Used LAM RESEARCH AC/AC-Converter TCP #293646135 for sale
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ID: 293646135
Converters
GmbH
Frequency: 50 Hz
kVA: 35 Ka
Input: 3 / 400 V, 55 A
Output: 3 / 208 V, 100 A
Power supply: 3Ac, 400 V / 3Ac, 208 V.
LAM RESEARCH AC/AC-Converter TCP is an etcher/asher specifically designed for production or prototyping for that involves large-scale micro-structures. This etcher contains two interchangeable micro-machining tools, a laser etcher and a plasma asher. The laser etcher uses a high-energy laser to etch precise patterns in substrates, while the plasma asher uses inductively generated plasma to asher finer features down to 5 microns per edge into substrate materials. The integrated AC/AC-converter TCP helps automate the process, saving time and greatly reducing the possibility of human error. This tool can be used to etch instructions directly on micro-structures. These instructions can be used for diagnostic, micro-fabrication, or other specialized applications. The laser etching tool works by focusing a laser beam onto a material, allowing for high-precision circuitry with less material consumption when compared to other methods of etching. The plasma asher is also capable of high precision etching, allowing for high definition microstructures even on substrates that may not be conducive to laser etching. The AC/AC-converter TCP is capable of heterogeneous multi-material etching and allows for drastically increased throughput by controlling multiple tools simultaneously. This etcher is designed to make to the process streamlined and efficient, minimizing the amount of time and manpower necessary during the etching process. It also provides a more precise result overall, as it works to match the additive materials so wastes less material on the substrate. Finally, the AC/AC-converter is designed to be easily scalable, meaning that it can be modified to suit multiple applications and desired outcomes. It is also a more cost-efficient solution than other, more complex etching solutions. With all these features, this etcher makes a great option for high-precision and large-scale microstructures.
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