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G063322000 22.4 mm Dia. UVFS Mounted Double-Convex Lens; EFL=150mm Uncoated

G063322000 22.4 mm Dia. UVFS Mounted Double-Convex Lens; EFL=150mm Uncoated

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

Properties

Shape
Circular
Diameter
22.4 mm
EFL
150 mm
R1
149.62 mm
R2
-149.62 mm

Material

Name
UVFS
Dispersion Equation
Sellmeier
n (λ)
1.4760718797567198
λ
355 nm
B1
0.6961663
C1
0.004679148 μm2
B2
0.4079426
C2
0.013512063 μm2
B3
0.8974794
C3
97.93400254 μm2

G063322000 22.4 mm Dia. UVFS Mounted Double-Convex Lens; EFL=150mm Uncoated

The G063322000 is a 22.4 mm diameter Double-Convex lens, designed and manufactured by Qioptiq Photonics. This lens is mounted on UVFS (Ultra-Violet Fused Silica) and features a focal length of 150mm, making it suitable for a wide range of applications that require high-performance optical components.

The lens's geometry is characterized by its base shape, which is circular, and its symmetric convex-convex design. The thickness at the edge of the lens is 1.6mm, while the center thickness measures 2.4mm. The lens's inner and outer radii are both zero, indicating a uniform curvature throughout. The effective focal length (EFL) is 150mm, a value that remains constant regardless of the lens's aperture or object distance.

The lens is made from UVFS material, which is known for its excellent transmittance in the ultraviolet region of the spectrum. This makes the G063322000 an ideal choice for applications that involve ultraviolet light, such as UV spectroscopy, fluorescence microscopy, and various types of laser systems.

Notably, the lens is uncoated. While coatings can enhance the performance of optical components by reducing surface reflections and increasing transmission, an uncoated lens can be advantageous in certain situations. For instance, uncoated lenses can be more cost-effective and are less susceptible to damage from environmental factors.

The lens's wavelength is 355nm, a value that aligns with the output of many common laser systems. This further expands the lens's potential applications, including laser material processing, laser-induced breakdown spectroscopy, and non-linear optics.

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