Used ULVAC CRTM-5000 #9105410 for sale

ULVAC CRTM-5000
Manufacturer
ULVAC
Model
CRTM-5000
ID: 9105410
Quartz crystal film thickness measurement systems.
ULVAC CRTM-5000 is an evaporator specially designed for the production of highly precise and efficient thin film deposition. It utilizes ceramic heater technology and a unique glass bell-jar design to provide excellent thermal control while allowing for low volume deposition onto substrates of various sizes and shapes. With its advanced high-vacuum system, CRTM-5000 is capable of achieving temperatures ranging from room temperature to 1,500°C and pressures as low as 10-6 Torr. Using an advanced rotatable magnetron source, ULVAC CRTM-5000 can locally evaporate at highly controllable temperatures and rates. This allows for higher deposition rates, greater uniformity and more precise control over the entire process. The powerful performance and precision of CRTM-5000 makes it an excellent choice for applications such as semiconductor dopant layers, metallization layers, passivating layers and various optical coatings. ULVAC CRTM-5000 offers an intuitive user interface with wireless communication, allowing quick and easy setup and operation. With proven uniformity, excellent repeatability and superior control, CRTM-5000 is the perfect choice for thin film deposition. ULVAC CRTM-5000 is compatible with a range of standard gases including nitrogen, oxygen, argon, and helium, as well as with ULVAC line of gas monitoring systems, allowing for greater control and productivity. CRTM-5000 is also designed to be energy efficient, allowing for lower operating costs and savings. Overall, ULVAC CRTM-5000 is an advanced, high-precision evaporator that allows for quick and easy setup, intuitive operation and superior performance. It provides excellent thermal control, precision and repeatability, while also allowing for higher deposition rates. It is an excellent choice for various thin film deposition applications, as well as any application requiring precise and efficient thin film deposition.
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