60uJ Lasers

Unlike continuous wave lasers, the output of these 60uJ pulsed lasers cannot be specified by their output power alone. This is because the output power of a pulsed laser is determined by three different parameters, the laser’s pulse width, pulse energy, and pulse repetition rate.

On this page, we have a list of all of the 60uJ lasers offered by RPMC. If you don’t see a laser with the parameters needed, most of our lasers can be modified for your needs.

If you need help selecting the best laser for your application, or defining the laser requirements for a specific application, please contact our product manager for assistance.

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Series

Manufacturer

Picture Part Number Type Wavelength (nm) Output power (W) Pulse energy (uJ) Pulse width Rep rate Q-switch type
Bright Microlaser Microchip SB1 Laser SB1-1064 Pulsed DPSS Lasers, Microchip Lasers 1064 0.008, 0.012, 0.040, 0.110, 0.150, 0.200, 0.225, 0.400 2.0, 15.0, 20.0, 30.0, 40.0, 60.0, 80.0 400ps, 1.3ns 100Hz, 200Hz, 1kHz, 5kHz, 10kHz, 15kHz, 55kHz, 100kHz Passive
Sirius-532: Picosecond DPSS lasers Sirius IR Pulsed DPSS Lasers, Ultrafast Lasers 1064 5.0 60.0 10ps Single shot to 1MHz Active

Microchip Series

Bright Microlaser Microchip SB1 Laser

The Microchip Series, from BrightMicroLaser, are ultra-compact, passively q-switched, single longitudinal mode (SLM), narrow linewidth, DPSS lasers that feature pulse durations from 400 ps to 2 ns, energy levels up to 80 uJ and repetition rates up to 100 kHz. In addition to the fundamental 1064 nm wavelength and its harmonics (532, 355 and 266 nm), we also deliver units emitting at 946 and 473 nm.

Sirius Series

Sirius-532: Picosecond DPSS lasers

SIRIUS is a very compact, high energy hybrid ultrafast laser for advanced micro-machining applications and supercontinuum pumping, offering over 120µJ and > 5 W, with pulses below 10 ps from single shot to 1MHz and an M² of < 1.2. This laser series specifically designed to allow for ergonomic and user-friendly operation. SIRIUS is ideally suited for selective ablation, electronics, and photonic applications.