Used SVG 8826 #293585669 for sale

SVG 8826
Manufacturer
SVG
Model
8826
ID: 293585669
Wafer Size: 2"-4"
Developer system, 2"-4".
SVG 8826 is an advanced photoresist equipment designed specifically for semiconductor device manufacturing. The system is the result of combining a highly sensitive photoresist formulation with the latest technology to create a product that offers a wide range of advantages to the semiconductor industry. 8826 unit utilizes a tailored, high-sensitivity negative-tone photoresist formulation and a dry development process to eliminate troublesome post-development clean-up and solvent waste. With improved process sheet resolution of up to 0.1 µm and feature profiles down to 0.2 µm, it enables accurate and high precision patterning for lithography, plating, and etching applications. Furthermore, thanks to the optimized formulation and ultra-low viscosity, the photoresist can be applied using the latest spin-coat and slit-coat processes. This reduces variances in thickness and increases the uniformity of the layer, which improves the reproducibility of device features. Additionally, the machine features low shrinkage and highly stable adhesion during etching and metal lift-off steps to ensure long-term reliability of the results. In terms of sustainability, SVG 8826 is designed to be a green product with most components used in the mixture chosen for their low environmental impact. Its environmentally friendly features such as low VOCs, no-halogen and no-metal additive, make the product an ideal choice for those looking to create sustainable semiconductor processes. Overall, 8826 photoresist tool is an incredibly powerful and versatile option for a variety of semiconductor device manufacturing processes. It is well-suited for a range of lithography, plating, and etching requirements and offers a number of advantages such as high-quality resolution and reproducibility. Additionally, its environmentally friendly design makes it an ideal choice for those looking to create a sustainable semiconductor process.
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