IP Library Granted Patent US 10,847,776
Granted Patent B2
US 10,847,776 · App. 15/904,081 · Granted Nov 24, 2020

Conductive module and battery pack

Inventors: Shigemi Hashizawa (Shizuoka, JP); Hidehito Ishida (Shizuoka, JP); Mitsuhiro Matsumoto (Shizuoka, JP)
Assignee: YAZAKI CORPORATION
H01M2/206H01M2/043H01M2/30H01M10/425H01M10/482H01M2/1077H01M10/6554H01M2220/20
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Quick Facts
Patent No.
US 10,847,776
App. No.
15/904,081
Granted
Nov 24, 2020
Kind
B2
Abstract

A conductive module applied to a battery pack includes a connection terminal electrically coupled to an electrode terminal, and a flexible substrate that includes a flexible base film having insulating property, a conductive layer in which a first circuit pattern is configured by a first conductor that electrically couples the connection terminal to a monitoring device, and a reinforcing protective film covering the conductive layer. The reinforcing protective film includes a first exposed portion that exposes a first connection end portion of the first conductor from the reinforcing protective film, and has relatively higher rigidity than rigidity of the flexible base film.

Claims (41)

1. A conductive module comprising:

a connection terminal that is electrically coupled to at least one of two electrode terminals that each of a plurality of arrayed battery cells has; and

a flexible substrate that includes a sheet-shaped flexible base film that has insulating property, a conductive layer that is stacked on the flexible base film and in that a first circuit pattern is configured by a first conductor that electrically couples the connection terminal to a monitoring device monitoring a state of the battery cell, and a sheet-shaped reinforcing protective film that has insulating property, is stacked on an opposite side of the flexible base film side of the conductive layer, and covers the conductive layer, wherein

the reinforcing protective film includes a first exposed portion that exposes from the reinforcing protective film a first connection end portion that is a connection end portion to the connection terminal in the first conductor, and has relatively higher rigidity than rigidity of the flexible base film,

the reinforcing protective film terminates at a side edge that extends along an array direction of the battery cells,

the flexible base film includes a projecting end portion that faces the first connection end portion in a layer direction of the flexible base film, the conductive layer, and the reinforcing protective film,

the first connection end portion and the projecting end portion protrude linearly from the side end to the connection terminal in a direction orthogonal to the layer direction and the array direction, and

the flexible substrate includes, on both sides of the first connection end portion in the array direction of the battery cells, cutout portions that penetrate through the flexible base film, the conductive layer, and the reinforcing protective film in the layer direction and extend to one end of a direction intersecting with the layer direction and the array direction.

2. The conductive module according to claim 1 , wherein

the reinforcing protective film includes, in a direction intersecting with the layer direction of the flexible base film, the conductive layer, and the reinforcing protective film, a bent portion that is recessed to an opposite side of the reinforcing protective film side in the layer direction at a portion located between the first conductors constituting the first circuit pattern.

3. The conductive module according to claim 1 , wherein

the conductive layer includes a second circuit pattern configured by a second conductor electrically coupling an electronic component to be mounted on the flexible substrate to the monitoring device, and

the reinforcing protective film includes a second exposed portion that exposes from the reinforcing protective film a second connection end portion that is a connection end portion to the electronic component in the second conductor.

4. The conductive module according to claim 1 , wherein

a plurality of the connection terminals are provided in the array direction of the battery cells, and

the flexible substrate includes the first conductor provided for each of the connection terminals and includes a plurality of the first connection end portions and a plurality of the first exposed portions provided in the array direction at an end of a direction intersecting with the layer direction of the flexible base film, the conductive layer, and the reinforcing protective film, and with the array direction.

5. The conductive module according to claim 1 , wherein

the connection terminal includes a pair of fixing pieces that are spaced apart from each of other and fixed to the flexible substrate, and

the first connection end portion is located between the fixing pieces.

6. The conductive module according to claim 1 , wherein

the flexible base film is coplanar with the connection terminal.

7. A conductive module comprising:

a connection terminal that is electrically coupled to at least one of two electrode terminals that each of a plurality of arrayed battery cells has; and

a flexible substrate that includes a sheet-shaped flexible base film that has insulating property, a conductive layer that is stacked on the flexible base film and in that a first circuit pattern is configured by a first conductor that electrically couples the connection terminal to a monitoring device monitoring a state of the battery cell, and a sheet-shaped reinforcing protective film that has insulating property, is stacked on an opposite side of the flexible base film side of the conductive layer, and covers the conductive layer, wherein

the reinforcing protective film includes a first exposed portion that exposes from the reinforcing protective film a first connection end portion that is a connection end portion to the connection terminal in the first conductor, and has relatively higher rigidity than rigidity of the flexible base film, and

the reinforcing protective film includes, in a direction intersecting with a layer direction of the flexible base film, the conductive layer, and the reinforcing protective film, a bent portion that is recessed to an opposite side of the reinforcing protective film side in the layer direction at a portion located between the first conductors constituting the first circuit pattern.

8. The conductive module according to claim 7 , wherein

the conductive layer includes a second circuit pattern configured by a second conductor electrically coupling an electronic component to be mounted on the flexible substrate to the monitoring device, and

the reinforcing protective film includes a second exposed portion that exposes from the reinforcing protective film a second connection end portion that is a connection end portion to the electronic component in the second conductor.

9. The conductive module according to claim 7 , wherein

a plurality of the connection terminals are provided in an array direction of the battery cells, and

the flexible substrate includes the first conductor provided for each of the connection terminals and includes a plurality of the first connection end portions and a plurality of the first exposed portions provided in the array direction at an end of a direction intersecting with the layer direction of the flexible base film, the conductive layer, and the reinforcing protective film, and with the array direction.

10. A conductive module comprising:

a connection terminal that is electrically coupled to at least one of two electrode terminals that each of a plurality of arrayed battery cells has; and

a flexible substrate that includes a sheet-shaped flexible base film that has insulating property, a conductive layer that is stacked on the flexible base film and in that a first circuit pattern is configured by a first conductor that electrically couples the connection terminal to a monitoring device monitoring a state of the battery cell, and a sheet-shaped reinforcing protective film that has insulating property, is stacked on an opposite side of the flexible base film side of the conductive layer, and covers the conductive layer, wherein

the reinforcing protective film includes a first exposed portion that exposes from the reinforcing protective film a first connection end portion that is a connection end portion to the connection terminal in the first conductor, and has relatively higher rigidity than rigidity of the flexible base film,

the reinforcing protective film terminates at a side edge that extends along an array direction of the battery cells,

the flexible base film includes a projecting end portion that faces the first connection end portion in a layer direction of the flexible base film, the conductive layer, and the reinforcing protective film,

the first connection end portion and the projecting end portion protrude linearly from the side end to the connection terminal in a direction orthogonal to the layer direction and the array direction,

the connection terminal includes a pair of fixing pieces that are spaced apart from each of other and fixed to the flexible substrate, and

the first connection end portion is located between the fixing pieces.

Assignments (2)
CHANGE OF ADDRESS Recorded Jun 5, 2023
From: YAZAKI CORPORATION
To: YAZAKI CORPORATION
Reel/Frame 063845/0802 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 23, 2018
From: HASHIZAWA, SHIGEMI; ISHIDA, HIDEHITO; MATSUMOTO, MITSUHIRO
To: YAZAKI CORPORATION
Reel/Frame 045024/0249 →
Priority Claims (1)
JP 2017-037394 · Feb 28, 2017 · national
Continuity (1)
Related Publication 20180248167A1 · Aug 30, 2018
Cited By (1)
US 12,658,531