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Power-down synthesis for analog circuits including switch sizing

机译:模拟电路的掉电合成,包括开关尺寸

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In order to reduce the power consumption of a system-on-chip, analog circuits can be switched off when not needed with the help of power-down switches. The power-down synthesis task comprises the structural synthesis of the power-down circuitry and switch sizing. A first approach for automatic structural synthesis was published recently. This paper completes the power-down synthesis task by an effective, efficient and very easy sizing heuristic. An optimum size for the power-down switches is identified. The sizing approach is derived from exhaustive simulation results for three different amplifier circuits and a voltage-controlled ring oscillator. The variations in the power-on performance values, the power consumption during power-down mode, the power-on to power-down settling time and the power-down to power-on settling time are determined for different sizes of the power-down switches. From the simulation results, it can be concluded that the technology's minimal switch size can be chosen for the switches. This simple sizing step completes state-of-the-art power-down synthesis with the missing sizing step.
机译:为了降低片上系统的功耗,可以在不需要掉电开关的帮助下时关闭模拟电路。断电合成任务包括断电电路的结构合成和开关尺寸。最近公布了自动结构合成的第一种方法。本文通过有效,高效,更容易的调整启发式完成了折叠综合任务。识别出电源下开关的最佳尺寸。尺寸方法是针对三个不同放大器电路和电压控制环振荡器的详尽模拟结果导出。电源 - 下电模式下电源值的电源值,电源降低到电源下的稳定时间和断电到电源稳定时间的功耗是针对不同尺寸的断电的开关。从仿真结果中,可以得出结论,可以选择该技术的最小开关尺寸为开关。这种简单的尺寸步骤完成了缺少尺寸步骤的最先进的掉电合成。

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