Connector

The integrated operation of a detection member with a cover simplifies the assembly process of connectors by ensuring secure locking and confirming full mating without additional steps.

WO2025169948A1PCT designated stage Publication Date: 2025-08-14AUTONETWORKS TECH LTD +2
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Patent Information

Application Number
PCT/JP2025/003720
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-02-09
Filing Date
2025-02-05
Publication Date
2025-08-14

AI Technical Summary

Technical Problem

Existing connectors with detection members for confirming full mating require separate operations for assembly, complicating the process.

Method used

A detection member that moves from a pre-detection position to a detection position in conjunction with the operation of fitting a cover into the connector housing, simplifying the assembly process by integrating these operations.

Benefits of technology

Simplifies assembly by eliminating the need for separate operations of fitting the cover and moving the detection member, reducing the likelihood of misalignment and ensuring secure locking.

✦ Generated by Eureka AI based on patent content.

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Abstract

One aspect of the present disclosure provides a connector that simplifies component assembly work even when the connector is provided with a detection member. A connector (1) comprises: a connector housing (3) that mates with a counterpart connector (2); an electric wire (4) that is fixed to a counterpart connector terminal (25) by means of a fastening part (18); a retainer (29) that holds a seal member (30) attached to an opening (24); and a cover (34) that closes the opening (24). The connector (1) is provided with a detection member (51) that is attached to the connector housing (3) and is operable from a pre-detection position to a detection position when the connector housing (3) is fully mated with the counterpart connector (2). The detection member (51) moves from the pre-detection position to the detection position in conjunction with the operation of mating the cover (34) to the connector housing (3).
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Description

connector

[0001] The present disclosure relates to connectors.

[0002] As disclosed in Patent Document 1, a bolt-fastened connector is known in the art, which electrically connects electric wires in a connector housing mated with a mating connector to terminals of the mating connector by tightening bolts. In this type of bolt-fastened connector, an opening formed in the connector housing for passing the bolt is closed with a cover to prevent hands from touching the bolt.

[0003] Japanese Patent Application Laid-Open No. 2022-81173

[0004] However, for this type of connector, there is a demand for a detection member on the connector housing to confirm whether the connector housing is fully mated with the mating connector. This detection member can be operated from a pre-detection position to a detection position when the connector housing is fully mated with the mating connector. This makes it possible to determine whether the connector housing is fully mated with the mating connector. However, this requires operating the detection member in addition to the normal connector assembly process, which hinders simplification of the assembly process.

[0005] An object of the present disclosure is to provide a connector that can simplify the assembly work of parts even when a detection member is provided.

[0006] A connector that solves the above problem comprises a connector housing that is fitted into a mating connector, an electric wire whose tip end terminal is fixed to the mating connector terminal of the mating connector by a fastening portion that is inserted through an opening in the connector housing, and a cover that closes the opening, and is equipped with a detection member that is attached to the connector housing and can be operated from a pre-detection position to a detection position when the connector housing is fully fitted into the mating connector, and the detection member moves from the pre-detection position to the detection position in conjunction with the operation of fitting the cover into the connector housing.

[0007] The present disclosure can simplify the assembly work of parts even when a detection member is provided.

[0008] FIG. 1 is a perspective view of a connector according to one embodiment. FIG. 2 is a perspective view of the connector as seen from the rear. FIG. 3 is a cross-sectional view taken along line III-III in FIG. 1. FIG. 4(a) is a perspective view of an electric wire, and FIG. 4(b) is an exploded perspective view of the electric wire. FIG. 5 is an exploded perspective view of the connector. FIG. 6 is a rear view of the connector. FIG. 7 is a cross-sectional view taken along line VII-VII in FIG. 1. FIGS. 8(a), 8(b), and 8(c) are explanatory diagrams showing the procedure for fitting the cover. FIG. 9 is a partial plan view of the connector. FIG. 10 is a cross-sectional view taken along line X-X in FIG. 8(a). FIGS. 11(a) and 11(b) are explanatory diagrams showing how the first and second engagement pieces of the detection member engage. FIG. 12(a) is a cross-sectional view showing the state of the detection member when the connector is partially mated, and FIG. 12(b) is a cross-sectional view showing the detection member moving from the pre-detection position to the detection position. FIG. 13 is a cross-sectional view taken along line XIII-XIII in FIG. 1. 14(a) and 14(b) are explanatory diagrams showing the movement of the cover locking mechanism.

[0009] First, embodiments of the present disclosure will be described below. [1] A connector of the present disclosure includes a connector housing that is fitted with a mating connector, an electric wire having a terminal at a tip thereof fixed to a mating connector terminal of the mating connector by a fastening portion that is inserted through an opening of the connector housing, and a cover that closes the opening, and further includes a detection member that is attached to the connector housing and can be moved from a pre-detection position to a detection position when the connector housing is completely fitted with the mating connector, and the detection member moves from the pre-detection position to the detection position in conjunction with the operation of fitting the cover to the connector housing.

[0010] According to this configuration, the detection member moves from the pre-detection position to the detection position in conjunction with the operation of fitting the cover to the connector housing. Therefore, it is not necessary to perform the operation of fitting the cover to the connector housing and the operation of moving the detection member from the pre-detection position to the detection position separately. Therefore, even when a detection member is provided, it is possible to simplify the assembly work of parts.

[0011] [2] In the above [1], the cover is positioned in an initial position when assembled to the connector housing, and is positioned in a closing position of the opening when moved linearly from the initial position relative to the connector housing, and the detection member moves from the pre-detection position to the detection position in conjunction with the operation of fitting the cover, which is positioned in the closing position, to the connector housing. With this configuration, the operation of the cover and the operation of the detection member cannot be linked unless the cover is slid from the initial position to the closing position. Therefore, it is less likely that the operation of the cover will be linked to the detection member by mistake.

[0012] [3] In the above [1] or [2], the connector includes a cover lock mechanism that holds the cover in the position after the mating operation when the cover is in the position closing the opening. With this configuration, the cover that closes the opening of the connector housing can be made less likely to fall off the connector housing by the cover lock mechanism.

[0013] [4] In the above [3], after the detection member is locked with the cover by the cover locking mechanism, it moves from the pre-detection position to the detection position in response to further operation of the cover. With this configuration, the cover transitions to the locked state by a first-stage operation of the cover, and the detection member is operated to the detection position by a second-stage operation of the cover. Therefore, it is possible to perform the locking of the cover by the cover locking mechanism and the operation of the detection member in response to the operation of the cover within the sequence of operations in which the cover in the closed position is fitted to the connector housing.

[0014] [5] In the connector of the above [3] or [4], the connector further includes a guide mechanism that uses a concave-convex shape to guide the positioning of the cover and the detection member when the cover and the detection member are locked by the cover lock mechanism. With this configuration, the cover and the detection member are positioned by the guide mechanism, allowing the cover and the detection member to be smoothly linked together.

[0015] [6] In the above [5], the cover positions the detection member at the detection position by pressing the detection member with a pair of pressing surfaces arranged on both sides of the guide mechanism. With this configuration, the detection member is pressed by the pair of pressing surfaces arranged on both sides of the guide mechanism of the cover to move the detection member from the pre-detection position to the detection position, so that the detection member can be moved smoothly to the detection position with a well-balanced load.

[0016] [7] In any of the above [1] to [6], the detection member has a lock retaining portion that, when positioned at the detection position, maintains the locked state of the locking portion that locks the mating of the connector housing and the mating connector. With this configuration, it is possible to make it difficult for the locking portion to be unintentionally released.

[0017] [Details of the Embodiments of the Present Disclosure] Specific examples of the present disclosure will be described below with reference to the drawings. Note that the present invention is not limited to these examples, but is defined by the claims, and is intended to include all modifications within the meaning and scope equivalent to the claims. In each drawing, for the convenience of explanation, some components may be exaggerated or simplified. Furthermore, the dimensional proportions of each part may differ from the actual ones.

[0018] (Connector 1) As shown in Fig. 1, connector 1 includes a connector housing 3 that mates with a mating connector 2, and electric wires 4 whose tips are housed inside the connector housing 3. Connector 1 includes a pair of electric wires 4. Connector 1 is used, for example, in a wire harness of a vehicle. Connector 1 is used, for example, in a cable of a charging inlet of the vehicle. Examples of vehicles include electric vehicles, plug-in hybrid vehicles, and fuel cell vehicles.

[0019] 1 , the connector housing 3 has the electric wires 4 connected to its side and the mating connector 2 connected to its bottom. In this way, the connector 1 is an L-shaped connector in which the direction in which the electric wires 4 are inserted into the connector housing 3 and the direction in which the connector housing 3 is mated with the mating connector 2 are orthogonal to each other.

[0020] As shown in Figure 2, the connector housing 3 has an opening 5 on its side for inserting electric wires 4. A pair of electric wires 4 is inserted into the opening 5 via a holder 6. The pair of electric wires 4 is inserted through a pair of slits 7 formed side by side in the height direction of the holder 6, each with a water-stopping member 8 interposed therebetween. A cap 9 for holding the holder 6 is attached to the opening 5.

[0021] 3, a locking portion 10 that locks the mated state of the connector housing 3 and the mating connector 2 is provided between them. In this example, the locking portion 10 has a claw portion 11 formed on the connector housing 3 and a protrusion 12 formed on the mating connector 2. When the connector housing 3 is completely mated with the mating connector 2, the claw portion 11 engages with the protrusion 12, thereby locking the mating.

[0022] 4( a) and 4(b), the electric wire 4 has a core wire 15 and an insulating coating 16 that covers the periphery of the core wire 15. The core wire 15 is, for example, a plate-shaped bus bar. An electric wire terminal 17 that is electrically connected to the mating connector 2 is formed at the tip of the core wire 15. The electric wire terminal 17 is formed with a hole 19 through which a shaft of a fastening portion 18 that fixes the electric wire terminal 17 to the mating connector 2 is passed.

[0023] The insulating coating 16, for example, covers the entire outer circumferential surface of the core wire 15. The insulating coating 16 is made of an insulating material such as a synthetic resin. For example, a synthetic resin containing a polyolefin resin such as cross-linked polyethylene or cross-linked polypropylene as a main component is used as the material for the insulating coating 16. As the material for the insulating coating 16, one type of material may be used alone, or two or more types of materials may be used in appropriate combination.

[0024] The pair of electric wire terminals 17 are arranged at different positions in the height direction (Z-axis direction in FIG. 4 ) and are also arranged offset from each other on a plane perpendicular to the height direction (X-Y axis plane in FIG. 4 ). In other words, although the electric wires 4 are arranged side by side in the height direction, the pair of electric wire terminals 17 are arranged so as not to overlap each other when viewed from the height direction.

[0025] An inner housing 21 that covers the periphery of the electric wire terminal 17 is attached to the tip of the electric wire 4. In this example, the inner housing 21 houses the electric wire terminals 17 of the pair of electric wires 4 as a single member. The pair of electric wires 4 are fixed to the inner housing 21 by a plurality of engaging claws 22 (only one is shown) formed on the inner housing 21. A hole 23 through which the shaft of the fastening portion 18 passes is formed in the inner housing 21 at a position opposite to the hole 19 of the electric wire terminal 17.

[0026] As shown in Fig. 5, the wire terminals 17 at the ends of the wires 4 are fixed to mating connector terminals 25 of the mating connector 2 by fastening portions 18 inserted through openings 24 of the connector housing 3. The fastening portions 18 are provided on each of the wires 4. The fastening portions 18 are, for example, bolts. In this manner, the connector 1 is a bolted connector in which the wires 4 are fixed to the mating connector 2 by bolts serving as fastening portions 18. The fastening portions 18 are fixed to the mating connector terminals 25 via bushings 26 housed in holes 19 of the wire terminals 17, for example.

[0027] 1 and 5, the connector 1 includes a retainer 29 that holds a seal member 30 that waterproofs the edge of the opening 24. The retainer 29 is formed in an annular shape to match the shape of the seal member 30. The retainer 29 is fixed to the connector housing 3 by engaging a pair of claws 31 with protrusions 32 (only one of which is shown) formed on the inner circumferential surface of the opening 24 of the connector housing 3. The seal member 30 is, for example, a rubber ring.

[0028] 5 and 6 , the connector 1 includes a cover 34 that closes the opening 24 so as to cover the retainer 29. The cover 34 closes the opening 24 to prevent hands from touching the fastening portion 18. The cover 34 has a cover main body 35 that covers the entire opening 24, legs 36 that extend from the cover main body 35 toward the connector housing 3, and bulges 37 formed on the side surfaces of the cover main body 35. A pair of legs 36 are arranged on both sides of the cover main body 35.

[0029] The connector housing 3 has rail portions 38 that guide the linear movement of the cover 34 assembled to the connector housing 3. The rail portions 38 are formed with insertion holes 39 into which the leg portions 36 of the cover 34 are inserted when the cover 34 is assembled to the connector housing 3. When the leg portions 36 are inserted into the insertion holes 39 and the cover 34 is assembled to the connector housing 3, the cover 34 takes its initial position before operation.

[0030] 6 , the legs 36 have protrusions 40 that slidably engage with the rail portions 38 to prevent the legs 36 from falling off the rail portions 38. The protrusions 40 are disposed in rail grooves 41 inside the rail portions 38. The cover 34 is operated to move linearly relative to the rail portions 38 as the protrusions 40 slide along the rail grooves 41.

[0031] As shown in Fig. 7, the protrusion 40 is formed in a circular shape in a side view. In this way, the portion of the protrusion 40 that contacts the bottom surface of the rail portion 38 (specifically, the rail groove 41) is formed in a curved shape. With this shape, the protrusion 40 can easily slide against the inner surface of the rail groove 41. The cover 34 is moved from the initial position in a linear direction (the direction of arrow A1 in Fig. 7) to a position that closes the opening 24 (the state shown in Fig. 8(a)).

[0032] The bulge 37 has a slope 42 at the corner of its lower portion. However, if the protrusion 40 is circular in side view, the cover 34 swings around the protrusion 40, which could cause the bulge 37 to come into contact with a component on the path of movement of the cover 34. In this case, if the bulge 37 has a slope 42, the slope 42 allows the cover 34 to smoothly move over a component even if the component is on the path of movement when the cover 34 is operated in a linear direction. This allows the cover 34 to be smoothly moved from the initial position to the closed position.

[0033] 9, the rail portion 38 of the connector housing 3 has insertion holes 43 formed at positions where the leg portions 36 of the cover 34 positioned in the closed position are to be disposed. Therefore, when the cover 34 is positioned in the closed position, the leg portions 36 are allowed to be inserted further into the insertion holes 43, so that the cover 34 can be moved further from the closed position.

[0034] 10 , the cover 34 has a pair of wall portions 45 that support the base ends of the leg portions 36. A rib 46 is formed on the inner surface of the cover 34 between the pair of wall portions 45. The connector housing 3 has two notches 47, 48 of different depths that are aligned in the linear movement direction of the cover 34 near the rail portion 38. When the cover 34 is operated from above in the closed position, the rib 46 is inserted into the notch 47 of the connector housing 3, and one side of the pair of wall portions 45 is inserted into the notch 48 of the connector housing 3.

[0035] As shown in Figures 8(a) and 8(b), when the cover 34 is operated (in this example, pressed) from the closed position, it is positioned at a first operation position, which is the first operation position in the operation direction (in the direction of arrow A2 in Figure 8(a)). The first operation position is a temporary fitting position in which the cover 34 is temporarily fitted into the opening 24. As shown in Figures 8(b) and 8(c), when the cover 34 is further operated (in this example, pressed) from the first operation position, it is positioned at a second operation position, which is the second operation position in the operation direction. The second operation position is a fully fitted position in which the cover 34 is fully fitted into the opening 24.

[0036] (Detection Member 51) As shown in Figure 1 and other figures, the connector 1 is equipped with a detection member 51 that can detect whether the connector housing 3 is completely mated with the mating connector 2. The detection member 51 has a main body 52 that extends in the height direction (the Z-axis direction in Figure 1). The main body 52 is lightweight, for example, by being hollowed out in multiple locations. The detection member 51 has both edge portions slidably engaged with a pair of grooves 53 formed on the side surfaces of the connector housing 3. In this way, the detection member 51 is attached to the connector housing 3 and is linearly movable in the height direction along the grooves 53.

[0037] 8( a) to 8(c), the detection member 51 moves from the pre-detection position to the detection position in response to the operation of fitting the cover 34 to the connector housing 3. In this example, the operation of the detection member 51 is linked to the operation of the cover 34 in the process of operating the cover 34 from the first operating position to the second operating position. That is, after the cover 34 is operated from the closed position to the first operating position, the cover 34 and the detection member 51 are linked in the process of operating the cover 34 further to the second operating position.

[0038] 11(a) and 11(b), the detection member 51 has a first engagement piece 55 that is locked to a protrusion 54 formed on the mating connector 2 when the detection member 51 is in the detection position, and a second engagement piece 57 that is locked to a protrusion 56 formed on the connector housing 3. The pair of first engagement piece 55 and second engagement piece 57 is disposed on both sides of the main body 52 in the width direction and is also disposed at the lower end of the main body 52. ​​Each second engagement piece 57 is disposed on the widthwise outer side of the first engagement piece 55 that constitutes the pair.

[0039] When the claw portion 11 and the protrusion 12 of the locking portion 10 are partially engaged, the first engagement piece 55 does not reach the protrusion 54, and furthermore, the second engagement piece 57 does not reach the protrusion 56. In this way, when the claw portion 11 and the protrusion 12 are partially engaged, neither the first engagement piece 55 nor the second engagement piece 57 transitions to an engaged state. As a result, when the locking portion 10 is partially engaged, it is impossible to position the detection member 51 in the detection position, so the operator recognizes that the connector 1 is not completely engaged with the mating connector 2.

[0040] When the claw 11 and protrusion 12 of the locking portion 10 are fully engaged, the first engagement piece 55 reaches the protrusion 54, and further, the second engagement piece 57 reaches the protrusion 56. In this way, when the claw 11 and protrusion 12 are fully engaged, both the first engagement piece 55 and the second engagement piece 57 transition to an engaged state. This allows the detection member 51 to be positioned in the normal detection position, so the operator can recognize that the connector 1 is fully engaged with the mating connector 2.

[0041] 12(a) and 12(b), the detection member 51 has a lock retaining portion 59 that maintains the locked state of the locking portion 10. The lock retaining portion 59 has a restricting portion 60 that is disposed across the claw portion 11 of the connector housing 3, and a support protrusion 62 that can be inserted into a recessed portion 61 at the base end of the claw portion 11. The restricting portion 60 presses the claw portion 11 from the surface when the detection member 51 is in the detection position. The support protrusion 62 is housed in the recessed portion 61 when the detection member 51 is in the detection position.

[0042] 12(b), when the detection member 51 is in the detection position, the restricting portion 60 covers the claw portion 11 from above, and the support protrusion 62 enters the recessed portion 61. Therefore, even if an attempt is made to forcibly remove the locking portion 10, the support protrusion 62 of the detection member 51 is accommodated in the recessed portion 61 of the connector housing 3, and the restricting portion 60 prevents the claw portion 11 from being released from the protrusion 12 by the lock retaining portion 59 that presses the claw portion 11 from above. In this way, when a load is applied to the claw portion 11 of the locking portion 10 in the opening direction (unlocking direction), the support protrusion 62 is supported by the inner surface of the recessed portion 61, preventing the claw portion 11 from opening, thereby maintaining the restricting portion 60 pressing the claw portion 11 from the surface.

[0043] 7, the connector 1 includes a fall-off prevention portion 65 that is provided at the end of the movement path of the cover 34 in the opening direction (the direction of arrow B1 in FIG. 7) in the connector housing 3 and that prevents the cover 34 from falling off in the opening direction. The fall-off prevention portion 65 is a protruding piece that is formed on the upper wall of the connector housing 3 at a position opposite the opening 24. When the cover 34 is slid in the opening direction, the cover body 35 of the cover 34 abuts against the fall-off prevention portion 65, thereby preventing the cover 34 from falling off when moved linearly in the opening direction.

[0044] 13, 14(a), and 14(b), the connector 1 includes a cover lock mechanism 66 that holds the cover 34 in a position after the operation when the cover 34 is in the closing position of the opening 24 and the mating operation is performed. In this example, when the cover 34 is pressed to fit into the connector housing 3 with the cover 34 in the closing position of the opening 24, the cover lock mechanism 66 holds the position of the cover 34 in the position where the cover 34 was pressed. Specifically, the cover lock mechanism 66 transitions to a locked state when the cover 34 is operated from the closing position to the first operating position.

[0045] The cover lock mechanism 66 has a lock piece 67 (see FIGS. 14(a) and 14(b)) formed on the detection member 51 and a step 68 (see FIG. 13) formed on the cover 34. The lock piece 67 is disposed at one end (the upper end in this example) of the detection member 51 in the longitudinal direction. The step 68 is formed inside the bulge 37 of the cover 34. When the cover 34 is pressed from the closed position, the lock piece 67 bends during the pressing operation, and when the cover 34 reaches the first operating position, the lock piece 67 engages with the step 68.

[0046] 8( a), the connector 1 includes a guide mechanism 69 that uses a concave-convex shape to guide the positioning of the cover 34 and the detection member 51 when the cover 34 and the detection member 51 are locked by the cover lock mechanism 66. The guide mechanism 69 includes a protruding wall 70 formed on the detection member 51 and a notch 71 formed on the cover 34. When the cover 34 is pressed from the closed position to the first operating position, the guide mechanism 69 positions the cover 34 and the detection member 51 by causing the protruding wall 70 to fit into the notch 71.

[0047] 8A, the cover 34 has a pushing surface 72 that contacts the detection member 51 during operation and pushes the detection member 51 toward the detection position. A pair of pushing surfaces 72 are arranged on both sides of the guide mechanism 69 (specifically, the notch 71). In this example, when the cover 34 is operated from the first operating position to the second operating position, the pair of pushing surfaces 72 push the detection member 51, thereby positioning the detection member 51 at the detection position. In this way, after the detection member 51 is locked to the cover 34 by the cover lock mechanism 66, the detection member 51 is moved from the pre-detection position to the detection position in conjunction with further operation of the cover 34.

[0048] Next, the operation of the connector 1 of this embodiment will be described. (Operation of the cover 34 from the initial position to the closed position) As shown in Figure 7, when the cover 34, which is assembled to the connector housing 3 and located in the initial position, is to be placed in the closed position where it closes the opening 24 of the connector housing 3, the cover 34 is slid in the closing direction (the direction of arrow A1 in Figure 7). The sliding of the cover 34 to the closed position is guided by the movement of the protrusions 40 on the legs 36 of the cover 34 along the rail grooves 41 of the rail portions 38. When the cover 34 reaches directly above the opening 24, the cover 34 takes the closed position.

[0049] (Operation of the cover 34 from the closed position to the first operating position) As shown in Figures 8(a) and 8(b), when the cover 34 is in the closed position, it is pressed directly downward from above to be moved to the first operating position. At this time, the legs 36 of the cover 34 enter the depths of the insertion holes 43 (see Figure 9) of the connector housing 3, thereby allowing the cover 34 to be moved to the first operating position. The pressing of the cover 34 is also guided by a guide mechanism 69 in which the protruding wall 70 of the detection member 51 enters the notch 71 of the cover 34. When the cover 34 is moved from the closed position to the first operating position, the cover 34 is locked to the detection member 51 by the cover lock mechanism 66 (see Figure 14(b)).

[0050] 8(b) and 8(c), when the cover 34 is positioned in the first operating position and is to be positioned in the second operating position, the cover 34 is further pressed straight down from the first operating position. At this time, the legs 36 of the cover 34 are inserted further into the insertion holes 43 (see FIG. 9) of the connector housing 3, thereby allowing the cover 34 to be operated to the second operating position. The cover 34 in the closed position is operated successively from the closed position to the first operating position to the second operating position.

[0051] When the cover 34 is operated from the first operating position to the second operating position, the detection member 51 is operated from the pre-detection position to the detection position in conjunction with the cover 34. Specifically, the pushing surface 72 of the cover 34 presses the detection member 51 directly downward, causing the detection member 51 to slide downward together with the cover 34. In this way, by pressing the cover 34, the cover 34 and the detection member 51 are operated together.

[0052] 11(b) and 12(b), when the detection member 51 reaches the detection position, the first engagement piece 55 engages with the protrusion 54 (see FIG. 11(a)), and the second engagement piece 57 engages with the protrusion 56 (see FIG. 11(a)). In other words, the detection member 51 is positioned at the detection position and locked to the connector housing 3 and the mating connector 2. Therefore, when the detection member 51 is positioned at the detection position, the operator recognizes that the connector 1 is completely mated with the mating connector 2. Furthermore, when the detection member 51 is positioned at the detection position, the cover 34 is completely mated with the connector housing 3.

[0053] To open the cover 34 relative to the opening 24, the closing operation of the cover 34 can be reversed. Specifically, by lifting the cover 34 together with the detection member 51, the first engagement piece 55 and the second engagement piece 57 are disengaged, and the cover lock mechanism 66 is released during the lifting operation. Then, by sliding the cover 34 from the closed position to the initial position, the cover 34 is opened.

[0054] (Effects of the embodiment) The connector 1 of the above embodiment can achieve the following effects: (1) The connector 1 includes the connector housing 3 that is mated with the mating connector 2, the wires 4 that are fixed to the mating connector terminals 25 by the fastening portions 18, the retainer 29 that holds the seal member 30 that is attached to the opening 24, and the cover 34 that closes the opening 24. The connector 1 includes a detection member 51 that is attached to the connector housing 3 and can be moved from a pre-detection position to a detection position when the connector housing 3 is completely mated with the mating connector 2. The detection member 51 moves from the pre-detection position to the detection position in conjunction with the operation of mating the cover 34 with the connector housing 3.

[0055] According to this configuration, the detection member 51 is moved from the pre-detection position to the detection position in conjunction with the operation of fitting the cover 34 to the connector housing 3. Therefore, it is not necessary to separately perform the operation of fitting the cover 34 to the connector housing 3 and the operation of moving the detection member 51 from the pre-detection position to the detection position. Therefore, even when the detection member 51 is provided, the assembly work of parts can be simplified.

[0056] (2) The cover 34 is located in the initial position when assembled to the connector housing 3, and is located in the closing position of the opening 24 when moved linearly from the initial position relative to the connector housing 3. The detection member 51 moves from the pre-detection position to the detection position in conjunction with the operation of fitting the cover 34, which is located in the closing position, to the connector housing 3. With this configuration, unless the cover 34 is slid from the initial position to the closing position, the operation of the cover 34 and the operation of the detection member 51 cannot be linked. Therefore, it is unlikely that the operation of the cover 34 will be linked to the operation of the detection member 51 by mistake.

[0057] (3) The connector 1 includes a cover lock mechanism 66 that holds the cover 34 in the position after the mating operation when the cover 34 is in the position closing the opening 24. With this configuration, the cover 34 closing the opening 24 of the connector housing 3 can be made less likely to fall off the connector housing 3 by the cover lock mechanism 66.

[0058] (4) After the detection member 51 is locked to the cover 34 by the cover lock mechanism 66, it moves from the pre-detection position to the detection position in conjunction with further operation of the cover 34. According to this configuration, the cover 34 transitions to the locked state by a first-stage operation of the cover 34, and the detection member 51 is operated to the detection position by a second-stage operation of the cover 34. Therefore, the locking of the cover 34 by the cover lock mechanism 66 and the operation of the detection member 51 in conjunction with the operation of the cover 34 can be performed within the sequence of operations in which the cover 34 in the closed position is fitted to the connector housing 3.

[0059] (5) The connector 1 includes a guide mechanism 69 that uses the shape of the projections and recesses to guide the positioning of the cover 34 and the detection member 51 when the cover 34 and the detection member 51 are locked by the cover lock mechanism 66. With this configuration, the cover 34 and the detection member 51 are positioned by the guide mechanism 69, allowing the cover 34 and the detection member 51 to move smoothly in conjunction with each other.

[0060] (6) The cover 34 positions the detection member 51 at the detection position by pressing the detection member 51 with a pair of pressing surfaces 72 arranged on both sides of the guide mechanism 69. According to this configuration, the pair of pressing surfaces 72 arranged on both sides of the guide mechanism 69 of the cover 34 press the detection member 51 to move the detection member 51 from the pre-detection position to the detection position, so that the detection member 51 can be moved smoothly to the detection position with a well-balanced load.

[0061] (7) When the detection member 51 is positioned at the detection position, the detection member 51 has a lock retaining portion 59 that maintains the locked state of the locking portion 10 that locks the mating of the connector housing 3 and the mating connector 2. This configuration makes it less likely that the locking portion 10 will be unintentionally released.

[0062] (Other Embodiments) This embodiment can be modified as follows: This embodiment and the following modifications can be combined and implemented within the scope of technical compatibility.

[0063] The detecting member 51 may have, for example, only one of the first engaging piece 55 and the second engaging piece 57. The size of the detecting member 51 can be changed appropriately in accordance with the size of the connector housing 3.

[0064] The detection member 51 may be configured without, for example, the elements of the cover lock mechanism 66 and the elements of the guide mechanism 69. The detection member 51 is not limited to being disposed on the front wall surface of the connector housing 3, but may be disposed on, for example, a side wall surface.

[0065] The pair of electric wires 4 does not need to be arranged in the height direction, but may be arranged in the width direction (horizontal direction). The number of electric wires 4 is not limited to two, but may be one, or three or more.

[0066] The operation of the cover 34 from the initial position to the closed position is not limited to a sliding operation, but may be, for example, a rotation operation around the tip of the leg 36 (specifically, the protrusion 40). The cover 34 may be in the closed position of the opening 24 when it is attached to the connector housing 3.

[0067] The operation of fitting the cover 34 from the closed position to the connector housing 3 is not limited to a two-step operation, but may be a one-step operation. That is, a configuration may be adopted in which the cover 34 is locked and the detection member 51 is interlocked simultaneously by a one-step operation of the cover 34 from the closed position.

[0068] The core wire 15 is not limited to a bus bar, but may be a bundle of multiple conductors. While the present disclosure has been described with reference to the exemplary embodiments, it is understood that the present disclosure is not limited to those exemplary embodiments or structures. The present disclosure also encompasses various modifications and modifications within the scope of equivalents. Additionally, various combinations and forms, including only one element, more than one element, or fewer than one element, are also within the scope and spirit of the present disclosure.

[0069] The present disclosure encompasses the following aspects: Note that, for the purpose of facilitating understanding only and not for limitation, in the following description, reference signs indicating components of the embodiments are given in parentheses. (Supplementary Note 1) A connector (1) comprising: a connector housing (3) including an opening (24) into which a fastening portion (18) for fixing an electric wire (4) to a mating connector (2) can be inserted; a cover (34) for closing the opening; and a detection member (51) attached to the connector housing and capable of detecting whether the connector housing is fully mated with the mating connector, wherein the cover (34) is configured to be pushable in a cover assembling direction (Z-axis direction) from a closing position where the opening (24) is closed toward the connector housing (3), and the cover (34) is assembled with the detection member (51) when pushed in the cover assembling direction (Z-axis direction) from the closing position to a first operating position, and when the connector housing (3) is further pushed in the cover assembling direction (Z-axis direction) from the first operating position with the connector housing (3) fully mated with the mating connector (2), the connector (1) is configured to move integrally with the detection member (51) from the first operating position to a second operating position.

[0070] According to the configuration of Supplementary Note 1, the detection member is assembled to the cover when the cover moves from the closed position to the first operating position, and then moves integrally with the cover from the first operating position to the second operating position in conjunction with the movement of the cover. At this time, unless the connector housing is fully mated with the mating connector, the cover and detection member cannot move from the first operating position to the second operating position. Therefore, complete mating of the connector housing with the mating connector can be confirmed by the completion of movement of the detection member (and cover) to the second operating position. In this way, since the detection member can be moved simply by pushing the cover from the closed position, and it can be confirmed whether the connector housing is fully mated with the mating connector, the assembly work of the parts can be simplified even when a detection member is provided.

[0071] REFERENCE SIGNS LIST 1 connector 2 mating connector 3 connector housing 4 electric wire 5 opening 6 holder 7 slit 8 watertight member 9 cap 10 locking portion 11 claw portion 12 protrusion 15 core wire 16 insulating coating 17 electric wire terminal 18 fastening portion 19 hole portion 21 inner housing 22 engaging claw 23 hole portion 24 opening portion 25 mating connector terminal 26 bush 29 retainer 30 sealing member 31 claw portion 32 protrusion portion 34 cover 35 cover body 36 leg portion 37 bulge portion 38 rail portion 39 insertion hole 40 projection 41 rail groove 42 inclined surface 43 insertion hole 45 wall portion 46 rib 47 notch portion 48 notch portion 51 detection member 52 Main body 53 Groove 54 Protrusion 55 First engagement piece 56 Protrusion 57 Second engagement piece 59 Lock retaining portion 60 Restriction portion 61 Recessed portion 62 Support protrusion 65 Fall-off prevention portion 66 Cover lock mechanism 67 Lock piece 68 Step portion 69 Guide mechanism 70 Protruding wall 71 Notch 72 Push-in surface

Claims

1. A connector comprising: a connector housing to be fitted into a mating connector; an electric wire having a terminal at its tip fixed to a mating connector terminal of the mating connector by a fastening portion inserted through an opening of the connector housing; and a cover to close the opening; further comprising a detection member attached to the connector housing and operable to move from a pre-detection position to a detection position when the connector housing is fully fitted into the mating connector; and the detection member moves from the pre-detection position to the detection position in conjunction with the operation of fitting the cover into the connector housing.

2. A connector as described in claim 1, wherein the cover is positioned in an initial position when assembled to the connector housing, and is positioned in a blocking position of the opening when operated in a linear direction from the initial position relative to the connector housing, and the detection member is moved from the pre-detection position to the detection position in conjunction with the operation of fitting the cover, which is positioned in the blocking position, into the connector housing.

3. A connector as set forth in claim 1, further comprising a cover locking mechanism that holds the cover in the position after the mating operation when the cover is in the position closing the opening.

4. A connector as described in claim 3, wherein the detection member moves from the pre-detection position to the detection position in conjunction with further operation of the cover after being locked with the cover by the cover locking mechanism.

5. A connector as described in claim 3, further comprising a guide mechanism that uses a concave / convex shape to guide the positioning of the cover and the detection member when the cover and the detection member are locked by the cover lock mechanism.

6. A connector according to claim 5, wherein the cover positions the detection member at the detection position by pressing the detection member with a pair of pushing surfaces arranged on both sides of the guide mechanism.

7. A connector as described in claim 1, wherein the detection member has a lock retaining portion that maintains the locked state of a locking portion that locks the mating of the connector housing and the mating connector when the detection member is located at the detection position.

Citation Information

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