Production process of new energy solar power generation panel
A solar power generation panel and production process technology, applied in photovoltaic power generation, circuits, electrical components, etc., can solve problems such as low production efficiency, achieve the effects of improving production efficiency, improving convenience, and improving light conversion efficiency
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Embodiment 1
[0035] Step 1: Put the produced cells into the battery testing machine, test the size of the output parameters of the battery and classify the cells.
[0036] Step 2: connect 6 solar cells in series by means of infrared spot welding to form a solar cell string.
[0037] Step 3: Place the battery in the groove on the corresponding mold plate by the manipulator, use an electric soldering iron and solder wire to weld the front electrode (negative electrode) of the "front battery" to the back electrode (positive electrode) of the "rear battery", so that Connect the batteries in series in sequence and weld the leads at the positive and negative poles of the assembly string.
[0038] Step 4: After the back side is connected in series and passed the inspection, the component strings, glass, cut EVA, glass fiber, and backplane are laid in a certain layer, and the surface of the backplane is coated with a thermally conductive coating.
[0039] Step 5: Put the installed battery into th...
Embodiment 2
[0046] In embodiment one, add following operation:
[0047] Twelve solar cells are connected in series by infrared spot welding to form a solar cell string.
[0048] Step 1: Put the produced cells into the battery testing machine, test the size of the output parameters of the battery and classify the cells.
[0049] Step 2: connect 12 solar cells in series by infrared spot welding to form a solar cell string.
[0050] Step 3: Place the battery in the groove on the corresponding mold plate by the manipulator, use an electric soldering iron and solder wire to weld the front electrode (negative electrode) of the "front battery" to the back electrode (positive electrode) of the "rear battery", so that Connect the batteries in series in sequence and weld the leads at the positive and negative poles of the assembly string.
[0051] Step 4: After the back side is connected in series and passed the inspection, the component strings, glass, cut EVA, glass fiber, and backplane are laid ...
Embodiment 3
[0059] In embodiment two, add following operation:
[0060] In step 2, the joint of the battery is copper flat wire electroplated with 60% Sn, 38% Pb, and 2% Ag, and the thickness of the copper flat wire is 100.
[0061] Step 1: Put the produced cells into the battery testing machine, test the size of the output parameters of the battery and classify the cells.
[0062] Step 2: connect 12 solar cells in series by means of infrared spot welding to form a solar cell string.
[0063] Step 3: Place the battery in the groove on the corresponding mold plate by the manipulator, use an electric soldering iron and solder wire to weld the front electrode (negative electrode) of the "front battery" to the back electrode (positive electrode) of the "rear battery", so that Connect the batteries in series in sequence and weld the leads at the positive and negative poles of the assembly string.
[0064] Step 4: After the back side is connected in series and passed the inspection, the compo...
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