Used SEMIPROBE SA 12 #9171154 for sale

Manufacturer
SEMIPROBE
Model
SA 12
ID: 9171154
Semi automatic prober, 12" Microscope with lenses camera Motorized movement (X, Y, Z) For GPIB or USB controlled automatic stepping Non-thermal chuck, 12'' 2013 vintage.
SEMIPROBE SA 12 is a prober designed and manufactured by SEMIPROBE, a leader in the field of nanoscale probing. This prober has been designed for testing a variety of different integrated circuits (ICs) at high speeds and with high accuracy. The heart of SEMIPROBE SA-12 is its precision motion system composed of three axes, the Z-Axis, the Theta-Axis, and the X-Axis. The Z-Axis moves the test probe in the vertical direction and is driven by a precision motor to scan the IC under test at a rate of up to 10 microns per second. The Theta-Axis provides fine rotational control of the probe to allow for measurement of device characteristics over a full 360-degree range. Finally, the X-Axis provides a platform for the IC under test and is driven by a powerful linear motor. The prober also includes a theo-pressure test head that allows fine tuning of the test parameters and allows for the testing of individual pins without noise interference. SA 12 has a built-in precision micropositioner which enables probing with nanoscale accuracy. Thanks to its advanced control algorithms and real-time resistive touch sensing technology, SA-12 can perform highly complex probing cycles in a matter of seconds. To ensure accurate results, SEMIPROBE SA 12 is equipped with an advanced temperature compensation system that maintains a stable temperature in the probe. This temperature compensation allows the prober to maintain accuracy in high ambient temperatures. SEMIPROBE SA-12 is also equipped with a host of safety features, including overload protection, ESD protection, and anti-static shielding. SA 12 is a highly accurate and capable piece of test equipment. Its micro-level accuracy, fast cycle times, and advanced temperature compensation system make it a great choice for testing ICs in the nanoscale range.
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