Output power Varies

These pulsed lasers have an output power that varies depending on the wavelength and configuration selected. This air-cooled series of lasers is designed for a wide range of applications that require high peak power pulses.

Due to a short laser cavity, excellent thermal properties of the crystal, and an innovative water-free crystal cooling technology, these lasers can deliver up to 100mJ of pulse energy and/or up to 4W average output power. This advanced laser design results in a compact, user-friendly turnkey system that requires little maintenance.

Contact us for a quote, for technical support, or for help in selecting the best laser for your application.

Filters Reset

Type

Wavelength Selection

Power Selection

Energy Selection

Pulse Width Selection

Mode

Output

Linewidth

Series

Manufacturer

Picture Part Number Type Wavelength (nm) Output power (W) Mode Output Linewidth Pulse energy (uJ) Pulse width Rep rate
Q-Shift Series Quantas-Q-SHIFT-WXXXX Pulsed DPSS Lasers Multiple Wavelength Options Varies Varies 2ns - 5ns 100Hz
Quantas-Q2HE: High energy, compact, nanosecond, DPSS laser Quantas-Q2HE-XXX-XXXX Pulsed DPSS Lasers Multiple Wavelength Options Varies Varies Varies 100Hz

Q-SHIFT Series

Q-Shift SeriesThe Quantas-Q-SHIFT series is a family of Q-switched DPSS lasers featuring a built‑in nonlinear wavelength conversion stage, allowing the production of wavelengths that are not accessible with conventional solid-state laser sources, including 1163, 1177, 1300, 1317, 1551 and 1571nm. An optional harmonics generator is also available for for the Q-SHIFT, allowing generation of up to the 4th harmonic for each fundamental wavelength.

Q2HE Series

Quantas-Q2HE-211: High energy, compact, nanosecond, DPSS laser

The Q2HE series, from Quantum Light Instruments Ltd., features an innovative water-free laser crystal cooling technology that enables generation of high quality laser beams with up to 100 mJ pulse energy and/or up to 4 W of average output power. Featuring a pulse duration of less than 7 ns and a low beam divergence, the Q2HE is capable of achieving efficient fundamental wavelength conversion through the 5th harmonics of 213/211 nm.