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Multichannel optical link based on polymer multimode waveguides for board-level interchip communication

机译:基于聚合物多模波导的多通道光链路,用于板级芯片间通信

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This paper discusses technology development for integration of parallel optical interconnect on board-level. The interchip link is based on planar polymeric optical multimode waveguides and wafer-level out-of-plane coupling optics. Realized on-board waveguides feature low insertion loss with minimum attenuation coefficient of 0.024 dB/cm. Integration of polymeric waveguides on flexible substrate is shown since the realization of an overlay optical substrate enhances the yield and testability of the final hybrid electro-optical printed circuit board (EOPCB). The development of wafer-level coupling optics is described. This optics is based on a glass interposer with integrated waveguides (planar lightwave circuit PLC) and integrated micro-mirrors for light redirection. Passive alignment processes are incorporated for the assembly of optical and optoelectronic components, which enable precise and cost-effective fabrication.
机译:本文讨论了在板级集成并行光互连的技术开发。芯片间链接基于平面聚合物光学多模波导和晶圆级平面外耦合光学器件。实现的板载波导具有低插入损耗,最小衰减系数为0.024 dB / cm的特点。由于覆盖光学基板的实现提高了最终混合电光印刷电路板(EOPCB)的产量和可测试性,因此显示了聚合波导在柔性基板上的集成。描述了晶片级耦合光学器件的发展。该光学器件基于玻璃中介层,该中介层具有集成的波导(平面光波电路PLC)和集成的微镜,用于光重定向。集成了无源对准工艺以组装光学和光电组件,从而可以进行精确且经济高效的制造。

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