• DocumentCode
    3315980
  • Title

    Vortex-based spin transfer oscillator compact model for IC design

  • Author

    Locatelli, Nicolas ; Vodenicarevic, Damir ; Weisheng Zhao ; Klein, Jacques-Olivier ; Grollier, Julie ; Querlioz, Damien

  • Author_Institution
    Inst. d´Electron. Fondamentale, Univ. Paris-Sud, Orsay, France
  • fYear
    2015
  • fDate
    24-27 May 2015
  • Firstpage
    589
  • Lastpage
    592
  • Abstract
    Spintronic oscillators are nanodevices that are serious candidates for CMOS integration due to their compactness and easy frequency tunability. Among them vortex-based oscillators appear as one of the most promising technology because of their lower power supply and higher quality factors. To assess their potential in circuits and systems, compact models describing their behavior are necessary. In this work, we propose an implementation of a spintronic nano-oscillator (STNO) model for integrated circuit (IC) architectures design. The modeled device is a vortex-based magnetic oscillator demonstrating self-sustained magnetization oscillations under current bias, inducing alternating voltage across the device. This model describes the coupled electrical and magnetic behavior of the device, taking into account phase and amplitude noises associated with thermal fluctuations. Compatibility with commercial CMOS design kits is demonstrated, and an implementation in a CMOS circuit is proposed for AC signal generation. These results will allow to develop and evaluate innovative hybrid STNO/CMOS systems and their potential to efficiently complement existing full-CMOS technologies.
  • Keywords
    CMOS analogue integrated circuits; Q-factor; hybrid integrated circuits; integrated circuit design; integrated circuit modelling; integrated circuit noise; magnetoelectronics; oscillators; signal generators; vortices; AC signal generation; CMOS circuit; CMOS design kits; CMOS integration; IC architectures design; STNO model; alternating voltage; amplitude noises; current bias; frequency tunability; full-CMOS technologies; hybrid STNO-CMOS systems; integrated circuit; power supply; quality factors; self-sustained magnetization oscillations; spintronic nanooscillator; thermal fluctuations; vortex-based magnetic oscillator; vortex-based spin transfer oscillator compact model; CMOS integrated circuits; Integrated circuit modeling; Magnetic cores; Magnetic tunneling; Mathematical model; Oscillators; Semiconductor device modeling;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Circuits and Systems (ISCAS), 2015 IEEE International Symposium on
  • Conference_Location
    Lisbon
  • Type

    conf

  • DOI
    10.1109/ISCAS.2015.7168702
  • Filename
    7168702