Used FSI / TEL / TOKYO ELECTRON Mercury MP #9207075 for sale
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FSI / TEL / TOKYO ELECTRON Mercury MP is a photoresist equipment designed for use in the manufacture of semiconductor devices. The system consists of a main processor unit, a digital control subsystem and a liquid and gas handling arm. The main processor unit has an integrated software and provides users with flexibility in controlling their photoresist processes. It provides a wide range of photoresist processes, such as patterning, contact-resist development and etching, allowing for the production of highly accurate and reliable semiconductor devices. The digital control subsystem features a VME bus and a graphical user interface to manage the unit. It is configured with a rapid acquisition unit, a drive machine and real-time control capabilities. The flexibility of the control tool allows users to adjust parameters and monitor the process in real time. The liquid and gas handling arm is responsible for the delivery of the photoresist solution to the surface of the semiconductor device. It is equipped with a high-performance nozzle asset to accurately distribute the photoresist over the device surface. The nozzle model features a varying pressure-gradient nozzle which allows for intelligent distribution of the photoresist. Additionally, the nozzle is equipped with an Arc Kit for aligning the nozzle to the surface of the device. FSI Mercury MP is designed for safe and efficient operation and maintenance. It is equipped with a switch guard that prevents accidental switching of the equipment on or off. Additionally, the system is designed to automatically shut off if any abnormal condition is found. The unit operates at low power consumption and is designed for low-dust operation. TEL Mercury MP is designed for use in the manufacture of highly precise semiconductor devices with excellent yields. It features a flexible digital control subsystem and an efficient liquid and gas handling arm, enabling the machine to be used in a wide range of production processes. Its low-power consumption and low-dust operation make it an attractive option for the semiconductor industry.
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