Used ION TECH MPS 3000 PBN #293731796 for sale
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ION TECH MPS 3000 PBN is an ion milling equipment designed for high-precision surface processing on a variety of materials including dielectrics, semiconductors and metals. The system is capable of producing surfaces with very high precision and ultra-smooth finish. It is a cost-effective alternative to chemo-mechanical polishing (CMP) and other conventional dry polishing techniques. MPS 3000 PBN unit consists of two main components - an ion source and a vacuum chamber. The ion source is made up of an externally mounted thoriated-tungsten arc, a high-voltage power supply and a mass flow controller. It generates a highly charged ion beam which is then directed towards the target material through an electrically-conductive graphite mask. This mask reduces the energy of the beam, allowing it to be applied to the delicate target material without damaging it. The vacuum chamber is designed to keep the process gases and ions under vacuum, thus allowing the ion beam to travel through the chamber to reach the target material. The chamber is equipped with a TMK (turbo-molecular pumping) machine which maintains the vacuum process conditions. In addition, the chamber is also equipped with a cryogenic cooling tool which helps keep the target material at a controlled temperature region. The ion beam is directed in a carefully controlled pattern, so that it penetrates deeper into the target material, creating a high-precision, ultra-smooth surface finish. The ion beam is also able to etch fine details such as patterns and text, making it ideal for precision micromachining and patterning applications. ION TECH MPS 3000 PBN is designed to be user-friendly and robust and is capable of continuous and uniformly distributed etching. Its low power consumption ensures that the asset is highly energy efficient and running costs are kept to a minimum. The finishing results produced by the model are also highly stable and repeatable, ensuring that precision and consistency are maintained throughout the surface processing process.
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