Integrated socket and connector

By designing staggered sockets and plugs in the connector, a compact structure and miniaturization of the connector are achieved, improving the stability and reliability of the sockets and plugs, and solving the problem of non-compact connector structure in the prior art.

CN223680463UActive Publication Date: 2025-12-16SHENZHEN CHOGORI TECH CO LTD
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Patent Information

Application Number
CN202423323164.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-12-16
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

Existing connectors are typically used individually in various fields such as automobiles, communications, and computers. This lack of integration results in a non-compact structure and makes miniaturization difficult.

Method used

Design an integrated socket and connector, wherein the socket and plug are staggered in the insertion and removal direction. The staggered design allows the socket and plug to be staggered on the mounting surface to form a compact structure, including first and second mounting surfaces located on opposite sides in the insertion and removal direction, and the socket and plug being staggered on the corresponding mounting surfaces.

Benefits of technology

This design achieves a compact connector structure, which is beneficial for miniaturization design, improves the stability and reliability of sockets and plugs, and solves the problem of balancing mating preload and insertion/extraction force in existing connectors.

✦ Generated by Eureka AI based on patent content.

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Abstract

An integrated socket disclosed by the present application comprises a seat body and a plurality of sockets, the seat body comprises a mounting surface, the mounting surface is provided with a first mounting surface and a second mounting surface, and the first mounting surface and the second mounting surface are respectively located at two opposite sides of the mounting surface. The first mounting surface and the second mounting surface are staggered with each other in the plugging direction of the integrated socket; one part of the plurality of sockets is arranged on the first mounting surface, the other part of the plurality of sockets is arranged on the second mounting surface, and one part of the sockets and the other part of the sockets are mutually staggered in the plugging direction. The utility model further discloses a connector provided with the integrated socket.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of electrical connectors, and in particular to an integrated socket and a connector provided with the integrated socket. BACKGROUND

[0002] Connectors can be widely used in various types of vehicles, communications, computers and other consumer electronics, industries, transportation and other fields. The various types of vehicles that can be applied include new energy vehicles, electric bicycles, electric motorcycles, electric scooters and the like. The connector plug and the connector socket, as key components, can serve as a bridge to communicate between circuits, allowing current to flow and enabling the circuit to achieve the intended function. However, the existing connectors are used separately and do not have an integrated effect. CONTENT OF THE INVENTION

[0003] The purpose of the present application is to provide an integrated socket and a connector provided with the integrated socket.

[0004] The present application provides an integrated socket, which comprises a seat body and a plurality of sockets. The seat body comprises a mounting surface, the mounting surface has a first mounting surface and a second mounting surface, the first mounting surface and the second mounting surface are respectively located on opposite sides of the mounting surface, and the first mounting surface and the second mounting surface are mutually staggered in the plug-in direction of the integrated socket. A part of the plurality of sockets is arranged on the first mounting surface, another part of the plurality of sockets is arranged on the second mounting surface, and the part of the sockets and the other part of the sockets are mutually staggered in the plug-in direction.

[0005] The present application also provides a connector, which comprises an integrated socket and an integrated plug. The integrated socket comprises a seat body and a plurality of sockets. The seat body comprises a mounting surface, the mounting surface has a first mounting surface and a second mounting surface, the first mounting surface and the second mounting surface are mutually staggered in the plug-in direction of the integrated socket. A part of the plurality of sockets is arranged on the first mounting surface, another part of the plurality of sockets is arranged on the second mounting surface, and the part of the sockets and the other part of the sockets are mutually staggered in the plug-in direction. The integrated plug comprises a plurality of plugs. A part of the plurality of plugs is adapted to the other part of the sockets on the seat body, and another part of the plurality of plugs is adapted to the part of the sockets on the seat body.

[0006] The first socket and the second socket of the present application are arranged on the second mounting surface, the third socket and the fourth socket are arranged on the first mounting surface, and the first mounting surface and the second mounting surface are mutually staggered, so that the structure of the integrated socket is compact, which is conducive to the miniaturization development of the integrated socket. BRIEF DESCRIPTION OF DRAWINGS

[0007] In order to more clearly illustrate the technical solutions of the present application, the drawings used in the embodiments of the present application will be briefly introduced as follows.

[0008] Figure 1 is a perspective structural schematic diagram of the connector provided by the embodiment of the present application.

[0009] Figure 2 is Figure 1 is a perspective structural exploded schematic diagram of the connector shown in

[0010] Figure 3 is Figure 1 is a perspective structural schematic diagram of the integrated socket of the connector shown in

[0011] Figure 4 is Figure 1 is a perspective structural schematic diagram of the integrated socket of the connector shown in

[0012] Figure 5 is Figure 1 is a perspective structural schematic diagram of the first plug of the connector shown in

[0013] Figure 6 is Figure 1 is a perspective structural schematic diagram of the second plug of the connector shown in

[0014] Figure 7 is Figure 6 is a perspective structural exploded schematic diagram of the second plug shown in

[0015] Figure 8 is Figure 1 is a perspective structural schematic diagram of the third plug of the connector shown in

[0016] Figure 9 is Figure 1 is a perspective structural schematic diagram of the fourth plug of the connector shown in

[0017] Figure 10 is Figure 9 is a perspective structural exploded schematic diagram of the fourth plug shown in DETAILED DESCRIPTION

[0018] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all the other embodiments obtained by those of ordinary skill in the art without creative effort belong to the scope of protection of the present application.

[0019] It is noted that, in this document, references to "an embodiment" or "the embodiment" means that a particular feature, structure, or characteristic described in connection with the embodiment is included in at least one embodiment. The appearances of the phrase "in one embodiment" or "in the embodiment" in various places in the specification are not necessarily all referring to the same embodiment, nor are they necessarily all referring to a single, alternative embodiment planarly or alternatively to an independent or alternative embodiment. It is explicitly contemplated that embodiments described herein can be combined with other embodiments in any way deemed appropriate by those skilled in the art.

[0020] The terms "first", "second", etc. appearing in the present application are used only for the purpose of description, and should not be understood as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Therefore, the features defined with "first", "second" can explicitly or implicitly include one or more features. In the description of the present application, the meaning of "a plurality of" is two or more, unless otherwise explicitly specified and limited. In the description of the present application, it should be noted that, unless otherwise explicitly specified and limited, the terms "mounting", "connecting", "connecting", "arranged on" should be understood broadly, for example, it can be fixedly connected, or detachably connected, or integrally connected. It can be mechanically connected. It can be directly connected, or indirectly connected through an intermediate medium. It can be the communication between the two elements inside. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0021] Please refer to Figure 1 and Figure 2The connector 1000 provided by the embodiment of the present application comprises an integrated socket 100 and an integrated plug. The integrated socket 100 comprises a socket body 110 and a plurality of sockets. The socket body 110 comprises a mounting surface 111, and the mounting surface 111 has a first mounting surface 1112 and a second mounting surface 1114. The first mounting surface 1112 and the second mounting surface 1114 are respectively located on opposite sides of the mounting surface 111, and the first mounting surface 1112 and the second mounting surface 1114 are staggered with each other in the plug-in direction of the integrated socket. A part of the plurality of sockets is arranged on the first mounting surface 1112, and another part of the plurality of sockets is arranged on the second mounting surface. The part of the plurality of sockets and the another part of the plurality of sockets are staggered with each other in the plug-in direction. The integrated plug comprises a plurality of plugs. A part of the plurality of plugs is matched with the another part of the plurality of sockets on the socket body 110, and another part of the plurality of plugs is matched with the part of the plurality of sockets on the socket body 110. Specifically, the part of the plurality of plugs comprises a first plug 200 and a second plug 300. The another part of the plurality of plugs comprises a third plug 400 and a fourth plug 500. The another part of the plurality of sockets comprises a first socket 120 and a second socket 130, and the part of the plurality of sockets comprises a third socket 140 and a fourth socket 150. The first socket 120, the second socket 130, the third socket 140 and the fourth socket 150 are respectively arranged on the socket body 110.

[0022] The first plug 200 is plugged with the first socket 120. The second plug 300 comprises a first plug body 310 and a first positioning part 320 which are fixedly connected. The first plug body 310 is plugged with the second socket 130. The first positioning part 320 is detachably connected to the socket body 110. The first positioning part 320 abuts against the first plug 200, so that the first plug 200 is positioned between the socket body 110 and the first positioning part 320. The third plug 400 is plugged with the third socket 140, and the third plug 400 is partially stacked on a side of the second plug 300 which is away from the socket body 110. The fourth plug 500 comprises a second plug body 510 and a second positioning part 520 which are fixedly connected. The second plug body 510 is plugged with the fourth socket 150. The second positioning part 520 is detachably connected to the socket body 110. The second positioning part 520 abuts against the third plug 400, so that the third plug 400 is positioned between the socket body 110 and the second positioning part 520.

[0023] The connector 1000 of the embodiment can be widely applied in various types of vehicles, communication, computers and other consumer electronics, industry, transportation and other fields. For example, it can be used as a key component on the battery of a new energy vehicle, an electric bicycle, an electric motorcycle, an electric scooter, an electric tool and the like. Its application is very wide and is not limited to the examples.

[0024] The first socket 120 and the second socket 130 are arranged on the second mounting surface 1114, the third socket 140 and the fourth socket 150 are arranged on the first mounting surface 1112, and the first mounting surface 1112 and the second mounting surface 1114 are staggered with each other, so that the structure of the integrated socket 100 is compact, which is conducive to the miniaturization development of the integrated socket 100.

[0025] Please refer to Figure 3 and Figure 4 In some embodiments, the seat body 110 is square-shaped, the mounting surface 111 is located on one side of the seat body 110 along the Z-axis direction, which is the plug-in direction of the integrated socket, and the first mounting surface 1112 and the second mounting surface 1114 are respectively located on opposite sides of the mounting surface 111. The second mounting surface 1114 is provided with a receiving groove 1111, and the other part of the socket is arranged in the receiving groove 1111. Specifically, the first socket 120 and the second socket 130 are arranged in the receiving groove 1111. In this embodiment, the receiving groove 1111 is rectangular-shaped, and the receiving groove 1111 includes a groove bottom surface 1115, and the first socket 120 and the second socket 130 are respectively mounted on the groove bottom surface 1115. The first mounting surface 1112 is parallel to the second mounting surface 1114, and the third socket 140 and the fourth socket 150 are respectively mounted on the first mounting surface 1112.

[0026] The first socket 120 and the second socket 130 are arranged in the receiving groove 1111, and the third socket 140 and the fourth socket 150 are arranged on the first mounting surface 1112, so that the structure of the integrated socket 100 is compact, which is conducive to the miniaturization design of the integrated socket 100.

[0027] Optionally, the seat body 110 is provided with a waterproof groove 1116 around the mounting surface 111, and the waterproof groove 1116 surrounds the outer circumferential surface of the seat body 110, and the waterproof ring 1117 is arranged in the waterproof groove 1116. When the seat body 110 is mounted on the support surface, the waterproof ring 1117 is sealingly clamped between the seat body 110 and the support surface, which plays a waterproof and dustproof role.

[0028] The seat body 110 further comprises a connecting surface 116 facing away from the mounting surface 111, the connecting surface 116 is provided with a first connecting member 1161 and a second connecting member 1163, the first connecting member 1161 is located at one side of the connecting surface 116, and the second connecting member 1163 is located at the other side of the connecting surface 116. In the embodiment, the connecting surface 116 is a rectangular surface, a first connecting member 1161 is arranged at the middle of one side of the rectangular surface, and a second connecting member 1163 is arranged at the other side of the rectangular surface, the first socket 120, the second socket 130, the third socket 140 and the fourth socket 150 are located between the first connecting member 1161 and the two second connecting members 1163. The first connecting member 1161 comprises a first supporting rod 1164 and a first connecting plate 1165, the opposite ends of the first supporting rod 1164 are connected to the connecting surface 116 and the first connecting plate 1165 respectively, and the first connecting plate 1165 is provided with a first connecting hole. The second connecting member 1163 comprises a second supporting rod 1166 and a second connecting plate 1167, the opposite ends of the second supporting rod 1166 are connected to the connecting surface 116 and the second connecting plate 1167 respectively, and the second connecting plate 1167 is provided with a second connecting hole. When the integrated socket needs to be mounted on a connecting surface, a plurality of locking members such as screws are respectively locked in the locking holes on the connecting surface through the first connecting hole and the second connecting hole.

[0029] Optionally, the connecting surface 116 is further provided with a positioning column 1168, the positioning column 1168 is located between the first connecting member 1161 and the second connecting member 1163. When the integrated socket needs to be mounted on a connecting surface, the positioning column 1168 is clamped into the clamping hole on the connecting surface. In the embodiment, the connecting surface 116 is provided with two mutually spaced positioning columns 1168, and the two positioning columns 1168 are located at the opposite ends of the connecting surface 116. The connecting surface 116 of the seat body 110 is provided with a first through hole 112 and a second through hole 113, the first through hole 112 and the second through hole 113 both pass through the groove bottom surface 1115 of the receiving groove 1111 along the Z-axis direction, and the first through hole 112 and the second through hole 113 are spaced apart in the X-axis direction. In the embodiment, the number of the first through hole 112 is two, and one of the first through holes 112, the second through hole 113 and the other first through hole 112 are sequentially and spaced apart in the X-axis direction. In other embodiments, the number of the first through hole 112 can be one, three or more.

[0030] The first mounting surface 1112 of the seat body 110 is provided with a third through hole 114 and a fourth through hole 115, the third through hole 114 and the fourth through hole 115 both pass through the connecting surface 116 along the Z-axis direction; the third through hole 114 and the fourth through hole 115 are spaced apart in the X-axis direction, and the third through hole 114 and the fourth through hole 115 are both spaced apart from the receiving groove 1111 in the Y-axis direction.

[0031] As Figure 3 and Figure 4 shown, the first socket 120 is fixed to the first through hole 112, one end of the first socket 120 is accommodated in the accommodation groove 1111, and the opposite end of the first socket 120 is located at one side of the connecting surface 116. In this embodiment, the first socket 120 includes a first body 121 and a first terminal 122, the first body 121 is fixed to the first through hole 112, one end of the first body 121 is located in the accommodation groove 1111, and the other end of the first body 121 is located at one side of the connecting surface 116. The first body 121 is provided with a first plug-in cavity 1211 and a first positioning hole 1212 in the plug-in direction, the first plug-in cavity 1211 is arranged on the end surface of the first body 121 away from the connecting surface 116, the first positioning hole 1212 is arranged on the end surface of the first body 121 away from the first plug-in cavity 1211, and the first positioning hole 1212 penetrates the first plug-in cavity 1211 in the plug-in direction. The first terminal 122 is a signal terminal, the first terminal 122 is positioned in the first positioning hole 1212, and part of the first terminal 122 is located in the first plug-in cavity 1211. In this embodiment, the number of the first socket 120 is two, and the two first sockets 120 are fixedly connected to the two first through holes 112, respectively. The number of the first terminal 122 and the number of the first positioning hole 1212 are both multiple, for example, the number of the first terminal 122 and the number of the first positioning hole 1212 of one of the first sockets 120 are seven, and the number of the first terminal 122 and the number of the first positioning hole 1212 of the other first socket 120 are five.

[0032] In other embodiments, the number of the first socket 120 can be one, three or more. In some other embodiments, the number of the first terminal 122 of the two first sockets 120 is the same, and the number of the first positioning hole 1212 of the two first sockets 120 is the same. The number of the first terminal 122 and the number of the first positioning hole 1212 can be, but are not limited to, one, two, three, four, six, eight or more.

[0033] Please refer to Figure 3 and Figure 4The second socket 130 is fixedly connected to the second through hole 113, one end of the second socket 130 is accommodated in the accommodation groove 1111, and the other end of the second socket 130 is located on one side of the connecting surface 116. In this embodiment, the second socket 130 includes a second body 131 and a second terminal 132, the second body 131 is fixed to the second through hole 113, one end of the second body 131 is located in the accommodation groove 1111, and the other end of the second body 131 is located on one side of the connecting surface 116 of the seat body 110. The second body 131 is provided with a second plug cavity 1311 and a second positioning hole 1312 in the plug direction, the second plug cavity 1311 is arranged on the end surface of the second body 131 away from the connecting surface 116, the second positioning hole 1312 is arranged on the end surface of the second body 131 away from the second plug cavity 1311, and the second positioning hole 1312 penetrates through the second plug cavity 1311 in the plug direction. The second terminal 132 is a signal terminal, the second terminal 132 is positioned in the second positioning hole 1312, and part of the second terminal 132 is located in the second plug cavity 1311. In this embodiment, the number of the second terminal 132 and the number of the second positioning hole 1312 are both plural, for example, the number of the second terminal 132 and the number of the second positioning hole 1312 are four.

[0034] In other embodiments, the number of the second socket 130 can be, but is not limited to, two or more, and the seat body 110 can be provided with, but is not limited to, two or more second through holes 113, and each second socket 130 is fixedly connected to a corresponding second through hole 113. In other embodiments, the number of the second terminal 132 and the number of the second positioning hole 1312 can be, but are not limited to, one, two, three, five or more.

[0035] Please refer to Figure 3 and Figure 4The third socket 140 is fixedly connected to the third through hole 114, one end of the third socket 140 is located at one side of the first mounting surface 1112 of the seat body 110, and the opposite end of the third socket 140 is located at one side of the connecting surface 116 of the seat body 110. Specifically, the third socket 140 includes a third body 141 and a third terminal 142, the third body 141 is fixedly connected to the third through hole 114, one end of the third body 141 is located at one side of the first mounting surface 1112, and the other end of the third body 141 is located at one side of the connecting surface 116. The third body 141 is provided with a third plug cavity 1411 and a third positioning hole 1412 in the plug direction, the third plug cavity 1411 is arranged on the end face of the third body 141 away from the connecting surface 116, the third positioning hole 1412 is arranged on the end face of the third body 141 away from the third plug cavity 1411, and the third positioning hole 1412 penetrates through the third plug cavity 1411 in the plug direction. The third terminal 142 is positioned in the third positioning hole 1412, and part of the third terminal 142 is located in the third plug cavity 1411. In this embodiment, the number of the third terminal 142 and the number of the third positioning hole 1412 are both multiple, multiple third positioning holes 1412 are spaced from each other, part of the third terminal 142 is a signal terminal, and the other part of the third terminal 142 is a power terminal, multiple third terminals 142 are respectively positioned in multiple third positioning holes 1412, and multiple third terminals 142 are spaced from each other. For example, the number of the third terminal 142 and the number of the third positioning hole 1412 are both nine, and nine third terminals 142 are respectively positioned in nine third positioning holes 1412.

[0036] In other embodiments, the number of the third terminal 142 and the number of the third positioning hole 1412 can be, but are not limited to, one, two, three, four, five, six, eight, nine or more, and each third terminal 142 is positioned in a corresponding third positioning hole 1412.

[0037] Please refer to Figure 3 and Figure 4The fourth socket 150 is fixedly connected to the fourth through hole 115, one end of the fourth socket 150 is located on one side of the first mounting surface 1112 of the seat body 110, and the other end of the fourth socket 150 is located on one side of the connecting surface 116 of the seat body 110. Specifically, the fourth socket 150 includes a fourth body 151 and a fourth terminal 152, the fourth body 151 is fixedly connected to the fourth through hole 115, one end of the fourth body 151 is located on one side of the first mounting surface 1112, and the other end of the fourth body 151 is located on one side of the connecting surface 116. The fourth body 151 is provided with a fourth insertion cavity 1511 and a fourth positioning hole 1512 in the plug-in direction, the fourth insertion cavity 1511 is arranged on the end face of the fourth body 151 away from the connecting surface 116, the fourth positioning hole 1512 is arranged on the end face of the fourth body 151 away from the fourth insertion cavity 1511, and the fourth positioning hole 1512 penetrates through the fourth insertion cavity 1511 in the plug-in direction. The fourth terminal 152 is positioned in the fourth positioning hole 1512, and part of the fourth terminal 152 is located in the fourth insertion cavity 1511. In the embodiment, the number of the fourth terminal 152 and the number of the fourth positioning hole 1512 are both multiple, the multiple fourth positioning holes 1512 are relatively spaced, some of the fourth terminals 152 are signal terminals, and the other fourth terminals 152 are power terminals. The multiple fourth terminals 152 are respectively positioned in the multiple fourth positioning holes 1512, and the multiple fourth terminals 152 are relatively spaced. For example, the number of the fourth terminal 152 and the number of the fourth positioning hole 1512 are both six.

[0038] In other embodiments, the number of the fourth terminal 152 and the number of the fourth positioning hole 1512 can be, but are not limited to, one, two, three, four, five, seven, and the like. Each fourth terminal 152 is positioned in a corresponding fourth positioning hole 1512.

[0039] The first socket 120 and the second socket 130 are both accommodated in the accommodation groove 1111 and mounted on the groove bottom surface 1115, the third socket 140 and the fourth socket 150 are located on the mounting surface 111. In the X-axis direction, the first socket 120 and the second socket 130 are arranged at intervals, the third socket 140 and the fourth socket 150 are arranged at intervals, and in the Y-axis direction, the third socket 140 and the fourth socket 150 are both spaced from the first socket 120 and the second socket 130. In the embodiment, the seat body 110, the first body 121, the second body 131, the third body 141, and the fourth body 151 are integrally formed.

[0040] In other embodiments, the seat body 110, the first body 121, the second body 131, the third body 141, and the fourth body 151 can also be separately manufactured, and then the first body 121, the second body 131, the third body 141, and the fourth body 151 are assembled to the seat body 110, respectively.

[0041] Please refer toFigures 3-5 In some embodiments, the first plug 200 comprises a first housing 210, a first rubber core 220, a first mating terminal 230, and a first sealing member 240. The first housing 210 is L-shaped, and comprises a first mounting portion 211 and a first connecting portion 212 fixedly connected to one side of the first mounting portion 211 along the Y-axis direction. An end surface of the first mounting portion 211 away from the first connecting portion 212 is provided with a first mounting cavity 2111 and a first sealing groove 2112 surrounding the first mounting cavity 2111 and communicating with the first mounting cavity 2111. The first rubber core 220 is positioned in the first mounting cavity 2111, and is provided with a first mounting hole 224 penetrating through opposite end surfaces of the first rubber core 220 along the Z-axis direction. The first mating terminal 230 is positioned in the first mounting hole 224, and is a signal terminal.

[0042] The first sealing member 240 is positioned between the first plug 200 and the seat body 110, and the first plug 200 and the seat body 110 are sealingly abutted against the first sealing member 240. Specifically, the first sealing member 240 is sheet-shaped, and is provided with a first mating hole 241 penetrating through the first sealing member 240 along the Z-axis direction. The first sealing member 240 is accommodated in the first sealing groove 2112 and fixedly laminated to a groove bottom surface of the first sealing groove 2112. The first mating hole 241 is opposite to and communicates with the first mounting cavity 2111, and the first sealing member 240 surrounds an opening of the first mounting cavity 2111. The dimension of the first sealing member 240 along the Z-axis direction is greater than that of the first sealing groove 2112 along the Z-axis direction, so that the first sealing member 240 partially protrudes out of the first sealing groove 2112. In this embodiment, the number of the first plugs 200 is two.

[0043] In other embodiments, the number of the first plugs 200 can be, but is not limited to, one, three, or more. The number of the first mating terminals 230 and the number of the first mounting holes 224 are multiple, and the number of the first mounting holes 224 is consistent with the number of the first terminals 122 of the first socket 120. For example, the number of the first mating terminals 230 and the number of the first mounting holes 224 of one of the first plugs 200 are seven, and the number of the first mating terminals 230 and the number of the first mounting holes 224 of another of the first plugs 200 are five.

[0044] Please refer to Figures 2-4 and Figures 6-7The first positioning part 320 is provided with a first positioning cavity 321 on the side facing the first plug 200, and the first plug 200 is positioned in the first positioning cavity 321. In the embodiment, the number of the first positioning part 320 is two, the two first positioning parts 320 are respectively provided with the first positioning cavity 321, the two first plugs 200 are respectively positioned in the two first positioning cavities 321, and the two first positioning parts 320 are respectively connected to the two sides of the first plug body 310 along the X-axis direction. The first plug body 310 comprises a second housing 330, a second glue core 340, a second matching terminal 350 and a second sealing member 360. The second housing 330 is L-shaped, and comprises a second mounting part 331 and a second connecting part 332 which are fixedly connected. The second connecting part 332 is fixedly connected to one side of the second mounting part 331 along the Y-axis direction. The end face of the second mounting part 331 away from the second housing 330 is provided with a second mounting cavity 3311 and a second sealing groove 3312. The second sealing groove 3312 surrounds the periphery of the second mounting cavity 3311, and the second sealing groove 3312 communicates with the second mounting cavity 3311. The second glue core 340 is positioned in the second mounting cavity 3311. Specifically, the second glue core 340 is provided with a second mounting hole 344, and one end of the second mounting hole 344 penetrates through the opposite end face of the second glue core 340 along the Z-axis direction. The second matching terminal 350 is a signal terminal, and is positioned in the second mounting hole 344. In the embodiment, the number of the second matching terminal 350 is consistent with the number of the second mounting hole 344, and both the number of the second matching terminal 350 and the number of the second mounting hole 344 are multiple. The number of the second mounting hole 344 is consistent with the number of the second terminal 132 of the second socket 130. For example, the number of the second matching terminal 350 and the number of the second mounting hole 344 are four. In other embodiments, the number of the second matching terminal 350 and the number of the second mounting hole 344 can be, but are not limited to, one, two, three, five or more.

[0045] The second sealing member 360 is located between the first plug body 310 and the seat body 110, and the first plug body 310 and the seat body 110 are respectively sealingly abutted against the second sealing member 360. Specifically, the second sealing member 360 is in the form of a sheet, and is provided with a second matching hole 361 penetrating through the second sealing member 360 along the Z-axis direction. The second sealing member 360 is accommodated in the second sealing groove 3312 and laminated on the groove bottom surface of the second sealing groove 3312. The second matching hole 361 is opposite to and communicates with the second mounting cavity 3311, and the second sealing member 360 surrounds the opening of the second mounting cavity 3311.

[0046] The first positioning part 320 is provided with a first recess 322 away from one end of the first plug body 310. The first positioning part 320 is provided with a first through hole 323 on the bottom surface of the first recess 322. The opening direction of the first positioning cavity 321 is the same as the opening direction of the second mounting cavity 3311. In the Y-axis direction, the first positioning cavity 321 penetrates the end surface of the first positioning part 320 towards the second connecting part 332. The first recess 322 is arranged on the end surface of the first positioning part 320 away from the cavity bottom surface of the first positioning cavity 321. The first through hole 323 penetrates the first positioning part 320. In the X-axis direction, the first through hole 323 is adjacent to the first positioning cavity 321. In this embodiment, the first plug body 310 and the two first positioning parts 320 are integrally formed.

[0047] In other embodiments, the two first positioning parts 320 and the first plug body 310 can also be made separately and then assembled after completion of the manufacturing.

[0048] Please refer to Figure 3 and Figure 8 In some embodiments, the third plug 400 includes a third housing 410, a third glue core 420, a third mating terminal 430, and a third sealing member 440. The third housing 410 is L-shaped and includes a third mounting part 411 and a third connecting part 412 fixedly connected. The third connecting part 412 is fixedly connected to one side of the third mounting part 411 along the Y-axis direction. The end surface of the third mounting part 411 away from the third connecting part 412 is provided with a third mounting cavity 4111 and a third sealing groove 4112. The third sealing groove 4112 surrounds the third mounting cavity 4111, and the third sealing groove 4112 communicates with the third mounting cavity 4111. The third glue core 420 is positioned in the third mounting cavity 4111. The third glue core 420 is provided with a third mounting hole 424. One end of the third mounting hole 424 penetrates the third glue core 420 along the Z-axis direction. The third mating terminal 430 is positioned in the third mounting hole 424. The number of the third mating terminal 430 is consistent with the number of the third mounting hole 424. In this embodiment, the number of the third mating terminal 430 and the number of the third mounting hole 424 are both multiple. Some of the third mating terminals 430 are signal terminals, and the other third mating terminals 430 are power terminals. For example, the number of the third mating terminal 430 and the number of the third mounting hole 424 are ten.

[0049] The third seal 440 is located between the third plug 400 and the seat body 110, and the third plug 400 and the seat body 110 are sealingly abutted against the third seal 440. Specifically, the third seal 440 is in the form of a sheet, and the third seal 440 is provided with a third matching hole 441 penetrating the third seal 440 along the Z-axis direction; the third seal 440 is accommodated in the third sealing groove 4112 and fixedly stacked on the groove bottom surface of the third sealing groove 4112, the third matching hole 441 is opposite to and communicates with the third mounting cavity 4111, and the third seal 440 surrounds the opening of the third mounting cavity 4111. Among them, the dimension of the third seal 440 in the Z-axis direction is greater than the dimension of the third sealing groove 4112 in the Z-axis direction, so that the third seal 440 partially protrudes out of the third sealing groove 4112.

[0050] Please refer to Figures 3-4 and Figure 9 and Figure 10 The second positioning part 520 is provided with a second positioning cavity 521 on the side facing the third plug 400, and the third plug 400 is positioned in the second positioning cavity 521. In the embodiment, the number of the second positioning part 520 is one, and the second positioning part 520 is located on one side of the fourth plug 500. The second positioning part 520 is fixedly connected to one side of the second plug body 510 along the X-axis direction, and the dashed line in the figure is the boundary line between the second positioning part 520 and the second plug body 510. The second plug body 510 includes a fourth housing 530, a fourth glue core 540, a fourth matching terminal 550, and a fourth seal 560. The fourth housing 530 is in the form of L-shaped, and includes a fourth mounting part 531 and a fourth connecting part 532 fixedly connected. The fourth connecting part 532 is fixedly connected to one side of the fourth mounting part 531 along the Y-axis direction. The end surface of the fourth mounting part 531 away from the fourth housing 530 is provided with a fourth mounting cavity 5311 and a fourth sealing groove 5312. The fourth sealing groove 5312 is arranged around the fourth mounting cavity 5311, and the fourth sealing groove 5312 communicates with the fourth mounting cavity 5311. The fourth glue core 540 is positioned in the fourth mounting cavity 5311.

[0051] The end of the second plug body 510 away from the second positioning part 520 is provided with a second groove 5313, and the second plug body 510 is provided with a second through hole 5314 on the groove bottom surface of the second groove 5313. Specifically, the second groove 5313 is arranged on the end surface of the fourth mounting part 531 away from the cavity bottom surface of the fourth mounting cavity 5311, and one end of the second through hole 5314 penetrates the fourth mounting part 531 along the plug-in direction. In the X-axis direction, the second through hole 5314 is adjacent to the fourth mounting cavity 5311. In the embodiment, the second plug body 510 and the two second positioning parts 520 are integrally formed.

[0052] The fourth glue core 540 is provided with fourth mounting holes 544 penetrating the fourth glue core 540 along the plug direction. The number of the fourth mating terminals 550 is consistent with the number of the fourth mounting holes 544, and the fourth mating terminals 550 are positioned in the fourth mounting holes 544. In the embodiment, the number of the fourth mating terminals 550 and the number of the fourth mounting holes 544 are both plural, the fourth mounting holes 544 are spaced from each other, part of the fourth mating terminals 550 are signal terminals, and the other part of the fourth mating terminals 550 are power terminals. The fourth mating terminals 550 are respectively positioned in the fourth mounting holes 544, and the fourth mating terminals 550 are spaced from each other. For example, the number of the fourth mating terminals 550 and the number of the fourth mounting holes 544 are six.

[0053] The fourth seal 560 is located between the second plug body 510 and the seat body 110, and the second plug body 510 and the seat body 110 are respectively sealingly abutted against the fourth seal 560. The fourth seal 560 is in a sheet shape, and is provided with fourth matching holes 561 penetrating the fourth seal 560 along the Z-axis direction. The fourth seal 560 is accommodated in the fourth sealing groove 5312 and fixedly stacked on the groove bottom surface of the fourth sealing groove 5312. The fourth matching holes 561 are opposite to and communicate with the fourth mounting cavities 5311, and the fourth seal 560 surrounds the opening of the fourth mounting cavities 5311. The dimension of the fourth seal 560 in the Z-axis direction is greater than the dimension of the fourth sealing groove 5312 in the Z-axis direction, so that the fourth seal 560 partially protrudes out of the fourth sealing groove 5312.

[0054] The second positioning part 520 of the fourth plug 500 is provided with a third groove 522 away from one end of the second positioning part 520, and the second positioning part 520 is provided with a third through hole 523 on the groove bottom surface of the third groove 522, which penetrates the second positioning part 520 along the Z-axis direction. The second positioning cavity 521 is arranged on the end surface of the second positioning part 520 along the Z-axis direction. The opening of the second positioning cavity 521 is oriented in the same direction as the opening of the fourth mounting cavity 5311, and in the Y-axis direction, the second positioning cavity 521 penetrates the end surface of the second positioning part 520 facing the fourth connecting part 532; in the X-axis direction, the third through hole 523 is adjacent to the second positioning cavity 521. In the embodiment, the fourth housing 530 and the second positioning part 520 are integrally formed, and in some other embodiments, the fourth housing 530 and the second positioning part 520 can be separately manufactured and assembled after being manufactured.

[0055] When assembling the connector 1000, the two first plugs 200 are respectively plugged with the two first sockets 120. Specifically, one end of the first plug 200 extends into the receiving groove 1111, the first plug 200 is inserted into the first plug cavity 1211, and the first terminal 122 is plugged with the first mating terminal 230. Conversely, the first body 121 is inserted into the first mounting cavity 2111 of the first mounting portion 211, and the first sealing member 240 is sealingly clamped between the first plug 200 and the seat body 110 to seal the gap between the first housing 210 and the first body 121. The first body 310 of the second plug 300 is plugged with the second socket 130. Specifically, one end of the first body 310 extends into the receiving groove 1111, the second core 340 is inserted into the second plug cavity 1311, and the second terminal 132 is plugged with the second mating terminal 350. Conversely, the second body 131 is inserted into the second mounting cavity 3311 of the second mounting portion 331, and the second sealing member 360 is sealingly clamped between the first body 310 and the seat body 110 to seal the gap between the second housing 330 and the second body 131.

[0056] The first mounting portion 211 of the two first plugs 200 is respectively received in the first positioning cavity 321 of the two first positioning portions 320, and the cavity bottom surface of the two first positioning cavities 321 respectively abuts against the end surface of the two first mounting portions 211 away from the seat body 110. The first connecting portion 212 of the two first plugs 200 respectively exposes the two first positioning cavities 321. After the second plug 300 is plugged with the second socket 130, the two locking members such as screws are respectively passed through the first through hole 323 of the two first positioning portions 320, and the two locking members are locked and connected with the seat body 110, so that the two first positioning portions 320 are fixedly connected with the seat body 110, and further so that the second plug 300 can be stably fixedly connected with the seat body 110. At the same time, the first plug 200 is located between the first positioning portion 320 and the seat body 110, and the first positioning portion 320 can limit the first plug 200 in the Z-axis direction to prevent the first plug 200 from being loosened from the first socket 120.

[0057] The third core 420 is inserted into the third insertion cavity 1411 of the third body 141, and the third terminal 142 is inserted into the third mating terminal 430. The third body 141 is inserted into the third installation cavity 4111 of the third installation part 411, and the third sealing member 440 is sealingly clamped between the third plug 400 and the seat body 110 to seal the gap between the third housing 410 and the third body 141. The fourth core 540 is inserted into the fourth insertion cavity 1511 of the fourth body 151, and the fourth terminal 152 is inserted into the fourth mating terminal 550. The fourth body 151 is inserted into the fourth installation cavity 5311 of the fourth installation part 531, and the fourth sealing member 560 is sealingly clamped between the second plug 510 and the seat body 110 to seal the gap between the fourth housing 530 and the fourth body 151.

[0058] At this time, the third installation part 411 of the third plug 400 is accommodated in the second positioning cavity 521 of the second positioning part 520, and the bottom surface of the second positioning cavity 521 abuts against the end surface of the third installation part 411 away from the seat body 110. The third connecting part 412 of the third plug 400 is exposed from the second positioning cavity 521 and is stacked on the side of the first positioning part 320 of the second plug 300 away from the seat body 110. After the fourth plug 500 is inserted into the fourth socket 150, two locking members such as screws are respectively inserted through the second through hole 5314 and the third through hole 523, and the two locking members are locked and connected with the seat body 110, so that the fourth plug 500 can be stably fixed and connected with the seat body 110. At the same time, the third plug 400 is located between the second positioning part 520 and the seat body 110, and the second positioning part 520 can limit the third plug 400 in the Z-axis direction to prevent the third plug 400 from being loosened from the third socket 140.

[0059] In the present application, the first plug 200 is plugged with the first socket 120, the first plug body 310 of the second plug 300 is plugged with the second socket 130, and the first positioning part 320 of the second plug 300 abuts against the first plug 200 and is detachably connected to the seat body 110, so that the stability of the connection between the second plug 300 and the second socket 130 is higher, the interference amount of the plugging between the second plug 300 and the second socket 130 can be set smaller, the second plug 300 is more easily plugged and unplugged, and the user experience is higher. The design that the third plug 400 is partially laminated on the side of the second plug 300 away from the seat body 110, the third plug 400 can limit the first plug 200 and the second plug 300 in the Z-axis direction, so that the first plug 200 and the second plug 300 can be more stably plugged with the first socket 120 and the second socket 130 respectively. The design that the second positioning part 520 of the fourth plug 500 abuts against the third plug 400 and is detachably connected to the seat body 110, the second positioning part 520 can limit the first plug 200, the second plug 300 and the third plug 400 in the Z-axis direction, so that the first plug 200, the second plug 300 and the third plug 400 can be more stably plugged with the first socket 120, the second socket 130 and the third socket 140 respectively. The design that the first plug 200 is positioned in the first positioning cavity 321, and the design that the third plug 400 is positioned in the second positioning cavity 521, so that the structure of the connector 1000 is compact, which is conducive to the miniaturization design of the connector 1000.

[0060] The integrated socket 100 and the connector 1000 of the present application are convenient to plug and unplug, and also improve the reliability of the product, and solve the problem that the connector in the prior art is difficult to balance the pre-tightening force and the plugging force of the plug.

[0061] The above describes the embodiments of the present application in detail, and the principles and implementation modes of the present application are described by applying specific examples. The above embodiment description is only used to help understand the method of the present application and its core idea.

Claims

1. An integrated socket, characterized by The integrated socket comprises: a seat body comprising a mounting surface, the mounting surface having a first mounting surface and a second mounting surface, the first mounting surface and the second mounting surface being located at opposite sides of the mounting surface respectively, the first mounting surface and the second mounting surface being staggered with each other in a plug-in direction of the integrated socket; and a plurality of sockets, a part of the plurality of sockets being arranged on the first mounting surface, another part of the plurality of sockets being arranged on the second mounting surface, the part of the plurality of sockets and the another part of the plurality of sockets being staggered with each other in the plug-in direction.

2. The integrated socket of claim 1, wherein, The second mounting surface is provided with a receiving groove, and the another part of the plurality of sockets is arranged in the receiving groove.

3. The integrated jack of claim 2, wherein, The receiving groove comprises a groove bottom surface, and the another part of the plurality of sockets comprises a first socket and a second socket which are spaced apart from each other, the first socket and the second socket being arranged on the groove bottom surface respectively.

4. The integrated jack of claim 1, wherein, The first mounting surface is parallel to the second mounting surface, the part of the plurality of sockets comprises a third socket and a fourth socket which are spaced apart from each other, the third socket and the fourth socket being arranged on the first mounting surface respectively.

5. The integrated jack of claim 1, wherein, The seat body is provided with a waterproof groove around the mounting surface, the waterproof groove surrounds an outer circumferential surface of the seat body, and a waterproof ring is arranged in the waterproof groove.

6. The integrated jack of claim 1, wherein, The seat body further comprises a connecting surface which faces away from the mounting surface, the connecting surface is provided with a first connecting member and a second connecting member, the first connecting member is located at one side of the connecting surface, and the second connecting member is located at the opposite side of the connecting surface.

7. The integrated jack of claim 6, wherein, The connecting surface is further provided with a positioning column which is located between the first connecting member and the second connecting member.

8. A connector characterized by comprising: The connector comprises the integrated socket and the integrated plug according to any one of claims 1-7, the integrated plug comprises a plurality of plugs, a part of the plurality of plugs is adapted to the another part of the plurality of sockets on the seat body, and another part of the plurality of plugs is adapted to the part of the plurality of sockets on the seat body.

9. The connector of claim 8, wherein, The part of the plurality of plugs comprises a first plug and a second plug, the first plug is inserted into the first socket of the another part of the plurality of sockets, the second plug comprises a first plug body and a first positioning portion, the first plug body is inserted into the second socket of the another part of the plurality of sockets, the first positioning portion is detachably connected to the seat body, and the first positioning portion abuts against the first plug so as to position the first plug between the seat body and the first positioning portion.

10. The connector of claim 9, wherein, A first positioning cavity is arranged on a side of the first plug body which faces the first plug, and the first plug is positioned in the first positioning cavity.

11. The connector of claim 9, wherein The connector further comprises a first sealing member and a second sealing member, the first sealing member is located between the first plug and the seat body of the integrated socket, the first plug and the seat body abut against the first sealing member respectively in a sealed manner, the second sealing member is located between the first plug body and the seat body, and the first plug body and the seat body abut against the second sealing member respectively in a sealed manner.

12. The connector of claim 9, wherein, The other part of the plug further comprises a third plug and a fourth plug, the third plug is inserted into a third socket of the one part of the sockets, and the third plug is partially stacked on a side of the second plug away from the seat body; The fourth plug comprises a second plug body and a second positioning part, the second plug body is inserted into a fourth socket of the one part of the sockets, and the second positioning part is detachably connected to the seat body, the second positioning part abuts against the third plug, so that the third plug is positioned between the seat body and the second positioning part.

13. The connector of claim 12, wherein, The connector further comprises a third sealing member and a fourth sealing member, the third sealing member is located between the third plug and the seat body, and the third plug and the seat body respectively abut against the third sealing member in a sealed manner; the fourth sealing member is located between the second plug body and the seat body, and the second plug body and the seat body respectively abut against the fourth sealing member in a sealed manner.

14. The connector of claim 12, wherein, A side of the second positioning part facing the third plug is provided with a second positioning cavity, and the third plug is positioned in the second positioning cavity.