Used DNS / DAINIPPON SDW-80A-BVPE #9103912 for sale

DNS / DAINIPPON SDW-80A-BVPE
ID: 9103912
Wafer Size: 8"
Vintage: 1993
Developer systems, 8" (3) DV 1993 vintage.
DNS / DAINIPPON SDW-80A-BVPE is a photoresist system designed for use in the semiconductor industry. It is capable of processing environmentally sensitive photoresists to produce high-resolution substrates in a single-step lithography process. DNS SDW-80A-BVPE uses a unique spinning process to uniformly apply the photoresist to the substrate, achieving uniform thickness and feature size. The spinning process also ensures that the photoresist is securely attached to the substrate's surface. This is especially useful for processing delicate and expensive material. DAINIPPON SDW-80A-BVPE uses a high-power UV light source to image the resist pattern onto the substrate. This light is adjustable in both intensity and wavelength to ensure optimal compatibility with a variety of materials. The UV light exposure is followed by a baking process to fully cure and harden the resist. After baking, the resist is then washed away, revealing the underlying pattern. The photoresist system is designed for use in a cleanroom environment and eliminates the need for hazardous chemicals and solvents, making it a safe and economical choice for most applications. Additionally, SDW-80A-BVPE features several advanced features to ensure precise process control and high-quality results. It is compatible with a variety of substrates and sizes, offering an ideal solution for many different industries and processes. DNS / DAINIPPON SDW-80A-BVPE photoresist system is an excellent choice for semiconductor and MEMS manufacturers, providing reliable performance, ease-of-use, and superior results. By utilizing a cleanroom-based process, it eliminates hazardous chemicals and solvents while ensuring high-quality patterning and resolution. Its adjustable UV light source and baking process, combined with advanced process control features, make DNS SDW-80A-BVPE an excellent choice for achieving high-resolution, high-quality substrates.
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