Lenses

Results:
1,872
Manufacturer
Series
Optic Edge Thickness
Viewing Angle
For Use With/Related Manufacturer
Optic Center Thickness
Lens Size
Focal Length
Optic Diameter
Mounting Type
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Clear Aperture
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Wavelength
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Material
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Results remaining1,872
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ImageProduct DetailPriceAvailabilityECAD ModelOptic MaterialOptic DiameterClear ApertureMounting TypeOptic Center ThicknessWavelengthSeriesTypeFocal LengthOptic Edge Thickness
G063025322
BICONVEX LENS; N-BK 7; D=22.4; F
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PCB Symbol, Footprint & 3D Model
N-BK7
22.4mm
21.4mm
25mm
4mm
450nm ~ 700nm
LINOS Singlets
Biconvex Singlet
60mm
2mm
G063070329
PLANO-CONC. LENS; N-BK 7; D=22.4
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PCB Symbol, Footprint & 3D Model
N-BK7
22.4mm
21.4mm
25mm
1.5mm
1064nm
LINOS Singlets
Plano-Concave Singlet
-40mm
4.8mm
G052201000
BICONVEXL.; N-BAK 4; D=6; F=5; M
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N-BaK4
6mm
5mm
16mm
2.9mm
370nm ~ 2000nm
LINOS Singlets
Biconvex Singlet
5mm
0.9mm
G063020322
BICONVEX LENS; N-BK 7; D=22.4; F
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PCB Symbol, Footprint & 3D Model
N-BK7
22.4mm
21.4mm
25mm
8.8mm
450nm ~ 700nm
LINOS Singlets
Biconvex Singlet
20mm
1.6mm
G063026322
BICONVEX LENS; N-BK 7; D=22.4; F
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PCB Symbol, Footprint & 3D Model
N-BK7
22.4mm
21.4mm
25mm
3.5mm
450nm ~ 700nm
LINOS Singlets
Biconvex Singlet
80mm
2mm
G063020329
BICONVEX LENS; N-BK 7; D=22.4; F
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PCB Symbol, Footprint & 3D Model
N-BK7
22.4mm
21.4mm
25mm
8.8mm
1064nm
LINOS Singlets
Biconvex Singlet
20mm
1.6mm
G063029329
BICONVEX LENS; N-BK 7; D=22.4; F
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PCB Symbol, Footprint & 3D Model
N-BK7
22.4mm
21.4mm
25mm
3mm
1064nm
LINOS Singlets
Biconvex Singlet
200mm
2.4mm
G063022329
BICONVEX LENS; N-BK 7; D=22.4; F
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PCB Symbol, Footprint & 3D Model
N-BK7
22.4mm
21.4mm
25mm
6.3mm
1064nm
LINOS Singlets
Biconvex Singlet
30mm
2mm
G063023322
BICONVEX LENS; N-BK 7; D=22.4; F
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PCB Symbol, Footprint & 3D Model
N-BK7
22.4mm
21.4mm
25mm
5mm
450nm ~ 700nm
LINOS Singlets
Biconvex Singlet
40mm
2mm
G063021329
BICONVEX LENS; N-BK 7; D=22.4; F
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PCB Symbol, Footprint & 3D Model
N-BK7
22.4mm
21.4mm
25mm
7mm
1064nm
LINOS Singlets
Biconvex Singlet
25mm
1.6mm
G052008000
ACHR. VIS ARB2; D=12.5; F=30; MO
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PCB Symbol, Footprint & 3D Model
-
12.5mm
11.5mm
16mm
5mm
450nm ~ 700nm
LINOS Achromats
Achromatic Lens
30mm
3.7mm
G312329000
PLANO-CONVEX LENS; N-BK 7; D=12.
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PCB Symbol, Footprint & 3D Model
N-BK7
12.5mm
-
Unmounted
3.5mm
350nm ~ 2000nm
LINOS Singlets
Plano-Convex Singlet
20mm
1.4mm
G052003000
ACHR. VIS ARB2; D=3; F=6; MOUNTE
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PCB Symbol, Footprint & 3D Model
-
3mm
2.5mm
16mm
2.7mm
450nm ~ 700nm
LINOS Achromats
Achromatic Lens
6mm
2.2mm
G063344000
BICONCAVL.; FUSED SILICA; D=22.4
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PCB Symbol, Footprint & 3D Model
Fused Silica
22.4mm
21.4mm
25mm
1.5mm
200nm ~ 2000nm
LINOS Singlets
Biconcave Singlet
-20mm
8.1mm
G063347000
BICONCAVL.; FUSED SILICA; D=22.4
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PCB Symbol, Footprint & 3D Model
Fused Silica
22.4mm
21.4mm
25mm
1.5mm
200nm ~ 2000nm
LINOS Singlets
Biconcave Singlet
-50mm
4.1mm
G063112000
PLANO-CONVEX LENS; FUSED SILICA;
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PCB Symbol, Footprint & 3D Model
Fused Silica
31.5mm
30mm
35mm
7.5mm
200nm ~ 2000nm
LINOS Singlets
Plano-Convex Singlet
50mm
2.1mm
G052004000
ACHR. VIS ARB2; D=6; F=10; MOUNT
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PCB Symbol, Footprint & 3D Model
-
6mm
5mm
16mm
3mm
450nm ~ 700nm
LINOS Achromats
Achromatic Lens
10mm
2.1mm
G063143000
ACHR. VIS ARB2; D=22.4; F=80; MO
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PCB Symbol, Footprint & 3D Model
-
22.4mm
21.4mm
25mm
7mm
450nm ~ 700nm
LINOS Achromats
Achromatic Lens
80mm
5.1mm
G063191000
ACHR. VIS ARB2; D=18; F=-50; MOU
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PCB Symbol, Footprint & 3D Model
-
18mm
17mm
25mm
4.7mm
450nm ~ 700nm
LINOS Achromats
Achromatic Lens
-50mm
6.6mm
G052010000
ACHR. VIS ARB2; D=12.5; F=40; MO
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PCB Symbol, Footprint & 3D Model
-
12.5mm
11.5mm
16mm
6.3mm
450nm ~ 700nm
LINOS Achromats
Achromatic Lens
40mm
5.1mm

Lenses

Optical lenses are critical devices used to manipulate and focus light in various laboratory and industrial settings. These lenses come in a wide range of types and configurations, each tailored to specific applications and requirements. The primary function of optical lenses is to converge or diverge light rays, enabling precise control over the direction and intensity of light. These lenses can be categorized into various types, such as plano-convex, double-convex, plano-concave, double-concave, and meniscus lenses, each with its unique shape and optical characteristics. When selecting optical lenses, several parameters need to be considered. Firstly, the type of lens should be chosen based on the desired light manipulation, whether it is focusing, collimating, or dispersing light. Focal length determines the distance between the lens and the focal point, influencing the magnification and focusing capabilities of the lens. Wavelength compatibility is another critical factor, ensuring that the lens operates optimally within the desired wavelength range. Optic diameter indicates the size of the lens, determining the maximum beam size that can be accommodated by the lens without significant light loss or distortion. Clear aperture refers to the central portion of the lens that allows light to pass through unobstructed. Optic center thickness and edge thickness determine the overall thickness of the lens, which can impact factors such as weight, ease of handling, and optical aberrations. Optic material plays a crucial role in lens selection, as different materials have varying refractive indices and dispersion properties. Common materials include glass, plastic, and specialized materials like fluorite or calcium fluoride, each with its advantages and limitations. Other factors to consider may include lens coatings, environmental robustness, and aberration correction capabilities. Lens coatings can enhance transmission efficiency, reduce reflections, and protect the lens from environmental factors. Environmental robustness ensures that the lens can withstand variations in temperature, humidity, and other conditions. Aberration correction capabilities indicate the lens's ability to minimize optical distortions and improve image quality. In summary, optical lenses are indispensable devices used to focus and manipulate light in laboratory and industrial settings. These lenses can be selected based on parameters such as lens type, focal length, wavelength compatibility, optic diameter, clear aperture, optic center thickness, optic edge thickness, optic material, lens coatings, environmental robustness, and aberration correction capabilities. Their wide range of applications includes microscopy, imaging systems, laser systems, and more.