eo_logo
 
Product added to cart
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

180mm EFL MgF2 Coated, UV-NIR Corrected Triplet

×
Stock #64-840 5-7 Days
×
Quantity Selector - Use the plus and minus buttons to adjust the quantity. +
NT$91,525
Qty 1-5
NT$91,525
Qty 6+
NT$77,805
Volume Pricing
Request Quote
下載產品資料

Specifications

概況

Type:
Achromatic Triplet Lens

物理和機械特性

Clear Aperture CA (mm):
22.5
Housing Diameter (mm):
30.00 ±0.05
Housing Length (mm):
20.50 ±0.05

光學特性

Effective Focal Length EFL (mm):
180.00
Focal Length Tolerance (%):
±1.5 @ 248nm
Back Focal Length BFL (mm):
174.62
Back Focal Length BFL from Housing (mm):
172.3
Substrate: Many glass manufacturers offer the same material characteristics under different trade names. Learn More
CaF2 / Fused Silica / CaF2
Surface Quality:
60-40
f/#:
8.00
Numerical Aperture NA:
0.06
Coating:
MgF2 (193-1000nm)
Coating Specification:
MgF2 @ 600nm
Effective Focal Length EFL @ 248nm (mm):
180.00
Wavelength Range (nm):
193 - 1000

Regulatory Compliance

RoHS 2015:
Reach 205:
Certificate of Conformance:

產品概覽

  • 氟化鈣和UV熔融石英元素
  • 193nm到1000nm的廣波段顏色校正設計
  • 理想的螢光和光譜儀應用

我們的紫外線到近紅外線優化透鏡專為寬頻應用而設計,為 193nm 至 1000nm 波長的光線提供一致的焦距(請見下文了解色彩移位資訊)。這些無限共軛三片式透鏡採用高級氟化鈣和熔融石英製作而成,是使用廣泛波長光譜成像應用的理想選擇。典型應用包括所發射光線處於可見光和近紅外光譜的螢光研究,以及利用相同透鏡照亮激發材料並從中收集所激發光線的雙通系統。元件並未鍍膜,安裝於 30mm 直徑的鋁製外殼。我們也供應抗反射鍍膜,但將適用最低訂購數量限制。

提供完整規格資料資訊。

Technical Information

 
Effective Focal Length EFL 193 - 400nm 400 - 1000nm 193 - 1000nm
Chromatic Shift RMS Spot Size Chromatic Shift RMS Spot Size Chromatic Shift RMS Spot Size
36mm 1.8mm 240μm 0.4mm 214μm 2.2mm 268μm
45mm 1.1mm 88μm 0.3mm 69μm 1.3mm 95μm
90mm 2.0mm 64μm 0.6mm 38μm 2.5mm 69μm
135mm 1.6mm 49μm 0.6mm 31μm 2.1mm 51μm
180mm 1.4mm 46μm 0.6mm 28μm 1.9mm 45μm

Frequently Purchased Together

資源

Filter

抗反射 (AR) 鍍膜

抗反射 (AR) 鍍膜應用於光學元件,以提高吞吐量並減少背反射造成的傷害。

現在查看

光學鍍膜簡介

您是否正在尋找有關光學鍍膜的更多資訊?在愛特蒙特光學了解更多有關光學系統中使用的鍍膜的常見、定制和優點的資訊。

現在查看

Lens Geometry Performance Comparison

This comparison of the performance of aspheric, achromatic, and spherical PCX lenses in different situations reveals the ideal use cases for each type of lens.

現在查看

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.

現在查看

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

NIR (Near Infrared)

VIS/NIR Coating

Ultraviolet fatigue testing of laser optics

UV Optics: Tighter Tolerances and Different Materials

UV Lenses require extremely tight tolerances and novel materials such as sapphire. Learn more at Edmund Optics.

現在查看

Why Laser Damage Testing is Critical for UV Laser Applications

Laser Induced Damage Threshold describes the maximum quantity of laser radiation an optic can take before damaging. Learn more at Edmund Optics.

現在查看

Can BK7 be used for UV applications?

Ultraviolet (UV) Spectrum

Achrotech: achromat cost versus performance for conventional, diffractive, and GRIN components

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.

現在查看

Infrared (IR) Spectrum

Ultraviolet Lasers – TRENDING IN OPTICS: EPISODE 2

A new generation of compact, cost-effective ultraviolet (UV) lasers is allowing more applications to benefit from the increased precision of UV wavelengths.

現在查看

為什麼使用消色差透鏡?

想知道為什麼應該使用消色差透鏡嗎?在愛特蒙特光學了解有關消色差透鏡的更多信息,包括解剖結構、顯著特徵等

現在查看

Achromatic Lenses Review

Learn about EO's most popular family of optical lenses and discover if achromatic lenses are ideal for your next application.

現在查看

Microlithography

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.

現在查看

How is the location of the principal plane of a negative achromatic lens calculated?

Abbe-Number

Achromatic Lens

Crown Glass

Doubler Tube

Doublet Lens

Flint Glass

Hyperspectral and Multispectral Imaging

Are you trying to gauge depth of field in your imaging system? Take a closer look at this article on depth of field calculations at Edmund Optics.

現在查看

色散

色散是光的相速度或相位延遲對另一個參數(例如波長、傳播模式或偏振)的依賴性。

現在查看

Aspherized Achromatic Lens Review

Aspherized Achromatic Lenses, exclusive to Edmund Optics, are doublet lenses consisting of two cemented optical elements that are matched for their color-correction ability and small RMS spot size.

現在查看

Top Optics Trends of 2021 – TRENDING IN OPTICS: EPISODE 3

Several of the most interesting trends in optics and photonics of 2021 were the landing of the Perseverance Rover on Mars, Stemmed Mirrors, minimizing thermal lensing in ultrafast laser systems, and developments in ultraviolet lasers.

現在查看

What is the difference between the effective focal length and the back focal length?

Apochromatic

Back Focal Length (BFL)

Dispersion

Hybrid Molding

Sag

非球面消色差透鏡

Want an inside look at Aspherized Achromatic Lenses? Learn about the advantages, composition, and aspherized process at Edmund Optics.

現在查看

為什麼要選擇消色差柱面鏡?

爭論是否使用傳統柱面透鏡或消色差柱面透鏡?了解愛特蒙特光學消色差柱面透鏡的優點。

現在查看

像差如何影響機器視覺鏡頭

需要幫助理解像差理論嗎?了解一些基本概念,有助於闡明您對愛特蒙特光學的理解。

現在查看

The factory calibration of your UV-VIS-NIR Spectrometer only includes wavelength but not response (irradiance). I can measure raw data which is only usable for transmittance/reflectance measurements. How do I get irradiance measurements?

What is the difference between an inked lens and a non-inked one?

If I want to design with your lenses and lens assemblies, how do I get the information that I need?

Now that I have chosen my lens, how do I mount it?

Center Thickness (CT)

Chromatic Focal Shift

Conjugate Distance

Épaisseur de bord

Distance focale effective (EFL)

Finite/Finite Conjugate

How to Determine Magnification of an Optical Lens Setup

When doing basic imaging, how do you determine the magnification an optical lens will provide?

現在查看

Understanding Collimation to Determine Optical Lens Focal Length

Collimated light occurs when light rays travel parallel to each other.

現在查看

How to Form an Image with an Optical Lens Setup

Although a common misconception, individual optical lenses do not always form an image when the object plane is placed a focal length away from the lens.

現在查看

Modifying Stock Optics Tip #4: Add A Coating To A Stock Lens

Join Andrew Fisher, Manufacturing R&D Engineer at Edmund Optics, as he discusses some tips for modifying stock optical components to fit your application's needs.

現在查看

Irregularity

Radius of Curvature

BBAR Coating

Diopter

Anti-Reflection (AR) Coating

Bevel

Seamed Edge

Introduction to Basic Ray Optics

An understanding of refraction and basic ray optics is a critical foundation for understanding more complicated optical concepts and technologies.

現在查看

Transmission

How do I clean my optics?

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。

現在查看

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。

現在查看

Clear Aperture (CA)

Refraction

Surface Quality

The Benefits of Color-Corrected Optical Lenses

Color-corrected optical lenses are ideal for many applications because they reduce multiple aberrations. Learn more about the advantages at Edmund Optics.

現在查看
 
Sales & Expert Advice
1-800-363-1992
or view regional numbers
Easy-to-Use
QUOTE TOOL
enter stock numbers to begin
This site is protected by VikingCloud's Trusted Commerce program