2024-04-17 09:07:28
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Recently, the launch of Xiaomi SU7 has set off a craze, and it only took Lei Jun three years to realize his dream of building a car. From the launch on March 28 to the delivery of the new car on April 3, a seven-day carnival, Mr. Lei became the focus of the technology world. His transformation from a programmer to a technology giant is amazing. In the field of new energy vehicles, lithium batteries are the core of power, and vehicle lightweighting and the application of silicon carbide semiconductors are crucial. This is inseparable from the support of lab-grown diamond (diamond), an excellent new material, which has become an indispensable part of new energy vehicle components.


As a new material with unique physical and chemical properties, diamond has a wide range of applications in the field of new energy vehicles. Its excellent thermal conductivity, electrical conductivity, mechanical strength and chemical stability make diamond play an important role in many key components of new energy vehicles.



Diamond is also used in quantum sensors and coating technology for new energy vehicles. Diamond quantum sensors have the characteristics of high sensitivity, high resolution and high stability, and can be used to monitor the operating status of vehicles, detect vehicle safety hazards, and evaluate battery performance. Due to its high hardness, good wear resistance, and low friction coefficient, diamond coating is widely used in brake pads, clutch plates and other components of new energy vehicles to improve the service life and performance of these components.
With the rapid expansion of the new energy vehicle market, the application and status of diamond in electric vehicles will continue to increase, providing solid technical support for the development of the new energy vehicle industry and further consolidating the important position of the automobile industry as the pillar of the national economy.

With MPCVD technology as its core, High Light Intelligence Technology has long been committed to the R&D and manufacturing of high-quality diamond materials and related equipment. It has advanced MPCVD equipment, laser processing equipment and precision polishing equipment. High Light Intelligence Technology's MPCVD technology equipment can produce high-quality diamond, thereby helping to improve the performance of integrated circuits. Our products and services are designed to provide customers with the best solutions to meet their needs for high quality diamond and integrated circuit performance.
CVD Single-Crystal Diamonds: An Analysis of the Complete Processing Workflow from Gas-Phase Deposition to Finished Diamond Chips
MPCVD (Microwave Plasma Chemical Vapor Deposition) technology is currently the core process for producing high-quality single-crystal diamond s. Thanks to its advantages of low defect rates, high purity, and controllable large dimensions, it is widely used in fields such as semiconductor heat dissipation, precision optics, and high-end sensors. The final quality of single-crystal diamond s depends on comprehensive process control throughout the entire workflow—from vapor deposition growth to pos
Single-Crystal or Polycrystalline Diamond — Which Has Greater Potential?
As diamond continues to enter industries such as semiconductors, thermal management, optics, high-power electronics, and precision machining, the requirements for diamond materials are also evolving.
Diamond Polishing and Grinding Processes: Core Challenges and Industry Hurdles
Diamond is often hailed as the “ultimate material” – ranking 10 on the Mohs hardness scale, boasting an ultra‑high thermal conductivity (~2,200 W/(m·K)), excellent chemical stability, and broad optical transparency. These properties make it irreplaceable in cutting‑edge applications such as semiconductor heat dissipation, high‑end optics, and quantum chips. Yet the paradox of “good materials are hard to process” is nowhere more evident than in diamond. From rough grinding for planarization to at
Single-Crystal vs Polycrystalline CVD Diamond: Process Difference Lies in Growth Logic, Not Equipment
The process difference between singlecrystal and polycrystalline CVD diamond lies not in equipment, but in growth logic. Singlecrystal and polycrystalline CVD diamond are two functional new materials with completely independent growth mechanisms, lattice structures and performance systems. Their process logic, product features and application boundaries diverge fundamentally from the very start of deposition and growth. Comparing or selecting materials without considering their underlying crys