The SFL-FL Series features broad spectral coverage, high output power, and exceptional beam quality. It is engineered for cutting-edge applications in scientific research, optical communications, biomedical engineering, and more.
| Name | Model | Description | Parameter | Price |
|---|
Broad Spectral Versatility: Covers key wavebands across the NIR and SWIR spectrum.
High Output Power: Delivering up to 500 W (model dependent) with excellent stability.
Superior Beam Quality: M2 < 1.2, ideal for high-precision applications.
Flexible Cooling: Options for efficient air or water cooling to match your setup.
Model / Variant | -R | -Nd | -Yb | -Er | -Tm |
Wavelength (nm)¹ | 1100–1700 | 910–930 | 974–1120 | 1530–1570 | 1700–2000 |
Output Power (W) | 5–200 | 5–20 | 10–500 | 10–50 | 2–100 |
Linewidth² | ~1nm | ||||
Polarization³ | Random / Linear | ||||
Power Stability | Peak-to-Peak < 3%, RMS < 0.5% | ||||
Beam Quality | Single transverse mode, M2 < 1.2 | ||||
Cooling Method | Water-cooled / Air-cooled | ||||
Output Terminal | Fiber Collimator | ||||
Notes:
¹ Custom wavelengths are available upon request. Frequency-doubled options for visible wavelengths are also available.
² Linewidth may vary depending on the configured output power and laser wavelength.
³ Maximum output power may vary under different polarization requirements.
Typical Spectrum Performance

915 nm Nd-Doped Fiber Laser (15 W): Demonstrates an ultra-clean, high-SNR emission peak around 915 nm.

1480 nm Raman Fiber Laser (60 W): Shows targeted high-power secondary Stokes generation optimal for pumping and specialized telecommunication bands.
Scientific Research: Quantum optics, non-linear optics, and pumping sources.
Optical Communications: Component testing, amplification, and specialized networks.
Biomedical Engineering: Medical imaging, photothermal therapy, and bio-sensing.