TABBING DEVICE FOR MANUFACTURING SOLAR BATTERY MODULE
20260048448 ยท 2026-02-19
Inventors
Cpc classification
B23K2101/36
PERFORMING OPERATIONS; TRANSPORTING
Y02E10/50
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
H10F71/1375
ELECTRICITY
B23K3/085
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
Provided is a tabbing device for manufacturing a solar battery module, which is capable of preventing over-soldering and under-soldering from occurring in the tabbing device for performing soldering during manufacture of a solar battery module, wherein the tabbing device for manufacturing a solar battery module includes: a solar battery module cell transported by cell unit along conveyor transport equipment; a soldering head provided on an upper side of the solar battery module cell and having embedded therein a heat source configured to provide heat to solder flux coated on the solar battery module cell being transported; a cooling unit installed to be positioned outside the soldering head, and configured to discharge cooling fluid to a lower position of the soldering head and cool the soldering head; and a control unit configured to control operations of the cooling unit and the soldering head in a case where transportation of the solar battery module cell is stopped, wherein, when the transportation of the solar battery module cell is stopped, the control unit operates the cooling unit to provide the cooling fluid and when restarting, stops the operation of the cooling unit and controls the temperature of the heat source to be increased to a predetermined temperature until all of the solar battery module cells in the offset section pass through the lower part of the soldering head.
Claims
1. A tabbing device for manufacturing a solar battery module, the tabbing device comprising: a solar battery module cell transported by cell unit along conveyor transport equipment; a soldering head provided on an upper side of the solar battery module cell and having embedded therein a heat source configured to provide heat to solder flux coated on the solar battery module cell being transported; a cooling unit installed to be positioned outside the soldering head, and configured to discharge cooling fluid to a lower position of the soldering head and cool the soldering head; and a control unit configured to control operations of the cooling unit and the soldering head in a case where transportation of the solar battery module cell is stopped, wherein, when restarting, the control unit controls a temperature of the heat source until all of solar battery module cells in an offset section pass through a lower part of the soldering head.
2. The tabbing device of claim 1, wherein, when the transportation of the solar battery module cell is stopped, the control unit operates the cooling unit to provide the cooling fluid and when restarting, stops the operation of the cooling unit and controls the temperature of the heat source to be increased to a predetermined temperature until all of the solar battery module cells in the offset section pass through the lower part of the soldering head.
3. The tabbing device of claim 1, wherein, when restarting, the control unit controls, together with the heat source, a soldering time for which the solar battery module cells in the offset section are exposed to the heat source and soldered under the soldering to be increased.
4. The tabbing device of claim 1, wherein the control unit returns the temperature of the heat source and the soldering time to original states after all of the solar battery module cells in the offset section pass through the soldering head.
5. The tabbing device of claim 1, wherein the cooling unit comprises: a cooling fluid supply unit configured to provide the cooling fluid; a nozzle unit installed adjacent to the outside of the soldering head and configured to discharge the cooling fluid; and a connection hose connecting the cooling fluid supply unit and the nozzle unit.
6. The tabbing device of claim 5, wherein the nozzle unit comprises a metal material, and the connection hose comprises a material which allows an adjusted state to be maintained, enabling a direction of the nozzle unit to be adjusted.
7. The tabbing device of claim 5, wherein the nozzle unit comprises an air nozzle, and the cooling fluid comprises air.
8. The tabbing device of claim 1, further comprising a driving unit configured to reciprocally transport the soldering head in a movement direction of a conveyor, wherein the driving unit is controlled by the control unit.
9. The tabbing device of claim 1, wherein the heat source of the soldering head comprises an infrared lamp.
10. The tabbing device of claim 8, wherein, when the transportation of the solar battery module cell is stopped, the control unit controls the driving unit to move the heat source from a first position of a first cell positioned and soldered under the heat source from among solar battery module cells to a second position, which is a position of one cell from among adjacent waiting cells, while the cooling unit does not operate and when the transportation of the solar battery module cell is restarted, controls the driving unit to return the heat source from the second position to the first position.
Description
DESCRIPTION OF DRAWINGS
[0024]
[0025]
[0026]
MODE FOR INVENTION
[0027] The words and terms used in the description and claims should not be interpreted as being limited to common or dictionary meanings, and should be interpreted as meanings and concepts that conform to the spirit of the present disclosure on the basis of the principle that the inventor may define the terms and the concepts to describe his or her own invention in the best way.
[0028] Therefore, embodiments described in the description and components illustrated in the drawings are only an example embodiment of the present disclosure and do not represent all of the spirit of the present disclosure, and thus, various equivalents and modified examples capable of replacing the corresponding component may be made at the time of filing the present application.
[0029] It should be understood that the terms such as comprise or have when used herein, specify the presence of stated features, numbers, steps, operations, elements, components, or combinations thereof, but do not preclude the presence or addition of one or more other features, numbers, steps, operations, elements, components, or combinations thereof.
[0030] When a component is referred to as being in front of, behind, above, or under another component, unless there are particular circumstances, the component is not only arranged in front of, behind, above, or under the other component in direct contact with the other component, but also another component is arranged in between. In addition, when any component is referred to as being connected to another component, unless there are particular circumstances, the components are not only directly connected to each other but also indirectly connected to each other.
[0031] Hereinafter, a tabbing device for manufacturing a solar battery module, which prevents over-soldering, according to an embodiment of the present disclosure, is described with reference to the drawings.
[0032] Referring to
[0033] Referring to
[0034] Here, the control unit adjusts a speed of the conveyor 30 as pre-programmed. Under control of the control unit, the conveyor 30 is operated, and as a result, a time for a heat source provided to the solar battery module cell 31 is determined and soldering may be appropriately performed accordingly.
[0035] Here, the solar battery module may be transported by cell unit along the conveyor 30, and to form the solar battery module, a soldering flux is coated onto the solar battery module cell 31 to electrically connect the solar battery module cell 31. The flux is soldered by the heat source.
[0036] Referring to
[0037] Here, the soldering head 20 is generally fixed to a frame 10 of the entire device and does not move. Therefore, in the case where the conveyor 30 stops during operation, over-soldering occurs in the solar battery module cell 31 positioned under the heat source. Here, in the present disclosure, the control unit has a structure that may move a position of the soldering head 20.
[0038] Here, an infrared (IR) lamp 21, which is the heat source, is installed in the soldering head 20, many other components for soldering are installed, and an air nozzle may be installed inside or a ventilation device may be installed to provide air directly from the inside for temperature control.
[0039] Here, the soldering head 20 may be supported by a straight guide 11 of the frame 10 to be guided and transported. Here, the straight guide 11 is fixedly installed on the frame 10, a guide rod 41 is inserted into the straight guide 11, and the guide rod 10 is connected to the soldering head 20. Therefore, the soldering head 20 may be driven in a straight direction according to a guidance of the straight guide 11.
[0040] Referring to
[0041] Here, the cooling unit 50 may include a cooling fluid supply unit, a nozzle unit 51, and a connection hose 52.
[0042] Here, the cooling fluid supply unit may provide the cooling fluid.
[0043] Here, the nozzle unit 51 may be installed adjacent to the outside of the soldering head 20 and discharge the cooling fluid.
[0044] Here, the connection hose 52 may connect the cooling fluid supply unit and the nozzle unit 51, and the cooling fluid may flow in communication therethrough.
[0045] Here, the nozzle unit 51 may include a metal material, and the connection hose 52 may include a material which allows an adjusted state to be maintained, enabling a direction of the nozzle unit 51 to be adjusted. The nozzle unit 51 is arranged at a position adjacent to the heat source and thus a material thereof needs to be selected by considering deformation or the like due to heat, and the connection hose 52 may apply a material or a similar structure having plasticity, which may be bent to adjust a direction thereof and maintain the state thereof to adjust a direction of the fluid discharged through the nozzle unit 51.
[0046] Here, the nozzle unit 51 may include an air nozzle, and the cooling fluid may include air. In general, the fluid discharged to the nozzle unit 51 to cool the soldering head 20 may use air that takes the least cost. In some cases, an inert gas or the like may be applied.
[0047] Referring to
[0048] Here, when the transportation of the solar battery module cell 31 is stopped, the control unit operates the cooling unit 50 to provide the cooling fluid, and when restarting, may stop the operation of the cooling unit 50 and control a temperature of the heat source to be raised to a predetermined temperature until all of solar battery module cells A.sub.1 to A.sub.n in a predetermined offset section OS pass through the lower part of the soldering head 20.
[0049] Here, the control unit may control, together with the heat source, when restarting, a time for which the solar battery module cells A.sub.1 to A.sub.n in the offset section OS is exposed to the heat source and soldered under the soldering head 20 to be increased. In other words, the control unit may increase a time for soldering each of the solar battery module cells A.sub.1 to A.sub.n by controlling a speed of the conveyor 30 to be reduced.
[0050] In other words, as an example of applying an offset, when the soldering head 20 stops and then restarts, power of the infrared lamp 21 provided to twenty-one solar battery module cells 31 may be more increased by a certain amount than an existing amount, and at the same time, a time for providing the power of the infrared lamp 21 may be more increased than an existing time.
[0051] Here, the control unit may return the temperature of the heat source and a soldering time to original states after all of the solar battery module cells A.sub.1 to A.sub.n in the offset section OS pass through the soldering head 20. Here, at the same time, the control unit may control the cooling unit 50 to be turned off.
[0052] Accordingly, under-soldering may be prevented in advance from occurring under control of the control unit.
[0053] Referring to
[0054] At this time, the driving unit 40 may use a cylinder method herein. In addition, a linear drive method using a motor, screw, or nut type may also be used.
[0055] Referring to
[0056] Here, when the tabbing device stops, the control unit may control the driving unit 40 to move the heat source from a first position B of a first cell, which is positioned and soldered under the heat source, from among the solar battery module cells 31, to a second position A which is a position of one cell from among adjacent waiting cells.
[0057] Here, the control unit may control the driving unit 40 so that the heat source is positioned in a second cell closest to the first cell from among the waiting cells.
[0058] Here, the control unit may control the driving unit 40 so that the heat source returns from the second position A to the first position B, when the tabbing device is restarted.
[0059] Here, the control unit controls the position of the soldering head 20, i.e., in the case where the conveyor 30 is eventually stopped due to an external environment or other causes, controls the soldering head 20 to move from the first position B to the second position A, which is a waiting cell, by one cell and when restarting, return to the first position B, which is the original position, by one cell.
[0060] Here, the control unit may control the infrared lamp 21 to be turned off from when the tabbing device stops to when the tabbing device restarts.
[0061] Here, in the case where the control unit controls the driving unit 40 to move the soldering head 20, the control unit may perform the above work while stopping the operation of the cooling unit 50.
[0062]
[0063]
[0064]
[0065] Over-soldering prevention work due to the movement of the soldering head 20 described above is performed for a certain time from when the soldering head 20 stops, and then a normal state returns in the case where the cause for the stop is resolved, but in the case where the stop continues for a certain time or longer, control may be performed by under-soldering prevention work using an offset section described above.
[0066] Although the embodiments of the present disclosure have been described, the spirit of the present disclosure is not limited by the embodiments presented in the description, and those skilled in the art who understand the spirit of the present disclosure will be able to easily propose other embodiments by supplementing, changing, deleting, or adding components within the scope of the same spirit, but the same will also be considered to fall within the spirit of the present disclosure.