Used QMC DSR 600 #9159232 for sale

QMC DSR 600
Manufacturer
QMC
Model
DSR 600
ID: 9159232
Vintage: 2010
Probers Currently de-installed 2010 vintage.
QMC DSR 600 is a high-performance prober for electrical, optical, and other material analysis applications. It is designed to measure and analyze the properties of conductive, resistive, and magnetic materials with high accuracy and speed. The equipment features a 320-mm XYZ stage with perfect step and repeat accuracy and optional linear motor control. It also has an automated moving stage and comprehensive automatic calibration features to reduce labor-intensive steps during test set up and device programming. DSR 600 is designed with a durable and reliable vacuum environment to accommodate 3-inch, 4-inch and 8-inch test sites. The system also features a large sample load capacity, a highly focused beam optics unit, and an integrated ionizer for positive or high-acceleration voltage testing. It supports all the latest test configurations for electrical and optical studies such as temperature, voltage, current, and much more. The machine also includes advanced optical detection and metrology capabilities, making it ideal for sizing, positioning and automated material-measurement applications. It is equipped with a variety of back-end imaging solutions such as area of interest (AOI), electron backscatter reflection (EBR) and imaging, X-ray mapping and Wafer Level Optical Machine (WLOS). The tool further supports real time imaging via camera feedback and video preview options with specific filters to adjust resolutions. QMC DSR 600 is an excellent choice for modern laboratories and research facilities, as it is designed to achieve high-accuracy results while reducing cycle times. By utilizing the integrated measurement operating asset and high-precision hardware, users can achieve higher testing accuracy and shorter run times while avoiding operator fatigue. This advanced machine enables superior data analysis and results reporting with powerful calibration tools, making it suitable for a wide range of electrical, optical, and material analysis applications.
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