Dichroic Silicon Wafer
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Dichroic Silicon Wafer

 To begin we will explain silicon and the characteristics of this element that make it appropriate for our uses. Silicon is the second most common element on Earth and it is the seventh-most common element in the entire universe. It is the most common semi conductor and the most widely used in the electronic and technology sector. There are different silicon fabrication methods including the horizontal gradient freeze method, the horizontal bridgeman method, the vertical bridgeman method, the vertical gradient freeze and finally the Czochralski pulling method.

During the growth process intentional additions of dopants can be added to the to change the purity of the silicon depending on what the purpose of it will be. These introduced impurities can change the electrical properties of the silicon, which can be useful depending on what the silicon is ultimately being produced for. Boron, aluminum, nitrogen, gallium and indium are just some of the silicon dopants that can be introduced during the growth process. Depending on what level the silicon has been doped, the semiconductor can be considered extrinsic or degenerate. Extrinsic would be lightly to moderately doped whereas degenerate semiconductors act more as conductors because of the high levels of doping that occurs during the fabrication.

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Company : VY Optoelectronics Co., Ltd
Mobile : 008613654401897
Phone : 008643184631230
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Dichroic Silicon Wafer

 To begin we will explain silicon and the characteristics of this element that make it appropriate for our uses. Silicon is the second most common element on Earth and it is the seventh-most common element in the entire universe. It is the most common semi conductor and the most widely used in the electronic and technology sector. There are different silicon fabrication methods including the horizontal gradient freeze method, the horizontal bridgeman method, the vertical bridgeman method, the vertical gradient freeze and finally the Czochralski pulling method.

During the growth process intentional additions of dopants can be added to the to change the purity of the silicon depending on what the purpose of it will be. These introduced impurities can change the electrical properties of the silicon, which can be useful depending on what the silicon is ultimately being produced for. Boron, aluminum, nitrogen, gallium and indium are just some of the silicon dopants that can be introduced during the growth process. Depending on what level the silicon has been doped, the semiconductor can be considered extrinsic or degenerate. Extrinsic would be lightly to moderately doped whereas degenerate semiconductors act more as conductors because of the high levels of doping that occurs during the fabrication.

Saler Company Information

Company : VY Optoelectronics Co., Ltd
Mobile : 008613654401897
Phone : 008643184631230
More Information : View
Online order registration form