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Broadband NIR Polarizing Film 30mm Dia

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Specifications

概況

Type:
Linear Polarizer
Note:
Protective film both sides, polarization axis indicated but cutout on polarizer edge

物理和機械特性

Diameter (mm):
30.00 +/- 0.25
Thickness (mm):
0.58
Thickness Tolerance (mm):
+/- 0.1
Dimensional Tolerance (mm):
+/- 0.25
Construction:
Polarizing Film

光學特性

Coating:
Uncoated
Extinction Ratio:
5,000:1 (400-760nm), 1350:1 (760-2200nm) Average, typical
Substrate: Many glass manufacturers offer the same material characteristics under different trade names. Learn More
Polymer Film on TAC
Transmission (%):
Single: 26(400-760nm) 40(760-2200nm) Crossed: 0.0005 (400-760nm) 0.029 (760-2200nm)
Wavelength Range (nm):
400 - 2200
Transmission, Single (%):
26(400-760nm) 40(760-2200nm)
Transmission, Crossed (%):
0.0005 (400-760nm) 0.029 (760-2200nm)

環境和耐用性因素

Operating Temperature (°C):
Heat Resistance 70°C Dry Cold Resistance -51°C

Regulatory Compliance

RoHS:
Certificate of Conformance:

產品概覽

  • 非常適合近紅外線偏振應用
  • 800 - 2200nm 的消光比達 400:1 以上
  • 在波長範圍內達到高效率
  • 耐用的聚合物基材

近紅外線 (NIR) 線性偏振薄膜由耐用的聚合物基材組成,適用於可見光至近紅外線 (400 - 2200nm) 範圍的成像應用。這款偏振聚合物薄膜具備出色的平均穿透率 (39%),對於在 760 及 2200nm 之間隨機偏振的入射光,更可達到 99.6% 以上的偏振效率。其中提供多種矩形尺寸容納各種光源,從小光束直徑的低功率近紅外線雷射,乃至於更大的 LED 光束。近紅外線 (NIR) 線性偏振薄膜用於工業成像及實驗室應用,亦即減弱低輸出近紅外線雷射及 LED 的強度,或減少近紅外線光電探測器所記錄影像的眩光。偏振軸標示於偏振聚合物薄膜的保護罩上。

注意:首次使用前請移除保護罩。

Technical Information

資源

Filter

Introduction to Polarization

Is polarization a new topic for you? Learn about key terminology, types, and more information to help you understand polarization at Edmund Optics.

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NIR (Near Infrared)

VIS/NIR Coating

選擇正確的紅外線(IR)正確材料

Using an Infrared Application? Discover the importance of choosing the right material and comparisons of each at Edmund Optics.

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Laser-Cut Polymer Polarizer and Retarder Quote Tool

Infrared (IR) Spectrum

Polymer Polarizers and Retarders

Polymer polarizers and retarders, consisting of sheets of polyvinyl alcohol and TAC cellulose triacetate, alter the polarization of light.

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Polarizer Selection Guide

Edmund Optics' Polarizer Selection Guide refines your search for a specific type of polarizer.

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Understanding Waveplates and Retarders

Waveplates (retarders) are different when used in polarized light than unpolarized light. Consider terminology, fabrication, or applications at Edmund Optics.

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How Do 3D Movies Work? Polarization

Optical Engineer Katie Schwertz explains how 3D movies work because of polarization in a kid-friendly way.

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Polarization Overview - Part 1: Polarization Basics

Polarizers are optical components designed to filter, modify, or analyze the various polarization states of light.

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Polarization Overview - Part 2: Waveplates & Retarders (Advanced)

Waveplates and retarders are optical components designed to transmit light while modifying its polarization state without attenuating, deviating, or displacing the beam.

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You offer many types of polarizers. What are some key benefits to help me decide which is best for my application?

Are the polarizers shipped with a protective film?

What is the difference between s- and p-polarization states?

What are the meanings for the different terms used for polarizers?

How can I tell what the polarization axis is for a linear polarizer?

When you list the average transmission of a polarizer, what is the difference between single, parallel, and crossed?

I have a linear polarizer glass filter and would like to create circularly polarized light. What type of optics do I need for this?

What is the maximum amount of light a polarizer can transmit?

Does the circular polarizer material have to face a particular direction?

What is the fast and slow axis of a retarder and how do they differ?

How can I find the fast and slow axes of a retarder?

What is the difference between multiple and zero-order retarders and when should I pick one over the other?

How can I determine if a retarder is quarter or half wave?

Can I adapt a retarder for use with a specific wavelength other than the design wavelength?

What is the benefit of polymer retarders?

Analyzer

Birefringence

Circular Polarizer

Polarization

Polarizer

Polarizing Efficiency

P-Polarization

Retardance

Retarder (Waveplate)

S-Polarization

Unpolarized

Wire Grid Polarizer

UV vs. IR Grade Fused Silica

UV grade fused silica is ideal for UV and visible applications, but IR grade fused silica has better transmission in the IR due to a lack of OH- impurities.

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Hyperspectral & Multispectral Imaging – TRENDING IN OPTICS: EPISODE 7

Hyperspectral and multispectral imaging are imaging technologies that capture information from a broader portion of the electromagnetic spectrum.

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You offer many substrates for UV and IR applications. How do I know which is best for me?

Successful Light Polarization Techniques

Are you looking for a solution to common imaging problems? Discover different polarization techniques to improve your image at Edmund Optics.

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Polarization Directed Flat Lenses Product Review

Polarization Directed Flat Lenses, which are formed with polymerized liquid crystal thin-film, create a focal length that is dependent on polarization state.

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Polarizers Review

Polarizers are used in a wide range of imaging and research and development applications.

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Does the polarization of light change after reflecting off a mirror?

Do diffusers affect the polarization of light?

Does the polarization of light change when it passes through a beamsplitter?

I would like to split light from a circularly polarized laser source into two beams. What happens when it passes through a cube beamsplitter – both non-polarizing and polarizing?

Does light entering a multimode fiber undergo a polarization change during propagation through the fiber? If so, can the emerging light be linearly polarized by placing a polarizer at the fiber’s output end?

Why does the polarization of a laser matter?

The polarization state of a laser source is important for many different applications.

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Extinction Ratio

Non-Polarizing Beamsplitter

Polarizing Beamsplitter

Optical Microscopy Application: Differential Interference Contrast

Differential interference contrast (DIC) is one of the polarization techniques that can be used in optical microscopy. Learn about this technique at Edmund Optics.

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雷射偏振:偏振在雷射應用的重要性

了解雷射的偏振對於許多應用至關重要,因為偏振會影響反射率、聚焦光束和其他關鍵行為。

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