Lasers

Semiconductor Lasers

nLIGHT’s semiconductor lasers span wavelengths from 640 nm to 1550 nm, delivering high-brightness, fiber-coupled diode modules up to 570 W for pumping, direct diode, and sensing applications.

nLIGHT’s semiconductor laser portfolio builds on decades of vertical integration — from wafer fabrication to packaged, fiber-coupled modules — delivering outstanding brightness, reliability and wavelength stability.

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Green Architecture
Evermind™ template is crafted like sustainable structures — clean, scalable, and built to last.
Precision Engineering
Every layout and component is tuned with variables and pixel-perfect details, so your brand stands on solid ground.
Dynamic Interactions
From nature-inspired transitions to fluid page structures, Evermind™ feels alive yet quietly sophisticated.

Why choose nLIGHT semiconductor lasers?

  • Ultra-high brightness & fibre coupling: The architecture uses single-emitter diode foundations plus high-brightness fibre coupling (e.g., 105 µm, ~0.15 NA) for exceptional brightness - enabling power scaling in demanding solid-state or fiber-laser systems.
  • Broad wavelength & power coverage: Wavelengths cover from 640 nm through 1550 nm, and power levels up to ~570 W in fibre-coupled form.
  • Stabilised operation: Many modules feature wavelength stabilization, remaining locked over broad temperature and current ranges, which ensures consistent absorption when used for pumping or direct-diode applications.
  • Proven reliability: nLIGHT emphasises long-term uptime and consistent performance, backed by its own manufacturing of wafers, chips and packages.
  • Vertical manufacturing chain: By controlling the full stack - wafers → chips → packages → fibre coupling - nLIGHT reduces risk in supply, improves quality control, and enables innovation in advanced diode designs.

Why choose nLIGHT semiconductor lasers?

  • Ultra-high brightness & fibre coupling: The architecture uses single-emitter diode foundations plus high-brightness fibre coupling (e.g., 105 µm, ~0.15 NA) for exceptional brightness - enabling power scaling in demanding solid-state or fiber-laser systems.
  • Broad wavelength & power coverage: Wavelengths cover from 640 nm through 1550 nm, and power levels up to ~570 W in fibre-coupled form.
  • Stabilised operation: Many modules feature wavelength stabilization, remaining locked over broad temperature and current ranges, which ensures consistent absorption when used for pumping or direct-diode applications.
  • Proven reliability: nLIGHT emphasises long-term uptime and consistent performance, backed by its own manufacturing of wafers, chips and packages.
  • Vertical manufacturing chain: By controlling the full stack - wafers → chips → packages → fibre coupling - nLIGHT reduces risk in supply, improves quality control, and enables innovation in advanced diode designs.

Why choose nLIGHT semiconductor lasers?

  • Ultra-high brightness & fibre coupling: The architecture uses single-emitter diode foundations plus high-brightness fibre coupling (e.g., 105 µm, ~0.15 NA) for exceptional brightness - enabling power scaling in demanding solid-state or fiber-laser systems.
  • Broad wavelength & power coverage: Wavelengths cover from 640 nm through 1550 nm, and power levels up to ~570 W in fibre-coupled form.
  • Stabilised operation: Many modules feature wavelength stabilization, remaining locked over broad temperature and current ranges, which ensures consistent absorption when used for pumping or direct-diode applications.
  • Proven reliability: nLIGHT emphasises long-term uptime and consistent performance, backed by its own manufacturing of wafers, chips and packages.
  • Vertical manufacturing chain: By controlling the full stack - wafers → chips → packages → fibre coupling - nLIGHT reduces risk in supply, improves quality control, and enables innovation in advanced diode designs.

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Fiber Lasers / Industrial Lasers
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