Monocrystalline Silicon Wafers For Optoelectronics
monocrystalline silicon wafers are an important material for the field of optoelectronics. Their unique optical and electronic properties make them ideal for a wide range of applications, from photodetectors and LEDs to solar cells and beyond.
Opis
Description
Monocrystalline silicon wafers are widely used in optoelectronics due to their unique optical properties and excellent electronic performance. Optoelectronics is a field of study that combines the principles of optics and electronics, focusing on devices that use light to transmit and process information.
One of the most common applications of monocrystalline silicon wafers in optoelectronics is in the production of photodetectors. Photodetectors are electronic devices that convert light energy into an electrical signal. Monocrystalline silicon wafers are ideal for photodetector applications because they exhibit high sensitivity to light and low noise levels, which are essential for accurate signal detection.

Specification
| Diameter | 2" | 3" | 4" | 5" | 6" | 8" | 12" |
| Grade | Prime | ||||||
| Growth Method | CZ | ||||||
| Orientation | < 1-0-0 > , < 1-1-1 > , < 1-1-0 > | ||||||
| Type/Dopant | P Type/Boron , N Type/Phos, N Type/As, N Type/Sb | ||||||
| Thickness (μm) | 279 | 380 | 525 | 625 | 675 | 725 | 775 |
| Thickness Tolerance | Standard ± 25μm, Maximum Capabilities ± 5μm | ± 20μm | ± 20μm | ||||
| Resistivity | 0.001 - 100 ohm-cm | ||||||
| Surface Finished | P/E , P/P, E/E, G/G | ||||||
| TTV (μm) | Standard < 10 um, Maximum Capabilities <5 um | ||||||
| Bow/Warp (?m) | Standard <40 um, Maximum Capabilities <20 um | <40μm | <40μm | ||||

Monocrystalline silicon wafers are an important material for the field of optoelectronics. Their unique optical and electronic properties make them ideal for a wide range of applications, from photodetectors and LEDs to solar cells and beyond.
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