Mirrors

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128
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ImageProduct DetailPriceAvailabilityECAD ModelSeriesShapeTypeOptic SizeWavelengthAngle of Incidence (AOI)Optic Center ThicknessFlatness (Lambda)Coating
G340342000
PL. MIRROR RAL-UV; D=18; D=4; L/
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LINOS Mirrors
Round
Aluminum Mirror
18mm
230nm ~ 400nm
45°
4mm
1/2
Runpol > 85% @ 230nm ~ 400nm; Runpol > 88% @ 300nm
G340550000
PL. MIRROR RAGV; D=50; D=10; L/1
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LINOS Mirrors
Round
Silver Mirror
50mm
500nm ~ 12000nm
0-60°
10mm
1/10
Runpol > 96% @ 500nm ~ 12000nm
G340752000
LASER MIRROR DLHS532; FUSED SILI
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LINOS Mirrors
Elliptical
Dielectric Mirror
22.4mm x 31.5mm
532nm
45°
5mm
-
1x R > 99.7% @ 532nm, T > 80% @ 1064nm; 1x uncoated
G340308000
PL. MIRROR RAL-UV; BXL=60X85; D=
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LINOS Mirrors
Rectangular
Aluminum Mirror
60mm x 85mm
230nm ~ 400nm
45°
8mm
1
Runpol > 85% @ 230nm ~ 400nm; Runpol > 88% @ 300nm
G340513000
PL. MIRROR RAGV; D=12.7; D=2.5;
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PCB Symbol, Footprint & 3D Model
LINOS Mirrors
Round
Silver Mirror
12.7mm
500nm ~ 12000nm
0-60°
2.5mm
1/10
Runpol > 96% @ 500nm ~ 12000nm
G340509000
PL. MIRROR RAGV; D=12.7; D=5; L/
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PCB Symbol, Footprint & 3D Model
LINOS Mirrors
Round
Silver Mirror
12.7mm
500nm ~ 12000nm
0-60°
5mm
1/10
Runpol > 96% @ 500nm ~ 12000nm
G340632000
PL. MIRROR RAGV; D=31.5X45 OVAL;
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PCB Symbol, Footprint & 3D Model
LINOS Mirrors
Elliptical
Silver Mirror
31.5mm x 45mm
500nm ~ 12000nm
0-60°
4mm
1/2
Runpol > 96% @ 500nm ~ 12000nm
G340008000
PL. MIRROR RAL; D=31.5; D=5; L/1
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PCB Symbol, Footprint & 3D Model
LINOS Mirrors
Round
Aluminum Mirror
31.5mm
400nm ~ 700nm
45°
5mm
1/10
Runpol > 85% @ 400nm ~ 700nm; Runpol > 88% @ 550nm
G340651000
PL. MIRROR RAGV; D=50X71 OVAL; D
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PCB Symbol, Footprint & 3D Model
LINOS Mirrors
Elliptical
Silver Mirror
50mm x 71mm
500nm ~ 12000nm
0-60°
6mm
1
Runpol > 96% @ 500nm ~ 12000nm
G340063000
PL. MIRROR RAL; BXL=10X10; D=2;
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PCB Symbol, Footprint & 3D Model
LINOS Mirrors
Rectangular
Aluminum Mirror
10mm x 10mm
400nm ~ 700nm
45°
2mm
1/4
Runpol > 85% @ 400nm ~ 700nm; Runpol > 88% @ 550nm
G340080000
PL. MIRROR RAL; D=6; D=1; L/4
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PCB Symbol, Footprint & 3D Model
LINOS Mirrors
Round
Aluminum Mirror
6mm
400nm ~ 700nm
45°
1mm
1/4
Runpol > 85% @ 400nm ~ 700nm; Runpol > 88% @ 550nm
G340081000
PL. MIRROR RAL; D=10; D=2; L/4
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PCB Symbol, Footprint & 3D Model
LINOS Mirrors
Round
Aluminum Mirror
10mm
400nm ~ 700nm
45°
2mm
1/4
Runpol > 85% @ 400nm ~ 700nm; Runpol > 88% @ 550nm
G340082000
PL. MIRROR RAL; D=12.7; D=2.5; L
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PCB Symbol, Footprint & 3D Model
LINOS Mirrors
Round
Aluminum Mirror
12.7mm
400nm ~ 700nm
45°
2.5mm
1/4
Runpol > 85% @ 400nm ~ 700nm; Runpol > 88% @ 550nm
G340083000
PL. MIRROR RAL; D=18; D=4; L/2
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PCB Symbol, Footprint & 3D Model
LINOS Mirrors
Round
Aluminum Mirror
18mm
400nm ~ 700nm
45°
4mm
1/2
Runpol > 85% @ 400nm ~ 700nm; Runpol > 88% @ 550nm
G340056000
PL. MIRROR RAL; BXL=10X15; D=2;
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PCB Symbol, Footprint & 3D Model
LINOS Mirrors
Rectangular
Aluminum Mirror
10mm x 15mm
400nm ~ 700nm
45°
2mm
1/2
Runpol > 85% @ 400nm ~ 700nm; Runpol > 88% @ 550nm
G340341332
PL. MIRROR RAL-UV; D=12.7; D=2.5
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PCB Symbol, Footprint & 3D Model
LINOS Mirrors
Round
Aluminum Mirror
12.7mm
230nm ~ 400nm
45°
2.5mm
1/10
Runpol > 85% @ 230nm ~ 400nm; Runpol > 88% @ 300nm
G340380332
PL. MIRROR RAL-UV; D=10X14 OVAL;
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PCB Symbol, Footprint & 3D Model
LINOS Mirrors
Elliptical
Aluminum Mirror
10mm x 14mm
230nm ~ 400nm
45°
2mm
1/2
Runpol > 85% @ 230nm ~ 400nm; Runpol > 88% @ 300nm
G340333331
PL. MIRROR RAL; D=10; D=2; L/10
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PCB Symbol, Footprint & 3D Model
LINOS Mirrors
Round
Aluminum Mirror
10mm
400nm ~ 700nm
45°
2mm
1/10
Runpol > 85% @ 400nm ~ 700nm; Runpol > 88% @ 550nm
G340080332
PL. MIRROR RAL-UV; D=6; D=1; L/4
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PCB Symbol, Footprint & 3D Model
LINOS Mirrors
Round
Aluminum Mirror
6mm
230nm ~ 400nm
45°
1mm
1/4
Runpol > 85% @ 230nm ~ 400nm; Runpol > 88% @ 300nm
G340340000
PL. MIRROR RAL-UV; D=10; D=2; L/
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Quantity
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PCB Symbol, Footprint & 3D Model
LINOS Mirrors
Round
Aluminum Mirror
10mm
230nm ~ 400nm
45°
2mm
1/4
Runpol > 85% @ 230nm ~ 400nm; Runpol > 88% @ 300nm

About  Mirrors

Optical mirrors are essential components used in various optical instruments to reflect light for diverse applications. These mirrors come in different types and configurations, each optimized for specific uses based on their reflective properties. The primary function of optical mirrors is to reflect light, allowing for precise control over the direction and intensity of the reflected light. Common types of optical mirrors include aluminum, dielectric, gold, and silver mirrors, each with its unique characteristics and advantages. When selecting an optical mirror, several parameters need to be considered. Optic size determines the size of the mirror, influencing the amount of light reflected and the maximum beam diameter that can be accommodated by the mirror without significant light loss or distortion. Mirror shape is another critical factor, influencing the angle of incidence and the resulting reflected light direction. The angle of incidence describes the angle at which the light hits the mirror's surface, impacting the angle of reflection and the reflected light's intensity. Reflectivity and wavelength compatibility are other key factors, ensuring that the mirror reflects light optimally within the desired wavelength range. Different materials have varying reflectivity and wavelength compatibility, with aluminum mirrors being a popular choice for visible light, while gold and silver mirrors are commonly used for infrared applications. Other factors to consider may include environmental robustness, thermal stability, and surface quality. Environmental robustness ensures that the mirror can withstand variations in temperature, humidity, and other conditions. Thermal stability refers to the mirror's ability to maintain its reflective properties under varying temperature conditions. Surface quality measures how smooth and flat the mirror's surface is, impacting the quality of the reflected image. In summary, optical mirrors are crucial components used to reflect light in various optical instruments. They can be selected based on parameters such as mirror type, optic size, shape, angle of incidence, reflectivity, wavelength compatibility, environmental robustness, thermal stability, and surface quality. Their wide range of applications includes imaging systems, telescopes, lasers, and more.