An embedded wireless charger

CN224733478UActive Publication Date: 2026-09-08NANJING SUOLAI ELECTRONICS TECH CO LTD
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Patent Information

Application Number
CN202521908425.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-05
Publication Date
2026-09-08
Estimated Expiration
2035-09-05

AI Technical Summary

Technical Problem

[0002]随着科学技术的不断发展,社会不断进步,人们对于电子产品的需求也越来越多样化,电子产品充电大多是通过有线充电器来实现的,但有线充电器使用起来不够方便,且在办公环境下线路复杂,影响使用效率和桌面整体整洁度;现有的无线充电器主要是是嵌入式无线充电器,功能比较单一,使用效率较低;人们在办公、学习等场景下,若手机在进行无线充电的同时需要使用手机,则需要拿起电子产品并结束充电或不拿起电子产品使用但无法调整使用电子产品的角度,前者降低了充电效率,后者使用不够方便

Benefits of technology

[0007] This utility model offers multiple usage options and a compact structure, including embedded, desktop, and magnetic attachment, to meet diverse user needs. Users can choose embedded attachment to maintain a neat and aesthetically pleasing desktop, avoid cluttered wiring, and save space. Desktop attachment allows for flexible adjustment of the wireless charger's position. Magnetic attachment allows users to pick up and use electronic devices while wirelessly charging, and the magnetic stand can also be used to adjust the viewing angle of the screen for added convenience.

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Abstract

The utility model discloses an embedded wireless charger, including wireless charger main part, wireless charger main part is by upper cover subassembly, lower cover subassembly, inductance coil, circuit board, magnetism magnet, toughened glass constitutes, upper cover subassembly includes inductance coil induction area, eave edge, magnetism magnet mounting recess, inductance coil installation position, lower cover subassembly includes electric wire interface, electric wire plug recess, desktop formula horizontal lead outlet, back C type antiskid recess position, C type magnetism magnet piece, back C type antiskid rubber ring, magnetism support. The utility model provides multiple use mode and the structure is small and exquisite, including embedded use, desktop use and magnetism type use, can satisfy different use demand, and people can select embedded use to keep the desktop neat and beautiful, avoid the line miscellaneous, save the space, can select desktop use and magnetism type use, and flexible convenient.
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Description

Technical Field

[0001] This invention belongs to the field of wireless chargers, and more specifically, relates to an embedded wireless charger. Background Technology

[0002] With the continuous development of science and technology and the continuous progress of society, people's needs for electronic products are becoming more and more diversified. Most electronic products are charged through wired chargers, but wired chargers are not convenient to use, and the wiring is complicated in the office environment, affecting the efficiency of use and the overall tidiness of the desktop. Existing wireless chargers are mainly embedded wireless chargers, with relatively simple functions and low efficiency. In scenarios such as office work and study, if people need to use their mobile phones while they are wirelessly charging, they have to pick up the electronic products and stop charging, or use the electronic products without picking them up but cannot adjust the angle of use. The former reduces charging efficiency, and the latter is not convenient to use. Summary of the Invention

[0003] To address the aforementioned problems, the purpose of this utility model is to provide an embedded wireless charger.

[0004] The technical solution adopted by this utility model to solve the technical problem is: An embedded wireless charger includes a wireless charger body, which is composed of an upper cover assembly 21, a lower cover assembly 25, an inductor coil 22, a circuit board 23, a magnetic magnet 20, and tempered glass 19. The upper cover assembly 21 consists of an inductor coil sensing area 1, an edge 9, a magnet mounting groove 11, and an inductor coil mounting position 12. The magnet mounting groove 11 cooperates with the magnetic magnet 20, and the inductor coil mounting position 12 cooperates with the inductor coil 22. The power supply for the inductor coil 22 is derived from the circuit board 23. The lower cover assembly 25... The cover assembly 25 consists of a wire interface 4, a wire plug groove 5, a desktop horizontal lead wire outlet 6, a C-shaped anti-slip groove 17 on the back, a C-shaped magnet 26, a C-shaped anti-slip rubber ring 27 on the back, and a magnetic bracket 28. The wire interface 4 and the desktop horizontal lead wire outlet 6 are respectively located on opposite sides of the wire plug groove 5. The C-shaped magnet 26 is attached to one side of the C-shaped anti-slip groove 17, and the C-shaped anti-slip rubber ring 27 is installed on the other side. The magnetic bracket 28 and the C-shaped magnet 26 can be detachably connected.

[0005] The embedded wireless charger of this utility model is further characterized in that the upper cover assembly 21 is also provided with a front anti-slip rubber ring 18 and a front anti-slip groove 13, the front anti-slip rubber ring 18 is provided between the tempered glass 19 and the eaves 9, and the front anti-slip rubber ring 18 is installed on the front anti-slip mat groove 13.

[0006] A further feature of this embedded wireless charger is that the upper cover assembly 21 is also provided with a light guide ring 24. The light guide ring 24 includes a corrugated inner wall 14, a front light guide display area 15, a side light guide display area 16, and a side transparent ring 8. The outermost part of the tempered glass 19 is the front transparent ring 2. When the embedded wireless charger is running, light passes through the front transparent ring 2 from the front light guide display area 15 and through the side transparent ring 8 from the side light guide display area 16. The wire interface 4 is a Type-C interface, and the wire plug groove 5 is a Type-C plug groove. Vertical micro-protrusions 3 are also evenly distributed on the peripheral sides of the upper cover assembly 21.

[0007] This utility model offers multiple usage options and a compact structure, including embedded, desktop, and magnetic attachment, to meet diverse user needs. Users can choose embedded attachment to maintain a neat and aesthetically pleasing desktop, avoid cluttered wiring, and save space. Desktop attachment allows for flexible adjustment of the wireless charger's position. Magnetic attachment allows users to pick up and use electronic devices while wirelessly charging, and the magnetic stand can also be used to adjust the viewing angle of the screen for added convenience. Attached Figure Description

[0008] Figure 1 This is an exploded view of the embedded wireless charger of this utility model.

[0009] Figure 2 This is a front structural diagram of the present utility model.

[0010] Figure 3 This is a schematic diagram of the rear structure of this utility model.

[0011] Figure 4 This is a schematic diagram of the upper cover assembly structure of this utility model.

[0012] Figure 5 This is a schematic diagram of the lower cover assembly structure of this utility model.

[0013] Figure 6 This is a schematic diagram showing the installation position of the C-type magnet sheet of this utility model.

[0014] Figure 7 This is a schematic diagram of the application of the magnetic bracket of this utility model.

[0015] Figure 8 This is a schematic diagram of the embedded application of this utility model.

[0016] Figure 9 This is a schematic diagram of the embedded application leads of this utility model.

[0017] Figure 10This is a schematic diagram of the lead wires for the desktop application of this utility model.

[0018] Figure 11 This is a schematic diagram of the light guide ring of this utility model.

[0019] In the diagram, 1 is the inductor coil sensing area, 2 is the front transparent ring, 3 is the vertical micro-protrusion strip, 4 is the wire interface, 5 is the wire plug groove, 6 is the desktop horizontal lead outlet, 8 is the side transparent ring, 9 is the eaves, 11 is the magnet mounting groove, 12 is the inductor coil mounting position, 13 is the front anti-slip groove, 14 is the corrugated inner wall, 15 is the front light guide display area, 16 is the side light guide display area, 17 is the back C-shaped anti-slip groove, 18 is the front anti-slip rubber ring, 19 is the tempered glass, 20 is the magnetic magnet, 21 is the top cover assembly, 22 is the inductor coil, 23 is the circuit board, 24 is the light guide ring, 25 is the bottom cover assembly, 26 is the C-shaped magnetic sheet, 27 is the back C-shaped anti-slip rubber ring, and 28 is the magnetic bracket. Detailed Implementation

[0020] The technical solution of this utility model will now be described with reference to the accompanying drawings.

[0021] like Figure 1-11 As shown, this utility model provides an embedded wireless charger that can be used in various ways, including embedded, desktop, and magnetic charging, thus meeting people's needs for charging electronic products and making the function of wireless chargers more than just one.

[0022] The specific structure of the embedded wireless charger in this embodiment is as follows: Figure 1 , Figure 6 , Figure 4 As shown, the wireless charger body comprises an upper cover assembly 21, a lower cover assembly 25, an inductor coil 22, a circuit board 23, a magnetic magnet 20, and tempered glass 19. The upper cover assembly 21 consists of an inductor coil sensing area 1, an edge 9, a magnet mounting groove 11, and an inductor coil mounting position 12. The upper cover assembly 21 also includes a light guide ring 24, a front anti-slip rubber ring 18, and a front anti-slip groove 13. The front anti-slip rubber ring 18 is positioned between the tempered glass 19 and the edge 9; the front anti-slip rubber ring 18 is mounted on the front anti-slip groove 13. Figure 11As shown, the light guide ring 24 includes a corrugated inner wall 14, a front light guide display area 15, a side light guide display area 16, and a side transparent ring 8; the outermost part of the tempered glass 19 is the front transparent ring 2. When the embedded wireless charger is running, light passes through the front transparent ring 2 from the front light guide display area 15 and through the side transparent ring 8 from the side light guide display area 16; vertical micro-protrusions 3 are evenly distributed on the periphery of the top cover assembly 21 to increase the friction with the table; the magnet mounting groove 11 cooperates with the magnetic magnet 20; the inductor coil mounting position 12 cooperates with the inductor coil 22, and the power supply of the inductor coil 22 comes from the circuit board 23. The lower cover assembly 25 comprises a wire interface 4, a wire plug groove 5, a desktop horizontal lead outlet 6, a C-shaped anti-slip groove 17 on the back, a C-shaped magnetic piece 26, a C-shaped anti-slip rubber ring 27 on the back, and a magnetic bracket 28. The wire interface 4 and the desktop horizontal lead outlet 6 are respectively located on opposite sides of the wire plug groove 5. The wire interface 4 and the wire plug groove 5 are a Type-C plug and a Type-C plug groove, respectively. One side of the C-shaped anti-slip groove 17 is attached to the C-shaped magnetic piece 26, and the other side is fitted with the C-shaped anti-slip rubber ring 27. The magnetic bracket 28 is detachably connected to the C-shaped magnetic piece 26. (See the C-shaped anti-slip groove 17 on the back.) Figure 5 The depth of the cord plug recess 5 is greater than the height of the desktop horizontal lead outlet 6. This recessed design of the cord plug recess 5 provides sufficient space for the charger's power cord (data cable) to be plugged in and unplugged, and allows for easy vertical output of the Type-C data cable during embedded installation.

[0023] When used in embedded systems, such as Figure 8 , Figure 9 As shown, the wireless charger body is placed in a recessed area on the desktop that matches the size of the body. In this embodiment, the top cover assembly 21 of the embedded wireless charger is fixed to the desktop by the eaves 9 and the vertical micro-protrusions 3 evenly distributed around the perimeter. The anti-slip rubber ring 18 on the front can play an anti-slip role and prevent the mobile phone from shifting. The charging lead is led out from below the wire plug groove 5 to connect to the power supply.

[0024] When using on a desktop, such as Figure 10 As shown, when the wireless charger is placed on the table, the C-shaped anti-slip rubber ring on the back of the outer surface of the lower cover assembly of the wireless charger generates friction with the table to fix the wireless charger body. The anti-slip rubber ring 18 on the front can play an anti-slip role to prevent the phone from shifting. The charging cable is led out from the desktop horizontal cable outlet 6 and connected to the power source.

[0025] When using magnetic attachment, such as Figure 7As shown, the wireless charger is magnetically attached to the back of the electronic product, allowing you to directly pick up the electronic product along with the wireless charger for use, or unfold the magnetic stand and place it on a table for use. The anti-slip pad on the front can prevent the phone from shifting. The charging cable is led out from the desktop horizontal cable outlet 6 and connected to the power source. This method can not only meet the needs of using electronic products while wirelessly charging, but also change the angle at which people view the screen, making it convenient to use.

[0026] Figure 2 This is a front view of the present invention. Figure 3 This is a schematic diagram of the rear structure.

[0027] This utility model provides people with diverse ways to use wireless chargers. People can choose to use them in an embedded, desktop, or magnetic manner according to their needs. As the charging principle and specific snap-fit ​​structure of wireless chargers are already quite mature, they will not be described further here.

Claims

1. An embedded wireless charger, comprising a wireless charger body, characterized in that, The wireless charger body consists of an upper cover assembly (21), a lower cover assembly (25), an inductor coil (22), a circuit board (23), a magnetic magnet (20), and tempered glass (19). The upper cover assembly (21) consists of an inductor coil sensing area (1), an eaves (9), a magnet mounting groove (11), and an inductor coil mounting position (12). The magnet mounting groove (11) cooperates with the magnetic magnet (20), and the inductor coil mounting position (12) cooperates with the inductor coil (22). The power supply of the inductor coil (22) comes from the circuit board (23). The lower cover assembly (25) consists of an upper cover assembly (21), a lower cover assembly (25), an inductor coil (22), a circuit board (23), a magnetic magnet (20), and tempered glass (19). The device consists of a wire interface (4), a wire plug groove (5), a desktop horizontal lead wire outlet (6), a C-shaped anti-slip groove on the back (17), a C-shaped magnet (26), a C-shaped anti-slip rubber ring on the back (27), and a magnetic bracket (28). The wire interface (4) and the desktop horizontal lead wire outlet (6) are respectively located on opposite sides of the wire plug groove (5). The C-shaped magnet (26) is pasted on one side of the C-shaped anti-slip groove (17), and the C-shaped anti-slip rubber ring (27) is installed on the other side. The magnetic bracket (28) and the C-shaped magnet (26) can be detachably connected.

2. An embedded wireless charger according to claim 1, characterized in that, The upper cover assembly (21) is also provided with a front anti-slip rubber ring (18) and a front anti-slip groove (13). The front anti-slip rubber ring (18) is provided between the tempered glass (19) and the eaves (9), and the front anti-slip rubber ring (18) is installed on the front anti-slip groove (13).

3. An embedded wireless charger according to claim 1, characterized in that, The top cover assembly (21) is also provided with a light guide ring (24). The light guide ring (24) includes a corrugated inner wall (14), a front light guide display area (15), a side light guide display area (16), and a side transparent ring (8). The outermost part of the tempered glass (19) is the front transparent ring (2). When the embedded wireless charger is running, light passes through the front transparent ring (2) through the front light guide display area (15) and through the side transparent ring (8) through the side light guide display area (16).

4. An embedded wireless charger according to any one of claims 1 to 3, characterized in that, The wire interface (4) is a Type-C interface, and the wire plug groove (5) is a Type-C plug groove.

5. An embedded wireless charger according to any one of claims 1 to 3, characterized in that, Vertical micro-protrusions (3) are also evenly distributed on the peripheral side of the upper cover assembly (21).