DocumentCode :
50010
Title :
A Mechanism for the Crossing of Orthogonal Magnetic Wires in Multiferroic Nanomagnet Logic
Author :
Xiaokuo Yang ; Li Cai ; Bin Zhang ; Mingliang Zhang
Author_Institution :
Sci. Coll., Air Force Eng. Univ., Xian, China
Volume :
61
Issue :
2
fYear :
2014
fDate :
Feb. 2014
Firstpage :
487
Lastpage :
492
Abstract :
We report time division multiplexing-based seven-phase clocking mechanism for the crossing of magnetic wires by in-plane multiferroic nanomagnet logic (m-NML). By reasonably setting hold time and sequence of applied stress (or voltage), the proposed multiferroic clocking ensures correct signal propagation of two orthogonal m-NML wires (or paths). The effects of magnetostrictive layer thickness on required seven-phase clock period and strain are investigated. Accordingly, a link scheme between early four-phase clocking and proposed seven-phase multiferroic clocking is developed by compressing seven-phase clock period. Thus, exact computation synchronization and pipelining in the entire NML circuit have been implemented. Finally, power consumption in the proposed m-NML crossing is discussed. The result shows that the m-NML signal crossing can be achieved with an energy dissipation of only about 533 aJ.
Keywords :
logic gates; magnetic circuits; multiferroics; nanomagnetics; correct signal propagation; energy dissipation; four-phase clocking; hold time; in-plane multiferroic nanomagnet logic; m-NML signal crossing; magnetostrictive layer thickness; orthogonal m-NML wires; orthogonal magnetic wires; seven-phase clock period; seven-phase multiferroic clocking; time division multiplexing-based seven-phase clocking mechanism; Clocks; Magnetization; Magnetostriction; Stress; Switches; Wires; Clock period; crossing; energy dissipation; multiferroic nanomagnet logic (m-NML); stress;
fLanguage :
English
Journal_Title :
Electron Devices, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9383
Type :
jour
DOI :
10.1109/TED.2013.2296096
Filename :
6704307
Link To Document :
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