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TOPTICA provides lasers in the UV range from 190 nm – 390 nm. Proprietary technology and high-end clean room manufacturing capabilities enable stable long-term operation at all wavelengths.

The IPEX-700 series is designed for medium duty cycle operation in industrial and R & D environments. These lasers deliver high power ultraviolet laser machining combined with state-of-the-art performance. They are ideal for applications such as pulsed laser deposition.

Apart from real ultraviolet lasers, there are ultraviolet laser sources based on a laser with a longer wavelength (in the visible or near-infrared spectral region) and one or several nonlinear crystals for nonlinear frequency conversion. Some examples:

LightMachinery excimer lasers are powerful and reliable sources for ultraviolet light. They now feature exciPure™ technology, introduced in 2016; exciPure represents the greatest improvement in excimer gas lifetime and reduction in operating costs in a generation.

The delivery of ultraviolet light in optical fibers is possible even at rather short wavelengths, but involves more serious limitations, comparing with sources for the visible or infrared spectral region. For example, silica fibers may exhibit substantial degradation (called solarization) when exposed to short-wavelength light, but that tendency depends strongly on the chemical composition of the fused silica. There are also attempts to use hollow-core fibers for UV transmission; the basic idea is to have most of the UV light in the air core, with only little overlap with the silica material which provides the guiding. That principle can be utilized even in wavelength regions where the absorption of fused silica is substantial.

Sacher Lasertechnik has developed a frequency-doubled laser system where a resonant cavity including a frequency doubler crystal is pumped via a tunable diode laser. Depending on the required SHG power, the tunable diode laser is either a high power external cavity laser, or a two stage Master Oscillator Power Amplifier System. The covered wavelength regime ranges from 365 nm up to 540 nm.

Acebeam

202513 - Available with a variety of mounting options and optics, the D-Series PRO can be utilized for virtually any lighting application.

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Skilhunt

Back to the Light Lyrics: Far, far from the light / Hear the night creatures call / With the cold breath, they howl / All the hollow hours, they're calling ...

Applications are in chemical and biological detection, water purification, disinfection, skin treatment and fluorescence imaging.

Zebralight SC64w

By having all the AF points active, it just means you're letting the camera decide which single point to select. So considering as your lens can only focus on ...

Focal length is one of main parameters of any lens. This is the distance from the optical center of a lens to the camera sensor when the lens is focused to ...

HÜBNER Photonics offer UV lasers in the Cobolt 05-01 and 06-01 Series, emitting at 355 nm (single-frequency or Q-switched)) or 375 nm (a continuous-wave diode laser).

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ISP Optics Corporation is a Manufacturing, Defense & Space, and Manufacturing General company located in Orlando, Florida with $21.7 million in revenue and ...

Ask RP Photonics for advice e.g. on nonlinear frequency conversion for UV generation. RP Photonics has powerful software for example for calculating all phase-matching options with various nonlinear crystal materials.

ThruNite

The CARBIDE 50 W UV laser is based on the market-proven industrial-grade CARBIDE laser platform. It emits 500 fs pulses at a 343 nm wavelength and fits into a footprint of 84 × 35 cm, making it the most compact 50 W UV femtosecond laser currently available on the market. The CARBIDE ensures long-term performance without the need for user intervention. Its high power allows for beam splitting into multiple parts, enabling parallel micromachining processes and subsequently increasing throughput. The CARBIDE platform ensures simple integration into industrial 24/7 workstations.

Serving North America, RPMC Lasers offers a wide range of ultraviolet laser diodes and DPSS lasers between 200 nm and 389 nm. We offer pulsed and CW lasers and modules, available with output powers from 1 mW up to 20 W, pulse energy from 200 nJ up to 35 mJ, and free-space & fiber-coupled output options, as well as packaging options at all levels of integration from TO can through turnkey systems. Standard and custom options available. Let RPMC help you find the right laser today!

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Many applications benefit from central wavelengths in the VIS or UV range. AFS offers fully integrated frequency conversion modules from 1030 nm to 515 nm, 343 nm or even 258 nm. The conversion efficiency depends on the pulse duration of the driving laser. We offer fourth-harmonic generation upon request.

CNI offers various ultraviolet lasers (diode lasers and diode-pumped solid-state lasers) with many wavelengths between 213 nm and 349 nm. The output power is up to 3 W, and the pulse energy is up to 10 mJ. The laser products include 5 series: high energy, high power, high stability, low noise and single longitudinal mode laser.

NITECORE

Sacher Lasertechnik also offers the Jaguar UV laser, a MOPA system with fourth harmonic generation for output wavelengths from 205 nm to 270 nm.

Ultraviolet lasers need to be made with special ultraviolet optics, having a high optical quality and (particularly for pulsed lasers) a high resistance to UV light. In some cases, the lifetime of a UV laser is limited by the lifetime of the used optical elements such as laser mirrors.

Surefire

2020917 — This is a tiny script you can put on your camera, it will resize the camera rect to fit a given targetAspectRatio.

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Unlike traditional lash adhesive the new UV Glue cures with an UV light instead of oxygen (air drying). This means the adhesive is fully cured after just ...

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The IPEX-800 series is designed for high duty cycle operation in a manufacturing environment. These lasers deliver high power ultraviolet laser machining combined with state-of-the-art performance. They offer long gas lifetimes, superior optical stability and precise control of laser operating parameters. Easy to use, simple to service and economical to operate, they combine the benefits of high precision excimer processing with the lowest total cost of ownership and highest uptime in the market today.

GWU-Lasertechnik has more than 30 years of experience in lasers and non-linear optics. We are the pioneer of commercial BBO OPO technology. Our widely tunable laser sources cover especially the UV and deep-UV range down to a wavelength of <190 nm. We offer pulsed solutions for nano-, pico- and femtosecond pulses with best performance and highest reliability. Our rugged and thoroughly tested all-solid-state Laser technology does not require any consumable supplies and is thus providing most convenient usability, longest lifetime and excellent total costs of ownership. With a vast flexibility and a huge versatility, GWU’s laser products can serve the needs even for the most demanding scientific and industrial applications.

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Armytek

Minimum focus distance is an important lens specification, but this number does not indicate the working distance, the distance from the end of the lens (or the ...

Ultraviolet laser sources involve some special safety hazards, mostly related to the risks of eye damage and causing skin cancer. The article on laser safety gives some details.

Augusto J. Fonte, CCIM (Gus). AJF Properties, Inc. 2100 Ponce De Leon Boulevard Suite 1111. Coral Gables, Florida 33134

Typically, magnification is related to scaling up visuals or images to be able to see more detail, increasing resolution, using microscope, printing techniques, ...

Zebralight

For higher peak powers, we offer the 266 nm PNU-M01210-1x0 lasers, part of the Powerchip series, also available with various wavelengths including 355 nm, 266 nm and 213 nm. Peak powers of tens of kilowatts (or even 160 kW at 1064 nm) are generated, while the pulse durations are always well below a nanosecond. These lasers use a specific long life process to extend lifetime between refurbishments.

Compared to infrared and visible laser sources, ultraviolet laser sources tentatively have more problems with limited device lifetimes. This is essentially because various optical materials (e.g. laser crystals, nonlinear crystals and optical elements) exhibit degradation effects initiated by absorption of ultraviolet light. Another sometimes encountered problem is that hydrocarbons, resulting e.g. from out-gasing of lubricants of mirror mounts, are decomposed by ultraviolet light, which can lead to the deposition of black soot on optical elements. Such issues need to be carefully treated in the product development in order to realize the basic potential for long lifetimes of a particular laser type.

For the extreme ultraviolet region, there are sources based on high harmonic generation. Such sources can reach wavelengths down to a few nanometers while still having a table-top format. The average output powers, however, are fairly low.

with pulse durations from picoseconds (PICOPOWER series) to sub-nanoseconds and nanosecond (PULSELAS-A/P series). While the passively Q-switched sub-nanosecond microchip UV lasers are the best alternative for low-cost and maintenance-free operation, the harmonically tripled and quadrupled regeneratively amplified picosecond lasers offer very high peak powers for material processing and nonlinear optical applications.