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40.4fJ/bit/mm low-swing on-chip signaling with self-resetting logic repeaters embedded within a mesh NoC in 45nm SOI CMOS

机译:具有自复位逻辑中继器的40.4fJ / bit / mm低摆幅片上信令,嵌入在45nm SOI CMOS的网状NoC中

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Mesh NoCs are the most widely-used fabric in high-performance many-core chips today. They are, however, becoming increasingly power-constrained with the higher on-chip bandwidth requirements of high-performance SoCs. In particular, the physical datapath of a mesh NoC consumes significant energy. Low-swing signaling circuit techniques can substantially reduce the NoC datapath energy, but existing low-swing circuits involve huge area footprints, unreliable signaling or considerable system overheads such as an additional supply voltage, so embedding them into a mesh datapath is not attractive. In this paper, we propose a novel low-swing signaling circuit, a self-resetting logic repeater, to meet these design challenges. The SRLR enables single-ended low-swing pulses to be asynchronously repeated, and hence, consumes less energy than differential, clocked low-swing signaling. To mitigate global process variations while delivering high energy efficiency, three circuit techniques are incorporated. Fabricated in 45nm SOI CMOS, our 10mm SRLR-based low-swing datapath achieves 6.83Gb/s/µm bandwidth density with 40.4fJ/bit/mm energy at 4.1Gb/s data rate at 0.8V.
机译:Mesh NoC是当今高性能多核芯片中使用最广泛的结构。但是,它们越来越受到高性能SoC对更高的片上带宽要求的功率限制。特别地,网状NoC的物理数据路径消耗大量能量。低摆幅信号电路技术可以大大降低NoC数据路径的能量,但是现有的低摆幅电路会占用巨大的空间,不可靠的信号传输或相当大的系统开销(例如额外的电源电压),因此将它们嵌入网状数据路径并不具有吸引力。在本文中,我们提出了一种新颖的低摆幅信号电路,一种自复位逻辑中继器,以应对这些设计挑战。 SRLR使单端低摆幅脉冲能够异步重复,因此比差分时钟低摆幅信号消耗的能量更少。为了在提供高能效的同时减轻全局工艺变化,并入了三种电路技术。我们的基于10mm SRLR的低摆幅数据路径采用45nm SOI CMOS制成,在0.8V的数据速率为4.1Gb / s的情况下,带宽密度为6.83Gb / s / µm,能量为40.4fJ / bit / mm。

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