• DocumentCode
    1346151
  • Title

    A study of the high frequency performance of thin film capacitors for electronic packaging

  • Author

    Chen, K.Y. ; Brown, William D. ; Schaper, Leonard W. ; Ang, Simon S. ; Naseem, Hameed A.

  • Author_Institution
    Texas Instrum. Inc., Dallas, TX, USA
  • Volume
    23
  • Issue
    2
  • fYear
    2000
  • fDate
    5/1/2000 12:00:00 AM
  • Firstpage
    293
  • Lastpage
    302
  • Abstract
    The provision of adequate decoupling capacitance in the power distribution system for integrated circuits (ICs) is an increasing concern. As clock rates and the IC gate density increase, discrete chip capacitors do not satisfy the decoupling requirements for high current switching at very high frequencies. Thin film capacitors not only exhibit better high frequency performance than discrete ceramic capacitors, but also provide the possibility for passive component integration. In this work, the high frequency performance of thin film capacitors was investigated using Maxwell Eminence, a high frequency structure simulator based on the finite element method. Good agreement between the calculated impedance and experimental results was obtained. At high frequencies, the performance of thin film capacitors is related to contact configurations, dielectric and metal layer thicknesses, and capacitor shapes. The influence of these factors on the impedance behavior was examined. Equivalent circuits of a thin film capacitor for use in a circuit simulator at high frequencies are discussed
  • Keywords
    capacitors; circuit simulation; equivalent circuits; finite element analysis; packaging; surface mount technology; IC gate density; Maxwell Eminence; capacitor shapes; clock rates; contact configurations; decoupling capacitance; discrete chip capacitors; electronic packaging; equivalent circuits; finite element method; high current switching; high frequency performance; high frequency structure simulator; impedance behavior; passive component integration; power distribution system; thin film capacitors; Capacitance; Capacitors; Ceramics; Clocks; Dielectric thin films; Frequency; Impedance; Power distribution; Thin film circuits; Transistors;
  • fLanguage
    English
  • Journal_Title
    Advanced Packaging, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1521-3323
  • Type

    jour

  • DOI
    10.1109/6040.846648
  • Filename
    846648