1535nm 1.2kW Pulsed Fiber Laser

1535-LXMC1.2kw featured product image

Overview

The 1535nm 1.2kW Pulsed Fiber Laser is an eye-safe 1.5 µm band pulsed fiber laser source for LiDAR, mapping and remote-sensing transmitters. It produces 1150 W typical peak power at 1535 nm with a 2.5–3.5 pulse and an adjustable 100–2000 kHz repetition rate.

  • Pulse — 2.5–3.5 ns (3 ns typical) FWHM, 100–2000 kHz adjustable repetition rate
  • Power — 1150 W typical, varying with repetition rate; 1.2 W average
  • Spectrum — 1532–1537 nm centre wavelength, random polarisation, external trigger
  • Stability — ±10% average power (−20 to +50 °C), ±15% (−40 to +75 °C)
  • Package — 55 × 55 × 16 mm, FC/APC and FC/UPC output

Technical reference 1535-LXMC1.2kw. Request the full specification to confirm the optical, electrical and mechanical configuration for your platform.

Used in: LiDAR 3D mapping, infrastructure inspection and distributed temperature sensing.

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Descriptions

1535nm 1.2kW Pulsed Fiber Laser is engineered for civil LiDAR, remote sensing, industrial inspection, and scientific measurement systems that require controlled pulsed output. The 1.2kW peak-power class should be evaluated with the intended pulse regime, fiber delivery, thermal path, and host-system electronics.

Technical reference: 1535-LXMC1.2kw. Confirm the final optical, electrical, mechanical, and environmental configuration against the order-specific technical specification before design release.

Key parameters

ParameterLocal specification value
Laser wavelength1535 nm
Peak power1.2 kW
Pulse repetition frequency100 500 2000 kHz
Pulse width2.5 3 3.5 ns
Average power1.2 W
Output fiberFC/APC+ FC/UPC
Supply voltage9 12 13 V
Dimensions55x55x16 mm
Operating temperature-40 75 ℃

Applications

  • LiDAR and remote sensing
  • industrial inspection
  • mapping and survey instruments
  • scientific measurement systems

Integration notes

We recommend confirming the final optical, electrical, mechanical, and environmental configuration against the order-specific technical specification before design release. This keeps the selected LiDAR laser aligned with the host system and its operating conditions.

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