IP Library Granted Patent US 11,799,164
Granted Patent B2
US 11,799,164 · App. 17/152,445 · Granted Oct 24, 2023

Flexible printed circuit board and battery module

Inventors: Shunsuke Tomita (Tokyo, JP); Tomoki Kanayama (Tokyo, JP); Kazuyuki Azuma (Tokyo, JP)
Assignee: NIPPON MEKTRON, LTD.
H01M50/284H01M50/507H01M50/519
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Quick Facts
Patent No.
US 11,799,164
App. No.
17/152,445
Granted
Oct 24, 2023
Kind
B2
Abstract

A flexible printed circuit board which includes: a base film; and multiple wires formed on the base film, in which in a region attached to a battery including multiple arrayed cells, a conductor portion to be the multiple wires is provided only on one surface of the base film, at at least part of a region apart from the region attached to the battery, a conductor portion to be the multiple wires is provided on each surface of the base film, and the flexible printed circuit board further includes multiple conductive portions configured to electrically connect the wires on one surface side of the base film and the wires on the other surface side of the base film.

Claims (49)

1. A flexible printed circuit board comprising:

a base film including a first surface and a second surface opposite to the first surface; and

multiple wires formed on the base film, the multiple wires including a first set of wires formed on the first surface and a second set of wires formed on the second surface;

wherein, among the first set of wires and the second set of wires, only the first set of wires is provided in each portion of the flexible printed circuit board configured to be attached to a battery including multiple arrayed cells,

at at least part of a first region apart from a second region, the second region including each portion of the flexible printed circuit board configured to be attached to the battery, both the first set of wires and the second set of wires are provided, and

the flexible printed circuit board further includes at least one conductive via, each one of the at least one conductive via being configured to electrically connect one of the first set of wires to one of the second set of wires.

2. The flexible printed circuit board according to claim 1 , wherein

the at least one conductive via is formed as at least one through-hole, and a reinforcing plate is attached to a third region in which the at least one through-hole is arranged.

3. The flexible printed circuit board according to claim 1 , wherein

on the base film, multiple branch portions for arranging the multiple wires toward each cell extend from a trunk portion on which the multiple wires are arranged, and

a reinforcing film is provided on each of the multiple branch portions.

4. The flexible printed circuit board according to claim 1 , wherein

a bending portion allowing expansion and contraction in a longitudinal direction is provided.

5. The flexible printed circuit board according to claim 1 , wherein

the flexible printed circuit board includes a plurality of conductive vias, each one of the plurality of conductive vias being configured to electrically connect one of the first set of wires to one of the second set of wires such that the wires among the first set of wires and the second set of wires that are electrically connected are:

electrically connected to each other in one-to-one correspondence and

electrically connected to each other at multiple locations.

6. The flexible printed circuit board according to claim 1 , wherein

each of the second set of wires crosses past at least one of the first set of wires so as to change an order of the multiple wires in a plan view.

7. The flexible printed circuit board according to claim 1 , wherein the at least one conductive via is formed as at least one through-hole.

8. The flexible printed circuit board according to claim 7 , wherein the at least one conductive via is provided at a third region included within the first region.

9. The flexible printed circuit board according to claim 8 , wherein, among the first set of wires and the second set of wires, only the first set of wires is provided at a terminating end of the flexible printed circuit board opposite to each portion of the flexible printed circuit board configured to be attached to the battery.

10. A battery module comprising:

a flexible printed circuit board attached to a battery including multiple arrayed cells;

multiple bus bars each electrically connected to multiple wires provided on the flexible printed circuit board and each electrically connected to electrodes provided on the multiple cells; and

a connector fixed at an end portion of the flexible printed circuit board,

wherein the flexible printed circuit board includes

a base film including a first surface and a second surface opposite to the first surface, and

the multiple wires formed on the base film, the multiple wires including a first set of wires formed on the first surface and a second set of wires formed on the second surface,

among the first set of wires and the second set of wires, only the first set of wires is provided in each portion of the flexible printed circuit board attached to the battery,

at at least part of a first region apart from a second region, the second region including each portion of the flexible printed circuit board attached to the battery, both the first set of wires and the second set of wires are provided, and

at least one conductive via, each one of the at least one conductive via being configured to electrically connect one of the first set of wires to one of the second set of wires.

11. The battery module according to claim 10 , wherein

the at least one conductive via is formed as at least one through-hole, and

a reinforcing plate is attached to a third region of the flexible printed circuit board, the at least one through-hole being arranged in the third region.

12. The battery module according to claim 10 , wherein

on the base film, multiple branch portions for arranging the multiple wires toward each cell extend from a trunk portion on which the multiple wires are arranged, and

a reinforcing film is provided on each of the multiple branch portions.

13. The battery module according to claim 10 , wherein

a bending portion allowing expansion and contraction in a longitudinal direction of the flexible printed circuit board is provided on the flexible printed circuit board.

14. The battery module according to claim 10 , wherein

the flexible printed circuit board includes a plurality of conductive vias, each one of the plurality of conductive vias being configured to electrically connect one of the first set of wires to one of the second set of wires such that the wires among the first set of wires and the second set of wires that are electrically connected are:

electrically connected to each other in one-to-one correspondence and

electrically connected to each other at multiple locations.

15. The battery module according to claim 10 , wherein

each of the second set of wires crosses past at least one of the first set of wires so as to change an order of the multiple wires in a plan view.

16. The battery module according to claim 10 , wherein the at least one conductive via is formed as at least one through-hole.

17. The battery module according to claim 16 , wherein the at least one conductive via is provided in the flexible printed circuit board at a third region included within the first region.

18. The battery module according to claim 17 , wherein, among the first set of wires and the second set of wires, only the first set of wires is connected to the connector.

Assignments (2)
CHANGE OF NAME Recorded Nov 30, 2024
From: NIPPON MEKTRON, LTD.
To: MEKTEC CORPORATION
Reel/Frame 069464/0771 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 19, 2021
From: TOMITA, SHUNSUKE; KANAYAMA, TOMOKI; AZUMA, KAZUYUKI
To: NIPPON MEKTRON, LTD.
Reel/Frame 054957/0165 →
Priority Claims (1)
JP 2020-019139 · Feb 6, 2020 · national
Continuity (1)
Related Publication 20210249727A1 · Aug 12, 2021