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Dive into the research topics where Tim Dennis is active.

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Featured researches published by Tim Dennis.


photovoltaic specialists conference | 2010

Generation 3: Improved performance at lower cost

Peter John Cousins; David D. Smith; Hsin-Chiao Luan; Jane Manning; Tim Dennis; Ann Waldhauer; Karen E. Wilson; Gabriel Harley; William P. Mulligan

This paper reports recent progress by SunPower Corporation to commercialize the Generation 3 product. The Generation 3 product has been designed to deliver both increased performance and lower manufacturing cost. Improved performance was achieved through optimization of the diffusion recombination losses. A conversion efficiency of 24.2% was achieved on a champion cell made on production equipment using a production wafer, 155.1cm2 n-type CZ. This result was verified by the National Renewable Energy testing Laboratory. Modules made with Generation 3 cells were measured by NREL to have > 20.4% total area efficiency (>332W with 1.63m2 modules). This paper presents the design changes before detailing the resulting performance.


photovoltaic specialists conference | 2012

Generation III high efficiency lower cost technology: Transition to full scale manufacturing

David D. Smith; Peter John Cousins; Asnat Masad; Ann Waldhauer; Staffan Westerberg; Michael C. Johnson; Xiuwen Tu; Tim Dennis; Gabriel Harley; Genevieve A. Solomon; Seung Bum Rim; Michael Shepherd; Scott Harrington; Michael Defensor; Arjelene Leygo; Princess Carmi Tomada; Junbo Wu; Thomas Pass; Laurice Ann; Laurio Smith; Neil Bergstrom; Christopher Nicdao; Pauline Tipones; Dennis Vicente

This paper reports on the first large scale manufacturing of Gen III solar cells. The Gen III product has been designed to deliver increased performance and lower cost throughout the value chain. Reduced emitter recombination is the key feature to deliver the efficiency improvement. Gen III is now ramping on a production line in SunPowers Philippines manufacturing plant. Production run median efficiency is 23.6%. Total area module efficiency is 21.2 %. The Gen III solar cell architecture has a low breakdown voltage in reverse, which minimizes power loss and wear on module materials under shaded conditions.


photovoltaic specialists conference | 2013

SunPower's Maxeon Gen III solar cell: High efficiency and energy yield

David D. Smith; Peter John Cousins; Asnat Masad; Staffan Westerberg; Michael Defensor; Reynold Ilaw; Tim Dennis; Rhea Daquin; Neil Bergstrom; Arjelene Leygo; Xi Zhu; Bennet Meyers; Ben Bourne; Mark Shields; Doug Rose

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 SunPowers Fab2 production facility in the Philippines.


Archive | 2011

Method of fabricating an emitter region of a solar cell

David D. Smith; Helen Liu; Tim Dennis; Jane Manning; Hsin-Chiao Luan; Ann Waldhauer; Genevieve A. Solomon; Brenda Pagulayan Malgapu; Joseph Ramirez


Archive | 2015

Solar cell having an emitter region with wide bandgap semiconductor material

Richard M. Swanson; Marius M. Bunea; Michael C. Johnson; David D. Smith; Yu-Chen Shen; Peter John Cousins; Tim Dennis


Archive | 2014

Method of fabricating a solar cell with a tunnel dielectric layer

Tim Dennis; Scott Harrington; Jane Manning; David D. Smith; Ann Waldhauer


Archive | 2011

Process and structures for fabrication of solar cells

Gabriel Harley; David D. Smith; Tim Dennis; Ann Waldhauer; Taeseok Kim; Peter John Cousins


Archive | 2017

METHOD OF MANUFACTURING SOLAR CELL WITH TUNNEL DIELECTRIC LAYER

Tim Dennis; Scott Harrington; Jane Manning; Smith David; Ann Waldhauer


Archive | 2017

SOLAR CELL HAVING EMITTER REGION CONTAINING WIDE BANDGAP SEMICONDUCTOR MATERIAL

Richard M. Swanson; Marius M. Bunea; David D. Smith; Shen Yu-Chen; Peter John Cousins; Tim Dennis


Archive | 2017

Laser process and corresponding structures for fabrication of solar cells with shunt prevention dielectric

Gabriel Harley; David D. Smith; Tim Dennis; Ann Waldhauer; Taeseok Kim; Peter John Cousins

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