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33-913 25mm Dia. Vacuum UV Enhanced Mirror Enhanced Aluminum 120-700nm

33-913 25mm Dia. Vacuum UV Enhanced Mirror Enhanced Aluminum 120-700nm

Type
Mirror
Subtype
Metallic Mirror
Brand
Edmund Optics
Product webpage
Edmund Optics products in the 3DOptix catalog

Properties

Shape
Circular
Diameter
25 mm

Material

Name
Fused Silica
Dispersion Equation
Sellmeier
n (λ)
1.4584482714279379
λ
588 nm
B1
0.6961663
C1
0.00467914825849 μm2
B2
0.4079426
C2
0.013512063073959999 μm2
B3
0.8974794
C3
97.934002537921 μm2

33-913 25mm Dia. Vacuum UV Enhanced Mirror Enhanced Aluminum 120-700nm

The 33-913 is a 25mm diameter vacuum UV enhanced mirror, designed and manufactured by Edmund Optics. This mirror is specifically engineered for use within the ultraviolet spectrum, between 120 and 700 nanometers, making it an ideal choice for applications requiring precise reflection in this range.

The mirror's base shape is circular, with a diameter of 25 millimeters and a thickness of 6 millimeters, providing a robust and compact design. It is made from fused silica, a material with a high transmission rate in the UV range, ensuring optimal performance.

The mirror's surface is coated with enhanced aluminum, which provides a high reflectivity index. This coating is standard for Edmund Optics and is denoted as 'edm denh al stdcurve'. The coating is applied to the front surface of the mirror, enhancing its reflective properties.

The mirror is classified as a metallic mirror, a type of mirror that uses a metal coating to reflect light. This type of mirror is known for its high reflectivity and durability, making it suitable for a wide range of applications.

The mirror is designed in the shape of a thin lens, which is a lens with a thickness that is significantly less than its diameter. This design allows for minimal distortion and a wide field of view, making it ideal for imaging applications.

The mirror is currently in stock and available for purchase on the Edmund Optics website, as indicated by its weblink status. For more detailed information, users are encouraged to visit the provided weblink.

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