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Cost-effective integration of plastic optical fiber and total internal reflection mirrors in printed circuit boards for parallel optical interconnects

机译:塑料光纤和全内反射镜在印刷电路板中的经济高效集成,用于并行光学互连

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摘要

A novel method of integrating a total internal reflection (TIR) mirror into an optical waveguide embedded in a printed circuit board (PCB) was demonstrated for application in chip-to-chip optical interconnects. Plastic optical fiber (POF) was placed into channels that were mechanically machined into FR-4 composite plates. The TIR mirror was created by a second mechanical machining. The mirror loss was measured to be approximately −1.6 dB per reflection. The use of POF resulted in attenuation losses in the waveguide over an order of magnitude lower than what is obtainable with typical planar waveguides that are integrated into PCBs. Monte Carlo ray tracing was used to determine the theoretical efficiency of the system as well as cross talk between channels due to optical device alignment tolerances.
机译:演示了一种将全内反射(TIR)镜集成到嵌入在印刷电路板(PCB)中的光波导中的新颖方法,该方法可用于芯片到芯片的光学互连中。将塑料光纤(POF)放入机械加工成FR-4复合板的通道中。 TIR反射镜是通过第二次机械加工制成的。每次反射的镜面损耗约为-1.6 −dB。 POF的使用导致波导中的衰减损耗比集成在PCB中的典型平面波导所能获得的衰减损耗低一个数量级。蒙特卡洛射线追踪用于确定系统的理论效率以及由于光学设备对准公差而导致的通道间串扰。

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