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36-597 50.8 mm Dia. x 152.4mm EFL; 90° Protected Silver 100A; Off-Axis Parabolic Mirror Protected Silver 450-10000nm

36-597 50.8 mm Dia. x 152.4mm EFL; 90° Protected Silver 100A; Off-Axis Parabolic Mirror Protected Silver 450-10000nm

Type
Mirror
Subtype
Off-Axis Parabolic Mirror
Brand
Edmund Optics
Product webpage
Edmund Optics products in the 3DOptix catalog

Properties

Shape
Circular
Diameter
50.8 mm
EFL
152.4 mm
A
57.15 mm

Material

Name
N-BK7
Dispersion Equation
Sellmeier
n (λ)
1.5167817367777034
λ
588 nm
B1
1.03961212
C1
0.00600069867 μm2
B2
0.231792344
C2
0.0200179144 μm2
B3
1.01046945
C3
103.560653 μm2

36-597 50.8 mm Dia. x 152.4mm EFL; 90° Protected Silver 100A; Off-Axis Parabolic Mirror Protected Silver 450-10000nm

The 36-597 is a high-quality Off-Axis Parabolic Mirror, sourced from the renowned optical vendor, Edmund Optics. This mirror, with a diameter of 50.8 mm, is designed for use in a wide range of wavelengths, from 450 nm to 10000 nm, making it a versatile choice for various optical applications.

The mirror's geometry is carefully crafted, with a PFL (Parabolic Focal Length) of 76.2 mm and an Effective Focal Length (EFL) of 152.4 mm. The off-axis angle is 90 degrees, and the mirror's a value is 57.15 mm. The radius of curvature is equal to the EFL, at 152.4 mm. This specific configuration is designed to deliver superior optical performance, particularly in applications requiring precise beam shaping and focusing.

The mirror is made from N-BK7 Schott, a high-quality borosilicate glass known for its excellent optical properties. The front surface of the mirror is coated with EDM DPROTSIL3001000, a protected silver coating that enhances its reflectivity and durability. This coating is designed to withstand a high power load of up to 100A, ensuring the mirror's longevity and reliability even in high-intensity applications.

The mirror's Off-Axis Parabolic shape is a significant feature. Unlike traditional parabolic mirrors, which have their optical axis at the mirror's center, off-axis parabolic mirrors have their optical axis displaced from the mirror's center. This design significantly reduces spherical aberration, providing superior optical performance.

In conclusion, the 36-597 Off-Axis Parabolic Mirror is a high-performance, versatile, and durable optical component, ideal for a wide range of applications. Its superior design, quality materials, and robust construction make it a reliable choice for any optical system.

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