DocumentCode :
3342730
Title :
SunPower´s Maxeon Gen III solar cell: High efficiency and energy yield
Author :
Smith, David D. ; Cousins, Peter J. ; Masad, Asnat ; Westerberg, Simon ; Defensor, Michael ; Ilaw, Reynold ; Dennis, Tasshi ; Daquin, Rhea ; Bergstrom, Niklas ; Leygo, Arjelene ; Xi Zhu ; Meyers, Bennet ; Bourne, Ben ; Shields, M. ; Rose, D.
Author_Institution :
SunPower Corp., San Jose, CA, USA
fYear :
2013
fDate :
16-21 June 2013
Abstract :
SunPower is currently shipping the highest efficiency commercial solar panel in the 20% efficiency E-series with high reliability, and proven high energy yield per rated watt [1,2]. This paper discusses the next generation SunPower solar cell, the Maxeon Gen III used in the recently launched X-series modules. Higher efficiency, improved field performance from lower temperature coefficient, improved reliability due to low reverse breakdown voltage and a uniform dark appearance are the characteristics of this technology. The SunPower Maxeon Gen III solar cell is a high efficiency design intended to reduce cost throughout the value chain by improved performance. The improved efficiency is due to a passivated contact structure lowering the cell emitter recombination to approximately 15 fA/cm2 [3]. The process is currently in full scale manufacturing at approximately 100 MW per year in the SunPower´s Fab2 production facility in the Philippines.
Keywords :
cost reduction; reliability; solar cells; E-series; Philippines; SunPower Fab2 production facility; SunPower Maxeon Gen III solar cell; X-series modules; cell emitter recombination; commercial solar panel; cost reduction; energy yield; next generation SunPower solar cell; passivated contact structure; reliability; reverse breakdown voltage; uniform dark appearance; Current measurement; Electric breakdown; Photovoltaic cells; Production; Short-circuit currents; Silicon; Temperature measurement; Photovoltaic cells; Silicon; passivation; reverse bias; temperature coefficient;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Photovoltaic Specialists Conference (PVSC), 2013 IEEE 39th
Conference_Location :
Tampa, FL
Type :
conf
DOI :
10.1109/PVSC.2013.6744291
Filename :
6744291
Link To Document :
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