Used DENTON VACUUM DESK II #9209385 for sale
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DENTON VACUUM DESK II is a sputtering equipment designed for use in material research and analysis. Its unique design and maintenance philosophy make the unit highly reliable and versatile. Featuring a range of chamber geometries and operating temperatures, DESK II supports a wide variety of sputtering configurations. The vacuum system of DENTON VACUUM DESK II is designed to provide repeatable, high-vacuum performance. The main components are the turbo pump, the diffusion pump, and the ion gauge. The turbo is used for roughing down to a few torr. The diffusion pump is then used for further evacuation of the chamber, down to about 10-4 torr. Additionally, an ion gauge is installed for measurement of the unit pressure. The main chamber of DESK II has been designed with a high-grade stainless steel construction, with the ability to withstand pressure and temperature ranges of up to 760-1020 °C. Additionally, its construction provides a high degree of protection against environmental particulates and contaminants, giving the machine a long lifetime. DENTON VACUUM DESK II is compatible with a wide variety of sputtering techniques, including direct current (DC), pulsed DC, triode, RF, and unbalanced magnetron. It supports materials such as aluminum, chromium, iron, gold, silver, and titanium, allowing for a wide range of research options. In terms of control, DESK II allows the user to set up their own programmable parameters to achieve maximum process control. The tool includes adjustable chamber power for altering target temperature, pressure, and other asset settings in order to optimize the process. Furthermore, DENTON VACUUM DESK II features a SUSI microprocessor which enables experiments involving data logging, as well as automatic reactivation of the model from standby mode. All in all, DESK II is a reliable, versatile, and cost-efficient material research equipment that provides advanced processing capabilities for optimal materials research and analysis. Its repeatable performance and well-engineered design provide for a great deal of experimental control, allowing for greater flexibility and precision in the research process.
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