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  • High-Speed Dual-Station Laser Welding System for Fuel Cell Stacks
    2026
    01-13
    Lecheng Intelligent's High-Speed Dual-Station Laser Welding System represents a significant leap forward in fuel cell manufacturing technology. By combining precision engineering with advanced automation and smart manufacturing capabilities, Lecheng is enabling the scalable production of high-quality fuel cell stacks. As the hydrogen economy continues to evolve, solutions like this will play a crucial role in making clean energy more accessible and commercially viable. Lecheng's commitment to innovation and quality positions them as a key enabler in the global transition to sustainable energy systems.
  • Laser Welding for Bipolar Plates
    2026
    01-12
    Lecheng Intelligent’s laser welding technology for bipolar plates represents a significant advancement in hydrogen fuel cell manufacturing. By delivering unmatched precision, automation, and smart manufacturing integration, Lecheng is helping overcome critical production barriers and driving the industry toward greater efficiency, reliability, and scalability. As hydrogen continues to gain prominence in the global energy transition, Lecheng’s innovations are positioned to play a vital role in shaping a sustainable energy future.
  • High Precision Laser Cutting Machine – LE Laser Advanced Solutions
    2026
    01-10
    Discover the ultimate high precision laser cutting machine for flawless, micron-accurate cuts in metal, plastics, and composites – boosting efficiency and quality
  • Why Precision Laser Processing is Key to Higher Perovskite Module Efficiency
    2026
    01-10
    In the race to commercialize high-efficiency perovskite solar modules, precision laser processing is not merely an optional manufacturing step; it is a fundamental enabler. By minimizing dead zones, preserving material integrity with ultra-low thermal impact, and ensuring reproducibility across large areas, companies like Lecheng Intelligent are providing the essential tools to unlock the full potential of this promising technology. The path to higher module efficiency is, quite literally, being carved by laser light.
  • Picosecond Laser Ablation Enables Coverlay Opening by Replacing Wet Processes
    2026
    01-09
    The transition from wet chemical etching to picosecond laser ablation for coverlay opening represents a significant technological leap forward. Lecheng Intelligent is at the forefront of this shift, providing manufacturers with a tool that enables higher precision, greater design freedom, improved sustainability, and enhanced production efficiency. As FPCs continue to become smaller and more complex, Lecheng's laser technology is poised to become the new industry standard, empowering the next generation of electronic innovation.
  • High-Precision Laser Machining Center Advanced Laser Cutting & Engraving Solutions LE Laser
    2026
    01-03
    Discover LE Lasers High-Precision Laser Machining Center for unmatched accuracy in cutting, engraving, and machining metals. Fast, efficient, and versatile solutions.
  • Lecheng Laser Advanced Laser Technology Solutions le-laser
    2026
    01-03
    Lecheng Laser delivers advanced, precision laser technology solutions for glass cutting, welding, and solar production, boosting efficiency and industry innovation.
  • Lecheng’s Multi-Beam Synchronized Processing with 12-Beam Splitting Increases Efficiency by 200%
    2025
    12-23
    Lecheng’s multi-beam synchronized processing represents more than a technical upgrade—it’s a paradigm shift in solar manufacturing. By combining unprecedented speed with sub-micron precision, the technology empowers manufacturers to meet global clean energy demands while driving down costs, setting a new standard for the industry’s future.
  • Lecheng’s Laser Edge-Cleaning System Solves Perovskite Edge Insulation Issues, Boosting Yield to 98%
    2025
    12-22
    Lecheng’s laser edge-cleaning system exemplifies how precision manufacturing technologies can transform solar energy economics. By ensuring flawless insulation at microscopic scales, it unlocks higher efficiency, reliability, and yield—bringing perovskite solar power closer to mainstream adoption.
  • Multichannel Photovoltaic Module Steady-State Testing System Series
    2025
    12-18
    The Multichannel Photovoltaic (PV) Module Steady-State Testing System series (MCT series) is an advanced high-throughput platform designed for evaluating the performance and stability of perovskite, tandem, and crystalline silicon PV modules. By integrating optical, electrical, thermal, and software technologies, the system enables simultaneous testing of multiple modules under controlled conditions, accelerating R&D and quality control processes.
    • Demystifying Beam Splitting Technologies in Perovskite Photovoltaic Laser Processing
      Demystifying Beam Splitting Technologies in Perovskite Photovoltaic Laser Processing
      The transition to gigawatt-scale perovskite solar production hinges on precision laser processing, where beam splitting technology plays a pivotal role. By dividing a single laser source into multiple beams, this technique enables simultaneous scribing of P1-P3 patterns and edge isolation (P4), directly impacting throughput, dead zone control, and production costs. Current industrial approaches primarily include mechanical beam splitting and diffractive optical elements (DOEs), each with distinct advantages for perovskite’s thermal sensitivity and scalability requirements.
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    • The Application of Laser Technology in the Industrialization of Perovskite Solar Cells
      The Application of Laser Technology in the Industrialization of Perovskite Solar Cells
      Perovskite solar cells (PSCs) represent the third generation of thin-film solar technology, renowned for their high efficiency, low cost, and flexibility. As industrialization progresses, laser technology has emerged as a critical enabler, addressing key challenges in precision processing and scalability. This article explores the multifaceted role of lasers in PSC manufacturing.
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    • Roll-to-Roll (R2R) Laser Scribing System for Thin-Film Solar Cells
      Roll-to-Roll (R2R) Laser Scribing System for Thin-Film Solar Cells
      The equipment utilizes a high-energy-density laser beam, precisely controlled by a computer system, to process roll-to-roll thin-film solar cell materials according to pre-programmed scribing patterns. Through laser thermal or cold processing effects, the thin-film material is instantaneously vaporized, separated, or modified, achieving precise scribing to either segment the cells or create specific circuit patterns on them.
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    • Perovskite Photovoltaic Module
      Perovskite Photovoltaic Module
      Lecheng's laser scribing equipment, equipped with a high-precision laser control system, achieves micron-level patterning accuracy with smooth, thermally damage-free edges. This significantly reduces internal resistance losses in solar cells, pushing power conversion efficiency to industry-leading levels—perfectly meeting the high-power output demands of mass production.
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    • High-Precision Laser Micromachining Equipment
      High-Precision Laser Micromachining Equipment
      Laser high-precision micromachining technology achieves material processing through precise control of core parameters such as wavelength, pulse width, and energy density, utilizing either thermal or cold processing mechanisms. This induces instantaneous material vaporization, melting, or modification, enabling operations such as cutting, drilling, engraving, and surface treatment. It stands as a pivotal technology in high-precision manufacturing.
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    • Customer Acclaim
      Customer Acclaim
      This prestigious accolade has significantly elevated Lecheng Intelligent's industry visibility and reputation, distinguishing it as a trusted leader among suppliers. The recognition solidifies its competitive edge and lays a robust foundation for market expansion.
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