High energy pulsed Nd:YAG laser
1064 nm | PicoSpark™
TEEM PHOTONICS
PicoSpark™ brings together Passively Q-Switched (PQS) microchip laser technology with fiber amplification, resulting in a multiwatt laser that generates pulses with hundreds of kilowatt peak power and hundreds of gigawatt per square centimeter irradiance.
A PQS microchip laser is the seed of PicoSpark™ and sets the pulse width in the hundreds of picoseconds; a fiber amplifier provides the gain, compactly and efficiently. This Master Oscillator Fiber Amplifier (MOFA) architecture enables a constant pulse width, while allowing the user to vary the pulse energy (or peak power) and the repetition rate independently of each other. The output is free-space coupled, preserving peak power and beam quality.
The Picospark™ HNP series emits 5.5W at 1064nm generated by harmonic conversion, both with an M2 of 1.4 or lower.
Applications :
Instrumentation
Biophotonics
Biohazard detection
Laser Induced Breakdown Spectroscopy (LIBS)
Semiconductor Inspection
Materials processing
MALDI-TOF
Micro dissection
Laser Induced Fluorescence (LIF)
Light Detection and Ranging (LIDAR)
Micromachining
Marking
Health Sciences
A PQS microchip laser is the seed of PicoSpark™ and sets the pulse width in the hundreds of picoseconds; a fiber amplifier provides the gain, compactly and efficiently. This Master Oscillator Fiber Amplifier (MOFA) architecture enables a constant pulse width, while allowing the user to vary the pulse energy (or peak power) and the repetition rate independently of each other. The output is free-space coupled, preserving peak power and beam quality.
The Picospark™ HNP series emits 5.5W at 1064nm generated by harmonic conversion, both with an M2 of 1.4 or lower.
Applications :
Instrumentation
Biophotonics
Biohazard detection
Laser Induced Breakdown Spectroscopy (LIBS)
Semiconductor Inspection
Materials processing
MALDI-TOF
Micro dissection
Laser Induced Fluorescence (LIF)
Light Detection and Ranging (LIDAR)
Micromachining
Marking
Health Sciences
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