Embedded socket and box cover with embedded wireless charging module
By designing a cover with an embedded wireless charging module and using a combination of outer and inner shells, the problem of limited functionality in traditional desktop sockets and poor quality and complex structure in existing wireless charging designs is solved, achieving the effects of simplified installation, improved quality and charging efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-21
- Publication Date
- 2026-03-27
AI Technical Summary
Traditional desktop sockets have limited functionality and cannot meet the growing and diverse needs of modern office environments. Furthermore, existing wireless charging designs suffer from poor quality, complex structures, and high costs.
Design a box cover with an embedded wireless charging module. The box cover is made of metal and has an embedded wireless charging module. The charging panel is located in the top opening of the box cover. The inner shell is installed in the inner cavity of the box cover through the side opening. The end cap closes the other side opening, which simplifies the structure and improves the texture.
It features a simple structure, convenient installation, good heat dissipation, and long service life, meeting the aesthetic requirements of high-end office environments and improving the efficiency and safety of wireless charging.
Smart Images

Figure CN224053495U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of desktop socket, especially to a built-in socket and a box cover with a built-in wireless charging module. BACKGROUND
[0002] In order to keep the desktop neat and beautiful and reduce the security risks, 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 beauty of the desktop. However, the traditional desktop socket has relatively single function, usually only has the power socket function, which cannot meet the growing diversification needs in modern office environment.
[0003] With the rapid development and wide popularization of wireless charging technology, more and more electronic devices begin to support wireless charging function. This trend makes the limitations of traditional desktop socket more and more obvious. At present, to realize wireless charging, it is usually necessary to connect the wireless charger with the traditional desktop socket, and then charge the electrical equipment. This way not only increases the additional equipment and connection steps, but also cannot fully play the convenience and advantages of wireless charging technology.
[0004] In order to solve this problem, some desktop wire box products with integrated wireless charging function appear in the market. For example, the Chinese patent with publication number CN108378551B records a desktop flip cover wire box with wireless charging function. The wire box 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. The wire cover is provided with a wireless charger, and a wireless charging mark is provided on the surface corresponding to the wireless charger. The box body and the wire cover are left with a gap for the cable to pass through. However, this design still has some shortcomings. First of all, in order to avoid affecting the wireless charging effect, the upper cover and the lower cover of the wire cover must be made of non-metallic materials, which leads to poor overall texture of the product and cannot meet the aesthetic needs of high-end office environment. Secondly, the assembly of the upper cover and the lower cover makes the product structure more complex, increasing the production cost and maintenance difficulty.
[0005] In view of the above problems, the prior art needs to be improved. SUMMARY
[0006] In order to solve the above problems, the utility model aims at providing a built-in socket and a box cover with a built-in wireless charging module, which has the advantages of simple structure and convenient installation.
[0007] In order to achieve the above purpose, the utility model adopts the following technical scheme:
[0008] The utility model provides a box cover of inlaying wireless charging module, technical solutions are as follows: the box cover inlaying has wireless charging module. The box cover includes shell body and inner shell, and the shell body includes bottom plate and top plate, and the bottom plate and top plate form the shell cavity between each other, and the top plate constructs the top opening that communicates with the shell cavity, and the shell body constructs the side opening that communicates with the shell cavity on at least one side end face. The inner shell is loaded into the shell cavity from the side opening of the shell body, and the wireless charging module is embedded on the inner shell of the shell cavity, and the charging panel of wireless charging module is located in the top opening of the shell body.
[0009] Further, the application also proposes that the inner shell is provided with a positioning groove for positioning the wireless charging module. The lower end of the wireless charging module is positioned in the positioning groove of the inner shell.
[0010] Further, the application also proposes that the inside of the box cover is provided with a power supply for the wireless charging module or a connector for connecting an external power supply. The inner shell is provided with a charging circuit connected to the power supply or the connector, and the wireless charging module is connected to the power supply or the connector when embedded in the inside of the box cover.
[0011] Further, the application also proposes that the wireless charging module is embedded into the shell cavity from the top opening of the shell body as a whole.
[0012] Further, the application also proposes that the wireless charging module includes a wireless charging coil and a charging panel. During installation, the wireless charging coil is first embedded in the positioning groove of the inner shell and connected to the charging circuit, then the inner shell and the wireless charging coil thereon are loaded into the shell cavity from the side opening of the shell body, and finally the charging panel is fixed on the top opening of the shell body.
[0013] Further, the application also proposes that the edge of the charging panel is provided with a hook, and the hook of the charging panel is clamped on the edge of the top opening or the bottom plate of the wireless charging module when the charging panel is loaded from the top opening of the shell body.
[0014] Further, the application also proposes that the shell body is further provided with a light-transmitting through hole, and the inside of the box cover is further provided with an indicator light module connected to the power supply or the connector, and the light-emitting end of the indicator light module closes the light-transmitting through hole. The indicator light module emits light synchronously when the wireless charging module is powered on.
[0015] Further, the application also proposes that the shell body of the box cover is constructed as a metal shell.
[0016] Further, the application also provides that the box cover further comprises an end cover. The outer shell is provided with a side opening on both side end faces, which is communicated with the inner cavity of the shell. The inner shell is loaded into the inner cavity of the shell from the side opening of the outer shell, and the end cover is used to close the side opening on the other side of the outer shell. The end cover and the outer wall of the inner shell are provided with a rotating shaft or a rotating shaft hole.
[0017] Further, the application also provides an embedded socket, which 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 out of the opening of the embedded base, so as to open or close the opening. The box cover is the box cover described above.
[0018] As can be seen from the above, the application provides a box cover with an embedded wireless charging module and an embedded socket. The box cover is embedded with a wireless charging module. The box cover comprises an outer shell and an inner shell. The outer shell comprises a bottom plate and a top plate, and the bottom plate and the top plate form a shell cavity therebetween. The top plate is provided with a top opening communicated with the shell cavity. The outer shell is provided with a side opening communicated with the shell cavity on at least one side end face. The inner shell is loaded into the shell cavity from the side opening of the outer shell. The wireless charging module is embedded on the inner shell in the shell cavity, and the charging panel of the wireless charging module is located in the top opening of the outer shell. This design simplifies the overall structure by embedding the wireless charging module inside the box cover, which is convenient for installation and maintenance. At the same time, the combination design of the inner shell and the outer shell improves the heat dissipation effect and prolongs the service life of the wireless charging module. In addition, the outer shell can be made of metal material, which improves the overall quality of the product and meets the aesthetic needs of high-end office environment. Therefore,
[0019] The application has the advantages of simple structure, convenient installation, good heat dissipation effect, and long service life. BRIEF DESCRIPTION OF DRAWINGS
[0020] Fig. 1 FIG. 1 is a schematic view of a box cover with an embedded wireless charging module provided by the application.
[0021] Fig. 2 FIG. 2 is a schematic view of a wireless charging module installed from above the box cover.
[0022] Fig. 3 FIG. 3 is an exploded view of a box cover with an embedded wireless charging module provided by the application.
[0023] Fig. 4 FIG. 4 is a schematic view of a charging panel of an embedded wireless charging module installed from above.
[0024] Fig. 5 FIG. 5 is a schematic view of an embedded socket in Example 2. DETAILED DESCRIPTION
[0025] The embodiments of the present application are described below in detail, 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 reference to the drawings are exemplary and are intended to explain the present application, and cannot be understood as a limitation of the present application.
[0026] In the description of the present application, it is understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "lateral", "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.
[0027] In addition, the terms "first", "second" are only for descriptive purposes 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 stated, the meaning of "a plurality of" is two or more, unless otherwise explicitly limited.
[0028] In the present application, unless otherwise explicitly specified and limited, the terms "mounting", "connection", "connection", "fixing" and the like should be understood broadly, 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 between 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.
[0029] In the present application, unless otherwise explicitly specified and limited, the "upper" or "lower" of the first feature to the second feature can include the direct contact of the first and second features, or can include the contact of the first and second features through another feature between them. Moreover, the "upper", "upper" and "upper" of the first feature to the second feature include the vertical direction of the first feature above and obliquely above the second feature, or only indicate that the horizontal height of the first feature is higher than that of the second feature. The "below", "below" and "below" of the first feature to the second feature include the vertical direction of the first feature below and obliquely below the second feature, or only indicate that the horizontal height of the first feature is less than that of the second feature.
[0030] Example 1:
[0031] like Figs. 1-4 As shown, this embodiment proposes a cover for embedding a wireless charging module, with the cover 1 housing a wireless charging module 2. The cover 1 includes an outer shell 11 and an inner shell 12. The outer shell 11 includes a bottom plate 111 and a top plate 112, with an inner cavity 113 formed between the bottom plate 111 and the top plate 112. The top plate 112 has a top opening 114 communicating with the inner cavity 113. The outer shell 11 has a side opening 115 communicating with the inner cavity 113 on at least one side end face. The inner shell 12 is inserted into the inner cavity 113 through the side opening 115 of the outer shell 11. The wireless charging module 2 is embedded in the inner shell 12 within the inner cavity 113, and the charging panel of the wireless charging module 2 is located within the top opening 114 of the outer shell 11. The shape of the inner cavity of the outer shell 11 can be adjusted according to the size and shape of the wireless charging module 2 to ensure stable installation of the wireless charging module 2. The size and shape of the top opening 114 should match the charging panel so that the charging panel can be accurately embedded and fixed. The design of the side opening 115 allows the inner shell 12 to be easily inserted into the inner cavity 113 from one side of the outer shell 11, further simplifying the installation process. The technical solution of this application designs the cover 1 as a combination structure of the outer shell 11 and the inner shell 12. The outer shell 11 includes a bottom plate 111 and a top plate 112, forming the inner cavity 113. A top opening 114 is constructed on the top plate 112, and a side opening 115 is constructed on one end face of the outer shell 11. The inner shell 12 is inserted into the inner cavity 113 through the side opening 115, the wireless charging module 2 is embedded in the inner shell 12, and the charging panel is located in the top opening 114. This design simplifies the structure of the cover 1, making the installation of the wireless charging module 2 more convenient, while ensuring the accurate positioning of the charging panel and the charging effect. The combination structure of the outer shell 11 and the inner shell 12 not only improves the mechanical strength of the cover 1, but also facilitates the maintenance and replacement of the wireless charging module 2. Compared with existing technologies, the technical solution of this application has significant advantages in terms of structural simplification, ease of installation, and stability of use.
[0032] In a further aspect, the outer shell 11 of the box cover 1 is constructed as a metal shell, and the bottom plate 111 and the top plate 112 of the outer shell 11 are integrally formed. Specifically, the selection of the metal shell can include but is not limited to aluminum alloy, stainless steel, magnesium alloy and the like. These materials not only have good mechanical strength, but also can provide excellent electromagnetic shielding effect. For example, the aluminum alloy shell can be formed by pressure casting process, which can ensure the integrity and strength of the shell. The stainless steel shell can be manufactured by stamping process, which has high corrosion resistance and wear resistance. The magnesium alloy shell is suitable for application scenarios with strict weight requirements due to its light weight and high strength. In addition, the surface treatment of the metal shell can adopt anodizing, electroplating or spraying process to enhance its appearance and wear resistance. The present application solves the technical problem of material selection of the outer shell 11 of the conventional box cover 1 by constructing the outer shell 11 of the box cover 1 as a metal shell. The use of the metal shell not only improves the durability and strength of the box cover 1, but also increases the texture of the box cover 1, and enhances its impact resistance and wear resistance, thereby prolonging the service life of the box cover 1. In addition, the metal shell can also provide better electromagnetic shielding effect, reduce the electromagnetic interference that may be generated during wireless charging, and improve the efficiency and safety of wireless charging.
[0033] As Fig. 3As shown, the box cover 1 further comprises an end cover 19. The outer shell 11 is provided with side openings 115 on both side end faces, which are communicated with the shell inner cavity 113. The inner shell 12 is loaded into the shell inner cavity 113 through the side openings 115 of the outer shell 11, and the end cover 19 is used to close the side opening 115 on the other side of the outer shell 11. The outer wall of the end cover 19 and the inner shell 12 is provided with a rotating shaft or a rotating shaft hole 191. Specifically, the design of the end cover 19 enables the two side openings of the outer shell 11 to be effectively closed, thereby solving the problem of closing the two side openings of the outer shell 11. The inner shell 12 is loaded into the shell inner cavity 113 through the side openings 115, and the end cover 19 is used to close the opening on the other side, ensuring the installation and fixation of the inner shell 12. In addition, the outer wall of the end cover 19 and the inner shell 12 is provided with a rotating shaft or a rotating shaft hole 191, so that the inner shell 12 can be installed through the rotating shaft or the rotating shaft hole 191 after installation, thereby enabling the box cover 1 to be set on the socket in a hinged manner. This design not only simplifies the installation process of the inner shell 12, but also improves the overall structural strength and stability of the box cover 1. As a preferred embodiment, the end cover 19 can be fixed on the outer shell 11 by buckling or screwing, etc., to ensure its stability. The design of the rotating shaft or the rotating shaft hole 191 can be further optimized to an adjustable rotating shaft structure to adapt to inner shells 12 or outer shells 11 of different sizes. Thus, the technical scheme of the present application enables the inner shell 12 to be loaded into the shell inner cavity 113 from one side opening by constructing side openings 115 on both side end faces of the outer shell 11, and simultaneously closes the opening on the other side through the end cover 19, thereby solving the problem of closing the two side openings of the outer shell 11. In addition, the outer wall of the end cover 19 and the inner shell 12 is provided with a rotating shaft or a rotating shaft hole 191, so that the inner shell 12 can be installed through the rotating shaft or the rotating shaft hole 191 after installation, thereby enabling the box cover 1 to be set on the socket in a hinged manner. This design not only simplifies the installation process of the inner shell 12, but also improves the overall structural strength and stability of the box cover 1, and has higher practicality and innovation compared with the prior art.
[0034] As Figs. 1-4As shown, the inner housing 12 is provided with a positioning groove 121 for positioning the wireless charging module 2. The lower end of the wireless charging module 2 is positioned in the positioning groove 121 of the inner housing 12. The design of the positioning groove 121 can include various forms. For example, the positioning groove 121 can be a groove directly machined on the inner housing 12, which is matched in shape with the lower end of the wireless charging module 2 to ensure that the module can be firmly embedded therein. As a preferred embodiment, the depth and width of the positioning groove 121 can be accurately designed according to the size of the wireless charging module 2, thereby providing sufficient support force during installation to prevent displacement or loosening of the module during use. Thus, by positioning the lower end of the wireless charging module 2 in the positioning groove 121 of the inner housing 12, the positioning problem of the wireless charging module 2 in the inner housing 12 can be effectively solved. This design not only ensures the stable installation of the wireless charging module 2 inside the box cover 1, but also improves the stability and efficiency of the charging process. Compared with the prior art, the technical solution of the present application simplifies the installation process and reduces the displacement or loosening problem of the module during use, thereby improving the reliability and service life of the product.
[0035] The present application also provides that the inside of the box cover 1 is provided with a power supply for the wireless charging module 2 or a connector for connecting an external power supply. The inner housing 12 is provided with a charging circuit connected to the power supply or connector. When the wireless charging module 2 is embedded inside the box cover 1, the wireless charging module 2 is connected to the power supply or connector. The power supply can be an internal battery or a connector for connecting an external power supply, such as a USB interface or a DC interface or a contact connector. The charging circuit can be a conductor on a printed circuit board or a flexible circuit board. The connection between the wireless charging module 2 and the power supply or connector can be direct welding or detachable connection through a connector. As a preferred embodiment, the power supply uses an internal lithium battery, the charging circuit uses a flexible circuit board, and the wireless charging module 2 is connected to the power supply through a connector, which is convenient for replacement and maintenance of the module. Specifically, the technical solution of the present application solves the technical problem of power supply and connection of the wireless charging module 2 inside the box cover 1 in the following way: first, the inside of the box cover 1 is provided with a power supply or a connector for connecting an external power supply, which provides the necessary energy source for the wireless charging module 2. Second, the inner housing 12 is provided with a charging circuit, which is connected to the power supply or connector to ensure that energy can be effectively transmitted to the wireless charging module 2. Finally, when the wireless charging module 2 is embedded inside the box cover 1, it is connected to the power supply or connector to ensure that the wireless charging module 2 can work normally. These technical features cooperate with each other to ensure stable power supply and effective connection of the wireless charging module 2 inside the box cover 1.
[0036] Compared with the prior art, the application has the following advantages: first, by embedding the power supply or connector inside the box cover 1, the external power cord is avoided, the product appearance and use convenience are improved. Second, the inner shell 12 is used to arrange the charging circuit, which makes the circuit layout more reasonable, reduces electromagnetic interference, and improves the charging efficiency. Third, the communication mode of the wireless charging module 2 and the power supply or connector is flexible and diverse, and the optimal solution can be selected according to the actual demand, which improves the applicability and reliability of the product. Thus, the application effectively solves the technical problems of energy supply and connection of the wireless charging module 2 inside the box cover 1, and provides a new solution for the application of wireless charging technology in desktop devices.
[0037] In one of the implementable schemes, the wireless charging module 2 is embedded into the shell cavity 113 from the top opening 114 of the outer shell 11. Specifically, the wireless charging module 2 is directly embedded into the shell cavity 113 through the top opening 114, which makes the installation process of the module more convenient and avoids complex assembly steps. Among them, the size and shape of the top opening 114 can be adjusted according to the specific size of the wireless charging module 2 to ensure that the module can be smoothly embedded and fixed in the shell cavity 113. When the wireless charging module 2 is embedded in the shell cavity 113, it should be ensured that the wireless charging module 2 is connected with the charging circuit, which can be connected before embedding or directly connected during embedding. In addition, the edge of the top opening 114 can be designed with a guide structure, such as a slope or a chamfer, to further simplify the embedding process of the module. After the wireless charging module 2 is embedded in the shell cavity 113, it can be fixed by buckles, screws or other fixing devices to ensure its stability in the shell. For example, a positioning groove 121 can be provided at the bottom of the shell cavity 113, and the lower end of the wireless charging module 2 is embedded in the positioning groove 121, thereby preventing the module from moving in the shell. In addition, the edge of the top opening 114 can also be designed with a sealing structure, such as a rubber gasket or a sealant, to prevent dust or water from entering the shell cavity 113 and affecting the normal work of the wireless charging module 2. Thus, the technical scheme of the application solves the technical problem of how to embed the wireless charging module 2 into the shell cavity 113 from the top opening 114 of the outer shell 11. This design not only simplifies the installation process of the wireless charging module 2, but also improves the stability and reliability of the module in the shell.
[0038] In the above Fig. 4In another embodiment shown, the wireless charging module 2 comprises a wireless charging coil 21, a charging panel 22 and a bottom pad 23. During installation, the wireless charging coil 21 and the bottom pad 23 are first installed into the positioning groove 121 embedded in the inner shell 12 and connected with the charging circuit, then the inner shell 12 and the wireless charging coil 21 thereon are installed into the cavity 113 of the shell through the side opening 115 of the outer shell 11, and finally the charging panel 22 is fixed on the top opening 114 of the outer shell 11. Specifically, the wireless charging coil 21 is fixed on the inner shell 12 through the positioning groove 121 and connected with the charging circuit, ensuring the stability of power transmission. The inner shell 12 and the wireless charging coil 21 thereon are installed into the cavity 113 of the shell through the side opening 115 of the outer shell 11, ensuring the overall stability of the module. The charging panel 22 is fixed on the top opening 114 of the outer shell 11, ensuring the stability and charging efficiency of the charging panel 22. This step-by-step installation method not only simplifies the installation process, but also improves the stability and reliability of the wireless charging module 2. Thus, the technical scheme of the present application solves the problem of installation and fixation of the wireless charging module 2 inside the box cover 1 by dividing the wireless charging module 2 into two parts, the wireless charging coil 21 and the charging panel 22, and installing them separately. First, the wireless charging coil 21 is fixed on the inner shell 12 through the positioning groove 121 and connected with the charging circuit, ensuring the stability of power transmission. Second, the inner shell 12 and the wireless charging coil 21 thereon are installed into the cavity 113 of the shell through the side opening 115 of the outer shell 11, ensuring the overall stability of the module. Finally, the charging panel 22 is fixed on the top opening 114 of the outer shell 11, ensuring the stability and charging efficiency of the charging panel 22. This step-by-step installation method not only simplifies the installation process, but also improves the stability and reliability of the wireless charging module 2.
[0039] Further, the edge of the charging panel 22 is provided with a hook 221, and when the charging panel 22 is installed in the top opening 114 of the outer shell 11, the hook 221 of the charging panel 22 is clamped on the edge of the top opening 114 or the bottom pad 23 of the wireless charging module 2. Specifically, the hook 221 can be designed in various forms, for example, the hook 221 can be made of elastic material and has a certain elastic deformation capacity, so that it can be clamped on the edge of the top opening 114 or the bottom pad 23 of the wireless charging module 2 by elastic deformation during installation. As a preferred embodiment, the number of hooks 221 can be set to multiple, which are uniformly distributed on the edge of the charging panel 22 to enhance the overall stability. Thus, the technical scheme through the design of the hook 221 enables the charging panel 22 to be stably clamped on the edge of the top opening 114 of the outer shell 11 or the bottom pad 23 of the wireless charging module 2 during installation, thereby effectively solving the technical problem of unstable installation of the charging panel 22 in the top opening 114 of the outer shell 11. Compared with the prior art, the scheme not only simplifies the installation process, but also improves the stability and safety of the charging panel 22 during use, avoiding the problem of loose or falling of the charging panel 22 due to unstable installation.
[0040] In the further scheme as shown in Fig. 4 In the further scheme as shown in
[0041] Embodiment 2:
[0042] As Fig. 5 shown, the embodiment also proposes an embedded socket, which comprises an embedded base 4 provided with an opening, a socket unit 41 arranged in the embedded base 4, and a box cover 1 movably arranged on the opening of the embedded base 4. The box cover 1 can open and close the opening of the embedded base 4, and is used to open or close the opening. The box cover 1 is the box cover 1 as described in Embodiment 1. Thus, the technical solution of the present application solves the problem of single function of the traditional embedded socket by designing the box cover 1 as a structure with wireless charging function. The box cover 1 not only can realize the opening and closing function, but also can provide the wireless charging function, thereby providing a convenient charging method for the user. The opening and closing design of the box cover 1 enables the user to conveniently open or close the opening of the embedded base 4, and the wireless charging function of the box cover 1 provides a convenient charging method for the user. Compared with the prior art, the technical solution of the present application not only maintains the neatness and beauty of the desktop, but also increases the wireless charging function, thereby improving the user experience.
[0043] Further, the embedded base 4 is provided with a wiring seat 6, and the connector 13 on the box cover 1 is connected with the wiring seat 6 only when the box cover 1 is completely covered on the opening of the embedded base 4. The position and structure design of the wiring seat 6 enable the connector 13 to be connected with the wiring seat 6 only when the box cover 1 is completely covered, which avoids the misoperation and unnecessary power consumption.
[0044] In the description of the present specification, the description of the terms "one embodiment", "some embodiments", "an example", "a 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 contained 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 described specific features, structures, materials or characteristics can be combined in any one or more embodiments or examples in a suitable manner.
[0045] 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 within the scope of the present application without departing from the principles and spirits of the present application.
Claims
1. A box cover embedded with a wireless charging module, the box cover (1) is embedded with a wireless charging module (2); characterized in that: The box cover (1) comprises an outer shell (11) and an inner shell (12), the outer shell (11) comprises a bottom plate (111) and a top plate (112), a shell cavity (113) is formed between the bottom plate (111) and the top plate (112), a top opening (114) communicating with the shell cavity (113) is formed on the top plate (112), and a side opening (115) communicating with the shell cavity (113) is formed on at least one side end surface of the outer shell (11); the inner shell (12) is loaded into the shell cavity (113) from the side opening (115) of the outer shell (11), the wireless charging module (2) is embedded on the inner shell (12) in the shell cavity (113), and the charging panel (22) of the wireless charging module (2) is located in the top opening (114) of the outer shell (11).
2. The box cover with an embedded wireless charging module of claim 1, wherein: A positioning groove (121) for positioning the wireless charging module (2) is formed on the inner shell (12); and the lower end of the wireless charging module (2) is positioned in the positioning groove (121) of the inner shell (12).
3. The cover of the box with the embedded wireless charging module according to claim 2, characterized in that: The box cover (1) is internally provided with a power supply for the wireless charging module (2) or a connector (13) connected to an external power supply; the inner shell (12) is provided with a charging circuit communicating with the power supply or the connector, and the wireless charging module (2) communicates with the power supply or the connector (13) when the wireless charging module (2) is embedded in the box cover (1).
4. The box cover with an embedded wireless charging module of claim 3, wherein: The wireless charging module (2) is integrally embedded into the shell cavity (113) from the top opening (114) of the outer shell (11).
5. The cover of the box with the embedded wireless charging module according to claim 3, characterized in that: The wireless charging module (2) comprises a wireless charging coil (21) and a charging panel (22); during installation, the wireless charging coil (21) is first loaded into the positioning groove (121) embedded in the inner shell (12) and communicates with the charging circuit, then the inner shell (12) and the wireless charging coil (21) thereon are loaded into the shell cavity (113) from the side opening (115) of the outer shell (11), and finally the charging panel (22) is fixed on the top opening (114) of the outer shell (11).
6. The cover of the box with the embedded wireless charging module according to claim 5, characterized in that: A clamping hook (221) is arranged on the edge of the charging panel (22), and the clamping hook (221) of the charging panel (22) is clamped on the edge of the top opening (114) or on the bottom pad (23) of the wireless charging module (2) when the charging panel (22) is loaded from the top opening (114) of the outer shell (11).
7. The cover of the box with the embedded wireless charging module according to claim 3, characterized in that: A light-transmitting through hole (110) is further formed on the outer shell (11), and a indicating lamp module (3) communicating with the power supply or the connector is further arranged in the box cover (1), and a light-emitting end of the indicating lamp module (3) seals the light-transmitting through hole (110); the indicating lamp module (3) synchronously emits light in a powered state of the wireless charging module (2).
8. The cover of the box with the embedded wireless charging module according to claim 1, characterized in that: The outer shell (11) of the box cover (1) is formed as a metal shell, and the bottom plate (111) and the top plate (112) of the outer shell (11) are integrally formed.
9. The cover of the box with the embedded wireless charging module according to claim 1, characterized in that: The box cover (1) further comprises an end cover (19); two side end faces of the outer shell (11) are provided with side openings (115) communicating with the shell inner cavity (113), the inner shell (12) is arranged in the shell inner cavity (113) from the side opening (115) of the outer shell (11), and the end cover (19) is used for closing the side opening (115) on the other side of the outer shell (11); the end cover (19) and the outer wall of the inner shell (12) are provided with a rotating shaft or a rotating shaft hole (191).
10. An embedded socket, comprising an embedded base (4) provided with an opening, a socket unit (41) arranged in the embedded base (4), and a box cover (1) movably arranged on the opening of the embedded base (4); the box cover (1) can open and close the opening of the embedded base (4) to open or close the opening; characterized in that: The box cover (1) is the box cover (1) as claimed in any one of claims 1-9; the embedded base (4) is provided with a terminal seat (6), and the terminal (13) on the box cover (1) is connected with the terminal seat (6) only when the box cover (1) is completely covered on the opening of the embedded base (4).
Citation Information
Patent Citations
A desktop flip-cover wire box with wireless charging function
CN108378551B