CONNECTOR-ATTACHED CIRCUIT BODY AND BUS BAR MODULE
20200044376 ยท 2020-02-06
Inventors
- Yoshiaki Ichikawa (Shizuoka, JP)
- Kimitoshi Makino (Shizuoka, JP)
- Makoto Kobayashi (Shizuoka, JP)
- Tomoji Yasuda (Shizuoka, JP)
Cpc classification
H01R12/778
ELECTRICITY
H05K3/32
ELECTRICITY
H05K2201/10272
ELECTRICITY
H05K1/118
ELECTRICITY
H01R25/164
ELECTRICITY
H01R13/582
ELECTRICITY
Y02E60/10
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
H01R12/79
ELECTRICITY
H05K1/18
ELECTRICITY
International classification
H01R12/79
ELECTRICITY
H01R13/66
ELECTRICITY
H05K3/32
ELECTRICITY
H01R25/16
ELECTRICITY
H05K1/18
ELECTRICITY
Abstract
A connector-attached circuit body include a circuit body including a flexible substrate having a wiring pattern, and a connector attached to the circuit body and including a terminal and a housing that accommodates the terminal. The terminal is electrically connected to the wiring pattern and extends in a thickness direction of the circuit body.
Claims
1. A connector-attached circuit body comprising: a circuit body including a flexible substrate having a wiring pattern; and a connector attached to the circuit body and including a terminal and a housing that accommodates the terminal, wherein the terminal is electrically connected to the wiring pattern and extends in a thickness direction of the circuit body.
2. The connector-attached circuit body according to claim 1, wherein the housing includes an opening corresponding to a mating connector in which the connector is configured to be fitted, and wherein the connector further includes a cover that is assembled to the housing and has an inclined surface on an outer surface of the cover such that the outer surface extends outward toward the opening in the thickness direction of the circuit body.
3. A bus bar module attached to a battery assembly in which a plurality of single cells are stacked, comprising: a circuit body including a flexible substrate having a wiring pattern; a connector attached to the circuit body; a bus bar configured to be connected to electrodes of the plurality of single cells; and a holder holding the bus bar and being stretchable in a stacking direction of the plurality of single cells, wherein the circuit body is configured to connect the bus bar and the connector by the wiring pattern, and wherein the connector includes a terminal that is electrically connected to the wiring pattern and extends in a thickness direction of the circuit body, and a housing that accommodates the terminal.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0015]
[0016]
[0017]
[0018]
DETAILED DESCRIPTION
Embodiment
[0019] Hereinafter, a bus bar module 10 including a connector-attached circuit body according to an embodiment of the invention will be described with reference to the drawings. As shown in
[0020] (Structure of Battery Assembly)
[0021] First, the battery assembly 1 to which the bus bar module 10 according to the embodiment is attached will be described. The battery assembly 1 is formed by connecting a plurality of single cells (not shown) in series. Each of the plurality of single cells is provided with a positive electrode and a negative electrode protruding from an upper portion of a battery main body (a main body) having a rectangular parallelepiped shape. The positive electrode and the negative electrode are arranged apart from each other on an electrode surface of the battery main body, and are provided to respectively protrude in a cylindrical shape substantially vertically upward from the electrode surface.
[0022] The battery assembly 1 is arranged to stack the single cells in the front-rear direction (a stacking direction) such that positive electrodes and negative electrodes of adjacent single cells alternate. In the battery assembly 1, for example, among the single cells corresponding to both end portions of the single cells connected in series, a positive electrode of one single cell is a total positive electrode and a negative electrode of the other single cell is a total negative electrode. In an example shown in
[0023] (Structure of Bus Bar Module)
[0024] Next, the bus bar module 10 of the embodiment will be described. As shown in
[0025] As shown in
[0026] As shown in
[0027] As shown in
[0028] The proximal end side connection portion 42 has a rod-like shape and functions to connect with a wiring pattern (not shown) at the front end portion of the extension portion 21 of the circuit body 20. A reinforcement plate 22 is provided on a lower surface of the front end portion of the extension portion 21 of the circuit body 20. A plurality of through holes 23 that penetrate the reinforcement plate 22 and the circuit body 20 in the up-down direction (a thickness direction of the circuit body 20) are formed in the front end portion of the extension portion 21 in correspondence with arrangement of the plurality of terminals 40. The proximal end side connection portions 42 of the plurality of terminals 40 are inserted into the through holes 23 and fixed by soldering or the like. Accordingly, the terminals 40 are fixed to the front end portion of the extension portion 21 so as to protrude downward (in the thickness direction of the circuit body 20) from the front end portion of the extension portion 21, and are connected to the wiring patterns (not shown) in the circuit body 20.
[0029] As shown in
[0030] The plurality of terminals 40 fixed to the front end portion of the circuit body 20 (the extension portion 21) are respectively inserted and accommodated into the plurality of terminal accommodation chambers 51 of the housing 50 from the upper end side (the proximal end side). As shown in
[0031] The resin cover 60 mainly covers the front end portion of the extension portion 21 of the circuit body 20, thereby functioning to protect the proximal end side connection portions 42 (see FIG. 2) of the plurality of terminals 40 slightly protruding upward from an upper surface of the front end portion of the extension portion 21. As shown in
[0032] The cover 60 is assembled from above with respect to the housing 50 that accommodates the plurality of terminals 40. The cover 60 and the housing 50 are fixed to each other by engaging a pair of engagement portions 63 on a cover 60 side with a pair of engagement portions 54 provided at both widthwise end portions of the housing 50 (also see
[0033] As shown in
[0034] As shown in
[0035] From the viewpoint of preventing water droplets or the like from approaching the opening 52 of the housing 50, as shown in
[0036] As described above, according to the bus bar module 10 including the connector-attached circuit body according to the embodiment, the terminals 40 are connected to the wiring patterns so as to extend in the thickness direction of the circuit body 20 (orthogonal to the circuit body 20), and the housing 50 is provided to accommodate the terminals 40, thereby forming the connector 30. According for example, as shown in
[0037] In the bus bar module 10 according to the embodiment, since the outer surface of the cover 60 is provided with the inclined surface 62a that spreads toward the opening 52 of the housing 50 (that is, toward a fitting position with the connector portion 71 of the electric control box 70), water droplets or the like are less likely to approach the opening 52 of the housing 50. Therefore, reliability of electrical connection of the bus bar module 10 can be improved.
[0038] The invention is not limited to the above embodiment, and various modifications can be adopted within the scope of the invention. For example, the invention is not limited to the above-described embodiment, and can be appropriately modified, improved or the like. In addition, the material, shape, size, number, arrangement position, and the like of each component in the above-described embodiment are optional and are not limited as long as the invention can be achieved.
[0039] Here, features of the connector-attached circuit body and the embodiment of the bus bar module 10 according to the invention will be briefly summarized and listed in the following [1] to [3].
[1] A connector-attached circuit body comprising:
[0040] a circuit body including a flexible substrate having a wiring pattern; and
[0041] a connector attached to the circuit body and including a terminal and a housing that accommodates the terminal,
[0042] wherein the terminal is electrically connected to the wiring pattern and extends in a thickness direction of the circuit body.
[2] The connector-attached circuit body according to [1],
[0043] wherein the housing includes an opening corresponding to a mating connector in which the connector is configured to be fitted, and
[0044] wherein the connector further includes a cover that is assembled to the housing and has an inclined surface (62a) on an outer surface of the cover such that the outer surface extends outward toward the opening in the thickness direction of the circuit body.
[3] A bus bar module attached to a battery assembly in which a plurality of single cells are stacked, comprising:
[0045] a circuit body including a flexible substrate having a wiring pattern;
[0046] a connector attached to the circuit body;
[0047] a bus bar configured to be connected to electrodes of the plurality of single cells; and
[0048] a holder holding the bus bar and being stretchable in a stacking direction of the plurality of single cells,
[0049] wherein the circuit body is configured to connect the bus bar and the connector by the wiring pattern, and
[0050] wherein the connector includes a terminal that is electrically connected to the wiring pattern and extends in a thickness direction of the circuit body, and a housing that accommodates the terminal.
DESCRIPTION OF REFERENCE NUMERALS AND SIGNS
[0051] 1 battery assembly
[0052] 10 bus bar module
[0053] 20 circuit body
[0054] 30 connector
[0055] 40 terminal
[0056] 50 housing
[0057] 60 cover
[0058] 62a inclined surface
[0059] 71 connector portion (mating connector)