ELM1064 - microchip DPSS laser

The further developed of our ELM1064 series continues is still based on our proven diffusion-bonded Nd:YAG + Cr:YAG crystals, but has been optimized in key performance characteristics. Thanks to a redesigned architecture, the laser is now significantly more compact, lighter, and even more reliable in long term operation – ideal for demanding industrial and scientific applications.

As with the previous generation, the beam parameters can be precisely adjusted by varying essential parameters such as crystal length, initial transmission, or the degree of output coupling. This enables us to offer both high-performance standard versions and customized laser solutions tailored exactly to specific customer requirements.

Your benefits at a glance:

  • More compact design for easy integration into existing systems
  • Reduced weight for greater application flexibility
  • Increased reliability and long-term stability
  • Optimized beam quality through precisely adjustable crystal parameters
  • Availability of standard and customized configurations

Thanks to its consistent further development, the new ELM1064 combines maximum performance with improved handling and integration efficiency – a future-proof solution for modern laser applications.

One of the numerous applications is LIBS (Laser Induced Breakdown Spectroscopy). In LIBS, a laser pulse is applied to a sample to generate a plasma. The radiation from the plasma is collected and directed to the spectrometer, for example with the help of glass fibers. The atomic composition of the sample can be determined by analyzing the recorded spectra. Further applications of the modules are LIDAR (light detection and ranging), marking and LIFT (Laser Induced Forward Transfer), 3D imaging.

Key parameters:

  • Output peak power up to 70 kW
  • Typical pulse energy up to 80 µJ
  • Repetition rate up to 100 kHz
  • Sync output for pulse monitoring
  • 2 GPIO pins for flexible control
  • ART communication interface
  • ntegrated control electronics
  • Ultra compact form factor