• DocumentCode
    1146330
  • Title

    On the applicability of the self-linearization technique for linearizing real PN junction based circuits

  • Author

    Bruck, Yu. ; Haridim, M. ; Gavan, Jacob

  • Author_Institution
    IBM Labs., Haifa Univ., Israel
  • Volume
    50
  • Issue
    1
  • fYear
    2003
  • Firstpage
    89
  • Lastpage
    97
  • Abstract
    New theoretical and experimental results pertaining to the self-linearization phenomenon are presented. The possibility of linearizing the U-I characteristics of a real PN junction by means of only one linear resistance is investigated. The effect of the junction diffusion capacitance is also investigated. A highly accurate approximation for the frequency-dependent coefficients of the first, second, and third harmonics is developed. Dual series and parallel linearizing circuits are theoretically analyzed and experimentally tested. The results show that the third-order and all even-order nonlinearities are suppressed. Measurements of DC U-I characteristics and high-frequency spectra of linearized (to the fifth order) PN junction based circuits of both series and parallel configurations are presented. The linearity is enhanced by a factor exceeding 40 dB. The presented principle and circuits can be applied to both discrete and integrated circuits. At present, this linearization phenomenon seems to be a rather promising method.
  • Keywords
    Schottky diodes; capacitance; harmonics; intermodulation; linear network synthesis; linearisation techniques; nonlinear distortion; p-n junctions; U-I characteristics; discrete circuits; frequency-dependent coefficients; harmonics; integrated circuits; intermodulation; junction diffusion capacitance; linear amplifier; linear switch; linearization phenomenon; nonlinear distortion; parallel configurations; real p-n junction based circuits; self-linearization technique; series configurations; Capacitance; Circuit analysis; Circuit testing; Communication switching; Frequency; Integrated circuit measurements; Jacobian matrices; Linearity; Nonlinear circuits; Switches;
  • fLanguage
    English
  • Journal_Title
    Circuits and Systems I: Fundamental Theory and Applications, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1057-7122
  • Type

    jour

  • DOI
    10.1109/TCSI.2002.807506
  • Filename
    1179152