Floating connector and first connector thereof
By introducing an outer cover and a limit structure into the floating connector, the problem of transitional floating in the Z-axis direction is solved, damage to the rubber sleeve is prevented, the service life and reliability are improved, and the accuracy of insertion is ensured.
Patent Information
- Application Number
- CN202422830544.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-19
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2034-11-19
AI Technical Summary
The existing floating connector has excessive floating in the Z-axis direction, which causes the rubber sleeve to break easily, shortening the service life, and easily causes improper insertion, affecting the reliability of use.
An outer cover is introduced into the connector, and a limiting structure is provided on the outer cover to limit the inner body from floating between a first preset position and a second preset position along the Z-axis direction, thereby preventing the rubber sleeve from being damaged due to excessive floating of the inner body and ensuring accurate insertion.
It improves the service life and reliability of the connector, prevents the rubber sleeve from breaking, ensures the accuracy of insertion, and extends the service life of the connector.
Smart Images

Figure CN223427872U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of electrical connection, in particular to a floating connector and a first connector thereof. Background Art
[0002] As is known to all, electrical connectors are used to electrically connect active devices to each other to meet the needs of charging and discharging and / or data transmission between the active devices.
[0003] An electrical connector with a floating function comprises a mating plug and receptacle. The receptacle comprises an outer body, an inner body, and a rubber sleeve connecting the two. The inner body, with the aid of the rubber sleeve, can float relative to the outer body in three directions: the X-axis, the Y-axis, and the Z-axis. This floating action ensures that the plug and receptacle are correctly mated.
[0004] However, when the plug is inserted into or removed from the socket, the floating range of the inner body in the Z-axis direction is constrained by the rubber sleeve, resulting in excessive floating of the inner body in the Z-axis direction, which can easily cause the rubber sleeve to break, thus shortening the service life of the electrical connector. At the same time, it can easily cause the inner body and the plug to not fit properly, thus affecting the use of the electronic connector.
[0005] Therefore, there is an urgent need for a floating connector and a first connector thereof to overcome one or more of the above-mentioned drawbacks. Utility Model Content
[0006] One purpose of the utility model is to provide a first connector of a floating connector, which can prevent the problem of improper insertion and solve the problem of rubber sleeve damage.
[0007] Another object of the present invention is to provide a floating connector that can prevent improper insertion and solve the problem of rubber sleeve damage.
[0008] To achieve the aforementioned objectives, the first connector of the floating connector of the present invention comprises an inner body, an outer body extending over the inner body, a floating member connecting the inner and outer bodies, and an outer cover assembled and connected to the outer body. The inner body is capable of floating relative to the outer body by means of the floating member, and the inner body is further positioned within the outer cover. The outer cover is provided with a limiting structure that restricts the inner body from floating relative to the outer body between a first predetermined position and a second predetermined position along the Z-axis.
[0009] Compared with the prior art, with the aid of an outer cover assembled and connected to the outer body, and a limiting structure provided on the outer cover for limiting the floating of the inner body relative to the outer body between a first preset position and a second preset position in the Z-axis direction, the limiting structure controls the floating of the inner body relative to the outer body, thereby preventing the inner body from floating excessively along the Z-axis direction and causing damage to the floating parts (such as but not limited to the rubber sleeve), thereby improving the service life of the first connector of the utility model; in addition, it can avoid the inner body from affecting the use of the first connector of the utility model due to the inability to be properly inserted into the second connector, thereby improving the reliability of the use of the first connector of the utility model.
[0010] Preferably, the limiting structure includes a first limiting structure and a second limiting structure which are spaced apart in the Z-axis direction.
[0011] Preferably, the outer cover includes a connected end wall and a side wall, the side wall is arranged on the outer body from the second end of the outer body, the end wall covers the end surface of the second end of the outer body and the inner body, the end wall is provided with a through hole penetrating the end wall along the Z-axis direction, the inner body is provided with a penetrating structure passing through the end wall from the through hole, and a limiting structure is provided at the position where the penetrating structure passes through the end wall, the first limiting structure is provided on the side of the end wall facing the inner body, the second limiting structure is provided on the side of the end wall facing away from the inner body, the second limiting structure is arranged opposite to the limiting structure along the Z-axis direction, and the second limiting structure is also located between the first limiting structure and the limiting structure.
[0012] Preferably, when in the first preset position, the first limiting structure abuts against the end surface of the inner body; when in the second preset position, the limiting structure abuts against the second limiting structure.
[0013] Preferably, the second limiting structure is a plurality of clamping protrusions arranged around the penetration structure, and all the clamping protrusions are spaced apart from each other and arranged in a circle.
[0014] Preferably, the clamping protrusion is in an arc shape with the middle protruding toward the penetration structure; the end of the penetration structure is a conical head, and the conical head is adjacent to the limiting structure.
[0015] Preferably, the outer cover also includes a snap-fit groove and a partition groove unit, the partition groove unit includes a first partition groove and a second partition groove separated from each other, the first partition groove and the second partition groove each extend along the Z-axis direction, the first partition groove and the second partition groove also pass through the end of the side wall away from the end wall to form a cantilever arm, the snap-fit groove is opened on the cantilever arm; the snap-fit groove also extends toward the direction close to the end wall and passes through the end wall; the outer body is provided with a snap-fit protrusion that engages with the snap-fit groove; the snap-fit protrusion is provided with an inclined structure that tilts inward toward the direction close to the end wall.
[0016] Preferably, the first connector of the present invention further includes a first electrical terminal assembled on the inner body, the first end of the first electrical terminal is exposed from the first end of the outer body, and the end wall is provided with an exposure hole for the second end opposite to the first electrical terminal to be exposed.
[0017] Preferably, the floating member is an annular structure; the inner side of the floating member is provided with a plurality of inner embedded blocks that are convex inwardly and arranged at intervals along the circumference of the floating member, the outer side of the floating member is provided with a plurality of outer embedded blocks that are convex outwardly and arranged at intervals along the circumference of the floating member, the inner body is provided with an inner embedded cavity for embedding and installing the inner embedded blocks, and the outer body is provided with an outer embedded cavity for embedding and installing the outer embedded blocks.
[0018] To achieve the above-mentioned purpose, the floating connector of the present invention includes a second connector and the aforementioned first connector, and the first connector and the second connector are pluggable. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 It is a three-dimensional view of the floating connector of the present invention when the first connector and the second connector are inserted into each other until the first limiting structure abuts against the end surface of the inner body.
[0020] Figure 2 yes Figure 1 The floating connector is shown in a plan view as viewed in the direction indicated by the arrow next to it.
[0021] Figure 3 It is along Figure 2 Internal view cut along line AA.
[0022] Figure 4 yes Figure 3 A state diagram when the second limiting structure and the matching limiting structure are in contact with each other during the process of pulling the second connector downward.
[0023] Figure 5 yes Figure 4 Figure 1 shows the state after the second connector is unplugged from the first connector.
[0024] Figure 6 It is a three-dimensional diagram of the first connector in the floating connector of the present invention.
[0025] Figure 7 yes Figure 6 The figure shows a three-dimensional exploded view of the first connector when it is removed from the connecting rubber sleeve.
[0026] Figure 8 yes Figure 6 The first connector is shown in a perspective view at another angle.
[0027] Figure 9 yes Figure 8 3D exploded view of .
[0028] Figure 10 yes Figure 8 Further decomposed three-dimensional exploded diagram.
[0029] Figure 11 It is a three-dimensional view of the outer cover of the first connector in the floating connector of the present invention.
[0030] Figure 12 It is a three-dimensional diagram of the second connector in the floating connector of the present invention. DETAILED DESCRIPTION
[0031] In order to explain the technical content and structural features of the present invention in detail, the following is a further description in conjunction with the embodiments and the accompanying drawings.
[0032] See also Figure 1 and Figure 2 The floating connector 100 of the present invention comprises a first connector 10 and a second connector 20. The second connector 20 is mated with the first connector 10 so that the second connector 20 and the first connector 10 can be plugged in and out of each other. Figure 12 As an example, the second connector 20 includes a connector body 21 and second electrical terminals 22 mounted on the connector body 21. The second electrical terminals 22 are arranged along the Z-axis so that the second electrical terminals 22 can electrically contact the first electrical terminals 15 described below. Since the specific structures of the connector body 21 and the second electrical terminals 22 are well known in the art, they will not be described in detail here.
[0033] Recombination Figures 3 to 5As an example, the first connector 10 includes an inner body 11, an outer body 12 that is externally mounted on the inner body 11, a connecting rubber sleeve 13 that connects the inner body 11 and the outer body 12 together, and an outer cover 14 that is assembled and connected to the outer body 12. The inner body 11 can float relative to the outer body 11 by means of the connecting rubber sleeve 13 to meet the need for the inner body 11 to float in the three directions of the X-axis, the Y-axis, and the Z-axis. The inner body 11 is also located in the outer cover 14, and the outer cover 14 covers the inner body 11 from the outside; a limiting structure 141 is provided on the outer cover 14, which limits the inner body 11 relative to the outer body 12 in the Z-axis direction. Figure 3 The first preset position shown and Figure 4 Specifically, Figures 3 to 5 As an example, the limiting structure 141 includes a first limiting structure 1411 and a second limiting structure 1412 spaced apart in the Z-axis direction, so that the corresponding positions of the inner body 11 are respectively blocked by the first limiting structure 1411 and the second limiting structure 1412, thereby limiting the inner body 11 from floating between the first preset position and the second preset position. More specifically, as follows:
[0034] like Figures 3 to 5 ,as well as Figures 8 to 11 As shown, as an example, the outer cover 14 includes a connected end wall 14a and a side wall 14b. Optionally, as an example, the end wall 14a and the side wall 14b form an integral structure so that the outer cover 14 can be manufactured by an integral molding method, thereby simplifying the manufacturing process of the outer cover 14. Obviously, according to actual needs, the end wall 14a and the side wall 14b can also be made into two separate parts and then fixed together by assembly. The side wall 14b is mounted on the outer body 12 from the second end 121 of the outer body 12, so that the outer body 12 is partially located inside the outer cover 14. The end wall 14a covers the end surface 1211 of the second end 121 of the outer body 12 and the inner body 11. The end wall 14a is provided with a through hole 142 that passes through the end wall 14a along the Z-axis direction. The inner body 11 is provided with a penetration structure 111 passing through the end wall 14a from the through hole 142, and a limiting structure 112 is provided at the position where the penetration structure 111 passes through the end wall 14a. Figures 3 to 5 shown.
[0035] At this time, the first limiting structure 1411 is provided on the side of the end wall 14a facing the inner body 11, and the second limiting structure 1412 is provided on the side of the end wall 14a facing away from the inner body 11. The second limiting structure 1412 is arranged opposite to the limiting structure 112 along the Z-axis direction. The second limiting structure 112 is also located between the first limiting structure 1411 and the limiting structure 112. Figures 3 to 5 shown.
[0036] Therefore, when in the first preset position, the first limiting structure 1411 abuts against the end surface 11a of the inner body 11, and the state is shown in FIG. Figure 3 In the second preset position, the limiting structure 112 and the second limiting structure 1412 resist each other, and the state is shown Figure 4 and Figure 5 As shown; this design not only ensures that the outer cover 14 can restrict the inner body 11 from floating between the first preset position and the second preset position, but also does not change the original gap between the inner body 11 and the outer body 12 due to the introduction of the outer cover 14. Therefore, while the original gap between the inner body 11 and the outer body 12 is maintained, the floating connector 100 of the present invention can also prevent the connecting rubber sleeve 14 from breaking. A more detailed description is as follows:
[0037] like Figure 11 As shown, as an example, the first limiting structure 1411 is formed by the end surface of the end wall 14a facing the inner body 11, so as to increase the resistance area of the first limiting structure 1411, thereby improving the reliability of the first limiting structure 1411 and the end surface 11a of the inner body 11. Obviously, according to actual needs, the first limiting structure 1411 can also be other structures with a limiting function, so it is not necessary to use Figure 11 The following are the limits. Figures 8 to 11 As an example, the second limiting structure 1412 is a plurality of clamping protrusions arranged around the passing structure 111, that is, the clamping protrusions are also numbered 1412; all the clamping protrusions 1412 are arranged in a circle spaced apart from each other, so that the passing structure 111 on the inner body 11 can pass through the end wall 14a through the through-hole 142 of the outer cover 14 and pass over the clamping protrusions 1412, and increase the blocking area between the second limiting structure 1412 and the limiting structure 112, thereby improving the reliability of the second limiting structure 1412 in limiting the inner body 11; optionally, Figures 3 to 5 As an example, the clamping protrusion 1412 is an arc-shaped protrusion in the middle toward the penetration structure 111, and the end of the penetration structure 111 is a conical head 1111, which is adjacent to the limiting structure 112. This design can further improve the smoothness of the penetration structure 111 on the inner body 11 passing through the end wall 14a from the through hole 142 of the outer cover 14 and passing over the clamping protrusion 1412.
[0038] like Figures 8 to 11 As shown, as an example, the outer cover 14 further includes a snap-fit groove 14c and a separation groove unit 14d. Optionally, Figure 11 As an example, there are four partitioning slot units 14d on the side wall 14b, and they are arranged in pairs. Obviously, according to actual needs, the number of partitioning slot units 14d can also be one, two or three, so it is not necessary to use Figure 11Limits shown. At the same time, the partition groove unit 14d includes a first partition groove 14d1 and a second partition groove 14d2 separated from each other, and the first partition groove 14d1 and the second partition groove 14d2 each extend along the Z-axis direction. The first partition groove 14d1 and the second partition groove 14d2 also penetrate the end of the side wall 14b away from the end wall 14a to form a suspension arm 144, that is, the number of suspension arms 144 is consistent with the number of partition groove units 14d; at this time, the engaging groove 14c is opened on the suspension arm 144, and correspondingly, the outer body 12 is provided with an engaging protrusion 122 that engages with the engaging groove 14c; therefore, with the help of the arrangement of the engaging groove 14c, the suspension arm 14 and the engaging protrusion 122, the assembly and disassembly operation between the outer cover 14 and the outer body 12 is facilitated. For example, when removing the outer cover 14, the engaging protrusion 122 is disengaged from the engaging groove 14 by bending the suspension arm 144 outward, so that the outer cover 14 can be removed from the outer body 12. Specifically, Figures 8 to 10 As an example, the engaging groove 14c further extends toward the end wall 14a and penetrates the end wall 14a. This design improves the elastic deformation ability of the cantilever arm 144, thereby making it easier for the cantilever arm 144 to pass over the engaging protrusion 122 and reach the position where the engaging protrusion 122 engages with the engaging groove 14c during the assembly process of the outer cover 14 and the outer body 12. Similarly, during disassembly, it is more convenient for the operator to bend the cantilever arm 144 outward. In addition, the engaging protrusion 122 is provided with an inclined structure 1221 that is inclined inward toward the end wall 14a. With the help of the inclined structure 1221, the cantilever arm 144 can pass over the engaging protrusion 122 during the assembly process of the outer cover 14 and the outer body 12. It should be noted that since the engaging protrusion 122 is used to engage with the engaging groove 14c, the number of engaging protrusions 122 can be the same as the number of engaging grooves 14c, or it can be less than the number of engaging grooves 14c.
[0039] Another example Figures 8 to 11 As shown, as an example, the first connector 10 further includes a first electrical terminal 15 assembled on the inner body 11, and the first end 151 of the first electrical terminal 15 is exposed to the outside from the first end 123 of the outer body 12. Figure 6 As shown, the first end 151 of the first electrical terminal 15 and the second electrical terminal 22 are electrically connected. The end wall 14a defines an exposure hole 145 for exposing the second end 152 of the first electrical terminal 15 to the outside, thereby enabling electrical connection between the second end 152 of the first electrical terminal 15 and the outside world. Since the specific structure of the first electrical terminal 15 and its assembly method on the inner body 11 are well known in the art, they will not be described in detail here.
[0040] like Figure 7 and Figure 10As shown, as an example, the inner side of the connecting rubber sleeve 13 is provided with a plurality of inner embedded blocks 131 that are convex and arranged along the circumference of the connecting rubber sleeve 13, and the outer side of the connecting rubber sleeve 13 is provided with a plurality of outer embedded blocks 132 that are convex and arranged along the circumference of the connecting rubber sleeve 13; the inner body 11 is provided with an inner embedded cavity 113 for the inner embedded blocks 131 to be embedded and installed, and the outer body 12 is provided with an outer embedded cavity 124 for the outer embedded blocks 132 to be embedded and installed; optionally, Figure 7 and Figure 10 As an example, the inner block 131 and the outer block 132 are separated into two layers in the Z-axis direction. Correspondingly, the inner cavity 113 and the outer cavity 124 are also two layers. This design makes the connecting rubber sleeve 13 more reliably installed and fixed on both the inner body 11 and the outer body 12, and also makes the connecting rubber sleeve 13 detachable relative to the inner body 11 and the outer body 12. Figure 7 and Figure 10 As an example, the inner block 131 and the outer block 132 are both T-shaped blocks, and correspondingly, the inner cavity 113 and the outer cavity 124 are T-shaped cavities; obviously, according to actual needs, the inner block 131, the outer block 132, the inner cavity 113 and the outer cavity 124 can also be other shapes well known in the art, so they are not used in this article. Figure 7 and Figure 10 Limits shown.
[0041] Compared to the prior art, the floating connector 100 of the present invention utilizes an outer cover 14 assembled and connected to the outer body 12, and is provided with a limiting structure 141 that limits the floating of the inner body 11 relative to the outer body 14 between a first preset position and a second preset position in the Z-axis direction. The limiting structure 141 controls the floating of the inner body 11 relative to the outer body 12, thereby preventing damage to the connecting rubber sleeve 13 due to excessive floating of the inner body 11 in the Z-axis direction, thereby improving the service life of the first connector 10. Furthermore, the floating connector 100 can be prevented from being misaligned with the second connector 20, thereby improving the reliability of the first connector 10. Since the floating connector 100 of the present invention includes the first connector 10, it also possesses the advantages of the first connector 10. The first connector 10 can be referred to as a plug, and the second connector 20 can be referred to as a socket, but this is not a limitation.
[0042] It should be noted that while the accompanying drawings show the outer cover 14 and outer body 12 fixedly connected and stationary relative to each other, it is apparent that, depending on actual needs, the outer cover 14 and inner body 11 can also be fixedly connected and stationary relative to each other. When the outer cover 14 and inner body 11 are fixedly connected, the retaining structure on the outer cover 14 can be a retaining slot extending along the Z-axis direction, or a retaining protrusion protruding toward the second end 121 of the outer body 12 (such as, but not limited to, a retaining pin); correspondingly, the second end 121 of the outer body 12 is provided with a retaining protrusion that cooperates with the retaining slot for retaining, or a retaining slot that cooperates with the retaining protrusion for retaining. The Z-axis direction is based on the illustration in the accompanying drawings.
[0043] It is worth noting that the above-mentioned connecting rubber sleeve 13 is only one embodiment of the floating member. Obviously, according to actual needs, the floating member can also be a metal spring or other structure, so it is not limited to the figure shown. When the floating member is the connecting rubber sleeve 13, the floating member at this time corresponds to a ring structure.
[0044] The above disclosure is only a preferred embodiment of the present invention and certainly cannot be used to limit the scope of rights of the present invention. Therefore, equivalent changes made according to the claims of the present invention still fall within the scope covered by the present invention.
Claims
1. A first connector of a floating connector, comprising an inner body, an outer body extending over the inner body, and a floating member connecting the inner body and the outer body, wherein the inner body can float relative to the outer body by means of the floating member, and wherein: The first connector further includes an outer cover assembled with the outer body, the inner body is further located within the outer cover, and a limiting structure is provided on the outer cover, which limits the inner body from floating between a first preset position and a second preset position relative to the outer body along the Z-axis direction.
2. The first connector according to claim 1, wherein: The limiting structure includes a first limiting structure and a second limiting structure that are spaced apart in the Z-axis direction.
3. The first connector according to claim 2, wherein: The outer cover includes a connected end wall and a side wall, the side wall is mounted on the outer body from the second end of the outer body, the end wall covers the end surface of the second end of the outer body and the inner body, the end wall is provided with a through hole penetrating the end wall along the Z-axis direction, the inner body is provided with a penetrating structure passing through the end wall from the through hole, a limiting structure is provided at the position where the penetrating structure passes through the end wall, the first limiting structure is provided on the side of the end wall facing the inner body, the second limiting structure is provided on the side of the end wall facing away from the inner body, the second limiting structure is arranged opposite to the limiting structure along the Z-axis direction, and the second limiting structure is also located between the first limiting structure and the limiting structure.
4. The first connector according to claim 3, wherein: When in the first preset position, the first limiting structure abuts against the end surface of the inner body; when in the second preset position, the limiting structure abuts against the second limiting structure.
5. The first connector according to claim 3, wherein: The second limiting structure is a plurality of clamping protrusions arranged around the penetration structure, and all the clamping protrusions are arranged in a circle and spaced apart from each other.
6. The first connector according to claim 5, wherein: The clamping protrusion is in an arc shape with the middle protruding toward the penetration structure; the end of the penetration structure is a conical head, and the conical head is adjacent to the limiting structure.
7. The first connector according to claim 3, wherein: The outer cover also includes a snap-fit groove and a separation groove unit, and the separation groove unit includes a first separation groove and a second separation groove separated from each other, and the first separation groove and the second separation groove each extend along the Z-axis direction, and the first separation groove and the second separation groove also pass through the end of the side wall away from the end wall to form a suspension arm, and the snap-fit groove is opened on the suspension arm; the snap-fit groove also extends toward the direction close to the end wall and passes through the end wall; the outer body is provided with a snap-fit protrusion that engages with the snap-fit groove; the snap-fit protrusion is provided with an inclined structure that tilts inward toward the direction close to the end wall.
8. The first connector according to claim 3, wherein: It also includes a first electrical terminal assembled on the inner body, the first end of the first electrical terminal is exposed to the outside from the first end of the outer body, and the end wall is provided with an exposure hole for the second end opposite to the first electrical terminal to be exposed to the outside.
9. The first connector according to claim 1, wherein: The floating part is an annular structure; the inner side of the floating part is provided with a plurality of inner embedded blocks that are convex inwardly and arranged at intervals along the circumference of the floating part, and the outer side of the floating part is provided with a plurality of outer embedded blocks that are convex outwardly and arranged at intervals along the circumference of the floating part. The inner body is provided with an inner embedded cavity for the inner embedded blocks to be embedded and installed, and the outer body is provided with an outer embedded cavity for the outer embedded blocks to be embedded and installed.
10. A floating connector, comprising a second connector, characterized in that: The floating connector further comprises a first connector according to any one of claims 1 to 9, wherein the first connector is mated with the second connector.