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Showing 18 of 18 total products
Compare Description Drawings, CAD & Specs DiameterEdge ThicknessCoating TypeS1 RadiusOEM Compatibility Avail. Price
Concave and Convex Telescopic Copper Mirrors618121.97 in.10 mm2250CX
Concave and Convex Telescopic Copper Mirrors618131.97 in.10 mm1000CX
Concave and Convex Telescopic Copper Mirrors61814-1171.97 in.10 mm1680CCBystronic
Concave and Convex Telescopic Copper Mirrors618151.97 in.10 mm2000CX
Concave and Convex Telescopic Copper Mirrors618161.97 in.10 mm3000CC
Concave and Convex Telescopic Copper Mirrors618171.97 in.10 mm3250CC
Concave and Convex Telescopic Copper Mirrors631163-1171.97 in.9.525 mmMMR-A2.28MCXHank Wang
Concave and Convex Telescopic Copper Mirrors631196-1171.97 in.10.0 mmMMR3MCCBystronic
Concave and Convex Telescopic Copper Mirrors631650-1171.97 in.10.0 mmMMR1MCXBystronic
Concave and Convex Telescopic Copper Mirrors631706-1172.0 in.9.9 mmMMR-P5.3MCCAmada
Concave and Convex Telescopic Copper Mirrors631707-1172.0 in.9.9 mmMMR-P4.3MCXAmada
Concave and Convex Telescopic Copper Mirrors631710-1172.0 in.10.0 mmMMR6.6MCCAmada
Concave and Convex Telescopic Copper Mirrors631713-1172.0 in.10.0 mmMMR-P6.3MCCAmada
Concave and Convex Telescopic Copper Mirrors631863-1171.97 in.10.0 mmMMR2.25MCXBystronic
Concave and Convex Telescopic Copper Mirrors631882-1171.97 in.10.0 mmMMR3.25MCCBystronic
Concave and Convex Telescopic Copper Mirrors632645-1171.97 in.10.0 mmMMR-P6.7MCCBystronic
Concave and Convex Telescopic Copper Mirrors632646-1171.97 in.10.0 mmMMR-P7.2MCCBystronic
Concave and Convex Telescopic Copper Mirrors632694-1172.0 in.10.0 mmMMR-P5MCXAmada

Specifications

  • Optic Material
    Copper (Cu)
  • Surface Quality
    10-5 scratch and dig
  • Surface Irregularity
    1 Fringes @ 633 nm
  • Power
    2 Fringes @ 633 nm
  • Diameter Tolerance
    +0.0 / -0.1 mm
  • Thickness Tolerance
    +0.0 / -0.1 mm
  • Wedge
    <3' (arc minutes)

Features

Telescopic Mirrors

In many applications, the small diameter of the laser beam produced in the laser cavity is not convenient because the beam has high divergence and high power density. In order to avoid subsequent problems, the beam diameter can be increased by using a telescope consisting of two mirrors – one with a convex surface and the other with a concave surface. Such telescopic mirrors are usually made of copper.

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