Battery module, and electric vehicle and power storage device equipped with battery module
US-2023143369-A1 · May 11, 2023 · US
US12444804B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12444804-B2 |
| Application number | US-202017906355-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 19, 2020 |
| Priority date | Mar 30, 2020 |
| Publication date | Oct 14, 2025 |
| Grant date | Oct 14, 2025 |
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In a battery module, end plates disposed at both ends of battery stack are connected by binding bars. Electrode terminals of respective battery cells and voltage detection circuit of electronic circuit block are connected by a plurality of voltage detection lines. Electronic circuit block is disposed on an outer surface of end plate and fixes one connector formed by linearly disposing a plurality of connecting terminals to which voltage detection lines are connected to circuit board on which voltage detection circuit is mounted. Voltage detection circuit is provided with a plurality of input terminals arranged in a linear manner. In circuit board, connecting terminal and input terminal disposed at opposite positions are connected by a plurality of connection lines. A cell voltage of each battery cell is input from connection line to adjacent input terminals.
Opening claim text (preview).
The invention claimed is: 1. A battery module comprising: a battery stack including a plurality of battery cells stacked; a pair of end plates disposed at both ends in a stacking direction of the battery stack; a binding bar connecting the end plates; an electronic circuit block including a voltage detection circuit that detects a voltage of each of the plurality of battery cells; and a plurality of voltage detection lines connecting a positive electrode terminal and a negative electrode terminal of the each of the plurality of battery cells to the electronic circuit block, wherein the each of the plurality of battery cells includes a terminal surface arranging the positive electrode terminal and the negative electrode terminal at opposite ends, the battery stack is obtained by stacking the plurality of battery cells with the terminal surface on the same plane, the electronic circuit block is disposed on an outer surface of each of the end plates, and includes a circuit board on which the voltage detection circuit is mounted, the circuit board fixes one connector linearly arranging a plurality of connecting terminals connecting the plurality of voltage detection lines, the voltage detection circuit includes a plurality of input terminals arranged in a linear manner and each including adjacent input terminals as input terminals of a cell voltage of the each of the plurality of battery cells, in the circuit board, the plurality of connecting terminals and the plurality of input terminals are disposed at opposing positions, the plurality of connecting terminals and the plurality of input terminals at the opposing positions are connected by a plurality of rows of a plurality of connection lines, and the cell voltage of the each of the plurality of battery cells is input to a corresponding one of the plurality of connecting terminals connected to a corresponding one of the plurality of input terminals by a corresponding one of the plurality of connection lines. 2. The battery module according to claim 1 , wherein a wiring pattern in which the plurality of connection lines do not intersect is provided on a surface of the circuit board, and each of the plurality of connection lines input the cell voltage of a corresponding one of the plurality of battery cells to adjacent input terminals of the voltage detection circuit. 3. The battery module according to claim 1 , wherein the battery stack includes a terminal surface of the each of the plurality of battery cells disposed on an upper surface, the plurality of voltage detection lines are wired on the upper surface of the battery stack, and the connector provided on the circuit board of the electronic circuit block includes the plurality of connecting terminals arranged in a linear shape extending along an upper edge of the circuit board. 4. The battery module according to claim 3 , wherein the plurality of input terminals provided in the voltage detection circuit mounted on the circuit board are arranged extending in a same direction as the plurality of connecting terminals. 5. The battery module according to claim 1 , wherein the circuit board includes a wiring pattern arranging the plurality of rows of the plurality of connection lines in parallel. 6. The battery module according to claim 1 , wherein the adjacent connecting terminals of the connector are connected to the plurality of voltage detection lines connected to the positive electrode terminal and the negative electrode terminal of the each of the plurality of battery cells disposed at both ends of the terminal surface of the plurality of battery cells, and the cell voltage of the corresponding one of the plurality of battery cells are input to the adjacent connecting terminals. 7. The battery module according to claim 6 , wherein the voltage detection circuit is a circuit that detects a voltage of the adjacent input terminals as the cell voltage. 8. The battery module according to claim 1 , wherein the plurality of connecting terminals of the connector are arranged in a straight line. 9. The battery module according to claim 1 , wherein the plurality of input terminals of the voltage detection circuit are arranged in a straight line. 10. The battery module according to claim 1 , wherein each of the plurality of voltage detection lines is a wire harness. 11. An electric vehicle including the battery module according to claim 1 , the electric vehicle comprising: the battery module; a motor for traveling to which electric power is supplied from the battery module; a vehicle body on which the battery module and the motor are mounted; and wheels driven by the motor to cause the vehicle body to travel. 12. A power storage device including the battery module according to claim 1 , the power storage device comprising: the battery module; and a power supply controller that controls charging and discharging of the battery module, wherein the power supply controller enables charging of the plurality of battery cells with power from an outside and controls charging of the plurality of battery cells.
Batteries in motive systems, e.g. vehicle, ship, plane · CPC title
for several batteries or cells simultaneously or sequentially · CPC title
Connection only in parallel · CPC title
characterised by the wiring of battery packs · CPC title
adapted for prismatic or rectangular cells (H01M50/216 takes precedence) · CPC title
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