• DocumentCode
    667949
  • Title

    3D integration of standard integrated circuits

  • Author

    Puschmann, Rene ; Bottcher, M. ; Bartusseck, Irene ; Windrich, Frank ; Fiedler, C. ; John, P. ; Manier, Charles ; Zoschke, K. ; Grafe, Juergen ; Oppermann, H. ; Wolf, M.J. ; Lang, K.D. ; Ziesmann, Michael

  • Author_Institution
    Fraunhofer IZM-ASSID, Moritzburg, Germany
  • fYear
    2013
  • fDate
    2-4 Oct. 2013
  • Firstpage
    1
  • Lastpage
    7
  • Abstract
    In this paper we present the process and electrical results of a 3D integration using through silicon vias (TSV). A flash memory chip has been directly connected to a processor die. The TSVs have been applied from the wafer front-side into a fully processed advanced CMOS 300 mm wafers using a via last approach. After dry etching the 20 by 107 μm holes into the substrate an isolation and barrier seed films are deposited and then filled with copper. The electrical connection between the pad level of the processor chips and the interface to the external connections is realized with a two level redistribution wiring. Subsequently the wafer is flipped, temporary bonded to a carrier wafer, thinned and the TSVs are connected from the wafer backside. Finally the flash chips are assembled to the controller die using a die-to-wafer (D2W) technique. Electrical tests have been conducted and a high yield after TSV processing and assembly determined. The isolation properties and electrical resistance was measured. The linear current in stress transistors was used to define a keep out zone.
  • Keywords
    CMOS integrated circuits; etching; flash memories; integrated circuit interconnections; isolation technology; microassembling; microprocessor chips; three-dimensional integrated circuits; 3D integrated circuit; CMOS wafer; TSV assembly; TSV processing; barrier seed film; die-to-wafer technique; dry etching; electrical connection; external connection; flash chips; flash memory chip; isolation film; level redistribution wiring; processor chips; processor die; size 300 mm; standard integrated circuit; through silicon via; via last approach; wafer backside; wafer front side; Assembly; Copper; Resistance; Silicon; Substrates; Three-dimensional displays; Through-silicon vias; 3D IC process; 3D mechanical stress analyses; 3D technology; TSV; Through Silicon Vias;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    3D Systems Integration Conference (3DIC), 2013 IEEE International
  • Conference_Location
    San Francisco, CA
  • Type

    conf

  • DOI
    10.1109/3DIC.2013.6702314
  • Filename
    6702314