过渡偏斜编码:一种用于全局片上互连的功率和面积高效编码技术

Charbel J. Akl, M. Bayoumi
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引用次数: 12

摘要

随着技术向亚微米深度发展,全球信号传输变得越来越具有挑战性。我们提出了一种新的总线编码技术,过渡倾斜编码,针对许多全球互连的挑战,如串扰,峰值能量和电流,开关和泄漏功率,中继器面积,布线面积,信号完整性和噪声。使用90nm库在不同总线长度上进行了模拟。对中继器的尺寸和间距进行了优化,并将所提出的编码总线与标准总线和每两根导线之间插入屏蔽的总线进行了比较。对编码和解码延迟进行了分析。仿真结果表明,过渡偏斜编码在能量和面积方面是有效的,并且编码和解码延迟开销很小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transition Skew Coding: A Power and Area Efficient Encoding Technique for Global On-Chip Interconnects
Global signaling is becoming more and more challenging as technology scales down toward the deep submicron. We propose a new bus encoding technique, transition skew coding, that targets many of the global interconnects challenges such as crosstalk, peak energy and current, switching and leakage power, repeaters area, wiring area, signal integrity and noise. Simulations are done on different bus lengths using a 90nm library. Repeaters sizing and spacing are optimized, and the proposed encoded bus is compared against a standard bus and a bus with shields inserted between every two wires. The encoding and decoding latencies are also analyzed. Simulations show that transition skew coding is efficient in terms of energy and area with low encoding and decoding latency overhead.
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