Used HITACHI S-7000 #9181743 for sale
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HITACHI S-7000 Scanning Electron Microscope (SEM) is an advanced imaging and analysis tool used for the observation of surfaces and nonconductive materials at high resolution. This microscope offers an unparalleled level of accuracy, making it one of the most advanced SEM systems available on the market today. At a basic level, S-7000 functions much like a traditional transmission electron microscope, which uses a focused beam of electrons to produce an image of a target sample. HITACHI S-7000, however, utilizes scanning electron optics which scans a focused beam of electrons across the sample in a series of arc-shaped paths. This allows for the gathering of information on both the surface topography as well as the elemental composition of the sample. S-7000 also utilizes a variety of sample holders such as a stage tilt control, sample tray tilt control, and a sample rotation control which allows for the collection of even more detailed data from the sample. In addition to its scanning capabilities, HITACHI S-7000 also utilizes a variety of digital processes such as Autofocus and Auto Scan that allow for excellent imaging of both the surface topography and elemental composition. The Autofocus system is a digital process that helps to adjust the position of the electron beam to obtain the sharpest images possible. The Auto Scan process allows for the collection of images over a wide area quickly and with high resolution. S-7000 also offers a variety of imaging techniques such as scanning Auger microscopy, Secondary Electron Imaging, Backscattering Electron Imaging, and Energy Dispersive X-Ray Analysis. Each of these imaging techniques offers different levels of resolution and detail that allows the user to obtain a deeper level of understanding of the target sample. Overall, HITACHI S-7000 is an advanced scanning electron microscope system that offers unparalleled accuracy to help users gain a deeper level of understanding of their target sample. Its combination of scanning capabilities, digital processes, and imaging techniques provides users with an unmatched ability to gain deeper insights into nonconductive materials. Its advanced imaging and analysis capabilities make it the perfect choice for any research facility seeking to understand the intricacies of the materials they are studying.
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