CVD single crystal diamond

mechanical grade

ultra-hardness, wear resistance and corrosion resistance, diamond is the core consumable of the processing tools for sawing, cutting, grinding and drilling. Diamond is widely used in the tools for various precision machining and the surface of the drill in geological exploration fields. Large size, high quality single crystal CVD diamond can be used in brain/heart surgery scalpel, optical lens cutting and other high-end expansion fields, CMP process of semiconductor industry.

hardness 10400kg/mm2
Yang’s modulus 1100-1300GPa
Roughness (both sides) ˂30nm, polished
Face orientation 100
Edge orientation 110

Thermal grade

With low coefficient of thermal expansion and the highest thermal conductivity, CVD can be used in the third generation semiconductor high power devices, high power lasers and microelectronic thermal sink devices, Synchrotrons and X ray free electron laser beamlines heat disspiation with special bondingcentralized heat dissipation of large areas, such as TR components, microwave power components point heat dissipation for thermal emission units, such as Gallium nitride(GaN) devices
We can also provide customer solution for different material bonding.

Size Single crystalline < Φ 30mm
Polycrystalline < Φ 90mm
Roughness growing side ˂30nm polish
Thermal conductivity 1200-2300W/mK
Thermal expension 293K 0.8×10-6 /K
400-1200K (1.5-4.8) x10-6 /K
Isobaric molar heat capacity 1800K 24.7J/mol.K
3000K 26.3J/mol.K

Optical grade

optical grade single crystal CVD diamond can be widely used in aviation, military, scientific research equipment, such as electron-Synchrotron equipment, CO2 laser window (10.6μm), Raman Laser, high power microwave window, etc.

Size Single crystalline ˂ Φ 50mm
Thickness Single crtystalline 0.01mm-3mm
Roughness (both sides) ˂10nm (in 1mm2) * 2nm as request
Thermal conductivity ˃ 1900W/mK
Transmission rate (thickness 1mm) 1064nm ˃68%, 8-25µm ˃ 70%
Refractive rate 104nm 2.392, 600nm 2.415

Electronic grade

Electronic grade diamond is used in various high-tech and industrial applications due to its exceptional material properties, which include high thermal conductivity, low electrical conductivity, and low chemical impurities.
In electronics industry, it serve as reliable heat spreaders and sinks in high-power electronic components, ensuring efficient heat dissipation and enhancing device performance. It is also be used in quantum computing and sensing, X-ray and Radiation Detection

Size typical 5x5mm, 4x4mm
Thickness 0.05-0.5mm
Roughness (both sides) ˂10nm (in 1mm2)
Thermal conductivity ˃ 2000W/mK
Nitrogen concentration ˂20ppb
Lattice 100, 110, 111
Band gap width(ev) 5.47
Resistivity(Ω·cm) >1010
Dielectric constant 5.5