The invention relates to the technical field of solar cells, and more particularly, to a solar module having multiple junction boxes.
Nowadays, there are many applications of solar energy. A single solar cell generally has a relatively low voltage, so it is necessary to series-connect dozens of solar cells together with solder ribbons, and package them with protective materials and fittings to form a solar module. The general material of the solder ribbon connecting solar cells is tin-lead-silver coated copper. Considering the packaging process of the solar modules the solder ribbon cannot be made too wide or too thick so the solar module has a relatively high resistance and the power losses on solder ribbons are also relatively high. In addition, the solar module in prior art usually has one junction box which is attached on the back of the solar module. Multiple by-pass diodes are arranged in the junction box. When the module works normally the diodes are reversed and off but when section of the solar cells in the solar module are shaded, the by-pass diodes which are connected to the shaded cells in the parallel manner are on, thus the module is prevented from being destructed by the heat which is produced due to the hot spot effect. Generally, one by-pass diode can protect 12-24 cells. For a large module, it is necessary to arrange more diodes to protect different arrays of cells to protect them from hot spot destruction. When a diode is switched on to protect the shaded cells, the heat produced by its function will greatly increase the temperature of the whole junction box, thus increasing the temperature of the other diodes which are off. Because these diodes are reversed, the increase in current leakage caused by the increase in temperatures will decrease the power of the whole solar module.
The invention aims to eliminate the defects in the prior art, provide a solar module having multiple junction boxes and solve the problem of a relatively low power output and a relatively high loss existing in the prior art's solar module. It will do this by increasing the amount of the junction boxes and decreasing the length of the connecting solder ribbons.
The technical solution of the invention is: a solar module having multiple junction boxes, including solar panels which are series-connected via tabbing ribbon and junction boxes. The junction boxes include a junction box having diodes which has by-pass function and a junction box without diodes which has power output function. The junction box with diodes and the junction box without diodes are connected to the solar panels respectively via bus ribbons. The junction box with diodes and the junction box without diodes are connected via external cables. The junction box without diodes is connected to the junction box cable.
Furthermore, the junction boxes without diodes are arranged on the same side of the solar module when the solar panels have an even number of arrays.
The junction boxes without diodes are arranged at the opposite sides of the solar module when the solar panels have an odd number of arrays.
The benefits of the invention are that by applying a connection pattern with multiple junction boxes the invention effectively decreases the power loss of the solar module, enhances its efficiency and enhances the reliability and security of the module as well. The invention decreases the costs of the module's materials for per unit power, the maintenance cost and reaches its ultimate aim to decrease the cost of solar power which facilitates the popularization and application of the renewable solar energy.
Following the invention will be further described with reference with the accompanying figures and embodiments.
In the figures, 1 is a tabbing ribbon; 2 is a solar panel; 3 is a junction box having diodes; 4 is a junction box without diodes; 5 is a bus ribbon; 6 is a external cable; 7 is a junction box cable.
The invention is further described with reference to the accompanying figures. These figures are all schematic diagrams which only illustrate the basic structures of the invention, so they only show the structures relating to the invention.
As shown in
As shown in
By increasing the amount of the junction boxes of the solar module the invention realizes a decrease in the loss of the output power of the module. On one hand, this structure can have the diodes dispersed to decrease the temperature in the junction boxes and decrease the loss of the power output of the module; on the other hand multiple junction boxes being connected via external cable 6 decreases the length of the inner connecting solder ribbons. Because the external cable 6 is outside of the module and can be connected directly whereas connecting solder ribbons cannot be connected directly due to the insulation requirement of the cells. The external cable 6 has a much bigger cross section area than the connecting solder ribbon and it greatly decreases the series resistance, thus further decreases the loss of the output power of the module and enhances the working efficiency of the module.
Number | Date | Country | Kind |
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201010152166.7 | Apr 2010 | CN | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/CN2010/078383 | 11/3/2010 | WO | 00 | 10/19/2012 |