Polski

Wuhan Semiconductor Laser Equipment Industry Innovation Joint Laboratory Achieves New Breakthrough

377
2025-02-18 14:58:56
Zobacz tłumaczenie

On February 7th, at the Wuhan Semiconductor Laser Equipment Industry Innovation Joint Laboratory located in the HGTECH Technology Intelligent Manufacturing Future Industrial Park, Huang Wei, the technical director of the laboratory and the director of HGTECH Technology's semiconductor product line, gestured with his hands to introduce the principle of "glass through-hole technology" to Changjiang Daily reporters.


Huang Wei, Director of HGTECH Laser Semiconductor Product Line, inspects silicon wafers in the laboratory


At present, he is leading the research and development of laser-induced micro hole equipment. Once applied on advanced packaging substrate production lines, it will achieve chip manufacturing for 5G communication, MEMS (Micro Electro Mechanical Systems), RF components, biological imaging, and biosensing. In the future, the Chinese will be able to use glass substrates instead of some traditional silicon substrates in advanced packaging applications, which can be described as a new way. Huang Wei said, "We often use the line from 'Ne Zha' to encourage each other: If there is no way forward, we will take a path.

The just held city wide science and technology innovation conference proposed to deepen the deep integration of industry, academia, research and application led by enterprises, focus on major industrial needs, and carry out technological research and development. My team and I feel that we are working more vigorously! "Huang Wei said." From 0 to 1, innovation is the key, and from 1 million to 1 million, innovation is also the key. The industrial innovation joint laboratory he works for is to solve the equipment urgently needed by the industry. We don't make 'prototypes' lying in the exhibition hall for people to visit, but instead focus on tackling large-scale production of' one million 'and ultimately achieving stable, reliable, and efficient' chip manufacturing on glass substrates'.

For this purpose, Huang Wei and team members with an average age of 30 move to the laboratory, supplier, and customer sites every week to verify various unit technologies and develop complete equipment. All parties involved are laboratory members.

Collaborating to accomplish big things significantly reduces communication costs, "Huang Wei explained. Each unit technology in this equipment needs to be customized and developed according to customer needs to ensure the production of chip products that are truly needed by segmented industries in the future. I communicate every day, solve engineering problems every day, and the pace is very fast. I can't help but jog while walking. As soon as I start brainstorming and come back to my senses, the scheduled meeting time has exceeded half, and new ideas are still coming up crazily.

It is reported that the Industry Innovation Joint Laboratory is led by HGTECH Technology, and has been established by HGTECH Laser, Huazhong University of Science and Technology, Hubei Jiufengshan Laboratory, Hubei Optics Valley Laboratory, Wuhan Huari Precision Laser Co., Ltd., Wuhan Yunling Optoelectronics Co., Ltd., Changfei Advanced Semiconductors (Wuhan) Co., Ltd., Wuhan HGTECH Technology Investment Management Co., Ltd., and other units. Semiconductor laser equipment such as hidden cutting, annealing, and testing equipment have been included in the research and development projects.

Source: laserfair

Powiązane rekomendacje
  • Atomstack Maker A5 V2: A laser engraving machine suitable for beginners

    In the recent DIY field, innovative and increasingly affordable laser engraving machines have emerged, mainly designed for first-time users in this field. A particularly noteworthy example in this regard is the Atomstack Maker A5 V2 model. This device is known for its versatility and ease of use, making it an ideal choice for beginners in the world of laser engraving.The Atomstack Maker A5 V2 is a...

    2024-01-03
    Zobacz tłumaczenie
  • AM Research has released its latest quarterly data and forecast report

    Recently, additive manufacturing research company AM Research released its latest quarterly data and forecast report, which deeply analyzes the latest developments in the global 3D printing market, covering multidimensional analysis of suppliers, printing technology, geographic location, and application areas.According to the report, the global 3D printing market once again demonstrates strong gro...

    2024-09-29
    Zobacz tłumaczenie
  • What are the "unique secrets" of each family in terms of breaking the game and high reaction materials?

    Laser is considered a sharp sword that cuts iron like mud, but even sharper swords can have tricky moments. For example, in certain scenarios, there are materials with higher reflectivity, such as silver, copper, etc., known as "high reflection materials". High reflective materials have a low absorption rate for lasers, making them difficult to process and potentially causing equipment failure or ...

    2023-11-06
    Zobacz tłumaczenie
  • The construction of China's first attosecond laser device in Dongguan provides strong impetus for breakthroughs in multiple major fundamental scientific issues such as quantum computing

    On October 3rd, the 2023 Nobel Prize in Physics was announced, recognizing scientists who have studied attosecond physics, marking the beginning of the attosecond era for humanity.At present, China's first attosecond laser device, the "Advanced attosecond Laser Facility", is being prepared and built in Dongguan, Guangdong, providing strong impetus for breakthroughs in multiple major basic scientif...

    2023-10-07
    Zobacz tłumaczenie
  • New photon avalanche nanoparticles may usher in the next generation of optical computers

    A research team led by Lawrence Berkeley National Laboratory (Berkeley Lab), Columbia University, and Autonomous University of Madrid has successfully developed a novel optical computing material using photon avalanche nanoparticles. This breakthrough achievement was recently published in the journal Nature Photonics, paving the way for the manufacture of optical memory and transistors at the nano...

    02-28
    Zobacz tłumaczenie