Claims
- 1. A solar battery cell having textures formed in a texture region on a light-receiving surface thereof, except for a site where a surface electrode is formed, wherein the textures formed in a peripheral portion of the texture region have a different size from the textures formed in an inside portion located inside of the peripheral portions;wherein the textures formed in the peripheral portion of the texture region have a smaller size than the textures formed in the inside portion of the texture region.
- 2. The solar battery cell of claim 1, wherein a distance between adjacent textures formed in the peripheral portion of the texture region is different from a distance between adjacent textures formed in the inside portion of the texture region.
- 3. The solar battery cell of claims 2, wherein the distance between adjacent textures formed in the peripheral portion of the texture region is larger than the distance between adjacent textures formed in the inside portion of the texture region.
- 4. The solar battery cell of claim 1, wherein the light-receiving surface includes a non-texture region which is formed on an outer perimeter of the cell and in which textures are not formed.
- 5. The solar battery cell of claim 4, wherein the non-texture region has a width of 50 μm or more.
- 6. The solar battery cell of claim 1, wherein the solar battery cell is an NRS/BSF type solar battery cell.
- 7. The solar battery cell of claim 1, wherein said light-receiving surface includes a plurality of surface electrode portions and a plurality of textured regions, each said textured region being disposed adjacent respective said surface electrodes such that the peripheral portion thereof is disposed intermediate said inward portion and said respective surface electrodes so that the peripheral portions having reduced size textures are disposed adjacent the electrode portions.
- 8. A solar battery cell having textures formed in a texture region on a light-receiving surface thereof except for a site where a surface electrode is formed, wherein the textures formed in a peripheral portion of the texture region have a different shape from the textures formed in an inside portion located inside of the peripheral portion;wherein the textures formed in the inside portion of the texture region have an inverted-pyramid shape with a square base, and the textures formed in the peripheral portion of the texture region have an inverted-pyramid shape with a polygonal base having a pointed end.
- 9. The solar battery cell of claim 8, wherein a distance between adjacent textures formed in the peripheral portion of the texture region is different from a distance between adjacent textures formed in the inside portion of the texture region.
- 10. The solar battery cell of claim 8, wherein a distance between adjacent textures formed in the peripheral portion of the texture region is larger than the distance between adjacent textures formed in the inside portion of the texture region.
- 11. The solar battery cell of claim 8, wherein the light-receiving surface includes a non-texture region which is formed on an outer perimeter of the cell and in which textures are not formed.
- 12. The solar battery cell of claim 11, wherein the non-texture region has a width of 50 μm or more.
- 13. The solar battery cell of claim 8, wherein said light-receiving surface includes a plurality of surface electrode portions and a plurality of textured regions, each said textured region being disposed adjacent respective said surface electrodes such that the peripheral portion thereof is disposed intermediate said inward portion and said respective surface electrodes so that the peripheral portions having inverted-pyramid shape textures with a polygonal base are disposed adjacent the electrode portions.
- 14. A solar batter cell having textures formed in a texture region on a light-receiving surface thereof except for a site where a surface electrode is formed, wherein the textures formed in a peripheral portion of the texture region have a different shape from the textures formed in an inside portion located inside of the peripheral portion, wherein the textures formed in the inside portion of the texture region have a V-groove shape, and the textures formed in the peripheral portion of the texture region have an inverted-pyramid shape.
- 15. The solar battery cell of claim 14, wherein a distance between adjacent textures formed in the peripheral portion of the texture region is different from a distance between adjacent textures formed in the inside portion of the texture region.
- 16. The solar battery cell of claim 14, wherein a distance between adjacent textures formed in the peripheral portion of the texture region is larger than the distance between adjacent textures formed in the inside portion of the texture region.
- 17. The solar battery cell of claim 14, wherein the light-receiving surface includes a non-texture region which is formed on an outer perimeter of the cell and in which textures are not formed.
- 18. The solar battery cell of claim 17, wherein the non-texture region has a width of 50 μm or more.
- 19. The solar battery cell of claim 14, wherein said light-receiving surface includes a plurality of surface electrode portions and a plurality of textured regions, each said textured region being disposed adjacent respective said surface electrodes such that the peripheral portion thereof is disposed intermediate said inward portion and said respective surface electrodes so that the peripheral portions having inverted-pyramid shape textures are disposed adjacent the electrode portions.
Priority Claims (1)
| Number |
Date |
Country |
Kind |
| 10-244528 |
Aug 1998 |
JP |
|
CROSS-REFERENCES TO RELATED APPLICATIONS
This application is related to Japanese patent application No. HEI 10(1998)-244528 filed on Aug. 31, 1998 whose priority is claimed under 35 USC §119, the disclosure of which is incorporated herein by reference in its entirety.
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Non-Patent Literature Citations (1)
| Entry |
| Zhao et al, “24% Efficient Perl Structure Silicon Solar Cells”, IEEE, pp. 333-335, 1990. |