Used HITACHI S-3000N #9361955 for sale

HITACHI S-3000N
ID: 9361955
Scanning Electron Microscope (SEM).
HITACHI S-3000N is a scanning electron microscope (SEM) capable of producing high-resolution images of small objects on the nanoscale. It is a multi-purpose instrument, and is often used for biological, medical, and physical research, ranging from nanoscale material science to small semiconductor components. The equipment is configured with an SE-detector and an Oxford AZtec Energy Dispersive X-ray Spectrometer (EDS), enabling additional elemental analysis. HITACHI S-3000 N is composed of an electron column which is capable of producing high-resolution images, electrostatic and magnetic lenses to focus the beam, and a quartz ultra-high vacuum chamber to maintain a low environmental pressure. The column utilizes a field emission electron gun (FEG), allowing for rapid beam acceleration, relatively high electron current and short pulse lengths. S 3000 N is capable of generating an acceleration voltage of up to 30kV and an accelerating current of up to 6mA, providing resolutions of 3nm. The sample mounting of S-3000 N is automatic, which allows for efficient sample preparation. There is also an automated control for a wide range of sample preparation parameters, including temperature, humidity, and gimbal angle. The system is equipped with an analysis unit interface, enabling the transfer of data for further analysis and image modification. S-3000N offers a host of features, including a digital sample-control camera, an automated focus adjustment, and automatic tilt and height corrections. These functions are maintained through the OMA (Objective Magnification Adjustment) machine. The OMA tool allows for precise and accurate focusing control and sampling alignment, ensuring consistent imaging and analysis. In summary, HITACHI S 3000 N is a high-quality scanning electron microscope with a multitude of features and capabilities allowing for a variety of imaging and analysis requirements. It is ideal for a wide range of research applications, and has been designed to provide precise, accurate and consistent performance.
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