Customization: | Available |
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Type: | Diamond |
Classification of Diamond: | Artificial |
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Specification | |
Available size | Up to 15*15mm² |
Available thickness | 0.1~2mm |
Lateral tolerance | +0.1,-0mm |
Thickness precision | ±0.02mm @≤10mm ±0.03mm @10~15mm |
Face orientation | {100} |
Surface finish | Polished,Ra<2nm |
Edges | Laser Cut |
Laser Kerf | <3° |
Density | 3.52g/cm³ |
Raman FWHM | ~2.1cm-1 |
Nitrogen concentation | <0.5ppm |
Thermal conductivity | 1900~2200W/(m*K) @300 K |
Transmission | >70% @1064nm |
Refractiveindex | 2.379 @10.6um |
Zero Redundancy Design: 50% smaller than conventional optics
Harsh Environment Survival: -200°C to 850°C operational range
Signal Fidelity: 40 dB better SNR vs. sapphire windows
Diamond has an exceptionally high transmission over a very broad range of wavelengths and low scatter in IR applications. It is extremely hard and chemically inert; making CVD diamond the optimal choice in applications demanding higher power, larger area, and resistance to hazardous materials or greater strength. These abilities also enable smaller material geometries to be used, which opens up new lightweight applications. Advances in the creation and shaping of diamond enable us to provide solutions to novel optical problems.