Transition to 4 and 5 BB Designs for Ni/Cu/Ag Plated Cells

Author:

Burschik J.,Shengzhao Y.,Bay N.,Crouse K.,De Rose A.,Hoffmann A.,Kühnlein H.,Lee B.,Letize A.,Passig M.,Pysch D.,Sieber M.,Verlinden P.,Vosteen K.

Publisher

Elsevier BV

Reference15 articles.

1. International Technology Roadmap for Photovoltaic (ITRPV). [Online] 2015. [Cited: 10 5 2016.] http://www.itrpv.net/Reports/Downloads/2016/.

2. The multi-busbar design: an overview;Braun;Energy Procedia,2013

3. Chen, N., et al. Assessing the impact of multi-busbars on metallization cost and efficiency of solar cells with digital inkjet-printed gridlines. [ed.] High Capacity Optical Networks and Enabling Technologies (HONET-CNS)., DOI: 10.1109/HONET. 2013.6729758, Magosa, Cyprus, IEEE. 2013.

4. Mette, A., New concepts for Front side Metallization of Industrial Solar cells. Verlag Dr. Hut, ISBN 978-389963-650-5, München 2007.

5. Cimiotti, G., et al. Design Rules for Solar Cells with Plated Metallization. Energy Procedia. 2015, Vol. 67, pp 84-92.

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