Used SEMICS Opus II #9254525 for sale
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ID: 9254525
Vintage: 2008
Prober
Air supply: 0.4~0.7 Mpa
Vacuum supply: -50 Mpa
Media type: 3.5" FD/USB
Temperature: Hot / Ambient
Operation:
Display: 15" TFT Color LCD
CPU: Intel Pentium
Elevator
OCR
Clean pad: 10 x 20 cm
No printer
No bar code reader
Power supply: 220 V
2008 vintage.
SEMICS Opus II is a prober developed by SEMICS for testing electrical components, especially those related to semiconductors. It is designed with a high degree of modularity and expandability, allowing it to be adapted to a wide variety of test configurations. The prober features a retractable arm, equipped with a loading platform. This loading platform has a retractable guide which allows the prober to pick the wafer of interest, and transfer it to the testing position. The test configuration allows for in-situ probing of all aspects of the device, including resistance, capacitance, and other electrical parameters. The prober is equipped with a powerful USB-powered controller, as well as a PC software suite for programming and controlling the testing setup. This allows for a wide range of test parameters to be specified upfront, helping to ensure a consistent and repeatable testing protocol. The software is also able to log the test results in an easy-to-read and traceable format. In addition to electrical parameters, the prober has the capability to measure physical parameters of the device under test as well as its environmental characteristics, such as temperature, humidity, and pressure. These physical parameters can be used to identify any anomalies or irregularities in the manufacturing process. The prober also offers a wide range of peripheral options, such as precision temperature control systems, sensors for imaging, and gas production modules. All the provable components can be controlled through the USB-powered controller, allowing for modification and integration of many different systems. The prober is suitable to be used in both high-volume production lines and single-device testing setups. It offers a low cost-of-ownership, and a compressive range of capabilities, making it a popular choice for many industrial and research environments.
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