Used SEZ / LAM RESEARCH RST 201J #9059251 for sale

SEZ / LAM RESEARCH RST 201J
ID: 9059251
Wafer Size: 6"
Vintage: 2007
Spin processor, 6" 2007 vintage.
SEZ / LAM RESEARCH RST 201J is an automated etcher/asher that is used in the semiconductor industry to create circuit boards and other electronic components. The equipment is programmed to accurately etch or ashe multiple layers of metalized material on the substrate. SEZ RST 201J is capable of processing up to 200 Wafers per hour, and provides accurate etching/ashing down to one micron. Its digital controllers and drivers allow the system to be programmed for variable temperature, pressure, power, and etching speed. The unit also includes integrated sensors and indicators for wafer status and reaction control. The enclosed temperature control machine utilizes a cascade of air and nitrogen exchange to maintain an optimum temperature of 5ARMS within the processing chamber. This allows for precise control of the parameters required to ensure consistent etching and ashing. LAM RESEARCH RST 201J incorporates an electrochemical etch tank to speed up the etching and ashing process, and minimize chemical waste. This tank is designed to withstand the high wafer temperatures and pressures of up to 4.5ARMS and 4.7 atmospheres respectively that are necessary for the etching and ashing process. This tank can also process the highest etch rates due to the powerful variable current parameters of up to 1000 Amp-sec. RST 201J is designed to reduce costs by increasing process yields, speed, and efficiency. Its wafer size flexibility allows engineers to maximize the wafer size to their specific requirements. It also incorporates an automated wafer loading tool for minimized downtime. Additionally, its comprehensive traceability feature allows tracking of wafer performance and process data. SEZ / LAM RESEARCH RST 201J is an ideal machine for those looking for reliable, repeatable, and cost-effective etching and ashing services. Its robust design and accurate wafer processing capabilities make it a superior choice for the semiconductor and microelectronic industries.
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