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Optics for 261.4nm Lasers

Optics for 261.4nm Lasers

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  • Lenses, Mirrors, and Windows Designed for 261.4nm
  • High Damage Thresholds to Withstand High Energy UV Photons
  • Ideal for Use with the UVC Photonics Model 261 Laser
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25.4mm Dia., 6.35mm Thick, 261.4nm, λ/10 Fused Silica Window #19-737 재고정리 KRW 213,100   견적 요청  
  • 3~5일내 배송
    ×
 
25.4mm Dia. x 100mm FL, 261.4nm Coated, Laser Grade PCX Lens #19-739 재고정리 KRW 169,600   견적 요청  
  • 3~5일내 배송
    ×
 
25.4mm Dia. x 250mm FL, 261.4nm Coated, Laser Grade PCX Lens #19-740 재고정리 KRW 169,600   견적 요청  
  • 3~5일내 배송
    ×
 
25.4mm Dia. x 500mm FL, 261.4nm Coated, Laser Grade PCX Lens #19-741 재고정리 KRW 169,600   견적 요청  
  • 3~5일내 배송
    ×
 
25.4mm Dia. x 1000mm FL, 261.4nm Coated, Laser Grade PCX Lens #19-742 재고정리 KRW 169,600   견적 요청  
  • 3~5일내 배송
    ×
 
25.4mm Square x 50 FL, 261.4nm AR Coated, Laser Grade PCX Cylinder Lens #19-743 재고정리 KRW 208,700   견적 요청  
  • 3~5일내 배송
    ×
 
25.4mm Square x 100 FL, 261.4nm AR Coated, Laser Grade PCX Cylinder Lens #19-744 재고정리 KRW 208,700   견적 요청  
  • 3~5일내 배송
    ×
 
266nm CWL, 25mm Dia., Hard Coated OD 4.0 10nm Bandpass Filter #39-313 KRW 436,500 수량 6+ KRW 343,700   견적 요청  
  • 3~5일내 배송
    ×
 
1.5X, 266nm Vega® Nd:YAG Laser Line Beam Expander #12-872 KRW 511,900 수량 10+ KRW 449,500   견적 요청  
  • 3~5일내 배송
    ×
 
2X, 266nm Vega® Nd:YAG Laser Line Beam Expander #35-092 KRW 485,800 수량 10+ KRW 427,800   견적 요청  
  • 품절/문의요망
    ×
 
3X, 266nm Vega® Nd:YAG Laser Line Beam Expander #35-096 KRW 485,800 수량 10+ KRW 427,800   견적 요청  
  • 3~5일내 배송
    ×
 
5X, 266nm Vega® Nd:YAG Laser Line Beam Expander #35-100 KRW 623,500 수량 10+ KRW 551,000   견적 요청  
  • 3~5일내 배송
    ×
 
7X, 266nm Vega® Nd:YAG Laser Line Beam Expander #35-108 KRW 623,500 수량 10+ KRW 551,000   견적 요청  
  • 3~5일내 배송
    ×
 
10X, 266nm Vega® Nd:YAG Laser Line Beam Expander #35-114 KRW 645,300 수량 10+ KRW 565,500   견적 요청  
  • 3~5일내 배송
    ×
 
266nm Flat Top Beam Shaper | πShaper 6_6_266 #34-255 KRW 9,401,800 수량 5+ KRW 8,460,800   견적 요청  
  • 3~5일내 배송
    ×
 
266nm Flat Top Beam Shaper | πShaper 12_12_266_HP #15-498 KRW 13,896,800 수량 5+ KRW 12,507,700   견적 요청  
  • 품절/문의요망
    ×
 

Optics for 261.4nm Lasers are manufactured with tight surface tolerances and high laser damage thresholds to meet the demanding needs of UV laser systems. With lenses, mirrors, and windows designed for 261.4nm available, these optics provide a solution for beam focusing, beam steering, and protecting sensitive components. Optics designed for 266nm that work well at 261nm, including filters, beam expanders, and beam shaping optics, are also available along with UV detection and measurement products. Optics for 261.4nm Lasers are ideal for use with UV lasers, such as the UVC Photonics Model 261 Laser, in applications including UV disinfection systems, biomedical fluorescence, and UV Raman spectroscopy. Please contact us if your application requires a 261.4nm optical component with a custom size, geometry, or coating.

제목 제품 비교하기재고 번호  가격(부가세 별도) 구입하기
Laser Detection Card UV #55-214 KRW 137,800   견적 요청
  • 3~5일내 배송
    ×
Laser Detection Wand UV #55-293 KRW 253,800   견적 요청
  • 품절/문의요망
    ×
Bench Mounted Laser Detection Head UV #55-296 KRW 326,300   견적 요청
  • 3~5일내 배송
    ×
Filter

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

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광학 코팅 개론

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

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Understanding the most commonly used laser optics materials will allow for easy navigation of EO’s wide selection of laser optics components.

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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.

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Increasing the diameter of optical components reduces power or energy density in a system, reducing the likelihood of laser-induced damage in high-power...

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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.

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

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표면 품질 이해하기

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

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Anti-Reflection (AR) Coating

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

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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.

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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.

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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.

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레이저 광학 계측 기술

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

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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.

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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

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

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Clear Aperture (CA)

Laser

Laser Damage Threshold

Refraction

EO의 글로벌 제조 설비

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

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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.

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Surface Quality

 
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