Used RIGAKU 3620 #293634717 for sale
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RIGAKU 3620 is an X-ray diffractometer developed by the renowned RIGAKU Corporation. It's capable of generating peak-purity crystals, performing crystallographic analyses and providing fast, accurate structure determinations. Its quality is maintained over time via frequent internal software and hardware upgrades. 3620 uses a four-circle goniometer and a perpendicular monochromatic X-ray beam. This encourages precise sample guidance, allowing for perfect measurement of the diffraction patterns generated by the X-rays and the crystal structures of individual molecules. An annotation tool is provided for labeling the diffraction patterns produced. RIGAKU 3620 uses a smart double shutter technology to prevent X-rays from hitting any samples that are not currently active. Impact-resistant peripherals, such as the sample rotation stage, are also utilized to ensure maximum safety. The unique multi-sampler consists of 18 sample holders with a variety of selectable angles. The sample holders are powered by motorized components, enabling reliable positional accuracy and data collection. This setup decreases the number of times users have to reload samples in the sample holder. In terms of data analysis, 3620 includes various software packages capable of collecting, visualizing and analyzing data in a number of different ways. Single-crystal diffraction, data reduction, phase analysis, refinement and structure determination can all be performed using the X-ray diffraction system. As for data output, RIGAKU 3620 provides three output modes: crystal diffractograms, vector scattering data and vector scattering files. The crystal diffractograms can be used to compare the crystalline structure of multiple samples simultaneously, while the vector scattering data can be used to compare the structure of a sample across different temperatures or pressures. 3620 is a powerful X-ray diffractometer used for a variety of different materials and applications. Its reliable data collection and analysis systems make it the ideal tool for precise scientfic inquiry and exploration.
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