• DocumentCode
    3001259
  • Title

    LPCVD of aluminium in a batch-type load-locked multi-chamber processing system

  • Author

    Piekaar, H.W. ; Kwakman, L.F.Tz. ; Granneman, E.H.A.

  • Author_Institution
    ASM Int.-AMTC, Bilthoven, Netherlands
  • fYear
    1989
  • fDate
    12-13 Jun 1989
  • Firstpage
    122
  • Lastpage
    128
  • Abstract
    A reliable aluminium CVD technique for the filling of submicron contacts and vias providing good step coverage has been developed in a load-locked, batch-type, multichamber system. Because of the low resistivity of aluminium the subsequent metallization layer can be realized in the same process sequence. The Al CVD system configured consists of a reactor module, an I/O port, a bake-out annex activation module, a sputter deposition module, and an etch module, all grouped around an evacuated central wafer handling system which transfers wafers, on a single-wafer basis, in a vacuum of 2×10-5 Pa. The sputter deposition module provides the option to either deposit a sputtered diffusion barrier prior to the CVD film or to cap the CVD film with a Cu-doped sputtered Al layer to further enhance electromigration resistance. For a film thickness of 1 μm, reflectivities of 55±5% are achieved at uniformities of ±5%. Films exhibit resistivities of 2.8±0.2 μΩ-cm and show good adhesion to most of the commonly used substrates. With a load of 30 wafers for each Al batch reactor, a throughput of 40 wafers per hour can be realized when two Al reactor modules are configured in one system
  • Keywords
    aluminium; chemical vapour deposition; electromigration; metallisation; 2×10-5 Pa; 2.8 muohmcm; Al; CVD; I/O port; LPCVD; adhesion; bake-out annex activation module; batch-type load-locked multi-chamber processing system; electromigration resistance; etch module; metallization layer; reactor module; reflectivities; sputter deposition module; sputtered diffusion barrier; step coverage; submicron contacts; throughput; via filling; Aluminum; Conductivity; Electromigration; Filling; Inductors; Metallization; Optical films; Sputter etching; Sputtering; Vacuum systems;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    VLSI Multilevel Interconnection Conference, 1989. Proceedings., Sixth International IEEE
  • Conference_Location
    Santa Clara, CA
  • Type

    conf

  • DOI
    10.1109/VMIC.1989.78014
  • Filename
    78014