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TECHSPEC® components are designed, specified, or manufactured by Edmund Optics. TECHSPEC®組件由愛特蒙特光學設計、指定或製造。進一步瞭解

二向色雷射光束混合器

TECHSPEC® Dichroic Laser Beam Combiners

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  • 對偏振不敏感
  • 硬質濺鍍鍍膜
  • 提供多種尺寸

二向色雷射光束混合器專為入射角為45°的多個雷射光束執行高效混合或分離而設計。二向色雷射光束混合器對常用雷射的反射率超過98%,穿透率超過95%,產生的損失極低。二向色雷射光束混合器採用具有硬質濺鍍鍍膜的低自發螢光基材組成,非常適用於多雷射螢光成像與量測應用 (包括雷射顯微鏡與流式細胞儀)。

一般規格

Construction:
Mounted in Black Anodized Ring
Physical Durability:
Adhesion per MIL-PRF-13830B, Section C.4.5.12
Moderate abrasion per MIL-PRF-13830B, Section C.4.5.11
Cleaning per MIL-C-48497A Section 4.5.4.2
Substrate Thickness (mm):
2
Angle of Incidence (°):
45
Substrate:
Fused Silica (Corning 7980)
Coating:
Hard Coated
Reflection (%):
>98
Surface Quality:
60-40
Transmission (%):
>95
Transmitted Wavefront, RMS:
<1λ
Mount Thickness (mm):
3.5 ±0.1
Environmental Durability:
Humidity per MIL-STD-810H, Section 507.6
Temperature per MIL-STD-810H, Section 501.7 and 502.7

產品

Dia. (mm)  Cut-On Wavelength (nm)   Reflection Wavelength (nm)   Transmission Wavelength (nm)   Wavelength Range (nm)   比較  庫存號碼  價格 Buy
12.50 427.00 372 - 415 439 - 647.1 372 - 647
25.00 427.00 372 - 415 439 - 647.1 372 - 647
50.00 427.00 372 - 415 439 - 647.1 372 - 647
12.50 466.00 439 - 457.9 473 - 647.1 439 - 647
25.00 466.00 439 - 457.9 473 - 647.1 439 - 647
50.00 466.00 439 - 457.9 473 - 647.1 439 - 647
12.50 480.00 457.9 - 473 488 - 647.1 458 - 647
25.00 480.00 457.9 - 473 488 - 647.1 458 - 647
50.00 480.00 457.9 - 473 488 - 647.1 458 - 647
12.50 503.00 473 - 491 514.5 - 647.1 473 - 647
25.00 503.00 473 - 491 514.5 - 647.1 473 - 647
50.00 503.00 473 - 491 514.5 - 647.1 473 - 647
12.50 552.00 514.5 - 543.5 561.4 - 790 515 - 790
25.00 552.00 514.5 - 543.5 561.4 - 790 515 - 790
50.00 552.00 514.5 - 543.5 561.4 - 790 515 - 790
12.50 613.00 561.4 - 594.1 632.8 - 790 561 - 790
25.00 613.00 561.4 - 594.1 632.8 - 790 561 - 790
50.00 613.00 561.4 - 594.1 632.8 - 790 561 - 790
12.50 659.00 632.8 - 647.1 671 - 790 633 - 790
25.00 659.00 632.8 - 647.1 671 - 790 633 - 790
50.00 659.00 632.8 - 647.1 671 - 790 633 - 790

Technical Information

All mounted TECHSPEC® Optical Filters have an arrow on the side of the mount that points to the filter-coated surface for quick reference. Filter oriented such that arrow points to filter coated surface S1. Anti-reflective (AR) coating is applied to S2.
All mounted TECHSPEC® Optical Filters have an arrow on the side of the mount that points to the filter-coated surface for quick reference. Filter oriented such that arrow points to filter coated surface S1. Anti-reflective (AR) coating is applied to S2.

資源

Filter

瞭解及指定雷射元件的LDT

雷射誘導損傷閾值 (LIDT) 或雷射損傷閾值 (LDT) 對於選擇或指定雷射光學器件至關重要。在愛特蒙特光學了解更多!

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Multiphoton Microscopy

Multiphoton microscopy is ideal for capturing high-resolution 3D images with reduced photobleaching and phototoxicity compared to confocal microscopy.

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How do I use high performance laser line bandpass and laser line longpass filters as pairs in raman spectroscopy?

光學濾光片的未來

New optical filters are being developed due to the advancements in applications and technologies. Learn more about the future of filters at Edmund Optics.

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What happens when a filter is tilted?

How do I determine which side of my filter is coated?

Blocking

Blocking Range

Central Wavelength (CWL)

Full Width at Half Maximum (FWHM)

Interference Filter

Notch Filter

Peak Transmittance

Rugate Notch Filter

Shortpass Filter

Coating Impact on Flatness Calculator

Free-Space Optical Communication

Free-space optical (FSO) communications wirelessly transmit data through the air using lasers. FSO promises to revolutionize broadband internet access.

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螢光成像搭配雷射照明

螢光成像系統由三個主要組件組成:照明源、光激活螢光團樣品和偵測器。

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The Hidden Effects of Optical Coating Stress

How do I clean my filters?

What is the largest diameter filter available from Edmund Optics®?

What are some of the most common filter substrates?

How do I select the right filter for my application?

What types of filters can Edmund Optics® manufacture?

Cut-Off Wavelength

Cut-On Wavelength

Dielectric Coating

Filter

Fluorescent Filter

Ion-Beam Sputtering (IBS)

Optical Density (OD)

Stopband

A Guide to (Not Over) Specifying Losses in Laser Optics

Overspecifying optical losses in laser systems will not further improve your performance or reliability, but it could cost you additional money and/or time.

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Free-Space Optical Communication – TRENDING IN OPTICS: EPISODE 6

Free-space optical (FSO) communications transmit information wirelessly through the air using lasers with improved bandwidth. Learn more!

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Top Trends of 2022 – TRENDING IN OPTICS: EPISODE 8

Happy holidays from Edmund Optics! Learn about the top trends in the photonics industry covered in our Trending in Optics Series in 2022.

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Optical Microscopy Application: Fluorescence

Wondering how fluorescence microscopy works? Find out about the technique, systems, and more at Edmund Optics.

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Is it possible to directly measure absorption or scatter?

Development of a Robust Laser Damage Threshold Testbed

Development of US national laser damage standard: 2020 status

不同類型的 LDT 規格

光學器件的雷射誘導損傷閾值(LIDT)是一個受缺陷密度、測試方法和雷射波動影響的統計值。

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了解表面品質規格

光學元件的表面品質取決於其表面的散射,這在雷射光學應用中尤其重要。

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Fluorescence Microscopy: In-Line Illumination with Imaging Filters

Want to know about fluorescence microscopy? Read this article by a Biomedical Product Line Engineer at Edmund Optics to learn more.

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Parallelism

不同類型的 LDT 規格

並非所有光學元件都經過雷射誘導損傷閾值 (LIDT) 測試,且測試方法不同,導致 LIDT 規範類型不同。

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雷射系統關鍵參數

了解確保雷射應用成功必須考慮的關鍵參數。將為這些參數建立通用術語。

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測試雷射損傷閾值

測試雷射誘導損傷閾值 (LIDT) 尚未標準化,因此了解光學元件的測試方式對於預測性能至關重要。

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雷射光學度量

計量對於確保光學元件始終滿足其所需的規格至關重要,尤其是在雷射應用中。

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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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Laser Optics Lab Trailer

The Laser Optics Lab video series discusses laser optics concepts including specifications, coating technologies, product types, and more

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Introduction to Laser Optics Lab

The Laser Optics Lab video series discusses laser optics concepts including specifications, coating technologies, product types, and more

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Laser Optics Lab:Back Reflections

Back reflections are created when some or part of your beam are reflected back to the source.

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Laser Optics Lab: Coatings

Optical coatings are composed of thin-film layers used to enhance transmission or reflection properties within an optical system.

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Laser Optics Lab:Specifications for Selecting a Laser

When determining which laser to use for your application, consider the following specifications: wavelength, coherence length, beam divergence, and Rayleigh range.

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LIGHT TALK - EPISODE 3: Laser Damage Testing with Matthew Dabney

Join our discussion around laser damage testing in the third episode of our LIGHT TALKS series.

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LIGHT TALK - EPISODE 4: Lasers & Optics with Kasia Sieluzycka and Nick Smith

Learn about trends in laser applications including increasing powers and decreasing pulse durations in this conversation with Kasia Sieluzycka and Nick Smith.

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LIGHT TALK - EPISODE 8: Laser Magic! with Angi Compatangelo

From tattoo removal to diagnosing cancer, lasers can transform our lives in countless ways. Join our conversation about laser in skin care and diagnostics.

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Resolving damage ambiguity and laser-induced damage threshold (LIDT) complications

The art and science of designing optics for laser-induced damage threshold

What makes laser optics different from normal optics?

Surface Flatness

Transmission

Building a Mach-Zehnder Interferometer

Learn how to assemble, align, and use a Mach-Zehnder Interferometer completely out of off-the-shelf products from Edmund Optics in this detailed guide.

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Clear Aperture (CA)

Laser

Laser Damage Threshold

愛特蒙特光學遍佈全球的製造工廠

愛特蒙特光學® (EO) 在全球的五座製造工廠,每年製造數百萬件精密光學元件和子配件。

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愛特蒙特光學的度量技術:將測量作為製造的關鍵要素

進一步瞭解愛特蒙特光學® 使用的度量技術,協助保證所有光學元件及組件的優異品質。

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Surface Quality

 
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