Different Types of Evaporation Materials
(주)연진에스텍은 Granule, Beads & Sphere, Lump, Rod, Powder, Single Crystal 등 대부분의 Evaporation Process에 부합하는 다양한 형태의 증발 증착물질을 제공합니다.
- High Purity & Performance 일관된 증착 품질과 오염을 줄이도록 가공합니다.
- Material Variety 다양한 응용 분야의 요구 사항에 맞게 순수 금속, 합금, 세라믹 및 화합물로 제공됩니다.
- Custom Manufacturing 특정 시스템의 필요요구 사항에 맞게 크기와 형태, 조성을 맞춤화했습니다.
- Precision Design 반복 가능하고 균일한 박막 결과를 위해 엄격한 공차로 제조되었습니다.
- Flexible Supply Chain 최고의 제조업체와 강력한 파트너십을 통해 일관된 품질과 on-time 납품을 보장합니다.
Silicon (Si) (P-type) Evaporation Materials
Description:
Silicon is a metalloid and carries the typical properties of both metals and nonmetals. It is extremely inert and insoluble in water and acids. However, it can be dissolved into silicates by hot alkaline lyes. Pure silicon forms dark gray, metallic, shiny crystals. Silicon also has excellent thermal conductivity, which – in pure silicon – is accompanied by extremely low electrical conductivity. When alloyed with aluminium, it enhances strength and reduces weight.
High purity evaporation materials play a huge role in deposition processes to ensure high quality deposited film. Stanford Advanced Materials (SAM) specializes in producing up to 99.999% purity silicon evaporation materials using quality assurance processes to guarantee product reliability.

Silicon (Si) (P-type) Evaporation Materials Specification
| Material | Silicon | 
| Atomic Weight | 28.0855 | 
| Color/Appearance | Dark Gray with a Bluish Tinge, Semi-Metallic | 
| Thermal Conductivity | 150 W/m.K | 
| Melting Point (°C) | 1,410 | 
| Bulk Resistivity | 0.005-0.020 OHM-CM | 
| Coefficient of Thermal Expansion | 2.6 x 10-6/K | 
| Theoretical Density (g/cc) | 2.32 | 
| Z Ratio | 0.712 | 
| Temp. (°C) for Given Vap. Press. (Torr) | 10^-8: 992 10^-6: 1,147 10^-4: 1,337 | 
Silicon (Si) (P-type) Evaporation Materials Applications
1. Semiconductor Devices: P-type Silicon Evaporation Materials are widely used in the manufacturing of semiconductor devices. They enable the deposition of silicon layers with a specific dopant concentration, imparting the desired electrical properties to the material. These doped silicon layers are crucial in transistors, diodes, and other electronic components, where they control the flow of current and enable the device's functionality.
2. Solar Cell Manufacturing: P-type Silicon Evaporation Materials are also employed in producing solar cells. Solar cells convert sunlight into electricity, and the use of P-type silicon allows for the creation of efficient photovoltaic structures. The deposition of P-type silicon layers on substrates forms the basis for solar cells that generate electricity from sunlight.
3. Integrated Circuits (ICs): In the production of integrated circuits, P-type Silicon Evaporation Materials play a significant role. These materials enable the deposition of silicon layers with precise dopant concentrations, critical for the proper functioning of transistors and other components within the ICs. The resulting silicon films contribute to the overall performance and reliability of the circuits.
4. Thin-Film Electronics: Thin-film electronics refer to electronic devices and systems built using thin layers of materials. P-type Silicon Evaporation Materials are used to deposit thin films of silicon on various substrates, enabling the creation of miniaturized electronic components with unique properties. These thin films can be used in sensors, displays, and other electronic applications where compactness and flexibility are desired.
5. Research and Development: P-type Silicon Evaporation Materials are also utilized in research and development efforts, particularly in the field of materials science and electronics. Scientists and engineers use these materials to explore new device structures, improve performance, and develop innovative applications.
Silicon (Si) (P-type) Evaporation Materials Packaging:
Our evaporation materials are carefully handled to prevent damage during storage and transportation and to preserve the quality of our products in their original condition.
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