The Delay, Energy, and Bandwidth Comparisons between Copper, Carbon Nanotube, and Optical Interconnects for Local and Global Wiring Application

Hoyeol Cho, Kyung-Hoae Koo, P. Kapur, K. Saraswat
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引用次数: 22

Abstract

The interconnect bottleneck presents a compelling reason to explore novel interconnect architectures. We compare two promising interconnects: carbon nanotube (CNT) and optical, with traditional Cu/low-K wires. We find that the optical wires yield the lowest latency and the highest bandwidth density. However, in terms of a system's top- down, novel, metric-bandwidth density per latency per power, CNTs can yield comparable performance to optical wires provided a certain mean free path and packing density is achieved. We quantify these technology parameters and also examine the impact of CNT diameter and bundle width on the performance comparison with Cu/low-K.
本地和全球布线应用中铜、碳纳米管和光互连的延迟、能量和带宽比较
互连瓶颈提出了一个令人信服的理由来探索新的互连架构。我们比较了两种有前途的互连:碳纳米管(CNT)和光学,与传统的Cu/低k导线。我们发现,光纤产生最低的延迟和最高的带宽密度。然而,就系统的自顶向下、新颖的、单位时延、单位功率的单位带宽密度而言,只要达到一定的平均自由程和封装密度,CNTs就可以产生与光纤相当的性能。我们量化了这些技术参数,并研究了碳纳米管直径和束宽对与Cu/低k性能比较的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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