Photovoltaic cell set and cell module with an electronic circuit having a measurement area
US-2024154572-A1 · May 9, 2024 · US
US2016284893A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2016284893-A1 |
| Application number | US-201415033073-A |
| Country | US |
| Kind code | A1 |
| Filing date | Oct 30, 2014 |
| Priority date | Oct 30, 2013 |
| Publication date | Sep 29, 2016 |
| Grant date | — |
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To improve the yield of a solar cell in its production process, a solar cell includes a semiconductor substrate including a first main surface and a second main surface corresponding to the backside of the first main surface, a busbar electrode on a line extending in a first direction on the second main surface, and end-portion electrodes each being an extension of the busbar electrode on the second main surface and separated from the busbar electrode, and each of the end-portion electrodes having a larger thickness than that of the busbar electrode.
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1 . A solar cell comprising: a semiconductor substrate comprising: a first main surface, and a second main surface being as a backside of the first main surface; a busbar electrode lying on a line that is located on the second main surface, the line extending in a first direction between two portions in the vicinities of both end portions of the second main surface in the first direction; and a pad disposed on an extension of the busbar electrode and separated from the busbar electrode in one of the two portions in the vicinities of the end portions of the second main surface in the first direction, and having a thickness larger than that of the busbar electrode. 2 . The solar cell according to claim 1 , wherein the pad is composed of a conductive material. 3 . The solar cell according to claim 2 , wherein the pad is composed of a material having lower wettability with solder than the busbar electrode. 4 . The solar cell according to claim 2 , wherein the busbar electrode mainly contains silver, and the pad mainly contains aluminum. 5 . The solar cell according to claim 1 , wherein a length of the pad in a second direction orthogonal to the first direction is greater than another length of the busbar electrode in the second direction. 6 . The solar cell according to claim 1 , further comprising a plurality of finger electrodes having a strip shape, and extending from the busbar electrode in the second direction on the second main surface, wherein the finger electrodes are composed of the same material as the pad. 7 . The solar cell according to claim 6 , further comprising a second finger electrode extending from the pad in the second direction on the second main surface. 8 . The solar cell according to claim 6 , wherein the busbar electrode comprises: a linear portion extending in the first direction, and a plurality of protruding portions from the linear portion in the second direction, wherein the busbar electrode further comprises an auxiliary busbar electrode having a strip shape, and extending in the first direction along the busbar electrode on the second main surface, wherein the auxiliary busbar electrode is composed of the same material as the finger electrode, and wherein the auxiliary busbar electrode is connected to each of the finger electrodes and each of the protruding portions. 9 . The solar cell according to claim 8 , wherein the auxiliary busbar electrode is thicker than the finger electrode. 10 . The solar cell according to claim 1 , wherein the pad has a semicircle-like shape or a trapezoid-like shape. 11 . The solar cell according to claim 1 , wherein the pad comprises a slit-like portion or a grid-like portion. 12 . A solar cell module comprising: a plurality of the solar cells according to claim 1 , wherein the plurality of the solar cells are arranged, and adjacent solar cells are electrically connected together through a strip conductive lead in contact with the pad.
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