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Double-Convex (DCX) Lenses, D=12.70mm, F=15.00mm, IR2 CVD Laser Grade ZnSe(ZnSe), United Optical Technology Co., Ltd (CAT#: STEM-OP-0796-YJL)

Highlights

A lenticular lens focuses light into a point with a positive focal length and consists of two convex surfaces of equal radius. Commonly used in imaging relay systems and object imaging at limited conjugate distances. The characteristic is that the greater the conjugation ratio, the greater the aberration produced.

Cat Number: STEM-OP-0796-YJL

Application: Commonly used in imaging relay systems and object imaging at limited conjugate distances or beam focusing, collimation, beam expansion, etc.

Model: 110160

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Description

Double-Convex (DCX) Lenses, D=12.70mm, F=15.00mm, IR2 CVD Laser Grade ZnSe(ZnSe), model 110160, is manufactured by United Optical Technology Co., Ltd.
Zinc Selenide (ZnSe) Double Convex Lenses are double convex lenses based on zinc selenide.
Zinc selenide is a commonly used optical glass material in the infrared band. The transmission band is 600nm-16μm. It has the characteristics of low absorption and thermal shock resistance. It is often used in thermal imaging systems, and can also be used in some visible light optical systems, and can be used as the substrate for a variety of optical elements. Special attention should be paid to the fact that zinc selenide is a toxic material. Please be sure to wear gloves when using it and wash your hands after use.

Specification

Diameter: 12.70mm
EFL: 15.00mm
Coating: Double Sided AR coating@8~12μm
Material: CVD Laser grade(ZnSe)
BFL: 14.40mm
Radius R1: 41.20mm
Center Thickness CT: 3.00mm
Edge Thickness ET: 2.00mm
Available Mount Ring: 500029
Design Wavelength: 10.6um
Diameter Tolerance: +0.0/-0.1
Center Thickness Tolerance: ±0.2
Surface Accuracy: --
Focal Length Tolerance: ±1%
Centering Tolerance: <3 arcmin
Surface Quality: 40/20-60/40
Bevel: 0.2X45°
n: --

Features

A lenticular lens focuses light into a point with a positive focal length and consists of two convex surfaces of equal radius. Commonly used in imaging relay systems and object imaging at limited conjugate distances. The characteristic is that the greater the conjugation ratio, the greater the aberration produced.

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