The present invention generally relates to a battery pack, which can be used for electric tools.
In a conventional battery pack, to introduce the current from a plurality of battery cells into the circuit board, a busbar is usually set between the battery cells and the circuit board. On the one hand, the busbar is electrically connected to the positive terminal or negative terminal of the plurality of battery cells, and, on the other hand, it is connected to the pad on the circuit board through welding or electric resistance welding. This welding method has weaknesses such as low efficiency, high requirement for operating space, and high consumption of tin material, and also results in a larger size of the final battery pack.
The present invention solves the above problems by providing a novel connection method between the lead board (or busbar) of the battery pack and the circuit board.
In one aspect, the present invention provides a battery pack, which comprises: one or a plurality of battery cells, a circuit board, which is located within the housing of the battery pack, a lead board, which is connected to the electrode terminal of one or the plurality of battery cells, and a metal plate, which is arranged on said circuit board and electrically connects the lead board to the circuit in said circuit board, wherein said metal plate is fixed to said circuit board using surface mounting technology.
Preferably, said lead board is laser welded to said metal plate.
Preferably, said battery pack further comprises a battery bracket used to support the one or plurality of battery cells, wherein said lead board, metal plate, and circuit board are fixed to said battery bracket by a first screw.
Preferably, said metal plate is located on the lower surface of said circuit board and partially extends beyond the edge of said circuit board for laser welding with said lead board. Alternatively, the circuit board comprises a notch at the edge, and said metal plate partially extends into said notch of said circuit board for laser welding with said lead board.
In one variant, said metal plate is located on the upper surface of said circuit board, and said lead board is laser welded to the upper surface of said metal plate. Advantageously, said metal plate on the upper surface partially extends beyond the edge of said circuit board or into said notch of said circuit board for laser welding with said lead board.
Preferably, said metal plate is designed to have one or a plurality of pins, which fit into the corresponding one or plurality of sockets in said circuit board.
Preferably, said metal plate is made of copper alloy.
In one embodiment, said battery pack further comprises a fuse, which is connected to said metal plate or integrated with said metal plate. Preferably, said fuse is located on the lower side of said circuit board, and said circuit board has an opening above said fuse.
In another embodiment, said battery pack further comprises a hot block, which is in thermal contact with said metal plate to absorb heat from said lead board and said metal plate. Advantageously, a thermal conductive material is arranged between said hot block and said metal plate. Said thermal conductive material can be thermal conductive silicone or thermal conductive silicone pad. Preferably, said metal plate comprises one or a plurality of segments in contact with one or a plurality of surfaces of said hot block. Specifically, said metal plate comprises a base, a lug extending from said base, and a bent portion extending from said base, wherein said base, lug, and bent portion partially surround said hot block. Preferably, said metal plate, said hot block, and said circuit board are fixed together by said second screw. Preferably, the battery pack further comprises a thermal pad, which is in thermal contact with said hot block and/or said metal plate to remove heat from said hot block and said metal plate. Advantageously, said thermal pad is a thermal conductive silicon pad. Preferably, said hot block is made of aluminium or copper.
In another aspect, the present invention provides a kind of battery pack, which comprises: one or a plurality of battery cells; a circuit board; a lead board, which is connected to the electrode terminal of one or the plurality of battery cells; a metal plate, which is arranged on said circuit board and electrically connects the lead board to the circuit in said circuit board; and a hot block, which is thermally connected to said metal plate and/or lead board. Preferably, said hot block is thermally connected to a metal plate and/or lead board on the output circuit of the battery pack. Preferably, a plurality of surfaces of said hot block are thermally connected to said metal plate and/or lead board. Preferably, said metal plate comprises a base, a lug extending from said base, and a bent portion extending from said base, wherein said base, lug, and bent portion partially surround said hot block. Preferably, said metal plate, said hot block, and said circuit board are fixed together using screws.
In another aspect, the present invention provides an electric tool, comprising a battery pack described above.
The battery pack of the present invention improves the connection between the circuit board and the battery cell, thereby reducing the product volume, improving production efficiency, and cutting down the cost. At the same time, in consideration of the problem of heat concentration in the connection between the circuit board and the battery cell, the battery pack of the present invention also provides a more reliable heat dissipation method.
The present invention is elaborated in detail in conjunction with the examples shown the attached drawings, wherein:
To make it easy to understand the present invention, a more comprehensive description is provided below by referring related attached drawings. The attached drawings show preferred embodiments of the present invention. However, the present invention can be implemented in a variety of different forms, not limited to the embodiments described herein. On the contrary, these embodiments are provided to enable a more comprehensive and thorough understanding of the disclosed content of the present invention.
According to the present invention, the term “metal plate” or “lead board” refers to a part that is essentially a sheet metal or sheet material, which can be basically flat or include one or more bent portions and/or extension portions formed by bending or cutting process, in order to avoid or connect to other parts according to specific space needs.
The lead board 13 is located on the front and rear sides of battery pack 1, used to connect in parallel or in series a plurality of battery cells 11 configured at multiples levels and in multiple columns. The lead board 13 is a conductive metal plate with a plurality of pin ends 132 connected to the electrode terminals of the battery cells 11, a base 131 that connects a plurality of battery cells 11 in series or parallel through pin ends 132, and a terminal 133 that connects the base 131 to the circuit board 12. The lead board 13 is made by cutting and bending a metal plate using a mould. The electrical connection between the pin ends 132 and the electrode terminals of the battery cells 11 can be implemented by laser welding, or by electric resistance welding or other methods. In particular, the electrode terminal can be laser welded to the pin end 132 of the lead board 13 by applying laser in the direction towards the electrode terminal, and the welding point or weld joint forms an electrical connection between the electrode terminal and the pin end 132.
Metal plate 14 is located on the circuit board 12 and adjacent to or at the edge of the circuit board 12, used to connect the terminal 133 of the lead board 13 to the circuit in the circuit board 12. The metal plate 14 can be made of copper alloy.
SMT, also called “surface mounting technology”, is a popular technology and process in the electronic assembly industry. It is a circuit assembly technology that installs surface mounted parts without pins or short leads on the surface of printed circuit boards or other substrates, and then solders to assemble them by reflow soldering or dip soldering. The application of SMT shows significant advantages in various aspects such as product miniaturization, batching, and automation, as well as the advantages of high reliability, strong anti-vibration ability, low solder joint defect rate, etc. Laser welding is an efficient and precise welding method using laser beams of high energy density as a heat source, characterized by small scope of heat affected zone, small thermal deformation of the work piece, no need for contact with the work piece, fast welding speed, and high positioning accuracy, etc.
In general, SMT is used to install electronic components such as capacitors and resistors to circuit boards. The present invention creatively applies this technology to the connection between the metal plate 14 and circuit board 12 so that the metal plate 14 is attached to the circuit board 12 like the pin of circuit board 12. Then, the wiring board 13 of the battery cell 11 is connected to the metal plate 14 using the laser welding technology, thus implementing the electrical connection between the battery cell 11 and the circuit board 12. In this solution, the metal plate 14 is set using the surface mounting technology and laser welding technology instead of conventional tin welding, which reduces the product size, boosts the production efficiency, and improves the reliability of the connection point. In addition, it also reduces the consumption of soldering material.
In the example shown in
In the variant of the above example shown in
In the conventional battery packs, a fuse is usually formed in the lead board of the battery cell so that the heat generated by the electrode terminal and fuse of the battery cell is concentrated in the lead board, and this layout is not conducive to heat dissipation operation. At the same time, in the battery pack configuration shown in
As shown in
As shown in
Various technical characteristics of the above embodiments can be combined arbitrarily. Not all the possible combinations of each technical characteristic in the above embodiments have been described in consideration of concise description. However, as long as there is no contradiction in the combination of these technical characteristics, it should be considered to fall within the scope of this specification.
The above mentioned embodiments only express several embodiments of the present invention, and their description is relatively specific and detailed, but cannot be understood as limitation to the scope of the present inventory patent. It should be pointed out that those skilled in the art can make several deformations and improvements without departing from the concept of the present invention, all of which fall within the protection scope of the present invention. Therefore, the protection scope of the present inventory patent should be subject to the attached claims.
Number | Date | Country | Kind |
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202210956387.2 | Aug 2022 | CN | national |