Our Products

Precision-engineered CVD diamonds for every advanced application

CVD Diamond Wafers

Key Features

Custom Orientation

[100], [110], [111] with <2° tolerance

Custom Shapes

Square, triangle, round, and more

Size Options

Plates up to 25mm

Variable Thickness

0.01mm to 2.0mm

Surface Finishing

Ra < 5nm to Ra < 1nm

Quality Control

Defect-free and impurity-free

Custom Concentration

Nitrogen and boron: 10 ppm to 10 ppb

Production

Limited orders to mass production

Diamonds for your Industry

Diamonds for your Industry

We produce mechanical-grade CVD diamonds engineered for superior strength, hardness, and durability. These diamonds are specifically designed to meet the high-performance needs of industries requiring extreme wear resistance and cutting-edge mechanical capabilities, from tooling to high-precision machining.

Key Features

  • Engineered for high-performance applications
  • High hardness and toughness suitable for precision tools
  • Customizable sizes based on application
  • Useful in cutting tools, grinding tools, polishing pads
  • Abrasion-resistant materials
Diamonds for R&Ds

Diamonds for R&Ds

R&D-grade lab-grown diamonds are engineered to deliver exceptional material properties, tailored for cutting-edge research and innovation. These diamonds exhibit high purity, precise crystalline structures, and customizable properties, making them ideal for applications in advanced material science, quantum technologies, and semiconductor research.

Key Features

  • High-purity diamonds for scientific research
  • Ultra-pure with minimal nitrogen and boron impurities
  • Customizable sizes based on requirements
  • High precision with extreme surface flatness
  • Ideal for quantum computing and high-frequency electronics
Diamonds for Quantum-Grade

Diamonds for Quantum-Grade

Quantum-grade diamonds are lab-grown gems with unique properties that make them essential for quantum technologies. These diamonds contain special defects called nitrogen-vacancy (NV) centers, which allow us to manipulate and control quantum states. This is crucial for developing quantum computers, sensors, and communication systems.

Key Features

  • Controlled nitrogen-vacancy (NV) centers
  • Ultra-high purity (Type IIa)
  • Customizable plates and crystals
  • Quantum computing and magnetic field sensing
  • Ra < 2nm for enhanced quantum coherence
Diamonds for Optical

Diamonds for Optical

Optical-grade lab-grown diamonds are meticulously crafted to meet the highest standards of clarity, purity, and refractive properties, making them ideal for advanced optical applications. These diamonds are free of inclusions, defects, or impurities that could interfere with light transmission.

Key Features

  • Extremely transparent with low absorption
  • Polished with Ra < 1nm
  • Customizable sizes and shapes
  • X-ray windows and optical lenses
  • Laser systems applications
Diamonds for Thermal Applications

Diamonds for Thermal Applications

Thermal-grade diamonds are lab-grown gems engineered for exceptional heat transfer. These diamonds, created using Chemical Vapor Deposition (CVD), can conduct heat up to five times faster than copper, while staying electrically insulated. This makes them invaluable for applications that demand superior heat management.

Key Features

  • High thermal conductivity for heat dissipation
  • Stability under extreme temperatures
  • Customizable sizes from chips to large plates
  • Heat sinks for high-power electronics
  • Single or double-sided polishing available
Diamonds for Electronics-Grade

Diamonds for Electronics-Grade

Electronics-Grade Diamonds are lab-grown gems engineered for exceptional performance in electronic applications. Created using Chemical Vapor Deposition (CVD), these diamonds offer exceptional thermal conductivity, electrical insulation, and mechanical strength. This makes them perfect for semiconductors, power electronics, and high-frequency devices, where heat management and material stability are crucial.

Key Features

  • Exceptional insulating capabilities
  • High thermal conductivity for heat dissipation
  • Available in thin plates or larger substrates
  • High-frequency transistors and power electronics
  • Custom surface preparation and edge finishing

Precision Starts with a Conversation

Tell us about your requirements — we’ll craft the diamond that brings your innovation to life.