Litron LPY742-50 Lamp-Pumped Solid State Laser
Description
The LPY series of pulsed Nd:YAG lasers was designed to suit almost any industrial or research application requiring a high-energy or high-specification Nd:YAG laser. A ‘no-compromise’ design approach is evident in the build quality, a parameter that sets these lasers well apart from any of their competitors. The modular design of the laser head allows a wide variety of resonator configurations and options to be offered, from single rod oscillators to fully birefringence compensating twin-rod oscillator, twin-rod-amplifier systems. Furthermore, a choice of stable, stable-telescopic or graded reflectivity resonators is available, allowing the customer to specify a system that suits their requirements.
All LPY700 series systems feature a birefringence compensating twin rod oscillator design.
The LPY600 series are single rod oscillator/oscillator-amplifiers.
Litron LPY742-50 Lamp-Pumped Solid State Laser
Specifications |
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Wavelength: | 266 nm |
Pulse Energy: | 35 mJ |
Pulse Energy Stability: | 6 % |
Pulse Duration: | 10 ns |
Repetition Rate: | 0-50Hz |
Applications
Spectroscopy
PIV
Pumping laser amplifiers
Material processing
For pricing, technical or any other questions please contact the supplier
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Ships from:
United Kingdom
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Sold by:
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On FindLight:
since 2016
Frequently Asked Questions
The modular design of the laser head allows a wide variety of resonator configurations and options to be offered, from single rod oscillators to fully birefringence compensating twin-rod oscillator, twin-rod-amplifier systems.
The LPY series of pulsed Nd:YAG lasers was designed to suit almost any industrial or research application requiring a high-energy or high-specification Nd:YAG laser.
A ‘no-compromise’ design approach is evident in the build quality, a parameter that sets these lasers well apart from any of their competitors.
The LPY series of lasers are suitable for applications such as spectroscopy, PIV, pumping laser amplifiers, and material processing.
The LPY series of lasers are air cooled and do not have a maximum water temperature.