제품이 장바구니에 추가됨
TECHSPEC® components are designed, specified, or manufactured by Edmund Optics. TECHSPEC® 부품은 에드몬드 옵틱스가 설계, 사양 지정 및 제조하는 제품입니다. 더 알아보기

50mm Dia. 320 - 450nm Broadband λ/10 ZERODUR® Mirror

×
재고 번호 #24-019 품절/문의요망
×
Quantity Selector - Use the plus and minus buttons to adjust the quantity. +
KRW 527,800
수량 1-5
KRW 527,800
수량 6+
KRW 422,000
가격(부가세 별도)
견적 요청
제품 정보 다운로드

제품사양

General

Type:
Flat Mirror

Physical & Mechanical Properties

Diameter (mm):
50.00 +0.00/-0.20
Back Surface:
Commercial Polish
Bevel:
Protective bevel as needed
Clear Aperture (%):
90
Edges:
Ground
Parallelism (arcsec):
30
Thickness (mm):
5.00 ±0.20

Optical Properties

Surface Flatness (P-V):
λ/10
Substrate: Many glass manufacturers offer the same material characteristics under different trade names. Learn More
Surface Quality:
20-10
Coating Specification:
Ravg >98% @ 340 - 488nm (0°, All Polarizations)
Ravg >98% @ 320 - 450nm (45°, All Polarizations)
Ravg >99% @ 320 - 450nm (45°, S-Polarization)
Coating:
Dielectric Mirror (320-450nm)
Coating Type:
Dielectric
Angle of Incidence (°):
0-45
Wavelength Range (nm):
320 - 450
Damage Threshold, By Design: Damage threshold for optical components varies by substrate material and coating. Click here to learn more about this specification.
0.5 J/cm2 @ 355nm, 20ns, 20Hz

Material Properties

Coefficient of Thermal Expansion CTE (10-6/°C):
0.1

Regulatory Compliance

RoHS:
Certificate of Conformance:

제품설명

  • 열팽창이 거의 없는 ZERODUR® 기판
  • 금속 코팅보다 우수한 반사율 및 LDT 제공
  • 0 - 45° 입사각에서 사용할 수 있도록 설계된 자외선(UV), 가시광선(VIS) 및 근적외선(NIR) 반사 코팅
  • Metallic Coated ZERODUR® Mirror 보유

해당 제품은 넓은 파장 대역에서 반사율이 높고 열팽창 계수(CTE)가 0에 근접하므로 온도 변화가 광학 성능에 영향을 미칠 수 있는 레이저 어플리케이션에 적합합니다. ZERODUR® 기판은 열팽창 계수(CTE)가 ±0.10 x 10-6/°C로 용융 실리카 글래스와 같은 일반적인 글래스 타입보다 훨씬 낮습니다. 해당 제품은 0 - 45° 입사각 및 99% 이상의 평균 반사율을 고려한 코팅이 특징인 유전체 코팅 미러로 금속 코팅 미러보다 높은 반사율을 제공하여 에너지 손실을 줄임으로써 시스템 처리량을 증가시킵니다. 또한, 형광 현미경, 유세포 분석, 레이저 통신처럼 UV-NIR 스펙트럼을 사용하는 빔 스티어링 및 폴딩 어플리케이션에 적합합니다.

제품자료

관련제품

연계하여 사용 가능한 제품

호환 마운트

관련정보

Filter

레이저 부품의 LIDT 이해와 표기

Laser induced damage threshold (LIDT) denotes the maximum laser fluence an optical component can withstand with an acceptable amount of risk.

바로 보기

광학 코팅 개론

Optical coatings are used to influence the transmission, reflection, or polarization properties of an optical component.

바로 보기

Gaussian Beams Calculator

Understanding Surface Roughness

Surface roughness describes how a shape deviates from its ideal form. This is critical for controlling light scatter in laser devices and other optical systems.

바로 보기

Effects of Laser Mirror Surface Flatness

What is the difference between ¼ wave, 1/10 wave, and 1/20 wave mirrors?

Angle of Incidence(입사각)

Angle of Reflection(반사각)

Eccentricity(편심)

How do you measure the reflectivity of mirrors with a reflectivity less than 99.5%?

First Surface Mirror

Reflection

Specular

Parity

Bevel

Parallelism

Seamed Edge

금속 미러 코팅

Want to learn more about metallic mirror coatings? Find information about standard and custom metallic mirror coatings that are available at Edmund Optics.

바로 보기

Optical Mirror 리뷰

Mirrors are commonly used to fold or compact an optical system.

바로 보기

What is the difference between a first-surface and a second-surface mirror?

You specified a first surface mirror but you seem to have sold me a second surface mirror. What happened?

What is a seamed edge?

High Reflectivity Mirrors for Laser Applications

The industry standard method for quantifying reflectivity does not tell the whole story

바로 보기

Surface Flatness

고반사성 코팅

Highly reflective (HR) coatings are applied to optical components to minimize losses when reflecting lasers and other light sources.

바로 보기

High Power Laser Mirror의 취급 및 저장

Check out these best practices for handling and storing high power laser mirrors to decrease the risk of damage and increase lifetimes at Edmund Optics.

바로 보기

Optotune Beam Steering Mirrors Demonstration Video

Optotune Beam Steering Mirrors Demonstration Video

바로 보기

Spectroscopy and Optics: Laser mirrors: High reflectance is measured best with cavity ring-down spectroscopy

If CRDS is more accurate, why isn’t CRDS always used to measure the reflectivity of mirrors?

Clear Aperture (CA)

EO의 글로벌 제조 설비

Edmund Optics® (EO) manufactures millions of precision optical components and subassemblies every year in our 5 global manufacturing facilities.

바로 보기

에드몬드 옵틱스의 계측 기술: 핵심 부품 제조 시 계측 공정

Learn about the metrology that Edmund Optics® uses to guarantee the quality of all optical components and assemblies.

바로 보기

Surface Quality

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

How do I clean my mirrors?

How do I mount a mirror to a mirror mount that doesn't have a clamp or retainer ring?

Cold Mirror

Retroreflector

레이저 어플리케이션을 위한 REFLECTIVE OPTICS

Beam Conditioning Optics for UV, IR, and Broadband Lasers

바로 보기

Coating Impact on Flatness Calculator

Highly-Dispersive Mirrors

Ultrafast highly-dispersive mirrors are critical for pulse compression and dispersion compensation in ultrafast laser applications, improving system performance.

바로 보기

Free-Space Optical Communication

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

바로 보기

What is the difference between Protected Aluminum, Enhanced Aluminum, UV Enhanced Aluminum, Protected Gold, and Protected Silver?

Do you have mounts for square or rectangular optics?

LIDT 상에서 빔 직경의 중요성

The diameter of a laser highly affects an optic’s laser induced damage (LIDT) as beam diameter directly impacts the probability of laser damage.

바로 보기

How to Align a Laser System

Join Chris Williams as he briefly explains the basics of how to align a laser system onto a target.

바로 보기

The Hidden Effects of Optical Coating Stress

Dielectric Coating(유전체 코팅)

Ion-Beam Sputtering (IBS)

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.

바로 보기

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!

바로 보기

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.

바로 보기

Development of a Robust Laser Damage Threshold Testbed

Development of US national laser damage standard: 2020 status

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

바로 보기

보호용 플라스틱 코팅 제거

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

바로 보기

Is it possible to directly measure absorption or scatter?

LIDT 스펙의 불확실성

Laser induced damage threshold (LIDT) of optics is a statistical value influenced by defect density, the testing method, and fluctuations in the laser.

바로 보기

표면 품질 이해하기

The surface quality of optical components the scattering off of its surface, which is especially important in laser optics applications.

바로 보기

How do I clean my optics?

Different Types of LIDT Specifications

Not all optical components are tested for laser-induced damage threshold (LIDT) and testing methods differ, resulting in different types of LIDT specifications.

바로 보기

Key Parameters of a Laser System

Learn the key parameters that must be considered to ensure you laser application is successful. Common terminology will be established for these parameters.

바로 보기

Laser Damage Threshold 테스트

Do you need to integrate optical components into a laser system? Make sure you consider laser damage threshold before you do! Find out more at Edmund Optics.

바로 보기

레이저 광학 계측 기술

Metrology is critical for ensuring that optical components consistently meet their desired specifications, especially in laser applications.

바로 보기

Laser Polarization: The Importance of Polarization in Laser Applications

Understanding the polarization of laser light is critical for many applications, as polarization impacts reflectance, focusing the beam, and other key behaviors.

바로 보기

Laser Optics Lab Trailer

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

바로 보기

Introduction to Laser Optics Lab

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

바로 보기

Laser Optics Lab: Coatings

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

바로 보기

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.

바로 보기

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.

바로 보기

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.

바로 보기

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.

바로 보기

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?

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.

바로 보기

Laser

Laser Damage Threshold

 
영업 & 기술 지원
1-800-363-1992
본사 및 지사별 연락처 확인하기
빠른
견적 요청 도구
재고 번호 입력 필요
This site is protected by VikingCloud's Trusted Commerce program