Magnetic wireless charging bracket

By designing a sliding reset mechanism and a wire hole for the magnetic wireless charging bracket, the problem of misalignment in wireless charging positions for mobile terminals of different sizes was solved, improving charging efficiency and ensuring stability and reliability.

CN223957318UActive Publication Date: 2026-02-27SHENZHEN TUOXINYUAN TECH CO LTD
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Patent Information

Application Number
CN202520089809.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-13
Publication Date
2026-02-27
Estimated Expiration
2035-01-13

AI Technical Summary

Technical Problem

Existing wireless charging stands cannot be effectively adjusted to accommodate mobile devices of different sizes, resulting in misalignment of the wireless charging induction coil and affecting charging efficiency.

Method used

A magnetic wireless charging bracket is designed, including a magnetic wireless charging base, a support member, and a reset member. The sliding and reset mechanism ensures the wireless charging receiver is aligned, and the design of multiple wire holes maintains the stability of the electrical connection.

Benefits of technology

This ensures that the wireless charging receivers of mobile terminals of different sizes are always aligned, improving charging efficiency and ensuring stability and reliability during use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a magnetic attraction wireless charging support which comprises a magnetic attraction wireless charging base, a supporting piece used for installing the magnetic attraction wireless charging base and a reset piece used for providing reset acting force for the magnetic attraction wireless charging base, and supporting feet are arranged at the lower end of the supporting piece. When the mobile terminal is adsorbed on the adsorption surface, the magnetic wireless charging seat slides relative to the supporting piece under the gravity action of the mobile terminal until the lower end of the mobile terminal is supported by the supporting legs; after the mobile terminal is taken away, the magnetic wireless charging seat automatically resets upwards under the reset acting force of the reset piece; the positions of wireless charging receivers of mobile terminals with different sizes can be always kept aligned with the magnetic wireless charging seat, so that the charging efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to magnetic attraction wireless charging support technical field especially a kind of magnetic attraction wireless charging support. BACKGROUND

[0002] With the widespread application of electronic equipment, the application of mobile phone, wireless earphone and rechargeable watch has been more and more widely, especially mobile phone has become the necessity of people's life, these electronic equipment function application is more, and use time is long, and mobile phone support plays a fixed, supporting mobile phone placement position, general structure is by clamp head or suction cup plus a base, so mobile phone support plays a supporting role, has the effect of freeing hands.

[0003] The utility model patent with application number 201620912277.6 discloses a "support type wireless charging device", which comprises a face shell and a positioning support. The wireless charging induction coil and the wireless charging control module are arranged in the face shell. The rotating position of the positioning support can be adjusted according to the needs, and the wireless charging device can be "stood up", so that the mobile phone can be charged vertically.

[0004] However, it has the following defects: since the position of the support wireless charging is fixed, the position of the supporting leg is also fixed. When a mobile phone of different sizes is placed on the supporting leg, the wireless charging position of the mobile phone may be higher or lower than the position of the wireless charging induction coil of the support. In this way, the wireless charging induction coil is not aligned, which affects the charging efficiency.

[0005] Therefore, in the utility model patent application, the applicant carefully studies a magnetic attraction wireless charging support to solve the above problems. CONTENT OF UTILITY MODEL

[0006] The utility model mainly aims at providing a magnetic attraction wireless charging support, which can keep the position of the wireless charging receiver of a mobile terminal of different sizes aligned with the magnetic attraction wireless charging seat at all times, thereby improving the charging efficiency.

[0007] To achieve the above purpose, the utility model adopts the following technical solutions:

[0008] A magnetic attraction wireless charging support comprises a magnetic attraction wireless charging seat, a supporting member for mounting the magnetic attraction wireless charging seat, and a resetting member for providing a resetting force to the magnetic attraction wireless charging seat. The lower end of the supporting member is provided with a supporting leg.

[0009] When the mobile terminal is adsorbed on the adsorption surface, the magnetic attraction wireless charging seat slides relative to the supporting member under the gravity of the mobile terminal until the lower end of the mobile terminal is supported by the supporting leg.

[0010] When the mobile terminal is taken away, the magnetic wireless charging base is automatically reset upward under the resetting force of the resetting member.

[0011] As a preferred solution, the support member is provided with a sliding groove extending along the up-down direction.

[0012] The magnetic wireless charging base is connected with a sliding block slidingly arranged in the sliding groove and reciprocally moving along the sliding groove.

[0013] The sliding block is connected with a connecting member, the connecting member is connected with the sliding block to reciprocally move along the sliding groove with the sliding block, and the resetting member is arranged between the magnetic wireless charging base and the connecting member.

[0014] As a preferred solution, the sliding block and the connecting member are respectively located on opposite sides of the sliding groove, and the sliding block is connected with the connecting member through the sliding groove.

[0015] Alternatively, the sliding block and the connecting member are both located on the same side of the sliding groove.

[0016] As a preferred solution, the supporting leg is an adjustable supporting leg adjustable upward and downward relative to the support member.

[0017] As a preferred solution, the resetting member is provided with two and respectively located on the left and right sides of the connecting member.

[0018] As a preferred solution, the connecting member is provided with a first wire passing hole, the magnetic wireless charging base comprises a wireless charging shell and a charging coil arranged in the wireless charging shell, a second wire passing hole for communicating the inside of the wireless charging shell is arranged on the rear end surface of the wireless charging shell, a third wire passing hole is arranged on the sliding block, a charging port is arranged on the support member, a control panel is electrically connected with the charging port, a wire is connected with the control panel, and the wire is sequentially arranged through the first wire passing hole, the sliding groove, the third wire passing hole and the second wire passing hole and electrically connected with the charging coil.

[0019] As a preferred solution, the connecting member is provided with a wire arranging groove, one end of the wire arranging groove is communicated with the first wire passing hole, and a wire clamping member for clamping the wire is arranged on the connecting member along the extension direction of the wire arranging groove.

[0020] The wire is first arranged along the wire arranging groove and fitted in the wire clamping member, and then enters the sliding groove from the first wire passing hole.

[0021] As a preferred solution, the lower end of the connecting member is provided with an extension part for shielding the sliding groove to prevent foreign matters from entering the support member.

[0022] As a preferred solution, the support member is a shell comprising a front shell and a rear shell, the middle part of the front shell is inwardly recessed to form a recess structure, and the sliding groove is arranged in the recess structure.

[0023] The recessed structure comprises

[0024] The first arc segment extends downward from the upper end of the front shell in the vertical direction, the oblique segment extends from the first arc segment to the middle part of the front shell, and the second arc segment extends downward from the oblique segment to the lower end of the front shell;

[0025] The third arc segment extends downward from the left end of the front shell to the open slot in the left-right direction, and the fourth arc segment extends downward from the right end of the front shell to the open slot in the left-right direction;

[0026] The magnetic wireless charging base has a wireless charging shell, and the left and right sides of the rear end face of the wireless charging shell are provided with a clearance area, which is fitted on the second arc segment, the third arc segment and the fourth arc segment when the magnetic wireless charging base is slid to the lowest position.

[0027] As a preferred solution, the support is provided with a clamping arm for clamping the mobile terminal.

[0028] Compared with the prior art, the utility model has obvious advantages and beneficial effects, specifically: it is mainly that the magnetic wireless charging base is displaced downward under the action of the gravity of the mobile terminal and is reset under the action of the reset member, can make the position of the wireless charging receiver of different size mobile terminal always keep aligning with the magnetic wireless charging base, and then improve the charging efficiency.

[0029] Secondly, one reset member is arranged on the left and right sides of the connecting member respectively, so that the connecting member will not be deviated during displacement;

[0030] Further, through the design of the plurality of wire holes, it is ensured that the magnetic wireless charging base will not be disconnected from the control panel in the moving process, so as to ensure the stability and reliability thereof in the use process;

[0031] In addition, the overall structure is designed ingeniously and reasonably, so as to ensure the stability and reliability of the product in the use process.

[0032] In order to more clearly illustrate the structural features and effects of the utility model, the following will be combined with the specific embodiments and the drawings to make a detailed description. BRIEF DESCRIPTION OF DRAWINGS

[0033] Figure 1 is a three-dimensional assembly structure schematic diagram of the embodiment of the utility model;

[0034] Figure 2 is another angle three-dimensional assembly structure schematic diagram of the embodiment of the utility model;

[0035] Figure 3 is an exploded structure schematic diagram of the embodiment of the utility model;

[0036] Figure 4is the back view of the embodiment of the utility model (not show rear shell);

[0037] Figure 5 is the third angle local solid assembly structure schematic diagram of the embodiment of the utility model (not show control panel and clamping arm);

[0038] Figure 6 is the cross section structure schematic diagram of the embodiment of the utility model;

[0039] Figure 7 is the first cross section structure schematic diagram of the support of the embodiment of the utility model (mainly show third arc segment and fourth arc segment);

[0040] Figure 8 is the second cross section structure schematic diagram of the support of the embodiment of the utility model (mainly show first arc segment, diagonal segment and second arc segment);

[0041] Figure 9 is the magnetic attraction wireless charging seat structure schematic diagram of the embodiment of the utility model (show slider);

[0042] Figure 10 is the front shell structure schematic diagram of the embodiment of the utility model;

[0043] Figure 11 is the connecting piece structure schematic diagram of the embodiment of the utility model;

[0044] Figure 12 is another angle structure schematic diagram of the connecting piece of the embodiment of the utility model.

[0045] Explanation of figure mark:

[0046] Support 10, sliding groove 101, first sliding groove 101a, second sliding groove 101b, front shell 11, recess structure 111, first arc segment 112, diagonal segment 113, second arc segment 114, third arc segment 115, fourth arc segment 116, rear shell 12, charging port 13, control panel 14, wire 141, connecting piece 15, first wire hole 151, extension 152, wire slot 153, wire clamping piece 154, hook portion 155, reset piece 16, spring groove 17, fixed column 18, spring piece 19, positioning clamping hook portion 191, supporting leg 20, positioning clamping groove 21, magnetic wireless charging base 30, wireless charging shell 301, avoidance area 302, charging coil 303, second wire hole 304, wireless charging front support 31, wireless charging rear support 32, groove 321, sliding block 33, third wire hole 331, limiting step portion 332, clamping arm 40, support plate 41, fourth wire hole 411, left gear 42, left arm 43, right gear 44, right arm 45, first elastic piece 46, rotating piece 47, hook portion 471, second elastic piece 48, button 49, air outlet connecting portion 50. DETAILED DESCRIPTION

[0047] The utility model will be further described below in combination with the drawings and specific embodiments.

[0048] As Figures 1 to 12 shown, a magnetic wireless charging support includes a magnetic wireless charging base 30, a support 10 for installing the magnetic wireless charging base 30, and a reset piece 16 for providing a reset force to the magnetic wireless charging base 30. The lower end of the support 10 is provided with a supporting leg 20.

[0049] The support 10 is provided with a sliding groove 101 extending upward and downward. The rear end surface of the support 10 is provided with an air outlet connecting portion 50 for connecting an air outlet of a vehicle.

[0050] The magnetic wireless charging base 30 is connected with a sliding block 33 slidingly installed in the sliding groove 101 and reciprocally moving along the sliding groove 101.

[0051] The sliding block 33 is connected with a connecting piece 15. The connecting piece 15 is connected with the sliding block 33 to reciprocally move along the sliding groove 101 with the sliding block 33. The reset piece 16 is arranged between the magnetic wireless charging base 30 and the connecting piece 15.

[0052] The sliding block 33 and the connecting piece 15 are respectively located at opposite sides of the sliding groove 101. The sliding block 33 is connected with the connecting piece 15 by penetrating the sliding groove 101.

[0053] Alternatively, the sliding block 33 and the connecting piece 15 are both located at the same side of the sliding groove 101.

[0054] In the embodiment, the sliding block 33 and the connecting piece 15 are respectively located at the front and rear sides of the sliding groove 101.

[0055] The support 10 is provided with a charging port 13, the charging port 13 is electrically connected with a control board 14, and the control board 14 is connected with a wire 141. The control board 14 is located in the support 10. The support 10 is provided with a connecting piece 15.

[0056] In the embodiment, the support 10 is a shell, which includes a front shell 11 and a rear shell 12. The air outlet connecting part 50 is arranged on the rear end surface of the rear shell 12.

[0057] The middle part of the front shell 11 is inwardly recessed to form a recess structure 111, and the sliding groove 101 is located in the recess structure 111. The recess structure 111 includes

[0058] a first arc-shaped section 112 extending downward from the upper end of the front shell 11 in the vertical direction, a slanted section 113 extending from the first arc-shaped section 112 to the middle part of the front shell 11, and a second arc-shaped section 114 extending downward from the slanted section 113 to the lower end of the front shell 11;

[0059] a third arc-shaped section 115 extending downward from the left end of the front shell 11 to the opening groove in the left-right direction, and a fourth arc-shaped section 116 extending downward from the right end of the front shell 11 to the opening groove in the left-right direction.

[0060] The magnetic wireless charging base 30 has a wireless charging shell 301, and the left and right sides of the rear end surface of the wireless charging shell 301 are provided with avoiding areas 302.

[0061] In the embodiment, the magnetic wireless charging base 30 includes a wireless charging shell 301 and a charging coil 303 located in the wireless charging shell 301. The rear end surface of the wireless charging shell 301 is provided with a second wire passing hole 304 for communicating the inside of the wireless charging shell 301. The wireless charging shell 301 includes a wireless charging front support 31 and a wireless charging rear support 32 which are spliced together. The inner front wall of the wireless charging rear support 32 is concavely provided with a recess 321, and the second wire passing hole 304 is arranged on the recess 321 and penetrates through the wireless charging rear support 32.

[0062] The magnetic wireless charging base 30 is used for magnetically attracting and wirelessly charging a mobile terminal. The front end surface of the magnetic wireless charging base 30 is an adsorbing surface, and the magnetic wireless charging base 30 is connected with a sliding block 33 which is slidingly arranged in the sliding groove 101 and reciprocally moves along the sliding groove 101.

[0063] In the embodiment, the sliding groove 101 comprises a first sliding groove 101a and a second sliding groove 101b recessed inward from the inner side wall of the first sliding groove 101a to communicate the inside of the support 10, and the sliding block 33 is provided with a limiting step portion 332 which is slidingly fitted in the first sliding groove 101a and the sliding block 33 is slidingly fitted in the second sliding groove 101b.

[0064] In the embodiment, the sliding block 33 is provided with a third wire passing hole 331.

[0065] The sliding block 33 is arranged on the rear end surface of the magnetic wireless charging base 30, or the sliding block 33 is arranged on the front end surface of the connecting piece 15 facing the magnetic wireless charging base 30.

[0066] When the sliding block 33 is arranged on the rear end surface of the magnetic wireless charging base 30, the sliding block 33 can be integrally formed on the rear end surface of the wireless charging shell 301, or the sliding block 33 can be connected to the rear end surface of the wireless charging shell 301, and the sliding block 33 can be fixedly connected to the rear end surface of the wireless charging shell 301, and whether it can be disassembled is not limited.

[0067] When the sliding block 33 is arranged on the front end surface of the connecting piece 15 facing the magnetic wireless charging base 30, the sliding block 33 can be integrally formed on the side (i.e. the front end surface of the connecting piece 15) of the connecting piece 15 facing the magnetic wireless charging base 30, or fixedly connected to the side (i.e. the front end surface of the connecting piece 15) of the connecting piece 15 facing the magnetic wireless charging base 30.

[0068] The connecting piece 15 is provided with a first wire passing hole 151. The connecting piece 15 is connected with the sliding block 33 to move back and forth along the sliding groove 101, and the lower end of the connecting piece 15 is provided with an extension 152 for shielding the sliding groove 101 to prevent foreign matter from entering the support 10.

[0069] The wire 141 passes through the first wire passing hole 151, the sliding groove 101, the third wire passing hole 331 and the second wire passing hole 304 in sequence and is electrically connected with the charging coil 303.

[0070] In the embodiment, the connecting piece 15 is provided with a wire slot 153, one end of the wire slot 153 is communicated with the first wire passing hole 151, and the other end of the wire slot 153 penetrates the lower end surface of the connecting piece 15. The connecting piece 15 is provided with a wire clamping piece 154 for clamping the wire 141 along the extension direction of the wire slot 153; the wire 141 is first arranged along the wire slot 153 and is adapted to the wire clamping piece 154, and then enters the sliding groove 101 from the first wire passing hole 151. Preferably, two wires 141 are provided, and correspondingly, the first wire passing hole 151, the third wire passing hole 331, the second wire passing hole 304 and the wire slot 153 are also provided with two, each wire 141 is first arranged along the wire slot 153 and is adapted to the wire clamping piece 154, and then sequentially passes through the first wire passing hole 151, the sliding groove 101, the third wire passing hole 331 and the second wire passing hole 304 to be electrically connected with the charging coil 303.

[0071] The connecting piece 15 and the supporting piece 10 are provided with a reset piece 16 for elastically resetting the connecting piece 15;

[0072] In the embodiment, the reset piece 16 is provided with two and is respectively located at the left and right sides of the connecting piece 15. Preferably, the front end surface of the left and right sides of the connecting piece 15 is forwardly protrudingly provided with a hook portion 155;

[0073] The supporting piece 10 is provided with two spring grooves 17, each spring groove 17 can accommodate a reset piece 16, and the upper end of the spring groove 17 is provided with a fixed column 18. In the embodiment, the reset piece 16 is an elastic reset piece. Preferably, the elastic reset piece is a reset spring, and the upper and lower ends of the reset spring are respectively fixed on the fixed column 18 and the hook portion 155.

[0074] When the mobile terminal is adsorbed on the adsorption surface, the magnetic attraction wireless charging base 30 slides relative to the supporting piece 10 along the sliding groove 101 under the gravity of the mobile terminal, until the lower end of the mobile terminal is supported by the supporting leg 20. Preferably, the mobile terminal is a mobile phone. The mobile phone is adsorbed on the magnetic attraction wireless charging base 30, and since the magnetic attraction wireless charging base 30 is arranged on the supporting piece 10, there is a distance between the mobile phone and the supporting piece 10, so that the rear camera of the mobile phone is not hindered by the supporting piece 10.

[0075] When the mobile terminal is removed, the magnetic attraction wireless charging base 30 is automatically reset upward under the resetting force of the reset piece 16.

[0076] When the magnetic attraction wireless charging base 30 slides to the lowest position, the avoiding area 302 is attached to the second arc-shaped section 114, the third arc-shaped section 115 and the fourth arc-shaped section 116. It should be noted that the lowest position is that the magnetic attraction wireless charging base 30 slides to the lower end of the sliding groove 101.

[0077] Preferably, the supporting leg 20 is an adjustable supporting leg which can be adjusted up and down relative to the support 10. In the present embodiment, a spring 19 is arranged in the support 10 for pressing against the supporting leg 20 to keep the supporting leg 20 at a desired height, and the front end surface of the supporting leg 20 is concavely provided with a plurality of positioning clamping grooves 21 which extend left and right and are arranged in intervals up and down. The upper end of the spring 19 is fixed in the support 10, and the lower end of the spring 19 is provided with a positioning clamping hook portion 191 which is clamped in the corresponding positioning clamping groove 21. By pushing the supporting leg 20 up and down along the height direction of the support 10, the spring 19 is elastically deformed, and the positioning clamping hook portion 191 on the spring 19 can be disengaged from the clamping of the positioning clamping groove 21. After the supporting leg 20 is adjusted to the desired height, the positioning clamping hook portion 191 is clamped in the positioning clamping groove 21 to fix the supporting leg 20, so that the height of the supporting leg 20 can be adjusted according to the length of the mobile phone to support the mobile phone.

[0078] The support 10 is also provided with a clamping arm 40 for clamping the mobile terminal. Preferably, the clamping arm 40 is a left and right adjustable clamping arm 40.

[0079] In the present embodiment, the left and right adjustable clamping arm 40 includes a support plate 41, a left gear 42, a left arm 43, a right gear 44, a right arm 45, a first elastic member 46, a rotating member 47, a second elastic member 48, and a button 49.

[0080] The support plate 41 is provided with two fourth wire passing holes 411. Each wire 141 passes through the fourth wire passing hole 411 first, is then arranged along the wire routing groove 153 and is fitted into the wire clamping member 154, and finally passes through the first wire passing hole 151, the sliding groove 101, the third wire passing hole 331, and the second wire passing hole 304 in sequence to be electrically connected with the charging coil 303.

[0081] The left gear 42 and the right gear 44 are both rotatably arranged in the support 10 and are both rotatably connected to the support plate 41. The left gear 42 and the right gear 44 are engaged.

[0082] The left arm 43 and the right arm 45 are movably arranged on the support 10 along the width direction of the support 10. One end of the left arm 43 and one end of the right arm 45 both extend into the support 10, and one end of the left arm 43 is engaged with the left gear 42, and one end of the right arm 45 is engaged with the right gear 44.

[0083] The other end of the left arm 43 and the other end of the right arm 45 extend out of the left and right sides of the support 10, respectively. The first elastic member 46 extends along the width direction of the support 10, and one end of the first elastic member 46 abuts against the support 10, and the other end of the first elastic member 46 abuts against the left arm 43 or the right arm 45.

[0084] The rotating member 47 is rotatably arranged in the support member 10 and rotatably connected to the support plate 41, one end of the rotating member 47 is provided with a hook 471 for unidirectionally locking the left gear 42 or the right gear 44; one end of the second elastic member 48 is abutted against the support member 10, the other end of the second elastic member 48 is abutted against the other end of the rotating member 47 away from the hook 471, the second elastic member 48 promotes the rotating member 47 to rotate in the positive direction to make the hook 471 clamped on the corresponding gear to unidirectionally lock the corresponding gear; the button 49 is pressingly arranged on the support member 10, the rotating member 47 is abutted against the button 49 under the elastic force of the second elastic member 48;

[0085] When the left arm 43 and the right arm 45 are subjected to external force in the moving direction towards each other, the left arm 43 and the right arm 45 can move towards each other to drive the corresponding gear to rotate, promoting the rotating member 47 to rotate in the reverse direction to make the hook 471 disengage from the gear, the left arm 43 and the right arm 45 are retracted by moving towards each other; after the external force in the moving direction towards each other is removed, the elastic force of the second elastic member 48 promotes the rotating member 47 to rotate in the positive direction to make the hook 471 lock the corresponding gear, limiting the movement of the left arm 43 and the right arm 45;

[0086] When the button 49 is pressed, the button 49 overcomes the elastic force of the second elastic member 48 to promote the rotating member 47 to rotate in the reverse direction to make the hook 471 disengage from the corresponding gear, the left arm 43 and the right arm 45 are opened away from each other under the elastic force of the first elastic member 46; after the pressing of the button 49 is removed, the elastic force of the second elastic member 48 promotes the rotating member 47 to rotate in the positive direction to make the hook 471 lock the corresponding gear, limiting the opening of the left arm 43 and the right arm 45 away from each other. In this embodiment, the other end of the first elastic member 46 is abutted against the right arm 45, and the hook is used for unidirectionally locking the right gear 44.

[0087] Taking a mobile phone as an example, the use method of the magnetic wireless charging support provided by the embodiment is described as follows (by default, the initial state is that the left arm 43 and the right arm 45 are in the open state):

[0088] Align the mobile phone with the magnetic wireless charging seat 30, the adsorption surface of the magnetic wireless charging seat 30 adsorbs the mobile phone, the magnetic wireless charging seat 30 slides along the sliding groove 101 under the gravity of the mobile phone and is finally supported on the supporting leg 20, at the same time, the supporting leg 20 is subjected to the resistance of the elastic piece 19 under the gravity of the mobile phone, so that the supporting leg 20 is kept at the required height, then, the left arm 43 and the right arm 45 are squeezed to hold the mobile phone stably.

[0089] When the mobile phone needs to be taken away, after the button 49 is pressed, the rotating piece 47 is reversely rotated under the pushing force of the button 49, the hook part 471 is separated from the clamping of the right gear 44, the locking of the right gear 44 is released, then the right arm 45 moves away from the left arm 43 under the elastic force of the first elastic piece 46, the mobile phone is released, and meanwhile the magnetic wireless charging base 30 is automatically reset upward under the resetting force of the resetting piece 16.

[0090] The utility model discloses the design main point lies in, it is mainly that magnetic wireless charging base is displaced under the gravity of mobile terminal and resets under the action of resetting piece, can make the position of the wireless charging receiver of different size mobile terminal always keep alignment magnetic wireless charging base, and then improve charging efficiency.

[0091] Secondly, one resetting piece is arranged on the left side and the right side of the connecting piece respectively, so that the displacement of the connecting piece is prevented from being deviated;

[0092] Furthermore, the design of the plurality of wire passing holes ensures that the magnetic wireless charging base is not disconnected from the control panel in the moving process, so that the stability and reliability of the magnetic wireless charging base in use are ensured.

[0093] In addition, the overall structure is designed to be ingenious and reasonable, so that the stability and reliability of the product in use are ensured.

[0094] The above is only the preferred embodiment of the utility model, and does not limit the technical range of the utility model, so any slight modification, equivalent change and modification made according to the technical essence of the utility model to the above embodiment still belongs to the range of the technical scheme of the utility model.

Claims

1. A magnetic wireless charging stand, characterized in that: It includes a magnetic wireless charging base, a support member for mounting the magnetic wireless charging base, and a reset member for providing a reset force to the magnetic wireless charging base. The lower end of the support member is provided with a support foot. The support member is provided with a sliding groove extending in the vertical direction; The magnetic wireless charging base is connected to a slider that is slidably installed in the slide groove and moves back and forth along the slide groove. The slider is connected to a connector, and the connector is connected to the slider to move back and forth along the slide groove with the slider. The reset member is disposed between the magnetic wireless charging base and the connector. When the mobile terminal is attached to the attachment surface, the magnetic wireless charging base slides relative to the support member under the gravity of the mobile terminal until the lower end of the mobile terminal is supported by the support foot. When the mobile terminal is removed, the magnetic wireless charging base automatically resets upwards under the reset force of the reset component.

2. The magnetic wireless charging stand according to claim 1, characterized in that: The slider and the connector are located on opposite sides of the slide groove, and the slider passes through the slide groove and is connected to the connector. Alternatively, the slider and the connector may both be located on the same side of the groove.

3. The magnetic wireless charging stand according to claim 1, characterized in that: The support leg is an adjustable support leg that can be adjusted up and down relative to the support member.

4. The magnetic wireless charging stand according to claim 1, characterized in that: There are two reset components, located on the left and right sides of the connector, respectively.

5. The magnetic wireless charging stand according to claim 1, characterized in that: The connector is provided with a first wire passage hole. The magnetic wireless charging base includes a wireless charging housing and a charging coil located inside the wireless charging housing. The rear end face of the wireless charging housing is provided with a second wire passage hole for communicating with the interior of the wireless charging housing. The slider is provided with a third wire passage hole. The support is provided with a charging port. The charging port is electrically connected to a control board. The control board is connected with a wire. The wire passes through the first wire passage hole, the slide groove, the third wire passage hole, and the second wire passage hole in sequence and is electrically connected to the charging coil.

6. The magnetic wireless charging stand according to claim 5, characterized in that: The connector is provided with a wiring groove, one end of which is connected to the first wire through hole. The connector is provided with a wire clamping device for clamping the wire along the extension direction of the wiring groove. The wire is first laid along the wire routing groove and adapted to the wire clamp, and then enters the sliding groove through the first wire passage hole.

7. The magnetic wireless charging stand according to claim 1, characterized in that: The lower end of the connector is provided with an extension to cover the slide groove and prevent foreign objects from entering the support.

8. The magnetic wireless charging stand according to claim 1, characterized in that: The support member is a shell, which includes a front shell and a rear shell. The middle part of the front shell is recessed inward to form a recessed structure, and the sliding groove is located in the recessed structure. The recessed structure includes: The first arc segment extending downward in an arc shape from the upper end of the front shell in the vertical direction, the oblique line segment extending from the first arc segment to the middle of the front shell, and the second arc segment extending downward in an arc shape from the oblique line segment to the lower end of the front shell. The third arc-shaped segment extends downward from the left end of the front shell to the opening slot in the left-right direction, and the fourth arc-shaped segment extends downward from the right end of the front shell to the opening slot. The magnetic wireless charging stand has a wireless charging shell, and the rear end face of the wireless charging shell is provided with avoidance areas on the left and right sides. When the magnetic wireless charging stand slides to the lowest position, the avoidance areas are attached to the second arc segment, the third arc segment and the fourth arc segment.

9. The magnetic wireless charging stand according to claim 1, characterized in that: The support member is equipped with a clamping arm for holding the mobile terminal.

Citation Information

Patent Citations

  • Prop up posture wireless charging device

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