Description
The MNx series are our most compact microchip lasers and cover the mid-IR to visible part of the spectrum. They integrate the pump diode, the micro-cavity and even the second harmonic generation crystal in a package less than 7 cm long.
The 1064 nm engine produces sub-nanosecond pulses with several kW peak power, achieving over 50% second harmonic generation efficiency at 532 nm. The 1535 nm micro-laser displays similar performances with a few nanoseconds pulse duration.
MNG-03E-100 Ultra-Compact Microchip Laser
Specifications
| Avg. Power: | 0.015 W |
|---|---|
| Wavelength: | 532 nm |
| Repetition Rate: | 5 – 5 kHz |
| Spatial Mode (M^2): | 1.3 |
| Pulse Duration: | 0.75 ns |
| Pulse-to-Pulse Stability (RMS): | 1 % |
| Cooling: | Air |
| Beam Profile: | Gaussian TEM00 |
| Beam Ellipticity: | <1.3 |
| Polarization: | Linear, PER>20dB |
| Output Energy: | >3uJ |
| Peak Power: | >4kW |
| Package Weight: | 250g |
Features
- Ultra-compact package
- 1535 nm, 1064 nm and 532 nm
- Ultra-short pulses down to 650 ps
- Multi-kW peak power
- Excellent beam quality – TEM00, M²<1.1
- Efficient, air-cooled
Applications
- Super-continuum generation
- Marking
- Raman spectrometry
- Ranging
Frequently Asked Questions
What is the wavelength range of the MNx series microchip lasers?
The MNx series microchip lasers cover the mid-IR to visible part of the spectrum, with wavelengths of 1535 nm, 1064 nm, and 532 nm.
What is the peak power of the MNx series microchip lasers?
The MNx series microchip lasers have multi-kW peak power.
What is the pulse duration of the MNx series microchip lasers?
The MNx series microchip lasers have ultra-short pulses down to 650 ps, with a few nanoseconds pulse duration for the 1535 nm micro-laser.
What applications are the MNx series microchip lasers suitable for?
The MNx series microchip lasers are suitable for applications such as super-continuum generation, marking, Raman spectrometry, and ranging.
What is the beam quality of the MNx series microchip lasers?
The MNx series microchip lasers have excellent beam quality, with TEM00 and M² 1.1, and efficient air-cooling.
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