UNV-P1015-xxx
Laser Safety Goggle, 625-730 + 760-920 nm polycarbonate
Laser safety goggles according to DIN EN 207 with polycarbonate filter and a daylight transmission of 20 %.
UNV-P1015-xxx
Laser safety goggles according to DIN EN 207 with polycarbonate filter and a daylight transmission of 20 %.
NIR-DI3-xxx
Laser safety goggles according to DIN EN 207 with polycarbonate filter and a daylight transmission of 32 %.
NIR-YG3-xxx
Laser protection glasses according to DIN EN 207 with polycarbonate filter and a daylight transmission of 59 %.
NIR-DI2-xxx
Laser adjustment goggles according to DIN EN 208 with polycarbonate filter and a daylight transmission of 61 %.
NIR-YGN-xxx
Laser protection glasses according to DIN EN 207 with polycarbonate filter and a daylight transmission of 33 %.
NIR-DBY-xxx
Laser adjustment goggles according to DIN EN 208 with polycarbonate filter and a daylight transmission of 35 %.
NIR-ML3-xxx
Laser protection glasses according to DIN EN 207 with polycarbonate filter and a daylight transmission of 16 %.
NIR-DY3-xxx
Laser adjustment goggles according to DIN EN 208 with polycarbonate filter and a daylight transmission of 36 %.
UNV-P1009-xxx
Laser safety goggles according to DIN EN 207 with polycarbonate filter and a daylight transmission of 38 %.
NIR-DYE-xxx
Laser adjustment goggles according to DIN EN 208 with polycarbonate filter and a daylight transmission of 15 %.
NIR-HYG-xxx
Laser protection glasses according to DIN EN 207 with polycarbonate filter and a daylight transmission of 23 %.
NIR-CT2-xxx
Laser adjustment goggles according to DIN EN 208 with polycarbonate filter and a daylight transmission of 11 %.
DAT-WinCamD-LCM
This laser beam profiler features a CMOS sensor that guarantees frame rates of up to 60 Hz with high dynamics and is suitable for large beam diameters up to 11 mm.
DAT-WinCamD-IRBB
The beam analysis camera WinCamD-IR-BB with integrated microbolometer array enables analyzes on long-wave lasers in the range of 2 μm to 16 μm.
DAT-WinCamD-QD-1550
DataRay's ILM system is used for beam profile monitoring of high power lasers consisting of an attenuator for high powers, an imaging lens system and a camera system. The measurement of very small laser beams with diameters of less than micrometers is possible despite often high laser powers.