Used CANON FPA 3000 i4 #9121240 for sale

Manufacturer
CANON
Model
FPA 3000 i4
ID: 9121240
Wafer Size: 8"
Vintage: 1996
i-Line stepper, 8" Reticle: 6" I/F: Mark-8 1996 vintage.
CANON FPA 3000 i4 Wafer Stepper is a cost-effective high-performance photolithography machine for semiconductor wafer production. Utilizing industry standard Gen5 DUV technology, CANON FPA-3000I4 is capable of producing the high-quality wafer output demanded in today's extremely competitive industry. FPA 3000I4 is equipped with a 4-inch vision system and a 22-inch mask field size. This ensures an accuracy of images with a 1.5µm feature size. The machine also features an ultra-high-resolution scanning mirror, designed to ensure high-contrast imaging and a fully automated system, which enables high-throughput production. CANON FPA 3000I4 is capable of handling wafers up to 200mm in size, thanks to its variable long-range reduction lens. This innovative lens is designed to give the user greater flexibility in wafer handling, providing users with a wider range of options when tackling challenging tasks. Additionally, FPA-3000I4 is capable of imaging various layers of materials, including gate oxide and polysilicon, allowing for the production of quality products. Users of FPA-3000 I4 are offered a host of advanced options, such as remote access and flash imaging technology. This allows for enhanced productivity and accuracy, allowing users to quickly and easily image a large number of wafers with ease. Additionally, FPA 3000 i4 is compliant with the most modern hardware and software protocols, ensuring maximum compatibility and minimal downtime. CANON FPA-3000 I4 is a cost-effective and reliable wafer production solution for the semiconductor industry. With its innovative reduction-lens technology and wide range of advanced features, CANON FPA 3000 I 4 meets the exacting standards of the modern wafer-fabrication industry. Utilizing the latest Gen5 DUV technology, FPA-3000 I 4 is capable of delivering optimal accuracy and precision, ensuring the quality and reliability of each chip produced.
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