Newport MKS Dielectric Mirror, Ultra-broadband, 25.4 mm, 99% 0-50°, 610-1130 nm 10Q20BB.2

Description
The 10Q20BB.2 is an Ultra-broadband Dielectric Mirror with a 25.4 mm diameter, 6.35 mm thickness, and absolute Reflectivity > 99% at an AOI of 0-50°, from 610-1130 nm. Newport’s Ultra-broadband mirrors are IBS coated with layers of dielectric materials to use for high reflection and high damage threshold in a wide wavelength regime. The BB.2 coated mirror covers the visible to near IR wavelengths (610-1130 nm). UV Fused Silica Substrates Fused Silica is synthetic amorphous silicon dioxide of extremely high purity. This non-crystalline, colorless silica glass combines a low content of inclusions with high refractive index homogeneity, a very low thermal expansion coefficient, and excellent transmittance in the wavelength regime from UV to NIR. As a result, these mirrors will perform better with temperature fluctuations and is ideal for high-energy laser applications due to its high energy damage threshold. For more information, please see our Optical Materials technical note. Wide Wavelength Range With High Absolute Reflectivity Using superior ion beam sputtering coating technology, very high absolute reflectivity can be achieved across a large wavelength range. It is advantageous in low light situations when it is critical to collect as much light as possible. Depending on the coating type, you will have as much as RS, RP >99% for 350-1100 nm at 0-50° angle of incidence. VIS-NIR Broadband Dielectric Coating BB.2 coated mirror covers the visible to near IR wavelength regime from 610 to 1130 nm Durable Dielectric Coatings All dielectric coating construction is physically more durable than standard metallic coatings. Dielectric mirrors are more resistant to humidity, thermal changes, abrasion and salt exposure.
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Description
The 10Q20BB.2 is an Ultra-broadband Dielectric Mirror with a 25.4 mm diameter, 6.35 mm thickness, and absolute Reflectivity > 99% at an AOI of 0-50°, from 610-1130 nm. Newport’s Ultra-broadband mirrors are IBS coated with layers of dielectric materials to use for high reflection and high damage threshold in a wide wavelength regime. The BB.2 coated mirror covers the visible to near IR wavelengths (610-1130 nm). UV Fused Silica Substrates Fused Silica is synthetic amorphous silicon dioxide of extremely high purity. This non-crystalline, colorless silica glass combines a low content of inclusions with high refractive index homogeneity, a very low thermal expansion coefficient, and excellent transmittance in the wavelength regime from UV to NIR. As a result, these mirrors will perform better with temperature fluctuations and is ideal for high-energy laser applications due to its high energy damage threshold. For more information, please see our Optical Materials technical note. Wide Wavelength Range With High Absolute Reflectivity Using superior ion beam sputtering coating technology, very high absolute reflectivity can be achieved across a large wavelength range. It is advantageous in low light situations when it is critical to collect as much light as possible. Depending on the coating type, you will have as much as RS, RP >99% for 350-1100 nm at 0-50° angle of incidence. VIS-NIR Broadband Dielectric Coating BB.2 coated mirror covers the visible to near IR wavelength regime from 610 to 1130 nm Durable Dielectric Coatings All dielectric coating construction is physically more durable than standard metallic coatings. Dielectric mirrors are more resistant to humidity, thermal changes, abrasion and salt exposure.
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Dielectric Mirror, Ultra-broadband, 25.4 mm, 99% 0-50°, 610-1130 nm - 10Q20BB.2 - Newport MKS
Irvine, CA, United States
Dielectric Mirror, Ultra-broadband, 25.4 mm, 99% 0-50°, 610-1130 nm
10Q20BB.2
Dielectric Mirror, Ultra-broadband, 25.4 mm, 99% 0-50°, 610-1130 nm 10Q20BB.2
The 10Q20BB.2 is an Ultra-broadband Dielectric Mirror with a 25.4 mm diameter, 6.35 mm thickness, and absolute Reflectivity > 99% at an AOI of 0-50°, from 610-1130 nm. Newport’s Ultra-broadband mirrors are IBS coated with layers of dielectric materials to use for high reflection and high damage threshold in a wide wavelength regime. The BB.2 coated mirror covers the visible to near IR wavelengths (610-1130 nm). UV Fused Silica Substrates Fused Silica is synthetic amorphous silicon dioxide of extremely high purity. This non-crystalline, colorless silica glass combines a low content of inclusions with high refractive index homogeneity, a very low thermal expansion coefficient, and excellent transmittance in the wavelength regime from UV to NIR. As a result, these mirrors will perform better with temperature fluctuations and is ideal for high-energy laser applications due to its high energy damage threshold. For more information, please see our Optical Materials technical note. Wide Wavelength Range With High Absolute Reflectivity Using superior ion beam sputtering coating technology, very high absolute reflectivity can be achieved across a large wavelength range. It is advantageous in low light situations when it is critical to collect as much light as possible. Depending on the coating type, you will have as much as RS, RP >99% for 350-1100 nm at 0-50° angle of incidence. VIS-NIR Broadband Dielectric Coating BB.2 coated mirror covers the visible to near IR wavelength regime from 610 to 1130 nm Durable Dielectric Coatings All dielectric coating construction is physically more durable than standard metallic coatings. Dielectric mirrors are more resistant to humidity, thermal changes, abrasion and salt exposure.

The 10Q20BB.2 is an Ultra-broadband Dielectric Mirror with a 25.4 mm diameter, 6.35 mm thickness, and absolute Reflectivity > 99% at an AOI of 0-50°, from 610-1130 nm. Newport’s Ultra-broadband mirrors are IBS coated with layers of dielectric materials to use for high reflection and high damage threshold in a wide wavelength regime. The BB.2 coated mirror covers the visible to near IR wavelengths (610-1130 nm).

UV Fused Silica Substrates


Fused Silica is synthetic amorphous silicon dioxide of extremely high purity. This non-crystalline, colorless silica glass combines a low content of inclusions with high refractive index homogeneity, a very low thermal expansion coefficient, and excellent transmittance in the wavelength regime from UV to NIR. As a result, these mirrors will perform better with temperature fluctuations and is ideal for high-energy laser applications due to its high energy damage threshold. For more information, please see our Optical Materials technical note.


Wide Wavelength Range With High Absolute Reflectivity


Using superior ion beam sputtering coating technology, very high absolute reflectivity can be achieved across a large wavelength range. It is advantageous in low light situations when it is critical to collect as much light as possible. Depending on the coating type, you will have as much as RS, RP >99% for 350-1100 nm at 0-50° angle of incidence.


VIS-NIR Broadband Dielectric Coating

BB.2 coated mirror covers the visible to near IR wavelength regime from 610 to 1130 nm


Durable Dielectric Coatings


All dielectric coating construction is physically more durable than standard metallic coatings. Dielectric mirrors are more resistant to humidity, thermal changes, abrasion and salt exposure.

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Technical Specifications

  Newport MKS
Product Category Optical Mirrors
Product Number 10Q20BB.2
Product Name Dielectric Mirror, Ultra-broadband, 25.4 mm, 99% 0-50°, 610-1130 nm
Wavelength Range 610 to 1130 nm (6100 to 11300 Å)
Diameter/Width 25.4 mm (1 inch)
Thickness 6.35 mm (0.2500 inch)
Mirror Shape Round; Round
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