The present invention relates to a connector.
Patent Literature 1 describes a side spacer to be attached laterally to a housing body of a connector. The side spacer is constituted by a plate-like outer member, and a branch plate to be inserted into a terminal receiving chamber from a side portion of the housing body. The outer member includes a side plate, an upper plate and a lower plate with which the housing body is covered when the side spacer is attached to the housing body. The branch plate is provided with a terminal temporary locking lance and a terminal formal locking portion. When a female terminal is inserted into the terminal receiving chamber of the housing body in a state where the side spacer is temporarily locked to the housing body, the female terminal is temporarily locked to the terminal temporary locking lance of the side spacer. After that, when the side spacer is formally locked to the housing body, the female terminal is formally locked to the terminal formal locking portion of the side spacer. Incidentally, the same literature includes a drawing illustrating a state where an upper plate and a lower plate of the housing body defining the upper and lower sides of the terminal receiving chamber have been covered with the upper plate and the lower plate of the outer member of the side spacer from above and below.
As for details of the above protector, refer to Patent Literature 1, JP-A-2003-123892.
In the connector according to Patent Literature 1, the female terminal and the branch plate of the side spacer overlap each other vertically in the terminal receiving chamber of the housing body, and the upper plate and the lower plate of the housing body defining the upper and lower sides of the terminal receiving chamber are covered with the upper plate and the lower plate of the outer member of the side spacer from above and below. In this manner, a plurality of components overlap each other vertically in the aforementioned connector. It is therefore difficult to miniaturize the connector in the height direction.
An object of the present invention is to provide a connector which can be miniaturized.
Embodiments of a connector according to the present invention provide the following item (1) to (3).
(1) A connector comprising:
a housing having a terminal receiving chamber having an opening on one or both of opposite sides in a preset direction crossing an insertion direction of a connection terminal; and
a side retainer having a pair of opposed plate portions disposed in positions to sandwich the housing from the opposite sides in the preset direction, the side retainer being attached laterally to the housing and movably supported on the housing to move between a temporary locking position to temporarily lock the connection terminal and a formal locking position to formally lock the connection terminal,
one or both of the opposed plate portions of the side retainer covering one or both of the opposite sides of the terminal receiving chamber upon the side retainer being at the formal locking position,
the side retainer including a front plate portion disposed on a front side of the housing in the insertion direction to connect front end portions of the pair of the opposed plate portions to each other.
According to a first aspect of the invention, relating to the item (1), of the opposed plate portions of the side retainer, one on the one side or both on the opposite sides in the predetermined direction close the terminal receiving chamber on the one side or the opposite sides at the formal locking position. Accordingly, of plates of the housing, one on the one side or two on the opposite sides can be removed, and, of the opposite plate portions of the side retainer, one on the one side or both on the opposite sides can be disposed at the positions from which the plates of the housing have been removed. It is therefore possible to miniaturize the connector in the aforementioned predetermined direction in comparison with a case where a side retainer is attached to a housing which closes a terminal receiving chamber on the opposite sides in the predetermined direction.
(2) The connector according to the item (1), wherein
the opposed plate portion of the side retainer covering the terminal receiving chamber at the formal locking position includes a temporary locking portion to temporarily lock the connection terminal in the terminal receiving chamber at the temporary locking position and a formal locking portion to formally lock the connection terminal in the terminal receiving chamber at the formal locking position,
the housing includes a rear locking portion to lock at least a rear end portion of the opposed plate portion of the side retainer at the temporary locking position to regulate the rear end portion of the opposed plate portion from moving outward in the preset direction,
the opposed plate portion at the temporary locking position is pressed by the connection terminal through the temporary locking portion and bent outward in the preset direction to allow insertion of the connection terminal when the connection terminal is inserted into the terminal receiving chamber.
According to a second aspect of the invention, relating to the item (2), of the opposed plate portions of the side retainer, the opposed plate portion closing the terminal receiving chamber at the formal locking position (hereinafter referred to as a closing opposed plate portion) includes a temporary locking portion that temporarily locks the connection terminal, and a formal locking portion that formally locks the connection terminal. In a state where the side retainer is set at the temporary locking position, the rear end portion of the closing opposed plate portion is locked to the rear locking portion of the housing so as to be regulated from moving outward in the predetermined direction, while the front end portion of the closing opposed plate portion is supported on the housing through the front plate portion and the opposed plate portion on the opposite side so as to be regulated from moving outward in the predetermined direction. In this manner, in the state where the side retainer is set at the temporary locking position, the closing opposed plate portion is supported on the front end side and on the rear end side, so that the closing opposed plate portion can be bent suitably outward in the predetermined direction when the connection terminal is inserted into the terminal receiving chamber. Thus, the connection terminal can be inserted even if the temporary locking portion of the closing opposed plate portion is not bent largely. It is therefore possible to miniaturize the connector in the front/rear direction without providing a cantilever-like temporary locking portion that can be bent long and largely in the front/rear direction.
(3) The connector according to the item (2), wherein
the housing includes a front locking portion to lock at least the front end portion of the opposed plate portion at the temporary locking position to regulate the front end portion of the opposed plate portion from moving outward in the preset direction.
According to a third aspect of the invention, relating to the item (3), in the state where the side retainer is set at the temporary locking position, the front end portion of the closing opposed plate portion is locked to the front locking portion of the housing so as to be regulated from moving outward in the predetermined direction. Accordingly, when the closing opposed plate portion is bent, influence thereof on the opposed plate portion on the opposite side through the front plate portion can be suppressed. Thus, elastic deformation in the opposed plate portions of the side retainer on the opposite sides in the predetermined direction can be controlled individually.
According to the present invention, a connector can be miniaturized.
A first embodiment of a connector for carrying out the present invention will be described below with reference to the drawings.
(Schematic Configuration of Female Connector 10)
As shown in
(Male Housing 2)
The male housing 2 is made of synthetic resin. The male housing 2 is connected directly to an apparatus wall of a not-shown electric apparatus which is, for example, mounted on a vehicle or the like. As shown in
(Female Terminal 15)
Each female terminal 15 integrally has an electric contact portion 15a on the distal end side, a neck portion 15b at the rear of the electric contact portion 15a, and a calking portion 15c at the rear of the neck portion 15b. The calking portion 15c is connected to an electric wire 9. The electric contact portion 15a has a temporary locking protrusion 15d (see
(Female Housing 11)
The female housing 11 is made of synthetic resin. As shown in
The rear region 19 of the inner housing 16 has a large diameter portion 19a, and a small diameter portion 19b on the front end side. The large diameter portion 19a is formed to be slightly smaller than the space 6 of the male housing 2. The small diameter portion 19b is formed to be smaller than the large diameter portion 19a. The seal member 13 is attached to the cylindrical outer circumferential surface of the small diameter portion 19b.
The front region 20 of the inner housing 16 to which the side retainer 14 has been attached is inserted into the space 6 of the male housing 2. A female terminal receiving chamber (terminal receiving chamber) 18 to which the two female terminals 15 can be inserted from the rear is provided in the front region 20 of the inner housing 16. The female terminal receiving chamber 18 communicates with a terminal insertion port 27 at the rear end of the rear region 19 of the inner housing 16. The electric contact portions 15a and parts (front end portions) of the neck portions 15b of the female terminals 15 are received in the female terminal receiving chamber 18 of the front region 20 of the inner housing 16.
As shown in
As shown in
As shown in
The outer housing 17 has a female housing bridge 33 which rises up from the opposite left and right ends of a front end upper portion of the outer housing 17, crosses the front end upper portion in the width direction, and covers the locking piece 32 of the housing arm 30 from the outside (upper). The female housing bridge 33 is disposed in a position where the locking piece 32 is allowed to be elastically deformed by the upper locking protrusion 7 of the male housing 2, and near and outside (upper side) the movable region of the locking piece 32.
(Side Retainer 14)
The side retainer 14 is made of synthetic resin. As shown in
The retainer body 34 has a retainer upper plate portion (opposed plate portion) 38, a retainer lower plate portion (opposed plate portion, closing opposed plate portion) 39 and a retainer curved plate portion 40 integrally. The retainer upper plate portion 38 and the retainer lower plate portion 39 are separated vertically so as to be opposed to each other. The retainer curved plate portion 40 connects a side edge of the retainer upper plate portion 38 and a side edge of the retainer lower plate portion 39 continuously. In the state where the side retainer 14 is set at the formal locking position, the retainer upper plate portion 38 and the retainer lower plate portion 39 are positioned to hold the front region 20 of the inner housing 16 from opposite sides in the upper/lower direction. Incidentally, in the embodiment, although the retainer curved plate portion 40 is provided as a side plate portion connecting the side edge of the retainer upper plate portion 38 and the side edge of the retainer lower plate portion 39 continuously, a side plate portion which is not curved may be provided.
A retainer protrusion 41 extending like a straight line in the fitting direction is provided to protrude downward at an edge of the retainer upper plate portion 38 on the opening (opening on the opposite side of the retainer curved plate portion 40) side. A notch 63 is formed at a rear end portion of the retainer protrusion 41 so that a jig (not shown) can be inserted thereto. The jig is used when the side retainer 14 is moved from the formal locking position to the temporary locking position.
As shown in
In the state where the side retainer 14 is mounted at the formal locking position on the front region 20 of the inner housing 16, the female terminal support portion 60 is disposed at the rear of the female terminal support portion 24a of the housing front plate portion 24 so that the front face of the female terminal support portion 60 extends in the width direction while facing and approaching or touching the rear face of the female terminal support portion 24a. The upper face of the female terminal support portion 60 is disposed substantially on the same height position as the upper face of the female terminal support portion 24a of the housing front plate portion 24. A space 61 having dimensions in which the temporary locking protrusions 15d of the female terminals 15 can be disposed is defined at the rear of the female terminal support portion 60. The female terminal support portion 60 supports, from below, the front end portions of the electric contact portions 15a of the female terminals 15 received in the female terminal receiving chamber 18.
The temporary locking claws 48 are cantilever-like claws which are disposed substantially in the intermediate portion of the retainer lower plate portion 39 in the front/rear direction so as to project tilting frontward and upward from the upper surface of the retainer lower plate portion 39. In the state where the side retainer 14 is set at the temporary locking position, the temporary locking claws 48 temporarily lock the temporary locking protrusions 15d of the female terminals 15. A space 62 for allowing the temporary locking claws 48 to be flexurally deformed downward is defined under the temporary locking claws 48. The space 62 under the temporary locking claws 48 communicates with a lower portion of the space 61 at the rear of the female terminal support portion 60 from the rear side thereof. In the state where the side retainer 14 is set at the temporary locking position, the temporary locking claws 48 are disposed under the female terminal receiving chamber 18 on the opposite sides of the partition wall 28 (see
The formal locking pieces 49 are structures projecting upward from the upper face of the retainer lower plate portion 39 and disposed in the rear end portion of the retainer lower plate portion 39 so as to formally lock step parts between the electric contact portions 15a and the neck portions 15b of the female terminals 15 in the state where the side retainer 14 is set at the formal locking position. In the state where the side retainer 14 is set at the formal locking position, the formal locking pieces 49 are disposed under the female terminal receiving chamber 18 on the opposite sides of the partition wall 28 (see
When the side retainer 14 is attached to the front region 20 of the inner housing 16, an opening at a side of the side retainer 14 is slightly expanded, and the slide rails 59 in the rear end portion of the retainer lower plate portion 39 are engaged with the rear locking convex portion 25 of the inner housing 16, The front region 20 of the inner housing 16 is inserted into the side retainer 14 through the opening so as to move the side retainer 14 in the width direction (attachment direction), When the side retainer 14 is moved in the attachment direction, the retainer protrusion 41 enters the temporary locking groove 44 to be thereby locked (in the temporary locking position) as shown in
As shown in
On the other hand, a side face of the groove forming protrusion 47 of the housing upper plate portion 21 on the temporary locking groove 44 side and a side face of the partition 42 on the formal locking groove 43 side are vertical faces 53 and 54. Even if the side retainer 14 is pulled simply in a removal direction (an opposite direction to the attachment direction), the side retainer 14 cannot be moved from the formal locking position to the temporary locking position or removed from the temporary locking position easily.
The partition 42 is shorter than the retainer protrusion 41. On the front end side of the locking groove group 45, the partition 42 is partially absent so that the formal locking groove 43 and the temporary locking groove 44 have the same groove depth and communicate with each other. Alternatively, the partition 42 on the front end side of the locking groove group 45 may be formed to be lower in height than any other region (a central portion and a rear end portion).
(CPA 12)
The CPA 12 is made of synthetic resin. As shown in
The CPA 12 has a CPA lower arm 57 which is supported like a cantilever in a position facing the CPA upper arm 55 (a position away therefrom by about 180 degrees), The CPA lower arm 57 extends toward the male housing 2. A lower locking claw 58 extending toward the inside of the CPA 12 is formed in a distal end portion of the CPA lower arm 57, In the same manner as the CPA upper arm 55, the lower locking claw 58 swings downward (outward) with a rear end portion of the CPA lower arm 57 as a fulcrum so that the CPA lower arm 57 can be elastically deformed (flexurally deformed).
(Attachment Procedure of Female Terminals 15)
Next, the attachment procedure of the female terminals 15 according to the embodiment will be described.
To attach the female terminals 15 into the female housing 11, first, as shown in
Next, as shown in
(Side Retainer 14 at Formal Locking Position)
Next, the relationship between the side retainer 14 and the inner housing 16 at the formal locking position will be described. Incidentally, although
As shown in
(Fitting Procedure of Female Connector 10)
Next, the fitting procedure of the female connector 10 according to the embodiment will be described. The following description will be made along the operation of the female connector 10 when the female housing 11 is made close to the male housing 2 of the male connector 1 connected directly to an apparatus wall of an electric apparatus by way of example.
First, the female terminals 15 are attached to the female housing 11 as described above. Next, when the female housing 11 is adjusted correspondingly to the position of the male housing 2 and the CPA 12 is pushed in the fitting direction (frontward), the CPA upper arm 55 abuts against the locking piece 32 so that the female housing 11 moves frontward together with the CPA 12. Thus, the inner housing 16 of the female housing 11 is inserted into the hood portion 5 of the male housing 2, and the distal end portions of the male terminals 3 are inserted into the male terminal insertion ports 36 (see
When the CPA 12 is further pushed in the fitting direction, the locking piece 32 of the housing arm 30 gets over the upper locking protrusion 7 of the hood portion 5 of the male housing 2 so as to be locked to the upper locking protrusion 7. Thus, the two housings 2 and 11 are brought into a state (fitting state) where they are locked to each other. At the time when the fitting is thus completed, the upper locking claw 56 of the CPA upper arm 55 still stays on the slope of the upper locking protrusion 7, and the lower locking claw 58 of the CPA lower arm 57 also stays on the slope of the lower locking protrusion 8. Accordingly, the CPA 12 continuingly suffers reaction from the slope of the upper locking protrusion 7 due to the elastic deformation of the upper locking claw 56 and reaction from the slope of the lower locking protrusion 8 due to the elastic deformation of the lower locking claw 58.
Successively, the upper locking claw 56 of the CPA upper arm 55 moves in the fitting direction, and gets over the locking piece 32 locked to the upper locking protrusion 7. After that, the upper locking claw 56 is locked to the upper locking protrusion 7 while holding the locking piece 32 therebetween (CPA formal locked). Thus, in the state where the CPA upper arm 55 is locked to the upper locking protrusion 7, the two housings 2 and 11 are always locked. Therefore, the fitting between the two housings 2 and 11 is assured by the fitting of the CPA upper arm 55. In addition, since the locking piece 32 is held between the upper locking protrusion 7 and the upper locking claw 56, the female housing 11 is suppressed from dropping off. Incidentally, the lower locking claw 58 is locked to the lower locking protrusion 8 substantially at the same timing as the upper locking claw 56 is locked.
In this manner, according to the embodiment, the retainer lower plate portion 39 of the side retainer 14 at the formal locking position closes the housing opening 29 under the female terminal receiving chamber 18 of the inner housing 16, from below Therefore, the front region 20 of the female housing 11 can be constituted by the housing upper plate portion 21, the left and right housing side plate portions 22 and 23 and the housing front plate portion 24 so as to remove a lower plate portion (for example, a housing lower plate portion) and dispose the retainer lower plate portion 39 of the side retainer 14 therein. It is therefore possible to miniaturize the female connector 10 in the upper/lower direction (height direction) in comparison with a case where the side retainer 14 is attached to a female housing closing the female terminal receiving chamber 18 on the opposite sides in the upper/lower direction.
In addition, the front end side of the retainer lower plate portion 39 is supported on the housing upper plate portion 21 through the retainer front plate portion 35 and the retainer upper plate portion 38 so as to be regulated from moving downward, while the rear end side of the retainer lower plate portion 39 is regulated from moving downward by the engagement between the rear slide rails 59 and the rear locking convex portion 25 of the inner housing 16. In this manner, in the state where the side retainer 14 is set at the temporary locking position, the front end side and the rear end side of the retainer lower plate portion 39 are supported on the female housing 11 side so as to be regulated from moving downward. Accordingly, when the electric contact portions 15a of the female terminals 15 are inserted into the female terminal receiving chamber 18, the intermediate portion of the retainer lower plate portion 39 in the front/rear direction can be bent downward suitably. Thus, the female terminals 15 can be inserted without bending the cantilever-like temporary locking claws 48 of the retainer lower plate portion 39 downward largely. It is therefore unnecessary to form the cantilever-like temporary locking claws 48 to be long in the front/rear direction enough to be bent largely. Thus, the female connector 10 can be miniaturized in the front/rear direction.
Incidentally, although in the embodiment the front region 20 of the inner housing 16 opens the female terminal receiving chamber 18 downward (one side in a predetermined direction crossing the insertion direction of the female terminals 15), the direction to open the female terminal receiving chamber 18 is not limited thereto. For example, the female terminal receiving chamber 18 may be opened upward (one side) while the female terminal receiving chamber 18 is closed by the retainer upper plate portion 38. Alternatively, the female terminal receiving chamber 18 may be opened on one side in the width direction (one side in the predetermined direction crossing the insertion direction of the female terminals 15). In this case, the side retainer is formed to include a pair of opposed plate portions opposed to each other in the width direction, so that the opposed plate portion on the one side in the width direction closes the one side of the female terminal receiving chamber 18.
In addition, although in the embodiment the front region 20 of the inner housing 16 opens the female terminal receiving chamber 18 on one side (lower side in the embodiment) in a predetermined direction crossing the insertion direction of the female terminals 15, the female terminal receiving chamber 18 may be opened on the opposite sides in the predetermined direction (the opposite sides in the upper/lower direction or the opposite sides in the width direction). In this case, the opposite sides of the female terminal receiving chamber 18 may be closed by a pair of opposed plate portions of a side retainer while, of the pair of opposed plate portions of the side retainer, at least one opposed plate portion is provided with a temporary locking portion and a formal locking portion. In addition, in this case, the inner housing 16 may have a rear locking portion for regulating rearward movement of a rear end portion of the opposed plate portion provided with the temporary locking portion and the formal locking portion.
In addition, although in the embodiment the rear slide rails 59 recessed frontward are provided in the retainer lower plate portion 39 and the rear locking convex portion 25 projecting frontward is provided in the inner housing 16 so as to regulate downward movement of the rear end portion of the retainer lower plate portion 39 at the temporary locking position, the rear slide rails 59 and the rear locking convex portion 25 do not have to be provided.
In addition, although in the embodiment the rear slide rails 59 recessed frontward are provided in the retainer lower plate portion 39 and the rear locking convex portion 25 projecting frontward is provided in the inner housing 16 so as to regulate downward movement of the rear end portion of the retainer lower plate portion 39 at the temporary locking position, the present invention is not limited thereto. It will go well if the inner housing 16 has a rear locking portion which is disposed under a predetermined region of the rear end portion of the retainer lower plate portion 39 at least at the temporary locking position so as to regulate downward movement of the rear end portion of the retainer lower plate portion 39. For example, a rear locking convex portion projecting rearward may be provided in the retainer lower plate portion 39 while a rear slide rail (rear locking portion) recessed rearward is provided in the inner housing 16.
In addition, although in the embodiment the rear locking convex portion 25 extending all over the width of the inner housing 16 is provided and the rear slide rails 59 of the side retainer 14 are arranged to be engaged therewith since the side retainer 14 begins to be attached and until the side retainer 14 reaches the formal locking position, the present invention is not limited thereto. It will go well if the rear locking convex portion 25 of the inner housing 16 at least at the temporary locking position locks the rear slide rails 59 of the side retainer 14.
Next, a second embodiment of the present invention will be described with reference to the drawings. A female connector (connector) 70 in the embodiment is different from that in the first embodiment as to the shapes of the female terminal support portion 60 of the retainer lower plate portion 39 and the female terminal support portion 24a of the housing front plate portion 24 of the inner housing 16. Incidentally, similar constituents to those in the first embodiment are referenced correspondingly, and description thereof will be omitted.
As shown in
The female terminal support portion 24a of the housing front plate portion 24 of the inner housing 16 has a front slide rail (front locking portion) 71 recessed frontward from the rear surface thereof so as to extend in the width direction. The front slide rail 71 extends all over the width of the female terminal support portion 24a.
The female terminal support portion 60 of the retainer lower plate portion 39 of the side retainer 14 has a front locking convex portion 72 projecting frontward from the front surface thereof and extending in the width direction. The front locking convex portion 72 is disposed in a position corresponding to the front slide rail 71 of the housing front plate portion 24.
When the side retainer 14 is attached to the front region 20 of the inner housing 16, an opening at a side of the side retainer 14 is slightly expanded, and the rear slide rails 59 in the rear end portion of the retainer lower plate portion 39 are engaged with the rear locking convex portion 25 of the inner housing 16 while the front locking convex portion 72 of the front end portion of the retainer lower plate portion 39 is engaged with the front slide rail 71 of the housing front plate portion 24. The front region 20 of the inner housing 16 is inserted into the side retainer 14 through the opening so as to move the side retainer 14 in the width direction (attachment direction). Since the front slide rail 71 extends all over the width of the female terminal support portion 24a, the front locking convex portion 72 of the side retainer 14 can be engaged with the front slide rail 71 of the inner housing 16 as soon as the side retainer 14 begins to be attached. After that, the front locking convex portion 72 keeps the engagement until the side retainer 14 reaches the formal locking position. The front end portion of the side retainer 14 slides and moves in the width direction in the state where the movement thereof in the upper/lower direction is regulated by the engagement between the front locking convex portion 72 of the retainer lower plate portion 39 and the front slide rail 71 of the housing front plate portion 24.
In this manner, according to the embodiment, in the state where the side retainer 14 is set at the temporary locking position, the front end portion of the side retainer 14 is regulated from moving in the upper/lower direction (particularly downward (one side, outer side)) by the engagement between the front locking convex portion 72 of the retainer lower plate portion 39 and the front slide rail 71 of the housing front plate portion 24. Accordingly, when the female terminals 15 are inserted into the female terminal receiving chamber 18 so that the retainer lower plate portion 39 is bent downward, influence (input of force) on the retainer upper plate portion 38 through the retainer front plate portion 35 can be suppressed. Thus, elastic deformation in the retainer upper plate portion 38 and the retainer lower plate portion 39 of the side retainer 14 can be controlled individually. Therefore, plate thicknesses, shapes, etc. of the retainer upper plate portion 38 and the retainer lower plate portion 39 can be set easily.
Incidentally, in the embodiment, the front slide rail 71 is provided in the female terminal support portion 24a of the housing front plate portion 24, and the front locking convex portion 72 is provided in the female terminal support portion 60 of the retainer lower plate portion 39 so as to regulate downward movement of the front end portion of the retainer lower plate portion 39 at the temporary locking position. However, the present invention is not limited thereto. It will go well if the housing front plate portion 24 has a front locking portion which is disposed under a predetermined region of the front end portion of the retainer lower plate portion 39 at least at the temporary locking position so as to regulate downward movement of the front end portion of the retainer lower plate portion 39. For example, a front locking convex portion (front locking portion) projecting rearward may be provided in the female terminal support portion 24a of the housing front plate portion 24 while a front slide rail recessed rearward is provided in the female terminal support portion 60 of the retainer lower plate portion 39.
In addition, as described previously, the female terminal receiving chamber 18 may be opened on the opposite sides (on the opposite sides in the upper/lower direction or on the opposite sides in the width direction) in a predetermined direction (a direction crossing the insertion direction of the female terminals 15) while the opposite sides of the female terminal receiving chamber 18 in the predetermined direction are closed by a pair of opposed plate portions of a side retainer, and, of the pair of opposed plate portions of the side retainer, at least one opposed plate portion is provided with a temporary locking portion and a formal locking portion. In this case, the inner housing 16 may have a rear locking portion for regulating outward movement of a rear end portion of the opposed plate portion provided with the temporary locking portion and the formal locking portion, and a front locking portion for regulating outward movement of a front end portion of the same opposed plate portion.
In addition, in the embodiment, the front slide rail 71 is provided to extend all over the width of the female terminal support portion 24a, and the front locking convex portion 72 of the side retainer 14 is arranged so that the front locking convex portion 72 can be engaged since the side retainer 14 begins to be attached and until the side retainer 14 reaches the formal locking position. However, the present invention is not limited thereto. It will go well if the front slide rail 71 of the female terminal support portion 24a locks the front locking convex portion 72 of the side retainer 14 at least at the temporary locking position.
Incidentally, the present invention is not limited to the aforementioned embodiments, but various modifications can be used within the scope of the present invention. For example, the present invention is not limited to the aforementioned embodiments, but modifications, improvements, etc. can be made suitably. In addition thereto, materials, shapes, dimensions, numbers, arrangement places, etc. of constituent elements in the aforementioned embodiments are not limited, but any materials, any shapes, any dimensions, any numbers, any arrangement places, etc. may be used as long as the present invention can be attained.
For example, in the aforementioned embodiments, the cantilever-like temporary locking claws (temporary locking portion) 48 under which the space 62 is provided are provided to project tilting frontward and upward from the upper face of the retainer lower plate portion 39. However, the temporary locking portion is not limited thereto. For example, a temporary locking portion under which there is no space may be provided in the retainer lower plate portion 39 so as to project upward from the upper face of the retainer lower plate portion 39.
Here, the features of the aforementioned embodiments of the connector according to the present invention will be summarized and listed briefly in the following paragraphs [1] to [3].
[1] A connector (10) comprising:
a housing having a terminal receiving chamber having an opening on one or both of opposite sides in a preset direction crossing an insertion direction of a connection terminal; and
a side retainer (14) having a pair of opposed plate portions (38, 39) disposed in positions to sandwich the housing from the opposite sides in the preset direction, the side retainer (14) being attached laterally to the housing and movably supported on the housing to move between a temporary locking position to temporarily lock the connection terminal and a formal locking position to formally lock the connection terminal,
one or both of the opposed plate portions (38, 39) of the side retainer (14) covering one or both of the opposite sides of the terminal receiving chamber upon the side retainer (14) being at the formal locking position,
the side retainer (14) including a front plate portion (35) disposed on a front side of the housing in the insertion direction to connect front end portions of the pair of the opposed plate portions (38, 39) to each other.
[2] The connector (10) according to the item [1], wherein
the opposed plate portion of the side retainer (14) covering the terminal receiving chamber at the formal locking position includes a temporary locking portion to temporarily lock the connection terminal in the terminal receiving chamber at the temporary locking position and a formal locking portion to formally lock the connection terminal in the terminal receiving chamber at the formal locking position,
the housing includes a rear locking portion to lock at least a rear end portion of the opposed plate portion of the side retainer (14) at the temporary locking position to regulate the rear end portion of the opposed plate portion from moving outward in the preset direction,
the opposed plate portion at the temporary locking position is pressed by the connection terminal through the temporary locking portion and bent outward in the preset direction to allow insertion of the connection terminal when the connection terminal is inserted into the terminal receiving chamber.
[3] The connector (10) according to the item [2], wherein
the housing includes a front locking portion to lock at least the front end portion of the opposed plate portion at the temporary locking position to regulate the front end portion of the opposed plate portion from moving outward in the preset direction.
A connector according to the present invention can be miniaturized. The present invention having this effect can be, for example, used for a connector structure with a fitting assuring member (CPA).
Number | Date | Country | Kind |
---|---|---|---|
JP2017-168022 | Aug 2017 | JP | national |
This is a continuation of International Application No. PCT/JP2018/032329 filed on Aug. 31, 2018, and claims priority from Japanese Patent Application No. 2017-168022 filed on Aug. 31, 2017, the entire content of which is incorporated herein by reference.
Number | Name | Date | Kind |
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10680376 | Shimizu | Jun 2020 | B2 |
20030073353 | Endo | Apr 2003 | A1 |
20030087563 | Endo | May 2003 | A1 |
20050085126 | Sagawa | Apr 2005 | A1 |
20130273764 | Kitajima | Oct 2013 | A1 |
20150038022 | Kataoka | Feb 2015 | A1 |
20150099404 | Iida | Apr 2015 | A1 |
20170025780 | Kida | Jan 2017 | A1 |
20170069983 | Ohfuku | Mar 2017 | A1 |
Number | Date | Country |
---|---|---|
1607699 | Apr 2005 | CN |
2003-123892 | Apr 2003 | JP |
2017-54674 | Mar 2017 | JP |
Number | Date | Country | |
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20200203877 A1 | Jun 2020 | US |
Number | Date | Country | |
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Parent | PCT/JP2018/032329 | Aug 2018 | US |
Child | 16804006 | US |