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- J A Anderson Associates Sales & Marketing Inc
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光电查为您提供20140个产品。下载资料,获取报价,实现功能、价格及供应的优化选择。
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基底材料: Ge 抗反射涂层: Coated, Uncoated 直径: 3-300mm 表面质量: 20-10 scratch-dig, 40-20 scratch-dig, 60-40 scratch-dig 表面平整度: lambda/2, lambda/4, lambda/6, lambda/8, lambda/10
锗(Ge)是8-12μm波段的高性能红外成像系统的优选透镜和窗口材料。由于其表面曲率较小,其高折射率使Ge成为低功率成像系统的理想选择。色差很小,通常不需要校正。锗较广泛地用于在2μm-12μm范围内工作的红外系统中的透镜和窗口。它的透射对温度非常敏感,在接近100°C时变得不透明。环境不会造成问题,因为锗是惰性的,机械坚固且相当坚硬。锗是一种高折射率材料,用于制造光谱学的衰减全反射(ATR)棱镜。其折射率使得锗在不需要涂层的情况下形成有效的自然50%分束器。它还广泛用作生产光学滤波器的衬底。锗覆盖了整个8-14微米热能带,并用于热成像的透镜系统中。它可以涂上金刚石,产生非常坚韧的前光学。应用于光谱仪和热成像中的窗口、透镜、分束器、ATR棱镜或滤光器。通过+86-1800331094|emailusgina@bz-optical.com联系我们|BZ-optical.com
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直径: 1.2mm 材料: N-BK7, FS, UVFS, CaF2, ZnSe, Ge, H-LAK54, H-ZLaF52, H-ZLaF50B, Borosilicate, S-NPH1, D-LaK6 有效焦距: 0.39mm 数值孔径: 0.55 波长范围: 1 - 1 nm
将Lightpath Technologies发展成为一家光学解决方案公司,是一家基于世界一流光学制造技术的完全集成的制造商和供应商,提供可见和红外光学元件和子系统。Lightpath Technologies将质量和客户满意度放在首位。我们重视您的业务,我们的目标是提供价格具有竞争力、质量一流的产品,以满足客户的技术和上市时间要求。
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基底材料: Ge, CaF2, IR Grade CaF2, MgF2, BaF2, Si 抗反射涂层: Coated, Uncoated 直径: 350mm 表面质量: 10-5 scratch-dig, 20-10 scratch-dig, 40-20 scratch-dig, 60-40 scratch-dig, 80-50 scratch-dig 表面平整度: lambda/20, lambda/10, lambda/8, lambda/6, lambda/4, lambda/2, 1 lambda, Lambda/40, Other
定制制造您的GE光学元件。https://sinoptix.fr/optical-components-showroom/ir-laser/
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基底材料: Ge 抗反射涂层: Coated, Uncoated 直径: 3~300mm 表面质量: 40-20 scratch-dig, 60-40 scratch-dig, 80-50 scratch-dig 表面平整度: Other, 1 lambda
锗窗口非常适合各种波长的红外应用,包括用于低功率CO2激光器。锗还具有低色散,是成像应用的理想选择。哪种类型的红外(IR)镜头SZLaser制造?锗(Ge)、硒化锌(ZnSe)、硅、硫化锌(ZnS)、氟化钙(CaF2)、BaF2请致电+86-755-8378 2881联系我们|Emailus sales@szlaser.com|www.szlaser.com
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棱镜材料: Calcite, a-BBO, YVO4, Custom 涂层: No Coating, AR Coating, MgF2, Custom 波长范围: 200 - 4000 nm 最大消光比: >= 10000:1, >= 3000:1, >= 1000:1 波前失真: <= Lambda/10,<= Lambda/6,<= Lambda/4
格兰公司的激光偏振器是由两个相同的双折射材料棱镜组装而成,并留有一定的空气间隙。偏振器是Glan Taylor型偏振器的改进,设计为在棱镜接合处具有较小的反射损失。具有两个逸出窗口的偏振器允许被拒绝的光束逸出偏振器,这使得它更适合于高能量激光器。与入口和出口面的表面质量相比,这些面的表面质量相对较差。没有为这些面指定划痕挖掘表面质量规范。
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材料: Custom 传输波长范围: 200 - 2500 nm 最大消光比: Not Available 波前失真: Not Specified 表面质量: 10-5 scratch-dig
Glan-Taylor设计产生具有低反射损耗和高功率处理能力的高消光比偏振器。因此,它对于偏振激光是特别有用的,其进一步的优点是没有透射偏差或偏移,并且可以偏振宽的光谱范围。Leysop提供GT型Glan-Taylor偏振器,孔径为10-20mm或更大,可特殊订购。侧面按标准进行精细研磨,足以分散内部反射偏振态。如有需要,可提供抛光的侧出口面,并建议用于所有高功率应用。标准界面角使偏振器适合于在宽波长范围内工作。可订购其他界面角,以满足方解石0.2-2.5µm全透射范围的要求。请注意,由于方解石中的吸收,大多数Glan-Taylor偏振器的透射率降低到350nm以下。主要光学表面在0.63µm处抛光至优于L/8的平整度。但请注意,由于方解石的弱点,侧面出口面不能抛光到同样的高规格。
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材料: Not Available 传输波长范围: 200 - 2500 nm 最大消光比: Not Available 波前失真: Not Specified 表面质量: 10-5 scratch-dig
Glan-Taylor设计产生具有低反射损耗和高功率处理能力的高消光比偏振器。因此,它对于偏振激光是特别有用的,其进一步的优点是没有透射偏差或偏移,并且可以偏振宽的光谱范围。Leysop提供GT型Glan-Taylor偏振器,孔径为10-20mm或更大,可特殊订购。侧面按标准进行精细研磨,足以分散内部反射偏振态。如有需要,可提供抛光的侧出口面,并建议用于所有高功率应用。标准界面角使偏振器适合于在宽波长范围内工作。可订购其他界面角,以满足方解石0.2-2.5µm全透射范围的要求。请注意,由于方解石中的吸收,大多数Glan-Taylor偏振器的透射率降低到350nm以下。主要光学表面在0.63µm处抛光至优于L/8的平整度。但请注意,由于方解石的弱点,侧面出射面不能抛光到同样的高规格。
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材料: Not Available 传输波长范围: 200 - 2500 nm 最大消光比: Not Available 波前失真: Not Specified 表面质量: 10-5 scratch-dig
Glan-Taylor设计产生具有低反射损耗和高功率处理能力的高消光比偏振器。因此,它对于偏振激光是特别有用的,进一步的优点是没有透射偏差或偏移,并且可以偏振宽的光谱范围。Leysop提供GT型Glan-Taylor偏振器,孔径为10-20mm或更大,可特殊订购。侧面按标准进行精细研磨,足以分散内部反射偏振态。如有需要,可提供抛光的侧出口面,并建议用于所有高功率应用。标准界面角使偏振器适合于在宽波长范围内工作。可订购其他界面角,以满足方解石0.2-2.5µm全透射范围的要求。请注意,由于方解石中的吸收,大多数Glan-Taylor偏振器的透射率降低到350nm以下。主要光学表面在0.63µm处抛光至优于L/8的平整度。但请注意,由于方解石的弱点,侧面出射面不能抛光到同样的高规格。
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材料: Calcite 传输波长范围: 250 - 2300 nm 最大消光比: >= 100,000:1 波前失真: Not Specified 表面质量: 10-5 scratch-dig, 20-10 scratch-dig, 40-20 scratch-dig, 60-40 scratch dig, 80-50 scratch-dig
Pike Technologies提供Glan-Taylor和Glan-Thompson UV-Vis偏振器,提供UV品质方解石的双折射特性优势。在Glan-Taylor偏振器中的两个直角方解石棱镜之间装配有空气界面,而在Glan-Thompson偏振器中的方解石棱镜由UV透明胶合剂隔开。在这两种类型中,偏振非常光线通过两个棱镜,普通光线被内部反射和吸收。