首页> 外文期刊>IEEE transactions on very large scale integration (VLSI) systems >Process/Voltage/Temperature-Variation-Aware Design and Comparative Study of Transition-Detector-Based Error-Detecting Latches for Timing-Error-Resilient Pipelined Systems
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Process/Voltage/Temperature-Variation-Aware Design and Comparative Study of Transition-Detector-Based Error-Detecting Latches for Timing-Error-Resilient Pipelined Systems

机译:过程/电压/温度变化感知设计以及基于时序检测器弹性流水线系统的基于过渡检测器的错误检测锁存器的比较研究

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Among timing-error-detecting registers, the transition-detector-based error-detecting latch (TD-EDL) is regarded as the most lightweight design. To realize a truly variation-resilient system, a TD-EDL should be designed to be robust across all process/voltage/temperature (PVT) corners. In particular, its detection window deviation must be carefully compensated for an accurate detection. It must also be small, as well as power and energy efficient, to prevent excessive overheads. This paper carefully redesigned several conventional TDs in 28-nm CMOS process, and postlayout simulations were performed to examine the pros and cons of the TDs. According to the characteristics of each TD, the transistor sizing methods were explored to achieve PVT-variation-aware designs. The redesigned TDs were then used to construct TD-EDLs, for which the causes of detection window deviation were examined and improved upon. The timing characteristics that affect the correct function and appropriate responses were discussed, and the area overhead, timing performance, power consumption, and voltage scalability of the TD-EDLs were evaluated and compared.
机译:在时序错误检测寄存器中,基于过渡检测器的错误检测锁存器(TD-EDL)被认为是最轻巧的设计。为了实现真正的抗变化的系统,TD-EDL应该设计为在所有过程/电压/温度(PVT)角上均具有稳健性。特别是,必须仔细补偿其检测窗口偏差以进行精确检测。它还必须很小,并且在功率和能源效率上要好,以防止过多的开销。本文仔细地重新设计了几种采用28nm CMOS工艺的传统TD,并进行了后布局仿真以检验TD的优缺点。根据每个TD的特性,探索了晶体管的尺寸确定方法,以实现PVT变化感知设计。然后将重新设计的TD用于构建TD-EDL,为此对检测窗口偏差的原因进行了检查并加以改进。讨论了影响正确功能和适当响应的时序特性,并对TD-EDL的面积开销,时序性能,功耗和电压可扩展性进行了评估和比较。

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