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Showing 17 of 17 total products
Compare Description Drawings, CAD & Specs DiameterReflection S1S1 RadiusS2 RadiusOEM Compatibility Avail. Price
CO2 Laser Cavity Output Couplers61542-1171.5 in.40%15MCC7.5MCXBystronic
CO2 Laser Cavity Output Couplers61545-1171.5 in.60%35MCC15MCXAmada
CO2 Laser Cavity Output Couplers616431.18 in.50%10MCC10MCX
CO2 Laser Cavity Output Couplers616631.5 in.40%15MCC10MCX
CO2 Laser Cavity Output Couplers618351.0 in.65%30MCC30MCX
CO2 Laser Cavity Output Couplers618831.5 in.40%40MCC20MCX
CO2 Laser Cavity Output Couplers618841.5 in.50%40MCC20MCXBystronic
CO2 Laser Cavity Output Couplers618871.5 in.40%50MCC25MCX
CO2 Laser Cavity Output Couplers618881.5 in.50%51.6MCC25MCXAmada
CO2 Laser Cavity Output Couplers619941.1 in.60%10MCC5MCXMazak
CO2 Laser Cavity Output Couplers620561.75 in.35%20MCC10MCX
CO2 Laser Cavity Output Couplers631048-1171.0 in.40%Plano7MCCTrumpf
CO2 Laser Cavity Output Couplers631107-1171.5 in.40%20MCC10MCXAmada
CO2 Laser Cavity Output Couplers631712-1171.0 in.55%30MCC10MCXAmada
CO2 Laser Cavity Output Couplers631755-1171.5 in.99%20MCCPlanoMitsubishi
CO2 Laser Cavity Output Couplers631758-1171.5 in.17%10MCC15MCXMitsubishi
CO2 Laser Cavity Output Couplers632605-1171.5 in.50%20MCC10MCXAmada

Specifications

  • Type
    Output Coupler
  • Optic Material
    ZnSe
  • Reflection S1
    30% to 70%
  • Surface Quality
    10-5 scratch and dig
  • Surface Irregularity
    0.5 Fringe @ 633 nm
  • Power
    1 Fringe @ 633 nm
  • Wedge
    <3' (arc minutes)
  • Diameter Tolerance
    +0/-0.1mm
  • Thickness Tolerance
    ±0.2mm

Features

Output Coupler and End Mirror for CO2 Laser

The output coupler usually has reflectance in the range 40% to 70%. In order to optimize power and spatial profile of the laser beam, the output coupler and end mirror have optical surfaces with well-defined radii of curvature. The output coupler is typically composed of ZnSe in order to minimize absorption and thermal distortion while transmitting a high-power laser beam. The end mirror usually has reflectance 99.5% which means that the transmitted laser beam has low power. However, because absorption in the coating is higher than in the output coupler, substrate materials, such as Germanium or Gallium Arsenide, with high thermal conductivity are used in most lasers.