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Two-level Metallization and Module Integration of Point-contacted Solar Cells

  • Henning Schulte-Huxel*
  • , Udo Römer
  • , Susanne Blankemeyer
  • , Agnes Merkle
  • , Yevgeniya Larionova
  • , Verena Steckenreiter
  • , Robby Peibst
  • , Sarah Kajari-Schroeder
  • , Rolf Brendel
  • *Corresponding author for this work

Research output: Contribution to journalConference articleResearchpeer review

Abstract

We present a module integration process for back junction back contact (BJBC) solar cells featuring point contacts to the back surface field (BSF). We apply two metallization layers. A first metal layer of aluminum is deposited onto the rear side of the cell and carries the current extracted from the polarity with the larger surface area fraction, e.g. from the emitter. The second metallization layer is an Al layer on a transparent substrate that we laser-weld to the small and point-shaped regions of the other polarity, e.g. the BSF region. We use a polymer for insulation between the two metal layers. The Al layer on the substrate also serves for cell interconnection, i.e., it enables module integration. Such an interconnection structure halves the fill factor losses due to the metallization. First proof-of-principle modules show a shunt free interconnection, no laser-induced damage, and an energy conversion efficiency of up to 20.7%.

Original languageEnglish
Pages (from-to)361-368
Number of pages8
JournalEnergy Procedia
Volume55
E-pub ahead of print19 Sept 2014
DOIs
Publication statusPublished - 2014
Event4th International Conference on Crystalline Silicon Photovoltaics, SiliconPV 2014 - Hertogenbosch, Netherlands
Duration: 25 Mar 201427 Mar 2014

Keywords

  • Al metallization
  • Back junction back contact
  • Cell interconnection
  • Laser micro welding
  • Module integration
  • Point contact solar cells

ASJC Scopus subject areas

  • General Energy

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