Used MPI LEDA-8F-E3G Plus #293627389 for sale

Manufacturer
MPI
Model
LEDA-8F-E3G Plus
ID: 293627389
LED Prober.
MPI LEDA-8F-E3G Plus Prober is a high-precision, automated probing equipment developed to meet the demands of modern semiconductor production for a variety of applications. The system is designed for high repeatability and accuracy in the probing of 2D and 3D test structures, providing reliable performance in a variety of test and production processes. The unit consists of a robotic platform and four integrated test platforms which can be configured with a variety of components such as probes, sensors, and active production modules. The robot is driven by ultra-high speed high power DC motors and can be programmed to move up to 120 μm with a minimum resolution of 1nm. LEDA-8F-E3G Plus machine includes an intuitive, user-friendly interface for programming, monitoring, and controlling the tool and it is equipped with high performance hardware, such as Ethernet and RS-232 interfaces. It is also equipped with a high-accuracy laser metrology asset for measuring the traces and geometries of the samples and it is compatible with a number of camera systems for monitoring the samples during probing. The model offers a wide range of use cases, from manual probing to full automation, allowing users to test single or multiple samples in multiple steps. The equipment is located inside a cleanroom and can also be used in combination with other compatible test equipment. The system supports a variety of test and production requirements, including: electrical, optical, thermal, and mechanical probing and testing, high density interconnect testing, optoelecronic testing, MEMs testing, and production of 3D chips. Its sensor array and the precision of its linear design allow for a high degree of repeatability and accuracy. In conclusion, MPI LEDA-8F-E3G Plus Prober is a sophisticated, automated unit capable of meeting the most demanding requirements in modern production processes. Its broad range of compatibility and versatility give it a great potential in both testing and production of advanced semiconductor components.
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