Brief: Discover the exceptional quality of Square Optical CVD Diamonds, designed for high-performance optical systems. These single crystal diamonds offer flawless structure, superior thermal stability, and outstanding optical performance, making them ideal for advanced applications in lasers, sensors, and medical imaging.
Related Product Features:
Outstanding optical performance with broad-spectrum transmission and low infrared dispersion.
Flawless crystal structure ensuring high reliability and functionality in optical systems.
Exceptional thermal stability, operating from -200°C to 850°C.
High thermal conductivity (1900~2200W/(m*K)) for efficient heat dissipation.
Polished surface finish with Ra<2nm for precision optical applications.
Laser-cut edges with minimal kerf (<3°) for clean and accurate geometries.
Low nitrogen concentration (<0.5ppm) ensuring high purity and performance.
Compact and lightweight design, half the size of traditional optics.
FAQs:
What are the key applications of Square Optical CVD Diamonds?
These diamonds are used in laser components, optical lenses, interferometry elements, detection systems, astronomical tools, fiber optics, precision instruments, medical imaging, and laser etching systems.
How does the thermal conductivity of CVD diamonds benefit optical systems?
With thermal conductivity of 1900~2200W/(m*K), CVD diamonds efficiently dissipate heat, making them ideal for high-power and large-area optical applications requiring material strength and environmental resistance.
What makes Square Optical CVD Diamonds superior to traditional optics?
They offer space efficiency (half the size), superior thermal endurance (-200°C to 850°C), and 40 dB better signal-to-noise ratio compared to materials like sapphire, enhancing performance in demanding optical environments.