• DocumentCode
    1562262
  • Title

    Thin film silicon solar cell and module

  • Author

    Yamamoto, Kenji ; Nakajima, Akihiko ; Yoshimi, Masashi ; Sawada, Tow ; Fukuda, Susumu ; Suezaki, Takashi ; Ichikawa, Masayuki ; Koi, Yohei ; Goto, Masahiro ; Miguro, T. ; Matsuda, Takahiro ; Kondo, Masataka ; Sasaki, Toshiaki ; Tawada, Yuko

  • Author_Institution
    Kaneka Corp., Shiga, Japan
  • fYear
    2005
  • Firstpage
    1468
  • Lastpage
    1471
  • Abstract
    We have been developed a new light trapping scheme for thin film Si stacked module (Si HYBRID PLUS module), where a-Si:H/transparent inter-layer/microcrystalline Si thin film integrated large area solar cell module. An initial aperture efficiency of 13.1% has been achieved for 910×455 mm2 Si HYBRID PLUS module, which was independently confirmed by AIST. This is the first time report for independently confirmed efficiency of large area thin film Si module with interlayer. The 19% increase of short circuit current (Isc) of this module was obtained by the introduction of transparent interlayer, namely internal light trapping. Stabilized efficiency of mini module exhibited the 12%. Outdoor performances of Si HYBRID (a-Si:H/micro-crystalline Si stacked) solar cell module have been investigated over 4 years for two different kind of modules (top and bottom cell limited, respectively). The Hybrid modules limited by the top cell have exhibited the more efficient performance rather than the bottom limited in natural sunlight at noon.
  • Keywords
    amorphous semiconductors; crystal microstructure; elemental semiconductors; radiation pressure; short-circuit currents; silicon; solar cells; thin film devices; transparency; 12 percent; 13.1 percent; HYBRID PLUS module; Si; aperture efficiency; light trapping; microcrystalline thin film integrated large area solar cell module; natural sunlight; short circuit current; thin film stacked module; transparent interlayer; Apertures; Crystallization; Mass production; Optical reflection; Photovoltaic cells; Plasma temperature; Semiconductor thin films; Short circuit currents; Silicon; Thin film circuits;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Photovoltaic Specialists Conference, 2005. Conference Record of the Thirty-first IEEE
  • ISSN
    0160-8371
  • Print_ISBN
    0-7803-8707-4
  • Type

    conf

  • DOI
    10.1109/PVSC.2005.1488419
  • Filename
    1488419