Brief: Discover the unparalleled performance of CVD Diamond Wafer Optical Diamond Substrates, engineered for superior optical properties. Ideal for high-energy systems and precision instruments, these industrial-grade lab-grown diamonds offer exceptional light transmission, thermal conductivity, and chemical resistance.
Related Product Features:
Superior broadband transmission from 225 nm (UV) to 25 μm (IR) with exclusion at 1.8-2.5 μm.
Exceptional thermal conductivity of 2,200 W/mK for efficient heat management.
Nanoscale smoothness with sub-50 nm surface roughness to minimize photon scattering.
High refractive index of ~2.4 ensures >95% transmission across 1-30 μm.
Resistant to chemical and thermal degradation, making it ideal for harsh environments.
Precision tolerance with strict ±0.2 mm dimensional control for reliable performance.
Optimized for mid-infrared radiation capture with superior prism geometry.
Compact and lightweight design enables advanced optical architectures.
Вопросы:
What are the key optical properties of CVD Diamond Substrates?
CVD Diamond Substrates offer superior broadband transmission from UV to IR (225 nm to 25 μm), high refractive index (~2.4), and exceptional thermal conductivity (2,200 W/mK), making them ideal for demanding optical applications.
In which applications are CVD Diamond Substrates commonly used?
These substrates are widely used in high-energy systems like CO₂ lasers and RF gyrotrons, as well as precision instruments such as IR imagers, spectroscopic analyzers, and micro-optics lenses.
What are the dimensional tolerances for CVD Diamond Substrates?
The substrates feature strict dimensional control with ±0.2 mm tolerance, transverse tolerance of ±0.05 mm, and thickness tolerance of ±0.1 mm, ensuring precision in optical applications.