What is vacuum coating processing technology?
Release time:
2022-09-05
Vacuum coating processing is a new type of coating technology developed in contrast to the above-mentioned wet coating method, commonly known as dry coating technology. The existence of vacuum coating processing technology ensures the high integration, functionality, reliability, and production efficiency of integrated circuits. Utilizing advanced magnetron sputtering ion plating and multi-arc ion plating equipment, and based on technological innovation by international experts.
What is Vacuum Coating Processing Technology?
Vacuum coating processing is a new type of coating technology developed in contrast to the wet coating method mentioned above, commonly known as dry coating technology. Vacuum coating processing technology ensures the high integration, functionality, reliability, and production efficiency of integrated circuits. Utilizing advanced magnetron sputtering ion plating and multi-arc ion plating equipment, based on technological innovation by international experts.
Thin film evaporation is completed in a high-vacuum evaporation chamber. The storage, preparation, and testing of evaporation samples are carried out in a high-purity inert gas atmosphere in a glove box. The application of vacuum coating can be simply understood as depositing a metal film or coating on metal, glass, ceramic, semiconductor, and plastic parts through evaporation, sputtering, and subsequent condensation in a vacuum environment.
What are the technical differences in vacuum coating processing?
Vacuum coating processing technology is also a type of chemistry, forming vacuum coating processing technology through a transmission medium. Vacuum coating is an important aspect of vacuum applications. It is based on vacuum technology and uses physical or chemical methods to absorb electron beams, molecular beams, ion beams, plasma beams, radio frequency, magnetron, and a series of new technologies. It provides a new technology for preparing thin films for scientific research and actual production.
Vacuum Coating Processing Using advanced green vacuum coating technologies such as magnetron ion sputtering and multi-arc ion plating. The basic principle is: in a vacuum chamber, the energy generated by arc (or glow) discharge is used to directly evaporate (or sputter) and ionize the target material (metal or titanium alloy, etc.) to produce metal ions. Optical coating refers to the process of coating a single or multiple layers of metal (or dielectric) film on the surface of optical components. The purpose of optical surface coating is to reduce or increase the requirements for light reflection, splitting, color separation, filtering, and polarization. Vacuum coating refers to a method in which metal or non-metal materials are heated under high vacuum, causing them to evaporate and condense into a film on the surface of the coated workpiece (metal, semiconductor, or insulator).
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