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Single Crystal CVD Optical Diamonds | Round Optical Window Premium Choice
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Lab grown diamonds, also known as synthetic diamond , man made diamond or cultured diamonds, are grown in highly controlled laboratory environments using advanced technological processes that duplicate the conditions under which diamonds naturally develop when they form in the mantle, beneath the Earth’s crust.   Lab grown diamonds consist of actual carbon atoms arranged in the characteristic diamond crystal structure. Since they are made of the same material as natural diamonds, they exhibit the same optical and chemical properties.
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Lab grown diamonds, also known as synthetic diamond , man made diamond or cultured diamonds, are grown in highly controlled laboratory environments using advanced technological processes that duplicate the conditions under which diamonds naturally develop when they form in the mantle, beneath the Earth’s crust.   Lab grown diamonds consist of actual carbon atoms arranged in the characteristic diamond crystal structure. Since they are made of the same material as natural diamonds, they exhibit the same optical and chemical properties.
0
0
Lab grown diamonds, also known as synthetic diamond , man made diamond or cultured diamonds, are grown in highly controlled laboratory environments using advanced technological processes that duplicate the conditions under which diamonds naturally develop when they form in the mantle, beneath the Earth’s crust.   Lab grown diamonds consist of actual carbon atoms arranged in the characteristic diamond crystal structure. Since they are made of the same material as natural diamonds, they exhibit the same optical and chemical properties.
0
0
Lab grown diamonds, also known as synthetic diamond , man made diamond or cultured diamonds, are grown in highly controlled laboratory environments using advanced technological processes that duplicate the conditions under which diamonds naturally develop when they form in the mantle, beneath the Earth’s crust.   Lab grown diamonds consist of actual carbon atoms arranged in the characteristic diamond crystal structure. Since they are made of the same material as natural diamonds, they exhibit the same optical and chemical properties.
0
0
Lab grown diamonds, also known as synthetic diamond , man made diamond or cultured diamonds, are grown in highly controlled laboratory environments using advanced technological processes that duplicate the conditions under which diamonds naturally develop when they form in the mantle, beneath the Earth’s crust.   Lab grown diamonds consist of actual carbon atoms arranged in the characteristic diamond crystal structure. Since they are made of the same material as natural diamonds, they exhibit the same optical and chemical properties.
0
0
Lab grown diamonds, also known as synthetic diamond , man made diamond or cultured diamonds, are grown in highly controlled laboratory environments using advanced technological processes that duplicate the conditions under which diamonds naturally develop when they form in the mantle, beneath the Earth’s crust.   Lab grown diamonds consist of actual carbon atoms arranged in the characteristic diamond crystal structure. Since they are made of the same material as natural diamonds, they exhibit the same optical and chemical properties.
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Single Crystal CVD Optical Diamonds | Round Optical Window Premium Choice

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  • Round Optical Diamond

  • INFI

Round Optical Single Crystal CVD Diamonds


Featuring exceptional optical and physical properties, optical-grade CVD single crystals provide excellent transmission, high-quality crystal structure, dimensional stability, wear resistance, and thermal stability. They satisfy rigorous requirements for optical equipment, improving reliability and performance in diverse optical fields.


Key Properties
With broad wavelength transmission and low IR scatter, CVD diamond is chemically inert and extremely hard. This makes it optimal for high-power, large-area applications needing strength and hazardous material resistance. Such capabilities permit compact material geometries for lightweight solutions, while diamond processing innovations address new optical problems.


Industry Applications

  1. Laser optics (resonators/output windows/mirrors)

  2. Telescopes, cameras, and sensor lenses

  3. Interferometer components (mirrors/beam splitters/gratings)

  4. Spectrometers, scanners, and photodetectors

  5. Astronomical observation devices

  6. Fiber optic communication components

  7. Interferometers and Raman spectrometers

  8. Medical imaging (endoscopes/microscopes/laser devices)

  9. Laser etching systems


Performance Benefits
• Miniaturized Design: 50% size reduction vs traditional optics
• Wide Operational Range: Functions from -200°C to 850°C
• Signal Clarity: 40 dB improved SNR over sapphire alternatives


IMG_1143IMG_1144


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


Optical grade CVD diamonds are also available in other shapes:

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