
"An excellent replacement for an Argon or HeCd laser: emission is spectrally pure, efficiency is much better, it provides better longevity with cheaper maintenance, and it is much smaller."
“The Skylark 349 NX laser performs exceptionally well, maintaining high stability in beam alignment, power, and profile, all critical for achieving precision in interference lithography.”
“The lasers are close to the Hg-i-line. The outstanding stability and beam quality produces nanostructures with small-period features and complex patterns.”

Pushing the capabilities of photonics to craft lasers tailored to your application requirements
From laser design through to software development, process engineering to electronic assembly, our team is driven to push the capabilities of laser technology - delivering higher output powers from a compact footprint. Guided by our core values, we collaborate with our customers and research partners to develop DPSS lasers tailored to your application.
Our team pursues the challenge of miniaturising laser technology to enable the world’s most demanding and cutting-edge applications – reducing cost, weight, and size while maximising power and performance.
We develop and commercialise lasers with the purest spectral properties to reveal the unseen, detect the imperceptible, and measure the unknown.
We work with our customers and partners to gain a deep understanding of their needs - connecting the dots between lasers and application to deliver tailored solutions.
Embodying a growth mindset, we value continuous learning and thrive in an environment of curiosity and exploration.

Unlocking new possibilities for our customers
Our integrated NX platform produces the highest output power on a small footprint — combining the superior optical properties of solid-state lasers with the small form-factor, high-efficiency operation of laser diodes — helping you reveal the unseen, detect the imperceptible, and measure the unknown.
Expect consistent performance with:
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Unmatched stability and precision
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The highest power UV DPSS lasers on the market
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Start up repeatability < 3 GHz on our absolute wavelength specification
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Narrow-linewidth operation < 200 kHz
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Wavelength drift < 20 MHz over 24 hours
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Intensity drift < 2 % over a 15°C temperature change
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Low ASE noise < – 80 dB
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Reduced background noise and increased signal-to-noise ratio
Low power consumption and simplified thermal management enable high output power scalability from a compact footprint.
The Skylark Lasers core portfolio of single frequency DPSS lasers offers wavelengths in the UV and NIR at 320, 349, 780, 785 nm.