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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Design rules for highly parallel free-Space optical interconnects
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Design rules for highly parallel free-Space optical interconnects

机译:高度并行的自由空间光互连的设计规则

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摘要

Recently, a number of successful free-space chip-to-chip and board-to-board optical interconnects have been demonstrated. Here, we present some of the design rules that can be derived as a result of this work and also as a result of numerical and theoretical analyzes. We draw a number of conclusions. In the area of optoelectronic very large scale integration (VLSI) design, we suggest that differential electrical and optical transceiver designs provide the best performance. In the area of optical design, we present scaling and system partitioning laws for clustered optical relays and determine the interconnect distances at which microlens or macrolens systems are more suitable. We also show that the ease with which two modules can be aligned can be related to the optical invariant of the system and is, thus, a function of the size of the detector and the numerical aperture of the detector optics. Finally, we show that when multiple optical components must be aligned, very high individual component tolerances are required if the system as a whole is to have a high chance of success.
机译:近来,已经证明了许多成功的自由空间芯片对芯片和板对板光学互连。在这里,我们介绍了一些设计规则,这些规则可以从这项工作以及数值和理论分析中得出。我们得出一些结论。在光电超大规模集成(VLSI)设计领域,我们建议差分电气和光学收发器设计可提供最佳性能。在光学设计领域,我们提出了集群式光继电器的缩放和系统划分定律,并确定了微透镜或微透镜系统更适合的互连距离。我们还表明,两个模块对齐的难易程度可能与系统的光学不变性有关,因此,它取决于检测器尺寸和检测器光学器件的数值孔径。最后,我们表明,当必须对齐多个光学组件时,如果整个系统要有很大的成功机会,则需要很高的单个组件公差。

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