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Prism CVD Diamonds | Optical-Grade CVD Single Crystal Trigonal Diamond
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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.
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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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Prism CVD Diamonds | Optical-Grade CVD Single Crystal Trigonal Diamond

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  • Prism Optical Diamond

  • INFI

Prism CVD Diamonds

Optical-grade CVD single crystal diamond exhibits exceptional optical and physical characteristics, including superior light transmission, premium crystalline structure, dimensional stability, wear resistance, and high-temperature tolerance. These properties meet stringent requirements for advanced optical systems, enhancing performance and reliability across optical applications.


Optical Applications

  • Laser Systems: Resonators, output windows, mirrors

  • Imaging & Sensing: Telescopes, cameras, spectrometers, photodetectors

  • Precision Instruments: Interferometer mirrors, beam splitters, gratings

  • Medical Technology: Endoscopes, optical microscopes, laser devices

  • Communication: Fiber optic couplers, modulators, demodulators

  • Industrial: Laser etching equipment, Raman spectrometers

  • Astronomy: Observation instruments

三棱镜 (3)三棱镜 (2)


Competitive Advantages

  • Miniaturization: 50% smaller than conventional optical components

  • Extreme Environment Operation: Functions from -200°C to 850°C

  • Signal Clarity: 40 dB higher SNR than sapphire alternatives


Specification
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


Material Properties
CVD diamond delivers broadband wavelength transmission with minimal IR scatter. Its extreme hardness and chemical inertness make it ideal for high-power, large-area applications requiring strength and hazard resistance. These capabilities enable compact geometries for lightweight solutions. Diamond shaping innovations solve cutting-edge optical challenges.


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