Photonics-grade laser cutting machines engineered with sub-micron positioning accuracy and vertically integrated fiber laser oscillators. Deployed across 55+ countries for aerospace, automotive, and semiconductor manufacturing.
Lumentum photonic systems address critical processing requirements across six core manufacturing sectors, each demanding different wavelength, power, and precision configurations.
Body-in-white cutting, battery tray processing, and structural component fabrication with cycle-time-optimized laser parameters.
Titanium and Inconel processing for turbine blades, structural brackets, and heat shields meeting AS9100 tolerance requirements.
Wafer dicing, via drilling, and precision scribing with wavelength-specific beam profiles for silicon, SiC, and GaN substrates.
Stent cutting, catheter fabrication, and implant processing requiring FDA-compliant documentation and Class 1 safety enclosures.
Optical transceiver packaging, silicon photonics die bonding, and hermetic sealing for 400G and 800G module assembly lines.
Thick-plate cutting up to 40mm carbon steel, structural I-beam processing, and shipbuilding plate preparation at 12kW+ power levels.
Vertically integrated laser platforms spanning 1kW to 30kW, each built around proprietary fiber oscillator technology and NIST-traceable optical alignment.
Positioning accuracy down to ±0.003mm through advanced servo-driven gantry systems and NIST-traceable optical calibration, exceeding requirements for medical device and aerospace component fabrication.
Our engineers have a combined 22+ years of fiber laser development experience, providing application consulting that goes beyond machine selection to encompass material science and process parameter tuning.
A 47-point inspection protocol and automated optical testing achieve a 99.7% first-pass yield rate, reducing rework costs and ensuring every system meets published specifications upon delivery.
Lumentum's technical team identified a beam divergence issue in our 8kW cutting cell that two previous vendors had missed entirely. After reconfiguring the fiber coupling and adjusting the collimation parameters, our cut edge roughness dropped from Ra 6.3 to Ra 3.2 on 10mm stainless steel. The level of optical engineering expertise is not something we have encountered from other machine suppliers.
Technical and commercial questions our applications engineers address most often.
Our applications engineers are prepared to evaluate your material samples, recommend system configurations, and provide detailed process parameter guidance. Consultations are complimentary for qualified manufacturing inquiries.