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Round Optical Single Crystal CVD Diamonds
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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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Round Optical Single Crystal CVD Diamonds

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  • Round Optical Diamond

  • INFI

Optical grade single crystal CVD
Optically grade CVD single crystals have a series of unique optical and physical properties, such as excellent optical performance, high-quality crystal structure, dimensional stability, wear resistance, and high-temperature stability, which can meet the high requirements of various optical equipment and systems. Therefore, they are applied in many optical fields, improving the performance and reliability of the optical field.


Application of optical grade single crystal CVDdiamond:

1.Laser Optical Components for lasers, including laser resonators, output windows, and mirrors.

2.Optical Windows and Lenses, including telescopes, cameras, and other sensors.

3.Interferometer Elements including high-precision mirrors, beam splitters, and gratings.

4.Optical Sensors, including spectrometers, optical scanners, and photodetectors.

5.Astronomical Observations

6.Fiber Optic Communication, optical couplers, modulators, and demodulators, among other components.

7.High-Precision Optical Measurements such as interferometers and Raman spectrometers.

8.Medical imaging equipment, such as endoscopes, optical microscopes, and medical laser devices.

9.Laser etching equipment


Specification
Available sizeUp to 15*15mm²
Available thickness0.1~2mm
Lateral tolerance+0.1,-0mm
Thickness precision±0.02mm @≤10mm
±0.03mm @10~15mm
Face orientation{100}
Surface finishPolished,Ra<2nm
EdgesLaser Cut
Laser Kerf<3°
Density3.52g/cm³
Raman FWHM~2.1cm-1
Nitrogen concentation<0.5ppm
Thermal conductivity1900~2200W/(m*K) @300 K
Transmission>70% @1064nm
Refractiveindex

2.379 @10.6um


Competitive Edges

  • 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.


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Office Address: Yuhua District,
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Factory address: Yanling,
Zhuzhou City,Hunan Province, China
Tel: +86-731-83521833 / +86-731-83521533
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