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Semi-analytical current source modeling of near-threshold operating logic cells considering process variations

机译:考虑过程变化的近阈值操作逻辑单元的半分析电流源建模

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Operating circuits in the ultra-low voltage regime results in significantly lower power consumption but can also degrade the circuit performance. In addition, it leads to higher sensitivity to various sources of variability in VLSI circuits. This paper extends the current source modeling (CSM) technique, which has successfully been applied to VLSI circuits to achieve very high accuracy in timing analysis, to the near-threshold voltage regime. In particular, it shows how to combine non-linear analytical models and low-dimensionality CSM lookup tables to simultaneously achieve modeling accuracy, space and time efficiency, when performing CSM-based timing analysis of VLSI circuits operating in near-threshold regime and subject to process variability effects.
机译:在超低压状态下运行电路可显着降低功耗,但也会降低电路性能。另外,它导致对VLSI电路中各种可变性源的更高灵敏度。本文将电流源建模(CSM)技术扩展到了接近阈值电压范围,该技术已成功应用于VLSI电路,以在时序分析中实现非常高的精度。特别是,它显示了在执行以接近阈值状态运行的VLSI电路的基于CSM的时序分析时,如何结合非线性分析模型和低维CSM查找表以同时实现建模精度,空间和时间效率。过程可变性影响。

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