Used FEI Nova NanoSEM 600 #293625056 for sale

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ID: 293625056
Scanning Electron Microscope (SEM) SE Detector with everhard thornley BSE Detector SE and BSE Tunable lens and low vacuum LVD CCD Infrared camera Evactron system.
FEI Nova NanoSEM 600 is a scanning electron microscope (SEM) capable of imaging the fine structure of a variety of specimens. This SEM has a wide range of capabilities to image delicate samples with high precision and efficiency. It is constructed with a dual column equipment that helps to reduce mechanical interference between columns and provide improved stability and scan accuracy. This system also provides superior electrical control and efficient heat dissipation, preventing damage to the specimen caused by heating. The SEM has a wide range of detectors which enable it to take images with exceptional contrast and dynamic range. The secondary electron (SE) detector produces images of high contrast, whereas the transmission electron (TE) detector provides superior resolution. In addition, the SE and the TE detectors can be used in combination to enhance image contrast and gain insight into specimen characteristics. The beam generator, consisting of a cold field emission source, produces very fine electron beam with superior electrical performance. The electron beam can be modulated between 0.15 nm and 15 µm spot size, producing images of exceptional detail. This resolution is complemented by an in-lens and digital image corrections unit allowing the user to adjust parameters such as astigmatism and chromatic aberration. Nova NanoSEM 600 has a dedicated vibration isolation machine which prevents vibrations and air flows caused by the environment from affecting the SEM imaging process. It also has an advanced temperature control tool that maintains the specimen chamber's temperature and humidity within a tight range. FEI Nova NanoSEM 600 is an extremely versatile instrument that can be used in a variety of fields ranging from nanotechnology and materials science to biological research. Due to its superior imaging capabilities and stability, it is a highly useful tool for research, analysis, and nanomanufacturing.
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