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211 products
Spectrophotometer UV-VIS PB2201
Spectrophotometer UV-VIS PB2201
1 supp.
Measuring functions Measurement of absorption, transmission, and reflection spectra Measurement of optical density, transmission coefficient and reflection coefficient at fixed wavelengths Determination of concentration at one, two, three wavelengths by factor, standard, schedule Multi-wave kinetic measurements Determination of concentration by programmed methods Calculation of color and chromaticity coordinates UVI spectrophotometers "SOLAR" operate in the ultraviolet, visible and near infrared regions of the spectrum. They are used in scientific laboratories, healthcare institutions, veterinary medicine, pharmaceuticals, ecology, biology, etc., in laboratories for quality control of products and raw materials in various sectors of the economy (industrial enterprises, agriculture, food industry, etc.) Removable cuvette holders and set-top boxes Accurate measurements Cost-effectiveness Touch screen Built-in printer Software support
SOLAR
Minsk
Produced in: Belarus, Minsk
Mass spectrometer for the analysis of solid-phase samples "Lumas SOLID"
Mass spectrometer for the analysis of solid-phase samples "Lumas SOLID"
1 supp.
Technical specifications: Method of ionization Plasma pulsed glow discharge Discharge gas Argon, consumption less than 1 l/hour Time-of-flight Mass Analyzer with mesh-free ion mirror Resolution 4000 The number of simultaneously defined components is unlimited Mass range 1-1000 m/z Detection limits 1-100 ppb Layer-by-layer resolution Up to 5 nm Depth of analysis Up to 30 microns The time for one analysis of a solid sample is 30 minutes (with the option of a revolver system – 3-5 minutes) Vacuum system 1 Booster pump and 2 TMN (240 l/sec) Overall dimensions 1450×780×1550 mm
Lumeks
Saint Petersburg
Produced in: Saint Petersburg
Acousto-optic video spectrometer
Acousto-optic video spectrometer
At the Scientific Research Center of the Russian Academy of Sciences, the technology of acousto-optic filtration of optical radiation is used to create a wide class of optical devices that are successfully used, for example, in biomedicine to diagnose various diseases (including oncology), in agriculture to diagnose the condition of plants, during non-destructive testing of complex technical objects and in solving other tasks. Acousto-optics has a number of important advantages over other technologies for obtaining spectral information: - the ability to create imaging devices without spatial scanning, since the acousto-optic filter is a software-controlled tunable light filter; - the compact modular design allows the acousto-optic filter to be integrated into the optical circuit of most imaging devices, which expands their analytical capabilities; - spectrum scanning is carried out by means of an electrical signal, without mechanical scanning; - fast arbitrary spectral addressing causes high shooting speed and the absence of redundant information; - software management. The key element of the presented device – an acousto–optic filter - is being developed at the Scientific Research Center of the UP RAS on the basis of original calculation methods. The manufacture of acousto-optic filters, optical and mechanical components, as well as the assembly, tuning, and calibration of such devices is also carried out at the Scientific Research Center of the UP RAS.
STC UP RAS
Москва
Produced in: Moscow
Specialized X-ray wavelength dispersive analyzer ARF-7
Specialized X-ray wavelength dispersive analyzer ARF-7
Specialized wavelength-dispersive XRF analyzer based on the Cochois scheme is designed for high-precision determination of chemical elements U, Th, Mo, Au, W, Tl, As, Pb as well as other elements in ores, rocks and when developing the technogenic fields. Possibility to determine groups of elements without readjustment of crystal-analyzer. Exceptionally high resolution of the Koshua X-ray optical scheme with crystal-analyzer quartz 1011. Developed mathematical support. Principle of analyzer operation is based on the excitation of the fluorescent radiation of sample atoms being under examination by radiation coming from an X-ray tube. Spectrum decomposition of the fluorescence radiation is performed according to Cauchois method. The fluorescence radiation focused by analyzing crystal and standard line are marked on Rowland focal circle. Then, they are recorded by X-ray radiation detector in turn. The intensity of the fluorescent irradiation with a particular wavelength is directly proportional to the chemical element concentration in the material under examination.
Burevestnik
Kolomyagi
Produced in: Saint Petersburg
Multipurpose X-ray diffractometer DRONE-8 (8H)
Multipurpose X-ray diffractometer DRONE-8 (8H)
The multifunctional X-ray diffractometer DRON-8 (8H) with a vertical theta goniometer and the horizontal position of the sample allows X-ray diffraction analysis of the phase composition, structural state and orientation of a wide range of objects of various shapes and sizes.
Burevestnik
Kolomyagi
Produced in: Saint Petersburg
Desktop Diffractometer HUMMINGBIRD
Desktop Diffractometer HUMMINGBIRD
The device is designed to analyze the phase composition and structural state of polycrystalline objects of various origins.
Burevestnik
Kolomyagi
Produced in: Saint Petersburg
Multipurpose X-ray diffractometer DRONE-8T
Multipurpose X-ray diffractometer DRONE-8T
The X-ray diffractometer DRON–8T is the flagship model of the line of stationary X-ray diffractometers of JSC IC Burevestnik. It is equipped with a high-precision wide-angle vertical goniometer with an angular reproducibility of 0.0001° and is designed mainly for the study of highly perfect crystalline objects (single crystals, epitaxial films) in high-resolution geometry.
Burevestnik
Kolomyagi
Produced in: Saint Petersburg