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Impact of Process Variation on Timing Characteristics of MTCMOS Flip-Flops for Low-Power Mobile Multimedia Applications

机译:过程变化对低功率移动多媒体应用MTCMOS触发器时序特性的影响

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摘要

In mobile multimedia applications, low power is a very important requirement for hardware systems. Reducing the standby power to a negligible level, multi-threshold CMOS (MTCMOS) has been accepted as one of the most effective circuit techniques for low power design of the mobile equipments. However, the aggressive technology scaling has increased process variation, which in turn has caused significant changes in system performance and behavior of the designed circuits. Thus, process variation affects not only the performance of the MTCMOS circuits but also the yield of MTCMOS SoCs today. Therefore, the investigation of the effect of process variation becomes more important than ever. This paper investigates representative MTCMOS flip-flop architectures in the timing sensitivity to process variation. To consider the impacts of process variation accurately, Monte-Carlo simulation was used and the results were compared in timing variability and yield. Also, this paper shows which process parameter gives the largest impact on timing variations of the MTCMOS flip-flops. In addition, the differences of timing variation characteristics under different technology nodes are presented. Finally, this paper investigates the usefulness of the conventional corner-based analysis on the MTCMOS flip-flops under the ultra deep submicron process technology today.
机译:在移动多媒体应用中,低功耗是硬件系统的一个非常重要的要求。将待机功率降低到可忽略的水平,多阈值CMOS(MTCMOS)被接受为移动设备低功耗设计中最有效的电路技术之一。然而,激进的技术缩放具有增加的过程变化,这反过来又导致了系统性能和设计电路行为的显着变化。因此,过程变化不仅影响MTCMOS电路的性能,而且影响了今天MTCMOS SoC的产量。因此,对过程变化的影响的调查比以往任何时候都变得更加重要。本文调查代表性MTCMOS触发器架构,以对处理变化的定时敏感性。要考虑精确的过程变化的影响,使用Monte-Carlo模拟,并在定时变异性和产量进行比较结果。此外,本文显示了哪个过程参数对MTCMOS触发器的定时变化产生了最大的影响。此外,提出了不同技术节点下定时变化特性的差异。最后,本文调查了当今超深亚微米工艺技术下MTCMOS触发器的基于MTCMOS触发器的实用性。

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