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14OAP-2-101.6-30-GM 50.8 mm Dia. Aluminum 30° Off-Axis Parabolic Mirror; EFL=108.89mm Protected Gold

14OAP-2-101.6-30-GM 50.8 mm Dia. Aluminum 30° Off-Axis Parabolic Mirror; EFL=108.89mm Protected Gold

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

Properties

Shape
Circular
Diameter
50.8 mm
EFL
108.89 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

14OAP-2-101.6-30-GM 50.8 mm Dia. Aluminum 30° Off-Axis Parabolic Mirror; EFL=108.89mm Protected Gold

This is a 14OAP-2-101.6-30-GM Off-Axis Parabolic Mirror, a high-quality optical component sourced from Standa. The mirror has a diameter of 50.8 mm and a clear aperture of 101.6 mm, making it suitable for a wide range of optical applications.

The mirror's off-axis parabolic shape is designed to collect or focus light at a specific angle, in this case, 30°. This design ensures that the mirror can focus light without the need for a beam to pass through the mirror's center, reducing spherical aberration and increasing the system's overall efficiency.

The mirror's effective focal length (EFL) is 108.89 mm, which refers to the distance from the mirror's surface to the point where the mirror focuses light. This EFL, combined with the mirror's diameter and clear aperture, makes it ideal for use in systems where a long focal length is required.

The mirror is made from n-bk7 Schott glass, a material known for its excellent optical properties and high damage threshold. The mirror's front surface is coated with protected gold, a coating that provides high reflectivity across a wide range of wavelengths, including the visible and near-infrared regions.

According to the vendor's website, this item is currently in stock, ensuring quick delivery times and minimal lead times. The mirror's robust design and high-quality coating make it suitable for use in demanding environments, making it a reliable choice for a wide range of optical applications.

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