• DocumentCode
    2889808
  • Title

    Thermal characterization of high-density interconnects: A methodolgy tested on a model coupon

  • Author

    Nakayama, Wataru ; Koizumi, Katsuhiro ; Fukue, Takashi ; Ishizuka, Masaru ; Nakajima, Tatsuya ; Ohta, Hiroko ; Matsuki, Ryuichi

  • Author_Institution
    ThermTech Int., Japan
  • fYear
    2010
  • fDate
    2-5 June 2010
  • Firstpage
    1
  • Lastpage
    12
  • Abstract
    The high-density interconnection substrate invariably poses enormous difficulty to thermal design analysts due to complex metal layout patterns embedded in the dielectric matrix. A modeling method is proposed, which produces effective thermal conductivity values for elements of the substrate under a specified boundary condition. A novel parameter, the indexed metal volume fraction, is employed to highlight the importance of contiguous metal elements in providing highly effective heat conduction paths. Also taken into account is the thermal coupling between metal elements through dielectric interstices. A model PCB that has a reasonable level of structural complexity is employed to validate the present modeling method. The benchmark is provided by the numerical analysis that is performed on the model without sacrificing any structural details. The prediction by the present method and the benchmark agree within a reasonable range, while the traditional method of estimating effective conductivities grossly under-predicts the temperature.
  • Keywords
    integrated circuit interconnections; printed circuit design; substrates; thermal analysis; thermal conductivity; PCB; boundary condition; contiguous metal elements; dielectric interstices; dielectric matrix; heat conduction; high-density interconnection substrate; indexed metal volume fraction; metal layout patterns; model coupon; numerical analysis; structural complexity; thermal characterization; thermal conductivity; thermal coupling; Dielectric substrates; Electronic mail; Electronic packaging thermal management; Space heating; Surface resistance; Testing; Thermal conductivity; Thermal engineering; Thermal factors; Thermal resistance; composites; effective thermal conductivity; heat conduction; high density interconnects; printed circuit board;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Thermal and Thermomechanical Phenomena in Electronic Systems (ITherm), 2010 12th IEEE Intersociety Conference on
  • Conference_Location
    Las Vegas, NV
  • ISSN
    1087-9870
  • Print_ISBN
    978-1-4244-5342-9
  • Electronic_ISBN
    1087-9870
  • Type

    conf

  • DOI
    10.1109/ITHERM.2010.5501402
  • Filename
    5501402