Used HITACHI RS-3000 #9409083 for sale
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HITACHI RS-3000 is a scanning electron microscope (SEM) designed to be an effective and reliable tool for high-resolution SEM imaging. The instrument provides a range of industry-leading imaging capabilities to enable researchers to explore and analyze the nanoscale structure and morphology of a variety of materials. HITACHI RS 3000 is equipped with a high resolution direct detection field emission gun (FEG) electron source that provides images of outstanding clarity. This allows researchers to observe features with sub-nm resolution in both high vacuum (HV) and environmental (ESEM) modes. The ESEM capabilities of the microscope enable imaging under non-destructive and non-caustic conditions, enabling observation of organisms and materials at their natural state. The system is equipped with a liquid nitrogen cryo holder, which enables imaging of samples frozen in liquid nitrogen. The SEM is capable of a variety of imaging techniques, including secondary electron, back scattering electron, cathodoluminescence, and X-Ray imaging. This allows for a full range of characterization techniques to be performed, including chemical analysis, depth profiling, line profiling, and particle size and shape analysis. RS-3000 is equipped with a high-performance computer system with a range of image processing and analysis software packages. This enables efficient data processing, automated analysis, and reporting of results. RS 3000 also comes with an integrated charging detector and electric field generator, allowing for detailed analysis of charging effects in samples. In addition, the instrument also features a mechanical stage, which allows for large samples to be easily imaged. Overall, HITACHI RS-3000 SEM provides an efficient and reliable imaging system for a wide variety of imaging applications, delivering outstanding image resolution and clarity with a full range of imaging techniques. The machine is equipped with a variety of advanced features and tools to enable researchers to accurately and efficiently image and analyze materials and organisms.
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