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Experimental assessment of SU-8 optical waveguides buried in plastic substrate for optical interconnections

机译:SU-8埋在塑料基板中用于光互连的光波导的实验评估

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Multimode polymer waveguides have been developed to create low-cost, high-speed on-board optical interconnects. Buried optical waveguides made from SU-8 in a polymethyl methacrylate polymer (PMMA) substrate covered with a thin PMMA sheet are a low-cost option for electro-optical interconnects. The propagation losses for a 600 mu m x 600 mu m straight waveguide were 1.96, 1.32, and 1.39 dB/cm, respectively, at three different wavelengths (850, 1310, and 1550 nm). The bending loss for a 15 mm bending radius is as high as 6 dB/cm. Transition and radiation losses dominate overall loss when the bending radius is less than 30 mm. The waveguide was excited using a multimode 850 nm VCSEL transmitter and detected using butt-coupled and lens-coupled receivers. The coupling loss was about 1 dB for the butt-coupling technique and 2 dB for lens coupling. The response bandwidth and the group delay of direct modulated (IF) signal were independent of the channel waveguide for communication speeds up to more than 3 GHz. This technique is viable for low-cost, short-length buried optical waveguides. (C) 2015 Optical Society of America
机译:已经开发了多模聚合物波导来创建低成本,高速机载光学互连。在薄的PMMA片覆盖的聚甲基丙烯酸甲酯聚合物(PMMA)基板中,由SU-8制成的埋入式光波导是电光互连的低成本选择。在三个不同的波长(850、1310和1550 nm)下,600μmx 600μm直线波导的传播损耗分别为1.96、1.32和1.39 dB / cm。 15 mm弯曲半径的弯曲损耗高达6 dB / cm。当弯曲半径小于30 mm时,过渡损耗和辐射损耗占总损耗的比重。使用多模850 nm VCSEL发射器激发波导,并使用对接耦合和透镜耦合接收器进行检测。对接耦合技术的耦合损耗约为1 dB,透镜耦合的耦合损耗约为2 dB。对于高达3 GHz以上的通信速度,直接调制(IF)信号的响应带宽和群延迟与信道波导无关。该技术对于低成本,短长度的埋入式光波导是可行的。 (C)2015年美国眼镜学会

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