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Dielectric-Coated Plane Mirrors DLB SBB 350-950 nm

LINOS® DLB SBB 350–950 nm Dielectric-Coated Plane Mirrors are extremely broadband, highly reflective mirrors designed for versatile high-performance laser applications. Their advanced dielectric coating ensures excellent reflectivity across a wide spectral range, providing reliable performance for precision optical systems. Optimized for beam steering at a 45° angle of incidence, they deliver accurate 90° beam deflection while maintaining extremely low scattering losses. The polished back surface on the fused silica substrate enhances mechanical stability and handling, minimizing stress and the risk of damage during installation.

Constructed on high-quality fused silica, these mirrors offer outstanding thermal and mechanical stability, making them ideal for demanding applications in research, laboratory, and industrial environments. Their combination of broadband reflection, low-loss performance, and precise beam control ensures consistent and reliable operation across a wide range of wavelengths.

Product Laser Mirror DLB SBB 350-950; Tempered glass; D=12.7 Laser Mirror DLB SBB 350-950; Fused silica; D=22.4x31.5 elliptical Laser Mirror DLB SBB 350-950; Tempered glass; D=25.4 Laser Mirror DLB SBB 350-950; Fused silica; 20x30 Laser Mirror DLB SBB 350-950; Fused silica; D=50
Weight (kg) 0.002 0.008 0.009 0.003 0.046
Shape Circular Circular Circular Circular Circular
Optic Size Ø 12.7 mm Ø 22.4 - 31.5 mm Ø 25.4 mm 20.0 - 30.0 mm Ø 50.0 mm
Optic Center Thickness 5.0 mm 5.0 mm 8.0 mm 2.5 mm 10.0 mm
Wavelength Range 350.0 - 950.0 nm 350.0 - 950.0 nm 350.0 - 950.0 nm 350.0 - 950.0 nm 350.0 - 950.0 nm
Angle of Incidence (AOI) 45 deg 45 deg 45 deg 45 deg 45 deg
Coating Specification Ravg>98.5% @350-950 nm Ravg>98.5% @350-950 nm Ravg>98.5% @350-950 nm Ravg>98.5% @350-950 nm Ravg>98.5% @350-950 nm
Clear aperture Ø 11.0 mm Ø 18.0 - 26.0 mm Ø 24.0 mm 15.0 - 22.0 mm Ø 45.0 mm
Substrate Borofloat® 33 Fused Silica Borofloat® 33 Fused Silica Fused Silica
Parallelism 30.0 5.0 30.0 2.0 5.0
  • Extremely broadband and highly reflective dielectric mirror

  • Polished back surface (only fused silica) minimizes stray reflections and scattering, improving beam quality and precision

  • Extreme low scattering losses preserves beam intensity and uniformity for high-accuracy optical applications

  • Beam steering mirror for 45° angle of incidence, 90° beam deflection

  • Fused silica substrate provides excellent thermal and mechanical stability, reducing distortion under varying conditions

  • R_abs > 98 % at 350–950 nm (AOI = 45°, unpolarized)

  • R_avg > 99 % at 350–950 nm (AOI = 45°, unpolarized)

Product Laser Mirror DLB SBB 350-950; Tempered glass; D=12.7 Laser Mirror DLB SBB 350-950; Fused silica; D=22.4x31.5 elliptical Laser Mirror DLB SBB 350-950; Tempered glass; D=25.4 Laser Mirror DLB SBB 350-950; Fused silica; 20x30 Laser Mirror DLB SBB 350-950; Fused silica; D=50
Weight (kg) 0.002 0.008 0.009 0.003 0.046
Shape Circular Circular Circular Circular Circular
Optic Size Ø 12.7 mm Ø 22.4 - 31.5 mm Ø 25.4 mm 20.0 - 30.0 mm Ø 50.0 mm
Optic Center Thickness 5.0 mm 5.0 mm 8.0 mm 2.5 mm 10.0 mm
Wavelength Range 350.0 - 950.0 nm 350.0 - 950.0 nm 350.0 - 950.0 nm 350.0 - 950.0 nm 350.0 - 950.0 nm
Angle of Incidence (AOI) 45 deg 45 deg 45 deg 45 deg 45 deg
Coating Specification Ravg>98.5% @350-950 nm Ravg>98.5% @350-950 nm Ravg>98.5% @350-950 nm Ravg>98.5% @350-950 nm Ravg>98.5% @350-950 nm
Clear aperture Ø 11.0 mm Ø 18.0 - 26.0 mm Ø 24.0 mm 15.0 - 22.0 mm Ø 45.0 mm
Substrate Borofloat® 33 Fused Silica Borofloat® 33 Fused Silica Fused Silica
Parallelism 30.0 5.0 30.0 2.0 5.0
  • Extremely broadband and highly reflective dielectric mirror

  • Polished back surface (only fused silica) minimizes stray reflections and scattering, improving beam quality and precision

  • Extreme low scattering losses preserves beam intensity and uniformity for high-accuracy optical applications

  • Beam steering mirror for 45° angle of incidence, 90° beam deflection

  • Fused silica substrate provides excellent thermal and mechanical stability, reducing distortion under varying conditions

  • R_abs > 98 % at 350–950 nm (AOI = 45°, unpolarized)

  • R_avg > 99 % at 350–950 nm (AOI = 45°, unpolarized)

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