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Demonstration of Latency Reduction in Ultra-Short Distance Interconnections Using Optical Fanout

机译:演示使用光扇出的超短距离互连中的延迟减少

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In this paper, we present a hybrid optoelectronic system capable of improving the performance of short-distance broadcast architectures such as arrays of gates, cells, or processors. By incorporating a layer of the optical fanout in the electrical fanout link, we utilize the "electrical isolation" advantage of the optical interconnects in addition to the absence of the parasitics. Our proof-of-concept circuits show improved signal latency even for a small electrical fanout to 32 minimum-sized inverters, corresponding to an electrical link length of 200mum in a 0.25-mum technology. This is the first physical demonstration of the advantages of using optics in silicon very large scale integrated (VLSI) systems at these distances. We also demonstrate an advantage in the energy-delay-squared product for fanout to more than 250 minimum-sized inverters corresponding to a distance of 1.5 mm
机译:在本文中,我们提出了一种混合光电系统,该系统能够提高短距离广播架构(如门,单元或处理器的阵列)的性能。通过在电扇出链路中合并一层光扇出,我们除了消除了寄生外,还利用了光互连的“电隔离”优势。我们的概念验证电路即使对32个最小尺寸的逆变器进行小型电气扇出也显示出改善的信号等待时间,这对应于0.25微米技术中200微米的电气链路长度。这是在这些距离下在硅超大规模集成(VLSI)系统中使用光学器件的优势的首次物理演示。我们还展示了在能量延迟平方产品中的优势,可以扇出超过250个最小尺寸的逆变器,对应于1.5 mm的距离

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