Used SCHAAF TECHNOLOGIES GMBH 320 #9212900 for sale

ID: 9212900
Vintage: 2012
Coating drum system 60 Hz 2012 vintage.
SCHAAF TECHNOLOGIES GMBH 320 is a photoresist equipment capable of depositing a ceramic film onto a substrate as part of the semiconductor fabrication process. The system utilizes a semiconductor manufacturing approach referred to as 'chemical vapor deposition' (CVD) to deposit a thin layer of ceramic onto the desired substrate. The deposition is done in a heated environment, where reactants such as silane, oxygen, and nitrogen in vapor form are injected into the chamber. The reactants decompose on the substrate surface, forming a resistive ceramic coating directly onto the substrate. This highly controlled deposition process provides an ideal thin film for various semiconductor applications. The resultant ceramic coating can be used for chemical resistance, isolation, and passivation of electronic components or as protective coatings for organic structures in biomedicine. The layer is highly conformable yet highly resistant to wear and tear, as well as to repeated exposure to high temperatures. 320 can be used in both batch and inline processes for the deposition of high-quality thin film. The unit is designed to be compatible with commonly used precursors such as silane, oxygen, and nitrogen, allowing for the customization of the deposition characteristics to specific applications. Control parameters such as pressure, temperature, and reactant concentrations can be accurately modified to optimize the result. The machine features a step-wise deposition process, where the reactants are introduced in an incremental manner to a controlled environment, allowing for a consistent thin film deposition. Finally, SCHAAF TECHNOLOGIES GMBH 320 is a highly safe and reliable tool, with all the components enclosed inside a protective housing. The asset includes a built-in cooling model to protect the chamber, as well as a sensor array that monitors equipment performance at all times. The entire system is designed to be as compact as possible, which makes it an ideal solution for any environment constrained on size and space requirements.
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