Used STK SYSTEM 9 #9352548 for sale

STK SYSTEM 9
Manufacturer
STK
Model
SYSTEM 9
ID: 9352548
Burn-in system.
STK Equipment 9 is a comprehensive burn-in system for semiconductor and wafer processing. Through the use of advanced subsystems and comprehensive automation choices, the unit provides reliable and efficient results for burn-in tasks. At the core of Machine 9 is an advanced thermal conditioning tool which provides precision heating and cooling to the wafers during burn-in process. This asset is equipped with a microprocessor-based controller which allows the user to accurately set and maintain the desired temperature. Additionally, a programmable timer can be used to control the duration of any specific burn-in procedure. The model also contains a number of features designed to ensure quality and reliability of the burn-in process. This includes a detector equipment which constantly monitors and checks the wafer's temperature during the process, providing a warning if any anomalies are detected. Additionally, the system also contains an automatic shut-off function which will halt the burn-in procedure in the event of any unexpected events. For added convenience, STK Unit 9 also includes an integrated power supply which allows for direct power connection to the machine. This allows for easy, hassle-free setup and operation of the device. Additionally, the tool can be operated remotely and is compatible with most existing computer systems. To ensure user safety, Asset 9 is equipped with advanced safety features such as a safety shut-off switch in case of emergencies, as well as numerous easily accessible emergency stop buttons. Additionally, the model is designed to externally indicate any faults that may arise during the burn-in procedure. In conclusion, STK Equipment 9 is a comprehensive and highly reliable burn-in system for semiconductor and wafer processing. With its combination of advanced thermal conditioning, programmable settings, and safety features, the unit provides reliable and safe performance throughout its burn-in process.
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