Used CAMBRIDGE Stereoscan 260 #127441 for sale
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CAMBRIDGE Stereoscan 260 is a scanning electron microscope (SEM) that is known for its ability to provide high-resolution images of materials. Stereoscan 260 provides a variety of features, including a wide range of magnification, from 10x to 200,000x, and high-resolution images with a resolution of up to 2 nm. Additionally, CAMBRIDGE Stereoscan 260 can be used for a variety of applications, such as surface imaging, surface chemical analysis, microanalysis, and 3D imaging. The main components of the SEM are the column, imaging chamber, and the detector. The column contains the electron gun which produces the electron beam that is used to create the image. This beam is then focused using electromagnetic lenses and scanned over the sample in order to create the image. The imaging chamber contains the sample and is used to create an environment that allows for the electrons to interact with the sample. This chamber also holds the sample stage, which is the platform that holds the sample in place for being scanned. The detector is the main component of the SEM that is responsible for registering the electrons that have been scattered from the sample. This component is the one that produces the image seen on the computer screen. There is also a vacuum chamber that houses both the column and the detector in order to keep the environment as close as possible to a vacuum so that the electron gun will not be affected by any air molecules. Stereoscan 260 features a variety of accessories and add-ons, such as a motorized sample stage that allows for automated image acquisition. Additionally, the system is compatible with a wide range of detectors, including secondary electron detectors, scattered electron detectors, and energy dispersive X-ray detectors. These detectors provide additional information about the sample in the form of microanalysis. CAMBRIDGE Stereoscan 260 is a valuable tool for many different applications. Its combination of high magnification and high-resolution images makes it an ideal choice for surface imaging and surface analysis. Its wide range of supported detectors makes it suitable for many different types of microanalysis. Finally, its automated sample stage allows for accurate 3D imaging with minimal user input, making it a valuable tool for many scientific and industrial uses.
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