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- W2022238527 abstract "Laser processes have penetrated into the crystalline silicon solar cell production market some time ago already, but arestill far from reaching the status they probably will achieve one day. As the largest fraction of state-of-the-art productionlines still produces conventional screen-printed aluminum back surface field (Al-BSF) cells, the applicability of lasers iscurrently limited mainly to the process step of laser edge isolation, while only a few other companies use lasers forgroove formation (fabrication of laser grooved buried contact solar cells) or via hole drilling. Due to thecontactless nature as well as the possibility to process a wide variety of materials with fine structures, lasers can be usedfor a vast field of production steps like ablating, melting and soldering different materials. Within this paper severalapplications of laser processes within the fabrication of various next-generation silicon solar cell structures are presented.These processes are for example laser via hole drilling, which is inevitable for MWT and EWT (metal and emitter wrapthrough) solar cells, LFC (laser-fired contacts) as a fast and easy approach for the production of passivated emitter andrear solar cells as well as laser ablation of dielectric layers and laser doping which offer the chance for industrialproduction of several different high efficiency solar cell structures." @default.
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- W2022238527 date "2009-02-12" @default.
- W2022238527 modified "2023-10-18" @default.
- W2022238527 title "Novel laser technologies for crystalline silicon solar cell production" @default.
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- W2022238527 doi "https://doi.org/10.1117/12.810128" @default.
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