
Lasers · Laser families
Fiber lasers
507-2000 nm single-frequency examples | For setups that benefit from stable fiber delivery, compact beam routing, and defined polarization handling. | All-fiber delivery | PM options | Seed and high-power formats | quantum sensing | telecom-band research | Raman | coherent detection | Seed lasers around 1014-1120, 1525-1596, and 1800-2000 nm | Visible single-frequency fiber models from 507 nm upward | Polarization ratios typically above 15 dB
Specifications
Full specifications for this product are available on request. Contact us for the datasheet.
Related products
CW DPSS and diode lasers
193-10500 nm source coverage | For stable continuous sources where clean beam quality, power stability, and practical instrument integration matter. | High stability | Low noise | Compact integration | Raman spectroscopy | fluorescence | confocal microscopy | machine vision | semiconductor inspection | UV, visible, NIR, and MIR wavelengths | TTL or analog modulation options | Free-space, SM, PM, MM, or liquid-core fiber coupling
Single-frequency and narrow-linewidth lasers
UV, visible, NIR, and fiber laser options | For coherent experiments where linewidth, coherence length, and frequency stability matter more than raw output power. | kHz-class linewidth options | Long coherence length | Low frequency noise | holography | interferometry | quantum optics | narrow-band Raman | cold atoms | Single longitudinal mode DPSS options | Single-frequency fiber laser options | TEM00 beam quality on many configurations
Nanosecond and sub-nanosecond pulsed lasers
213, 266, 355, 532, 1064 nm and custom | For applications controlled by pulse energy, timing, spot size, and peak power. | High peak power | Variable repetition rate | Air-cooled formats | MALDI-TOF | LIBS | photoacoustic imaging | laser ablation | LiDAR | marking | Sub-ns pulse widths down to about 400 ps | ns one-box options at 266, 355, 532, and 1064 nm | uJ to mJ energy classes depending on series
Picosecond and femtosecond lasers
266, 355, 515, 532, 1030, 1064, 1560 nm examples | For precision material processing and experiments that need reduced thermal load. | Short pulse duration | High repetition rate | Good beam quality | semiconductor cutting | film scribing | ceramic cutting | sapphire marking | physics experiments | Picosecond examples near 10 ps | Femtosecond series below 300 fs or below 150 fs depending model | Air- and water-cooled configurations

