Wireless charger
By designing adjustable-angle support components and multiple charging positions, the problem of the wireless charger support stand being unable to continue rotating was solved, improving the user experience and the practicality of the charger.
Patent Information
- Application Number
- CN202421655672.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-12
- Publication Date
- 2025-11-14
- Estimated Expiration
- 2034-07-12
AI Technical Summary
The support frame of existing wireless chargers cannot move further after rotating to a certain angle, causing inconvenience to users.
A wireless charger is designed, including a charger body and a first support component that can be movably connected. The support component can be folded into a storage slot. The support base is angle-adjustable and equipped with multiple magnetic induction charging positions. The support base can be rotated to be perpendicular to the charger body. The magnetic induction charging positions on the support base can accommodate the charging needs of various electronic devices.
It allows for multi-angle adjustment of electronic device placement, enhancing the user experience, and provides multiple charging positions to accommodate the charging needs of different electronic devices, improving the charger's practicality and entertainment value.
Smart Images

Figure CN223553102U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a wireless charger, which is applied in the field of electronic product charging equipment technology. Background Technology
[0002] With the continuous development and popularization of electronic devices, the number of electronic devices is constantly increasing. Therefore, wireless charging devices, as one of the peripheral products of electronic devices, are receiving more and more attention.
[0003] However, due to the wide variety and size of electronic devices, multiple wireless charging devices are needed to charge different electronic products separately. To address this, patent application CN220775447U discloses an all-in-one wireless charger. The top surface of the charger serves as a wireless charging surface for mobile phones, and the tilt angle of this charging surface can be adjusted by rotating the casing. This design allows users to adjust the placement angle of the phone according to different usage scenarios. For example, when simply charging, the angle can be adjusted to be smaller for easier placement; when using the phone while charging, the angle can be adjusted to be larger for easier viewing and operation. However, in this application, the rotating casing cannot be rotated further after reaching a certain angle. Therefore, it is inconvenient for users to use. . Summary of the Invention
[0004] In response to the aforementioned problem that the support rod of the existing wireless charger with a support frame cannot move after rotating to a certain extent, causing inconvenience to the user, this utility model provides a wireless charger that allows users to adjust the angle of the electronic device from multiple angles, thereby improving the user experience.
[0005] The technical solution adopted by this utility model to solve its technical problem is: a wireless charger, the charger including a charger body and a first support component, the charger body having a first storage slot, the first support component being movably connected to the charger body, and the first support component being foldable into the first storage slot; the first support component including a first connector and a first support base, one end of the first connector being movably connected to the charger body, the first support base being movably disposed at the other end of the first connector, and the first support base having a first magnetic induction charging position.
[0006] Furthermore, the charger body is cylindrical in shape.
[0007] Furthermore, the first storage slot is disposed on the top surface of the charger body, and the first storage slot is provided with a first mounting slot. When the first support component is folded into the first storage slot, the first connector is located in the first mounting slot, and the first support base is located in the first storage slot.
[0008] Furthermore, a notch is provided on the upper side of the side wall of the charger body, the notch is connected to the first storage slot and the first mounting slot, and the end of the first connector with the first support seat can be rotated away from the first storage slot through the notch.
[0009] Furthermore, the first support base is connected to the top end of the first connector, and the first support base can rotate along the width extension direction of the first connector.
[0010] Furthermore, the charger also includes a second support base, and a second storage groove is provided on the outer side of the side wall of the charger body. The second support base is movably connected to the charger body, and the second support base can be folded into the second storage groove. The second support base can be rotated to be perpendicular to the side wall of the charger body, and a second magnetic induction charging position is provided on the second support base.
[0011] Furthermore, the charger also includes a third support base, and a third storage groove is provided on the outer side wall of the charger body. The third support base is movably connected to the charger body, and the second support base can be folded into the third storage groove. The third support base can be rotated to be perpendicular to the side wall of the charger body, and a third magnetic induction charging position is provided on the third support base.
[0012] Furthermore, the charger body includes an upper part, a lower part, and a linkage component. The first support component is disposed in the upper part, and the lower part and the upper part are rotatably connected through the linkage component.
[0013] Furthermore, the linkage assembly includes a first chassis, a second chassis, an elastic element, and a ball. The first chassis is connected to the lower half, and the second chassis is also connected to the lower half. The first chassis has a circular groove, and the sidewall of the groove has multiple concave arc surfaces that are connected to each other. The second chassis has a ring inserted into the groove and a second mounting groove. The sidewall of the ring has an opening, and the second mounting groove is connected to the opening. The elastic element is installed in the second mounting groove and is located at the opening, abutting against the ball. The ball is located within one of the concave arc surfaces. When the upper half rotates relative to the lower half, the first chassis rotates, and the ball moves within an adjacent concave arc surface.
[0014] Furthermore, multiple concave arc surfaces are connected to cover the sidewalls of the groove.
[0015] The beneficial effects of this utility model are as follows: This utility model provides a wireless charger. The first support component is foldable and disposed on the top surface of the charging body, and is movably connected to the charging body through the first connector. The first support base is also movably connected to the first connector. Thus, the support base can be adjusted at an angle relative to the first connector, and the first connector can be adjusted at an angle relative to the charging body. This allows the user to adjust the angle of the electronic device from multiple angles, thereby increasing the user's user experience. Attached Figure Description
[0016] Figure 1 This is a perspective view of the charger provided by this utility model;
[0017] Figure 2 This is a partial exploded view of the charger provided by this utility model;
[0018] Figure 3 This is an exploded view of the charger provided by this utility model;
[0019] Figure 4 This is an exploded view of the linkage component provided by this utility model;
[0020] Figure 5 This is an exploded view of the linkage component provided by this utility model. Detailed Implementation
[0021] To make the objectives, technical solutions, and effects of this utility model clearer and more explicit, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain this utility model and are not intended to limit this utility model.
[0022] Please see Figure 1-5 This utility model provides a wireless charger, which includes a charger body 1 and a first support component 2. The charger body 1 is provided with a first storage slot 11. The first support component 2 is movably connected to the charger body 1 and can be folded into the first storage slot 11. The first support component 2 includes a first connector 21 and a first support base 22. One end of the first connector 21 is movably connected to the charger body 1, and the first support base 22 is movably disposed at the other end of the first connector 21. The first support base 22 is provided with a first magnetic induction charging position 23, which can be used to charge products such as mobile phones and tablets that are convenient for users to use for entertainment. The first support component 2 is equivalent to a stand that can support electronic products, allowing users to use them while charging. That is to say, since the first connector is movably connected to the charger body and the first support base is also movably connected to the first connector, the angle of the support base can be adjusted relative to the first connector, and the angle of the first connector can be adjusted relative to the charger body, so that users can use electronic devices at multiple angles, increasing the user experience.
[0023] In this embodiment, the charger body 1 is cylindrical in shape, which can be a cuboid or other variations, but preferably cylindrical. The cylindrical shape facilitates demolding and reduces the number of sharp corners, thereby reducing the probability of damage to the charger body 1 itself and the probability of damage to the user from the sharp corners. In addition, the cylindrical design makes the overall appearance of the charger more aesthetically pleasing.
[0024] In this embodiment, the first storage slot 11 is disposed on the top surface of the charger body 1. The first storage slot 11 is provided with a first mounting slot 111. When the first support component 2 is folded into the first storage slot 11, the first connector 21 is located in the first mounting slot 111 and the first support base 22 is located in the first storage slot 11. That is to say, the first support component is stored in the top surface of the charger body. The position of the first support is obvious, which makes it convenient for the user to store the first support component and also convenient for the user to unfold and use the first support component. Moreover, the height of the charger body 1 plus the height of the first connector is sufficient to provide a certain height for the user to adjust the height, which can shorten the length of the first connector and prevent it from being too long and easily broken or damaged.
[0025] In this embodiment, a notch 101 is provided on the upper side of the side wall of the charger body 1. The notch 101 communicates with the first storage groove 11 and the first mounting groove 111. The end of the first connector 21 with the first support base 22 can rotate away from the first storage groove 11 through the notch 101. Preferably, the connector is a whole strip plate. The strip plate can rotate into the first mounting groove and rotate from the first mounting groove to the notch, pass through the notch and rotate to the outer side of the charger side wall. This greatly increases the user's adjustment range and makes it convenient for the user to rotate. This structure achieves a better storage state without too many complicated structures. The plane of the first support base is preferably set on the same plane as the charger body, so that the overall appearance of the charger is neater.
[0026] In this embodiment, the first support base 22 is connected to the top end of the first connector 21. The first support base 22 can rotate along the width extension direction of the first connector, so that the first support base can rotate to its maximum angle, which is equivalent to being able to rotate from the front to the back of the first connector, making it convenient for the user to adjust the angle.
[0027] In this embodiment, the charger also includes a second support base 3. A second storage groove 12 is provided on the outer side wall of the charger body 1. The second support base 3 is movably connected to the charger body 1, and the second support base 3 can be folded into the second storage groove 12. The second support base 3 can be rotated to be perpendicular to the side wall of the charger body 1, but is not limited to rotating only to be perpendicular to the side wall of the charger body 1. A second magnetic induction charging position 31 is provided on the second support base 3. The second magnetic induction charging position 31 can be used to charge electronic watches, increasing the number of charging positions and making it convenient for users to charge multiple electronic devices.
[0028] In this embodiment, the charger also includes a third support base 4. A third storage groove 13 is provided on the outer side wall of the charger body 1. The third support base 4 is movably connected to the charger body 1, and the second support base 3 can be folded into the third storage groove 13. The third support base 4 can be rotated to be perpendicular to the side wall of the charger body 1, but is not limited to rotating only to be perpendicular to the side wall of the charger body 1. A third magnetic induction charging position 41 is provided on the third support base 4. The third magnetic induction charging position 41 can be used to charge wireless Bluetooth headsets, increasing the number of charging positions and making it convenient for users to charge multiple electronic devices.
[0029] In this embodiment, the charger body 1 includes an upper half 14, a lower half 15, and a linkage component 16. The first support component 2 is disposed on the upper half 14. The lower half 15 and the upper half 14 are continuously rotatably connected through the linkage component 16. When the lower half 15 is equivalent to the upper half 14, the linkage component 16 will emit a mechanical rotating sound or have a relatively paused feeling when rotating, which can achieve a decompression effect. It is equivalent to the charger being used as a decompression toy when not in use, which increases the functionality of the charger, increases its practicality, and enhances the user's user experience.
[0030] In this embodiment, the linkage component 16 includes a first base 161, a second base 162, an elastic element 163, and a ball 164. The first base 161 is connected to the lower half 15, and the second base 162 is also connected to the lower half 15. The first base 161 has a circular groove 1611, and the sidewall of the groove 1611 has multiple concave arc surfaces 1612 connected to each other. The second base 162 has a ring 1621 inserted into the groove 1611, and a second mounting groove 1622. The sidewall of the ring 1621 has an opening 1623, and the second mounting groove is connected to the opening 1623. The elastic element 163 is mounted in the second mounting groove 1622. Within 622, an elastic element 163 is disposed at the opening 1623, and the elastic element 163 abuts against the ball 164, and the ball 164 is located within one of the concave arc surfaces 1612. When the upper half 14 rotates relative to the lower half 15, the first base 161 rotates, and the ball 164 moves within the adjacent concave arc surface 1612. The elastic element 163 is preferably a spring, and the ball can be a steel ball, a silicone column, or a ball made of other materials. However, the ball is preferably a steel ball because when the upper half rotates relative to the lower half, it can make a clicking sound, which can achieve a decompression effect. However, materials similar to silicone are also acceptable. Although the sound is not loud, it still provides a tactile feel, allowing the user to achieve a decompression sensation.
[0031] In this embodiment, multiple concave arc surfaces 1612 are connected to the sidewalls of the grooves 1611. It is better to design the concave arc surfaces 1612 to be relatively dense, because this will result in a stronger tactile feel and achieve a better decompression effect.
[0032] In summary, the wireless charger in this embodiment has multiple charging positions for users to charge different electronic devices, and can also support mobile phones. The angle of the supported mobile phone can be adjusted to enhance the user experience. Furthermore, when not using the wireless charger, it can also be used as a stress-relieving toy, increasing the charger's practicality and greatly enhancing the user experience.
[0033] It should be understood that the application of this utility model is not limited to the examples above. Those skilled in the art can make improvements or modifications based on the above description, and all such improvements and modifications should fall within the protection scope of the appended claims.
Claims
1. A wireless charger, characterized in that, The charger includes a charger body (1) and a first support component (2). The charger body (1) is provided with a first storage slot (11). The first support component (2) is movably connected to the charger body (1) and can be folded into the first storage slot (11). The first support component (2) includes a first connector (21) and a first support base (22). One end of the first connector (21) is movably connected to the charger body (1), and the first support base (22) is movably disposed at the other end of the first connector (21). The first support base (22) is provided with a first magnetic induction charging position (23).
2. A wireless charger according to claim 1, characterized in that, The charger body (1) is cylindrical in shape.
3. A wireless charger according to claim 1 or 2, characterized in that, The first storage slot (11) is disposed on the top surface of the charger body (1). The first storage slot (11) is provided with a first mounting slot (111). When the first support component (2) is folded into the first storage slot (11), the first connector (21) is located in the first mounting slot (111), and the first support base (22) is located in the first storage slot (11).
4. A wireless charger according to claim 3, characterized in that, The charger body (1) has a notch (101) on the upper side of its sidewall. The notch (101) communicates with the first storage slot (11) and the first mounting slot (111). The end of the first connector (21) with the first support base (22) can be rotated away from the first storage slot (11) through the notch (101).
5. A wireless charger according to claim 4, characterized in that, The first support base (22) is connected to the top end of the first connector (21), and the first support base (22) can rotate along the width extension direction of the first connector.
6. A wireless charger according to claim 1, characterized in that, The charger also includes a second support base (3). The outer side of the side wall of the charger body (1) is provided with a second storage groove (12). The second support base (3) is movably connected to the charger body (1). The second support base (3) can be folded into the second storage groove (12). The second support base (3) can be rotated to be perpendicular to the side wall of the charger body (1). The second support base (3) is provided with a second magnetic induction charging position (31).
7. A wireless charger according to claim 6, characterized in that, The charger also includes a third support base (4), and a third storage groove (13) is provided on the outer side wall of the charger body (1). The third support base (4) is movably connected to the charger body (1), and the second support base (3) can be folded into the third storage groove (13). The third support base (4) can be rotated to be perpendicular to the side wall of the charger body (1). A third magnetic induction charging position (41) is provided on the third support base (4).
8. A wireless charger according to any one of claims 1 or 2, characterized in that, The charger body (1) includes an upper part (14), a lower part (15) and a linkage component (16). The first support component (2) is disposed on the upper part (14), and the lower part (15) and the upper part (14) can rotate continuously through the linkage component (16).
9. A wireless charger according to claim 8, characterized in that, The linkage assembly (16) includes a first base (161), a second base (162), an elastic element (163), and a ball (164). The first base (161) is connected to the lower half (15), and the second base (162) is connected to the lower half (15). The first base (161) has a circular groove (1611), and the sidewall of the groove (1611) has multiple concave arc surfaces (1612) connected to each other. The second base (162) has a ring (1621) inserted into the groove (1611), and the second base (162) also has a second mounting groove (164). 22) An opening (1623) is provided on the side wall of the ring (1621), the second mounting groove (1622) is connected to the opening (1623), the elastic element (163) is installed in the second mounting groove (1622), the elastic element (163) is located at the opening (1623), and the elastic element (163) abuts against the ball (164), and the ball (164) is located in one of the concave arc surfaces (1612). When the upper half (14) rotates relative to the lower half (15), the first chassis (161) rotates, and the ball (164) moves in the adjacent concave arc surface (1612).
10. A wireless charger according to claim 9, characterized in that, Multiple concave arc surfaces (1612) are connected and cover the sidewalls of the groove (1611).