• 30
    Countries Served
  • 24/7
    Technical Support
  • 200
    Employee Count
  • 2022
    Founding Time

Comprehensive Technical Solutions for the Entire Field of Laser Precision Machining:

1. Laser Precision Marking

  • Full-material compatibility: Permanently marks metals, plastics, ceramics, glass, and more with micron-level precision

  • Advanced identifiers: Supports QR codes, serial numbers, and complex graphics engraving for traceability

  • Critical applications: Widely used in high-end traceability fields including electronic components, medical devices, and aerospace


2. Ultra-thin Glass Laser Precision Cutting

  • Breakthrough technology: Enables fragment-free cutting of 0.1–2mm ultra-thin glass, overcoming traditional limitations

  • Edge strength innovation: Proprietary thermal stress control boosts edge strength by 300%

  • Revolutionary solutions: Core technology for foldable displays, automotive screens, and photovoltaic substrates

3. High-Stability Laser Welding Systems

  • Dissimilar material expertise: Solves welding challenges for copper-aluminum alloys with ±5μm thermal deformation control

  • Customized key processes: Develops hermetic sealing for EV batteries and gas-tight welding for sensors

  • Industry-leading yield: Achieves **>99.8% welding yield** to enhance smart manufacturing efficiency


4. Micro-nano Laser Etching Equipment

  • Ultra-fine capabilities: Minimum line width of 5μm, supporting curved-surface super-fine patterning

  • High-end applications: Critical for semiconductor lead frames, PERC solar cells, and precision mold texturing

  • Technology driver: Accelerates R&D in flexible circuits and next-gen microelectronics


5. Laser Precision Cutting

(1) Metal Cutting

  • Accuracy: ≤10μm for metals (steel, aluminum, tungsten) under 2mm thickness.

  • Thermal control: Heat Affected Zone (HAZ) <30μm.

  • Applications: Medical implants, precision instruments

(2) PCB/FPC Circuit Board Cutting

  • Precision: ≤10μm accuracy with HAZ <30μm.

  • Technology: High-speed galvanometer scanners for efficiency

(3) Glass Cutting

  • Thickness range: 0.05–10mm; edge chipping <30μm.

  • Key uses: Display panels, photovoltaic substrates, hermetic glass lids 


Lecheng_Intelligent_LED_Solar_Simulator.pptx

Lecheng Intelligence Technology (Suzhou) Co., Ltd.

Lecheng Intelligence Technology (Suzhou) Co., Ltd. is strategically located in the vibrant industrial hub of Changshu Economic Development Zone. As a technology-driven enterprise specializing in laser processing equipment for the new energy sector, the company has embedded "technological innovation" into its core DNA since its inception. Committed to advancing the upgrade of the new energy industry, Lecheng continuously refines its expertise across the entire value chain—R&D, production, and after-sales service—for laser and automation equipment used in perovskite solar cells (PSCs). The company also provides complete perovskite solar cell production line solutions, establishing a prominent position within the industry through its professional capabilities.
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Featured products

Product advantages

  • Perovskite laser production line

    Lecheng Intelligent is a leading expert in perovskite solar cell laser processing equipment. Specializing in high-precision laser scribing and edge deletion machines for perovskite PV production, their product lineup includes P1, P2, P3 laser scribing equipment and P4 edge isolation devices. Their systems feature real-time focus tracking, vision compensation, and multi-beam scribing capabilities, supporting up to 150MW production lines and enabling high efficiency with minimized dead zones for large-area perovskite modules.



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  • Laser Scribing Equipment

    Lecheng is one of the leading Laser scribing equipment manufacturer in China.

    Lecheng Laser scribing equipment utilizes high-energy laser beams to create precise micro-cuts or grooves on materials such as silicon wafers, thin-film solar cells, ceramics, and metals (≤0.5 mm thickness). This non-contact process achieves micron-level accuracy (kerf width: 0.01–0.05 mm) through controlled ablation, enabling electrical isolation or segmentation in photovoltaic cells and semiconductor devices. 

    Key components  of Laser scribing equipment include:

    • Laser Source: Fiber (1064 nm), UV (355 nm), or CO₂ (10.6 µm) lasers, selected for material compatibility and precision requirements.

    • Galvanometer Scanning System: High-speed mirrors (≤8,000 mm/s) for beam positioning with ±0.001 mm repeatability.

    • CNC Worktable: Automated vacuum adsorption platform for stable material handling.

    • Cooling System: Air or water cooling (precision: ±0.5°C) to maintain thermal stability.

    • Software: Compatible with CAD/CAM tools (e.g., AutoCAD, CorelDraw) for path programming and real-time monitoring. 

    As the leading Laser scribing equipment manufacturer, Lecheng offers the OEM service for our loyal customers worldwide.

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  • Laser Edge Isolation Equipment

    Laser Edge Cleaning Equipment - This system utilizes laser etching technology to perform the P4 edge cleaning process. It not only enables fixed-width edge scanning along all four sides of the substrate but also supports customized edge patterning in other specified areas based on unique product design requirements.

    Key Features:

    • P4 Process Compatibility: Precision laser etching for edge isolation.

    • Flexible Processing: Handles both standard peripheral scanning and customized patterns.

    • Substrate Adaptability: Suitable for diverse materials and design specifications.


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  • Laser Marking Equipment

    Le Cheng provides high-performance laser marking equipment including fiber laser markers, CO2 engravers, and UV laser systems for metals, plastics, and electronics. Our CE-certified machines deliver permanent, high-speed marking with low maintenance. Ideal for automotive, aerospace, and medical industries. Free quote available!

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  • Laser engraving machine

    A laser engraving machine is an advanced technological device that utilizes a focused laser beam to create permanent marks, patterns, or designs on various materials through a process of melting, vaporizing, or inducing chemical changes on the surface. Operating similarly to a computer printer, it translates digital designs from software into precise physical engravings. These machines are highly versatile and can process a wide range of materials, including metals (e.g., stainless steel, aluminum), non-metals (e.g., wood, acrylic, glass, leather), plastics, and ceramics. They are valued for their high precision (up to 1000 DPI resolution), speed (e.g., engraving speeds up to 1000mm/s), and efficiency, enabling detailed and complex designs without physical contact, which eliminates tool wear and reduces material damage.

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  • Photovoltaic Solar Testing Equipment

    Photovoltaic Solar Testing Equipment Manufacturer: Lecheng Laser


    Our advanced photovoltaic solar testing equipment is designed to ensure the quality, performance, and safety of solar energy systems. These professional testing instruments provide comprehensive evaluation of PV modules, including EL (Electroluminescent) testing, IV curve analysis, and steady-state performance measurement.
    With user-friendly interfaces and robust data management capabilities, our photovoltaic solar testing equipment help optimize system design, improve energy conversion efficiency, and extend the operational lifespan of photovoltaic installations.



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  • Laser Integrated Processing

    Utilizing dual or triple optical path designs, laser integrated processing system is primarily used for the development and testing of laser processes on small-format thin-film solar cells. laser integrated processing system enables simultaneous execution of laser scribing (P1, P2, P3) and edge isolation (P4) processes for thin-film solar cells.

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  • Laser Cutting Equipment

    Laser cutting equipment utilizes a high-powered, focused laser beam to precisely cut, melt, or vaporize materials like metals, plastics, and wood. Guided by CNC systems, it offers exceptional accuracy, speed, and clean edges for various industrial applications.

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Company Profile

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Products

  • AM0 Solar Simulator for Space Solar Cell Testing
    AM0 Solar Simulator for Space Solar Cell Testing
    A high-precision AM0 solar simulator solution for space solar cell testing, aerospace photovoltaic evaluation and advanced solar device characterization. Lecheng Intelligent provides a professional AM0 solar simulator for space solar cell testing, helping customers achieve more reliable spectral simulation, stable irradiation control and stronger testing consistency for aerospace photovoltaic research. This page highlights how Lecheng approaches space solar cell testing with a stronger focus on optical accuracy, illumination uniformity, temporal stability and engineering-oriented test platform design.
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  • Perovskite Solar Cell Pilot Line Laser Processing Solution
    Perovskite Solar Cell Pilot Line Laser Processing Solution
    A process-oriented laser solution for perovskite solar cell pilot lines, covering P1, P2, P3 laser scribing and P4 edge deletion from lab verification to pilot-scale production. Lecheng Intelligent provides a professional perovskite solar cell pilot line laser processing solution for customers who are moving from laboratory validation to pilot line development. Instead of offering isolated equipment only, we support a broader engineering route for P1 P2 P3 P4 laser processing, helping customers improve process continuity, equipment matching, production stability and future scale-up readiness in perovskite photovoltaic manufacturing.
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  • P4 Laser Edge Deletion for Perovskite Solar Cells
    P4 Laser Edge Deletion for Perovskite Solar Cells
    Lecheng Intelligent provides a stable P4 laser edge deletion solution for perovskite solar cells, helping customers achieve cleaner edge isolation, better encapsulation compatibility and improved module reliability. This page highlights how Lecheng approaches P4 laser processing in perovskite photovoltaic manufacturing with stronger focus on edge quality, dead zone control and production-oriented consistency.
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  • P3 Laser Scribing for Perovskite Solar Cells
    P3 Laser Scribing for Perovskite Solar Cells
    Lecheng provides P3 laser scribing solutions for perovskite solar cells, helping achieve clean cell isolation, stable line quality and better module integration. Suitable for lab research, pilot lines and scalable photovoltaic manufacturing.
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  • P2 Laser Scribing for Perovskite Solar Cells
    P2 Laser Scribing for Perovskite Solar Cells
    If you want to explore the broader engineering logic behind P1, P2, P3 and P4 integration as well as full line configuration, visit our related Perovskite Laser Production Line page. This internal entry helps strengthen topic relevance around P2 laser scribing for perovskite solar cells, perovskite laser processing and perovskite pilot line solutions.
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  • P1 Laser Scribing for Perovskite Solar Cells
    P1 Laser Scribing for Perovskite Solar Cells
    Lecheng Intelligent provides a stable P1 laser scribing solution for perovskite solar cells, helping customers achieve clean conductive layer isolation, better line consistency and stronger process compatibility for laboratory research, pilot lines and scale-up production. This case page highlights how Lecheng approaches early-stage laser patterning in perovskite photovoltaic manufacturing with a stronger focus on precision, substrate protection and downstream process continuity.
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News

  • AAA-Class Large-Area LED Solar Simulator Setting a New Benchmark for Perovskite and Tandem Cell Research
    2026
    04-15
    The AAA-Class Large-Area LED Solar Simulator is far more than an incremental improvement over Xenon-based systems; it is an enabling technology that redefines the standards of accuracy, stability, and practicality in photovoltaic characterization. By delivering unmatched spectral match, temporal stability, large-area uniformity, and true collimation, it provides the foundational truth against which perovskite and tandem cell performance must be measured. In the high-stakes race to commercialize the next generation of solar technology, this tool is not optional—it is essential. It ensures that every efficiency percentage point claimed is real, every stability improvement is measurable, and every step toward the factory floor is taken on a foundation of irrefutable data. It sets the benchmark that will separate credible innovation from mere speculation, powering the transition of groundbreaking laboratory discoveries into the sustainable energy solutions of tomorrow.
  • All-in-One Air-Cooled Handheld Laser Welder: Ushering in a New Era of Water-Free, Highly Portable Precision Welding
    2026
    04-14
    The all-in-one air-cooled handheld laser welder represents a paradigm shift in materials joining technology. It successfully decouples the precision and quality of laser welding from the fixed infrastructure that has historically confined it, offering unparalleled portability and operational freedom. By solving the critical challenge of thermal management through integrated air-cooling, it delivers reliable, industrial-grade performance in a compact, go-anywhere package. This innovation is more than a convenient tool; it is an enabler that democratizes advanced manufacturing, unlocks new applications across diverse sectors, and drives efficiency by bringing the workshop directly to the job. It truly marks the dawn of a new era in flexible, accessible, and high-precision welding.
  • Steady-State vs. Pulsed Light Testing for Perovskite Solar Cells
    2026
    04-13
    The steady-state versus pulsed light debate in perovskite testing is not about finding a single "correct" method, but about applying the right tool for the right question. Pulsed light offers speed and insight into intrinsic electronic properties, while steady-state testing delivers the essential truth about operational performance and long-term energy yield. For the perovskite industry to build trust and achieve commercialization, prioritizing steady-state measurements as the gold standard for reporting stabilized efficiency and conducting reliability assessments is non-negotiable. Ultimately, investing in precise, reliable testing equipment for both methodologies—and understanding their distinct roles—is crucial for transforming promising perovskite innovations into bankable, high-performance solar products that can endure in the real world.
  • Integrated Solution for Perovskite Solar Cell Stability Testing: Light, Heat, and Bias in One System
    2026
    04-12
    An integrated solution for perovskite stability testing is the indispensable bridge between groundbreaking efficiency achievements and real-world commercial deployment. By unifying light, heat, and electrical bias within a single, precise instrument, it delivers the accelerated, predictive, and realistic lifetime data that the industry demands. This capability transforms stability from a vague concern into a quantifiable, optimizable parameter. Investing in such a comprehensive testing system is, therefore, a strategic imperative for any serious player in the perovskite PV space. It is the tool that turns promising laboratory cells into certified, warranty-backed products, enabling the perovskite revolution to move confidently from the research bench to the global energy market.
  • Roll-to-Roll (R2R) Laser Scribing Systems for Flexible Perovskite and Organic PV Production
    2026
    04-11
    Roll-to-Roll laser scribing is far more than an adaptation of a static process; it is the foundational technology that bridges the gap between the groundbreaking efficiency of flexible perovskite and organic PV materials and their real-world commercial deployment. It provides the essential combination of high speed, precision, and process control needed for cost-effective, high-volume manufacturing. By enabling continuous, high-yield production on flexible substrates, R2R laser systems unlock the unique value propositions of light weight, flexibility, and low embedded energy. Investing in robust, precision R2R laser scribing technology is, therefore, the critical strategic decision for any enterprise aiming to lead the next wave of solar innovation and bring the transformative potential of flexible photovoltaics to market at scale.
  • Laser Edge Isolation Equipment: Ensuring Clean Borders for Enhanced PV Module Reliability
    2026
    04-10
    Laser edge isolation is the definitive safeguard in PV module manufacturing. It is the process that seals the module's electrical integrity and fortifies its physical defenses. By utilizing advanced equipment to create a perfectly clean, non-conductive border, manufacturers decisively eliminate edge shunts, prevent PID, and ensure a hermetic seal against environmental stressors. This step is not an afterthought; it is a foundational requirement for achieving the 25-to-30-year operational lifetimes that define modern solar technology. Investing in precision edge isolation equipment, therefore, is an investment in the core reliability, longevity, and bankability of the final PV product, ensuring that the power produced at day one endures for decades to come.

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