Lever-type connector
11251565 · 2022-02-15
Assignee
- Autonetworks Technologies, Ltd. (Mie, JP)
- Sumitomo Wiring Systems, Ltd. (Mie, JP)
- Sumitomo Electric Industries, Ltd. (Osaka, JP)
Inventors
Cpc classification
International classification
Abstract
A lever-type connector includes a first housing, a second housing, and a lever for moving the second housing. The lever is formed with cam grooves and the second housing includes cam followers movable along the cam grooves. The lever is rotatable about axes of rotation movable within a predetermined range with respect to the first housing. The cam groove includes a first groove portion configured to guide the cam follower, a second groove portion disposed along the first groove portion on the side of the axes of rotation with respect to the first groove portion and configured to guide the cam follower, and a coupling groove extending in a direction intersecting the first and second groove portions to couple the first and second groove portions and configured to guide the cam follower. The coupling groove extends in a direction along a moving direction of the axes of rotation.
Claims
1. A lever-type connector, comprising: a first housing; a second housing to be connected to the first housing; and a lever for moving the second housing in a connection direction to the first housing by being rotated with respect to the first housing, wherein: the lever is formed with a cam groove and the second housing is formed with a cam follower movable along the cam groove, the lever is rotatable about an axis of rotation movable within a predetermined range with respect to the first housing, the cam groove includes a first groove portion configured to guide the cam follower, a second groove portion disposed along the first groove portion on the axis of rotation side with respect to the first groove portion and configured to guide the cam follower, and a coupling groove extending in a direction intersecting the first and second groove portions to couple the first and second groove portions and configured to guide the cam follower, and the coupling groove extends in a direction along a moving direction of the axis of rotation.
2. The lever-type connector of claim 1, comprising a coupling portion coupling the first and second groove portions, wherein: the first and second groove portions are formed to penetrate through the lever, and the coupling groove is provided on the first housing side of the coupling portion.
3. The lever-type connector of claim 1, wherein: the first housing is formed with a support shaft concentric with the axis of rotation, the lever is formed with a first shaft hole and a second shaft hole, the support shaft being rotatably inserted into the first and second shaft holes, and a partitioning portion partitioning between the first and second shaft holes, and the partitioning portion is deflectable and deformable in a direction to allow a movement of the support shaft between the first and second shaft holes.
4. The lever-type connector of claim 3, wherein a contact portion for coming into contact with the partitioning portion to deflect and deform the partitioning portion by rotation of the lever projects on an outer periphery of the support shaft.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION TO EXECUTE THE INVENTION
Embodiment
(24) A lever-type connector 10 of an embodiment is described with reference to
(25) As shown in
(26) As shown in
(27) The receptacle 15A is formed into such a shape that an upper side of the first housing 11 protrudes forward. As shown in
(28) As shown in
(29) As shown in
(30) A lever locking portion 24 for restricting the rotation of the lever 30 by locking the lever 30 is formed atop the second housing 20. The lever locking portion 24 is hook-shaped, and a locking projection 25A for locking the lever 30 is formed on a standing portion 25 standing obliquely to the upper surface of the second housing 20.
(31) As shown in
(32) The cam groove 32 includes a first groove portion 33 configured to guide a movement of the cam follower 21, a second groove portion 34 arranged along the first groove portion 33 and configured to guide a movement of the cam follower 21, and a coupling portion 35 coupling an end part 33B of the first groove portion 33 and an end part 34A of the second groove portion 34. The first and second groove portions 33, 34 are through holes extending in an arcuate manner while having a substantially constant width. The second groove portion 34 is disposed inward of (on the side of the shaft hole 38) and at a predetermined distance from the first groove portion 33, and a final end part 34B of the second groove portion 34 is formed above a starting end part 33A of the first groove portion 33.
(33) The starting end part 33A of the first groove portion 33 is formed with an introduction groove 36A extending in a direction intersecting the first groove portion 33. The introduction groove 36A can guide the cam follower 21 introduced from outside, and is covered by an introduction cover portion 36. The coupling portion 35 is formed with a coupling groove 35A into which the cam follower 21 is insertable. The coupling groove 35A is formed in a surface of the coupling portion 35 on the side of the first housing 11 and forms a space, in which the cam follower 21 is movable, in a path between the end part 33B of the groove portion 33 and the end part 34A of the groove portion 34.
(34) The shaft hole 38 has an elliptical shape long in a coupling direction (vertical direction of
(35) The shaft hole 38 partitioned by the partition piece 40 includes a first shaft hole 38A having an axis of rotation A1 at an axis center of the support shaft 12 inserted thereinto, and a second shaft hole 38B having an axis of rotation A2 at the axis center of the support shaft 12 inserted thereinto. A chevron-shaped projection 40A is formed on a surface of the partition piece 40 on the side of the first housing 11. If the lever 30 is rotated, the contact portions 13 and the support shaft bodies 12A of the support shafts 12 come into contact with the projections 40A of the partition pieces 40 to resiliently deform the partition pieces 40. Note that the shaft hole 38 is formed with assembly grooves 42 into which the contact portions 13 are inserted when the lever 30 is assembled, and a hole edge of the shaft hole 38 on the outer surface side of the facing plate 31 is provided with a recess 39 forming a space for allowing the passage (rotation) of the contact portions 13 as shown in
(36) As shown in
(37) The coupling grip portion 45 is formed with a locking portion 46 for holding the lever 30 in a locked state by locking the locking projection 25A of the second housing 20. The locking portion 46 is frame-shaped and can hold the first housing 11 and the second housing 20 in a completely connected state by locking a hole edge of a locked hole 46A to the locking projection 25A of the second housing 20 to restrict the rotation of the lever 30.
(38) Next, a rotating operation of the lever 30 is described.
(39) As shown in
(40) Subsequently, the lever 30 is rotated in the forward rotation direction. Then, as shown in
(41) Subsequently, the operator biases the lever 30 forward to slide the lever 30 forward with respect to the first and second housings 11, 20 as shown in
(42) Subsequently, the lever 30 is rotated in the reverse rotation direction as shown in
(43) Functions and effects of this embodiment are described.
(44) The lever-type connector 10 includes the first housing 11, the second housing 20 to be connected to the first housing 11, and the lever 30 for moving the second housing 20 in a connection direction to the first housing 11 by being rotated with respect to the first housing 11, the lever 30 is formed with the cam grooves 32, the second housing 20 is formed with the cam followers 21 movable along the cam grooves 32, the lever 30 is rotatable about the axes of rotation A1, A2 movable within a predetermined range with respect to the first housing 11, the cam groove 32 includes the first groove portion 33 configured to guide the cam follower 21, the second groove portion 34 disposed along the first groove portion 33 on the side of the axes of rotation A1, A2 with respect to the first groove portion 33 and configured to guide the cam follower 21, and the coupling groove 35A extending in the direction intersecting the first and second groove portions 33, 34 to couple the first and second groove portions 33, 34 and configured to guide the cam followers 21, and the coupling groove 35A extends in the direction along a moving direction of the axes of rotation A1, A2.
(45) According to this embodiment, if the lever 30 is rotated with the cam followers 21 disposed in the first groove portions 33, the cam followers 21 are guided in the first groove portions 33. If the cam followers 21 reach positions where the first groove portions 33 and the coupling grooves 35A intersect, the first and second housings 11, 20 are partially connected. If the lever 30 is slid with respect to the first housing 11 thereafter, the axes of rotation A1, A2 of the lever 30 slide within the predetermined range, the cam followers 21 in the first groove portions 33 move to the second groove portions 34 through the coupling grooves 35A and the cam followers 21 reach positions where the coupling grooves 35A and the second groove portions 34 intersect, thereby restricting a sliding movement of the lever 30. By rotating the lever 30 toward an opposite side, the cam followers 21 in the second groove portions 34 move to the opposite sides of the second groove portions 34 and the first and second housings 11, 20 are completely connected. In this way, the lever 30 can be easily operated in completely connecting the first and second housings 11, 20 in the partially connected state.
(46) Further, the first housing 11 is formed with the support shafts 12, which become concentric with the axes of rotation A1, A2, the lever 30 is formed with the first shaft holes 38A and the second shaft holes 38B, into which the support shafts 12 are rotatably inserted, and the partition pieces 40 (partitioning portion) partitioning between the first and second shaft holes 38A, 38B, and the partition pieces 40 are deflectable and deformable in the directions to allow movements of the support shafts 12 between the first and second shaft holes 38A, 38B.
(47) According to this configuration, the lever 30 can be rotatably held at a predetermined position by the partition pieces 40.
(48) The contact portions 13 for coming into contact with the partition pieces 40 to deflect and deform the partition pieces 40 by the rotation of the lever 30 project on the outer periphery of the support shaft 12.
(49) According to this configuration, a configuration for deflecting and deforming the partition pieces 40 during the rotation of the lever 30 can be simplified.
(50) The coupling portion 35 is provided which couples the first and second groove portions 33, 34, the first and second groove portions 33, 34 are formed to penetrate through the lever 30, and the coupling groove 35A is provided on the side of the coupling portion 35 toward the first housing 11.
(51) According to this configuration, the strength of a region between the first and second groove portions 33, 34 can be enhanced as compared to the case where the coupling groove 35A is formed to penetrate through the lever 30.
Other Embodiments
(52) The technique described in this specification is not limited to the above described and illustrated embodiment. For example, the following embodiments are also included in the technical scope of the technique described in this specification.
(53) (1) Although the lever-type connector 10 includes the partition pieces 40 and the contact portions 13 of the support shafts 12, there is no limitation to this and at least either the partition pieces 40 or the contact portions 13 may not be provided.
(54) (2) Although the coupling groove 35A is formed in the coupling portion 35, there is no limitation to this and the coupling portion 35 may not be formed. For example, a through hole allowing communication between the first and second groove portions 33, 34 may be used as a coupling groove and the cam follower 21 in the coupling groove may be exposed.
(55) (3) Although the support shafts 12 are provided on the first housing and the shaft holes 38 into which the support shafts 12 are inserted are provided in the lever 30, there is no limitation to this and support shafts may be provided on a lever and shaft holes (first and second shaft holes) into which the support shafts are movably inserted may be provided in side surfaces of a first housing.
LIST OF REFERENCE NUMERALS
(56) 10: lever-type connector 11: first housing 12: support shaft 13: contact portion 16: cutout portion 20: second housing 21: cam follower 30: lever 32: cam groove 33: first groove portion 34: second groove portion 35: coupling portion 35A: coupling groove 38: shaft hole 40: partition piece (partitioning portion) A1, A2: axis of rotation