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CVD Diamond | Industrial-Grade CVD Lab Grown Diamonds with Superior Optical 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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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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0

CVD Diamond | Industrial-Grade CVD Lab Grown Diamonds with Superior Optical Properties

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  • CVD

  • INFI

Optical-Grade CVD Diamond

Superior Light Management for Demanding Optics
Single-crystal CVD diamond delivers unparalleled broadband transmission – 225 nm (UV) to 25 μm (IR) with exclusion at 1.8-2.5 μm – coupled with exceptional microwave band permeability. This material’s synergy of radiation hardness, mechanical robustness, thermal conductivity (2,200 W/mK), chemical inertness, and near-zero thermal expansion defines it as the ultimate solution for advanced IR optical windows.


Performance Essentials

  • Mid-IR Efficiency: Refractive index ~2.4 ensures >95% transmission across 1-30 μm

  • Nanoscale Smoothness: Sub-50 nm surface roughness minimizes photon scattering

  • Precision Tolerance: Strict ±0.2 mm dimensional control

  • Prism Superiority: Triangular geometry maximizes mid-infrared radiation capture


Deployment Scenarios

High-Energy Systems Precision Instruments
• CO₂/Disc/Raman lasers • 8-14 μm IR imagers
• RF gyrotrons • Spectroscopic analyzers
• High-power generators • Micro-optics lenses

Engineering Breakthroughs

  • Near-Zero Scatter: Maintains signal integrity in harsh environments

  • Compact Design Enablement: Facilitates lightweight optical architectures

  • Hazard Immunity: Resists chemical/thermal degradation

  • Novel Problem Solving: Advanced shaping techniques address emerging optical challenges


Product Properties

Refractive Index (1064nm)
2.392
Refractive Index (600nm)
2.415
Transmission (1064nm)
>68%
Transmission (8μm-25μm)
>70%
Thermal Conductivity
>2000 W/mK
Crystallographic Orientation
100 110 111
Miscut for Main Face Orientation
±3°
Common Product Size
2mm×2mm×6mm
2mm×2mm×7mm
4mm×4mm×7mm
Transverse Tolerance
±0.05mm
Thickness Tolerance
±0.1mm
Parallelism
<2′
Surface Roughness
<10nm
Edge Cutting
Laser Cutting


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微信图片_20250224125600微信图片_20250224125559

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