Advanced manufacturing concepts for crystalline silicon solar cells
JF Nijs, J Szlufcik, J Poortmans… - … on Electron Devices, 1999 - ieeexplore.ieee.org
An overview is given concerning current industrial technologies, near future improvements
and medium term developments in the field of industrially implementable crystalline silicon …
and medium term developments in the field of industrially implementable crystalline silicon …
Silicon cells made by self-aligned selective-emitter plasma-etchback process
DS Ruby, WK Schubert, JM Gee, SH Zaidi - US Patent 6,091,021, 2000 - Google Patents
Photovoltaic cells and methods for making them are dis closed Wherein the metalliZed grids
of the cells are used to mask portions of cell emitter regions to alloW selective etching of …
of the cells are used to mask portions of cell emitter regions to alloW selective etching of …
Development of screen-printed silicon solar cells with high fill factors on 100/spl Omega//sq emitters
MM Hilali, A Rohatgi, S Asher - IEEE transactions on electron …, 2004 - ieeexplore.ieee.org
High-quality DuPont screen-printed Ag contacts were achieved on high sheet-resistance
emitters (100/spl Omega//sq) by rapid alloying of PV168 Ag paste. Excellent specific contact …
emitters (100/spl Omega//sq) by rapid alloying of PV168 Ag paste. Excellent specific contact …
Contact definition in industrial silicon solar cells
LJ Caballero - Solar Energy, 2010 - books.google.com
The incredible development that industrial silicon based photovoltaic devices have followed
for the last decades has been related to the consecution of a simple, easy and economically …
for the last decades has been related to the consecution of a simple, easy and economically …
Influence of laser damage on the performance of selective emitter solar cell fabricated using laser do** process
M Kim, D Kim, D Kim, Y Kang - Solar Energy Materials and Solar Cells, 2015 - Elsevier
This article investigates the impact of laser damage on the performance of a selective emitter
solar cell fabricated using a laser do** process (LD). After the optimization of the laser …
solar cell fabricated using a laser do** process (LD). After the optimization of the laser …
Low-cost back contact silicon solar cells
A Kress, R Kuhn, P Fath, GP Willeke… - IEEE Transactions on …, 1999 - ieeexplore.ieee.org
Back-contacted solar cells offer multiple advantages in regard of reducing module
assembling costs and avoiding grid shadowing losses. The investigated emitter-wrap …
assembling costs and avoiding grid shadowing losses. The investigated emitter-wrap …
High-efficiency screen-printed planar solar cells on single crystalline silicon materials
A Ebong, M Hilali, V Upadhyaya… - … Record of the Thirty …, 2005 - ieeexplore.ieee.org
In this paper we report on the fabrication, characterization and analysis of high efficiency
planar screen-printed solar cells with high sheet resistance emitter/spl sim/100/spl …
planar screen-printed solar cells with high sheet resistance emitter/spl sim/100/spl …
Emitterverbund-Rückkontaktsolarzellen für die industrielle Fertigung
A Kreß - 2001 - kops.uni-konstanz.de
Emitterverbund- Rückkontaktsolarzellen für die industrielle Fertigung Page 1 EmitterverbundRückkontaktsolarzellen
für die industrielle Fertigung Dissertation zur Erlangung des akademischen Grades des …
für die industrielle Fertigung Dissertation zur Erlangung des akademischen Grades des …
[PDF][PDF] High-speed fabrication of laser do** selective emitter solar cells using 532nm continuous wave (cw) and modelocked quasi-cw laser sources
JM Bovatsek, A Sugianto, B Hallam… - Proceedings of the …, 2011 - researchgate.net
In recent years, laser do** of selective emitters (LDSE) has demonstrated great promise
for improving c-Si solar cell performance with the potential for low cost of adaptation …
for improving c-Si solar cell performance with the potential for low cost of adaptation …
Laser etch back process to fabricate highly efficient selective emitter c-Si solar cells
M Kim, D Kim, D Kim, Y Kang - Solar energy, 2014 - Elsevier
We developed a novel cost effective process scheme for the fabrication of highly efficient
selective emitter solar cells, which uses a laser do** method combined with an etch back …
selective emitter solar cells, which uses a laser do** method combined with an etch back …