Solar cell and solar cell panel including the same
US-2020075788-A1 · Mar 5, 2020 · US
US11764313B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11764313-B2 |
| Application number | US-202117522536-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 9, 2021 |
| Priority date | Aug 27, 2021 |
| Publication date | Sep 19, 2023 |
| Grant date | Sep 19, 2023 |
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Provided is a photovoltaic solar cell, a solar cell module and a manufacturing process. The photovoltaic solar cell includes a silicon substrate, and a passivation layer located on at least one surface of the silicon substrate. An electrode, an electrode pad and an extension line are printed on at least one surface of the silicon substrate. The electrode includes a busbar and a finger crossed with each other, and the finger is in contact with the silicon substrate. Two ends of the extension line are respectively connected to the busbar and the electrode pad, and the extension line is in contact with the silicon substrate.
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What is claimed is: 1. A photovoltaic solar cell, comprising: a silicon substrate; a passivation layer located on at least one surface of the silicon substrate; and an electrode, an electrode pad and an extension line printed on at least one surface of the silicon substrate, wherein the electrode comprises a busbar and a finger crossed with each other, and the finger is in contact with the silicon substrate, and wherein two ends of the extension line are respectively connected to the busbar and the electrode pad to reinforce a connection between the busbar and the electrode pad such that the extension line is not in direct contact with the finger, the extension line penetrates through the passivation layer and is in contact with the silicon substrate, and the busbar is not in direct contact with the silicon substrate, the electrode pad is not in direct contact with the silicon substrate. 2. The photovoltaic solar cell according to claim 1 , wherein a size of the extension line is less than or equal to 3 times of a size of the electrode pad in a direction of an elongation line of the busbar. 3. The photovoltaic solar cell according to claim 1 , wherein a partial region of the extension line overlaps with the busbar, and a size of an overlapping region of the extension line and the busbar is less than 0.1 mm in a direction of an elongation line of the busbar. 4. The photovoltaic solar cell according to claim 1 , wherein a partial region of the extension line overlaps with the electrode pad, and a size of an overlapping region of the extension line and the electrode pad is less than 0.1 mm in the direction of an elongation line of the busbar. 5. The photovoltaic solar cell according to claim 1 , wherein a width of the extension line is 1 to 2 times of a width of the busbar. 6. The photovoltaic solar cell according to claim 1 , wherein the extension line is in a shape of one of a rectangle, a trapezoid and an ellipse or combinations thereof. 7. The photovoltaic solar cell according to claim 1 , wherein a height of the extension line decreases gradually along a direction from the electrode pad to the busbar. 8. A photovoltaic module, comprising a glass, a first film material, a photovoltaic cell string, a second film material and a back sheet sequentially from front to back, wherein the photovoltaic cell string comprises a plurality of photovoltaic solar cells, and at least one of the plurality of photovoltaic solar cells comprises: a silicon substrate; a passivation layer located on at least one surface of the silicon substrate; and an electrode, an electrode pad and an extension line printed on at least one surface of the silicon substrate, wherein the electrode comprises a busbar and a finger crossed with each other, and the finger is in contact with the silicon substrate, and wherein two ends of the extension line are respectively connected to the busbar and the electrode pad to reinforce a connection between the busbar and the electrode pad such that the extension line is not in direct contact with the finger, the extension line penetrates through the passivation layer and is in contact with the silicon substrate, and the busbar is not in direct contact with the silicon substrate, the electrode pad is not in direct contact with the silicon substrate. 9. The photovoltaic module according to claim 8 , wherein the plurality of photovoltaic solar cells are connected through a conductive line, and the conductive line has a diameter in a range of 0.2 mm to 0.3 mm. 10. The photovoltaic module according to claim 8 , wherein a size of the extension line is less than or equal to 3 times of a size of the electrode pad in a direction of an elongation line of the busbar. 11. The photovoltaic module according to claim 8 , wherein a partial region of the extension line overlaps with the busbar, and a size of an overlapping region of the extension line and the busbar is less than 0.1 mm in a direction of an elongation line of the busbar. 12. The photovoltaic module according to claim 8 , wherein a partial region of the extension line overlaps with the electrode pad, and a size of an overlapping region of the extension line and the electrode pad is less than 0.1 mm in the direction of an elongation line of the busbar. 13. A manufacturing process for manufacturing a photovoltaic solar cell, the photovoltaic solar cell comprising: a silicon substrate; a passivation layer located on at least one surface of the silicon substrate; and an electrode, an electrode pad and an extension line printed on at least one surface of the silicon substrate, wherein the electrode comprises a busbar and a finger crossed with each other, and the finger is in contact with the silicon substrate, and wherein two ends of the extension line are respectively connected to the busbar and the electrode pad to reinforce a connection between the busbar and the electrode pad such that the extension line is not in direct contact with the finger, the extension line penetrates through the passivation layer and is in contact with the silicon substrate, and the busbar is not in direct contact with the silicon substrate, the electrode pad is not in direct contact with the silicon substrate, the manufacturing process comprising: providing a photovoltaic substrate having the passivation layer on the at least one surface of the silicon substrate; printing the electrode pad and the busbar on the photovoltaic substrate by using a non fire-through paste; and printing the extension line and the finger on the photovoltaic substrate by using a fire-through paste, to enable the extension line to be connected to the electrode pad and the busbar, respectively. 14. The manufacturing process according to claim 13 , wherein different fire-through pastes are used for forming the extension line and the finger. 15. The manufacturing process according to claim 13 , wherein a size of the extension line is less than or equal to 3 times of a size of the electrode pad in a direction of an elongation line of the busbar. 16. The manufacturing process according to claim 13 , wherein a partial region of the extension line overlaps with the busbar, and a size of an overlapping region of the extension line and the busbar is less than 0.1 mm in a direction of an elongation line of the busbar. 17. The manufacturing process according to claim 13 , wherein a partial region of the extension line overlaps with the electrode pad, and a size of an overlapping region of the extension line and the electrode pad is less than 0.1 mm in the direction of an elongation line of the busbar.
Electrodes · CPC title
Manufacture or treatment of devices covered by this subclass (patterning processes to connect thin photovoltaic cells in integrated devices, or assemblies of multiple devices, having photovoltaic cells H10F19/33; manufacture or treatment of encapsulations or containers for integrated devices, or assemblies of multiple devices, having photovoltaic cells H10F19/80; manufacture or treatment of integrated devices, or assemblies of multiple devices, comprising at least one element in which radiation controls the flow of current H10F39/00) · CPC title
for photovoltaic cells · CPC title
Busbar structures for modules · CPC title
Geometries of grid contacts · CPC title
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