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Page 2 - Metallic Mirrors (Shape: Round)

Acton's Al+MgF2 Broadband Mirrors are engineered with high-efficiency coatings, setting the industry standard for broadband UV and VUV reflectance. These mirrors offer exceptional reflectance down to 120 nm, ensuring excellent performance throughout the visible and near-infrared ranges. Available in optimized coatings for 120 nm, ...

Specifications

Reflective Coating: UV-Enhanced Aluminum
Substrate: Metallic
Average Reflectance: 85 %
Wavelength Range: 120 – 600 nm
Surface Flatness: Custom
Acton's Al+MgF2 Broadband Mirrors are engineered with high-efficiency coatings, setting the industry standard for broadband UV and VUV reflectance. These mirrors offer exceptional reflectance down to 120 nm, ensuring excellent performance throughout the visible and near-infrared ranges. Available in optimized coatings for 120 nm, ...

Specifications

Reflective Coating: UV-Enhanced Aluminum
Substrate: Metallic
Average Reflectance: 85 %
Wavelength Range: 120 – 600 nm
Surface Flatness: Custom
First Surface Mirrors (FSM), also known as front surface mirrors, are meticulously crafted with the reflective surface applied directly to the front of the glass substrate. This unique design ensures that light reflects from the very first surface it encounters, thereby minimizing any distortion or “ghosting” effects that can occur ...

Specifications

Reflective Coating: Protected Aluminum
Substrate: BK7
Average Reflectance: 94 %
Wavelength Range: 400 – 700 nm
Surface Flatness: Custom
SPAWR Industries, Inc. is renowned for its exceptional quality in the production of metal mirrors, specifically designed for high-energy laser applications. Located in Lake Havasu City, AZ, SPAWR has established itself as a leading supplier of state-of-the-art metal mirrors, offering unparalleled surface damage thresholds for medium ...

Specifications

Reflective Coating: Custom
Substrate: Custom
Average Reflectance: 99 %
Wavelength Range: 1 – 1 nm
Surface Flatness: lambda/20
SPAWR Industries, Inc. is renowned for its exceptional craftsmanship in producing high-quality metal mirrors, specifically designed for high-energy laser applications. Located in Lake Havasu City, AZ, SPAWR has established itself as a leading supplier of state-of-the-art metal mirrors, which are integral to very high power laser ...

Specifications

Reflective Coating: Custom
Substrate: Custom
Average Reflectance: 99 %
Wavelength Range: 1 – 1 nm
Surface Flatness: lambda/20
SPAWR Industries is a renowned leader in the production of high-quality metal mirrors, specifically designed for high-energy laser applications. Located in Lake Havasu City, Arizona, SPAWR Industries has been at the forefront of innovation in the field of laser optics since 2002. Our uncoated copper mirrors are engineered to offer ...

Specifications

Reflective Coating: Custom
Substrate: Custom
Average Reflectance: 99 %
Wavelength Range: 1 – 1 nm
Surface Flatness: lambda/20
Dimension Tolerance +0.0/-0.2mm Thickness Tolerance ±0.2mm Clear Aperture >90% Flatness λ/4@632.8nm per 25mm range Centration <3 arc minutes Surface Quality 60/40 scratch and dig Coating Metal coating on one surface, rear surface ground or inspection polishedEnhanced Aluminum: Ravg>90%@400-700nmProtected ...

Specifications

Reflective Coating: Protected Aluminum, Protected Silver, Protected Gold
Substrate: BK7, Fused Silica
Average Reflectance: 90 %
Wavelength Range: 400 – 12000 nm
Surface Flatness: lambda/4
Dimension Tolerance +0.0/-0.2mm Thickness Tolerance ±0.2mm Clear Aperture >90% Flatness Refer to below list Surface Quality 60/40 scratch and dig Coating Metal coating on one surface, rear surface ground or inspection polishedEnhanced Aluminum: Ravg>90%@400-700nmProtected Aluminum: Ravg>87%@400-1200nmProtected Silver: ...

Specifications

Reflective Coating: Protected Aluminum, Protected Silver, Protected Gold
Substrate: BK7, Fused Silica, UV Fused Silica
Average Reflectance: 90 %
Wavelength Range: 400 – 12000 nm
Surface Flatness: lambda/4
Mirrors have a highly polished surface for reflecting light. The reflecting surface is usually a thin coating of aluminum or silver. Most mirrors for optical applications are called first surface types since the coating is on the front surface thereby eliminating the optical properties of the glass from affecting the incident or ...

Specifications

Reflective Coating: Protected Aluminum, Protected Silver
Substrate: UV Fused Silica
Average Reflectance: 95 %
Wavelength Range: 500 – 1000 nm
Surface Flatness: lambda/10
Mirrors have a highly polished surface for reflecting light. The reflecting surface is usually a thin coating of aluminum or silver. Most mirrors for optical applications are called first surface types since the coating is on the front surface thereby eliminating the optical properties of the glass from affecting the incident or ...

Specifications

Reflective Coating: Protected Aluminum, Protected Silver
Substrate: UV Fused Silica
Average Reflectance: 95 %
Wavelength Range: 500 – 1000 nm
Surface Flatness: lambda/10
Mirrors have a highly polished surface for reflecting light. The reflecting surface is usually a thin coating of aluminum or silver. Most mirrors for optical applications are called first surface types since the coating is on the front surface thereby eliminating the optical properties of the glass from affecting the incident or ...

Specifications

Reflective Coating: Protected Aluminum, Protected Silver
Substrate: UV Fused Silica
Average Reflectance: 95 %
Wavelength Range: 500 – 1000 nm
Surface Flatness: lambda/10
Mirrors have a highly polished surface for reflecting light. The reflecting surface is usually a thin coating of aluminum or silver. Most mirrors for optical applications are called first surface types since the coating is on the front surface thereby eliminating the optical properties of the glass from affecting the incident or ...

Specifications

Reflective Coating: Protected Aluminum, Protected Silver
Substrate: BK7
Average Reflectance: 95 %
Wavelength Range: 500 – 1000 nm
Surface Flatness: lambda/10
Mirrors have a highly polished surface for reflecting light. The reflecting surface is usually a thin coating of aluminum or silver. Most mirrors for optical applications are called first surface types since the coating is on the front surface thereby eliminating the optical properties of the glass from affecting the incident or ...

Specifications

Reflective Coating: Protected Aluminum, Protected Silver
Substrate: BK7
Average Reflectance: 95 %
Wavelength Range: 500 – 1000 nm
Surface Flatness: lambda/10
Mirrors have a highly polished surface for reflecting light. The reflecting surface is usually a thin coating of aluminum or silver. Most mirrors for optical applications are called first surface types since the coating is on the front surface thereby eliminating the optical properties of the glass from affecting the incident or ...

Specifications

Reflective Coating: Protected Aluminum, Protected Silver
Substrate: BK7
Average Reflectance: 95 %
Wavelength Range: 500 – 1000 nm
Surface Flatness: lambda/10
Mirrors have a highly polished surface for reflecting light. The reflecting surface is usually a thin coating of aluminum or silver. Most mirrors for optical applications are called first surface types since the coating is on the front surface thereby eliminating the optical properties of the glass from affecting the incident or ...

Specifications

Reflective Coating: Protected Aluminum, Protected Silver
Substrate: BK7
Average Reflectance: 95 %
Wavelength Range: 500 – 1000 nm
Surface Flatness: lambda/10
Mirrors have a highly polished surface for reflecting light. The reflecting surface is usually a thin coating of aluminum or silver. Most mirrors for optical applications are called first surface types since the coating is on the front surface thereby eliminating the optical properties of the glass from affecting the incident or ...

Specifications

Reflective Coating: Protected Aluminum, Protected Silver
Substrate: BK7
Average Reflectance: 95 %
Wavelength Range: 500 – 1000 nm
Surface Flatness: lambda/10
Mirrors have a highly polished surface for reflecting light. The reflecting surface is usually a thin coating of aluminum or silver. Most mirrors for optical applications are called first surface types since the coating is on the front surface thereby eliminating the optical properties of the glass from affecting the incident or ...

Specifications

Reflective Coating: Protected Aluminum, Protected Silver
Substrate: BK7
Average Reflectance: 95 %
Wavelength Range: 500 – 1000 nm
Surface Flatness: lambda/10
Mirrors have a highly polished surface for reflecting light. The reflecting surface is usually a thin coating of aluminum or silver. Most mirrors for optical applications are called first surface types since the coating is on the front surface thereby eliminating the optical properties of the glass from affecting the incident or ...

Specifications

Reflective Coating: Protected Aluminum, Protected Silver
Substrate: BK7
Average Reflectance: 95 %
Wavelength Range: 500 – 1000 nm
Surface Flatness: lambda/6
Mirrors have a highly polished surface for reflecting light. The reflecting surface is usually a thin coating of aluminum or silver. Most mirrors for optical applications are called first surface types since the coating is on the front surface thereby eliminating the optical properties of the glass from affecting the incident or ...

Specifications

Reflective Coating: Protected Aluminum, Protected Silver
Substrate: BK7
Average Reflectance: 95 %
Wavelength Range: 500 – 1000 nm
Surface Flatness: lambda/6