\";s:76:\"TURBISIZE – Particle Size Distribution and Migration Velocity Distribution\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:32:\"products.turbisize.hl.supplement\";a:4:{s:4:\"text\";s:41:\"Particle Size Distribution With TURBISCAN\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:22:\"products.turbisize.txt\";a:4:{s:4:\"text\";s:383:\"From any data generated with a TURBISCAN, TURBISIZE software allows the determination of the particle size distribution and migration velocity in a few seconds (ISO 13317- Determination of particle size distribution by gravitational liquid sedimentation methods) and still with no dilution and on native samples.

From the migration profiles, TURBISZE can determine:\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:29:\"products.turbotrac.benefits.1\";a:4:{s:4:\"text\";s:223:\"Allows the user to achieve dispersion usually associated with fluid dispersal systems for highly agglomerated materials such as alumina. Dispersion conditions can be altered for the measurement of the most fragile crystals \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:29:\"products.turbotrac.benefits.2\";a:4:{s:4:\"text\";s:128:\"Sample volumes can be as small as 0.1 ml. 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Particle size analysis – different methods, different size ranges

Meeting an industry need, particle size analysis has evolved from milling, sieving and other material processing techniques. Today, three different particle sizing methods are applied in laboratories around the world. Microtrac supplies instruments for any of these methods:

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Particle size analysis with static laser light scattering

Progressive analysis software and extremely accurate light signal detection has given competitive edge to material processing businesses through increased sampling throughput speeds. In many sectors like foodstuffs, fertilizer, pharmaceutical, chemical, carbon and polymer companies benefit greatly.

Static laser light scattering (SLS) is an indirect method which calculates particle size distributions on the basis of superimposed scattered light patterns caused by a whole collective of particles. Moreover, it is essential to know the optical characteristics of the material (refraction index) for small particles to obtain reliable results. SLS is based on the assumption that all particles are spherical so that shape analysis is not possible. A big advantage of SLS is the enormously wide measuring range; none of the other techniques presented here is able to detect particles smaller than 1 µm. A drawback of this method is the relatively poor resolution.

In addition to assessing grain size of dry particles or those suspend in liquids, also nanometer scale particles can be defined in size and size distribution.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:27:\"seo.particle_size_analysis4\";a:4:{s:4:\"text\";s:516:\"

Particle size analysis with Dynamic Image Analysis (DIA)

For the particle size range from 1 µm to several mm, Dynamic Image Analysis (DIA) offers an alternative to the particle size analysis by sieve or laser diffraction. Modern DIA systems like Microtrac\'s CAMSIZER analyze more than 200 images per second in real time, detecting millions of individual particles within only a few minutes. This performance is based on fast cameras, bright light sources, short exposure times and powerful software.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:27:\"seo.particle_size_analysis5\";a:4:{s:4:\"text\";s:755:\"

Sieve Analysis

Sieves and sieve shaker systems provide a simple cost-effective mechanical method of distributing granules into particle size classes or prepare them for further analysis.

This measurement approach is useful for particles of several microns to tens of millimetres in size. Other particle characterization advancements have been made utilizing optical technology such as high-definition cameras and laser light scattering and detection systems.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:17:\"seo.products.link\";a:4:{s:4:\"text\";s:117:\" Product Overview\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:24:\"serviceweb.start_message\";a:4:{s:4:\"text\";s:271:\"The "Service Request" form is your central interface to the Microtrac technical service.
It should be used if technical support is required or to report an already solved service case.

What would you like to do?
\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:26:\"shop.infoMail.adminSubject\";a:4:{s:4:\"text\";s:31:\"Daily Admin WebShop Information\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:20:\"shop.infoMail.header\";a:4:{s:4:\"text\";s:16:\"WebShop Overview\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:19:\"shop.infoMail.intro\";a:4:{s:4:\"text\";s:292:\"
Dear ###FE_TITLE### ###FE_LAST_NAME###

Please find below the Microtrac WebShop overview. Click the links to enter the AdvancedWeb for detailed information. Please note, that the direct document links only work if you have previously logged in to AdvancedWeb.
\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:30:\"shop.information.item1.content\";a:4:{s:4:\"text\";s:34:\"Currently no information available\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:14:\"shop.list.info\";a:4:{s:4:\"text\";s:558:\"
IMPORTANT INFORMATION:
As part of the export control, we are obliged to check the end user for the goods against sanction lists.
To do this, please enter the contact details of the end user in the “End User Address” area. If the goods are intended for your warehouse and the end user is not yet known, please select your own address.
In the next few months we will inquire about the enduser. Please fill in the "Shipping Address" area as usual.

\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:16:\"shop.list.info.B\";a:4:{s:4:\"text\";s:371:\"Minimum Order Value
Every order is appreciated and we spare no effort to handle your orders correctly and in the best possible way.
However, to support an economic procedure at both ends, we have defined a minimum order value of € 150.00 net. For smaller orders a handling fee of € 35.00 will be charged to cover the processing costs.
\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:16:\"shop.list.info.M\";a:4:{s:4:\"text\";s:371:\"Minimum Order Value
Every order is appreciated and we spare no effort to handle your orders correctly and in the best possible way.
However, to support an economic procedure at both ends, we have defined a minimum order value of € 150.00 net. For smaller orders a handling fee of € 35.00 will be charged to cover the processing costs.
\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:17:\"shop.list.info.MR\";a:4:{s:4:\"text\";s:813:\"To order a complete instrument, please fill the correspondent "CAMSIZER XX Order List 20xx" file and attach it to the order.
Do not forget to fill the industry and application field in the file or add the information in the comment field.

Minimum Order Value
Every order is appreciated and we spare no effort to handle your orders correctly and in the best possible way.
However, to support an economic procedure at both ends, we have defined a minimum order value of € 150.00 net. For smaller orders a handling fee of € 35.00 will be charged to cover the processing costs.
\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:18:\"shop.list.info.MRB\";a:4:{s:4:\"text\";s:813:\"To order a complete instrument, please fill the correspondent "CAMSIZER XX Order List 20xx" file and attach it to the order.
Do not forget to fill the industry and application field in the file or add the information in the comment field.

Minimum Order Value
Every order is appreciated and we spare no effort to handle your orders correctly and in the best possible way.
However, to support an economic procedure at both ends, we have defined a minimum order value of € 150.00 net. For smaller orders a handling fee of € 35.00 will be charged to cover the processing costs.
\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:16:\"shop.list.info.R\";a:4:{s:4:\"text\";s:813:\"To order a complete instrument, please fill the correspondent "CAMSIZER XX Order List 20xx" file and attach it to the order.
Do not forget to fill the industry and application field in the file or add the information in the comment field.

Minimum Order Value
Every order is appreciated and we spare no effort to handle your orders correctly and in the best possible way.
However, to support an economic procedure at both ends, we have defined a minimum order value of € 150.00 net. For smaller orders a handling fee of € 35.00 will be charged to cover the processing costs.
\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:16:\"shop.order.legal\";a:4:{s:4:\"text\";s:430:\"By clicking the button [Place your order] you place a binding order for the goods listed on the order page.
Your purchase contract is concluded when we accept your order by sending an order confirmation in the OrderTracking after receipt of your order.

Our General Terms and Conditions apply.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:23:\"shop.orderMailAdmin.end\";a:4:{s:4:\"text\";s:189:\"If you have any problems with this order please contact webadmin@verder-scientific.com.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:25:\"shop.orderMailAdmin.intro\";a:4:{s:4:\"text\";s:130:\"The following order was placed in the Microtrac WebShop.

The Navision import file and further information are attached.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:36:\"shop.orderType.table.standard.prices\";a:4:{s:4:\"text\";s:27:\"Microtrac List Prices
\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:18:\"shop.overview.info\";a:4:{s:4:\"text\";s:322:\"Welcome to the Microtrac WebShop.

If you have any questions or problems while processing your order in the WebShop, please send an email (if possible with screenshot) to webadmin@verder-scientific.com.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:24:\"shop.shipment_mode.VA-AB\";a:4:{s:4:\"text\";s:22:\"collection by customer\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:24:\"shop.shipment_mode.VA-AF\";a:4:{s:4:\"text\";s:13:\"by airfreight\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:24:\"shop.shipment_mode.VA-AN\";a:4:{s:4:\"text\";s:21:\"delivery by Microtrac\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:24:\"shop.shipment_mode.VA-DF\";a:4:{s:4:\"text\";s:43:\"free delivery by forwarding agency (Dahmen)\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:25:\"shop.shipment_mode.VA-DHL\";a:4:{s:4:\"text\";s:6:\"by DHL\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:24:\"shop.shipment_mode.VA-DU\";a:4:{s:4:\"text\";s:45:\"by forwarding agency (Dahmen) freight collect\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:26:\"shop.shipment_mode.VA-ESCH\";a:4:{s:4:\"text\";s:20:\"by forwarding agency\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:27:\"shop.shipment_mode.VA-FEDEX\";a:4:{s:4:\"text\";s:18:\"by Federal Express\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:27:\"shop.shipment_mode.VA-FREIV\";a:4:{s:4:\"text\";s:29:\"free delivery incl. packaging\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"shop.shipment_mode.VA-KURIER\";a:4:{s:4:\"text\";s:10:\"by courier\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:24:\"shop.shipment_mode.VA-LK\";a:4:{s:4:\"text\";s:8:\"by Truck\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"shop.shipment_mode.VA-NIPPON\";a:4:{s:4:\"text\";s:17:\"by Nippon Express\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:26:\"shop.shipment_mode.VA-POST\";a:4:{s:4:\"text\";s:7:\"by post\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:25:\"shop.shipment_mode.VA-TNT\";a:4:{s:4:\"text\";s:6:\"by TNT\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:25:\"shop.shipment_mode.VA-UPS\";a:4:{s:4:\"text\";s:6:\"by UPS\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:44:\"shop.tracking-requests.list.application_area\";a:4:{s:4:\"text\";s:17:\" Application Area\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:37:\"shop.tracking.filter.application_area\";a:4:{s:4:\"text\";s:17:\" Application Area\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:48:\"shop.tracking.filter.application_area.adsorption\";a:4:{s:4:\"text\";s:27:\" Gas Adsorption Measurement\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:41:\"shop.tracking.filter.application_area.any\";a:4:{s:4:\"text\";s:4:\" Any\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:51:\"shop.tracking.filter.application_area.particle_size\";a:4:{s:4:\"text\";s:32:\"Particle size and shape analysis\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:47:\"shop.tracking.filter.application_area.stability\";a:4:{s:4:\"text\";s:28:\"Stability and Dispersibility\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:54:\"shop.tracking.message_customer.message_template.1.text\";a:4:{s:4:\"text\";s:286:\"Dear Sir or Madam, for orders with different country entries in delivery and invoice address, the VAT number of the end customer must be passed on to Intrastat for statistical reasons. Please send us the VAT number of the end customer. Best regards,
Microtrac Retsch GmbH\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:55:\"shop.tracking.message_customer.message_template.1.title\";a:4:{s:4:\"text\";s:10:\"VAT number\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:54:\"shop.tracking.message_customer.message_template.2.text\";a:4:{s:4:\"text\";s:140:\"Dear Sir or Madam, please inform us about the industry and the application for this order. Many thanks! Best regards, Microtrac Retsch GmbH \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:55:\"shop.tracking.message_customer.message_template.2.title\";a:4:{s:4:\"text\";s:32:\"Information industry/application\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:54:\"shop.tracking.message_customer.message_template.3.text\";a:4:{s:4:\"text\";s:252:\" Dear Sir or Madam,

thank you for your order.

Please inform us about the end user address.
For new orders, please always use the field “end user address”


Best regards,
Microtrac Retsch GmbH \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:55:\"shop.tracking.message_customer.message_template.3.title\";a:4:{s:4:\"text\";s:20:\"End Customer Address\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:17:\"shop.vatIdMessage\";a:4:{s:4:\"text\";s:172:\" Important notice:
Shipping address and billing address are in different countries.
Please enter the VAT number of the end customer in the comment field!\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:21:\"slider.formnext-23.hl\";a:4:{s:4:\"text\";s:90:\"Meet us at Formnext in Frankfurt, Germany!
Nov 7th - 10th 2023, booth E139, hall 12.0\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:12:\"standards.hl\";a:4:{s:4:\"text\";s:18:\"Standards Overview\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:19:\"standards.intro.txt\";a:4:{s:4:\"text\";s:557:\"Microtrac products are not only of the highest quality, but also meet ASTM, DIN, ISO, and USP standards. We take great care in ensuring that our products meet all necessary requirements, so you can trust that you are getting the very best. Our commitment to quality and compliance is reflected in our dedicated team of quality control experts who oversee every step of the manufacturing process. With our products, you can rest assured that you are getting products that are not only durable and reliable, but also meet the most rigorous industry standards.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:15:\"standards.title\";a:4:{s:4:\"text\";s:14:\"Standard Title\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:17:\"standards_hero.hl\";a:4:{s:4:\"text\";s:17:\"List of Standards\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:23:\"sync_campaign.slider.hl\";a:4:{s:4:\"text\";s:43:\"Thinking about an upgrade?
Think Sync.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:24:\"sync_campaign.slider.txt\";a:4:{s:4:\"text\";s:92:\"Trade in your old laser diffraction instrument
and take your analysis to the next level\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:16:\"technical.basics\";a:4:{s:4:\"text\";s:139:\"In this section you will find interesting background information about the technologies which are applied in our devices.


\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:45:\"technical_data.note.additional_configurations\";a:4:{s:4:\"text\";s:142:\"Please note that the specifications below are just an examplary configuration.
Please contact us to discuss your individual requirements.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"test_louis.benefits.bullet.1\";a:4:{s:4:\"text\";s:131:\"Unique design and architecture:

We create spaces that are not only functional, but also reflect your personality.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"test_louis.benefits.bullet.2\";a:4:{s:4:\"text\";s:134:\"Highest quality and exclusivity:

Our properties are designed with first-class materials and precision craftsmanship.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"test_louis.benefits.bullet.3\";a:4:{s:4:\"text\";s:139:\"Desirable locations:

Enjoy breathtaking views and experience first-class quality of life in the most beautiful locations.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"test_louis.benefits.bullet.4\";a:4:{s:4:\"text\";s:146:\"Innovative technology and amenities:

Experience the luxury of smart living solutions and enjoy the comfortable life you deserve.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"test_louis.benefits.bullet.5\";a:4:{s:4:\"text\";s:146:\"Investing in the future:

Benefit from the long-term increase in value and the security that comes with owning a luxury property.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:28:\"test_louis.benefits.bullet.6\";a:4:{s:4:\"text\";s:177:\"Discretion and privacy:

Our experts work with the utmost discretion to ensure that your property transaction process is as smooth and confidential as possible.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:22:\"test_louis.benefits.hl\";a:4:{s:4:\"text\";s:13:\"Your Benefits\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:24:\"test_louis.competence.hl\";a:4:{s:4:\"text\";s:11:\"COMPETENCE \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:25:\"test_louis.competence.txt\";a:4:{s:4:\"text\";s:211:\"Every purchase and sale is unique and deserves a personalised approach - because our customers\' wishes are our top priority. We know the property business and aim to offer the same quality of service worldwide. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:24:\"test_louis.consulting.hl\";a:4:{s:4:\"text\";s:28:\"QUALIFIED CONSULTING \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:25:\"test_louis.consulting.txt\";a:4:{s:4:\"text\";s:128:\"Our experts will advise you personally and coordinate all important sales decisions with you in a safe and uncomplicated manner.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:21:\"test_louis.contact.hl\";a:4:{s:4:\"text\";s:8:\"CONTACT \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:22:\"test_louis.contact.txt\";a:4:{s:4:\"text\";s:176:\"Get in touch with us and let\'s open the door to your new lifestyle together. Our team is on hand to answer all your questions and guide you on the path to your dream property. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:25:\"test_louis.exclusivity.hl\";a:4:{s:4:\"text\";s:12:\"EXCLUSIVITY \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:26:\"test_louis.exclusivity.txt\";a:4:{s:4:\"text\";s:191:\"Thanks to our unique and constantly growing international network and our strong premium brand, we have access to an exclusive clientele. We are at home where discerning people feel at home. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:25:\"test_louis.experience.txt\";a:4:{s:4:\"text\";s:247:\"With over a decade of expertise, we combine experience with a passion for the extraordinary. Our dedicated team of experts are on hand with in-depth knowledge and a commitment to perfection to ensure your dream of luxury living becomes a reality. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:23:\"test_louis.findhere.txt\";a:4:{s:4:\"text\";s:34:\"You can find more properties here \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:26:\"test_louis.haventfound.txt\";a:4:{s:4:\"text\";s:39:\"Haven\'t found a suitable property yet? \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:18:\"test_louis.here.hl\";a:4:{s:4:\"text\";s:21:\"YOU CAN FIND US HERE \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:24:\"test_louis.Individual.hl\";a:4:{s:4:\"text\";s:28:\"Individual marketing \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:25:\"test_louis.Individual.txt\";a:4:{s:4:\"text\";s:110:\"We appreciate the special features of your property and emphasise them specifically in the marketing concept. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:19:\"test_louis.intro.hl\";a:4:{s:4:\"text\";s:37:\"About us: Where exclusivity meets art\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:20:\"test_louis.intro.txt\";a:4:{s:4:\"text\";s:1333:\"Welcome to LuxusKreations, your gateway to unrivalled luxury and unique beauty in the world of real estate. In the fascinating world of property, we welcome you to LuxusKreations, your gateway to unrivalled luxury and unique beauty. We deeply understand that your home is far more than just a place - it is a living extension of your unique lifestyle, an artistic expression of your refined taste and a distinctive work of art that reflects your personality in every facet.

At LuxusKreations, we strive to present an exquisite selection of luxury properties that not only offer first-class comfort and outstanding quality, but are also the result of visionary architecture and sophisticated design artistry. Each of our properties tells a story, imbued with a passion for exclusivity and the pursuit of timeless elegance. We firmly believe that a home is more than just rooms and walls - it is a living expression of your individual life journey.

Our collection of luxury properties is a tribute to what is possible when creativity meets craftsmanship. Each property is carefully designed to create a unique identity and meet the highest standards of sophistication and style. In the rooms of our properties, you will experience not only first-class comfort, but also the unrivalled harmony of art and function.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:26:\"test_louis.ourcustomers.hl\";a:4:{s:4:\"text\";s:35:\"WE KNOW THE WORLD OF OUR CUSTOMERS \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:27:\"test_louis.ourcustomers.txt\";a:4:{s:4:\"text\";s:352:\"From Rome to Buenos Aires and from New York to Paris - LuxusKreation Immobilien is represented all over the world. We talk to all kinds of people. Whether in their favourite café in Berlin-Mitte, at the polo tournament in Dubai or in the marina on the Côte d\'Azur - they all have one thing in common: the special demand for high-quality real estate. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:21:\"test_louis.passion.hl\";a:4:{s:4:\"text\";s:8:\"PASSION \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:22:\"test_louis.passion.txt\";a:4:{s:4:\"text\";s:211:\"Property is our passion. We attract the best real estate agents worldwide and support them through a comprehensive training and further education system at our in-house Engel & Völkers Real Estate Academy. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:20:\"test_louis.rating.hl\";a:4:{s:4:\"text\";s:28:\"Best possible rating \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:21:\"test_louis.rating.txt\";a:4:{s:4:\"text\";s:104:\"Our valuation is based on many years of property experience, extensive market data and local knowledge. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:22:\"test_louis.ronaldo.txt\";a:4:{s:4:\"text\";s:52:\"Business owner | property marker | financial expert \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:22:\"test_louis.services.hl\";a:4:{s:4:\"text\";s:12:\"Our Services\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:23:\"test_louis.services.hl1\";a:4:{s:4:\"text\";s:37:\"Personalised property advice: \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:23:\"test_louis.services.hl2\";a:4:{s:4:\"text\";s:26:\"Investment advice: \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:23:\"test_louis.services.hl3\";a:4:{s:4:\"text\";s:40:\"Property development and design: \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:23:\"test_louis.services.txt\";a:4:{s:4:\"text\";s:261:\"LuxusKreations Immobilien offers you not just property, but a comprehensive luxury experience. From the sale of exclusive residences to individual property searches and comprehensive property advice - we are your trusted partner on the way to your unique home. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:24:\"test_louis.services.txt2\";a:4:{s:4:\"text\";s:212:\"Our customised property advice is based on your individual needs and ideas. We take the time to understand exactly what you want and then develop a tailor-made strategy to turn your property dreams into reality. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:24:\"test_louis.services.txt3\";a:4:{s:4:\"text\";s:255:\"With our expertise in the property market, we also offer investment advice for those looking to invest in luxury properties. We analyse the market, identify lucrative opportunities and support you in making informed decisions for your property portfolio. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:24:\"test_louis.services.txt4\";a:4:{s:4:\"text\";s:304:\"For those who want to design a property to their own specifications, we offer comprehensive property development and design services. Our team of architects and designers will work closely with you to ensure that your property not only meets your needs, but also fulfils the highest aesthetic standards. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:21:\"test_louis.villa1.txt\";a:4:{s:4:\"text\";s:241:\"

Marbella, Spanien

4 Schlafzimmer | 4 Bäder

491m² Wohnfläche

3.180.000€

\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:21:\"test_louis.villa2.txt\";a:4:{s:4:\"text\";s:353:\"

 Sol de Mallorca, Spain

Modern newly built villa with sea views
3 bedrooms | 2 bathrooms
478m² living space
4.100.000€
\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:21:\"test_louis.villa3.txt\";a:4:{s:4:\"text\";s:322:\"
Benalmadena, Spain
Architects Villa 
2 bedrooms | 2 bathrooms
290m² living space
2.910.000€
\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:21:\"test_louis.villa4.txt\";a:4:{s:4:\"text\";s:364:\"
Cala Caterina, Italy
Villa by the sea in an exclusive location
9 bedrooms | 5 bathrooms
320m² living space
6.120.500€
\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:21:\"test_louis.villa5.txt\";a:4:{s:4:\"text\";s:344:\"
Palma de Mallorca, Spain
Villa Solitaire - Designer Villa
6 bedrooms | 4 bathrooms 
780m² living space
7.120.000€
\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:21:\"test_louis.villa6.txt\";a:4:{s:4:\"text\";s:347:\"
Andratx, Balearic Islands, Spain
Designer villa - high-class
4 bedrooms | 3 bathrooms 
465m² living space
5.810.000€
\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:17:\"test_louis.why.hl\";a:4:{s:4:\"text\";s:20:\"WHY LUXURYCREATION? \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:18:\"test_louis.why.txt\";a:4:{s:4:\"text\";s:508:\"With 12 years of experience and a dedicated team, we pride ourselves on not just selling properties, but realising individual living dreams. LuxusKreations Immobilien stands for reliability, transparency and the creation of living spaces that exceed your expectations. Some people view luxury property as a long-term investment. Historically, property values have increased over time. Luxury properties often have the potential for a good return on investment, especially if they are in desirable locations. \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:23:\"test_louis.whyluxury.hl\";a:4:{s:4:\"text\";s:60:\"YOUR ADVANTAGES WHEN SELLING WITH LUXUSKREATION REAL ESTATE \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:24:\"test_louis.whyluxury.txt\";a:4:{s:4:\"text\";s:352:\"
A sale requires a great deal of sensitivity. Our property consultants know your needs and appreciate the individual value of your property. With our customised marketing, we can quickly bring you together with ideal prospective buyers and achieve the best possible sales prices.
Haven\'t found the right property yet?
\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:24:\"test_louis.willkommen.hl\";a:4:{s:4:\"text\";s:45:\"WELCOME TO LUXUS KREATION REAL ESTATE \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:23:\"text.link_Microtrac MRB\";a:4:{s:4:\"text\";s:34:\"Solutions in Milling & Sieving\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:22:\"text.samplepreparation\";a:4:{s:4:\"text\";s:418:\"Sample division – as important as the analysis itself

Sample preparation errors can no longer be corrected even by the most up-to-date analytical instruments. This is why Microtrac offers a range of sample dividers for obtaining representative part-samples.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:17:\"tr_camsizer_sugar\";a:4:{s:4:\"text\";s:55:\"Quality control of sugar with digital image processing \";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}s:22:\"tr_camsizer_sugar_text\";a:4:{s:4:\"text\";s:1055:\"Quality control is an essential part of the sugar production process as manufacturers must ensure that the product complies with the customers’ specifications. Not only the look, texture and taste of the final product depends on the size distribution, but also the solubility, tendency to aggregate, agglomerate and other properties which are important for industrial processes using sugar as a raw material. Hence, care must be taken that particles are neither too small nor too big. Traditionally, the particle size determination is carried out by sieve analysis which is a rather slow, labour-intensive method and commonly subject to measurement errors such as: too much sample material, worn out (uncalibrated) sieves, wrong sieve parameters (amplitude and sieving time) or simple calculation errors. An excellent alternative for the quality control of sugar is Microtrac’s CAMSIZER®. CAMSIZER® measurements are fast, automated, accurate and 100% comparable with sieve analysis. With these advantages the instrument can reliably replace sieving.\";s:4:\"link\";s:0:\"\";s:10:\"srcProject\";s:9:\"microtrac\";s:11:\"srcLanguage\";i:0;}}')); ?> Imprint - Siteservice - Microtrac
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