Used AMAT / APPLIED MATERIALS Centura Ultima TE #9296909 for sale

AMAT / APPLIED MATERIALS Centura Ultima TE
ID: 9296909
Wafer Size: 8"
Vintage: 1999
CVD System, 8" 1999 vintage.
AMAT / APPLIED MATERIALS Centura Ultima TE is a high-performance thermal evaporator equipment designed for use in vacuum technology and nanofabrication. The system specializes in forming very thin films with excellent step coverage on a variety of substrates and materials. The unit is operated using high-precision, low-noise thermal evaporation technology which is combined with extremely efficient temperature control, providing a complete solution in a compact package. The machine can evaporate a variety of materials such as gold, silver, aluminum, silicon, and others. Thermal Evaporation Technology: To achieve the optimal results in film formation and surface properties, the tool combines a high-temperature resistant quartz crucible, an electron gun that is used to create a powerful electric field and an electrically heated filament to evaporate the material in an inert environment. The vacuum environment within the asset is regulated by a cryo-pump, providing the high vacuum necessary for the efficient formation of the films. The model also includes a closed-loop temperature control facility with an intelligent PID feedback mechanism. This provides more consistent film formation with a high degree of repeatability. The equipment is suitable for a wide range of substrates and materials including Si, SiO2, polymers, and metals. It also has the capability to deposit ferroelectric oxides and dielectrics, making it ideal for various sputtering applications. AMAT Centura Ultima TE is a friendly and convenient system that provides excellent results for users with little to no experience. Its sophisticated temperature control technology and unique crucible design ensures that the film deposition process is repeatable and reliable without any manual tweaking required. Uniform temperature control and a custom anneal option create a highly stable environment for evaporation over a wide range of temperatures, preventing thermal runaway events. In addition, a timer can be used to control the time spent in each temperature stage for precise temperature management from start to finish, eliminating the need for manual adjustment.
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