Used HITACHI S-3000N #9226521 for sale
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HITACHI S-3000N is a scanning electron microscope (SEM) that is widely used for imaging a variety of materials in a wide range of imaging modes. The equipment combines two separate electron detectors: a variable pressure SEM, which allows for high-resolution imaging at extremely high magnifications, and a variable pressure backscattered electron detector (BSE) for compositional analysis. The SEM has flexible modular components, allowing for a range of options in terms of magnification and imaging modes. Designed for operation in all fields of the physical, life and medical sciences, HITACHI S-3000 N provides excellent functionality and flexibility, with a variety of resolution and magnification options. The system is especially well-suited for Low voltage operation, with an impressive range of energies down to 1 keV. The unit also features an impressive subnanometer resolution and a maximum magnification of up to 500,000x. S 3000 N features an array of imaging techniques, including secondary and backscattered electrons, backscattered electrons after primary interaction (BSE-PI), and energy dispersive X-ray microanalysis (EDX). For compositional analysis, BSE-PI mode is especially suitable, providing reliable quantitative intelligence on the local chemical composition of materials. HITACHI S 3000 N can also be equipped with sample holders to optimize imaging of a variety of samples. The sample holder can be adjusted in tilt, allowing for imaging of a wide range of samples requiring a range of possible orientations. Additionally, the machine is equipped with a sample cooling mechanism for better imaging of materials with high thermal properties. Overall, S-3000N is a powerful and widely applicable scanning electron microscope. The tool offers a variety of imaging and compositional analysis capabilities, as well as a range of accessories to expand its usage and versatility. It is widely used in the life sciences, physical sciences, and medical sciences and provides reliable, high-resolution imaging, compositional analysis, and sample cooling.
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