首页> 外文会议>Quality Electronic Design (ISQED), 2010 >Skew analysis and bounded skew constraint methodology for rotary clocking technology
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Skew analysis and bounded skew constraint methodology for rotary clocking technology

机译:旋转时钟技术的时滞分析和有界时滞约束方法

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The square wave generated from the rotary operation with adiabatic switching is a continuously traveling wave, which provides multiple phases of the clock signal on the rotary ring. Recent research in the design automation of rotary clocking implementation has adopted some simplifications of the phase assignments for scalability. Towards this end, the design techniques, employed in conventional IC flows, can be employed for rotary clock automation as well. In this work, a timing framework is developed and skew analysis is presented for the rotary clocking technology to observe the effects of certain design simplifications in timing automation. Further, a methodology is presented to achieve a bounded skew implementation for rotary clocking technology. Experiments performed on R1-R5 benchmark circuits show a negligible increase in wirelength (around 1.25%) for the bounded skew constraint implementation with a 3.5% skew bound, where as, without the bounded skew, overall skew would be 5.5%.
机译:由绝热切换的旋转操作产生的方波是连续传播的波,它在旋转环上提供时钟信号的多个相位。旋转时钟实现的设计自动化的最新研究已经采用了相位分配的一些简化,以实现可伸缩性。为此,常规IC流程中采用的设计技术也可以用于旋转时钟自动化。在这项工作中,开发了一个时序框架,并为旋转时钟技术提出了偏斜分析,以观察时序自动化中某些设计简化的影响。此外,提出了一种用于实现旋转时钟技术的有界偏斜实现的方法。在R1-R5基准电路上进行的实验表明,对于带有3.5%偏斜约束的有界斜约束实施而言,线长的增加可忽略不计(约1.25%),而如果没有有界斜,则总歪斜将为5.5%。

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