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LALM: a logic-aware layout methodology to enhance the noise immunity of domino circuits

机译:LALM:一种逻辑感知布局方法,可增强多米诺骨牌电路的抗噪能力

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The circuit performance is increasingly affected by signal integrity as cross-talk becomes more significant with scaling down of feature sizes. Many attempts have been made to improve noise immunity, but all require the sacrifice of speed as a tradeoff. In some circuits, P/G network is used as shielding wires to avoid cross-talk while maintaining the desired speed, but the use of the network is inherently restricted by electromigration, IR drop, Ldi/dt noise, etc. We propose a novel methodology at to enhance the noise immunity of domino circuits by reordering transistors as well as interconnects based on the functionality of the circuit. To the best of our knowledge, it is the first attempt to use the functionality of a circuit for the purpose of noise immunity enhancement. The methodology, named "Logic-Aware Layout Methodology" (LALM), uses several techniques that can be used to improve the signal integrity of domino circuits. Experimental results show that LALM is simple to apply yet useful in improving the noise immunity of domino circuits.
机译:随着串扰随着缩小特征尺寸而变得越来越重要,电路性能越来越受到信号完整性的影响。已经进行了许多尝试来改善抗扰度,但是所有这些都需要牺牲速度作为权衡。在某些电路中,P / G网络用作屏蔽线,以在保持所需速度的同时避免串扰,但是该网络的使用固有地受到电迁移,IR下降,Ldi / dt噪声等的限制。我们提出了一种新颖的方法通过重新排序晶体管以及基于电路功能的互连来增强多米诺骨牌电路的抗干扰性的方法论。据我们所知,这是为增强抗扰性而使用电路功能的首次尝试。该方法名为“逻辑感知布局方法”(LALM),使用了几种可用于改善多米诺电路的信号完整性的技术。实验结果表明,LALM易于应用,但对提高多米诺骨牌电路的抗噪性很有用。

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