Used CAMBRIDGE Stereoscan S4-10 #293610292 for sale

ID: 293610292
Scanning Electron Microscope (SEM).
CAMBRIDGE Stereoscan S4-10 is an advanced scanning electron microscope that is capable of providing exceptional images, down to the nanoscale in all three spatial dimensions. It is a variable pressure instrument that maintains its vacuum to achieve optimal imaging quality. This allows for the imaging of non-conductive and wet samples, such as biological and polymeric specimens. Stereoscan S4-10 offers the highest resolution available in a scanning electron microscope, providing businesses, institutes, and government agencies with the accuracy necessary for their demanding research and development projects. Its low magnification electron optics, coupled with its digital electronics, enable it to provide unparalleled image resolution. CAMBRIDGE Stereoscan S4-10 also features two imaging modes that are designed to optimize image quality and analysis. The first is the backscatter imaging mode, which utilizes a low-angle scattered electrons to provide an optimum contrast and resolution. The second is the Thin Film Imaging Mode (TFIM), which allows for the accurate imaging of multiple thin films on 25nm layers and less. Stereoscan S4-10 can also perform automated sample stage movements and feature manipulation capability, allowing for improved image reproducibility and repeatability. Its software capabilities offer advanced automation and analysis tools to help users make more informed decisions when adjusting the magnification and imaging modes. CAMBRIDGE Stereoscan S4-10 can be used for a wide range of applications, from analyzing micro-defects in materials to examining electron nanostructure. It is also used for medical or industrial purposes, such as surface analysis or defect location in a range of products. In conclusion, Stereoscan S4-10 is an ideal scanning electron microscope for businesses, institutes, and government agencies seeking to analyze specimens and materials at the nanoscale level. Its low magnification electron optics and digital electronics provide enhanced resolution and detailed images, while its automated sample stage movements and software features offer a range of advantageous capabilities.
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