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CVD
INFI
Ultimate Transmission Performance from UV to FIR
Engineered for photonics excellence, single-crystal CVD diamond achieves record-breaking optical transmission from 225 nm to 25 μm (excluding 1.8-2.5 μm atmospheric band) with complementary microwave clarity. Its trifecta of physical durability – radiation immunity, 100 GPa hardness, 2,200 W/mK thermal conductivity – combined with chemical inertness and dimensional stability, positions it as the definitive choice for next-gen IR windows.
Index Precision: n=2.40±0.01 across 1-30 μm band
Surface Perfection: <50 nm Ra ensures >99% photon utilization
Manufacturing Accuracy: Guaranteed ±0.2 mm tolerance
Optimal Configuration: Triangular prisms for IR radiometry
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 |
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
Future-Proofing: Enables terahertz-scale photonic innovation
Picture details:
Ultimate Transmission Performance from UV to FIR
Engineered for photonics excellence, single-crystal CVD diamond achieves record-breaking optical transmission from 225 nm to 25 μm (excluding 1.8-2.5 μm atmospheric band) with complementary microwave clarity. Its trifecta of physical durability – radiation immunity, 100 GPa hardness, 2,200 W/mK thermal conductivity – combined with chemical inertness and dimensional stability, positions it as the definitive choice for next-gen IR windows.
Index Precision: n=2.40±0.01 across 1-30 μm band
Surface Perfection: <50 nm Ra ensures >99% photon utilization
Manufacturing Accuracy: Guaranteed ±0.2 mm tolerance
Optimal Configuration: Triangular prisms for IR radiometry
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 |
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
Future-Proofing: Enables terahertz-scale photonic innovation
Picture details: