Embedded socket

By designing an openable embedded socket and a wireless charging module, the problems of limited functionality in traditional sockets and complexity in wireless charging are solved, realizing diversified functions and stability of the socket, and improving ease of use and adaptability.

CN224036702UActive Publication Date: 2026-03-24CIXI MINGYE COMMUNICATING & ELECTRONICS
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-21
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

Traditional desktop sockets have limited functionality and cannot meet the diverse needs of modern office environments. Furthermore, wireless charging designs are complex and the fixed socket orientation limits their convenience and applicability.

Method used

Design an embedded socket comprising a closable cover housing a wireless charging module, which is connected when the terminal block is fully closed with the cover. The socket unit is adjustable in orientation and is stably fixed by a rack and pinion structure, optimizing the wiring layout and power supply lines.

Benefits of technology

It improves the functionality and safety of the socket, simplifies the installation and maintenance process, enhances the practicality and adaptability of the socket, and meets the power interface needs of different usage scenarios.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of sockets, in particular to an embedded socket. The technical scheme is that the embedded socket comprises an embedded base provided with an opening, a socket unit arranged in the embedded base, and a box cover movably arranged on the opening of the embedded base. The box cover can be opened and closed through the opening of the embedded base and is used for opening or closing the opening. And a wireless charging module is embedded in the box cover. A wire holder is arranged in the embedded base, and the connector on the box cover is communicated with the wire holder only when the box cover completely covers the opening of the embedded base. The embedded socket has the advantages that the use safety is improved, the functional diversity is increased, the use convenience is improved, and the installation adaptability is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of socket, especially to an embedded socket. BACKGROUND

[0002] To maintain the neatness and beauty of the desktop and reduce safety hazards, desktop wire boxes are widely used in various office environments. These wire boxes integrate and hide various cables through the wire slots, effectively improving the neatness and safety of the desktop. However, the traditional desktop socket has relatively single function, usually only has basic power socket function, which cannot meet the growing diversification needs in modern office environment. With the rapid development and popularization of wireless charging technology, more and more electronic devices begin to support wireless charging function. This trend poses new challenges to traditional desktop sockets. Traditional sockets can only realize wireless charging function by connecting with independent wireless chargers, which not only increases the desktop space, but also cannot fully exert the advantages of wireless charging technology.

[0003] To solve this problem, some innovative designs have appeared in the market. For example, the Chinese patent with publication number CN108378551B proposes a desktop flip cover wire box with wireless charging function. The design includes a box body and a wire cover rotatably arranged on the box body, and the upper end edge of the box body extends outward to form a resting part to prevent the wire box from falling. There is a gap between the wire cover and the box body for the cable to pass through, and the wire cover also integrates a wireless charger and sets a corresponding wireless charging mark on the surface. However, this design still has some limitations. First of all, this scheme does not provide a specific power supply scheme for the wireless charger. The traditional method is to directly connect the wireless charger to the power supply, but in this flip cover design, in order to avoid interference with the wire when the wire cover is flipped, the wire usually needs to pass through the center of the wire cover's rotating shaft. This wiring method not only increases the complexity of installation, but also reduces the maintainability and flexibility of the product.

[0004] Another common problem is that the direction of the socket is fixed and cannot be adjusted according to user needs. This may cause inconvenience in some specific use scenarios, limiting the practicality and scope of application of the socket.

[0005] In view of the above problems, the existing technology needs to be improved. SUMMARY

[0006] To solve the above problems, the purpose of the utility model is to provide an embedded socket, which has the advantages of improving use safety, increasing functional diversity, improving use convenience and improving installation adaptability.

[0007] In order to achieve the above purpose, the utility model adopts the following technical scheme:

[0008] The utility model provides an embedded socket, technical solutions as follows: including the embedded base that is provided with the opening, and the socket unit that is arranged in the embedded base, and the box cover that is movably arranged on the opening of the embedded base, the box cover can be embedded in the opening of the embedded base and open and close, is used for opening or closing the opening, the wireless charging module is embedded in the box cover, the terminal is provided with the terminal in the embedded base, only when the box cover is completely covered on the opening of the embedded base, the terminal on the box cover is connected with the terminal.

[0009] Further, the utility model further provides that the terminal is arranged on the side or the lower end surface of the box cover, and the terminal on the side or the lower end surface of the box cover is connected with the terminal when the box cover is completely covered on the opening of the embedded base.

[0010] Further, the utility model further provides that the terminal is connected with the socket unit.

[0011] Further, the utility model further provides that the socket unit is provided with the power taking port on the side close to the socket unit, and the power taking port of the socket unit is connected with the terminal through the cable.

[0012] Further, the utility model further provides that the box cover is rotatably arranged on the embedded base, or the box cover is movably arranged on the embedded base through the parallelogram mechanism, and when the box cover is completely covered on the opening of the embedded base, at least one side edge of the box cover and the edge of the base form the notch for the power line to pass through.

[0013] Further, the utility model further provides that the both ends of the socket unit are rotatably arranged on the two side walls of the embedded base below the opening, and the socket unit can adjust the orientation of the power taking panel relative to the embedded base.

[0014] Further, the utility model further provides that the two side walls of the embedded base below the opening are provided with the rotating disc, and the both ends of the socket unit are detachably connected on the rotating discs on the two sides.

[0015] Further, the utility model further provides that the two side walls of the embedded base below the opening are provided with the circular through hole, and the rotating disc is embedded in the circular through hole, one of the inner wall of the circular through hole and the edge of the rotating disc is provided with a plurality of positioning ports along the circumference, and the other is provided with the positioning block for clamping in the positioning port, and when the rotating disc rotates relative to the circular through hole, the positioning block is clamped in one of the positioning ports to realize the positioning.

[0016] Further, the inner side wall of the rotating disc is provided with two parallel sliding clamping strips, and elastic clamping hooks and stoppers are arranged on both sides of the sliding direction of the sliding clamping strips. The elastic clamping hooks, the stoppers and the sliding clamping strips on both sides thereof form a positioning area for the end of the socket unit. The end of the socket unit is provided with a guide protrusion matched with the sliding clamping strips. The end of the socket unit is pressed into the positioning area from the elastic clamping hooks, the guide protrusions on both sides are clamped into the sliding clamping strips, and the other two sides are pressed against the positioning by the elastic clamping hooks and the stoppers.

[0017] Further, the outer wall of the embedded base is provided with a rack, and a sliding groove is arranged on both sides of the rack. The inner side wall of the clamping seat is provided with a tooth portion, and a sliding strip is arranged on both sides of the tooth portion. The tooth portion can be engaged with the rack to fix the clamping seat on the side wall of the embedded base, and the sliding strip can be clamped into the sliding groove. The tooth portion on the inner side wall of the clamping seat cooperates with the rack on the two side walls of the embedded base to move the sliding strip in the sliding groove and position the longitudinal height of the clamping seat. The clamping seat is further provided with a pressing screw, and the end of the pressing screw passes through the upper end face of the clamping seat and is arranged on the upper and lower sides of the table hole with the outer edge of the embedded base, respectively, for fixing the base.

[0018] As can be seen from the above, the embedded socket provided by the application comprises an embedded base provided with an opening, a socket unit arranged in the embedded base, and a box cover movably arranged on the opening of the embedded base. The box cover can be embedded in or separated from the opening of the embedded base, for opening or closing the opening. A wireless charging module is embedded in the box cover. A wiring seat is arranged in the embedded base, and the connector on the box cover is connected with the wiring seat only when the box cover is completely covered on the opening of the embedded base. Through this design, the integration of the wireless charging function is realized, and the use safety is ensured. In addition, the adjustability of the socket unit and the diversified fixing mechanism further improve the practicality and adaptability of the product, and have the advantages of improving the use safety, increasing the functional diversity, improving the use convenience and improving the installation adaptability. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 The box cover of the embedded socket provided by the application is in a closed state.

[0020] Figure 2 The box cover of the embedded socket provided by the application is in an open state.

[0021] Figure 3 The bottom view of the embedded socket provided by the application.

[0022] Figure 4 The angle adjustment of the socket unit is shown.

[0023] Figure 5 Schematic view of the side wall of the embedded base.

[0024] Figure 6 Schematic view of the assembly of the rotary disc and the embedded base.

[0025] Figure 7 Schematic view of the structure of the clamping seat. DETAILED DESCRIPTION

[0026] The embodiments of the present application are described in detail below, examples of which are shown in the drawings, wherein the same or similar notations represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary, and are intended to explain the present application, and cannot be understood as a limitation of the present application.

[0027] In the description of the present application, it is understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "clockwise", "counterclockwise" and the like are based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the devices or elements indicated must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation of the present application.

[0028] In addition, the terms "first", "second" are only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined with "first", "second" can explicitly or implicitly include one or more of the features. In the description of the present application, unless otherwise specified, the meaning of "a plurality of" is two or more, unless otherwise explicitly limited.

[0029] In the present application, unless otherwise explicitly specified and limited, the terms "mounting", "connection", "connection", "fixing" and the like should be understood in a broad sense, for example, it can be fixedly connected, or it can be detachably connected, or it can be integrally connected. It can be mechanically connected, or it can be electrically connected. It can be directly connected, or it can be indirectly connected through an intermediate medium. It can be the communication inside two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0030] In the utility model, unless another definite provision and limitation, first feature is "on" or "under" second feature can include that first and second features are in direct contact, also can include that first and second features are not in direct contact but are in contact through other feature between them. Moreover, first feature "on", "above" and "upper surface of" second feature includes that first feature is directly above and obliquely above second feature, or only indicates that horizontal height of first feature is higher than second feature. First feature "under", "below" and "under surface of" second feature includes that first feature is directly below and obliquely below second feature, or only indicates that horizontal height of first feature is less than second feature.

[0031] As Figures 1-7 shown, the embodiment relates to a kind of embedded socket, including the embedded base 1 being provided with opening 10, and the socket unit 2 being arranged in embedded base 1, and the box cover 3 being movably arranged on the opening 10 of embedded base 1.

[0032] As Figure 3 and 7As shown, the outer wall of the embedded base 1 is provided with a rack 11, and a sliding groove 12 is arranged on both sides of the rack 11. The inner side wall of the clamping seat 4 is provided with a toothed portion 41, and a sliding strip 42 is arranged on both sides of the toothed portion 41. The toothed portion 41 can be engaged with the rack 11 to fix the clamping seat 4 on the side wall of the embedded base 1, and the sliding strip 42 can be clamped into the sliding groove 12. The toothed portion 41 on the inner side wall of the clamping seat 4 cooperates with the rack 11 on the two side walls of the embedded base 1 to move the sliding strip 42 in the sliding groove 12, thereby positioning the longitudinal height of the clamping seat 4. Specifically, the engagement design of the rack 11 and the toothed portion 41 allows the clamping seat 4 to be firmly fixed on the side wall of the embedded base 1, preventing the clamping seat 4 from loosening or falling off during use. The cooperation design of the sliding strip 42 and the sliding groove 12 allows the clamping seat 4 to be adjusted in height along the longitudinal direction on the embedded base 1, thereby adapting to different thicknesses of the desktop or installation environment. As a preferred embodiment, the engagement part of the rack 11 and the toothed portion 41 can adopt a helical tooth design to increase the engagement area and friction, thereby improving the fixing effect. The cooperation part of the sliding groove 12 and the sliding strip 42 can be provided with a limiting block to prevent the sliding strip 42 from moving excessively in the sliding groove 12, ensuring the accuracy and stability of the clamping seat 4 during height adjustment. The end of the compression screw can be designed as a taper or with anti-skid lines to increase the contact area and friction with the desk hole, further improving the fixing effect. Thus, through the engagement of the rack 11 and the toothed portion 41, the cooperation of the sliding strip 42 and the sliding groove 12, and the arrangement of the compression screw, the firm fixation and height positioning between the embedded base 1 and the clamping seat 4 are realized. Compared with the prior art, this technical solution not only simplifies the installation and adjustment process, but also improves the stability and reliability of the structure, effectively solving the fixation and height positioning problems between the embedded base 1 and the clamping seat 4.

[0033] Further, the clamping seat 4 is also provided with a compression screw 43, the end of which passes through the upper end face of the clamping seat 4 and is respectively located on the upper and lower sides of the desk hole with the outer edge of the embedded base 1 for fixing the base. The above-mentioned clamping seat 4 realizes height positioning based on the cooperation of the rack 11 and the toothed portion 41, but there is a minimum adjustment unit between the rack 11 and the toothed portion 41, i.e. it is not stepless adjustment, which may cause the clamping seat 4 to not fit and have a gap. Therefore, the arrangement of the compression screw 43 further enhances the fixing effect between the clamping seat 4 and the embedded base 1, ensuring the stability of the entire structure during use.

[0034] As Figure 1 and 2As shown, the box cover 3 can be embedded in the opening 10 of the embedded base 1 for opening or closing the opening 10. The wireless charging module 5 is embedded in the box cover 3. The terminal 30 on the box cover 3 is connected to the terminal seat 6 only when the box cover 3 is completely closed on the opening 10 of the embedded base 1. In the above scheme, the opening 10 of the embedded base 1 is designed to allow the box cover 3 to open and close. This design not only facilitates user operation, but also effectively protects the socket unit 2 and the wireless charging module 5. The wireless charging module 5 embedded in the box cover 3 is connected to the terminal seat 6 through the complete closure of the box cover 3. This design ensures the safety and effectiveness of wireless charging. The position and structure of the terminal seat 6 are designed so that the terminal 30 can only be connected to the terminal seat 6 when the box cover 3 is completely closed. This design avoids misoperation and unnecessary power consumption. The technical scheme of the present application controls the connection between the wireless charging module 5 and the terminal seat 6 through the opening and closing of the box cover 3, ensuring that wireless charging can only be performed when the box cover 3 is completely closed, thereby avoiding misoperation and unnecessary power consumption. Compared with the prior art, the present application not only improves the safety and effectiveness of wireless charging, but also optimizes the management and layout of the wires, thereby enhancing the practicality of the product and the user experience.

[0035] Further, the present application also provides that the terminal seat 6 is arranged inside the opening 10 of the embedded base 1, and the terminal 30 is arranged on the side or lower end surface of the box cover 3. When the box cover 3 is completely closed on the opening 10 of the embedded base 1, the terminal 30 on the side or lower end surface of the box cover 3 is connected to the terminal seat 6. Specifically, the terminal seat 6 can be designed as a spring contact piece or an elastic metal sheet to ensure reliable contact with the terminal 30. The terminal 30 can be in the form of a metal contact or conductive rubber to enhance the stability of the electrical connection. As a preferred embodiment, the terminal seat 6 can be provided with multiple contact points to increase the contact area and improve the reliability of the electrical connection. In addition, the materials of the terminal seat 6 and the terminal 30 can be selected to be metals with good electrical conductivity and corrosion resistance, such as copper or gold-plated materials, to prolong the service life. Thus, the technical scheme achieves the electrical connection between the box cover 3 and the embedded base 1 by arranging the terminal seat 6 inside the opening 10 of the embedded base 1 and arranging the terminal 30 on the side or lower end surface of the box cover 3. When the box cover 3 is completely closed, the terminal 30 is connected to the terminal seat 6, ensuring the reliability of the electrical connection. This design not only simplifies the connection structure, but also improves the stability and safety of the connection, avoiding the problem of poor electrical connection caused by incomplete closure of the box cover 3. Compared with the prior art, this scheme significantly improves the reliability and stability of the electrical connection by optimizing the arrangement of the terminal seat 6 and the terminal 30, while simplifying the installation and maintenance process.

[0036] Further, as shown in FIG. 4, the box cover 3 can be designed as a detachable cover. In this case, the opening 10 of the embedded base 1 is designed to allow the box cover 3 to be completely closed on the opening 10 of the embedded base 1. The terminal seat 6 is arranged inside the opening 10 of the embedded base 1, and the terminal 30 is arranged on the side or lower end surface of the box cover 3. When the box cover 3 is completely closed on the opening 10 of the embedded base 1, the terminal 30 on the side or lower end surface of the box cover 3 is connected to the terminal seat 6. Specifically, the terminal seat 6 can be designed as a spring contact piece or an elastic metal sheet to ensure reliable contact with the terminal 30. The terminal 30 can be in the form of a metal contact or conductive rubber to enhance the stability of the electrical connection. As a preferred embodiment, the terminal seat 6 can be provided with multiple contact points to increase the contact area and improve the reliability of the electrical connection. In addition, the materials of the terminal seat 6 and the terminal 30 can be selected to be metals with good electrical conductivity and corrosion resistance, such as copper or gold-plated materials, to prolong the service life. Thus, the technical scheme achieves the electrical connection between the box cover 3 and the embedded base 1 by arranging the terminal seat 6 inside the opening 10 of the embedded base 1 and arranging the terminal 30 on the side or lower end surface of the box cover 3. When the box cover 3 is completely closed, the terminal 30 is connected to the terminal seat 6, ensuring the reliability of the electrical connection. This design not only simplifies the connection structure, but also improves the stability and safety of the connection, avoiding the problem of poor electrical connection caused by incomplete closure of the box cover 3. Compared with the prior art, this scheme significantly improves the reliability and stability of the electrical connection by optimizing the arrangement of the terminal seat 6 and the terminal 30, while simplifying the installation and maintenance process. Figure 3As shown, the terminal block 6 is connected to the socket unit 2. The design of the terminal block 6 connected to the socket unit 2 ensures that power can be transmitted directly from the socket unit 2 to the terminal block 6. This design simplifies the circuit structure by directly connecting the terminal block 6 with the socket unit 2, improving the efficiency and reliability of power transmission. In a specific scheme, the present application also proposes that the socket unit 2 is provided with a power taking port near one side of the socket unit 2, and the power taking port of the socket unit 2 is connected with the terminal block 6 through the cable 7. Specifically, the power taking port is designed near one side of the socket unit 2, which makes the position of the power taking port more reasonable and facilitates the connection with the terminal block 6. The power taking port of the socket unit 2 is connected with the terminal block 6 through the cable 7, which ensures the stable transmission of power and simplifies the connection process, improving the convenience of installation and maintenance. This design not only solves the problem of inconvenient connection between the power taking port of the traditional socket unit 2 and the terminal block 6, but also improves the efficiency and reliability of the entire embedded socket. As a preferred embodiment, the power taking port can be designed to be detachable for replacement or maintenance. In addition, the cable 7 can be made of flexible material to meet the needs of different installation environments. Further, the connection mode of the cable 7 can adopt quick plug design to improve the installation efficiency. Thus, the technical scheme of the present application effectively solves the technical problem of inconvenient connection between the power taking port of the socket unit 2 and the terminal block 6 by optimizing the position and connection mode of the power taking port. Compared with the prior art, the technical scheme of the present application has higher installation convenience and maintenance efficiency, while ensuring the stability of power transmission. This design not only improves the overall performance of the embedded socket, but also provides users with a more convenient and reliable user experience.

[0037] As Figure 1 and 2As shown, the box cover 3 is rotatably arranged on the embedded base 1, and when the box cover 3 is completely closed on the opening 10 of the embedded base 1, a slot 300 is formed between at least one side edge of the box cover 3 and the edge of the base, through which the power cord can pass. In another embodiment, the box cover 3 is arranged on the embedded base 1 by a parallelogram mechanism, and the scheme of the parallelogram mechanism can refer to the scheme described in the Chinese utility model patent with publication number "CN204858086U". Specifically, the box cover 3 is arranged on the embedded base 1 by rotation or a parallelogram mechanism, which allows the box cover 3 to remain stable during opening and closing, and when completely closed, a slot 300 is formed between the box cover 3 and the edge of the base, through which the power cord can pass. This design not only solves the problem of the power cord passing through, but also ensures the flexibility and stability of the opening and closing of the box cover 3. Thus, the technical scheme of the present application solves the problem of the power cord passing through during the opening and closing of the box cover 3 by rotating or arranging the box cover 3 by a parallelogram mechanism. Compared with the prior art, the technical scheme of the present application not only simplifies the wiring process of the power cord, but also improves the stability and flexibility of the opening and closing of the box cover 3, avoiding the problems of cumbersome wiring and inconvenient disassembly in the traditional scheme.

[0038] As shown, Figures 4-6 The two ends of the socket unit 2 are rotatably arranged on the two side walls of the embedded base 1 below the opening 10, and the socket unit 2 can adjust the orientation of the power taking panel relative to the embedded base 1. Specifically, the two ends of the socket unit 2 are rotatably arranged on the two side walls of the embedded base 1, so that the socket unit 2 can rotate relative to the base to adjust the orientation of the power taking panel. This design allows users to adjust the direction of the power taking panel of the socket unit 2 as needed, improving the flexibility and convenience of use. Through this rotatable arrangement, the socket unit 2 can be adjusted to the best position in different use scenarios to meet the user's demand for the direction of the power interface. Thus, the technical scheme of the present application achieves the adjustability of the orientation of the power taking panel by rotatably arranging the two ends of the socket unit 2 on the two side walls of the embedded base 1. This design not only solves the technical problem of the unadjustable orientation of the power taking panel of the socket unit 2 in the traditional embedded socket, but also improves the user's experience. Compared with the prior art, the technical scheme of the present application has higher flexibility and practicality, and can better meet the user's needs in different use scenarios.

[0039] As a preferred embodiment, the two ends of the socket unit 2 can be provided with rotating shafts, which are embedded in bearings on the two side walls of the embedded base 1, so that the socket unit 2 can rotate around the rotating shafts. Further, the rotating shafts can be designed with locking mechanisms, so that the socket unit 2 can be fixed after being adjusted to the desired angle, preventing accidental rotation during use. In addition, the power taking panel of the socket unit 2 can be designed to be detachable, making it convenient for users to replace different types of power taking panels according to different usage needs.

[0040] As shown in another embodiment, Figure 5 and 6 , rotating discs 13 are provided on the two side walls of the embedded base 1, and the two ends of the socket unit 2 are detachably connected to the rotating discs 13 on both sides. This design allows the socket unit 2 to rotate relative to the embedded base 1, thereby adjusting the orientation of the power taking panel to meet the user's demand for power taking in different directions. At the same time, the design of the rotating discs 13 allows the socket unit 2 to be easily detached and installed, facilitating maintenance and replacement of the socket unit 2 with different power taking panels. The provision of rotating discs 13 also ensures the stability of the socket unit 2 during rotation, avoiding problems such as loosening or deviation caused by rotation.

[0041] In a specific embodiment, the embedded base 1 below the opening 10 has circular through holes 14 on both sides of the sidewall, and the rotating disc 13 is embedded in the circular through hole 14. One of the inner wall of the circular through hole 14 and the edge of the rotating disc 13 is provided with a plurality of positioning ports 141 along the circumference, and the other is provided with a positioning block 131 for clamping into the positioning port 141. When the rotating disc 13 rotates relative to the circular through hole 14, it is positioned based on the positioning block 131 clamped into one of the positioning ports 141. Specifically, the inner wall of the circular through hole 14 and the edge of the rotating disc 13 are respectively provided with positioning ports 141 and positioning blocks 131, and the positioning block 131 is clamped into the positioning port 141, which realizes the precise positioning of the rotating disc 13 in the circular through hole 14. This design ensures that the rotating disc 13 can be stably stopped at the preset position during rotation, avoiding the problem of rotating in use after adjusting the orientation of the power panel of the socket unit 2. Through this structure, the rotation and positioning of the rotating disc 13 become more reliable and accurate, thereby improving the stability and use convenience of the entire embedded socket. As a preferred embodiment, the positioning port 141 can be designed as a groove or a hole, and the positioning block 131 can be a protrusion or an elastic buckle. The number and distribution of the positioning ports 141 can be adjusted according to actual needs to ensure that the rotating disc 13 can be precisely positioned at multiple angles. In addition, the material of the positioning block 131 can be selected to have good wear resistance and elasticity to enhance its service life and positioning effect. Thus, the technical scheme of the present application solves the problem of inaccurate positioning of the rotating disc 13 when rotating in the circular through hole 14 through the cooperation of the positioning port 141 and the positioning block 131. Compared with the prior art, this scheme not only improves the positioning accuracy of the rotating disc 13, but also simplifies the structure design, making the embedded socket more stable and reliable in use.

[0042] As Figure 5As shown, the inner side wall of the rotating disc 13 is provided with two parallel sliding clamping strips 132, and elastic clamping hooks 133 and stoppers 134 are arranged on both sides of the sliding direction of the sliding clamping strips 132. The elastic clamping hooks 133, the stoppers 134 and the sliding clamping strips 132 on both sides thereof form a positioning area for the end of the socket unit 2. The end of the socket unit 2 is provided with a guide protrusion 21 matched with the sliding clamping strip 132. The end of the socket unit 2 is pressed into the positioning area from the elastic clamping hook 133, the guide protrusions 21 on both sides are clamped into the sliding clamping strip 132, and the other two sides are pressed against the positioning by the elastic clamping hook 133 and the stopper 134. Specifically, the design of the sliding clamping strip 132 enables the end of the socket unit 2 to slide along the sliding clamping strip 132, thereby realizing the position adjustment of the socket unit 2. The arrangement of the elastic clamping hook 133 and the stopper 134 enables the socket unit 2 to be pressed tightly on the stopper 134 by the elastic force of the elastic clamping hook 133 after the socket unit 2 is adjusted to the appropriate position, thereby realizing the fixation of the socket unit 2. This design not only simplifies the installation and disassembly process of the socket unit 2, but also improves the stability and reliability of the socket unit 2 in the use process. Therefore, the technical scheme of the present application effectively solves the positioning and fixation problem of the socket unit 2 on the embedded base 1 through the combined design of the sliding clamping strip 132, the elastic clamping hook 133 and the stopper 134. Compared with the prior art, the technical scheme not only simplifies the installation and disassembly process of the socket unit 2, but also improves the stability and reliability of the socket unit 2 in the use process, and has significant practicability and innovation.

[0043] In the description of the present specification, the description of the terms "one embodiment", "some embodiments", "example", "specific example", or "some examples" and the like means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. In the present specification, the illustrative description of the above terms does not necessarily mean the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0044] Although the embodiments of the present application have been shown and described above, it should be understood that the above embodiments are exemplary and cannot be understood as limiting the present application, and those skilled in the art can make changes, modifications, replacements and variations to the above embodiments without departing from the principles and purposes of the present application within the scope of the present application.

Claims

1. An embedded socket, comprising an embedded base (1) having an opening (10), a socket unit (2) disposed within the embedded base (1), and a cover (3) movably disposed on the opening (10) of the embedded base (1); the cover (3) is openable and closable through the opening (10) of the embedded base (1) to open or close the opening (10); a wireless charging module (5) is embedded within the cover (3); characterized in that: The embedded base (1) is provided with a terminal block (6). The connector (30) on the cover (3) is connected to the terminal block (6) only when the cover (3) is completely covered on the opening (10) of the embedded base (1).

2. The recessed socket according to claim 1, characterized in that: The terminal block (6) is located inside the opening (10) of the embedded base (1), and the connector (30) is located on the side or lower end surface of the cover (3). When the cover (3) is completely covered on the opening (10) of the embedded base (1), the connector (30) on the side or lower end surface of the cover (3) is connected to the terminal block (6).

3. An embedded socket according to claim 2, characterized in that: The terminal block (6) is connected to the socket unit (2).

4. An embedded socket according to claim 3, characterized in that: The socket unit (2) has a power outlet on the side near the socket unit (2), and the power outlet of the socket unit (2) is connected to the terminal block (6) by a cable (7).

5. An embedded socket according to claim 1, characterized in that: The cover (3) is rotatably mounted on the embedded base (1), or the cover (3) is opened and closed on the embedded base (1) by a parallelogram mechanism; when the cover (3) is completely covered on the opening (10) of the embedded base (1), a slot (300) through which the power supply line passes is formed between at least one edge of the cover (3) and the edge of the base.

6. An embedded socket according to claim 1, characterized in that: The two ends of the socket unit (2) are rotatably disposed on the two side walls of the embedded base (1) below the opening (10), and the socket unit (2) can adjust the orientation of the power supply panel relative to the embedded base (1).

7. An embedded socket according to claim 6, characterized in that: Turntables (13) are provided on both sides of the embedded base (1) below the opening (10), and the two ends of the socket unit (2) are detachably connected to the turntables (13) on both sides.

8. An embedded socket according to claim 7, characterized in that: Circular through holes (14) are constructed on both sides of the embedded base (1) below the opening (10), and the turntable (13) is embedded in the circular through holes (14). The inner wall of the circular through hole (14) and the edge of the turntable (13) are provided with multiple positioning holes (141) along the circumferential direction on one side, and a positioning block (131) for engaging the positioning hole (141) is provided on the other side. When the turntable (13) rotates relative to the circular through hole (14), it is positioned by engaging the positioning block (131) into one of the positioning holes (141).

9. An embedded socket according to claim 7, characterized in that: The inner wall of the turntable (13) has two parallel sliding strips (132), and elastic hooks (133) and blocks (134) on both sides of the sliding strips (132) in the sliding direction. The positioning area of ​​the end of the positioning socket unit (2) is formed between the elastic hooks (133), the blocks (134) and the sliding strips (132) on both sides. The end of the socket unit (2) is provided with guide protrusions (21) that cooperate with the sliding strips (132). The end of the socket unit (2) is pressed into the positioning area from the elastic hooks (133), the guide protrusions (21) on both sides are inserted into the sliding strips (132), and the other two sides are pressed and positioned by the elastic hooks (133) and the blocks (134).

10. An embedded socket according to claim 1, characterized in that: The outer wall of the embedded base (1) is provided with a rack (11) and sliding grooves (12) on both sides of the rack (11); the inner wall of the clamping seat (4) is provided with a toothed part (41) and sliding strips (42) on both sides of the toothed part (41); the toothed part (41) can mesh with the rack (11) to fix the clamping seat (4) on the side wall of the embedded base (1), and the sliding strips (42) can be inserted into the sliding grooves (12). The teeth (41) on the inner sidewall of the clamping seat (4) cooperate with the racks (11) on the two sidewalls of the embedded base (1) to move the slide bar (42) in the slide groove (12) to position the longitudinal height of the clamping seat (4); the clamping seat (4) is also provided with a clamping screw (43), the end of the clamping screw (43) passes through the upper end face of the clamping seat (4) and is located on the upper and lower sides of the table hole of the outer edge of the embedded base (1) respectively to fix the base.

Citation Information

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