1550nm high power fiber femtosecond laser (watt level)

1550nm high power fiber femtosecond laser (watt level)

SCI-1550-FS-HP

The 1550nm Watt-class fiber femtosecond laser SCI-1550-FS-HP has an output power of >1W, a pulse width of <150fs, and a near-diffraction-limited 1550nm free-space laser beam. The 24-hour power stability can reach <5‰. It is widely used in fields such as terahertz generation, nonlinear optics, quantum optics, SHG/THG imaging, and two-photon imaging.

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Laser parameters

Operating wavelength

1560±10 nm

Pulse width

<150 fs

Repetition frequency

80 MHz

Average power

>1 W

Power stability

<0.5% RMS(24h@25℃ )

Polarization extinction ratio

>20 dB

Single pulse energy

>12.5 nJ

Output method

Spatial collimation output

Electrical, Environmental and mechanical parameters

Power supply voltage

100-240 VAC

Operating temperature

15-35 ℃

Working humidity

20~80% (Non-condensing)

Machine weight

20 kg

Appearance size

448×300×134 mm; 445×383×97 mm

Cooling method

Air cooling

The 1550nm watt-level fiber femtosecond laser SCI-1550-FS-HP is the flagship product of 1550nm wavelength provided by DeChuang Laser, which can output power>1W, pulse width<150fs, and near-diffraction-limited 1550nm free-space laser beam. The 24-hour power stability can reach <5&permil.
The 1550nm watt-level fiber femtosecond laser SCI-1550-FS-HP adopts a high-power, high-performance multi-mode pump source and an "integrated all-fiber system" design with a fully polarization-maintaining structure. The power supply, control part and optical system are highly integrated to provide users with an easy-to-use turnkey laser system.
The 1550nm watt-level fiber femtosecond laser SCI-1550-FS-HP can be widely used in fields such as terahertz generation, nonlinear optics, quantum optics, SHG/THG imaging, and two-photon imaging.

Technical advantages:

· Customizable wavelength

· High peak power

· Linear polarization

· Diffraction-limited beam quality

Application areas:

· Terahertz generation

· Two-photon polymerization

· Two-photon imaging

· Precision measurement

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