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Adaptive Pseudo Dual Keeper for Wide Fan-In Dynamic Circuits

机译:适用于宽扇入动态电路的自适应伪双保持器

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This brief presents a novel keeper technique for high-performance and high-noise-immunity wide fan-in dynamic circuits. Two major innovations are proposed, i.e., the adaptive pseudo dual keeper technique, which can either significantly reduce evaluation contention or maximize immediate noise immunity through a simple single keeper structure, and the diode-connected self-biasing circuit to minimize the static current of the adaptive pseudo dual keeper. Both these original design concepts help to achieve higher performance and lower power consumption while maintaining the high noise immunity. Several wide fan-in dynamic gates were designed using UMC 90-nm 1-V technology. Our simulation results demonstrate that using the proposed keeper technique, the 32-bit or gate and multiplexer can achieve delay reductions of at least 22% and 17.7%, respectively, for the same unity-gain direct-current noise (UGDN)-immunity requirement, as compared with conventional keeper techniques. Meanwhile, power dissipation is reduced by up to 55.3% due to the simple keeper structure and contention reduction. The simulations also show that circuits with the proposed keeper show small variations in delay and power consumption over a wide range of noise-immunity requirements, e.g., they vary by only 2.1% and 3.2% for a 32-bit multiplexer with 0.24- to 0.32-V UGDN levels.
机译:本简介介绍了一种用于高性能和高噪声免疫宽扇入动态电路的新型保持器技术。提出了两项​​主要的创新,即自适应伪双保持器技术,该技术可以通过简单的单保持器结构显着减少评估争用或最大化即时抗噪性,以及二极管连接的自偏置电路以最大程度地降低静态噪声。自适应伪双守门员。这两个原始设计概念都有助于在保持高抗噪性的同时实现更高的性能和更低的功耗。使用UMC 90-nm 1-V技术设计了几种宽扇入式动态门。我们的仿真结果表明,使用相同的保持器技术,对于相同的单位增益直流噪声(UGDN)免疫要求,32位或门与多路复用器可以分别实现至少22%和17.7%的延迟降低。 ,与传统的饲养员技术相比。同时,由于保持器结构简单和竞争减少,功耗降低了多达55.3%。仿真还表明,带有建议的保持器的电路在很宽的噪声抗扰性要求范围内,延迟和功耗变化很小,例如,对于0.24至0.32的32位多路复用器,它们仅变化2.1%和3.2% -V UGDN级别。

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