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Laser Optics & Accessories

Full range optics from lens to nozzle in one supply chain. Supports 1–30kW laser systems with stable performance. High transmittance coatings ensure minimal power loss. Fast delivery with OEM customization for global clients.
  • Le Cheng
  • Shanghai

Product Description

The Laser Optics & Accessories series from Lecheng Intelligent provides a complete range of optical components designed for high-performance laser processing systems. The product line includes focusing lenses, collimation lenses, protective windows, and nozzles, covering a wide range of laser applications from precision cutting and welding to high-power industrial processing.

These optical components are engineered to support fiber lasers, CO₂ lasers, and high-power laser systems up to 30kW, ensuring stable beam transmission, minimal energy loss, and consistent processing quality. With materials such as ZnSe, GaAs, Sapphire, BK7, and KCl, the optics are optimized for different wavelengths and power requirements, enabling reliable performance in demanding industrial environments.

Compared with standard optical components, Lecheng's optics are manufactured with high-precision polishing, advanced coating technology, and strict quality control, ensuring high transmittance, strong thermal stability, and extended service life. These features make the products ideal for both OEM equipment manufacturers and global distributors seeking cost-effective and reliable optical solutions.

Product Functions

1. Focusing Lens – Precision Beam Control

Focusing lenses are the most critical optical component in laser processing, determining focal position and spot size. They directly affect cutting precision, speed, and energy density.

Focusing Lens Specifications

ParameterSpecification
MaterialZnSe / GaAs
Focal Length127 – 254 mm
ApertureØ20 – Ø25 mm
Power RangeUp to 10 kW
ApplicationFiber laser / CO₂ laser

2. Collimation Lens – Beam Quality Optimization

Collimation lenses convert divergent laser beams into parallel beams, ensuring stable beam quality and uniform energy distribution.

Collimation Lens Specifications

ParameterSpecification
MaterialZnSe / BK7
Focal Length75 – 200 mm
Power RangeUp to 30 kW
FunctionBeam shaping and stabilization

3. Protective Window – Optical Protection

Protective windows act as the first barrier between the laser optics and the processing environment. They prevent contamination from dust, smoke, and molten metal particles.

Protective Window Specifications

ParameterSpecification
MaterialZnSe / Sapphire / KCl
Diameter20 – 30 mm
Transmittance>99%
Power RangeUp to 15 kW

4. Nozzle – Gas Flow Control

Nozzles control assist gas flow during laser cutting, directly affecting cutting quality, kerf width, and edge smoothness.

Nozzle Specifications

ParameterSpecification
MaterialCopper / Stainless Steel
Orifice SizeØ1.0 – 3.0 mm
TypeSingle-layer / Double-layer
ApplicationCutting / Welding

Key Features

  • Wide Power Compatibility

    Supports 1kW to 30kW laser systems, covering low-power precision processing to high-power industrial applications.

  • High Optical Performance

    Advanced coating ensures >99% transmittance, minimizing energy loss and improving processing efficiency.

  • Durable and Heat Resistant

    High-quality materials such as ZnSe and sapphire provide excellent thermal resistance and long service life.

  • Full Product Range

    From lenses to consumables, all key optical components are available in one supply system, reducing procurement complexity.

  • Fast Delivery and OEM Support

    Standard products are available with 3–7 day delivery, with OEM/ODM customization options for global clients.

Application Range

Laser optics and accessories are widely used in:

  • Fiber laser cutting systems

  • CO₂ laser processing equipment

  • Laser welding systems

  • Laser marking and engraving machines

  • Additive manufacturing and laser cladding

  • Precision industrial machining

  • Photovoltaic laser processing equipment

Key Technical Summary

CategorySpecification
Product TypeLaser Optics & Accessories
MaterialsZnSe / GaAs / Sapphire / BK7
Power Range1 – 30 kW
Transmittance>99%
Delivery Time3 – 7 Days
CustomizationOEM / ODM Available


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  • How long does it take from equipment ordering to official production when cooperating with Locsen?

    The overall timeline varies depending on equipment specifications and production line scale. For standalone equipment, standard models require a 45-day manufacturing cycle, with total duration (including shipping and installation) of approximately 60 days. Customized equipment requires an additional 30 days based on technical requirements. For complete line solutions: • 100MW-level production lines require ~4 months for planning, equipment manufacturing, installation, and commissioning • GW-level production lines require ~8 months We provide detailed project schedules with dedicated managers ensuring seamless coordination. Example: A client's 1GW perovskite production line was completed 15 days ahead of schedule through parallel equipment manufacturing and facility construction.
  • Does Locsen offer suitable equipment and partnership solutions for startup perovskite companies

    Locsen offers a "Phased Partnership Program" specifically designed for perovskite startups. For the initial R&D phase, we provide compact pilot-scale equipment (e.g., 10MW laser scribing systems) bundled with essential process packages to facilitate technology validation and product iteration. During scale-up phases, startups qualify for upgrade benefits: • Core modules from pilot equipment can be traded in with value deduction toward production-line machinery • Optional technical collaboration including process development support and experimental data sharing This program has successfully enabled multiple startups to transition smoothly from lab to pilot production while mitigating early-stage investment risks.
  • Can Locsen's equipment handle perovskite solar cells of varying sizes? What is the maximum supported dimension?

    Locsen's laser equipment features exceptional size compatibility, capable of processing perovskite solar cells ranging from 10cm×10cm to 2.4m×1.2m. For oversized cell processing (e.g., 12m×2.4m rigid substrates), we offer customized gantry-type laser systems with multi-laser-head synchronization to ensure both precision and throughput. • Proven Performance: Successfully processed 1.2m×0.6m cells with industry-leading scribing accuracy (±15μm) and uniformity (>98%) • Modular Design: Swappable optical modules adapt to varying thicknesses (0.1-6mm) • Smart Calibration: AI-assisted real-time beam alignment compensates for substrate warpage
  • Does Locsen provide tailored laser solutions for all key production stages of perovskite solar cells?

    Yes, Locsen provides comprehensive laser processing solutions covering the entire perovskite solar cell production chain: P0 Laser Marking: For cell identification post-film deposition P1/P2/P3 Laser Scribing: Precision patterning of • Transparent conductive layers (P1) • Perovskite active layers (P2) • Back electrodes (P3) P4 Edge Isolation: Micron-level edge trimming to prevent short-circuiting Tandem Cell Modules: Dedicated laser etching systems for multi-material layer processing Our integrated equipment ecosystem ensures all laser processing requirements are met with: • ≤20μm alignment accuracy across layers • Thermal Affect Zone controlled under 5μm • Modular platforms supporting R&D to GW-scale production
  • What composition tolerance ranges do Locsen's tools support for variant perovskite formulations?

    Locsen's laser systems demonstrate exceptional adaptability to diverse perovskite compositions. • Preloaded Parameters: Optimized settings for mainstream formulations (e.g., FAPbI₃, CsPbI₃) in the laser recipe library enable instant operator access • R&D Support: For novel compositions (e.g., Sn-based perovskites), our team delivers: Custom wavelength/fluence calibration within 72 hours Performance validation ensuring <1% PCE degradation post-processing • Smart Compensation: On-board spectroscopy modules monitor reflectivity in real-time, automatically adjusting: Pulse duration (20-500ns) Beam profile (Top-hat/Gaussian) Energy density (0.5-3J/cm²) Technical Highlights: ▸ Tolerance for ±15% stoichiometric variation in Pb:Sn ratios ▸ Support for 2D/3D hybrid phase patterning ▸ Non-contact processing avoids cross-contamination

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