Wireless charging device capable of being adjusted and automatically overturned

The wireless charging module can be automatically flipped by driving the connecting shaft through a driving component, which solves the problem of difficulty in controlling the force of manual flipping and improves the ease of use.

CN223785787UActive Publication Date: 2026-01-09SHENZHEN ICANLE TECH CO LTD
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Patent Information

Application Number
CN202423308764.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2026-01-09
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

Existing wireless charging modules are inconvenient to use because the force applied when manually flipping them is difficult to control.

Method used

The drive component drives the connecting shaft, enabling the first charging module to automatically flip. The flipping range is increased by setting an L-shaped shaft and a clearance groove, and a drive fixing bracket and sliding component are provided to achieve convenient control of the wireless charging module.

Benefits of technology

It enables automatic flipping of the wireless charging module, making it easy to control, reducing the difficulty of applying force, and improving the user experience.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223785787U_ABST
Patent Text Reader

Abstract

The utility model relates to the field of wireless charging devices, and provides an adjustable wireless charging device capable of turning over automatically, so as to solve the problem that an existing wireless charging module is turned over manually, and the force is not easy to control. Comprising a shell; the first charging module is used for wireless charging; the driving part is arranged in the shell; one end of the connecting rotating shaft is connected with the driving piece, and the other end penetrates out of the shell and is connected with the first charging module; the connecting rotating shaft is driven by the driving part to move so as to drive the first charging module to overturn relative to the shell.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of wireless charging devices, and more particularly to an adjustable automatic turnover wireless charging device. BACKGROUND

[0002] The prior art wireless charging device, especially the wireless charging device for Apple mobile phones, has a transformer with a main body module, a wireless charging module is arranged above the main body module, and the wireless charging module can be manually turned over to adjust the angle, so that the mobile phone can be used while charging or not charging to browse the mobile phone screen. Among them, the mobile phone is fixed on the wireless charging module because a magnet is arranged on the wireless charging module, and a corresponding magnet attracting module is arranged on the back of the mobile phone to be attracted to the wireless charging module.

[0003] However, the existing wireless charging module is manually turned over, and the force is not easy to control because the wireless charging module itself needs to bear the mobile phone, and the hinge shaft position needs to have a large damping characteristic.

[0004] Therefore, the prior art still needs to be improved. CONTENT OF THE INVENTION

[0005] The purpose of the present application is to provide an adjustable automatic turnover wireless charging device to solve the problem that the existing wireless charging module is manually turned over and the force is not easy to control.

[0006] To achieve the above purpose, the technical scheme adopted by the embodiments of the present application is:

[0007] An adjustable automatic turnover wireless charging device, comprising:

[0008] a housing;

[0009] a first charging module for wireless charging;

[0010] a drive member arranged in the housing;

[0011] a connecting shaft, one end of which is connected to the drive member and the other end of which passes through the housing and is connected to the first charging module;

[0012] The connecting shaft is movable by the driving of the drive member to drive the first charging module to turn over relative to the housing.

[0013] According to the above adjustable automatic turnover wireless charging device, the connecting shaft is provided in the shape of an L-shaped shaft.

[0014] According to the above adjustable automatic turnover wireless charging device, the first charging module is provided with a clearance groove.

[0015] According to the adjustable automatic turnover wireless charging device, the inner wall of the shell is provided with a first mounting plate extending transversely, the fixed end of the driving member is arranged on the first mounting plate, the driving shaft of the driving member penetrates through the first mounting plate and is connected with the connecting shaft.

[0016] According to the adjustable automatic turnover wireless charging device, the wireless charging device further comprises:

[0017] The driving fixed support is clamped on the outer side of the driving member, and the two ends of the driving fixed support are connected with the first mounting plate respectively.

[0018] According to the adjustable automatic turnover wireless charging device, the shell has an inner cavity, the outer side of the shell is provided with a first mounting groove, and the wireless charging device further comprises:

[0019] The control mainboard is arranged in the shell and connected with the driving member;

[0020] The display screen is arranged in the first mounting groove and connected with the control mainboard.

[0021] According to the adjustable automatic turnover wireless charging device, the side, away from the inner cavity, of the first mounting groove is provided with a second mounting groove in the shell, and the wireless charging device further comprises:

[0022] The lens is arranged in the second mounting groove;

[0023] The switch is arranged on the lens and connected with the control mainboard.

[0024] According to the adjustable automatic turnover wireless charging device, the shell has an inner cavity, a first receiving opening is formed through one side of the shell, and the wireless charging device further comprises:

[0025] The receiving box is fixedly arranged in the shell;

[0026] The sliding assembly is slidingly arranged on the receiving box;

[0027] The second charging module is connected with the sliding assembly, the second charging module slides relative to the receiving box through the sliding assembly and is used for extending out of the first receiving opening or retracting into the first receiving opening, and the second charging module is used for wireless charging.

[0028] According to the adjustable automatic turnover wireless charging device, a second receiving opening is formed through one side of the receiving box, and third mounting grooves are formed at both ends in the receiving box, and the sliding assembly comprises:

[0029] Two sliding rods are arranged in the corresponding third mounting grooves respectively;

[0030] The connecting seat is connected with the second charging module, both ends of the connecting seat are provided with sleeves, and the sleeves are slidably sleeved on corresponding sliding rods;

[0031] The second charging module slides relative to the storage box through the sliding assembly and is used for sequentially extending out of the second storage opening and the first storage opening or being retracted into the second storage opening.

[0032] According to the adjustable automatic overturning wireless charging device, the two sides of the storage box are respectively provided with the first limiting part and the second limiting part, and one side end of the second charging module is slidably arranged in the first limiting part and the second limiting part.

[0033] The adjustable automatic overturning wireless charging device provided by the application has at least the following beneficial effects:

[0034] The driving member is arranged, the driving member can drive the rotation shaft to move, the first charging module is automatically overturned relative to the shell, the force problem is not considered, and the control is convenient. BRIEF DESCRIPTION OF DRAWINGS

[0035] In order to more clearly illustrate the technical solutions in the embodiments of the application, the following will briefly introduce the drawings needed to be used in the embodiments or prior art description. Obviously, the drawings in the following description only some embodiments of the application, and for those skilled in the art, other drawings can be obtained without creative labor on the basis of these drawings.

[0036] Figure 1 The structure diagram of the adjustable automatic overturning wireless charging device provided by the application is provided.

[0037] Figure 2 The structure diagram of the first charging module relative to the main body in the adjustable automatic overturning wireless charging device provided by the application is provided.

[0038] Figure 3 The cross-sectional view of the adjustable automatic overturning wireless charging device provided by the application is provided.

[0039] Figure 4 The cross-sectional view of the first charging module relative to the main body in the adjustable automatic overturning wireless charging device provided by the application is provided.

[0040] Figure 5 The structure diagram of the main body in the adjustable automatic overturning wireless charging device provided by the application is provided.

[0041] Figure 6 The explosion view of the adjustable automatic overturning wireless charging device provided by the application is provided.

[0042] Figure 7 A structure diagram of a front shell of an adjustable and automatic overturning wireless charging device is provided.

[0043] Figure 8 A structure diagram of a receiving box of an adjustable and automatic overturning wireless charging device is provided.

[0044] Figure 9 An exploded view of a receiving box of an adjustable and automatic overturning wireless charging device is provided.

[0045] Figure 10 A structure diagram of a receiving upper cover of an adjustable and automatic overturning wireless charging device is provided.

[0046] Figure 11 A structure diagram of a second charging module penetrating a first receiving port of an adjustable and automatic overturning wireless charging device is provided.

[0047] In the drawings, various reference numerals refer to various identical or similar elements.

[0048] 1, shell; 11, main body; 111, first mounting port; 113, third mounting port; 114, first receiving port; 115, second mounting plate; 116, placing groove; 12, front shell; 121, first mounting plate; 122, first clamping tooth; 13, rear shell; 14, driving fixed support; 2, first charging module; 21, avoiding groove; 22, heat dissipation part; 3, driving part; 31, driving shaft; 4, connecting shaft; 41, second clamping tooth; 51, control mainboard; 52, display screen; 61, lens; 62, switch; 71, receiving box; 711, second receiving port; 712, third mounting groove; 714, first limiting part; 715, second limiting part; 716, receiving upper cover; 717, receiving lower cover; 72, sliding assembly; 721, sliding rod; 722, connecting seat; 723, sleeve; 73, second charging module. DETAILED DESCRIPTION

[0049] In order to make the technical problems, technical solutions and beneficial effects of the present application clearer, the present application will be further described in detail below in combination with the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application and not to limit the present application.

[0050] It should be noted that when a component is referred to as being "fixed to" or "set to" another component, it can be directly or indirectly on the other component. When a component is referred to as being "connected to" another component, it can be directly or indirectly connected to the other component. The terms "upper", "lower", "left", "right", "front", "back", "vertical", "horizontal", "top", "bottom", "inner", "outer", and the like indicate the orientation or position shown in the drawings, and are only for the convenience of description, and cannot be understood as a limitation on the technical solutions. The terms "first", "second" are only for the convenience of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of technical features. The meaning of "a plurality of" is two or more, unless otherwise specifically limited.

[0051] The prior art wireless charging device, especially the wireless charging device for Apple mobile phones, has a transformer with a main body module, a wireless charging module is arranged above the main body module, and the wireless charging module can be manually flipped to adjust the angle, so that the mobile phone can be used while charging or not charging, and the mobile phone screen can be browsed. Among them, the mobile phone is fixed on the wireless charging module, because a magnet is arranged on the wireless charging module, and a corresponding magnet attracting module is arranged at the charging position on the back of the mobile phone, which is used to stick to the wireless charging module.

[0052] However, the existing wireless charging module is manually flipped, and the force is not easy to control, because the wireless charging module itself needs to bear the mobile phone, and the hinge shaft position needs to have a large damping characteristic.

[0053] Therefore, referring to Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 6 , the embodiment of the present application provides a wireless charging device capable of adjusting automatic flipping, which comprises a shell 1, a first charging module 2, a driving member 3 and a connecting shaft 4, a first installation opening 111 is arranged on the shell 1, the first charging module 2 is arranged above the shell 1 and is used for wireless charging, the fixed end of the driving member 3 is arranged in the shell 1, one end of the connecting shaft 4 is connected with the driving shaft 31 of the driving member 3, the other end of the connecting shaft 4 is arranged outside the first installation opening 111 and is connected with the first charging module 2, and the driving member 3 is arranged in the embodiment. The connecting shaft 4 can be driven by the driving member 3 to move, so as to drive the first charging module 2 to automatically flip relative to the shell 1, without considering the force problem, and the control is convenient.

[0054] Optionally, referring to Figure 1 , Figure 5 and Figure 6In an embodiment, the shell 1 comprises a main body 11, a front shell 12 and a rear shell 13, the first charging module 2 is arranged above the main body 11, the first mounting port 111 is arranged on the upper surface of the main body 11, the main body 11 has an inner cavity, the front side and the rear side of the main body 11 are respectively provided with a second mounting port (not shown in the figure) and a third mounting port 113, the front shell 12 is arranged in the second mounting port and closes the second mounting port, and the rear shell 13 is arranged in the third mounting port 113 and closes the third mounting port 113.

[0055] In the embodiment, the second mounting port and the third mounting port 113 are arranged on the front side and the rear side of the main body 11, so that the driving member 3 and the connecting rotating shaft 4 can be conveniently arranged in the inner cavity of the main body 11 through the second mounting port and the third mounting port 113, and after the driving member 3 and the connecting rotating shaft 4 are arranged, the front shell 12 and the rear shell 13 are arranged on the main body 11 to close the second mounting port and the third mounting port 113 respectively.

[0056] Optionally, referring to Figure 4 In an embodiment, the first charging module 2 is provided with a avoiding groove 21, and the avoiding groove 21 can make the first charging module 2 have a larger range of turning relative to the shell 1, so as to improve the turning angle of the first charging module 2.

[0057] Optionally, referring to Figure 6 In an embodiment, the first charging module 2 is provided with a heat dissipation part 22, and the heat dissipation part 22 can help to dissipate heat of the first charging module 2. The heat dissipation part 22 comprises a plurality of heat dissipation holes arranged at intervals.

[0058] Optionally, in an embodiment, the first charging module 2 can be a mobile phone charging module.

[0059] Optionally, referring to Figure 6 and Figure 7 The main body 11 has an inner cavity, the first mounting plate 121 is arranged on the middle part of the side close to the inner cavity of the front shell 12 and extends transversely, the fixed end of the driving member 3 is arranged on the first mounting plate 121, and the driving shaft 31 of the driving member 3 is connected with the connecting rotating shaft 4 through the first mounting plate 121. The first mounting plate 121 can facilitate the fixation of the driving member 3.

[0060] Optionally, in an embodiment, the driving member 3 can be a stepping motor.

[0061] Optionally, referring to Figure 3 and Figure 4 In an embodiment, the connecting rotating shaft 4 is in the shape of an L-shaped rotating shaft.

[0062] Optionally, referring to Figure 3 andFigure 7 In an embodiment, the side wall of the front shell 12 is provided with a first clamping tooth 122, the first clamping tooth 122 is provided as a resilient clamping tooth, the connecting rotating shaft 4 is provided with a second clamping tooth 41 matched with the first clamping tooth 122, and the second clamping tooth 41 abuts against the first clamping tooth 122. When the connecting rotating shaft 4 of the embodiment is driven to move by the driving member 3, the second clamping tooth 41 on the connecting rotating shaft 4 will be blocked by the first clamping tooth 122 to hinder the movement of the first clamping tooth, so as to slow down the overturning speed of the connecting rotating shaft 4, thereby making the overturning angle of the connecting rotating shaft 4 more refined and convenient to control.

[0063] Optionally, referring to Figure 6 In an embodiment, the wireless charging device further comprises a driving fixed support 14, the middle part of the driving fixed support 14 is clamped on the outer side of the driving member 3, and the two ends of the driving fixed support 14 are respectively connected with the first mounting plate 121. Through the above arrangement, the driving member 3 can be not only firmly mounted on the first mounting plate 121, but also the vibration generated by the driving member 3 during driving can be reduced.

[0064] Optionally, referring to Figure 3 and Figure 6 In an embodiment, a first mounting groove (not shown in the figure) is formed on the side of the front shell 12 away from the inner cavity, the wireless charging device further comprises a control mainboard 51 and a display screen 52, the control mainboard 51 is arranged in the inner cavity and connected with the driving member 3, and the display screen 52 is arranged in the first mounting groove and connected with the control mainboard 51. In the embodiment, the charging parameter data corresponding to the wireless charging device can be displayed through the display screen 52, and the driving member 3 can be conveniently controlled to drive the first charging module 2 to automatically overturn through the control mainboard 51.

[0065] The display screen 52 can be a touch display screen or a non-touch display screen. When the display screen 52 is a touch display screen, the overturning angle of the first charging module 2 driven by the driving member 3 can be operated through the touch keys on the touch display screen.

[0066] Optionally, referring to Figure 1 and Figure 6 In an embodiment, a second mounting groove (not shown in the figure) is formed between the side of the front shell 12 away from the inner cavity and the main body 11, the wireless charging device further comprises a lens 61 and a switch 62, the lens 61 is arranged in the second mounting groove, and the switch 62 is arranged on the lens 61 and connected with the control mainboard 51. In the embodiment, the driving of the driving member 3 can be directly controlled through the external switch 62, without using the touch display screen 52, but only using the non-touch display screen 52, thereby saving cost and making the use of the external switch 62 very convenient.

[0067] It is worth mentioning that since the lens 61 is transparent, the picture of the display screen 52 can be seen through the lens 61.

[0068] Optionally, referring to Figure 1 In an embodiment, the switch 62 can be set as a touch switch 62.

[0069] Optionally, referring to Figure 5 , Figure 8 and Figure 9 In an embodiment, a first receiving opening 114 is formed through the left side of the main body 11, and a second mounting plate 115 is arranged in the middle of the inner cavity of the main body 11. The wireless charging device further comprises a receiving box 71, a sliding assembly 72 and a second charging module 73. The receiving box 71 is fixedly arranged on the second mounting plate 115, the sliding assembly 72 is arranged on the receiving box 71, and the second charging module 73 is connected with the sliding assembly 72. The second charging module 73 slides relative to the receiving box 71 through the sliding assembly 72 and is used to extend out of the first receiving opening 114 or retract into the first receiving opening 114.

[0070] In the embodiment, the second charging module 73 can be used for wireless charging of articles such as watches. The second charging module 73 can slide relative to the receiving box 71 through the sliding assembly 72 and be used to extend out of the first receiving opening 114 or retract into the first receiving opening 114. It can be predicted that when the second charging module 73 is used, the second charging module 73 can be slid and extended out of the first receiving opening 114 to facilitate charging of earphones. When the second charging module 73 is not used, the second charging module 73 can be slid and retracted into the first receiving opening 114 to save the occupied space of the second charging module 73.

[0071] Optionally, in an embodiment, the second charging module can be set as a watch charging module.

[0072] Optionally, referring to Figure 5 In an embodiment, the second mounting plate 115 is arranged obliquely in the middle of the inner cavity of the main body 11. In the embodiment, the second mounting plate 115 is arranged obliquely, which can reduce the occupied space of the second mounting plate 115 in the inner cavity.

[0073] Optionally, referring to Figure 9 and Figure 11In an embodiment, the left side of the storage box 71 is provided with a second storage opening 711, and the front and back ends of the storage box 71 are provided with third mounting grooves 712. The sliding assembly 72 includes two sliding rods 721 and a connecting seat 722. The two sliding rods 721 are respectively arranged in the corresponding third mounting grooves 712. The connecting seat 722 is connected with the second charging module 73. The two ends of the connecting seat 722 are provided with sleeves 723. The sleeves 723 are slidably arranged on the corresponding sliding rods 721. The second charging module 73 of the embodiment slides relative to the sliding rods 721 through the sleeves 723, and then slides relative to the storage box 71, and is used for sequentially extending out of the second storage opening 711 and the first storage opening 114, or sequentially retracting into the first storage opening 114 and the second storage opening 711.

[0074] Optionally, referring to Figure 9 and Figure 10 In an embodiment, the left side of the storage box 71 is provided with a second storage opening 711, and the front and back ends of the storage box 71 are provided with third mounting grooves 712. The sliding assembly 72 includes two sliding rods 721 and a connecting seat 722. The two sliding rods 721 are respectively arranged in the corresponding third mounting grooves 712. The connecting seat 722 is connected with the second charging module 73. The two ends of the connecting seat 722 are provided with sleeves 723. The sleeves 723 are slidably arranged on the corresponding sliding rods 721. The second charging module 73 of the embodiment slides relative to the sliding rods 721 through the sleeves 723, and then slides relative to the storage box 71, and is used for sequentially extending out of the second storage opening 711 and the first storage opening 114, or sequentially retracting into the first storage opening 114 and the second storage opening 711.

[0075] In an embodiment, the left side of the storage box 71 is provided with a second storage opening 711, and the front and back ends of the storage box 71 are provided with third mounting grooves 712. The sliding assembly 72 includes two sliding rods 721 and a connecting seat 722. The two sliding rods 721 are respectively arranged in the corresponding third mounting grooves 712. The connecting seat 722 is connected with the second charging module 73. The two ends of the connecting seat 722 are provided with sleeves 723. The sleeves 723 are slidably arranged on the corresponding sliding rods 721. The second charging module 73 of the embodiment slides relative to the sliding rods 721 through the sleeves 723, and then slides relative to the storage box 71, and is used for sequentially extending out of the second storage opening 711 and the first storage opening 114, or sequentially retracting into the first storage opening 114 and the second storage opening 711.

[0076] Optionally, referring to Figure 9 In an embodiment, the storage box 71 includes a storage upper cover 716 and a storage lower cover 717. The first limiting portion 714 and the second limiting portion 715 are respectively arranged on the left and right sides of the storage upper cover 716. The storage lower cover 717 is arranged below the storage upper cover 716 and is combined with the storage upper cover 716 to form the storage box 71.

[0077] Optionally, referring to Figure 2 and Figure 6In an embodiment, a placing groove 116 is formed on the top of the main body 11, and the wireless charging device further comprises a third charging module (not shown in the figure), which is arranged in the main body 11 and on the side close to the placing groove 116. In this embodiment, the third charging module can be used for wireless charging of earphones and other articles. In this embodiment, the placing groove 116 is arranged to facilitate the storage of earphones and other articles.

[0078] Optionally, in an embodiment, the third charging module can be arranged as an earphone charging module.

[0079] In summary, the application provides a wireless charging device capable of automatic flipping adjustment, which comprises a shell 1, a first charging module 2, a driving member 3, and a connecting shaft 4. A first mounting port 111 is formed through the shell 1. The first charging module 2 is arranged above the shell 1 and is used for wireless charging. The fixed end of the driving member 3 is arranged in the shell 1. One end of the connecting shaft 4 is connected with the driving shaft 31 of the driving member 3, and the other end of the connecting shaft 4 is arranged to pass through the first mounting port 111 and is connected with the first charging module 2. In this application, the connecting shaft 4 is driven by the driving member 3 to move, so as to drive the first charging module 2 to automatically flip relative to the shell 1. The force problem does not need to be considered, and the control is convenient.

[0080] The above only describes the preferred embodiments of the application and is not intended to limit the application. Any modification, equivalent replacement, and improvement within the spirit and principle of the application should be included in the protection scope of the application.

Claims

1. An adjustable automatic flip wireless charging device, characterized in that, The utility model relates to a wireless charging device, including: A shell; A first charging module for wireless charging; A drive part arranged in the shell; A connecting rotating shaft, one end of which is connected with the drive part and the other end of which passes through the shell and is connected with the first charging module; The connecting rotating shaft is driven by the drive part to drive the first charging module to turn over relative to the shell.

2. The adjustable auto-reversing wireless charging device of claim 1, wherein, The connecting rotating shaft is shaped as an L-shaped rotating shaft.

3. The adjustable auto-reversing wireless charging device of claim 1, wherein, The first charging module is provided with an avoiding groove.

4. The adjustable auto-reversing wireless charging device of claim 1, wherein, The inner wall of the shell is provided with a first mounting plate extending transversely, the fixed end of the drive part is arranged on the first mounting plate, the drive shaft of the drive part passes through the first mounting plate and is connected with the connecting rotating shaft.

5. The adjustable auto-reversing wireless charging device of claim 4, wherein, The wireless charging device further includes: A drive fixed support clamped on the outer side of the drive part, both ends of the drive fixed support being connected with the first mounting plate respectively.

6. The adjustable auto-reversing wireless charging device of claim 3, wherein, The shell has an inner cavity, a first mounting groove is formed on the outer side of the shell, and the wireless charging device further includes: A control mainboard arranged in the shell and connected with the drive part; A display screen arranged in the first mounting groove and connected with the control mainboard.

7. The adjustable auto-reversing wireless charging device of claim 6, wherein, A second mounting groove is arranged between the side of the first mounting groove away from the inner cavity and the shell, and the wireless charging device further includes: A lens arranged in the second mounting groove; A switch arranged on the lens and connected with the control mainboard.

8. The adjustable auto-reversing wireless charging device of claim 1, wherein, The shell has an inner cavity, a first receiving opening is formed through one side of the shell, and the wireless charging device further includes: A receiving box fixedly arranged in the shell; A sliding assembly slidingly arranged on the receiving box; A second charging module connected with the sliding assembly, the second charging module sliding relative to the receiving box through the sliding assembly and being used for extending out of the first receiving opening or being retracted into the first receiving opening, and the second charging module is used for wireless charging.

9. The adjustable auto-reversing wireless charging device of claim 8, wherein, A second receiving opening is formed through one side of the receiving box, and third mounting grooves are formed at both ends in the receiving box, and the sliding assembly includes: Two sliding rods arranged in the corresponding third mounting grooves respectively; A connecting seat connected with the second charging module, both ends of the connecting seat being provided with sleeves, and the sleeves slidingly sleeving the corresponding sliding rods; The second charging module sliding relative to the receiving box through the sliding assembly and being used for extending out of the second receiving opening and the first receiving opening in sequence or being retracted into the second receiving opening.

10. The adjustable auto-reversing wireless charging device of claim 8, wherein, First and second limiting portions are arranged on both sides of the receiving box respectively, and one end of the second charging module slidingly arranged in the first limiting portion and the second limiting portion.