Claims
- 1. A photovoltaic device comprising:
- a transparent insulating substrate,
- a transparent front electrode layer on said substrate,
- a semiconductor layer for photoelectric conversion on said front electrode layer, and
- a metallic back electrode layer on said semiconductor layer,
- at least said back electrode layer having a plurality of holes therethrough positioned and dimensioned to permit transmission of light.
- 2. A photovoltaic device in accordance with claim 1, wherein said holes extend into said semiconductor layer.
- 3. A photovoltaic device in accordance with claim 2, wherein said holes extend into said front electrode layer.
- 4. A photovoltaic device in accordance with claim 1, wherein a resist layer used as a mask in an etching process to form said holes remains on said back electrode layer.
- 5. A photovoltaic device in accordance with claim 1, wherein said holes each have a polygonal form and opposed sides of the respective adjacent holes are parallel.
- 6. A photovoltaic device in accordance with claim 5, wherein said holes each have a hexagonal form and are arrayed in a honeycomb pattern.
- 7. A photovoltaic device in accordance with claim 5, wherein said holes each have a square form and are arrayed in a zigzag pattern.
- 8. A photovoltaic device in accordance with claim 5, wherein said holes each have a triangular form.
- 9. A photovoltaic device comprising:
- a transparent insulating substrate,
- a transparent front electrode layer on said substrate,
- a semiconductor layer for photovoltaic conversion on said front electrode layer, and
- a metallic back electrode layer on said semiconductor layer,
- wherein at least said black electrode layer has a plurality of through holes for transmission of light therethrough and said holes occupy more than 5% of the entire area of said back electrode layer.
- 10. A photovoltaic device in accordance with claim 9, wherein said holes extend into said semiconductor layer.
- 11. A photovoltaic device in accordance with claim 10, wherein said holes extend into said front electrode layer.
- 12. A phtotvoltaic device in accordance with claim 9, wherein a resist layer used as a mask in an etching process to form said holes remains on said back electrode layer.
- 13. A photovoltaic device in accordance with claim 9, wherein said holes each have a polygonal form and opposed sides of the respective adjacent holes are parallel.
- 14. A photovoltaic device in accordance with claim 13, wherein said holes each have a hexagonal form and are arrayed in a honeycomb pattern.
- 15. A photovoltaic device in accordance with claim 13, wherein said holes each have a square from and are arrayed in a zigzag pattern.
- 16. A photovoltaic device in accordance with claim 13, wherein said holes each have a triangular form.
- 17. A photovoltaic device comprising a plurality of photovoltaic cells in series connection on a transparent insulating substrate, each cell including
- a respective transparent front electrode layer region on said substrate,
- a respective semiconductor layer region for photoelectric conversion on said respective front electrode layer region, and
- a respective metallic back electrode layer region on said respective semiconductor layer region,
- wherein each of said back electrode layer regions is not only separated by a narrow spacing from neighboring ones for electrical isolation but is also electrically connected to the front electrode layer region of a neighboring one of said cells for making said series connection, and at least each of said back electrode layer regions has a plurality of holes for transmission of light.
- 18. A photovoltaic device in accordance with claim 17, wherein said holes extend into the respective semiconductor layer.
- 19. A photovoltaic device in accordance with claim 18, wherein said holes extend into the respective front electrod layer.
- 20. A photovoltaic device in accordance with claim 17, wherein a resist layer used as a mask in an etching process to form said holes remains on said back electrode layer.
- 21. A photovoltaic device in accordance with claim 17, wherein said holes each have a polygonal form and opposed sides of the respective adjacent holes are parallel.
- 22. A photovoltaic device in accordance with claim 21, wherein said holes each have a hexagonal form and are arrayed in a honeycomb pattern.
- 23. A photovoltaic device in accordance with claim 21, wherein said holes each have a square from and are arrayed in a zigzag pattern.
- 24. A photovoltaic device in accordance with claim 21, wherein said holes each have a triangular form.
Priority Claims (2)
Number |
Date |
Country |
Kind |
62-17334[U] |
Feb 1986 |
JPX |
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61-87352[U]JPX |
Jun 1986 |
JPX |
|
Parent Case Info
The present patent application is a continuation-in-part of U.S. patent application Ser. No. 878,118 filed June 25, 1986, now U.S. Pat. No. 4,686,321.
US Referenced Citations (3)
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
878118 |
Jun 1986 |
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