A solar cell includes a semiconductor substrate having a photoelectric converting portion, a first electrode formed on a first main surface of the semiconductor substrate, and a second electrode connected to the first electrode on the first main surface. The first electrode includes a plurality of f
A solar cell includes a semiconductor substrate having a photoelectric converting portion, a first electrode formed on a first main surface of the semiconductor substrate, and a second electrode connected to the first electrode on the first main surface. The first electrode includes a plurality of first connecting portions to be connected to an interconnector and a first non-connecting portion not connected to an interconnector. The first non-connecting portion is arranged between first connecting portions to electrically connect the first connecting portions together. The first connecting portion and first non-connecting portion are coupled forming an angle larger than 90° and smaller than 180°. A solar cell string and a solar cell module employ the solar cells.
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1. A solar cell comprising: a semiconductor substrate having a photoelectric converting portion,a first electrode formed on a first main surface of said semiconductor substrate, anda second electrode connected to said first electrode on said first main surface,whereinsaid first electrode includes a
1. A solar cell comprising: a semiconductor substrate having a photoelectric converting portion,a first electrode formed on a first main surface of said semiconductor substrate, anda second electrode connected to said first electrode on said first main surface,whereinsaid first electrode includes a plurality of spaced-apart first connecting portions connected to an interconnector, and a first non-connecting portion not directly connected to said interconnector, and a plurality of finger electrodes directly connected to the first connecting portions and to the first non-connecting portion,said first connecting portions have longitudinal axes longitudinally aligned on a first common axis,said interconnector having a longitudinal axis longitudinally aligned on said first common axis,said first non-connecting portion is arranged to extend between axially adjacent two of said spaced-apart first connecting portions, electrically connecting said axially adjacent first connecting portions together, said finger electrodes having longitudinal axes disposed perpendicular to said first common axis,said first connecting portions each having a length along said first common axis greater than a length of said first non-connecting portion arranged to extend therebetween, andsaid axially adjacent first connecting portions and said first non-connecting portion are coupled forming an outer angle larger than 90° and smaller than 180° with respect to the longitudinal axis of each respective first connecting portion. 2. The solar cell according to claim 1, wherein said first non-connecting portion extends from a longitudinal end face of said first connecting portion. 3. The solar cell according to claim 1, wherein said first non-connecting portion extends from a side face of said first connecting portion. 4. The solar cell according to claim 1, wherein said first non-connecting portion is formed of a combination of straight portions. 5. The solar cell according to claim 1, wherein said first non-connecting portion includes an arc portion. 6. The solar cell according to claim 1, wherein a cross-sectional area of said first non-connecting portion is not more than ½ the cross-sectional area of said first connecting portion. 7. The solar cell according to claim 1, wherein at least one of said first connecting portions adjacent to an end of said first main surface is arranged apart from the end of said first main surface. 8. The solar cell according to claim 1, wherein a second connecting portion connected to a second interconnector and a second non-connecting portion not directly connected to said second interconnector are formed alternately along a line parallel to said first common axis on a second main surface opposite to said first main surface of said semiconductor substrate. 9. The solar cell according to claim 1, wherein said first non-connecting portion has two non-connecting parts, each extending between and connecting said axially adjacent first connecting portions and each coupled to both of said axially adjacent two first connecting portions to respectively form said angle of larger than 90° and smaller than 180°, an entirety of an area defined between longitudinal end faces of the axially adjacent, connected first connecting portions and between said first non-connecting parts being a void that is devoid of structure in a plane that includes said two non-connecting parts and said first connecting portions. 10. A solar cell string comprising a plurality of solar cells defined in claim 8 connected, said solar cells adjacent to each other, wherein said first connecting portion of a first solar cell and said second connecting portion of a second solar cell are electrically connected by being connected to a common interconnector. 11. The solar cell string according to claim 1, wherein said second electrode has a longitudinal axis perpendicular to said first common axis. 12. The solar cell string according to claim 10, wherein a small cross-sectional area section having a cross-sectional area of said common interconnector locally reduced is arranged at at least one of a site corresponding to an inside region, adjacent to a side face of said first non-connecting portion and a longitudinal end face of said first connecting portion and a site corresponding to said second non-connecting portion. 13. A solar cell module comprising the solar cell string defined in claim 10 sealed with a sealant. 14. The solar cell according to claim 1, wherein a surface contour of an inside region adjacent to a side face of said first non-connecting portion and a longitudinal end face of said first connecting portion takes an arc shape at leading ends located at a side of a first connecting portion. 15. The solar cell according to claim 14, wherein the surface contour of said inside region takes a circular, an ellipse, or a track shape. 16. The solar cell according to claim 14, wherein a second connecting portion connected to a second interconnector and a second non-connecting portion not directly connected to said second interconnector are formed alternately on a second main surface opposite to said first main surface of said semiconductor substrate. 17. The solar cell according to claim 16, wherein a length of said inside region in a direction of arrangement of said first connecting portion and said first non-connecting portion is shorter than the length of said second non-connecting portion, facing said inside region with said semiconductor substrate therebetween, in a direction of arrangement of said second connecting portion and said second non-connecting portion. 18. The solar cell according to claim 16, including a portion where said second non-connecting portion is not formed at a location symmetric to the location where said inside region is formed about said semiconductor substrate. 19. A solar cell string comprising a plurality of solar cells defined in claim 16 connected, said solar cells adjacent to each other, wherein said first connecting portion of a first solar cell and said second connecting portion of a second solar cell are electrically connected by a common interconnector. 20. The solar cell string according to claim 19, wherein a small cross-sectional area section having a cross-sectional area of said common interconnector reduced locally is arranged at at least one of a site corresponding to said inside region and a site corresponding to said second non-connecting portion. 21. A solar cell module comprising the solar cell string defined in claim 19 sealed with a sealant.
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이 특허에 인용된 특허 (21)
Wakefield G. Felix (Woodland Hills CA) Arnett James C. (La Canada CA) Yoo Henry I. (Agoura CA), Contact for solar cell.
Katsu Tomoji (Kitakatsuragi JPX) Shimada Keiji (Kitakatsuragi JPX) Yoshioka Hideki (Nara JPX), Interconnector and electronic device element with the interconnector.
Glenn Gregory S. (Los Angeles CA) Lillington David R. (Granada Hills CA), Photovoltaic cell having structurally supporting open conductive back electrode structure, and method of fabricating the.
Rubin Leoind B. (Moscow SUX) Osipov Alexandr S. (Moscow SUX) Sizganov Jury G. (Moscow SUX) Untila Gennady G. (Moscow SUX) Kharitonov Andrei L. (Moscow SUX) Rakhimov Alexandr T. (Moscow SUX), Photovoltaic cells for converting light energy to electric energy and photoelectric battery.
Wakuda,Junzou; Hioki,Masaomi; Tanaka,Satoshi; Machida,Tomohiro; Kamimura,Kunio; Saga,Tatsuo; Tomita,Takashi, Solar cell and method of producing the same.
Jones, Bernard D.; de Rivera, Eric; Hariharan, Alleppey V.; Slavsky, Steven T.; McGee, Thomas S.; Lackey, David W.; Kirchner, Thomas N., Solar cell stringing machine.
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