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14-471 50 x 50 mm SCHOTT N-WG320 Colored Glass Longpass Filter 320nm

14-471 50 x 50 mm SCHOTT N-WG320 Colored Glass Longpass Filter 320nm

Type
Filter
Subtype
Color Glass
Brand
Edmund Optics
Product webpage
Edmund Optics products in the 3DOptix catalog

Properties

Shape
Rectangular
Cut Off Frequency
Cut On Frequency
320 nm

Material

Name
UVFS
Dispersion Equation
Sellmeier
n (λ)
1.458448271212196
λ
588 nm
B1
0.6961663
C1
0.004679148 μm2
B2
0.4079426
C2
0.013512063 μm2
B3
0.8974794
C3
97.93400254 μm2

14-471 50 x 50 mm SCHOTT N-WG320 Colored Glass Longpass Filter 320nm

The 14-471 50 x 50 mm SCHOTT N-WG320 Colored Glass Longpass Filter is a specialized optical component designed for applications requiring precise wavelength control. Sourced from Edmund Optics, this filter is a part of their extensive catalog, boasting a robust and reliable performance.

This filter is a Color Glass type, featuring a rectangular base shape with dimensions of 50 x 50 mm and a thickness of 3 mm. The material ID for this component is UVFS MAL-1965, indicating its specific composition and properties. The filter is designed to interact with wavelengths of 588 nm, making it suitable for a wide range of optical applications.

The physical data of this filter is particularly noteworthy. It has a cut-on wavelength of 320 nm, meaning it begins to transmit light at this point in the spectrum. The cut-off wavelength, however, is 0 nm, indicating that it continues to transmit all wavelengths beyond this point. This makes it a Longpass filter, allowing for the passage of longer wavelengths while blocking shorter ones.

The filter features coatings on both the front and back surfaces, identified as EDM 14-471. This coating is likely designed to enhance the filter's performance and durability, providing improved resistance to environmental factors and ensuring consistent optical properties over time.

The shape of this filter is Thin Lens, suggesting that it may have some light-bending properties in addition to its filtering capabilities. This could make it a versatile component in optical systems where both wavelength control and light direction are required.

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