Multi-core elbow connector

By designing power and signal slots to protect the electrodes in the connector, and utilizing a sealing structure and locking mechanism, the short circuit problem caused by exposed electrodes is solved, achieving waterproof and dustproof effects for the connector and ensuring the reliability and stability of the electrical connection.

CN120955401APending Publication Date: 2025-11-14HUIZHOU HUZHENG ELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202511141367.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-15
Publication Date
2025-11-14

AI Technical Summary

Technical Problem

In existing connectors, the electrodes are exposed inside the socket and plug, which easily accumulates dust and causes short circuits. Rainwater can also easily cause short circuits.

Method used

Design a multi-core elbow connector with a power slot and a signal slot in the socket and plug parts respectively. Electrodes and pins are inserted into the corresponding slots and protected by a sealing structure and locking mechanism to prevent dust and moisture from contacting them.

Benefits of technology

It effectively prevents dust and rainwater from entering, avoids electrode short circuits, ensures electrical connection reliability and waterproof performance, and improves stability and safety during the insertion process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a multi-core elbow connector. The multi-core elbow connector comprises a socket part and a plug part which is adaptively connected with the socket part, the socket part comprises a shell, a first power supply slot and a second power supply slot are arranged in the shell, and a signal source slot is arranged between the first power supply slot and the second power supply slot; a first electrode is arranged in the first power supply slot, a second electrode is arranged in the second power supply slot, and a signal connector is arranged in the signal source slot; the plug part comprises a shell, and a connector is arranged at one end, facing the socket part, of the shell; the connector is provided with a first installation area and a second installation area, and a third installation area is arranged between the first installation area and the second installation area. The two electrodes are protected by using the two power supply slots; meanwhile, the two power supply slots are arranged up and down, and the signal source slot is arranged in the middle, so that the electrodes are prevented from being exposed in the socket part, and the power supply slots and the signal source slot can be utilized to protect the electrodes and the signal connector.
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Description

Technical Field

[0001] This invention relates to the field of electrical connector technology, specifically a multi-core elbow connector. Background Technology

[0002] In addition to meeting general performance requirements, electrical connectors must also meet the following important requirements: good contact, reliable operation, and easy maintenance. Their reliability directly affects the normal operation of the aircraft circuitry and is related to the safety of the entire main unit. Therefore, the main unit circuitry has very strict requirements on the quality and reliability of electrical connectors.

[0003] However, in existing connectors, the electrodes inside the socket are directly exposed inside the socket, and the pins that connect to the electrodes inside the plug are also exposed inside the plug housing; therefore, dust will adhere to the electrodes, and when rainwater falls between the two electrodes, short circuits are likely to occur. Summary of the Invention

[0004] The purpose of this invention is to provide a multi-core elbow connector to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, the present invention provides the following technical solution: a multi-core elbow connector, comprising a socket portion and a plug portion adapted and connected to the socket portion; the socket portion includes a housing, wherein a first power slot and a second power slot are provided within the housing, and a signal source slot is provided between the first power slot and the second power slot; wherein a first electrode is installed in the first power slot, a second electrode is provided in the second power slot, and a signal connector is provided in the signal source slot; the plug portion includes a housing, wherein a connector is provided at one end of the housing facing the socket portion; the connector is provided with a first mounting area and a second mounting area, and a third mounting area is provided between the first mounting area and the second mounting area; wherein a first pin is installed in the first mounting area, and the first pin is inserted into the first electrode; a second pin is provided in the second mounting area, and the second pin is inserted into the second electrode; a signal source plug is provided in the third mounting area, and the signal source plug is connected to the signal connector in the signal source slot.

[0006] As a preferred technical solution of the present invention: the side of the connector facing the socket portion is further provided with a first contact portion and a second contact portion, and the first contact portion and the second contact portion are used to make the wiring terminal of the first pin and the wiring terminal of the second pin offset from each other.

[0007] As a preferred technical solution of the present invention: both the inner wall surfaces of the first power slot and the second power slot are provided with protrusions, and both the outer wall surfaces of the first electrode and the second electrode are provided with buckles; the first electrode is fixed in the first power slot by the buckles snapping onto the inner side of the protrusions.

[0008] As a preferred technical solution of the present invention: a buckle plate is provided on the inner wall surface of both the first installation area and the second installation area; a buckle groove adapted to and connected to the buckle plate is provided on both the first pin and the second pin.

[0009] As a preferred technical solution of the present invention: the sides of the first mounting area and the second mounting area are further provided with grooves, and the two sides of the first pin and the second pin are located in the grooves.

[0010] As a preferred embodiment of the present invention: the outer end faces of the first power socket and the second power socket are flush with each other, and the outer end face of the signal source socket is offset from the outer end face of the first power socket.

[0011] As a preferred embodiment of the present invention: the outer wall surface of the connector is used for mounting grooves for installing sealing rings, and the number of mounting grooves is two; the sealing ring in one mounting groove is used to achieve sealing between the outer shell and the connector, and the other is used to achieve sealing between the socket part and the connector.

[0012] As a preferred embodiment of the present invention: the side of the socket portion facing the plug portion is further provided with a sealing gasket, and the sealing gasket is used to achieve the sealing at the connection between the plug portion and the socket portion.

[0013] As a preferred technical solution of the present invention: the bottom of the outer shell is also provided with a waterproof pad, and is connected to the outer shell by a provided support plate to fix the waterproof pad inside the outer shell; wherein, the two sides of the support plate are adapted to be connected to the lifting lugs provided on the outer side of the outer shell by lifting rings.

[0014] As a preferred technical solution of the present invention: the outer shell is further provided with a latch, which is adapted to and connected with a locking pin provided on the socket part to lock the plug part on the socket part.

[0015] The beneficial effects of the present invention by adopting the above technical solution are as follows: 1. When the first electrode is inserted into the first power socket and the second electrode is inserted into the second power socket, the two power sockets can be used to protect the two electrodes; at the same time, the two power sockets are arranged vertically and vertically, with the signal source socket in the center, so as to avoid the electrodes being exposed in the socket part. At the same time, the power sockets and signal source sockets can also be used to protect the electrodes and signal connectors, which can effectively prevent dust or impurities from falling into the electrodes or signal connectors. In particular, each electrode and signal connector is protected by the corresponding socket, which can effectively prevent rainwater from falling in and causing short circuits between the electrodes.

[0016] 2. The plug part is also provided with a first mounting area corresponding to the first power slot, a second mounting area corresponding to the second power slot, and a third mounting area corresponding to the signal source slot. Therefore, the plug part and the socket part have reliable waterproof capability after connection. In particular, when the socket part and the plug part are plugged in, it not only facilitates the smooth connection of the electrodes and pins, but also avoids the problem of damage to the electrodes and pins during the plugging process due to mutual interference. Attached Figure Description

[0017] Figure 1 This is an exploded view of the main structure of the present invention;

[0018] Figure 2 A cross-sectional schematic diagram of the main structure of the present invention;

[0019] Figure 3 This is an exploded structural diagram of the socket portion of the present invention;

[0020] Figure 4 This is a cross-sectional structural diagram of the socket housing of the present invention;

[0021] Figure 5 This is a schematic diagram of the main structure of the first electrode of the present invention;

[0022] Figure 6 This is an exploded structural diagram of the plug portion of the present invention;

[0023] Figure 7 This is a schematic diagram showing the state of the connector and housing during assembly.

[0024] Figure 8 This is an exploded structural diagram of the connector of the present invention;

[0025] Figure 9 This is a cross-sectional structural diagram of the connector of the present invention.

[0026] In the diagram: 1. Socket section; 10. Housing; 11. First electrode; 12. Second electrode; 13. Signal connector; 14. Locking pin; 15. First power slot; 16. Signal source slot; 17. Second power slot; 18. Protrusion; 19. Sealing gasket; 110. Inverted buckle; 2. Plug section; 20. Housing; 21. Locking buckle; 22. First connecting groove; 23. Connector; 24. Lifting lug; 25. Waterproof pad; 26. Support plate; 27. Lifting ring; 28. Second connecting groove; 29. ​​First connecting pin; 210. First pin; 211. Second pin; 212. Signal source plug; 213. Clip groove; 214. Mounting groove; 215. First mounting area; 216. Clip plate; 217. Third mounting area; 218. Groove; 219. Second mounting area; 220. Second connecting pin; 221. First contact part; 222. Second contact part. Detailed Implementation

[0027] The embodiments of the present invention are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, and should not be construed as limiting the present invention. In the description of the present invention, it should be understood that the terms "upper," "lower," "front," "upper surface," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as limiting the present invention.

[0028] Please see Figure 1-9 The present invention provides an embodiment of a multi-core elbow connector, comprising a socket portion 1 and a plug portion 2 adapted to and connected to the socket portion 1; the socket portion 1 includes a housing 10, wherein a first power slot 15 and a second power slot 17 are provided in the housing 10, and a signal source slot 16 is provided between the first power slot 15 and the second power slot 17; wherein a first electrode 11 is installed in the first power slot 15, a second electrode 12 is provided in the second power slot 17, and a signal connector 13 is provided in the signal source slot 16;

[0029] In summary, when the first electrode 11 is inserted into the first power socket 15 and the second electrode 12 is inserted into the second power socket 17, the two power sockets can be used to protect the two electrodes. At the same time, the two power sockets are arranged vertically, with the signal source socket 16 in the center, to avoid the electrodes being exposed in the socket part 1. The power sockets and signal source socket 16 can also protect the electrodes and signal connector 13, effectively preventing dust or impurities from falling onto the electrodes or signal connector. In particular, each electrode and signal connector 13 is protected by its corresponding socket, which can effectively prevent rainwater from falling in and causing short circuits between the electrodes.

[0030] The plug portion 2 includes a housing 20, and a connector 23 is provided at one end of the housing 20 facing the socket portion 1. The connector 23 is provided with a first mounting area 215 and a second mounting area 219, and a third mounting area 217 is provided between the first mounting area 215 and the second mounting area 219. A first pin 210 is installed in the first mounting area 215 and is plugged into the first electrode 11. A second pin 211 is provided in the second mounting area 219 and is plugged into the second electrode 12. A signal source plug 212 is provided in the third mounting area 217 and is connected to a signal connector 13 in the signal source slot 16.

[0031] Based on this, while ensuring smooth circuit conduction, the plug part 2 is also provided with a first mounting area 215 corresponding to the first power slot 15, a second mounting area 219 corresponding to the second power slot 17, and a third mounting area 217 corresponding to the signal source slot 16. Therefore, the plug part 2 and the socket part 1 have reliable waterproof capability after connection. In particular, when the socket part 1 and the plug part 2 are plugged in, it not only facilitates the smooth connection of the electrodes and pins, but also avoids the problem of damage to the electrodes and pins during the plugging process due to mutual interference.

[0032] Furthermore, the connector 23 has a first contact portion 221 and a second contact portion 222 on the side facing the socket portion 1. The first contact portion 221 and the second contact portion 222 are used to offset the terminals of the first pin 210 and the second pin 211. Therefore, when the two pins abut against the corresponding contact portions, the terminals of the two pins can be offset, which not only separates the wires and reduces heat generation between them, but also makes full use of the internal space of the housing 20.

[0033] In order to facilitate the locking of the first electrode 11 and the second electrode 12 after assembly, the inner wall surfaces of the first power slot 15 and the second power slot 17 are provided with protrusions 18, and the outer wall surfaces of the first electrode 11 and the second electrode 12 are provided with buckles 110; the buckles 110 are fastened to the inner side of the protrusions 18 to fix the first electrode 11 in the first power slot 15.

[0034] In summary, due to the arrangement of the first power slot 15 and the second power slot 17, the two electrodes can be smoothly and quickly inserted into the corresponding slots. After insertion, the protrusion 18 and the buckle 110 cooperate to quickly lock the two electrodes, making the assembly of the electrodes simple and convenient, and ensuring that the position is stable and reliable after assembly.

[0035] In order for the first pin 210 and the second pin 211 to be locked in position after assembly, a buckle plate 216 is provided on the inner wall surface of the first mounting area 215 and the second mounting area 219; a buckle groove 213 adapted to and connected to the buckle plate 216 is provided on the first pin 210 and the second pin 211.

[0036] In summary, after the two pins are connected to their corresponding mounting areas, the cooperation between the snap plate 216 and the snap groove 213 ensures that the two pins can be reliably locked within their respective mounting areas. Based on this, the pins inside the plug part 2 are reliably fixed, and the electrodes inside the socket part 1 are reliably fixed, thus preventing the electrodes and pins from becoming loose during the insertion and removal process of the plug part 2.

[0037] Furthermore, since the first mounting area 215 and the second mounting area 219 are provided with grooves 218 on their sides, and the sides of the first pin 210 and the second pin 211 are located in the grooves 218, the grooves 218 can be used to guide the installation of the pins. At the same time, the grooves 218 can be used to further position the pins to ensure that the position of the pins is locked stably and reliably.

[0038] Furthermore, since the outer end faces of the first power slot 15 and the second power slot 17 are flush with each other, and the outer end face of the signal source slot 16 is offset from the outer end face of the first power slot 15, the plug portion 2 and the socket portion 1 can be easily and smoothly connected. After connection, the end faces of the first power slot 15 and the second power slot 17 enter the interior of the first mounting area 215 and the second mounting area 219, while the end face of the third mounting area 217 fits against the end face of the signal source slot 16. Therefore, after the plug portion 2 and the socket portion 1 are connected, the various mounting areas and slots inside are offset from each other, so as to ensure the stability of the plug connection.

[0039] Based on the above solution, in order to improve the waterproof and dustproof capabilities of the plug portion 2 and the socket portion 1, as well as the waterproof and dustproof capabilities after their connection, the outer wall surface of the connector 23 is provided with mounting grooves 214 for installing sealing rings, and the number of mounting grooves 214 is two. One mounting groove 214 contains a sealing ring for sealing between the outer shell 20 and the connector 23, and the other contains a sealing ring for sealing between the socket portion 1 and the connector 23. Therefore, the sealing rings in the two mounting grooves 214 can both seal the connector 23 and the outer shell 20 and ensure the sealing performance after the plug portion 2 and the socket portion 1 are connected.

[0040] Furthermore, the side of the socket portion 1 facing the plug portion 2 is also provided with a sealing gasket 19, and the sealing gasket 19 is used to seal the connection between the plug portion 2 and the socket portion 1. Therefore, when the plug portion 2 is connected to the socket portion 1, the end face of the plug portion 2 is pressed against the sealing gasket 19, which can further improve the sealing performance of the connection between the plug portion 2 and the socket portion 1.

[0041] Meanwhile, since the bottom of the outer casing 20 is also provided with a waterproof pad 25, and is connected to the outer casing 20 through a support plate 26 to fix the waterproof pad 25 inside the outer casing 20; wherein, the two sides of the support plate 26 are adapted to the lifting lugs 24 provided on the outer side of the outer casing 20 through lifting rings 27, thus improving the waterproof capability of the plug part 2 itself and effectively preventing moisture from entering the interior of the outer casing 20 through the wire.

[0042] In addition, since the outer shell 20 is also provided with a latch 21, the latch 21 is adapted to the locking pin 14 provided on the socket part 1 to lock the plug part 2 on the socket part 1. Therefore, the adaptation connection between the latch 21 and the locking pin 14 can be used to ensure the stability of the plug part 2 after it is connected to the socket part 1.

[0043] To facilitate the smooth assembly of connector 23 and housing 20, connector 23 is provided with a first connecting groove 22 on one side and a second connecting groove 28 on the other side. At the same time, housing 20 is provided with a first connecting pin 29 on one side and a second connecting pin 220 on the other side. The first connecting pin 29 is connected to the first connecting groove 22 to fix one side of connector 23, and the second connecting pin 220 is connected to the second connecting groove 28 to fix the other side of connector 23. Thus, connector 23 and housing 20 can be reliably fixed together.

[0044] To ensure directional correctness during assembly, the first connecting slot 22 is larger than the second connecting slot 28, further guaranteeing smooth assembly between the connector 23 and the housing 20. During assembly, the bottom of the connector 23 is placed against the bottom surface of the housing 20, and then pushed inwards. Simultaneously, the connector 23 is rotated upwards until the connecting pin engages with the corresponding connecting slot, achieving non-linear assembly of the connector 23. This non-linear assembly reduces the force required during assembly and prevents pulling or squeezing of the wires.

[0045] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings, but the present invention is not limited to the described embodiments. For those skilled in the art, various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention, and these variations still fall within the protection scope of the present invention.

Claims

1. A multi-core elbow connector, characterized in that: It includes a socket portion (1) and a plug portion (2) that is adapted to and connected to the socket portion (1); The socket portion (1) includes a housing (10), in which a first power slot (15) and a second power slot (17) are provided, and a signal source slot (16) is provided between the first power slot (15) and the second power slot (17); wherein, a first electrode (11) is installed in the first power slot (15), and a second electrode (12) is provided in the second power slot (17), and a signal connector (13) is provided in the signal source slot (16); The plug portion (2) includes a housing (20), and a connector (23) is provided at one end of the housing (20) facing the socket portion (1); The connector (23) is provided with a first mounting area (215) and a second mounting area (219), and a third mounting area (217) is provided between the first mounting area (215) and the second mounting area (219); wherein, a first pin (210) is installed in the first mounting area (215), and the first pin (210) is plugged into the first electrode (11); The second mounting area (219) is provided with a second pin (211), and the second pin (211) is plugged into the second electrode (12); the third mounting area (217) is provided with a signal source plug (212), and the signal source plug (212) is connected to the signal connector (13) in the signal source slot (16).

2. A multi-core elbow connector according to claim 1, characterized in that: The connector (23) is further provided with a first contact portion (221) and a second contact portion (222) on the side facing the socket portion (1), and the first contact portion (221) and the second contact portion (222) are used to make the wiring terminal of the first pin (210) and the wiring terminal of the second pin (211) offset from each other.

3. A multi-core elbow connector according to claim 2, characterized in that: The inner walls of the first power slot (15) and the second power slot (17) are provided with protrusions (18), and the outer walls of the first electrode (11) and the second electrode (12) are provided with buckles (110); the buckles (110) are fastened to the inner side of the protrusions (18) to fix the first electrode (11) in the first power slot (15).

4. A multi-core elbow connector according to claim 3, characterized in that: Both the inner wall surfaces of the first installation area (215) and the second installation area (219) are provided with buckle plates (216); both the first pin (210) and the second pin (211) are provided with buckle grooves (213) that are adapted to and connected to the buckle plates (216).

5. A multi-core elbow connector according to claim 4, characterized in that: The first mounting area (215) and the second mounting area (219) are also provided with grooves (218) on their sides, and the sides of the first pin (210) and the second pin (211) are located in the grooves (218).

6. A multi-core elbow connector according to claim 5, characterized in that: The outer end faces of the first power slot (15) and the second power slot (17) are flush with each other, and the outer end face of the signal source slot (16) is offset from the outer end face of the first power slot (15).

7. A multi-core elbow connector according to any one of claims 1-6, characterized in that: The outer wall surface of the connector (23) is used for mounting grooves (214) for installing sealing rings, and there are two mounting grooves (214); the sealing ring in one mounting groove (214) is used to achieve the seal between the outer shell (20) and the connector (23), and the other is used to achieve the seal between the socket part (1) and the connector (23).

8. A multi-core elbow connector according to claim 7, characterized in that: The socket part (1) is also provided with a sealing gasket (19) on the side facing the plug part (2), and the sealing gasket (19) is used to seal the connection between the plug part (2) and the socket part (1).

9. A multi-core elbow connector according to claim 8, characterized in that: The bottom of the outer shell (20) is also provided with a waterproof pad (25), and is connected to the outer shell (20) by a provided support plate (26) to fix the waterproof pad (25) inside the outer shell (20); wherein, the two sides of the support plate (26) are adapted to the lifting lugs (24) provided on the outer side of the outer shell (20) by lifting rings (27).

10. A multi-core elbow connector according to claim 9, characterized in that: The outer casing (20) is also provided with a latch (21), which is adapted to and connected with a locking pin (14) provided on the socket part (1) to lock the plug part (2) on the socket part (1).