Used HITACHI S-9200 #9170207 for sale

HITACHI S-9200
ID: 9170207
Wafer Size: 8"
CD Scanning electron microscope (SEM), 8".
HITACHI S-9200 scanning electron microscope (SEM) is a high-precision tool designed for imaging and analyzing the surfaces of solid specimens at sub-micron levels. It can be used for a variety of research and development applications, such as material analysis, failure analysis and failure detection, reverse engineering, and more. The device offers high resolution imaging and excellent surface sensitivity due to its unique electron optics design. HITACHI S 9200 utilizes an asymmetrical electrostatic lenses to form a larger u-field, resulting in a shorter depth of focus and higher resolution. The equipment also features a wide range of detector systems, including multiple secondary electron detectors and an X-ray detector, which enable high-precision imaging in various applications. S-9200 is equipped with a powerful scanning system, which allows the device to scan specimen areas up to 300mm wide. This makes the device suitable for a variety of applications, including high-throughput materials analysis and reverse engineering of large components. The unit also has a low-vacuum chamber, which ensures sample preservation and a high-sensitivity recharge detector machine, enabling analysis of samples that can't be imaged in other SEMs. S 9200 is easy to use and its various functions can be easily accessed via its intuitive control software. It features a comprehensive suite of image processing and data analysis tools, allowing users to view, measure, and modify their images in real time. The tool also includes optional stage automation and total automation functions, which can be helpful for users that need to measure multiple samples quickly and accurately. Overall, HITACHI S-9200 is an advanced scanning electron microscope that provides high-resolution imaging and excellent surface sensitivity. Its powerful features and intuitive interface make it a great choice for researchers and engineers in a variety of fields, from material analysis to reverse engineering.
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