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25mm Dia., NIR Detection YAGLASS-T Filter

Near Infrared (NIR) Detection YAGLASS-T Filters

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Diameter (mm):
Stock #17-255 5-7 Days
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NT$15,365
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下載產品資料

物理和機械特性

Diameter (mm):
25.00 ±0.10
Thickness (mm):
3.00 ±0.10

光學特性

Substrate: Many glass manufacturers offer the same material characteristics under different trade names. Learn More
YAGLASS-T
Coating:
Uncoated
Index of Refraction (nd):
1.539
Peak Emission Wavelength (nm):
550, 660
Excitation Wavelength (nm):
900 - 1070
Damage Threshold, By Design: Damage threshold for optical components varies by substrate material and coating. Click here to learn more about this specification.
51 J/cm2 @ 1064nm, 10ns

性能

Minimum Sensitivity:
30 mW/mm2 @ 1064nm

材料特性

Transformation Temperature (°C):
584

Regulatory Compliance

RoHS:
Certificate of Conformance:

產品

Dia. (mm)  比較  庫存號碼  價格 Buy
12.50
25.00

詳細資料

  • 將近紅外光轉換為可見光
  • 在1064nm處發光轉換的最低靈敏度為 30mW/mm2
  • 是高功率應用中 雷射偵測卡 的理想替代品
  • 另外提供用於將 UV 轉化為可見光的螢光玻璃濾光片

近紅外(NIR)偵測 YAGLASS-T 濾光片將 900-1070nm 之間的近紅外(NIR)光轉換為 550 和 660nm 波段發出的可見光。這些摻有奈米晶體的玻璃濾光片在入射光1064nm 處發射可見光,發出的可見光低至 30mW/mm2 ,而不會出現光暈亦無需預先充電使用。玻璃的高透明度使得光束大小、形狀及模式清晰可見。近紅外偵測 YAGLASS-T 濾光片在 1064nm 、10ns 處具有 51 J/cm2 的高損傷閾值,使其成為近紅外高功率雷射(包括:Nd:YAG、 Nd:doped 以及 Yb:doped )應用中 雷射偵測卡 的理想替代品。近紅外偵測 YAGLASS-T 濾光片有標準的 12.5 和 25mm 直徑尺寸;若您的應用需要客製尺寸,請聯繫我們。

Technical Information

資源

Filter

Confocal Microscopy

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NIR (Near Infrared)

VIS/NIR Coating

選擇正確的紅外線(IR)正確材料

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Infrared (IR) Spectrum

使用短波通與長波通濾光片的製作自訂帶通濾光片

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Optical Filters Review

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濾光片鍍膜-傳統鍍膜和硬質濺鍍膜的比較

Confused about the differences between traditional-coated and hard-coated optical filters?

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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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Selecting Color Filter Glass for Life Science Applications

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Bandpass Filter

Bandwidth

Cavity

Dichroic Coating

Dichroic Filter

Filter, Colored Glass

Ripple

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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顯微鏡用螢光濾光片

想了解更多關於螢光顯微鏡用螢光濾光片的資訊嗎?在愛特蒙特光學了解更多資訊和庫存光學濾光片。

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光學濾光片

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機器視覺濾光的技術

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Manipulating Wavebands: Color & Filters

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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)

Cold Mirror

Full Width at Half Maximum (FWHM)

Interference Filter

Notch Filter

Peak Transmittance

Rugate Notch Filter

Shortpass Filter

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Cut-Off Wavelength

Cut-On Wavelength

Filter

Fluorescent Filter

Optical Density (OD)

Stopband

Optical Microscopy Application: Fluorescence

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

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Basic Principles of Raman Scattering and Spectroscopy

Raman spectroscopy is a technique used to identify the chemical composition of samples based on how light scatters off of them. Learn more & view related optics

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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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Removing Protective Plastic Coating

A protective plastic coating protects a variety of our flat optics, such as optical windows, optical mirrors, and beamsplitters, from scratches during shipping.

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Parallelism

Surface Flatness

How do I clean my optics?

Clear Aperture (CA)

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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

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