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Search Results for: 激光防护眼镜和激光安全护目镜 (310)

激光扩束镜

Laser beam expanders are critical for reducing power density, minimizing beam diameter at a distance, and minimizing focused laser spot size.

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反射式光学元件适用于激光应用

Beam Conditioning Optics for UV, IR, and Broadband Lasers

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适用于激光应用的高反射率反射镜

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

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2μm 激光器

The unique absorption properties of 2µm lasers allow them to create small and precise cuts for medical and materials processing applications

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如何准直激光系统

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

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高激光损伤AR镀膜

Laser optics high reflectivity mirrors meet exceptional specifications that Edmund Optics' competitors often fail to meet. Learn more at Edmund Optics.

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激光光学计量

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

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去除保护性塑料镀膜

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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荧光显微镜:内置了照明和滤光片用于成像

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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激光系统的关键参数

了解确保激光应用成功必须考虑的关键参数。将为这些参数建立通用术语。

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了解显微镜和物镜

Learn about the different components used to build a microscope, key concepts, and specifications at Edmund Optics.

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带有激光照明的荧光成像

Fluorescence imaging systems are composed of three major components, an illumination source, a photo-activated fluorophore sample, and detector.

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激光器谐振模

The length of a laser resonator determines the laser’s resonator modes, or the electric field distributions that cause a standing wave in the cavity.

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激光损伤阈值测试

Testing laser induced damage threshold (LIDT) is not standardized, so understanding how your optics were tested is critical for predicting performance.

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超快高色散反射镜

Pulse Compression and Dispersion Compensation for Ultrafast Lasers

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加固成像镜头

Not all ruggedized imaging lenses feature the same type of ruggedization. Learn about the advantages and disadvantages of each type at Edmund Optics.

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光学棱镜简介

Learn about the different types of optical prisms, their applications, and how to select the right prism for your specific system.

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4 大光学前沿

Advances in microscopy, imaging, and extreme ultraviolet optics

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分光镜介绍

Beamsplitters do exactly what their name implies: split incident light beams.

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电影镜头、流媒体时代和非球面透镜

Cinema lenses designed to create content tailored for online streaming utilize aspheres to shoot with a shallow depth of field while maintaining quality.

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超快激光的激光损伤阈值

The short pulse durations of ultrafast lasers make them interact with optical components differently, impacting the optic’s laser damage threshold.

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用于色散补偿的高色散超快反射镜

Learn how Highly-Dispersive Mirrors compensate for dispersion and compress pulse duration in ultrafast laser systems, which is critical for maximizing performance.

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常用激光光学材料

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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荧光团和光学滤光片以进行荧光显微

Want to know more about fluorophores and optical filters for fluorescence microscopy? Find out more information and in stock optical filters at Edmund Optics.

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加固成像镜头

Edmund Optics® manufactures several different types of ruggedized imaging lens assemblies.

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了解并指定激光元件的激光损伤阈值(LIDT)

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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如何校准单片扩束镜

Monolithic Reflective Beam Expanders are ideal for applications requiring broadband or achromatic beam expansion.

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选择合适的分光镜

Continuing from where Part I: X-Y Setup ends, learn how to add a Z-axis to an existing X-Y configuration to achieve three degrees of freedom.

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成像镜头的加固

Have an application in a demanding environment? Learn about the different types of ruggedization: industrial, ingress protection, and stability at Edmund Optics.

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Coherent® 激光器选择指南

Compare Coherent Laser specifications with the Edmund Optics selection guide.

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