Used HITACHI CG 4000 #9304325 for sale

HITACHI CG 4000
ID: 9304325
Scanning Electron Microscope (SEM).
HITACHI CG 4000 is a scanning electron microscope (SEM) that is designed for high performance imaging. It is a high resolution SEM with a low noise level and high brilliance of the electron beam, allowing for detailed analyses of the sample's structure, composition, and surface characteristics. HITACHI CG4000 features a new design with improved low-high contrast operations, a powerful imaging toolbar, and a range of specimen holders. CG-4000 has a range of detection modes including conventional backscatter SEM (BSEM) imaging, secondary electron (SE) imaging, secondary tilting angle SEM imaging (Wiener), X-ray mapping, and backscatter electron detector (BED) imaging. As well as classic microscopy, it offers a variety of unique imaging modes such as Z range, energy-PC imaging, and even scanning tunneling microscopy (STM). CG 4000 produces a high quality image with excellent contrast. It is capable of detecting a wide range of images containing features from 1nm to 150cm in size, and has a maximum magnification of 960,000X when using the in-column detector. CG4000 also offers high-sensitivity spectroscopy with an energy-dispersive X-ray system (EDS). The sample stage of HITACHI CG-4000 is capable of providing a precisely controlled observation environment. It has a range of features, such as automatic exchangeable holders, an auto scanning stage, and a sample transfer arm. These features allow the user to accurately manipulate the sample with millimeter precision. HITACHI CG 4000 features an intelligent control system which automatically adjusts the radiation power of the electron beam in order to minimize sample damage. It also has an easy-to-use user interface and a three-dimensional color mapping software system. This allows the user to visualize the composition and crystal structure of the sample being analyzed. Overall, HITACHI CG4000 is a top-of-the-line scanning electron microscope with a range of features that make it an ideal choice for imaging and analysis of both organic and inorganic samples. Its accuracy, sensitivity, and imaging capabilities make it a reliable tool for scientists and engineers.
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