Used TEL / TOKYO ELECTRON Lithius i #9215227 for sale

TEL / TOKYO ELECTRON Lithius i
ID: 9215227
Wafer Size: 12"
Coater / Developer system, 12" Main frame.
TEL / TOKYO ELECTRON Lithius i is a photoresist equipment designed to meet the needs of photolithography applications. It uses an advanced spin coating system to apply an even, thin layer of liquid photoresist onto a silicon wafer. The photoresist is then exposed to UV light, which activates the sensitive molecules on the surface of the wafer, causing them to react to form an image. After exposure, the photoresist is then exposed to a solvent, sometimes referred to as a "developer", that helps to selectively remove the exposed portions of the photoresist layer and leave behind the remaining unexposed parts. TEL Lithius i photoresist unit offers a wide array of features designed to make photolithography processes efficient and cost effective. It is equipped with a high-resolution thermal imaging machine to ensure precise image development. Additionally, it has an advanced wafer handling tool that allows for maximum utilization of wafer surfaces while ensuring low defect rates. In terms of safety, the asset is designed to protect operators from exposure to harmful chemicals. TOKYO ELECTRON Lithius i is suitable for use in a variety of photolithography applications, including microelectronics, biotechnology, and optical systems. Its spin coating model offers high accuracy and uniformity, resulting in high yields and high-quality test results. Its advanced wafer handling and thermal imaging systems also allow the equipment to perform extremely accurate and precise processes. Moreover, the system is designed to be easy to use and maintain. In conclusion, Lithius i is a reliable and advanced photoresist unit suitable for a variety of photolithography processes. Its spin coating machine ensures uniform, even coating of photoresist films while its thermal imaging and wafer handling systems provide accuracy and precision. The tool is also designed to maximize safety and efficiency, resulting in high yields and excellent test results.
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