Description
The HLX-F products are based on a solid-state, diode-pumped and passively Q–switched laser. With our proprietary and patented design, our lasers generate single pulse at 1064 nm with duration as short as 450ps, repetition rates up to 70 kHz, average power up to 400 mW and energies up to 10 μJ in a single mode fiber. The extremely reliable and robust microchip design is perfect for advanced OEM industrial and scientific applications. The compact design is best suited for almost any system integration.
HLF-I DPSS Laser
Specifications
Avg. Power: | 0.4 W |
---|---|
Wavelength: | 1064 nm |
Repetition Rate: | 0.001 – 70 kHz |
Spatial Mode (M^2): | 1.2 |
Pulse Duration: | 1 ns |
Pulse-to-Pulse Stability (RMS): | 0.5 % |
Cooling: | Air |
Features
Passively Q-Switched
Proprietary and patented Microchip design
Single mode fiber output
Sub-ns pulses (450 ps to 2 ns) at 1064 nm
Pulses without parasite (no second pulse)
Repetition rate up to 70 kHz
Average power up to 400 mW
Peak power up to 10 kW
Externally triggerable
Electronic power supply with analog or numerical control
Proprietary and patented Microchip design
Single mode fiber output
Sub-ns pulses (450 ps to 2 ns) at 1064 nm
Pulses without parasite (no second pulse)
Repetition rate up to 70 kHz
Average power up to 400 mW
Peak power up to 10 kW
Externally triggerable
Electronic power supply with analog or numerical control
Applications
Laser seeding for fiber amplification
Supercontinuum generation
Biology
Supercontinuum generation
Biology
Frequently Asked Questions
What is the HLX-F laser based on?
The HLX-F laser is based on a solid-state, diode-pumped and passively Q-switched laser.
What is the wavelength of the HLX-F laser?
The HLX-F laser generates a single pulse at 1064 nm.
What is the average power of the HLX-F laser?
The HLX-F laser has an average power up to 400 mW.
What applications is the HLX-F laser suitable for?
The HLX-F laser is suitable for laser seeding for fiber amplification, supercontinuum generation, biology, LIDAR, 3D scanning, 3D imaging, biophotonics, CARS pumping, pollution monitoring, atmospheric sciences, and micromachining.
What is the pulse duration of the HLX-F laser?
The HLX-F laser generates sub-ns pulses (450 ps to 2 ns) at 1064 nm.
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