Adjustable high speed cable assembly to connector structure
By using an adjustable high-speed cable assembly connector structure, and employing elastic positioning elements and threaded plugs to fix the cable, a conductor connection assembly was designed to solve the stability and heat dissipation problems of the cable connector, thus achieving a stable and safe conductive connection.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- SHENZHEN JINYANG ELECTRONICS CO LTD
- Filing Date
- 2026-04-21
- Publication Date
- 2026-06-12
Smart Images

Figure CN122202979A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of conductive connection technology for cables, specifically to an adjustable high-speed cable assembly connector structure. Background Technology
[0002] Cables are a general term for items such as optical cables and electrical cables, which are mainly used for multiple functions such as control installation, equipment connection, and power transmission. When making conductive connections between cables and external power equipment or other cables, connector structures such as joints need to be connected and assembled.
[0003] A Chinese patent application with publication number CN118017282A discloses a power connector with a cable, including a plug, which is fixedly connected inside the cavity of a protective shell. A cable body is fixedly connected to the rear of the protective shell, and a dragging structure is abutted on the cable body. The dragging structure includes a support ring that abuts against the cable body. A through tube is distributed below the support ring, and a connecting rod is inserted into the inside of the through tube. A threaded tube is rotatably connected to the rear of the through tube. The through tube is fixedly connected to the support ring through a support rod, and the threaded tube is threaded to the connecting rod through an external thread. The external thread is formed on the connecting rod. In practical use, this invention can support the connection between the cable and the connector, prevent damage to the connection between the cable and the connector, and ensure a stable connection with external devices, preventing the interface connection between the connector and the external device from becoming loose.
[0004] However, this cable connector has the following drawbacks in practical use: Existing cable connectors require the assembly and fixation of the conductor portion of the cable to achieve electrical connection when assembling and connecting cables to external devices or other cables. Traditional assembly techniques often result in poor stability and secureness of the connector after connection. During subsequent cable laying, the pulling forces can easily cause the connector to loosen or detach, affecting the conductivity of the assembled cable. When existing cable connectors make conductive connections between cables, the cable conductors inside the connector generate a certain temperature during conduction. Due to the design of the connector, the heat generated tends to accumulate in the small space inside the connector, making it difficult to dissipate the heat quickly. After prolonged operation, this can damage the internal electrical components of the connector, resulting in low safety. Summary of the Invention
[0005] The purpose of this invention is to provide an adjustable high-speed cable assembly connector structure to solve the problems mentioned in the background art.
[0006] To achieve the above-mentioned objectives, the present invention adopts the following technical solution: This invention provides an adjustable high-speed cable assembly connector structure, including a male cable connector, a female cable connector, an external assembly component, a main cable, and two sets of auxiliary cables. The male cable connector is electrically connected to the side of the female cable connector and extends into the interior of the female cable connector. An external assembly component is provided on the outer side of the connection between the male and female cable connectors. The male cable connector houses a main cable extending outwards, and is electrically connected to the main cable. The female cable connector houses a secondary cable extending outwards, and is electrically connected to two sets of secondary cables. Multiple sets of conductor cables are installed inside the main and secondary cables. The cable connector includes: An outer protective assembly, the outer side of which is mounted on the side of the cable connector via an outer mounting assembly, and an inner mounting assembly is provided at the bottom inner side of the outer protective assembly, on which two sets of auxiliary cables are mounted and fixed; and A conductor connection assembly is installed on the inner top of the outer protective assembly and located on the side of the outer protective assembly. One side of the conductor connection assembly is electrically connected to two sets of auxiliary cables, and the other side of the conductor connection assembly is electrically connected to a male cable connector.
[0007] As a preferred embodiment of the present invention, the male cable connector includes: The male connector housing contains a male connector conductor. Multiple sets of conductive pins are mounted on one side of the conductor body, extending into and electrically connecting to the conductor connection assembly. Multiple sets of connectors are located on the outer side of the male connector conductor, extending into the inner side of the outer protective assembly. The outer side of the male head shell is fitted with an outer protective component via an outer assembly assembly; A quick-release connector assembly, wherein the quick-release connector assembly is installed on the other side of the male conductor, and multiple sets of conductor cables of the main cable are assembled and fixed inside the assembly, and the conductor cables are electrically connected to the male conductor; and The male connector sealing seat is threaded to the inner bottom of the male connector housing, and the main cable is installed through the inside. The main cable is fixed to the inner side of the male connector sealing seat by a rubber layer.
[0008] As a preferred embodiment of the present invention, the quick-release connector assembly includes: A male connector is installed inside the male connector housing and located on the side of the male connector conductor. Multiple sets of connector interfaces are provided inside the male connector. The outer side of the connector is provided with an elastic positioning element, which is installed on the side of the male connector body. A metal positioning component is installed inside the plug interface via an elastic positioning component, and multiple sets of the metal positioning components are provided, with a conductor cable provided on the inner side of each set of the metal positioning components.
[0009] In a preferred embodiment of the present invention, the top of the elastic positioning member abuts against the inner wall of the male connector housing, and the inner side abuts against the conductor cable. The elastic positioning member is provided with a quick-release part on one side of the conductor cable.
[0010] As a preferred embodiment of the present invention, the external assembly component includes an external thread and an external assembly block. The external threads are provided in two sets: one set is located on the top of the male connector housing, and the other set is located on the outside of the outer protective assembly. Among them, the outer threads of the two sets of external threads are connected to an external assembly block, which is located on the outside of the connection between the male head shell and the outer protective component.
[0011] As a preferred embodiment of the present invention, the outer protective component includes: A top protective housing has a set of external threads on its outer side, a conductor connection assembly inside its interior, and a bottom protective housing threadedly connected to its inner wall. The inner side of the bottom protective shell is equipped with a secondary cable via an internal assembly component; The female head sealing seat is threaded to the inner bottom of the bottom protective shell, and two sets of auxiliary cables are installed inside it. An internal assembly component is provided on the side of the female head sealing seat.
[0012] In a preferred embodiment of the present invention, the inner wall of the top protective shell is provided with multiple sets of inner grooves, all of which are located on the outer side of the conductor connection assembly. Among them, multiple sets of the inner grooves and the plugs are matched.
[0013] As a preferred embodiment of the present invention, the internal assembly includes an inner protrusion, a metal sleeve, and a rubber assembly ring. The inner protrusion is installed on the inner wall of the bottom protective shell, and two sets of the inner protrusion are provided. A metal sleeve located inside the bottom protective shell is provided between the two sets of inner protrusions. The metal sleeve has two sets of rubber assembly rings on its inner side, and two sets of auxiliary cables are installed through the inner side of the two sets of rubber assembly rings. The conductor cables of the auxiliary cables extend to the outer side of the metal sleeve.
[0014] As a preferred embodiment of the present invention, the conductor connection assembly includes: An inner collar is installed inside the top protective shell, and a female conductive head is provided on the inner side. Multiple sets of conductive ports are opened on one side of the female conductive head, and the conductive pins are electrically connected to the inner side of each conductive port. The inner collar is disposed on the outside of the bottom protective shell; A threaded assembly component is provided on the other side of the female conductor, and multiple sets of conductor cables are assembled and fixed inside it. The threaded assembly component is located on the side of two sets of auxiliary cables, and a gap is left between the threaded assembly component and the auxiliary cables.
[0015] As a preferred embodiment of the present invention, the threaded assembly component includes: A female connector is mounted on the other side of the female conductor and has multiple sets of side conductive grooves inside. An internal mating block is installed inside each side conductive groove. The internal docking block is fitted with a conductor cable via a set of threaded plugs. An external connector is electrically connected to the side of the female connector and located on the side of the internal connector. A conductor cable is fixed inside the external connector via another set of threaded plugs.
[0016] Compared with existing technologies, one or more of the above technical solutions have the following beneficial effects: 1. In the adjustable high-speed cable assembly connector structure, the main power transmission cable and two sets of auxiliary cables can be assembled and fixed using elastic positioning parts and threaded plugs. Multiple sets of conductor cables inside the main cable and the two sets of auxiliary cables are respectively assembled and fixed to the sides of the male and female conductors, and electrically connected to them. This ensures that during the laying of the connector structure, the assembly and fixing will not loosen or even fall off due to pulling or other forces generated during laying, improving the stability, firmness, and conductivity of the conductive assembly and connection. Simultaneously, when multiple sets of conductor cables are connected, on the one hand, a certain gap is left between them and the male and female conductors for convenient heat dissipation during conduction; on the other hand, each set of conductor cables is individually assembled inside the metal positioning parts and the mating blocks (internal and external), ensuring that the current of each set of conductors does not conflict or interfere, improving the safety of the conductive connection. 2. In the adjustable high-speed cable assembly connector structure, after the main cable and auxiliary cable are assembled and fixed, the male connector shell and the top protective shell can be assembled and fixed together by plugging them in. This allows the conductive pins on the side of the male connector to extend into the conductive socket inside the female connector, achieving a conductive connection. Simultaneously, the plugs on the outside of the male connector can extend sequentially into the corresponding inner grooves during assembly, ensuring that multiple sets of conductive pins do not misalign when extending into the conductive socket. This reduces the probability of damage to the conductive pins and conductive socket from repeated plugging, effectively increasing the number of uses and lifespan. 3. In the adjustable high-speed cable assembly connector structure, when assembling and fixing multiple sets of conductor cables inside the main cable, these conductor cables can be assembled and fixed within the connector body of the male connector using metal positioning components. Subsequently, when assembling and fixing the male connector shell and the male connector body, the compressive force during assembly and fixing automatically compresses the elastic positioning components on their inner sides, and the elastic positioning components automatically achieve the assembly and fixing of multiple sets of conductor cables. This improves the convenience of assembling and fixing multiple sets of conductor cables inside the main cable and effectively avoids the probability of damage to multiple sets of conductor cables during assembly, thus improving the safety of conductor cable assembly. 4. In the adjustable high-speed cable assembly connector structure, after the male connector shell and the top protective shell are assembled, the outer assembly block connected by external threads on the outside of the male connector shell can rotate and move to the outside of the external threads on the outside of the top protective shell, where it connects with the external threads on the outside of the protective shell. This ensures the stability and firmness of the male connector shell and the top protective shell during the mating connection. Simultaneously, the angles of the two sets of external threads can be automatically corrected through internal grooves and plugs, ensuring that the positions of the two sets of external threads do not become misaligned during assembly. Attached Figure Description
[0017] The accompanying drawings, which form part of this invention, are used to provide a further understanding of the invention. The illustrative embodiments of the invention and their descriptions are used to explain the invention and do not constitute an improper limitation of the invention.
[0018] Furthermore, the terms "installation," "setup," "equipped with," "connection," "linking," and "socketing" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral structure; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium, or an internal connection between two devices, components, or parts. Those skilled in the art can understand the specific meaning of these terms in this application based on the specific circumstances.
[0019] Figure 1 This is a schematic diagram of the structure of the present invention in a conductive connection state; Figure 2 This is a cross-sectional structural schematic diagram of the present invention in a conductive connection state; Figure 3 This is the present invention. Figure 1 A schematic diagram of the structure viewed in section ii-ii'. Figure 4 This is a schematic diagram of the structure of the main cable and the male connector of the cable in this invention; Figure 5 This is a schematic diagram of the exploded connection between the main cable and the male cable connector of the present invention; Figure 6 This is a schematic diagram of the male cable connector of the present invention; Figure 7 This is a cross-sectional structural diagram of the connection between the main cable and the male cable connector of the present invention; Figure 8 This is a schematic diagram of the connection between the secondary cable and the female cable connector of the present invention; Figure 9 This is a cross-sectional structural schematic diagram of the connection between the auxiliary cable and the cable connector of the present invention; Figure 10 This is a schematic diagram of the exploded connection between the secondary cable and the female cable connector of the present invention; Figure 11 This is a schematic diagram of the structure ensuring the connection of the secondary cable and conductor connection assembly of the present invention; Figure 12 This is a schematic diagram of the connection structure of the conductor cable and conductor connection assembly of the present invention; Figure 13 This is a schematic diagram of the structure of the metal positioning component of the present invention; Figure 14 This is a cross-sectional structural schematic diagram of the metal positioning component of the present invention; In the picture: 10. Male cable connector; 101. Male connector housing; 102. Male connector conductor; 1021. Connector; 103. Conductive pin; 104. Quick-release connector assembly; 1041. Male connector body; 1042. Connector interface; 1043. Flexible positioning element; 1044. Metal positioning element; 1045. Quick-release part; 105. Male connector sealing seat; 20. Cable connector; 30. External assembly component; 301. External thread; 302. External assembly block; 40. Main cable; 400. Conductor cable; 50. Secondary cable; 60. Outer protective assembly; 601. Top protective housing; 6011. Inner groove; 602. Bottom protective housing; 603. Female head sealing seat; 70. Internal assembly component; 701. Internal protrusion; 702. Metal sleeve; 703. Rubber assembly ring; 80. Conductor connection assembly; 801. Inner collar; 802. Female conductor; 803. Conductive socket; 804. Threaded assembly component; 8041. Female plug body; 8042. Conductive groove; 8043. Internal mating block; 8044. External mating block; 8045. Threaded plug; 90. Side notch; 901. Inner elastic positioning arm; 902. Outer elastic positioning arm; 903. Angled connecting positioning arm; 904. Embedded groove. Detailed Implementation
[0020] To enable those skilled in the art to better understand the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present application, and not all embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative effort should fall within the scope of protection of the present application. Example 1
[0021] Please see Figures 1-12 The adjustable high-speed cable assembly connector structure includes a male cable connector 10, a female cable connector 20, an external assembly component 30, a main cable 40, and two sets of auxiliary cables 50. The male cable connector 10 is electrically connected to the side of the female cable connector 20 and extends into the interior of the female cable connector 20. An external assembly component 30 is located on the outer side of the connection between the male and female cable connectors 10 and 20. The main cable 40, extending outwards, is installed inside the male cable connector 10, and the male cable connector 10 and the main cable 40 are electrically connected. The auxiliary cables 50, extending outwards, are installed inside the female cable connector 20, and the female cable connector 20 and the two sets of auxiliary cables 50 are electrically connected. The cable 40 and the auxiliary cable 50 are internally provided with multiple sets of conductor cables 400. The female cable connector 20 includes an outer protective component 60, the outer side of which is installed on the side of the male cable connector 10 via an outer mounting component 30. An inner mounting component 70 is provided at the bottom of the outer protective component 60, and two sets of auxiliary cables 50 are mounted and fixed on the inner side of the inner mounting component 70. The male cable connector 80 is installed at the top inner side of the outer protective component 60 and is located on the side of the outer protective component 60. One side of the conductor connector 80 is electrically connected to the two sets of auxiliary cables 50, and the other side of the conductor connector 80 is electrically connected to the male cable connector 10.
[0022] The working principle described above is as follows: When electrically connecting the main cable 40 and the two sets of auxiliary cables 50, the main cable 40 and the two sets of auxiliary cables 50 need to be installed inside the male cable connector 10 and the female cable connector 20, respectively. At this time, the main cable 40 can be directly installed inside the male cable connector 10, with sufficient gaps left at the connection for heat dissipation, improving the safety of the male cable connector 10 and the main cable 40 after connection and electrical conduction. The two sets of auxiliary cables 50 can be installed inside the outer protective component 60 through the inner mounting component 70 on their outer side, and electrically connected to the conductor connection component 80 on the inner side of the outer protective component 60. Sufficient space is left between the auxiliary cables 50 and the conductor connection component 80 for heat dissipation, ensuring the safety of the conductor connection component 80 and the auxiliary cables 50 during connection. At the same time, when connecting the male cable connector 10 and female cable connector 20 of the main cable 40 and the two sets of auxiliary cables 50, the design of the external assembly component 30 and the structure of the male cable connector 10 and female cable connector 20 can further ensure the stability and firmness of the male cable connector 10 and female cable connector 20 during electrical connection, and will not cause problems such as loosening or falling off in subsequent assembly, thus ensuring the conductivity of the two after connection.
[0023] For details, please refer to the following: Figure 5 , Figure 6 and Figure 7 The male cable connector 10 includes a male connector housing 101, inside which a male connector conductor 102 is installed. Multiple sets of conductive pins 103 are installed on one side of the inside of the male connector conductor 102, extending into and electrically connecting to the conductor connection assembly 80. Multiple sets of connectors 1021 are provided on the outside of the male connector conductor 102, extending into the inside of the outer protective assembly 60. The outside of the male connector housing 101 is connected via an outer mounting assembly. 30 is equipped with an outer protective component 60; a quick-release plug-in component 104, which is installed on the other side of the male conductor 102 and has multiple sets of conductor cables 400 of the main cable 40 installed and fixed inside, the conductor cables 400 and the male conductor 102 being electrically connected; and a male sealing seat 105, which is threaded to the inner bottom of the male housing 101 and has the main cable 40 running through it, the main cable 40 being installed and fixed inside the male sealing seat 105 through a rubber layer.
[0024] In this embodiment, the quick-release connector assembly 104 includes a male connector body 1041, which is installed inside the male connector housing 101 and located on the side of the male connector conductor 102. The male connector body 1041 has multiple sets of connectors 1042 inside. An elastic positioning member 1043 is provided on the outside of the connector 1042, and the elastic positioning member 1043 is installed on the side of the male connector body 1041. A metal positioning member 1044 is installed inside the connector 1042 through the elastic positioning member 1043, and multiple sets of metal positioning members 1044 are provided. A conductor cable 400 is provided on the inner side of each set of metal positioning members 1044.
[0025] In the above embodiments, the design of the side connector 1042 of the male connector 1041 allows for the internal assembly and fixation of each set of metal positioning members 1044 via elastic positioning members 1043. This assembly and fixation of the conductor cable 400 portion located inside the metal positioning members 1044 ensures that the conductivity of the main cable 40 and the male connector conductor 102 is not affected when the main cable 40 is pulled during subsequent laying. Simultaneously, the assembly and fixation of multiple sets of elastic positioning members 1043 and conductor cables 400 is automatically completed by compression and fixation during the assembly of the male connector shell 101 and the male connector 1041, making assembly more convenient. Furthermore, each set of conductor cables 400 is installed inside each set of metal positioning members 1044, with a gap between them and the male connector 1041, ensuring sufficient space for heat dissipation during conductor cable conductivity.
[0026] In this embodiment, the top of the elastic positioning member 1043 abuts against the inner wall of the male connector housing 101, and the inner side abuts against the conductor cable 400. The elastic positioning member 1043 is provided with a quick-release part 1045 on one side of the conductor cable 400. When disassembly and maintenance are required in the future, a tool can be extended into the quick-release part 1045 and the elastic positioning member 1043 can be pushed to release the compression and fixation of the metal positioning member 1044.
[0027] In the adjustable high-speed cable assembly connector structure of the present invention, multiple sets of conductive pins 103 can be inserted into the interior of the conductor connection assembly 80 during conduction to achieve conductive connection with the conductor connection assembly 80. The design of the male connector sealing seat 105 allows for the assembly and fixation of the main cable 40 that passes through its inner side, and it is securely installed inside the male connector housing 101.
[0028] For details, please refer to the following: Figure 4The outer assembly component 30 includes an external thread 301 and an outer assembly block 302. The external thread 301 is provided in two sets. One set of external threads 301 is provided on the top of the male connector housing 101, and the other set of external threads 301 is provided on the outside of the outer protective component 60. The outer threads of the two sets of external threads 301 are connected to the outer assembly block 302, which is located on the outside of the connection between the male connector housing 101 and the outer protective component 60.
[0029] In the adjustable high-speed cable assembly connector structure of the present invention, the outer assembly block 302 can rotate and move outside the external thread 301. When the outer assembly block 302 moves to the outside of the connection between the male connector housing 101 and the outer protective component 60, the firmness and stability of the conductive connection between the male connector housing 101 and the outer protective component 60 can be further improved (through threaded connection).
[0030] For details, please refer to the following: Figure 9 and Figure 10 The outer protective assembly 60 includes a top protective shell 601, with a set of external threads 301 on the outer side of the top protective shell 601, a conductor connection assembly 80 inside the top protective shell 601, and a bottom protective shell 602 threadedly connected to the inner wall of the top protective shell 601. A secondary cable 50 is installed on the inner side of the bottom protective shell 602 through an inner assembly assembly 70. A female sealing seat 603 is threadedly connected to the inner bottom of the bottom protective shell 602, and two sets of secondary cables 50 are installed through it. The inner assembly assembly 70 is provided on the side of the female sealing seat 603.
[0031] In this embodiment, the inner wall of the top protective shell 601 is provided with multiple sets of inner grooves 6011. All sets of inner grooves 6011 are located on the outside of the conductor connection assembly 80. The multiple sets of inner grooves 6011 match the plug 1021. Through the design of the inner grooves 6011, it is ensured that when the male shell 101 and the top protective shell 601 are connected, the multiple sets of conductive pins 103 can be directly inserted into the interior of the conductor connection assembly 80, without misalignment, thus reducing the degree and probability of damage to the conductive pins 103.
[0032] In the adjustable high-speed cable assembly connector structure of the present invention, the conductor connection assembly 80 provided inside the top protective housing 601 can be assembled and positioned by the bottom protective housing 602 connected by its bottom thread, and the female sealing seat 603 connected by the bottom thread of the bottom protective housing 602 seals and positions the assembled secondary cable 50, reducing the probability of external fog or water entering the conductor connection assembly 80 and improving the safety after assembly.
[0033] For details, please refer to the following: Figure 10The internal assembly 70 includes an inner protrusion 701, a metal sleeve 702, and a rubber assembly ring 703. The inner protrusion 701 is installed on the inner wall of the bottom protective shell 602, and there are two sets of inner protrusions 701. The metal sleeve 702 located inside the bottom protective shell 602 is disposed between the two sets of inner protrusions 701. Two sets of rubber assembly rings 703 are disposed on the inner side of the metal sleeve 702. Two sets of auxiliary cables 50 are passed through the inner side of the two sets of rubber assembly rings 703. The conductor cable 400 of the auxiliary cables 50 extends to the outer side of the metal sleeve 702.
[0034] In the adjustable high-speed cable assembly connector structure of the present invention, the inner protrusion 701 is designed to assemble and fix the metal sleeve 702 provided on its side, ensuring that the position of the metal sleeve 702 will not shift after assembly. The two sets of rubber mounting rings 703 provided inside the metal sleeve 702 can assemble and fix the two sets of auxiliary cables 50 that pass through it, ensuring that they do not interfere with each other and guaranteeing the stability and firmness of the two sets of auxiliary cables 50 when electrically connected to the conductor connection assembly 80.
[0035] For details, please refer to the following: Figure 11 and Figure 12 The conductor connection assembly 80 includes an inner collar 801, which is installed inside the top protective housing 601 and has a female conductor 802 on its inner side. Multiple sets of conductive sockets 803 are opened on one side of the female conductor 802, and conductive pins 103 are electrically connected to the inner side of the conductive sockets 803. The inner collar 801 is located on the outer side of the bottom protective housing 602. A threaded assembly component 804 is located on the other side of the female conductor 802 and has multiple sets of conductor cables 400 installed and fixed inside it. The threaded assembly component 804 is located on the side of two sets of auxiliary cables 50 and has a gap between it and the auxiliary cables 50.
[0036] In this embodiment, the threaded assembly component 804 includes a female connector 8041, which is installed on the other side of the female conductor 802 and has multiple sets of side conductive grooves 8042 inside. An internal mating block 8043 is installed inside the side conductive groove 8042, and a conductor cable 400 is assembled and fixed inside the internal mating block 8043 through a set of threaded plugs 8045. An external mating block 8044 is electrically connected to the side of the female connector 8041 and is located on the side of the internal mating block 8043. The conductor cable 400 is assembled and fixed inside the external mating block 8044 through another set of threaded plugs 8045.
[0037] In the above embodiment, multiple sets of conductor cables 400 installed inside the two sets of auxiliary cables 50 can be assembled into the outer docking block 8044 and the inner docking block 8043 respectively. Then, the conductor cables 400 inside each set of outer docking blocks 8044 and inner docking blocks 8043 can be assembled and fixed inside the outer docking blocks 8044 and inner docking blocks 8043 via threaded plugs 8045. This reduces the risk of the conductor cables 400 loosening or falling off during subsequent laying of the auxiliary cables 50, improving the stability and firmness of the auxiliary cable 50 assembly after completion. Furthermore, the design of the positions of the outer docking blocks 8044 and inner docking blocks 8043 ensures that the multiple sets of conductor cables 400 will not entangle or knot during assembly, further enhancing the safety of the conductive connection.
[0038] In the adjustable high-speed cable assembly connector structure of the present invention, the power transmitted to the inside of the female conductor 802 is transmitted to the inside of the multiple sets of conductor cables 400 connected at the bottom, realizing the power transmission operation. The design of the inner sleeve 801 can protect the female conductor 802 located inside it, thereby reducing the probability of collision damage to the female conductor 802 and improving safety. Example 2
[0039] For details, please refer to the following: Figure 13 and Figure 14 In this design, the outer surface of the metal positioning component 1044 is provided with multiple side recesses 90. An inner elastic positioning arm 901 extending to the inner side of the metal positioning component 1044 is elastically connected inside the side recesses 90. An outer elastic positioning arm 902 is rotatably connected inside the inner elastic positioning arm 901. The outer elastic positioning arm 902 extends to the outer side of the metal positioning component 1044. An oblique connecting positioning arm 903 is elastically connected at the center of the side of the outer elastic positioning arm 902. The oblique connecting positioning arm 903 is movably connected inside the embedded groove 904, which is located inside the inner elastic positioning arm 901.
[0040] In the adjustable high-speed cable assembly connector structure of the present invention, when the metal positioning member 1044 is installed inside the plug interface 1042, the resulting compressive force will compress the outer elastic positioning arm 902 in contact with it; when the conductor cable 400 is installed inside the metal positioning member 1044, it will compress the inner elastic positioning arm 901. At this time, through the design of the outer elastic positioning arm 902 being connected to the inner elastic positioning arm 901 by the oblique connecting positioning arm 903, the positions of the inner elastic positioning arm 901 and the outer elastic positioning arm 902 can be constrained and positioned separately, further limiting the position of the conductor cable 400 and avoiding the problem of the conductor cable 400 shifting during actual use.
[0041] It should be noted that when assembling the conductor cable 400, the inner elastic positioning arm 901 radially compresses the conductor cable 400, tightly gripping conductor cables of different thicknesses without gaps, and providing cushioning and fixation. Simultaneously, the inner elastic positioning arm 901 and the outer elastic positioning arm 902 can automatically adjust the clamping force according to the actual diameter of the conductor cable 400, filling gaps at the connection points and preventing the conductor cable 400 from loosening or shifting axially. Furthermore, the compressive force is distributed in a ring shape, avoiding excessive local pressure on the conductor cable 400 that could lead to insulation deformation or conductor damage.
[0042] Therefore, any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in this invention, based on the technical solution and inventive concept of this invention, should be covered within the protection scope of this invention.
Claims
1. An adjustable high-speed cable assembly connector structure, comprising a male cable connector (10), a female cable connector (20), an external assembly component (30), a main cable (40), and two sets of auxiliary cables (50), characterized in that: The male cable connector (10) is electrically connected to the side of the female cable connector (20) and extends into the interior of the female cable connector (20). An external assembly component (30) is provided on the outside of the connection between the male cable connector (10) and the female cable connector (20). The male cable connector (10) has a main cable (40) extending to the outside installed inside. The male cable connector (10) and the main cable (40) are electrically connected. The female cable connector (20) has a secondary cable (50) extending to the outside installed inside. The female cable connector (20) and two sets of secondary cables (50) are electrically connected. The main cable (40) and the secondary cables (50) have multiple sets of conductor cables (400) inside. The cable connector (20) includes: An outer protective assembly (60) is mounted on the side of the cable connector (10) via an outer mounting assembly (30). An inner mounting assembly (70) is provided at the bottom of the outer protective assembly (60), and two sets of auxiliary cables (50) are mounted and fixed on the inner side of the inner mounting assembly (70). Conductor connection assembly (80) is installed on the inner top of the outer protective assembly (60) and located on the side of the outer protective assembly (60). One side of the conductor connection assembly (80) is electrically connected to two sets of auxiliary cables (50), and the other side of the conductor connection assembly (80) is electrically connected to a cable connector (10).
2. The adjustable high-speed cable assembly connector structure according to claim 1, characterized in that: The cable connector (10) includes: A male connector housing (101) has a male connector conductor (102) installed inside it. Multiple sets of conductive pins (103) are installed on one side of the inside of the male connector conductor (102). These conductive pins (103) extend into the interior of the conductor connection assembly (80) and are electrically connected to the conductor connection assembly (80). Multiple sets of connectors (1021) are provided on the outside of the male connector conductor (102), extending into the inside of the outer protective assembly (60). The outer side of the male head shell (101) is fitted with an outer protective component (60) via an outer assembly component (30). A quick-release connector assembly (104) is installed on the other side of the male conductor (102), and multiple sets of conductor cables (400) of the main cable (40) are fixedly mounted on its inner side. The conductor cables (400) are electrically connected to the male conductor (102). Male connector sealing seat (105) is threaded to the inner bottom of the male connector housing (101) and the main cable (40) is installed inside it. The main cable (40) is fixed to the inner side of the male connector sealing seat (105) by a rubber layer.
3. The adjustable high-speed cable assembly connector structure according to claim 2, characterized in that: The quick-release connector assembly (104) includes: Male connector (1041) is installed inside the male connector housing (101) and located on the side of the male connector conductor (102). Multiple sets of connectors (1042) are provided inside the male connector (1041). Among them, an elastic positioning member (1043) is provided on the outside of the plug interface (1042), and the elastic positioning member (1043) is installed on the side of the male plug body (1041); A metal positioning element (1044) is installed inside the plug interface (1042) by an elastic positioning element (1043), and multiple sets of the metal positioning elements (1044) are provided, with a conductor cable (400) provided on the inner side of each set of the metal positioning elements (1044).
4. The adjustable high-speed cable assembly connector structure according to claim 3, characterized in that: The top of the elastic positioning member (1043) abuts against the inner wall of the male connector housing (101), and the inner side abuts against the conductor cable (400). The elastic positioning member (1043) is provided with a quick-release part (1045) on one side of the conductor cable (400).
5. The adjustable high-speed cable assembly connector structure according to claim 4, characterized in that: The external assembly component (30) includes an external thread (301) and an external assembly block (302). The external threads (301) are provided in two sets. One set of external threads (301) is located on the top of the male connector housing (101), and the other set of external threads (301) is located on the outside of the outer protective assembly (60). Among them, the outer threads of the two sets of external threads (301) are connected to an outer assembly block (302), which is located on the outside of the connection between the male housing (101) and the outer protective component (60).
6. The adjustable high-speed cable assembly connector structure according to claim 5, characterized in that: The outer protective component (60) includes: A top protective housing (601) is provided with a set of external threads (301) on its outer side, and a conductor connection assembly (80) is provided inside the top protective housing (601). A bottom protective housing (602) is threadedly connected to the inner wall of the top protective housing (601). The inner side of the bottom protective housing (602) is equipped with a secondary cable (50) via an internal assembly component (70). The female head sealing seat (603) is threaded to the inner bottom of the bottom protective shell (602) and has two sets of auxiliary cables (50) running through it. The side of the female head sealing seat (603) is provided with an internal assembly component (70).
7. The adjustable high-speed cable assembly connector structure according to claim 6, characterized in that: The inner wall of the top protective shell (601) has multiple sets of inner grooves (6011), all of which are located on the outer side of the conductor connection assembly (80). Among them, multiple sets of the inner grooves (6011) and the plugs (1021) are matched.
8. The adjustable high-speed cable assembly connector structure according to claim 6, characterized in that: The inner assembly component (70) includes an inner protrusion (701), a metal sleeve (702), and a rubber assembly ring (703). The inner protrusion (701) is installed on the inner wall of the bottom protective shell (602), and two sets of the inner protrusion (701) are provided. A metal sleeve (702) located inside the bottom protective shell (602) is provided between the two sets of inner protrusions (701). The inner side of the metal sleeve (702) is provided with two sets of rubber assembly rings (703), and the inner side of the two sets of rubber assembly rings (703) is provided with two sets of auxiliary cables (50), and the conductor cable (400) of the auxiliary cable (50) extends to the outer side of the metal sleeve (702).
9. The adjustable high-speed cable assembly connector structure according to claim 6, characterized in that: The conductor connection assembly (80) includes: An inner collar (801) is installed on the inner side of the top protective shell (601), and a female conductor (802) is provided on the inner side. Multiple sets of conductive sockets (803) are opened on one side of the female conductor (802), and the conductive pins (103) are electrically connected to the inner side of the conductive sockets (803). The inner collar (801) is disposed on the outside of the bottom protective shell (602); A threaded assembly component (804) is disposed on the other side of the female conductor (802) and multiple sets of conductor cables (400) are assembled and fixed inside it. The threaded assembly component (804) is located on the side of two sets of auxiliary cables (50) and has a gap between it and the auxiliary cables (50).
10. The adjustable high-speed cable assembly connector structure according to claim 9, characterized in that: The threaded assembly component (804) includes: A female connector (8041) is installed on the other side of the female conductor (802) and has multiple sets of side conductive grooves (8042) inside. An internal mating block (8043) is installed inside the side conductive groove (8042). The internal docking block (8043) is equipped with a conductor cable (400) through a set of threaded plugs (8045). An external connector (8044) is electrically connected to the side of the female connector (8041) and located on the side of the internal connector (8043). The conductor cable (400) is assembled and fixed inside the external connector (8044) by another set of threaded plugs (8045).
Citation Information
Patent Citations
Power supply connector with cable
CN118017282A