Français

GZTECH Global Headquarters and Advanced Light Source R&D and Production Base Launch Construction

505
2025-06-13 10:29:27
Voir la traduction

On June 10th, the construction of GZTECH's global headquarters and advanced light source research and development production base was launched.

 



Rendering of GZTECH Global Headquarters and Advanced Light Source R&D and Production Base

 

The project is located in Donghu Comprehensive Bonded Zone, with a total construction area of approximately 40000 square meters. It will integrate GZTECH's industrial resources in the two core areas of fiber lasers and solid-state lasers, enhance the company's technological innovation capabilities and scale production level.

GZTECH is a national high-tech enterprise engaged in the research and development, production, and sales of advanced industrial lasers. Since its establishment in Optics Valley in 2018, it has successively launched a series of industrial laser products, including fiber MOPA, QCW, fiber infrared picosecond and green light, and solid-state nanosecond ultraviolet. These products are mainly used in industries such as new energy, hard and brittle material processing, surface marking, and cleaning. The company currently has over 400 employees and has applied for more than 70 laser related patents since its establishment. It has also collaborated with well-known domestic universities and research institutes to develop cutting-edge light sources.

GZTECH Industrial Laser Products


We will leverage Optics Valley Technology, talent, and location advantages to solidify GZTECH's market position in the laser field. ”Huang Zhihua, chairman of GZTECH, said that in the future, the base will be built into an influential smart equipment manufacturing demonstration park in China.


Rendering of GZTECH Global Headquarters and Advanced Light Source R&D and Production Base


Source: Yangtze River Delta G60 Laser Alliance

Recommandations associées
  • TDK introduces a new gold-wire-bonded optional NTC thermistor for laser diode temperature measurement

    TDK Corporation (TSE: 6762) announced the introduction of the new NTCWS series of NTC thermistors with gold wire bonding. These bonding NTC thermistors can be installed in packages via gold wire bonding to enable high precision temperature detection of laser diodes (LD) for optical communication. The series will begin mass production in September 2023.The use of LD devices in optical communication...

    2023-09-08
    Voir la traduction
  • Swiitol Launches E24 Pro: A Breakthrough in Laser Engraving Technology

    In order to completely change the world of laser engraving, Swiitol has launched the E24 Pro, a 24W integrated laser engraving machine with cutting-edge features and functions. The Swiitol E24 Pro showcases an innovative integrated structure laser engraving machine made of durable aluminum alloy. It is worth noting that the device can be used out of the box without installation, providing users wi...

    2023-11-23
    Voir la traduction
  • Lameditech of South Korea was listed on the KOSDAQ exchange on the 17th

    On June 11, 2024, Korean laser medical equipment manufacturer Lameditech successfully completed its initial public offering and was listed on the KOSDAQ exchange on the 17th.Last month, its public offering price was fixed at 16000 Korean won. In this public offering, Lameditech issued a total of 1298000 shares, raising approximately 20.8 billion Korean won. Since Lameditech's debut on KOSDAQ, as o...

    2024-06-26
    Voir la traduction
  • Scientists have developed the most powerful ultraviolet laser using LBO crystals

    It is reported that recently researchers from the Chinese Academy of Sciences have achieved the highest power output of 193 nm and 221 nm lasers using lithium borate (LBO) crystals. This achievement lays the foundation for the further application of the laser in deep ultraviolet (DUV) spectroscopy.The laser in DUV spectroscopy has many applications in science and technology, such as defect detecti...

    2024-04-07
    Voir la traduction
  • Free space nanoprinting beyond optical limitations can create 4D functional structures

    Two photon polymerization is a potential method for nanofabrication of integrated nanomaterials based on femtosecond laser technology. The challenges faced in the field of 3D nanoprinting include slow layer by layer printing speed and limited material selection due to laser material interactions.In a new report in Progress in Science, Chenqi Yi and a team of scientists in the fields of technical s...

    2023-10-09
    Voir la traduction