Multidirectional rotation anti-interference embedded socket

By setting a rotatable socket module on the embedded socket and using the male axis interface and the female axis interface to achieve flexible rotation between the modules, the problems of low space utilization and inconvenient plug-in and unplugging of traditional sockets are solved, and the practicality and user experience of the socket are improved, ensuring the stability of power transmission.

CN223245984UActive Publication Date: 2025-08-19BAIEN (HUIZHOU) ELECTRICITY IND CO LTD
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Patent Information

Application Number
CN202422059104.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-23
Publication Date
2025-08-19
Estimated Expiration
2034-08-23

AI Technical Summary

Technical Problem

The traditional embedded socket has a fixed direction, which is inconvenient to plug and unplug when using different types of plugs. Multiple plugs or power adapters are easily blocked when used at the same time, and the space utilization rate is low, and it is inconvenient to plug and unplug.

Method used

A multi-directional rotation anti-interference embedded socket is designed. By setting up multiple rotatable socket modules on the embedded mount, and using the male axis interface and the female axis interface to achieve flexible rotation between adjacent modules, the socket module can be rotated independently, adjust the direction of the socket to avoid mutual obstruction between the plugs.

Benefits of technology

It improves the space utilization rate and plug-in and unplug convenience of sockets, enhances the user experience, ensures the continuity and reliability of power transmission, and avoids the risk of failure caused by loose cables or poor contact.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a multidirectional rotation anti-interference embedded socket, which relates to the technical field of sockets and comprises an embedded mounting seat and a plurality of socket modules arranged along the length direction of the embedded mounting seat. Each socket module comprises a module shell, one end of the module shell is provided with an interface panel, the side surface of the module shell is provided with a rotating shaft assembly, the rotating shaft assembly is arranged far away from the interface panel, the rotating shaft assembly comprises a revolution rotating shaft interface and a female rotating shaft interface which are oppositely arranged, and adjacent socket modules are rotatably connected through the revolution rotating shaft interface and the female rotating shaft interface; the embedded mounting seat is provided with a plug-in column and a plug-in port, the plug-in column is rotatably connected with the female rotating shaft port, and the plug-in port is rotatably connected with the revolution rotating shaft port. According to the utility model, the plurality of rotatable socket modules are arranged on the embedded mounting seat, and rotation between adjacent modules is realized by using the revolution shaft interface and the female shaft interface, so that the direction of the socket modules can be adjusted according to actual requirements, mutual blocking between plugs is avoided, and various types of plugs are convenient to plug and unplug.
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Description

Technical Field

[0001] The utility model relates to the technical field of circuit boards, in particular to a multi-directional rotation anti-interference embedded socket. Background Art

[0002] With the development of science and technology and the improvement of people's living standards, the number of household appliances and digital products continues to increase. Traditional sockets have gradually exposed some problems during use. Traditional embedded sockets are fixed in direction. When different types of plugs are needed, it is very inconvenient to plug and unplug appliances, and even conversion plugs need to be used, posing a safety hazard.

[0003] With the development of fast-charging technology, the size of power adapters has also increased. Traditional fixed socket panel designs lack flexibility. When multiple large plugs or power adapters are used simultaneously, they easily block each other, resulting in wasted space and even preventing all of them from being inserted. Furthermore, because the sockets are fixed in position, users need to exert considerable force when plugging and unplugging certain unusually shaped or large plugs, and may even scrape adjacent plugs, affecting the user experience.

[0004] Therefore, it is necessary to improve the existing embedded socket to overcome the defects of the prior art. Utility Model Content

[0005] In order to overcome the problems existing in the related art, the purpose of the present invention is to provide a multi-directional rotating anti-interference embedded socket to solve the problem of insufficient flexibility in the existing technology and the problem of multiple plugs or power adapters blocking each other when used at the same time.

[0006] A multi-directional rotation anti-interference embedded socket, comprising:

[0007] An embedded mounting seat and a plurality of socket modules arranged along the length direction of the embedded mounting seat;

[0008] The socket module includes a module housing, one end of which is provided with an interface panel, a side surface of the module housing is provided with a shaft assembly, the shaft assembly is arranged away from the interface panel, the shaft assembly includes a male shaft interface and a female shaft interface which are arranged opposite to each other, and adjacent socket modules are rotatably connected via the male shaft interface and the female shaft interface;

[0009] The embedded mounting seat is provided with a plug-in column and a plug-in interface, the plug-in column is rotatably connected to the female rotating shaft interface, and the plug-in interface is rotatably connected to the male rotating shaft interface.

[0010] By placing multiple rotatable socket modules on a recessed mounting base and utilizing male and female shaft interfaces to enable flexible rotation between adjacent modules, this effectively addresses the issues of low space utilization and inconvenient plugging and unplugging associated with traditional fixed sockets. Each socket module can rotate independently, adjusting the orientation of the sockets to suit actual usage, preventing plugs from blocking each other and making it easier for users to plug in and out of various types, thus improving the socket's practicality and user experience.

[0011] Preferably, the module housing includes a first housing and a second housing, the first housing is rotatably connected to the second housing, the interface panel is provided on the first housing, and the shaft assembly is provided on the second housing.

[0012] By dividing the module housing into a first and second housing, and placing the interface panel and hinge assembly in separate housings, the module's flexible rotation is achieved, while the overall design of the socket is compact. Placing the interface panel in the first housing maintains the jack's stable position, facilitating plugging and unplugging. Placing the hinge assembly in the second housing effectively prevents rotation from affecting the interface panel and plug, improving connection stability and security.

[0013] Preferably, the male shaft interface is electrically connected to the female shaft interface, and the plug-in column or the plug-in interface is electrically connected to the male shaft interface or the female shaft interface.

[0014] By electrically connecting the male and female shaft interfaces, the plug posts, and the plug interface, continuous and reliable power transmission is achieved. Leveraging the structural characteristics of the shaft assembly, the power transmission path is integrated into the socket, eliminating exposed wire connections. This not only creates a simple and aesthetically pleasing design, but also improves safety and reduces the risk of failures caused by loose cables or poor contact.

[0015] Preferably, the rotating shaft assembly also includes a first power ring and a first power contact, and the first power ring and the first power contact are respectively arranged on the end face of the male shaft interface or the female shaft interface, and the first power ring and the first power contact are both electrically connected to the interface panel.

[0016] By providing a first power ring and first power contact on the shaft assembly and electrically connecting them to the interface panel, the power transmission path is further optimized, improving the efficiency and stability of power transmission. The first power ring and first power contact are respectively located on the end face of the male shaft interface or the female shaft interface, enabling close contact with corresponding components of adjacent modules, ensuring continuous power transmission, reducing energy loss, and extending the life of the socket.

[0017] Preferably, the rotating shaft assembly also includes a second electrical contact and a second electrical ring, the second electrical contact is arranged on the side wall of the female rotating shaft interface, the second electrical ring is arranged on the side wall of the male rotating shaft interface, and a wiring groove is also provided on the end face of the male rotating shaft interface, and the wiring groove is arranged along the axial direction of the male rotating shaft interface. A terminal is also provided on the end face of the female rotating shaft interface, and the wiring groove is sleeved on the terminal, and the wiring groove is electrically connected to the terminal.

[0018] By providing a second electrical contact and second electrical ring on the male and female shaft interfaces, and utilizing wiring slots and terminals to achieve a rotational connection, a more reliable connection method for power transmission is provided. This effectively prevents wire entanglement or pulling caused by socket module rotation, ensuring stable power transmission and maintaining a good electrical connection even during frequent rotation, thus improving the safety and reliability of the socket.

[0019] Preferably, the embedded mounting seat includes a seat body and a fixed eave extending outward from the seat body, the inner wall of the seat body is rectangular, and the plug-in column and the plug-in port are respectively arranged on the surfaces of the wide sides of both sides of the seat body.

[0020] The rectangular interior of the housing provides ample space for the socket modules, while the retaining brackets securely fasten them within the mounting base, preventing them from loosening or falling out. The placement of the plug posts and sockets on the wide sides of the housing simplifies installation and ensures reliable power transmission.

[0021] Preferably, the outer diameter of the plug-in column is equal to the inner diameter of the female rotating shaft interface, the inner diameter of the plug-in interface is equal to the outer diameter of the rotating shaft interface, the plug-in interface is electrically connected to the rotating shaft interface, and the embedded mounting seat includes a power cord, which is connected to the plug-in interface.

[0022] Preferably, a first wire threading hole is provided on both the male shaft interface and the female shaft interface, and the first wire threading hole connects the inside and the outside of the module shell. The interface panels of adjacent socket modules are connected by wires, and the wires pass through the first wire threading hole.

[0023] By setting a first wire threading hole on the male shaft interface and the female shaft interface, and using wires to connect the interface panels of adjacent socket modules, flexible wiring and power transmission between modules are achieved, which facilitates the installation and disassembly of the socket modules. At the same time, the reliability of the connection is ensured, damage caused by pulling or bending of the cables is avoided, and the maintenance and replacement efficiency of the sockets is improved.

[0024] Preferably, a second threading hole is provided on the end surface of the plug post, and a power cord is further provided on the embedded mounting seat. The power cord passes through the second threading hole to be electrically connected to the socket module.

[0025] By setting a second wire threading hole on the end face of the plug column and using the power cord to pass through the hole to electrically connect to the socket module, a more convenient and safe channel is provided for the introduction of the power cord, avoiding exposure of the power cord outside the socket, reducing safety hazards, and at the same time simplifying the installation process and improving installation efficiency.

[0026] Preferably, the plug-in column and the plug-in port are arranged at the center of the inner wall of the base body, and the width of the inner wall of the base body is greater than twice the height of the socket module.

[0027] Placing the plug post and socket at the center of the socket's inner wall maximizes internal space and provides greater freedom of rotation for the socket module. Designing the socket's inner wall width to be greater than twice the socket module's height effectively prevents collisions or jamming during module rotation, ensuring smooth rotation.

[0028] The beneficial effects of the utility model are:

[0029] The utility model provides a multi-directional rotatable, anti-interference embedded socket. The multi-directional rotatable, anti-interference embedded socket comprises an embedded mounting base and multiple socket modules arranged along the length of the embedded mounting base. Each module includes a module housing for accommodating the internal structure of the socket module; an interface panel is located at one end of the module housing, and the interface panel is provided with actual sockets for connecting electrical devices. A rotating shaft assembly is disposed on the side of the module housing, away from the interface panel, and is connected to adjacent socket modules via a male and female rotating shaft interface, enabling independent rotation between the modules. By arranging multiple rotatable socket modules on the embedded mounting base and utilizing the male and female rotating shaft interfaces to enable flexible rotation between adjacent modules, the socket effectively addresses the problems of low space utilization and inconvenient plugging and unplugging that exist in traditional fixed sockets. Each socket module can rotate independently, thereby adjusting the socket direction according to actual usage needs, avoiding mutual obstruction between plugs, and facilitating easy plugging and unplugging of various types of plugs, thereby improving the socket's practicality and user experience. BRIEF DESCRIPTION OF THE DRAWINGS

[0030] Figure 1 is a schematic diagram of the embedded socket provided in Example 1 of the present application;

[0031] Figure 2 is a schematic diagram of the embedded mounting base provided in Example 1 of the present application;

[0032] Figure 3This is a schematic diagram of the revolution axis interface side of the socket module provided in Example 1 of the present application;

[0033] Figure 4 This is a schematic diagram of the female shaft interface side of the socket module provided in Example 1 of the present application;

[0034] Figure 5 is a schematic diagram of the embedded socket provided in Example 2 of the present application;

[0035] Figure 6 is a schematic diagram of the embedded mounting base provided in Example 2 of the present application;

[0036] Figure 7 This is a schematic diagram of the revolution axis interface side of the socket module provided in Example 2 of the present application;

[0037] Figure 8 This is a schematic diagram of the female shaft interface side of the socket module provided in Example 2 of the present application;

[0038] Figure 9 is a schematic diagram of the embedded socket provided in Example 3 of the present application;

[0039] Figure 10 is a schematic diagram of the embedded mounting base provided in Example 3 of the present application;

[0040] Figure 11 Schematic diagram of the revolution axis interface side of the socket module provided in Example 3 of the present application;

[0041] Figure 12 This is a schematic diagram of the female shaft interface side of the socket module provided in Example 3 of the present application.

[0042] Reference numerals:

[0043] 100, embedded mounting base; 110, plug-in column; 111, second threading hole; 120, plug interface; 121, power terminal; 130, base; 140, fixed eaves; 150, power cord;

[0044] 200, socket module; 210, module housing; 211, first housing; 212, second housing; 220, interface panel; 230, shaft assembly; 231, male shaft interface; 232, female shaft interface; 233, first power connection ring; 234, first power contact; 235, second power contact; 236, second power connection ring; 237, wiring slot; 238, terminal; 239, first wire threading hole. DETAILED DESCRIPTION

[0045] The following describes preferred embodiments of the present invention in more detail with reference to the accompanying drawings. Although preferred embodiments of the present invention are shown in the accompanying drawings, it should be understood that the present invention can be implemented in various forms and should not be limited by the embodiments described herein. Rather, these embodiments are provided to make the present invention more thorough and complete, and to fully convey the scope of the present invention to those skilled in the art.

[0046] Example 1

[0047] like Figure 1-Figure 4 As shown, this embodiment provides a multi-directional rotatable anti-interference embedded socket, which includes:

[0048] An embedded mounting base 100 and a plurality of socket modules 200 arranged along the length direction of the embedded mounting base 100;

[0049] The socket module 200 includes a module housing 210, one end of which is provided with an interface panel 220, and a side surface of the module housing 210 is provided with a shaft assembly 230, which is arranged away from the interface panel 220. The shaft assembly 230 includes a male shaft interface 231 and a female shaft interface 232 that are arranged opposite to each other. Adjacent socket modules 200 are rotatably connected through the male shaft interface 231 and the female shaft interface 232.

[0050] The embedded mounting seat 100 is provided with a plug post 110 and a plug interface 120 . The plug post 110 is rotatably connected to the female rotating shaft interface 232 , and the plug interface 120 is rotatably connected to the male rotating shaft interface 231 .

[0051] Specifically, the embedded mounting base 100 is elongated and designed to be embedded in a wall, desktop, or other panel. The interior of the embedded mounting base 100 is hollow, accommodating the socket module 200 and providing wiring connections. The top surface of the mounting base is open, forming a mounting slot for mounting the socket module 200. The mounting slot is provided with a plug-in post 110 and a plug-in port 120 on either side.

[0052] More specifically, the embedded mounting base 100 may be made of flame-retardant ABS plastic, or other insulating, high-temperature-resistant, and high-strength materials such as PC and nylon.

[0053] More specifically, the number and type of the socket modules 200 can be adjusted according to actual needs, and different types and numbers of sockets can be selected, such as two-hole sockets, USB interfaces, network interfaces, etc. In this embodiment, there are 7 socket modules 200, and the seven socket modules 200 are rotatably connected through the male shaft interface 231 and the female shaft interface 232.

[0054] More specifically, the shaft assembly 230 may be a snap-fit structure, a magnetic adsorption structure, or a bearing rotation structure.

[0055] Furthermore, a first threading hole 239 is provided on the male shaft interface 231 and the female shaft interface 232. The first threading hole 239 connects the inside of the module shell 210 with the outside. The interface panels 220 of adjacent socket modules 200 are connected by wires, and the wires pass through the first threading hole 239.

[0056] Specifically, each socket module 200 has a first threading hole 239 formed on the male shaft interface 231 and the female shaft interface 232 for threading connecting wires. The interface panels 220 of adjacent socket modules 200 are connected in series via wires, which pass through the first threading holes 239 and into the module housing 210.

[0057] Furthermore, a second threading hole 111 is formed on the end surface of the plug interface 120 , and a power cord 150 is further provided on the embedded mounting seat 100 . The power cord 150 passes through the second threading hole 111 and is electrically connected to the socket module 200 .

[0058] Specifically, the external power line 150 passes through the second wire hole 111 of the plug interface 120 and is connected to each socket module 200 .

[0059] The multi-directional, anti-interference embedded socket provided in this embodiment flexibly integrates multiple socket modules 200 into a single embedded mounting base 100 and utilizes a male shaft interface 231 and a female shaft interface 232 to enable independent rotation between the modules. This effectively addresses the issues of low space utilization and inconvenient plugging and unplugging common in traditional fixed sockets. The design of the first threading hole 239 and the second threading hole 111 facilitates internal wiring between the socket modules 200 and the insertion of the external power cable 150, simplifying the installation process while ensuring reliable and secure connections.

[0060] Example 2

[0061] like Figure 5-Figure 8 As shown, this embodiment provides a multi-directional rotatable anti-interference embedded socket, which includes:

[0062] An embedded mounting base 100 and a plurality of socket modules 200 arranged along the length direction of the embedded mounting base 100;

[0063] The socket module 200 includes a module housing 210, one end of which is provided with an interface panel 220, and a side surface of the module housing 210 is provided with a shaft assembly 230, which is arranged away from the interface panel 220. The shaft assembly 230 includes a male shaft interface 231 and a female shaft interface 232 that are arranged opposite to each other. Adjacent socket modules 200 are rotatably connected through the male shaft interface 231 and the female shaft interface 232.

[0064] The embedded mounting seat 100 is provided with a plug post 110 and a plug interface 120 . The plug post 110 is rotatably connected to the female rotating shaft interface 232 , and the plug interface 120 is rotatably connected to the male rotating shaft interface 231 .

[0065] Specifically, a plug post 110 and a plug interface 120 are respectively provided on both sides of the mounting slot. The plug post 110 is cylindrical, and the plug interface 120 is cylindrical, and is electrically connected to the rotation axis interface 231 of the socket module 200. In this embodiment, the socket module 200 is provided with six.

[0066] Furthermore, the module housing 210 includes a first housing 211 and a second housing 212 , the first housing 211 and the second housing 212 are rotatably connected, the interface panel 220 is disposed on the first housing 211 , and the shaft assembly 230 is disposed on the second housing 212 .

[0067] Specifically, a hollow cylindrical rotating shaft extends from the center of the second shell 212 toward the first shell 211 . A circular rotating hole is opened on the first shell 211 , and the rotating hole is rotatably connected to the cylindrical rotating shaft.

[0068] More specifically, the axis of the rotating shaft assembly 230 is parallel to the end surface of the interface panel 220 , and the module housing 210 is rectangular at one end of the interface panel 220 and cylindrical at the other end.

[0069] Furthermore, the male shaft interface 231 is electrically connected to the female shaft interface 232 , and the plug-in column 110 or the plug-in interface 120 is electrically connected to the male shaft interface 231 or the female shaft interface 232 .

[0070] Specifically, in this embodiment, the plug interface 120 is electrically connected to the revolving shaft interface 231. Electrical connection refers to the connection between various components through conductive materials to form a current path.

[0071] Specifically, the rotating shaft assembly 230 also includes a first power ring 233 and a first power contact 234. The first power ring 233 is arranged on the end face of the male rotating shaft interface 231, and the first power contact 234 is arranged on the end face of the female rotating shaft interface 232. The first power ring 233 and the first power contact 234 are both electrically connected to the interface panel 220.

[0072] More specifically, the inner end surface of the plug interface 120 is provided with a power terminal 121 for connecting the external power line 150 and the socket module 200 . The power terminal 121 is electrically connected to the first power ring 233 on the rotary shaft interface 231 .

[0073] More specifically, the first power ring 233 is annular and is used to electrically contact the first power contact 234 or the power terminal 121. The first power contact 234 and the power terminal 121 are point-shaped and are used to electrically contact the first power contact 234.

[0074] More specifically, three first power connection rings 233 are provided on the male shaft interface 231, and the radius of the three first connection rings gradually increases. Three first power connection contacts 234 are provided on the female shaft interface 232 corresponding to the three first power connection rings 233. The three first power connection contacts 234 correspond to the neutral wire, the ground wire and the live wire from the inside to the outside, and similarly, three power supply terminals 121 are also provided accordingly.

[0075] More specifically, the first power connection ring 233 and the first power connection contact 234 may adopt different contact modes, such as spring contacts, sliding wires, etc., to ensure reliable electrical connection.

[0076] Furthermore, the embedded mounting seat 100 includes a seat body 130 and a fixed eave 140 extending outward from the seat body 130. The inner wall of the seat body 130 is rectangular, and the plug-in column 110 and the plug-in port 120 are respectively arranged on the surfaces of the wide sides of the seat body 130.

[0077] Specifically, the outer diameter of the plug column 110 is equal to the inner diameter of the female shaft interface 232, the inner diameter of the plug interface 120 is equal to the outer diameter of the male shaft interface 231, the plug interface 120 is electrically connected to the male shaft interface 231, and the embedded mounting seat 100 includes a power cord 150, and the power cord 150 is connected to the plug interface 120.

[0078] The multi-directional, anti-interference embedded socket provided in this embodiment utilizes the two-stage structure of the module housing 210, the rotating shaft design, and the branching structure of the power ring and power contacts to achieve flexible rotation and stable power transmission of the socket module 200. This solves the problems of low space utilization and inconvenient plugging and unplugging associated with traditional fixed sockets, while also improving electrical safety and reliability. The interface panel 220 of each socket module 200 can rotate independently, allowing users to flexibly adjust the direction of the socket according to actual usage needs and plug type, preventing interference between adjacent plugs. This is particularly suitable for use in scenarios where space is limited or when multiple large plugs need to be used simultaneously.

[0079] Example 3

[0080] like Figures 9-12 As shown, this embodiment provides a multi-directional rotatable anti-interference embedded socket, which includes:

[0081] An embedded mounting base 100 and a plurality of socket modules 200 arranged along the length direction of the embedded mounting base 100;

[0082] The socket module 200 includes a module housing 210, one end of which is provided with an interface panel 220, and a side surface of the module housing 210 is provided with a shaft assembly 230, which is arranged away from the interface panel 220. The shaft assembly 230 includes a male shaft interface 231 and a female shaft interface 232 that are arranged opposite to each other. Adjacent socket modules 200 are rotatably connected through the male shaft interface 231 and the female shaft interface 232.

[0083] The embedded mounting seat 100 is provided with a plug post 110 and a plug interface 120 . The plug post 110 is rotatably connected to the female rotating shaft interface 232 , and the plug interface 120 is rotatably connected to the male rotating shaft interface 231 .

[0084] Specifically, the module housing 210 includes a first housing 211 and a second housing 212 . The first housing 211 is rotatably connected to the second housing 212 . The interface panel 220 is disposed on the first housing 211 , and the shaft assembly 230 is disposed on the second housing 212 .

[0085] Furthermore, the male shaft interface 231 is electrically connected to the female shaft interface 232 , and the plug-in column 110 or the plug-in interface 120 is electrically connected to the male shaft interface 231 or the female shaft interface 232 .

[0086] In this embodiment, the plug post 110 is electrically connected to the female shaft interface 232 .

[0087] Specifically, the shaft assembly 230 also includes a second electrical contact 235 and a second electrical ring 236. The second electrical contact 235 is arranged on the side wall of the female shaft interface 232, and the second electrical ring 236 is arranged on the side wall of the male shaft interface 231. A wiring groove 237 is also provided on the end face of the male shaft interface 231. The wiring groove 237 is arranged along the axial direction of the male shaft interface 231. A terminal 238 is also provided on the end face of the female shaft interface 232. The wiring groove 237 is sleeved on the terminal 238, and the wiring groove 237 is electrically connected to the terminal 238.

[0088] Specifically, the outer diameter of the plug column 110 is equal to the inner diameter of the female shaft interface 232, the inner diameter of the plug interface 120 is equal to the outer diameter of the male shaft interface 231, the plug interface 120 is electrically connected to the male shaft interface 231, and the embedded mounting seat 100 includes a power cord 150, and the power cord 150 is connected to the plug interface 120.

[0089] More specifically, the terminal 238 and the terminal slot 237 can be connected through a conductive sheet or a spring contact. In this embodiment, there is a spring contact in the terminal slot 237 and a conductive track is provided on the terminal 238.

[0090] Furthermore, the embedded mounting seat 100 includes a seat body 130 and a fixed eave 140 extending outward from the seat body 130. The inner wall of the seat body 130 is rectangular, and the plug-in column 110 and the plug-in port 120 are respectively arranged on the surfaces of the wide sides of the seat body 130.

[0091] Specifically, the plug-in column 110 is substantially the same as the rotary shaft interface 231 . The plug-in column 110 is also provided with a wiring slot 237 . The wiring slot 237 is also provided with a spring contact. The side of the plug-in column 110 is also provided with a second electrical connection ring 236 .

[0092] More specifically, the plug post 110 and the plug port 120 are disposed at the center of the inner wall of the base body 130 , and the width of the inner wall of the base body 130 is greater than twice the height of the socket module 200 .

[0093] In this embodiment, the inner wall width of the base body 130 is 2.5 times the height of the socket module 200, which provides a larger space for the rotation of the socket module 200, avoids mutual interference between modules, and improves the flexibility of rotation.

[0094] The multi-directional, anti-interference embedded socket of this embodiment is designed to effectively address the problems of low space utilization and inconvenient plugging and unplugging in traditional fixed sockets by providing multiple rotatable socket modules 200 on an embedded mounting base 100 and utilizing a male shaft interface 231 and a female shaft interface 232 to achieve flexible rotation between adjacent modules. Each socket module 200 can rotate independently, thereby adjusting the direction of the socket according to actual usage needs, avoiding mutual obstruction between plugs, and facilitating users to easily plug and unplug various types of plugs, thereby improving the practicality of the socket and user experience. By providing a second power contact 235, a second power ring 236, a wiring slot 237, a terminal 238, and a spring contact structure, the stability and reliability of power transmission are ensured, and a good electrical connection can be maintained even in the case of frequent rotation. The central layout of the plug post 110 and the plug interface 120 ensures the flexibility and stability of the module rotation.

[0095] Unless otherwise specifically stated, the relative arrangement, numerical expression and numerical value of the parts and steps set forth in these embodiments do not limit the scope of the application. In all examples shown and discussed here, any specific value should be interpreted as merely exemplary, rather than as a restriction. Therefore, other examples of exemplary embodiments can have different values. It should be noted that: similar reference numerals and letters represent similar items in the accompanying drawings below, and therefore, once a certain item is defined in an accompanying drawing, it does not need to be further discussed in the accompanying drawings subsequently.

[0096] In addition, it should be noted that the use of terms such as "first" and "second" for limitation is only for the convenience of distinction. Unless otherwise stated, the above terms have no special meaning and therefore cannot be understood as limiting the scope of protection of this application.

[0097] The above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. Those skilled in the art will readily appreciate that the present invention is susceptible to various modifications and variations. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention.

Claims

1. A multi-directional rotating anti-interference embedded socket, characterized in that: include: An embedded mounting seat (100) and a plurality of socket modules (200) arranged along the length direction of the embedded mounting seat (100); The socket module (200) comprises a module housing (210), one end of the module housing (210) is provided with an interface panel (220), a side surface of the module housing (210) is provided with a rotating shaft assembly (230), the rotating shaft assembly (230) is arranged away from the interface panel (220), the rotating shaft assembly (230) comprises a male rotating shaft interface (231) and a female rotating shaft interface (232) arranged opposite to each other, and adjacent socket modules (200) are rotatably connected via the male rotating shaft interface (231) and the female rotating shaft interface (232); The embedded mounting seat (100) is provided with a plug-in column (110) and a plug-in interface (120); the plug-in column (110) is rotatably connected to the female rotating shaft interface (232); and the plug-in interface (120) is rotatably connected to the male rotating shaft interface (231).

2. The multi-directional rotation anti-interference embedded socket according to claim 1, characterized in that: The module housing (210) comprises a first housing (211) and a second housing (212), wherein the first housing (211) and the second housing (212) are rotatably connected, the interface panel (220) is provided on the first housing (211), and the rotating shaft assembly (230) is provided on the second housing (212).

3. The multi-directional rotation anti-interference embedded socket according to claim 1 or 2, characterized in that: The male rotation shaft interface (231) is electrically connected to the female rotation shaft interface (232), and the plug-in column (110) or the plug-in interface (120) is electrically connected to the male rotation shaft interface (231) or the female rotation shaft interface (232).

4. The multi-directional rotation anti-interference embedded socket according to claim 3, characterized in that: The rotating shaft assembly (230) further includes a first power connection ring (233) and a first power connection contact (234), wherein the first power connection ring (233) and the first power connection contact (234) are respectively arranged on the end surface of the male rotating shaft interface (231) or the female rotating shaft interface (232), and the first power connection ring (233) and the first power connection contact (234) are both electrically connected to the interface panel (220).

5. The multi-directional rotatable anti-interference embedded socket according to claim 3, characterized in that: The rotating shaft assembly (230) further includes a second electrical contact (235) and a second electrical ring (236), wherein the second electrical contact (235) is arranged on the side wall of the female rotating shaft interface (232), and the second electrical ring (236) is arranged on the side wall of the male rotating shaft interface (231). A wiring groove (237) is further provided on the end surface of the male rotating shaft interface (231), and the wiring groove (237) is arranged along the axial direction of the male rotating shaft interface (231). A terminal (238) is further provided on the end surface of the female rotating shaft interface (232), and the wiring groove (237) is sleeved on the terminal (238), and the wiring groove (237) is electrically connected to the terminal (238).

6. The multi-directional rotation anti-interference embedded socket according to claim 4 or 5, characterized in that: The embedded mounting seat (100) comprises a seat body (130) and a fixed eave (140) extending outwardly from the seat body (130); the inner wall of the seat body (130) is rectangular; the plug-in column (110) and the plug-in port (120) are respectively arranged on the surfaces of the wide sides of both sides of the seat body (130).

7. The multi-directional rotatable anti-interference embedded socket according to claim 6, characterized in that: The outer diameter of the plug post (110) is equal to the inner diameter of the female rotating shaft interface (232), the inner diameter of the plug interface (120) is equal to the outer diameter of the rotating shaft interface (231), the plug interface (120) is electrically connected to the rotating shaft interface (231), and the embedded mounting seat (100) includes a power cord (150), and the power cord (150) is connected to the plug interface (120).

8. The multi-directional rotation anti-interference embedded socket according to claim 1 or 2, characterized in that: A first threading hole (239) is provided on both the male shaft interface (231) and the female shaft interface (232), and the first threading hole (239) connects the inside of the module housing (210) with the outside. The interface panels (220) of adjacent socket modules (200) are connected via a wire, and the wire passes through the first threading hole (239).

9. The multi-directional rotatable anti-interference embedded socket according to claim 8, characterized in that: A second threading hole (111) is provided on the end surface of the plug interface (120), and a power line (150) is also provided on the embedded mounting seat (100). The power line (150) passes through the second threading hole (111) and is electrically connected to the socket module (200).

10. The multi-directional rotatable anti-interference embedded socket according to claim 6, characterized in that: The plug-in column (110) and the plug-in port (120) are arranged at the center of the inner wall of the base (130), and the inner wall width of the base (130) is greater than twice the height of the socket module (200).