首页> 外文会议>2010 International Conference on Electronic Devices, Systems and Applications >Ground bounce noise reduction of low leakage 1-bit nano-CMOS based full adder cells for mobile applications
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Ground bounce noise reduction of low leakage 1-bit nano-CMOS based full adder cells for mobile applications

机译:用于移动应用的基于低泄漏1位纳米CMOS的全加法器单元的地面反弹噪声降低

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As technology scales into the nanometer regime ground bounce noise and noise immunity are becoming important metric of comparable importance to leakage current, active power, delay and area for the analysis and design of complex arithmetic logic circuits. In this paper, low leakage 1bit full adder cells are proposed for mobile applications with low ground bounce noise and a novel technique has been introduced with improved staggered phase damping technique for further reduction in the peak of ground bounce noise. Noise immunity has been carefully considered since the significant threshold current of the low threshold voltage transition becomes more susceptible to noise. We introduced a new transistor resizing approach for 1bit full adder cells to determine the optimal sleep transistor size which reduce the leakage power and ground bounce noise. The simulation results depicts that the proposed design also leads to efficient 1bit full adder cells in terms of standby leakage power, active power, ground bounce noise and noise margin. We have performed simulations using Cadence Spectre 90nm standard CMOS technology at room temperature with supply voltage of 1V.
机译:随着技术的发展,纳米反弹噪声和抗扰性正变得越来越重要,在分析和设计复杂的算术逻辑电路时,其泄漏电流,有功功率,延迟和面积都具有与之相当的重要性。本文针对低地面反弹噪声的移动应用提出了低泄漏1bit全加法器单元,并引入了一种具有改进的交错相位阻尼技术的新技术,以进一步降低地面反弹噪声的峰值。由于低阈值电压转换的重要阈值电流变得对噪声更敏感,因此已经仔细考虑了抗噪声能力。我们针对1位全加法器单元引入了一种新的晶体管调整大小方法,以确定最佳的睡眠晶体管尺寸,从而减小了泄漏功率和接地反弹噪声。仿真结果表明,在待机泄漏功率,有功功率,接地反弹噪声和噪声容限方面,所提出的设计还产生了高效的1bit全加法器单元。我们已经在室温下使用Cadence Specter 90nm标准CMOS技术进行了仿真,电源电压为1V。

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