## Abstract Reversible logic circuits can be synthesized hierarchically by dividing them into smaller, more manageable blocks. As all reversible circuits of a certain width __w__ form a group, this problem relates to the partitioning of a group into (double) cosets. In this article, we propose thre
Reconfigurable magnetoelectronic circuits for threshold logic
β Scribed by Nicholas P. Carter; Steve P. Ferrera
- Publisher
- John Wiley and Sons
- Year
- 2004
- Tongue
- English
- Weight
- 189 KB
- Volume
- 32
- Category
- Article
- ISSN
- 0098-9886
- DOI
- 10.1002/cta.286
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β¦ Synopsis
Abstract
Magnetoelectronic devices, which combine ferromagnetic materials with conventional silicon structures, offer the potential to add nonβvolatile storage to electronic systems, eliminating their vulnerability to data loss due to power supply interruptions. We present a set of circuits, based on the Hybrid Hall Effect device, that combine logic with nonβvolatile storage. These circuits can be configured on a cycleβbyβcycle basis to compute different functions of their inputs, store their outputs indefinitely even in the absence of system power, and can be easily integrated into CMOS systems to provide nonβvolatile operation without requiring additional supply voltages or other global signals. They exploit the properties of the Hybrid Hall Effect device to efficiently implement threshold logic functions and thereby reduce the number of gates required to implement most Boolean expressions.
In this paper, we describe our reconfigurable magnetoelectronic circuits and the interfaces that make them compatible with CMOS systems. The results presented are based on data from fabricated experimental devices, and we discuss how they can be expected to improve as devices scale to nanometer dimensions. Finally, we consider how magnetoelectronic circuits might be integrated into system designs to deliver high performance while tolerating power supply interruptions. Copyright Β© 2004 John Wiley & Sons, Ltd.
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