Performance and Energy Impact of Locally Controlled NML Circuits

Author:

Dingler Aaron1,Niemier Michael T.1,Hu Xiaobo Sharon1,Lent Evan1

Affiliation:

1. University of Notre Dame

Abstract

This article quantitatively considers the performance of nanomagnetic logic circuits within the context of realistic drive circuitry. We also demonstrate how one of the five fundamental tenets of digital logic---preventing unwanted feedback---can be satisfied by realistic drive circuitry. More specifically, different types of multiphase clocks are investigated and compared. Initial projections suggest that even with drive circuitry overhead, nanomagnet logic can outperform subthreshold CMOS in terms of energy delay product---and paths to lower power exist.

Funder

Division of Computing and Communication Foundations

Publisher

Association for Computing Machinery (ACM)

Subject

Electrical and Electronic Engineering,Hardware and Architecture,Software

Reference28 articles.

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4. Switching Energy of Ferromagnetic Logic Bits

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