• DocumentCode
    1684967
  • Title

    Qucs equation-defined and Verilog-A RF device models for harmonic balance circuit simulation

  • Author

    Brinson, Mike ; Kuznetsov, Vadim

  • Author_Institution
    Centre for Commun. Technol., London Metropolitan Univ., London, UK
  • fYear
    2015
  • Firstpage
    192
  • Lastpage
    197
  • Abstract
    This paper is concerned with the development and evaluation of a number of modelling techniques which improve Qucs Harmonic Balance simulation performance of RF compact device models. Although Qucs supports conventional SPICE semiconductor device models, whose static current/voltage and dynamic charge characteristics exhibit second and higher order derivatives may not be continuous, there is no guarantee that these will function without Harmonic Balance simulation convergence problems. The same comment also applies to a number of legacy compact semiconductor device models. The modelling of semiconductor devices centered on non-linear Equation-Defined Devices and blocks of Verilog-A code, combined with linear components, is introduced. These form a class of compact macromodel that has improved Harmonic Balance simulation performance. To illustrate the presented modelling techniques RF diode and bipolar junction transistor macromodels are described and their Harmonic Balance performance simulated with Qucs and Xyce©.
  • Keywords
    bipolar transistors; hardware description languages; semiconductor device models; semiconductor diodes; RF diode; Verilog-A RF device models; bipolar junction transistor macromodels; harmonic balance circuit simulation; non-linear equation-defined devices; semiconductor device models; Data models; Hardware design languages; Harmonic analysis; Integrated circuit modeling; Mathematical model; Radio frequency; Semiconductor diodes; Harmonic Balance RF simulation; Qucs; Xyce; compact semiconductor device modelling; equation-defined devices; macromodels;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Mixed Design of Integrated Circuits & Systems (MIXDES), 2015 22nd International Conference
  • Conference_Location
    Torun
  • Print_ISBN
    978-8-3635-7806-0
  • Type

    conf

  • DOI
    10.1109/MIXDES.2015.7208509
  • Filename
    7208509