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IR Optical Windows, Φ12.5mm, Thickness=2.0mm, Uncoated, Silicon (Si) Single Crystal, United Optical Technology Co., Ltd (CAT#: STEM-OP-2948-YJL)

Highlights

Silicon is a commonly used optical glass material in the infrared band. The transmission band is 1.2-8.0μm. Silicon has high thermal conductivity. It can be used as the substrate for a variety of optical components, such as lenses, windows, etc. It is often used in near-infrared and mid-infrared applications, and is also suitable for infrared imaging, terahertz imaging, medical, military and other applications.

Cat Number: STEM-OP-2948-YJL

Application: Used as a protective window for electronic sensors or detectors of the external environment

Model: 190163

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Description

IR Optical Windows, Φ12.5mm, Thickness=2.0mm, Uncoated, Silicon (Si) Single Crystal, model 190163, is manufactured by United Optical Technology Co., Ltd.
Silicon (Si) Windows are parallel plane panels that are often used as protective windows for electronic sensors or detectors of the external environment. When selecting a window, attention should be paid to the window material, transmittance and transmission band, surface shape, smoothness, parallelism and other parameters.
An IR-ready UV window is a window designed for use in the outer infrared or ultraviolet spectrum. Windows are designed to protect electronic sensors, detectors or other sensitive optical components from saturation or light damage.

Specification

Diameter: Φ12.5mm
Coating: Uncoated
Material: Silicon (Si) Single Crystal
Surface Accuracy: 1λ@633nm
Thickness: 2.0mm
Parallelism: <1arcmin
Surface Quality: 40/20-60/40
Diameter Tolerance: +0.0/-0.1mm
Thickness Tolerance: ±0.1mm
Bevel: Protective Bevel 0.2~0.5mmX45°

Features

Silicon is a commonly used optical glass material in the infrared band. The transmission band is 1.2-8.0μm. Silicon has high thermal conductivity. It can be used as the substrate for a variety of optical components, such as lenses, windows, etc. It is often used in near-infrared and mid-infrared applications, and is also suitable for infrared imaging, terahertz imaging, medical, military and other applications.

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