Used ZEISS EM 900 #9245793 for sale

ID: 9245793
Transmission Electron Microscope (TEM) Upgraded to Windows 10 PC.
ZEISS EM 900 is a next-generation scanning electron microscope that provides high resolution imaging at nanometer resolution. It provides a large field of view of up to 90 mm2 and can image specimens up to 10 nm in diameter. Its high magnification capability enables detailed imaging of small features and areas and makes it an ideal tool for advanced materials research and biological scanning. Its advanced electron optics and fast scanning speed make it an efficient instrument and capable of imaging specimens at a variety of angles. The system also includes a sample auto focus mechanism, allowing for easy and accurate alignment of the sample. EM 900 also offers a wide range of imaging capabilities, including secondary and backscattered electron imaging, uni- and bi-polar secondary electron imaging, as well as X-ray spectral imaging. It also features digital imaging with automated contour detection and quantification capabilities. With its excellent depth of focus and long working distance, it's perfect for imaging biological specimens in addition to materials and artifacts. The microscope includes a variety of control software designed to be easy to use and feature rich. Its user-friendly interface allows for customization, exploration, and experimentation of different parameters and settings. It is equipped with an Ethernet connection to link the microscope with computers and other instruments, making for a completely automated system. In addition to its control software, it includes powerful analysis packages including E-Scan, which is an efficient image processing application for analyzing, producing, and controlling SEM images. Overall, ZEISS EM 900 is a powerful and versatile scanning electron microscope that can be used for various applications in materials and biological research and many other fields. With its cutting-edge electron optics, fast scanning, and robust control software, it is sure to be an excellent choice for imaging specimens at the nanometer resolution.
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