Wireless charging socket

By designing a wireless charging socket, the problem of messy cables caused by power strips and chargers was solved, achieving the convenience and compact structure of wireless charging and improving the user experience.

CN224082758UActive Publication Date: 2026-04-03NINGBO YLK ELECTRICAL
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-31
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

The existing power strip requires a charger, resulting in messy cables on the bedside table and insufficient outlets.

Method used

A wireless charging socket was designed, comprising a housing structure and a wireless charging module. It adopts a split housing and a dual working surface design, combined with an inclined setting, to achieve the convenience of wireless and wired charging and reduce cable clutter.

Benefits of technology

It achieves the convenience of wireless charging, reduces cable clutter, optimizes spatial layout, reduces space occupation, and improves structural compactness and user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a wireless charging socket, which comprises a shell, the shell comprises a first shell part, the head part of the first shell part is bent downwards to form a second shell part, a first working surface is formed on the upper surface of the first shell part, and a charging jack is arranged on the first working surface; the side wall of the first shell part forms a first working surface, the side wall of the second shell part forms a second working surface, the second working surface is provided with a wireless charging module used for wireless charging, the lower end of the second working surface is provided with a supporting plate used for supporting charging equipment, and the lower end of the first shell part and the lower end of the second shell part are both provided with placing surfaces. The two placing faces are located on the same plane, the first working face and the second working face are both inclined to the placing faces, and the included angle between the second working face and the placing faces is larger than the included angle between the first working face and the placing faces. The wireless charging socket is attractive in structure and appearance, small in occupied space, capable of achieving wireless charging and good in use experience.
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Description

Technical Field

[0001] This utility model relates to a socket, and more particularly to a wireless charging socket. Background Technology

[0002] Power strips are common electrical connection devices used for various household appliances. The plugs of appliances connect to the metal contacts inside the power strip to achieve electrical connection. Common usage scenarios for power strips include bedside tables and desktops in bedrooms. Since devices such as mobile phones, tablets, and smartwatches are usually needed to be charged in bedrooms and on bedside tables, there are usually not enough sockets, so power strips are needed. However, existing power strips still require chargers to charge, making the cables on the bedside table very messy. Summary of the Invention

[0003] The technical problem to be solved by this utility model is to provide a wireless charging socket that is compact in structure, small in size, and convenient for wired and wireless charging.

[0004] This utility model provides a wireless charging socket, which includes a housing. The housing includes a first housing part 11, the head of the first housing part 11 is bent downward to form a second housing part 12, the upper surface of the first housing part 11 forms a first working surface 1a, and the first working surface 1a is provided with a charging socket; the side wall of the second housing part 12 forms a second working surface 1b, and the second working surface 1b is provided with a wireless charging module 3 for wireless charging, and the lower end of the second working surface 1b is provided with a support plate 121 for supporting the charging device. The lower ends of the first housing part 11 and the second housing part 12 are both provided with a placement surface, and the two placement surfaces are located on the same plane. The first working surface 1a and the second working surface 1b are both inclined to the placement surface, and the angle between the second working surface 1b and the placement surface is greater than the angle between the first working surface 1a and the placement surface.

[0005] Furthermore, the angle between the first working surface 1a and the placement surface is greater than or equal to 10° and less than or equal to 25°.

[0006] Furthermore, the angle between the second working surface 1b and the placement surface is greater than or equal to 45° and less than or equal to 65°.

[0007] Furthermore, the pallet 121 includes a first plate 1211 perpendicular to the second working surface 1b, and the end of the first plate 1211 is bent upward in an arc shape to form a second plate 1212.

[0008] Furthermore, the first working surface 1a and the second working surface 1b are connected by an arc-shaped surface.

[0009] Furthermore, a rubber support pad is provided at the bottom of the placement surface.

[0010] Furthermore, the charging port includes one or more of the following: a two-hole port, a three-hole port, and a USB port.

[0011] Furthermore, the housing includes an upper housing 1 and a lower housing 2. The first working surface 1a and the second working surface 1b are disposed on the upper housing 1. The upper housing 1 has a cavity with an open lower end. The lower housing 2 is installed on the open lower end of the upper housing 1 and forms a mounting cavity. The wireless charging module 3 is disposed in the mounting cavity.

[0012] Furthermore, the wireless charging module 3 includes a rectangular support plate 31 and a transmitting coil 32 mounted on the support plate 31. The mounting cavity is provided with an upper support seat 13 and a lower support seat 21 for fixing the support plate 31. The upper support seat 13 is disposed on the upper housing 1, and the lower support seat 21 is disposed on the lower housing 2. An mounting area for mounting the wireless charging module 3 is formed between the upper support seat 13, the lower support seat 21, and the inner wall of the mounting cavity.

[0013] Furthermore, the lower support 21 is provided with a first mounting surface 211 facing the second working surface 1b and parallel to the second working surface 1b. The lower end of the first mounting surface 211 is provided with a second mounting surface 212, which is arranged upward and perpendicular to the first mounting surface 211. The upper support 13 is provided with a third mounting surface 131 facing downward and parallel to the second mounting surface 212. The distance between the third mounting surface 131 and the second mounting surface 212 is the same as the height of the bracket plate 31. The end of the third mounting surface 131 is provided with a fourth mounting surface 132 facing the second working surface 1b. The mounting area is formed between the first mounting surface 211, the second mounting surface 212, the third mounting surface 131, the fourth mounting surface 132 and the inner wall of the mounting cavity.

[0014] This utility model of a wireless charging socket features a wireless charging module, enabling wireless charging, improving device usability, reducing cable clutter, optimizing space layout, and suitability for various scenarios with excellent performance. Its dual-working-surface structure provides a rational layout, ensuring no interference between wired and wireless charging, resulting in a superior user experience. Both working surfaces are angled, facilitating charging while reducing overall space occupancy, improving structural compactness and floor space utilization. The modular shell structure reduces production and manufacturing costs and facilitates assembly. The optimized installation structure of the wireless charging module ensures quick and accurate installation, improving installation precision and assembly efficiency, resulting in excellent performance. This utility model of a wireless charging socket boasts an aesthetically pleasing structure and appearance, occupies minimal space, enables wireless charging, provides a superior user experience, and is suitable for a wide range of applications. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the structure of the wireless charging socket of this utility model;

[0016] Figure 2 This is a schematic diagram showing the placement of the wireless charging socket of this utility model;

[0017] Figure 3 This is an exploded view of the wireless charging socket of this utility model;

[0018] Figure 4 This is a partial cross-sectional view of the wireless charging socket of this utility model;

[0019] Figure 5 This is a schematic diagram of the lower housing of the wireless charging socket of this utility model;

[0020] Figure 6 for Figure 5 Enlarged view of section A in the middle;

[0021] Figure 7 This is a schematic diagram of the upper shell of the wireless charging socket of this utility model;

[0022] Figure 8 for Figure 7 Enlarged view of section B;

[0023] Figure 9 This is a schematic diagram showing the usage status of the wireless charging socket of this utility model. Detailed Implementation

[0024] The embodiments of this utility model will now be described in detail with reference to the accompanying drawings.

[0025] See Figures 1-9This utility model provides a wireless charging socket, which includes a housing. The housing includes a first housing part 11, which is generally rectangular. The head of the first housing part 11 is bent downward to form a second housing part 12. The first housing part 11 and the second housing part 12 form an L-shaped structure, and the included angle between them is greater than 90 degrees. The upper surface of the first housing part 11 forms a first working surface 1a, on which a charging socket is provided. The charging socket includes one or more of a two-hole socket, a three-hole socket, and a USB socket, wherein the USB socket includes one or more of Type-A, Type-B, Type-C, MicroUSB, and Mini USB. The side wall of the second housing part 12 forms a second working surface 1b, on which a wireless charging module 3 is provided for wireless charging. The wireless charging module 3 includes a support plate 31 and a transmitting coil 32. It also includes a circuit board for electrically connecting to the transmitting coil to generate electromagnetic signals.

[0026] The first working surface 1a and the second working surface 1b are connected by an arc-shaped transition, resulting in a compact structure and good aesthetics.

[0027] A tray 121 is provided at the lower end of the second working surface 1b. The tray 121 is used to support the charging device 4, that is, the device to be wirelessly charged can be placed on the tray 121. The charging device includes tablets, mobile phones, etc. Specifically, the tray 121 includes a first plate 1211 perpendicular to the second working surface 1b. The first plate 1211 is strip-shaped, and its length direction is parallel to the horizontal plane. The end of the first plate 1211 is bent upward in an arc shape to form a second plate 1212. The first plate 1211 is used to support the device, and the second plate 1212 is used to place the lower end of the device to slide outward, thereby improving the reliability and stability of the device placement during charging. In this embodiment, a rubber layer is provided on the inner surface of the first plate 1211 and the second plate 1212, which has the functions of buffering and anti-slip, thereby improving the placement stability of the charging device.

[0028] Placement surfaces are provided at the lower ends of both the first housing part 11 and the second housing part 12. Specifically, a first placement surface 1c is provided at the lower end of the first housing part 11, and a second placement surface 1d is provided at the lower end of the second housing part 12. The first placement surface 1c and the second placement surface 1d are located on the same plane and are used for placing the entire socket. At the same time, the first working surface 1a and the second working surface 1b are both inclined to the placement surface. That is, when the socket is placed on the table, the first working surface 1a and the second working surface 1b are both inclined surfaces. In this embodiment, the angle between the second working surface 1b and the placement surface is greater than the angle between the first working surface 1a and the placement surface. Specifically, the angle between the first working surface 1a and the placement surface is greater than or equal to 10° and less than or equal to 25°, and the angle between the second working surface 1b and the placement surface is greater than or equal to 45° and less than or equal to 65°.

[0029] To improve stability, a rubber support pad is provided at the bottom of the placement surface in this application. This pad provides elastic support to the desktop, preventing impacts during placement and protecting the socket and desktop. At the same time, the rubber support pad has a certain amount of friction to prevent slippage when the desktop is tilted, ensuring reliable and stable placement.

[0030] To facilitate production, processing, and assembly, the housing in this application includes an upper housing 1 and a lower housing 2. A first working surface 1a and a second working surface 1b are disposed on the upper housing 1. A cavity is formed on the upper housing 1, and the lower end of the cavity is open. The lower housing 2 is installed at the open lower end of the upper housing 1, thereby forming a mounting cavity for mounting various electrical components, including a wireless charging module 3.

[0031] For ease of assembly, the wireless charging module 3 includes a rectangular support plate 31 and a transmitting coil 32 mounted on the support plate 31. The transmitting coil 32 is electrically connected to the circuit board inside the mounting cavity and is used to emit electromagnetic signals. An upper support seat 13 and a lower support seat 21 are provided inside the mounting cavity. The upper support seat 13 and the lower support seat 21 are used to fix the support plate 31. The upper support seat 13 is set on the upper housing 1, and the lower support seat 21 is set on the lower housing 2. The upper support seat 13, the lower support seat 21 and the inner wall of the mounting cavity form a mounting area for mounting the wireless charging module 3. The outer side of the inner wall is the second working surface 1b. After installation, the wireless charging module 3 faces the second working surface 1b and is parallel to the second working surface 1b. It can emit electromagnetic signals toward the second working surface 1b so that the coil on the charging device can receive them and realize wireless charging.

[0032] Specifically, the lower support 21 is provided with a first mounting surface 211, which faces the second working surface 1b and is parallel to the second working surface 1b. It is used to contact the rear end of the wireless charging module 3. The lower end of the first mounting surface 211 is provided with a second mounting surface 212, which faces upward and is perpendicular to the first mounting surface 211. The second mounting surface 212 is used to contact the lower end of the wireless charging module 3 to provide support. The upper support 13 is provided with a third mounting surface 131, which faces downward and is parallel to the second mounting surface 212. The distance between the third mounting surface 131 and the second mounting surface 212 is the same as the height of the bracket plate 31. The third mounting surface 131 is used to contact the upper end of the wireless charging module 3 to limit its upper and lower movement. A fourth mounting surface 132 is provided at the end of the third mounting surface 131 away from the second working surface 1b. The fourth mounting surface 132 faces the second working surface 1b. In order to facilitate assembly, the fourth mounting surface 132 has a certain angle with the second working surface 1b, forming a mounting structure that is larger at the top and smaller at the bottom. The fourth mounting surface 132 is used to contact the upper rear end of the wireless charging module 3 to prevent the upper end of the wireless charging module 3 from tilting backward and to play a limiting role. The first mounting surface 211, the second mounting surface 212, the third mounting surface 131, the fourth mounting surface 132 and the inner wall of the mounting cavity form a mounting area, in which the wireless charging module 3 is installed.

[0033] In this application, a cable is provided at the rear end of the first housing part 11, that is, the cable is provided at the end facing away from the first working surface 1a, and a plug is provided at the end of the cable for supplying power to the socket and the wireless charging module.

[0034] This utility model of a wireless charging socket features a wireless charging module, enabling wireless charging, improving device usability, reducing cable clutter, optimizing space layout, and suitability for various scenarios with excellent performance. Its dual-working-surface structure provides a rational layout, ensuring no interference between wired and wireless charging, resulting in a superior user experience. Both working surfaces are angled, facilitating charging while reducing overall space occupancy, improving structural compactness and floor space utilization. The modular shell structure reduces production and manufacturing costs and facilitates assembly. The optimized installation structure of the wireless charging module ensures quick and accurate installation, improving installation precision and assembly efficiency, resulting in excellent performance. This utility model of a wireless charging socket boasts an aesthetically pleasing structure and appearance, occupies minimal space, enables wireless charging, provides a superior user experience, and is suitable for a wide range of applications.

[0035] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.

Claims

1. A wireless charging socket, characterized in that: The device includes a housing, comprising a first housing portion, the head of which is bent downward to form a second housing portion. The upper surface of the first housing portion forms a first working surface, on which a charging port is provided. The sidewall of the second housing portion forms a second working surface, on which a wireless charging module for wireless charging is provided. The lower end of the second working surface is provided with a support plate for supporting the charging device. The lower ends of both the first and second housing portions are provided with placement surfaces, which are located on the same plane. Both the first and second working surfaces are inclined to the placement surfaces, and the angle between the second working surface and the placement surface is greater than the angle between the first working surface and the placement surface.

2. The wireless charging socket as described in claim 1, characterized in that: The angle between the first working surface and the placement surface is greater than or equal to 10° and less than or equal to 25°.

3. The wireless charging socket as described in claim 1, characterized in that: The angle between the second working surface and the placement surface is greater than or equal to 45° and less than or equal to 65°.

4. The wireless charging socket as described in claim 1, characterized in that: The pallet includes a first plate perpendicular to the second working surface, and the end of the first plate is bent upward in an arc to form a second plate.

5. The wireless charging socket as described in claim 1, characterized in that: The first working surface and the second working surface are connected by an arc-shaped surface.

6. The wireless charging socket as described in claim 1, characterized in that: The bottom of the placement surface is provided with a rubber support pad.

7. The wireless charging socket as described in claim 1, characterized in that: The charging port includes one or more of the following: a two-hole port, a three-hole port, and a USB port.

8. The wireless charging socket as described in claim 1, characterized in that: The housing includes an upper housing and a lower housing. The first working surface and the second working surface are disposed on the upper housing. The upper housing has a cavity with an open lower end. The lower housing is installed on the open lower end of the upper housing and forms a mounting cavity. The wireless charging module is disposed in the mounting cavity.

9. The wireless charging socket as described in claim 8, characterized in that: The wireless charging module includes a rectangular support plate and a transmitting coil mounted on the support plate. The mounting cavity is provided with an upper support seat and a lower support seat for fixing the support plate. The upper support seat is disposed on the upper housing, and the lower support seat is disposed on the lower housing. An mounting area for mounting the wireless charging module is formed between the upper support seat, the lower support seat, and the inner wall of the mounting cavity.

10. The wireless charging socket as described in claim 9, characterized in that: The lower support base has a first mounting surface facing the second working surface and parallel to the second working surface. The lower end of the first mounting surface has a second mounting surface, which is upward and perpendicular to the first mounting surface. The upper support base has a third mounting surface facing downward and parallel to the second mounting surface. The distance between the third mounting surface and the second mounting surface is the same as the height of the bracket plate. The end of the third mounting surface has a fourth mounting surface facing the second working surface. The mounting area is formed between the first mounting surface, the second mounting surface, the third mounting surface, the fourth mounting surface, and the inner wall of the mounting cavity.