Remedy method for serious EL grid breakage of finished crystalline silicon solar cells
A technology of solar cells and crystalline silicon, applied in circuits, photovoltaic power generation, electrical components, etc., can solve problems that affect the life of components, affect the electrical performance of components, and burn out components, so as to improve the high-quality rate and increase the economic efficiency of enterprises Effect
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Publication Date
- 2015-05-13
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Abstract
Description
technical field
[0001] The invention relates to the field of manufacturing crystalline silicon solar cells, in particular to a remedial method for severely broken EL grids of finished crystalline silicon solar cells. Background technique
[0002] Under the current situation of the photovoltaic industry, obtaining higher photoelectric conversion efficiency, higher quality rate, and lower cost determines whether each company can survive in a new round of industry reshuffle. Thinner, the cost is getting lower and lower, and the EL grid is broken. The current reduction of the battery with a severe grid break will affect the electrical performance of the entire module, and the power will be reduced. In the grid-connected power station, because the hot spot effect is easily generated in the components, the local heating is too high, which affects the life of the components and seriously burns out the components. At present, the cells with severely broken EL grids of major manufac...
Examples
Embodiment Construction
[0012] The technical solutions provided by the present invention will be further described in detail below in conjunction with specific embodiments.
[0013] Take 100 finished crystalline silicon solar cells with serious EL disconnection, and take the steps of a remedial method for severe EL broken grid of finished crystalline silicon solar cells as an example, and perform the following steps:
[0014] Step 1: Sorting and testing the electrical performance of the severely broken cells, and marking the file name "GZDS";
[0015] Step 2: Put the finished battery sheet with severely broken grid into the positive electrode printing and loading table;
[0016] Step 3: Adjust printing parameters, printing offset X: 100; Y: 300; T: 150 so that the positive electrode printed for the second time completely matches the original positive electrode;
[0017] Step 4: Flow the battery slices from the second step into the sintering furnace, sinter, and then separate and test and change the ...