• DocumentCode
    956972
  • Title

    A Broadband and Scalable On-Chip Inductor Model Appropriate for Operation Modes of Varying Substrate Resistivities

  • Author

    Guo, Jyh-Chyurn ; Tan, Teng-Yang

  • Author_Institution
    Nat. Chiao Tung Univ., Hsinchu
  • Volume
    54
  • Issue
    11
  • fYear
    2007
  • Firstpage
    3018
  • Lastpage
    3029
  • Abstract
    A broadband and scalable model is developed to accurately simulate on-chip inductors with various dimensions and substrate resistivities. The broadband accuracy is proven over frequencies of up to 20 GHz, even beyond resonance. A new scheme of resistance-inductance-capacitance networks is deployed for the spiral coils and substrate to account for 3-D eddy current, substrate return path, and spiral coil to substrate coupling effects. The 3-D eddy current is identified as the key element essential to accurately simulate the broadband characteristics. Electromagnetic simulation using the Advanced Design System momentum is conducted to predict the on-chip inductor performance corresponding to a wide range of substrate resistivities(PSi = 0.05-1 KOmega ldr cm) ldr Three operation modes such as transverse electromagnetic mode, slow-wave mode, and eddy current mode are reproduced. The model parameters manifest themselves as physics-based through relevant correlation with PSi over three operation modes. The onset of slow-wave mode can be consistently explained by a key element Rp introduced in our model, which accounts for the conductor loss due to an eddy current arising from magnetic field coupling through a substrate return path. This broadband and scalable model is useful for radio frequency circuit simulation. In addition, it can facilitate an optimum design of on-chip inductors through the physics-based model parameters relevant to varying substrate resistivities.
  • Keywords
    circuit simulation; coils; eddy currents; electrical resistivity; inductors; semiconductor device models; 3D eddy current; advanced design system; broadband inductor; electromagnetic simulation; magnetic field coupling; operation modes; radiofrequency circuit simulation; resistance-inductance-capacitance networks; scalable on-chip inductor; slow wave mode; spiral coil; substrate return path; transverse electromagnetic mode; varying substrate resistivities; Coils; Conductivity; Eddy currents; Electromagnetic induction; Frequency; Inductors; Predictive models; Resonance; Spirals; System-on-a-chip; Broadband; eddy current; inductor; scalable; substrate resistivity;
  • fLanguage
    English
  • Journal_Title
    Electron Devices, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9383
  • Type

    jour

  • DOI
    10.1109/TED.2007.907186
  • Filename
    4367598