• DocumentCode
    2586242
  • Title

    Prediction of the Influence of Induced Stresses in Silicon on CMOS Performance in a Cu-Through-Via Interconnect Technology

  • Author

    Okoro, Chukwudi ; Gonzalez, Mario ; Vandevelde, Bart ; Swinnen, Bart ; Eneman, Geert ; Verheyen, Peter ; Beyne, Eric ; Vandepitte, Dirk

  • Author_Institution
    IMEC, Leuven
  • fYear
    2007
  • fDate
    16-18 April 2007
  • Firstpage
    1
  • Lastpage
    7
  • Abstract
    One approach to 3D chip stacking and integration is to process filled Cu-vias into the Si and to attach them to a next level die by means of thermocompression bonding. This results in induced stresses in the silicon due to the large CTE disparity between copper and silicon, and also from the force applied during thermocompression bonding. These stresses can have an impact on the performance of the transistors and may as well result in die fracture. This paper studies these stresses through Finite Element modeling. We found that the keep-away- zone of the transistors from the copper via where transistor performance is impacted by the through-Si interconnect proximity, is proportional to the via diameter. The bonding temperature is found to be the main cause for the induced stresses during the thermocompression bonding process. The induced stresses in silicon decrease with decreasing the silicon thickness.
  • Keywords
    CMOS integrated circuits; copper; finite element analysis; integrated circuit interconnections; silicon; tape automated bonding; 3D chip stacking; Cu; Si; bonding temperature; copper-through-via interconnect technology; die fracture; finite element modeling; induced stress; silicon; silicon-on-CMOS performance; thermocompression bonding process; through-silicon interconnect proximity; transistors; Bonding forces; Bonding processes; CMOS technology; Copper; Finite element methods; Silicon; Stacking; Temperature; Thermal force; Thermal stresses;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Thermal, Mechanical and Multi-Physics Simulation Experiments in Microelectronics and Micro-Systems, 2007. EuroSime 2007. International Conference on
  • Conference_Location
    London
  • Print_ISBN
    1-4244-1105-X
  • Electronic_ISBN
    1-4244-1106-8
  • Type

    conf

  • DOI
    10.1109/ESIME.2007.360030
  • Filename
    4201197