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High Speed, High Stability and Low Power Sensing Amplifier for MTJ/CMOS Hybrid Logic Circuits

IEEE Transactions on Magnetics · 2009 · Vol. 45(10) · pp. 3784–3787
Weisheng ZhaoC. ChappertVirgile JaverliacJ.-P. Noziere

Abstract

Densely embedding Magnetic Tunnel Junctions (MTJ) in CMOS logic circuits is considered as one potentially powerful solution to bring non volatility, instant on/off and low standby power in today's programmable logic circuits, in order to overcome major drawbacks while preserving high operation speed. A critical issue in this process is the integration of MTJ electric signal to CMOS electronics, in particular the requirement of ldquozerordquo read/write error for logic applications. In this paper, we propose a new sense amplifier circuit, called Pre-Charge Sense Amplifier (PCSA). This circuit, comprising 7 CMOS transistors at minimum size, is able to read the magnetic configuration of a pair of magnetic tunnel junctions with opposite configurations at high speed (about 200 ps), with very low power and error rate compared to previously proposed solutions. Simulations using a ST Microelectronics 90 nm design kit and a compact model of MTJ demonstrate the performances of PCSA.

Magnetic properties of thin filmsMagnetic Field Sensors TechniquesQuantum and electron transport phenomenaCMOSElectronic circuitPass transistor logicElectrical engineeringAmplifierIntegrated injection logicComputer scienceTransistorLogic gateAdiabatic circuit
Citations
361
FWCI
9.76
field-weighted impact
References
22
Percentile
99%
vs. same field & year
Citations per year
References
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IEEE Transactions on Magnetics · 2005 · 472 citations
Magnetic Tunnel Junctions for Spintronic Memories and Beyond
IEEE Transactions on Electron Devices · 2007 · 516 citations
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