高性能电气信号

W. Dally, Ming-Ju Edward Lee, F. An, J. Poulton, S. Tell
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引用次数: 19

摘要

本文综述了高性能电信号技术,介绍了目前的技术现状,并展望了未来的发展方向。我们已经证明了在数据速率为4Gb/s的CMOS集成电路之间的均衡电信号。随着技术的进步,决定信号速率的因素都在扩大,我们预计高性能电信号系统的数据速率将在摩尔定律曲线上提高。铜线的频率相关衰减设置了在给定数据速率下可以发出信号的距离的带宽距离平方(Bd/sup 2/)限制。均衡信道消除了由这种衰减引起的符号间干扰,并大大增加了信令距离。在完全均衡的极限下,距离最终受到接收机内热噪声的限制。在这个极限下,我们计算出一个4Gb/s的系统将能够在没有中继器的情况下运行超过100米的24号电缆。
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High-performance electrical signaling
This paper reviews the technology of high-performance electrical signaling, presents the current state of the art, and projects future directions. We have demonstrated equalized electrical signaling between CMOS integrated circuits at data rates of 4Gb/s. As the factors that determine this signaling rate all scale with improving technology we expect the data rates of high-performance electrical signaling systems to improve on a Moore's Law curve. The frequency-dependent attenuation of copper wires sets a bandwidth-distance squared (Bd/sup 2/) limit on the distance one can signal at a given data rate. Equalizing the channel cancels inter-symbol interference caused by this attenuation and greatly increases signaling distance. In the limit of perfect equalization, distance is ultimately limited by thermal noise in the receiver. At this limit, we calculate that a 4Gb/s system will be capable of operating over 100m of 24-gauge cable without repeaters.
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