Used HITACHI S-9380 #9251717 for sale
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ID: 9251717
Wafer Size: 12"
Vintage: 2006
Scanning Electron Microscopes (SEM), 12"
2006 vintage.
HITACHI S-9380 is a scanning electron microscope (SEM) designed for high-resolution imaging and analysis. It is capable of detecting surface features down to the nanometer level and is used in semiconductor inspection, metallography, material science, and various research applications. HITACHI S9380 is equipped with a 300kV electron gun that produces an electron beam capable of 10nm to 10µm resolution. This high voltage source enables high-resolution analysis and imaging of minute structures on the microscopic level. S 9380 provides a wide range of user-selectable magnifications in both a low- and high-vacuum environment. It is capable of performing both elemental and spectral analysis using Energy Dispersive X-ray (EDX) techniques. S-9380 utilizes a number of unique features. It has a tilting sample stage, enabling examination of sections from any angle. It also has a secondary electron (SE) detector in addition to an imaging detector. This assists in obtaining high-contrast imaging. The integrated computer control system allows users to adjust parameters such as stage height, current, and voltage for a more precise analysis. S9380 is compatible with an array of software applications that enable users to analyze and observe high-resolution images. It is capable of performing detailed 3D imaging of a wide variety of samples, from organic to inorganic samples. It is also equipped with an advanced image processing system that allows users to enhance images, identify and isolate key characteristics, and obtain detailed analysis of sample structures. HITACHI S 9380 is an advanced, high-resolution scanning electron microscope. HITACHI S-9380 enables users to obtain detailed images and measurements of even the smallest of structures. Furthermore, HITACHI S9380's software compatibility and comprehensive control system allow users to customize the microscope to meet their specific needs. With S 9380, users can count on obtaining excellent results down to the nanometer level.
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