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Beam extractor card for free-space optical backplanes

机译:用于自由空间光学背板的光束提取器卡

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Abstract: The fabrication of an interface card to extract free-space beams from an optical backplane and deliver them to either photodetectors on a printed circuit board or to fiber, is described. Experimental results are presented for polymer waveguides with 45 degree end reflectors and refractive polymer microlens arrays used in the fabrication of the card. Results for 1 by 4 and 4 by 4 prototypes which intercept 4 and 16 free-space beams, respectively, are also discussed. The 1 by 4 prototype extractor card coupled 4 free-space beams on 500 micrometer centers to direct-dispensed polymer waveguides with 45 degree end reflectors and finally to 100 micrometer core multimode fibers. Total throughput losses (free-space to fiber) for each of the four channels were 2.1, 2.4, 2.5, and 2.8 dB. In order to implement a fully connected 4 by 4 extractor card, laser-written waveguides were developed which have smaller cross-sections thereby allowing more channels and standard 62.5 micrometer core fiber to be used. The second prototype card intercepts 16 free-space beams in a 4 by 4 array (500 micrometer centers) and couples them into two sets of eight laser-written waveguides (50 by 50 micrometer cross-sections), which in turn are coupled to two multimode fiber ribbon cables with 62.5 micron cores on 250 micrometer centers. Total insertion losses from free-space to fiber ribbon are typically 4 - 5 dB. The refractive microlens arrays, which are used to focus the light onto the waveguide end-reflectors, are fabricated using an extremely simple direct- dispense technique which achieves excellent quality and uniformity. Experimental results are reported. !29
机译:摘要:描述了一种接口卡的制造,该接口卡用于从光学底板上提取自由空间光束并将其传输至印刷电路板上的光电检测器或光纤。给出了具有45度端反射器的聚合物波导和卡制造中使用的折射聚合物微透镜阵列的实验结果。还讨论了分别乘以4和16个自由空间光束的1×4和4×4原型的结果。 1×4原型提取卡将500微米中心的4个自由空间光束耦合到具有45度端反射器的直接分配聚合物波导,最后耦合到100微米纤芯多模光纤。四个通道中每个通道的总吞吐量损失(自由空间到光纤)分别为2.1、2.4、2.5和2.8 dB。为了实现完全连接的4 x 4抽取卡,已开发出激光写入的波导,该波导具有较小的横截面,从而允许使用更多的通道和标准的62.5微米纤芯光纤。第二张原型卡截取4 x 4阵列(500微米中心)中的16个自由空间光束,并将其耦合到两组八个激光写入的波导中(横截面50 x 50微米),然后依次耦合到两个在250微米中心具有62.5微米芯的多模光纤带状电缆。从自由空间到光纤带的总插入损耗通常为4-5 dB。折射微透镜阵列用于将光聚焦到波导端反射器上,是使用极其简单的直接分配技术制造的,该技术可实现出色的质量和均匀性。报告了实验结果。 !29

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