• DocumentCode
    2524308
  • Title

    Scalable equivalent circuit PHEMT modelling using an EM-based parasitic network description

  • Author

    Resca, D. ; Santarelli, A. ; Raffo, A. ; Cignani, R. ; Vannini, G. ; Filicori, F.

  • Author_Institution
    Bologna Univ., Bologna
  • fYear
    2007
  • fDate
    8-10 Oct. 2007
  • Firstpage
    60
  • Lastpage
    63
  • Abstract
    Electron device modelling requires the accurate identification of a suitable parasitic network accounting for the passive structures which connect the intrinsic electron device to the external world. In conventional approaches, the parasitic network is described by a proper topology of lumped elements. As an alternative, a distributed description of the parasitic network can be conveniently adopted. In particular, the latter solution is the better choice when dealing with device scaling and very high operating frequencies. In this paper the parasitic network is described by means of a suitable distributed network identified through electromagnetic simulations of the device layout. It is shown how the adoption of a distributed instead of a lumped description leads to a more accurate equivalent-circuit-based electron device model. The good scalability properties of the approach are also presented through experimental results.
  • Keywords
    HEMT circuits; electromagnetic devices; equivalent circuits; transistor circuits; EM-based parasitic network description; PHEMT modelling; distributed network; electron device modelling; scalable equivalent circuit; Electromagnetic devices; Electromagnetic measurements; Electron devices; Equivalent circuits; Fingers; Foundries; Frequency; Integrated circuit modeling; PHEMTs; Scalability; Computer aided engineering; Index Terms; electromagnetic analysis; millimetre-wave FETs; semiconductor device modeling;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Microwave Integrated Circuit Conference, 2007. EuMIC 2007. European
  • Conference_Location
    Munich
  • Print_ISBN
    978-2-87487-002-6
  • Type

    conf

  • DOI
    10.1109/EMICC.2007.4412647
  • Filename
    4412647