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Design, implementation, and characterization of a hybrid optical interconnect for a four-stage free-space optical backplane demonstrator

机译:四级自由空间光背板演示器的混合光互连的设计,实现和特性

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A four-stage unidirectional ring free-space optical interconnect system was designed, analyzed, implemented, and characterized. The optical system was used within a complementary metal-oxide semiconductor-self-electro-optic-effect-device-based optical backplane demonstrator that was designed to fit into a standard VME chassis. This optical interconnect was a hybrid microlens-macrolens system, in which the microlens relays were arranged in a maximum lens-to-waist configuration to route the optical beams from the optical power supply to the transceiver arrays, while the macrolens optical relays were arranged in a telecentric configuration to route optical signal beams from stage to stage. The following aspects of the optical system design are discussed: the optical parameters for the hybrid optical system, the image mapping of the two-dimensional array of optical beams from stage to stage, the alignment tolerance of the hybrid relay system, and the power budget of the overall optical interconnect. The implementation of the optical system, including the characterization of optical components, subsystem prealignment, and final system assembly, is presented. The two-dimensional array of beams for the stage-to-stage interconnect was adjusted with a rotational error of < 0.05 degrees and a lateral offset error of < 3.5 mu m. The measured throughput is in goad agreement with the lower-bound predictions obtained in the theoretical results, with an optical power throughput of -20.2 dB from the fiber input of the optical power supply to the modulator array and -25.5 dB from the fiber input to the detector plane. (C) 1998 Optical Society of America. [References: 35]
机译:设计,分析,实现和表征了四级单向环形自由空间光互连系统。该光学系统用于基于互补金属氧化物半导体自电光效应器件的光学背板演示器中,该演示器被设计为适合标准VME机箱。这种光学互连是微透镜-微透镜的混合系统,其中微透镜继电器以最大的透镜到腰的配置进行布置,以将光束从光电源路由到收发器阵列,而将大透镜光继电器布置在一种远心配置,可将光信号束从一个级传送到另一个级。讨论了光学系统设计的以下几个方面:混合光学系统的光学参数,各级光束的二维阵列的图像映射,混合中继系统的对准公差以及功率预算整个光学互连的数量。介绍了光学系统的实现,包括光学组件的表征,子系统预对准和最终系统组装。用于级到级互连的二维光束阵列的旋转误差<0.05度,横向偏移误差<3.5μm。测得的吞吐量与理论结果中获得的下限预测一致,从光电源的光纤输入到调制器阵列的光功率吞吐量为-20.2 dB,从光纤输入到调制器阵列的光功率吞吐量为-25.5 dB。探测器平面。 (C)1998年美国眼镜学会。 [参考:35]

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