• DocumentCode
    1477312
  • Title

    Simplified phase noise model for negative-resistance oscillators and a comparison with feedback oscillator models

  • Author

    Everard, Jeremy ; Xu, Min ; Bale, Simon

  • Author_Institution
    Univ. of York, York, UK
  • Volume
    59
  • Issue
    3
  • fYear
    2012
  • fDate
    3/1/2012 12:00:00 AM
  • Firstpage
    382
  • Lastpage
    390
  • Abstract
    This paper describes a greatly simplified model for the prediction of phase noise in oscillators which use a negative resistance as the active element. It is based on a simple circuit consisting of the parallel addition of a noise current, a negative admittance/resistance, and a parallel (Q-limited) resonant circuit. The transfer function is calculated as a forward trans-resistance (VOUT/IIN) and then converted to power. The effect of limiting is incorporated by assuming that the phase noise element of the noise floor is kT/2, i.e., -177 dBm/Hz at room temperature. The result is the same as more complex analyses, but enables a simple, clear insight into the operation of oscillators. The phase noise for a given power in the resonator appears to be lower than in feedback oscillators. The reasons for this are explained. Simulation and experimental results are included.
  • Keywords
    electric admittance; integrated circuit noise; negative resistance circuits; oscillators; phase noise; transfer functions; feedback oscillator model; forward trans-resistance; negative admittance; negative-resistance oscillator; noise current; noise floor; parallel Q-limited resonant circuit; phase noise model; resonator; transfer function; Equations; Integrated circuit modeling; Mathematical model; Phase noise; Resistance;
  • fLanguage
    English
  • Journal_Title
    Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0885-3010
  • Type

    jour

  • DOI
    10.1109/TUFFC.2012.2207
  • Filename
    6174183