mLogic ultra-low voltage non-volatile logic circuits using STT-MTJ devices
This paper introduces the design of logic circuits based exclusively on novel magnetoelectronic devices. Current signals are steered by 2x resistance change switching while operating with sub-100 mV voltage pulses for power and synchronization. The inherent memory of the devices results in fully pip...
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Published in | DAC Design Automation Conference 2012 pp. 486 - 491 |
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Main Authors | , , , |
Format | Conference Proceeding |
Language | English |
Published |
New York, NY, USA
ACM
03.06.2012
IEEE |
Series | ACM Conferences |
Subjects | |
Online Access | Get full text |
ISBN | 1450311997 9781450311991 |
ISSN | 0738-100X |
DOI | 10.1145/2228360.2228446 |
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Abstract | This paper introduces the design of logic circuits based exclusively on novel magnetoelectronic devices. Current signals are steered by 2x resistance change switching while operating with sub-100 mV voltage pulses for power and synchronization. The inherent memory of the devices results in fully pipelined nonvolatile logic. We demonstrate that co-optimization of the devices, circuits and logic can achieve ultra-low energy-per-operation for design examples. |
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AbstractList | This paper introduces the design of logic circuits based exclusively on novel magnetoelectronic devices. Current signals are steered by 2× resistance change switching while operating with sub-100 mV voltage pulses for power and synchronization. The inherent memory of the devices results in fully pipelined nonvolatile logic. We demonstrate that co-optimization of the devices, circuits and logic can achieve ultra-low energy-per-operation for design examples. This paper introduces the design of logic circuits based exclusively on novel magnetoelectronic devices. Current signals are steered by 2x resistance change switching while operating with sub-100 mV voltage pulses for power and synchronization. The inherent memory of the devices results in fully pipelined nonvolatile logic. We demonstrate that co-optimization of the devices, circuits and logic can achieve ultra-low energy-per-operation for design examples. |
Author | Bromberg, David Morris, Daniel Pileggi, Larry Zhu, Jian-Gang (Jimmy) |
Author_xml | – sequence: 1 givenname: Daniel surname: Morris fullname: Morris, Daniel organization: Carnegie Mellon University, Pittsburgh, PA – sequence: 2 givenname: David surname: Bromberg fullname: Bromberg, David organization: Carnegie Mellon University, Pittsburgh, PA – sequence: 3 givenname: Jian-Gang (Jimmy) surname: Zhu fullname: Zhu, Jian-Gang (Jimmy) organization: Carnegie Mellon University, Pittsburgh, PA – sequence: 4 givenname: Larry surname: Pileggi fullname: Pileggi, Larry organization: Carnegie Mellon University, Pittsburgh, PA |
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Keywords | emerging circuits and devices magnetic logic spintronics spin-transfer torque MRAM |
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Snippet | This paper introduces the design of logic circuits based exclusively on novel magnetoelectronic devices. Current signals are steered by 2x resistance change... This paper introduces the design of logic circuits based exclusively on novel magnetoelectronic devices. Current signals are steered by 2× resistance change... |
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StartPage | 486 |
SubjectTerms | Clocks CMOS integrated circuits Emerging Circuits and Devices Hardware -- Emerging technologies Logic gates Magnetic Logic Magnetic tunneling Magnetoelectronics MRAM Resistance Spin-Transfer Torque Spintronics Switches |
Subtitle | ultra-low voltage non-volatile logic circuits using STT-MTJ devices |
Title | mLogic |
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