ATLEX 1000 I KrF Excimer Laser
Description
A new generation of compact air-cooled, high repetition rate excimer lasers, designed for low- and mid-range duty cycle applications
ATLEX 1000 I KrF Excimer Laser
Specifications |
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Gas Mixture: | KrF |
Wavelength: | 248 nm |
Pulse Energy: | 15 mJ |
Average Power: | 10 W |
Max Repetition Rate: | 1000 Hz |
Pulse Duration: | 8 ns |
Features
- Soft corona preionization
- HV-solid state pulser
- Laser head volume < 3l
- TMC (Total-Metal-Ceramic) Vessel
- Integrated vacuum pump & halogen filter
- Totally air-cooled, active thermal management
- RS- 85, RS232, USB and fiber optic Interface for system integration
- Flushable optics holder
- Energy stabilization mode
- Meets European CE-standard
- RoHS compliance
Applications
- Micromachining
- Laser ablation
- Medicine (refractive surgery)
- Spectroscopy
- Metrology
For pricing, technical or any other questions please contact the supplier
- No registration required
- No markups, no fees
- Direct contact with supplier
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Ships from:
Germany
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Sold by:
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On FindLight:
External Vendor
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Frequently Asked Questions
Yes, the ATLEX 1000 I KrF Excimer Laser meets European CE-standard and RoHS compliance.
Yes, the ATLEX 1000 I KrF Excimer Laser is specifically designed for low- and mid-range duty cycle applications.
The applications of the ATLEX 1000 I KrF Excimer Laser include micromachining, laser ablation, medicine (refractive surgery), spectroscopy, and metrology.
The features of the ATLEX 1000 I KrF Excimer Laser include soft corona preionization, HV-solid state pulser, laser head volume < 3l, TMC (Total-Metal-Ceramic) Vessel, integrated vacuum pump & halogen filter, totally air-cooled, active thermal management, RS- 85, RS232, USB and fiber optic Interface for system integration, flushable optics holder, energy stabilization mode, meets European CE-standard, and RoHS compliance.
The ATLEX 1000 I KrF Excimer Laser is a new generation of compact air-cooled, high repetition rate excimer lasers designed for low- and mid-range duty cycle applications.