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Performance consideration of three-dimensional optoelectronic interconnection for intra-multichip-module clock signal distribution

机译:用于多芯片内部时钟信号分配的三维光电互连的性能考虑

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摘要

The structure, fabrication, and theory of a three-dimensional planarized optoelectronic clock signal distribution device, based on a thin light-guiding substrate in conjunction with a two-dimensional polymer holographic grating array, are described. We have demonstrated previously a 25-GHz 1-to-42 (6 x 7) highly parallel fan-out interconnect with a signal-to-noise ratio of 10 dB. We present theoretical research that focuses on generating a globally uniform fan-out distribution. An objective function aimed at equalizing the intensities among the fan-out beams is established. For an arbitrary M x N fan-out distribution, there are M + N + 1 sets of holograms needed to be recorded independently to provide the required equal fan-outs. The efficiency of each hologram is determined precisely. The angular misalignment, wavelength dispersion, and spot-size problems are discussed further, together with their tolerance requirements on the size of the photoreceivers integrated on the multichip modules. Employment of 0.25-pitch gradient index (GRIN) lenses as a collimator and as a focusing element is demonstrated experimentally. Optical beam profile manipulation and packaging tolerance are enhanced greatly with GRIN lenses. Finally, clock skew problems associated with the proposed system are discussed, and schemes to minimize the skew are proposed. (C) 1997 Optical Society of America.
机译:描述了基于薄光导衬底和二维聚合物全息光栅阵列的三维平面化光电时钟信号分配装置的结构,制造和理论。我们之前已经演示了一种25 GHz 1-to-42(6 x 7)高度并行的扇出互连,其信噪比为10 dB。我们目前进行的理论研究着重于生成全球统一的扇出分布。建立了旨在使扇出光束之间的强度相等的目标函数。对于任意的M x N扇出分布,需要独立记录M + N + 1套全息图,以提供所需的相等扇出。精确确定每个全息图的效率。进一步讨论了角度失准,波长色散和点尺寸问题,以及它们对集成在多芯片模块上的光接收器尺寸的公差要求。实验证明了采用0.25节距梯度指数(GRIN)透镜作为准直仪和聚焦元件。 GRIN透镜大大提高了光束轮廓处理和包装公差。最后,讨论了与提出的系统相关的时钟偏斜问题,并提出了最小化偏斜的方案。 (C)1997年美国眼镜学会。

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