Strategic Advantages

Learn how lab-grown diamond plates deliver exceptional performance in today’s modern-day technological applications:

Benefits

01

Advanced Semiconductor Capabilities

CVD diamond manufacturing produces single-crystal diamond plates with high-purity levels. Featuring defect densities at or below the parts per billion (ppb) range, this ultra-high purity results in considerably low point defect concentrations. Single-crystal diamonds feature outstanding semiconductor and electronic properties. Additionally, the exceptional carrier mobility and optical transparency makes them a suitable fit for electronics, optoelectronic and quantum applications.
Single crystal diamond plates are ideal for semiconductor industries
Excellent durability of lab-diamond plates
02

Good Radiation Hardness

Featuring superior hardness and excellent durability, lab-grown diamond plates are exceptional in terms of strength and longevity. The atomic displacement energy of diamonds stands at 42 eV/atom which provides diamonds with outstanding resistance to radiation damage. This property of diamonds results in stable and highly sensitive performance.
03

Excellence in Tool Manufacturing

On the Mohs scale, lab-grown diamonds score a 10 which is responsible for its extreme hardness. This score of 10 gives diamonds a good wear resistance and relatively low coefficient of friction. Lab-grown diamonds have the ability to achieve 99% purity which results in precision finishing.
Good wear resistance of CVD Diamond plates
Extreme Abrasion of Lab-grown diamond plates
04

Build To Withstand Extreme Abrasion

Wear and tear of industrial tools is common, especially in cutting and drilling applications where tools are exposed to constant friction and degrade faster. Hence, it is important to manufacture tools with materials having highest abrasion resistance. Polycrystalline diamond is the best solution here as this offers the best resistance to wear and tear. This is a boon for manufacturers since it results in low maintenance costs, better tool life and ultimately fewer replacements.
05

High Structural Integrity

A remarkable quality of polycrystalline diamond tools is their superior endurance on hard surfaces and objects indicating high stability. Hence, PCD tools will be valuable when it comes to cutting and drilling surfaces that require high precision and accuracy. Additionally, the high tenacity of PCD tools also makes them invaluable on rough surfaces where most other materials will fail to achieve peak performance.
High stability in cutting and drilling applcations
Traditional Mining v/s Lab-grown Diamond Production
06

Reduced Environmental Impact

Manufactured using chemical vapor deposition (CVD) process, lab-grown diamonds have caused minimal environmental impact in comparison to traditional diamond mining. Lab-grown diamonds are grown in a controlled laboratory environment which does not cause any land degradation and ecosystem disruption.