1. Field of the Invention
This invention relates to a connector.
2. Description of the Related Art
Japanese Unexamined Patent Publication No. 2005-116395 discloses an electrical connection device (connector) that includes a connecting connector element with a terminal supporting portion for supporting two connection terminals connected to end parts of conductive wires and a cover to be mounted on the connecting connector element to sandwich the connection terminals by covering an upper opening of the connecting connector element. Grooves are provided on an end part of the connecting connector element to allow the passage of the wires. A wire pressing portion projects from the cover at a position corresponding to the grooves. The wire pressing portion presses the wires when the cover is mounted on the connecting connector element to prevent the wires from coming out of the grooves. Thus, the wires are pressed firmly between the wire pressing portion and groove surfaces, so that the wires do not move loosely in the grooves, and rattling of the connection terminals can be suppressed even if the wires drawn out to outside are, for example, pulled. However, wire holding spaces between the wire pressing portion and the groove surfaces are of fixed size, and the holding spaces cannot be changed if diameters of the wires are changed. Thus, there is a problem of having to prepare a plurality of devices corresponding to diameters of conductive wires.
The invention was completed based on the above situation and aims to provide a connector capable of holding a wire even if a wire diameter is changed.
The invention is directed to a connector including a terminal fitting connected to an end part of a wire. The connector has a main body with a terminal accommodating portion capable of accommodating the terminal fitting. A cover is to be mounted on the main body to cover the terminal fitting accommodated in the terminal accommodating portion. A wire draw-out opening is formed between joint parts of the cover and the main body when the cover is mounted on the main body and enables the wire to be drawn out being. A resilient support is provided on an opening edge part of the wire draw-out opening for supporting the wire by resiliently contacting an outer peripheral surface of the wire at a plurality of circumferentially spaced positions.
The resilient support supports the wire by resiliently contacting the outer peripheral surface of the wire when the wire is inserted into the wire draw-out opening between the joint parts of the cover and the main body. Thus, a change of the wire diameter can be accommodated by one connector. Further, the resilient support is in contact with the outer peripheral surface of the wire at the plurality of circumferentially spaced-apart positions. As a result, the wire is held stably in the wire draw-out opening.
The resilient support may be formed into a corrugated shape and may be expandable and contractible in a radial direction of the wire. Thus, the resilient support is in contact with the outer peripheral surface of the wire at the plurality of circumferentially spaced positions.
The resilient support is provided on an opening edge of the wire draw-out opening on at least one of the main body and the cover for resiliently sandwiching and holding the wire between the resilient support and the opposed surface. Thus, the resilient support may be provided on only one of the main body and the cover.
A connector 10 to be connected to an airbag device of an automotive vehicle incorporating an inflator is illustrated in
The terminal fitting 60 is formed integrally or unitarily such as by bending an electrically conductive metal plate. More particularly, the terminal fitting 60 includes a substantially hollow cylindrical terminal connecting portion 61 extending along the front-back direction and a barrel-like wire connecting portion 62 extending along the vertical direction. The terminal connecting portion 61 and the wire connecting portion 62 are aligned to define a substantially L shape in a side view, as shown in
The main body 11 is made of synthetic resin to define a vertically long rectangular base 13 extending along the vertical direction and a fitting protrusion 14 projecting unitarily forward from an upper part of the base 13 (see
As shown in
As shown in
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As shown in
As shown in
The cover 12 also is made of synthetic resin and, although not shown in detail, includes a vertically long rectangular covering plate 25. Two lock pieces (not shown) project forward from opposite left and right edges of the covering plate 25. The cover 12 is mounted on the base 13 from behind so that the covering plate 25 covers a rear surface opening of the base 13. The covering plate 25 is held in contact with the rear ends of both side walls 17 and the end wall 22 of the base 13, with the lock pieces placed on outer sides of the side walls 17. The lock pieces are locked resiliently to the corresponding locks 18 to hold the cover 12 on the main body 11.
As shown in
The terminal fittings 60 are inserted into the terminal accommodating portions 16A, 16B of the main body 11 and then the cover 12 is mounted on the main body 11. The wire connecting portions 62 of the terminal fittings 60, the wires 90 extending down from the wire connecting portions 62 and the ferrite member 70 through which the wires 90 are inserted are accommodated into the terminal accommodating portions 16B of the base 13 of the main body 11 and, in that state, the rear opening of the base 13 is closed by the covering plate 25 of the cover 12. Further, when the cover 12 is mounted as shown in
The resilient support 24 has a corrugated shape and hence is expandable and contractible in a radial direction of the wire 90. Thus, a change in an outer diameter of the wire 90) can be dealt with. For example, if the wire diameter becomes smaller than that of the wire 90, the resilient support 24 supports the small-diameter wire 90 from below with a smaller deflection amount than in the above case. Further, if the wire diameter becomes larger than that of the wire 90, the resilient support 24 supports the large-diameter wire 90 from below with a larger deflection amount than in the above case. In this way, even if the wire diameter is changed, a state where the resilient support 24 is in contact with the outer peripheral surface of the substantially lower half of each wire 90 at the plural positions is maintained and loose movements of each wire 90 in the wire draw-out opening 23 are suppressed.
As described above, the wires 90 are inserted through the wire draw-out openings 23 formed between the end walls 22, 26 of the main body 11 and the cover 12 and the resilient supports 24 resiliently contact the outer peripheral surfaces of the inserted wires 90 at the plural circumferentially spaced positions to support the wires 90. Thus, even if the wire diameter is changed, a difference in the wire diameter can be absorbed by the amount of resilient deflection of the resilient supports 24 and a wire diameter change can be dealt with by one connector 10. In addition, the wire 90 is held stably in the wire draw-out opening 23 by the contact of the resilient support 24 with the outer peripheral surface of the wire 90 at the plural positions. More particularly, the resilient support 24 is formed into a corrugated shape to be expandable and contractible in the radial direction of the wire 90. Thus, the state where the resilient support 24 is in contact with the outer peripheral surface of the wire 90 at the plurality of positions is ensured.
Further, since the cover 12 is not provided with the resilient supporting portions 24 and the existing cover 12 can be used as it is. Hence, the structure of the connector 10 is not complicated more than necessary and manufacturing cost can be suppressed.
The invention has been described with respect to one embodiment. However various changes can be made without departing from the scope of the invention defined by the claims. Some of the changes that are within the scope of the invention are described below.
The resilient supports may be provided on opening edge parts of wire draw-out openings on the end wall of the cover.
The resilient supports may be provided on the opening edge parts of the wire draw-out openings on the both end walls of the main body and the cover.
The wire draw-out openings may be formed by recessing the end wall of the cover to be able to receive the wires.
The main body and the cover may be coupled integrally via a hinge.
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2014-215000 | Oct 2014 | JP | national |
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Number | Date | Country |
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2005-116395 | Apr 2005 | JP |
Number | Date | Country | |
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20160118740 A1 | Apr 2016 | US |