Used TEL / TOKYO ELECTRON Mark Vz 8000WC #9148322 for sale
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TEL / TOKYO ELECTRON Mark Vz 8000WC is a state-of-the-art Photoresist Equipment designed to produce precise thin films in the semiconductor, flat panel display, nanotechnology, and optoelectronics industries. It features a number of cutting-edge technologies and advanced features that allow the user to achieve sub-micron accuracies and high throughput. The 8000WC utilizes a "Dry Process" feature, an advanced film deposition technology. This technology applies Vacuum Vapor Deposition (VVD) to effectively deposit a uniform, conformal coating of photoresist materials onto a substrate. By utilizing high temperatures and plasma-generated radicals, this process is able to achieve accurate, repeatable, and low-cost film deposition results. The 8000WC offers multiple dry process-based deposition configurations and temperature control to achieve the desired level of thin-film accuracy and throughput. The system includes a Graphical User Interface (GUI) with easy-to-use command menus and color screenshots of what is to be expected in the deposition procedure. It is also equipped with a vertical aspect-ratio feature that allows the user to accurately control the film's uniformity and to minimize non-uniformity. Additionally, the unit features a side-slope compensation capability allowing for shifts in the angle of inclination for a given substrate. The 8000WC also offers variable-frequency (23 to 300 MHz) high-power hot sources for increased process stability and capability. It can be used to process both large and small substrates with the same level of accuracy and uniformity. Lastly, its advanced Image Quality Adjustment (IQA) feature provides customized recipe parameters for enhanced contrast-sensitivity and chromatic sensitivity. Overall, TEL Mark Vz 8000WC Photoresist Machine provides a powerful combination of easy-to-use features, high precision, and reliable throughput that make it a suitable choice in the photoresist processes involved in the production of semiconductors, flat panel displays, nanotechnology, and optoelectronics.
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