Used THOMAS SWAN 19x2" GaN #9188590 for sale

THOMAS SWAN 19x2" GaN
Manufacturer
THOMAS SWAN
Model
19x2" GaN
ID: 9188590
Epi reactors.
THOMAS SWAN 19x2 GaN (Gallium Nitride) reactor is a sophisticated piece of equipment used in a variety of industrial applications. The reactor is a combination of two separate reactors, known as a "dual-mode" reactor. The two reactors operate in parallel. The first reactor is composed of a horizontal electrically heated crucible containing GaN melt, surrounded by a cylindrical anode and shower head made up of a molybdenum cluster, which produces an electric field for homogenizing the melt. This measure provides stability to the melting process. The second reactor is made up of vertical GaN crystals which are formed by a special process known as "floating crystal" which involves the nucleation of tiny GaN grains in the vapor pressure of the molten GaN melt. THOMAS SWAN 19x2 GaN reactor offers a range of advantages compared to other reactors. Firstly, it is capable of operating at higher temperatures than other reactors, and has a lower electrical input. This allows the reactor to work more efficiently, while requiring less energy. Additionally, THOMAS SWAN 19x2 GaN reactor produces a higher purity product due to its advanced homogenizing foot. Last but not least, THOMAS SWAN 19x2 GaN reactor is very reliable and has an extremely long service life. THOMAS SWAN 19x2 GaN reactor is used in a variety of industrial applications. It is widely used for the production of high-frequency semiconductor devices, such as transistors, diodes, and laser diodes. It is also used for the fabrication of optical elements, such as lenses, and for the manufacture of electronic components. THOMAS SWAN 19x2 GaN reactor is also used in the production of thermoelectric materials, catalysts, and various other materials. In conclusion, THOMAS SWAN 19x2 GaN reactor is a highly versatile and reliable piece of equipment which is indispensable for a variety of industrial applications. It offers excellent energy efficiency and high purity in its output, making it an excellent choice for those who require precise control of their production processes.
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