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SLSQ-15B-100P 15.0 mm Dia. x 100.5 mm FL; Double-Convex Lens Uncoated

SLSQ-15B-100P 15.0 mm Dia. x 100.5 mm FL; Double-Convex Lens Uncoated

Type
Lens
Subtype
Spherical Lens (Convex-Convex)
Brand
OptoSigma
Product webpage
OptoSigma products in the 3DOptix catalog

Properties

Shape
Circular
Diameter
15 mm
EFL
100.5 mm
BFL
99.6 mm
R1
92 mm
R2
-92 mm

Material

Name
Fused Silica
Dispersion Equation
Sellmeier
n (λ)
1.460077010624967
λ
546.1 nm
B1
0.6961663
C1
0.00467914825849 μm2
B2
0.4079426
C2
0.013512063073959999 μm2
B3
0.8974794
C3
97.934002537921 μm2

SLSQ-15B-100P 15.0 mm Dia. x 100.5 mm FL; Double-Convex Lens Uncoated

OptoSigma's SLSQ-15B-100P is a high-quality, double-convex lens made from fused silica, a material known for its excellent optical properties and durability. This lens boasts a diameter of 15.0 mm and a focal length of 100.5 mm, making it suitable for a wide range of optical applications.

The lens's geometry is characterized by its double-convex shape, with radii of curvature of 92 mm for the first surface and -92 mm for the second. This shape allows for efficient light gathering and focusing, making the lens ideal for use in imaging systems, beam shaping, and other applications where precise light control is required.

The lens has a thickness of 2.0 mm at the edge and 2.6 mm at the center, providing robustness and resistance to deformation. The inner and outer radii are both 0 mm, indicating a uniform curvature across the lens's surface.

The lens is uncoated, meaning it does not have any anti-reflective or other surface treatments. This can be advantageous in certain applications where a specific coating is not required or desirable. However, it should be noted that uncoated lenses can exhibit higher levels of reflection, which may need to be taken into account in the design of the optical system.

The lens is designed to operate at a wavelength of 546.1 nm, a common reference wavelength in optical design. It is made from fused silica, a material with a low coefficient of thermal expansion and high resistance to chemical attack, making it suitable for use in harsh environments.

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