Used TOKYO OKA / TOK TCE-2802 #293796086 for sale

TOKYO OKA / TOK TCE-2802
ID: 293796086
Vintage: 2002
Etcher 2002 vintage.
TOKYO OKA / TOK TCE-2802 is an etcher/asher that provides a perfect solution for developing ultra-fine microdevices. The equipment provides a high degree of accuracy in a streamlined automatic process. It's most distinctive feature is its well-designed integrated imaging system. A high-resolution camera is positioned above the workspace, enabling the operator to precisely monitor the etching/ashing process. The use of an integrated CCD monitoring unit further enhances accuracy, allowing for a high degree of precision for various types of etching/ashing applications. TOK TCE-2802 utilizes a newly developed high-resolution laser exposure machine that is highly efficient, enabling the processing of complicated patterns. A high-pressure and high-temperature steam jet cleaning process is used to remove carbonized residues. The high laser exposure rate enables a higher throughput and significantly improved cycle times. TOKYO OKA TCE-2802 tool is equipped with a selectable high-speed stage and automated drive mechanism, allowing a range of pattern processing tasks to be completed with ease and efficiency. The asset's integrated control model has a large LCD display with a graphical user interface, making the equipment very easy to operate. TCE-2802 is a clean and economical etching/ashing solution that offers dependable results in a wide range of applications. Its high accuracy and laser homogenization system ensures uniform processing, producing high-quality device structures that are highly reliable. The unit's integrated CCD monitoring and advanced stage design enables accurate and rapid processing. TOKYO OKA / TOK TCE-2802 is one of the most advanced etcher/asher machines available today. Its superior features offer reliable and repeatable production of microdevices. With its clean and economical design, TOK TCE-2802 is sure to provide reliable and consistently accurate results for a wide variety of microdevice applications.
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