한국어

Deere Laser's self-developed laser induced sintering technology, with LIF equipment orders exceeding 100GW in production capacity

812
2023-09-18 14:53:09
번역 보기

Recently, Deere Laser received mass production orders and bid confirmations for laser induced sintering (LIF) equipment from multiple top customers, with a cumulative production capacity exceeding 100GW.

As an innovative technology iteratively developed by the company based on its own LIR technology and LIA technology, LIF technology has won industry recognition for its excellent efficiency improvement performance. After intensive testing and validation by multiple top customers, LIF technology will accelerate the introduction into mass production and assist customers in upgrading their TOPCon battery production line.

In recent years, the global efficient solar cell production capacity has been continuously released, and new technologies that can improve efficiency and reduce costs for various types of solar cell processing have attracted attention. As a leading photovoltaic equipment enterprise, Deere Laser has successfully developed multiple new laser applications such as PERC+, TOPCon+, XBC+, and HJT+, effectively assisting in the continuous upgrading of high-efficiency solar cell technology.

Laser Induced Firing (LIF) technology is a new iterative innovation process developed by Emperor Laser, following the independent research and development of Laser Induced Regeneration (LIR) and Laser Induced Annealing (LIA), A new processing technology that uses laser technology to induce sintering of solar cells.

LIF technology achieves rapid sintering and molding of materials by precisely controlling the laser beam, stacking powder or filamentous materials layer by layer and simultaneously irradiating them with laser. This technology has been widely applied in many fields due to its high efficiency, precision, and flexibility.

In the field of photovoltaics, laser induced sintering technology has the following advantages:
(1) Improving battery efficiency: By achieving precise connection of battery cells, energy consumption and heat loss are reduced, thereby improving the overall efficiency of photovoltaic modules.
(2) Improving product reliability: The precise control of laser induced sintering technology can effectively avoid welding defects and improve the reliability and service life of photovoltaic modules.
(3) Reducing production costs: The rapid prototyping characteristics of laser induced sintering technology can significantly shorten production cycles, reduce production costs, and improve production efficiency.

This technology was developed by Deere Laser in collaboration with industry clients and completed process validation on TOPCon batteries. The results show that this technology can effectively improve the photoelectric conversion efficiency of battery cells, with a gain of over 0.2%.


In TOPCon, IBC, and HJT processes, Tyr Laser has a brand new laser technology coverage. In terms of TOPCon battery technology, as of the disclosure date of the 2023 semi annual report, a total of over 450GW of new boron doped orders have been signed this year. Based on the accelerated breakthrough of the company's LIF technology, the company's TOPCon orders are expected to accelerate growth.

In terms of BC battery technology, the company's laser technology continues to receive orders this year, including orders for N-type and P-type processes. Some orders can refer to the daily operation major contract announcement in early June this year.
In terms of HJT battery technology, the company's LIA laser repair technology continues to receive mass production orders from European customers this year.
In terms of components, the company is developing a new laser welding process that can simplify production processes, reduce damage to battery cells, and improve welding quality. Currently, it has delivered a pilot line to customers.

In addition to the photovoltaic field, in the display panel industry, the company has carried out research and development and prototype trial production of laser repair, laser peeling, and other processes. In the semiconductor wafer manufacturing and packaging field, Deere Laser has carried out research and development of IGBT/SiC laser annealing, wafer laser cleaning/thinning, wafer excitation steganography, and other related technologies; In the field of consumer electronics, the company has carried out research and development of TGV laser microporous technology and completed small batch order delivery.

Source: OFweek

관련 추천
  • The Linac Coherent Light Source II X-ray Laser in the United States has completed over a decade of upgrading and emitted the first X-ray with a record breaking brightness

    According to reports, the Linac Coherent Light Source II (LCLS-II) X-ray laser at the Stanford SLAC National Accelerator Laboratory in the United States has just completed an upgrade that took more than a decade. After a facelift, it has become the world's brightest X-ray facility and emitted the first record breaking X-ray, allowing researchers to record the behavior of atoms and molecules in bio...

    2023-09-20
    번역 보기
  • Bohong has developed a new type of ultrafast laser for material processing

    Chief researcher Clara Saraceno will bring the new laser to the market with the support of ERC funding.Femtosecond lasers can be used to create high-precision microstructures, such as those required for smartphone displays and various automotive technology applications.Professor Clara Saraceno from Ruhr University in Bochum, Germany is committed to developing and introducing cheaper and more effic...

    2023-08-22
    번역 보기
  • Shanghai Institute of Optics and Fine Mechanics has made progress in the field of high-intensity laser cracking of high-density polyethylene

    Recently, a team from the National Key Laboratory of Ultra strong Laser Science and Technology at the Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, collaborated with the Arctic University of Norway (UiT) to make progress in the efficient cracking of high-density polyethylene (HDPE) using strong laser molecular bond breaking technology. The research results were publ...

    06-16
    번역 보기
  • Diffractive optical elements: the behind the scenes hero of structured light laser technology

    In today's rapidly developing technological era, structured light laser technology has become an important tool in the fields of 3D measurement and image capture. The core of this technology lies in a magical device called Diffractive Optical Elements (DOE), which can precisely control and shape laser beams, creating various complex light patterns. But what exactly is DOE? How does it work? Let Ho...

    2024-04-10
    번역 보기
  • Trumpf announces four personnel changes

    Recently, global laser giant Germany's Trumpf announced four personnel changes, namely Claudio Santopietro as the head of intelligent factory consulting and automation, Kevin Cuseo as the head of software sales, Julian Schorpp as the product manager for automatic bending products, and Adam Simons as the head of additive manufacturing for Trumpf North America.According to relevant information, Clau...

    2024-11-26
    번역 보기