Laser modules of the KLM-A980-5-5 series are optimal sources of coherent radiation for the construction of control and automation systems, alignment and marking devices, for scientific and medical purposes.
Laser modules of the KLM-B808-x-5 series are optimal sources of coherent radiation for the construction of control and automation systems, alignment and marking devices, for scientific and medical purposes.
Laser modules of the KLM-H808-x-5 series are optimal sources of coherent radiation for the construction of control and automation systems, alignment and marking devices, for scientific and medical purposes.
Laser modules of the KLM-D980-x-5 series are optimal sources of coherent radiation for the construction of control and automation systems, alignment and marking devices, for scientific and medical purposes.
DPSS lasers of the KLM-455/x series are optimal sources of coherent radiation for the construction of control and automation systems, alignment and marking devices, for scientific and medical purposes.
Technical specifications
Radiation output power: up to 120W
Radiation wavelength: 455 nm
Output diameter of the radiation beam: 1.5 mm
Divergence of the radiation beam: 1.3 mrad
Instability of radiation power: 5%
Type of modulation: TTL or analog
Time to enter the mode: 15min
Spectral line width: 0.1nm
KLM-C635-5-5 laser modules are optimal sources of coherent radiation for the construction of control and automation systems, alignment and marking devices, for scientific and medical purposes.
DPSS lasers of the KLM-532/SLN-x series are optimal sources of coherent radiation for the construction of control and automation systems, alignment and marking devices, for scientific and medical purposes.
KLM-M650-4-5 laser modules are optimal sources of coherent radiation for the construction of control and automation systems, alignment and marking devices, for scientific and medical purposes.
DPSS lasers of the KLM-460/x series are optimal sources of coherent radiation for the construction of control and automation systems, alignment and marking devices, for scientific and medical purposes.
Technical specifications
Radiation output power: up to 120W
Radiation wavelength: 460 nm
Output beam diameter: 1.5mm
Divergence of the radiation beam: 1.3 mrad
Instability of radiation power: 5%
Type of modulation: TTL or analog
Time to enter the mode: 15min
Spectral line width: 0.1nm
DPSS lasers of the KLM-505/x series are optimal sources of coherent radiation for the construction of control and automation systems, alignment and marking devices, for scientific and medical purposes
KLM-D520-10-3 laser modules are optimal sources of coherent radiation for the construction of control and automation systems, alignment and marking devices, for scientific and medical purposes
DPSS lasers of the KLM-457/x series are optimal sources of coherent radiation for the construction of control and automation systems, alignment and marking devices, for scientific and medical purposes.
Technical specifications
Radiation output power: 50/100 MW
Radiation wavelength: 457 nm
Output beam diameter: 1.5mm
Divergence of the radiation beam: 1.3 mrad
Instability of radiation power: 5%
Type of modulation: TTL or analog
Time to enter the mode: 15min
Spectral line width: 0.1nm
KLM-C650-5-5 laser modules are optimal sources of coherent radiation for the construction of control and automation systems, alignment and marking devices, for scientific and medical purposes.
DPSS lasers of the KLM-457/x series are optimal sources of coherent radiation for the construction of control and automation systems, alignment and marking devices, for scientific and medical purposes.
Technical specifications
Radiation output power: up to 10W
Radiation wavelength: 457 nm
Output beam diameter: 1.5mm
Divergence of the radiation beam: 1.3 mrad
Instability of radiation power: 5%
Type of modulation: TTL or analog
Time to enter the mode: 15min
Spectral line width: 0.1nm
DPSS lasers of the KLM-556/x series are optimal sources of coherent radiation for the construction of control and automation systems, alignment and marking devices, for scientific and medical purposes.
DPSS lasers of the KLM-400/x series are optimal sources of coherent radiation for the construction of control and automation systems, alignment and marking devices, for scientific and medical purposes.
Technical specifications
Radiation output power: up to 1 W
Radiation wavelength: 400 nm
Output beam diameter: 1.5mm
Divergence of the radiation beam: 1.3 mrad
Instability of radiation power: 5%
Type of modulation: TTL or analog
Time to enter the mode: 15min
Spectral line width: 0.1nm
DPSS lasers of the KLM-447/x series are optimal sources of coherent radiation for the construction of control and automation systems, alignment and marking devices, for scientific and medical purposes.
Technical specifications
Radiation output power: up to 120W
Radiation wavelength: 447 nm
Output beam diameter: 1.5mm
Divergence of the radiation beam: 1.3 mrad
Instability of radiation power: 5%
Type of modulation: TTL or analog
Time to enter the mode: 15min
Spectral line width: 0.1nm
DPSS lasers of the KLM-445/x series are optimal sources of coherent radiation for the construction of control and automation systems, alignment and marking devices, for scientific and medical purposes.
Technical specifications
Radiation output power: up to 120W
Radiation wavelength: 445 nm
Output beam diameter: 1.5mm
Divergence of the radiation beam: 1.3 mrad
Instability of radiation power: 5%
Type of modulation: TTL or analog
Time to enter the mode: 15min
Spectral line width: 0.1nm
Laser modules of the KLM-D532-x-5 series are optimal sources of coherent radiation for the construction of control and automation systems, alignment and marking devices, for scientific and medical purposes.
KLM-A532-5-5 laser modules are optimal sources of coherent radiation for the construction of control and automation systems, alignment and marking devices, for scientific and medical purposes.
Pulsed CDL lasers of the KLM-266-P-x series are optimal radiation sources for building control and automation systems, for scientific and medical purposes.