Applications

Total control for advanced industrial and scientific applications

Our next-generation femtosecond laser technology delivers total process control, empowering industrial manufacturing to achieve new standards of precision, speed, and efficiency. With unmatched flexibility in pulse modulation and energy delivery, set new standards in micromachining, semiconductor processing, and advanced materials manufacturing. Built on an advanced laser platform, they also enable cutting-edge research that demands ultimate stability and control.

Discover how our lasers redefine performance across industries and research.

MATERIAL PROCESSING

Glasses

Glasses

Glass is a challenging material due to its brittleness and heat sensitivity. Our femtosecond laser technology offers unmatched flexibility, enabling microdrilling from 1 μm to 100 μm, precise microcutting, and high-quality surface structuring.

 

With FULL GHz Burst modulation, hole geometry can be finely controlled — from straight to V-shaped vias — ensuring superior precision and surface quality. We achieve features up to 2 mm deep with clean edges and no cracks, delivering consistent results across all glass types.

PROCESSING

  • Micro-drilling
  • Micro-cutting
  • Scribing
  • Dicing
  • Product

    Metals

    Metals

    Processing metals such as steel, copper, advanced alloys, and precious metals like gold and silver requires both precision and speed. Our femtosecond laser technology delivers high-speed micro-processing, enabling clean, burr-free cuts and luxury-grade surface markings with a bright, uniform finish. Thanks to FULL Burst Modulation The system also allows surface polishing and fine texturing, ensuring superior results for industrial components and highend decorative applications.

    PROCESSING

  • Cutting
  • Milling
  • Marking
  • Micro-drilling
  • Surface polishing
  • Texturing
  • Product

    Polymers

    Polymers

    Polymers are challenging to process due to their sensitivity to heat and tendency to deform under conventional machining. Our femtosecond laser technology overcomes these limitations, enabling micro-drilling down to less than 1 µm with consistent, reproducible results. Thanks to total process control and flexible pulse modulation, we can perform microprocessing with high precision and reliability across a wide range of polymers.

    Advanced 3D nanoprinting (TwoPhoton Polymerization) further allows the fabrication of submicron 3D structures, expanding the possibilities for precision additive manufacturing in polymers.

    Semiconductors

    Semiconductors

    Semi-conductors are brittle. Some, like silicon carbide, are also highly thermally conductive making fast and precise processing even more challenging.

    Our femtosecond laser technology achieves high-speed ablation and precise cutting, delivering clean, burr-free edges and exceptional throughput. With FULL control over pulse energy and burst modulation, we enable efficient, reproducible processing even on the most demanding semiconductor materials.

    PROCESSING

  • Scribing
  • Cutting
  • Micro-drilling
  • Surface structuring
  • Dicing
  • Product

    Other materials

    Other materials

    Our femtosecond laser technology also excels on complex and advanced materials, including composites like carbon fiber, multi-layer laminates, and hybrid materials. With FULL GHz Burst modulation, we achieve highly precise cuts, microdrilling, and surface structuring, even on delicate multi-layer materials where we can target a single layer while preserving the others, delivering consistent, high-quality results.

    PROCESSING

  • Cutting
  • Micro-drilling
  • Marking
  • Layer-selective processing
  • Surface structuring
  • Product

    SCIENTIFIC

    Non-linear optics

    Soliton mode-locked, transform-limited lasers maintain short, spectrally narrow pulses, ensuring high efficiency and precision in nonlinear interactions across diverse experimental setups.

    BENEFITS

  • Stable pulses
  • Efficient interactions
  • Robust in non-ideal setups
  • High precision
  • Product

    Two-photon polymerization

    Exceptional beam-pointing stability ensures the laser hits the exact same spot over thousands of passes, ideal for complex, high-resolution microparts. The 210MHz repetition rate also enables much faster printing than traditional 80MHz lasers.

    BENEFITS

  • Ultra-stable pointing
  • High-resolution microparts
  • Fast printing
  • Reproducible results
  • Product

    Multiphoton Microscopy

    Sub-200fs soliton pulses deliver high contrast, while >7W at 1050nm allows deep tissue imaging with minimal scattering and heat. One laser can even drive multiple setups simultaneously.

    BENEFITS

  • High contrast imaging
  • Deep tissue penetration
  • Multi-setup capability
  • Product

    TECHNOLOGY

    At our in-house micromachining lab, we harness the power of our flexible GHz burst lasers to develop and validate laser processes that boost your productivity and quality.

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