Used MRC / MATERIALS RESEARCH CORPORATION Eclipse Mark II #9300201 for sale

MRC / MATERIALS RESEARCH CORPORATION Eclipse Mark II
ID: 9300201
Wafer Size: 6"
Systems, 6".
MRC / MATERIALS RESEARCH CORPORATION Eclipse Mark II Sputtering Equipment is a fully automated system that is utilized in semiconductor and materials research. This sputtering unit is used in a wide range of applications, and is ideal for research, device evaluation, and production. MRC Eclipse Mark II is designed for the deposition of both metals and complex oxides. It has a large chamber which is ideal for both large-scale and small-scale deposition applications. The main components of this machine include an ultra-high vacuum chamber, an ion source, and three targets. The targets are made of materials such as titanium, platinum, and tantalum, which are typically used for sputter deposition. In order to deposit films using MATERIALS RESEARCH CORPORATION Eclipse Mark II, the material to be deposited is placed in the chamber. The chamber is then evacuated so that the pressure inside is low enough for the sputtering to take place. An ion source then emits ions, which are then accelerated towards the targets. Upon impact, the atoms in the target are projected onto the substrate, resulting in the deposition of a thin film. The films formed in this tool are typically very uniform in thickness, which makes it ideal for accurate deposition of complex oxides. Additionally, Eclipse Mark II is equipped with two Process Chambers, which enable the precise control of deposition parameters such as temperature, pressure, and power during the deposition process. This results in precise control of the film structure and provides good reproducibility. MRC / MATERIALS RESEARCH CORPORATION Eclipse Mark II is equipped with a user-friendly graphical user interface, which allows users to monitor and control the asset parameters easily. The menu-driven structure makes it easy to program the model for repeatable depositions. MRC Eclipse Mark II equipment is designed to provide researchers and manufacturers with high-quality films at a low cost. This system is also easy to maintain and can be operated with minimal training. Its versatility and precision make it ideal for research, device development, and production in semiconductor, materials, and thin film industries.
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