Used HITACHI SU-1510 #293830405 for sale

HITACHI SU-1510
ID: 293830405
Vintage: 2009
Scanning Electron Microscope (SEM) 2009 vintage.
HITACHI SU-1510 scanning electron microscope (SEM) is a versatile, sophisticated analytical instrument used for gaining high-resolution images of a variety of objects, but particularly suitable to be used in the field of scientific research. HITACHI SU1510 is equipped with a standard design using a variable pressure chamber and a whole suite of advanced analytical features. It offers a maximum magnifying power of up to 600,000x, and an impressive maximum working distance of37mm. The camera equipment of SU 1510 is based on a spot detector (SD) and a spot alignment system (SA) that helps to maximise the image clarity when scanning samples. This microscope also comes with a built-in, fast, 12-bit, low-noise camera unit capable of operating at up to 18 Mp during data processing. The camera machine is equipped with three dedicated lenses for the imaging of objects, which are built into the mechanical arm of the instrument. HITACHI SU 1510 is capable of measuring the elemental composition of a sample using a combination of secondary ion and X-ray microanalysis (SEM/EDS/XRAY) which allows the analyst to determine the concentration and distribution of ions within a given sample. The analytical data is displayed on a real-time display and enables the user to draw conclusions about the material's electronic and elemental structure. In terms of the image quality, SU-1510 offers an impressive level of detail with a resolution of 0.6nm (at a working distance of 3mm) due to the advanced optics and stability of the optical tool. It is also capable of providing real-time 3D image reconstruction and is able to produce 3D isometric and orthographic images from the sample. Overall, SU1510 is a robust analytical tool that provides high-resolution imaging and advanced sample analysis capabilities. The instrument is well suited for a variety of applications such as analysis of micro- and nano-structures, characterisation of materials, and imaging of biological materials at energetic levels.
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