CN223651993U - Wireless charger - Google Patents

Wireless charger

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Publication number
CN223651993U
CN223651993U CN202423221651.1U CN202423221651U CN223651993U CN 223651993 U CN223651993 U CN 223651993U CN 202423221651 U CN202423221651 U CN 202423221651U CN 223651993 U CN223651993 U CN 223651993U
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CN
China
Prior art keywords
module
wireless charger
state
supporting
charger
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN202423221651.1U
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Chinese (zh)
Inventor
周飞
施梓豪
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shenzhen Baseus Technology Co Ltd
Original Assignee
Shenzhen Baseus Technology Co Ltd
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Application filed by Shenzhen Baseus Technology Co Ltd filed Critical Shenzhen Baseus Technology Co Ltd
Priority to CN202423221651.1U priority Critical patent/CN223651993U/en
Application granted granted Critical
Publication of CN223651993U publication Critical patent/CN223651993U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model provides a wireless charger, which comprises a first module, a second module, a connecting part and a supporting part. The first module has a first face adapted for wireless charging and a third face opposite the first face. The second module has a second face adapted for wireless charging. The connecting part is rotationally connected with the first module and the second module. When the wireless charger is in the second state, the first surface is suitable for placing the electronic equipment, the second module is suitable for being placed on the supporting surface, one side of the supporting part along the gravity direction is connected with the third surface, the other side of the supporting part is connected with the second module, and the lower end, the connecting part, the second module and the supporting part of the electronic equipment are suitable for supporting the electronic equipment together. The wireless charger is more stable in supporting the electronic equipment and better in supporting reliability.

Description

Wireless charger
Technical Field
The utility model relates to the technical field of wireless charging equipment, in particular to a wireless charger.
Background
With the development of wireless charging technology, the wireless charging technology is widely applied to electronic equipment, such as charging a mobile phone, charging a watch, charging an earphone and the like, so that various wireless chargers are presented, one of the wireless chargers is a folding bracket for wireless charging, the wireless charger comprises a charging module and a supporting seat which can be turned relatively, the supporting seat is horizontally placed on a desktop in a use state, the charging module is obliquely placed relative to the supporting seat and adsorbs the electronic equipment, the electronic equipment can be charged, a user can adjust the rotation angle between the charging module and the supporting seat according to requirements, and in a storage state, the two charging modules are turned relatively to a stacked position. In the related art, under the use state of the wireless charger, the rotation angle is stabilized only by virtue of the rotation structure connected between the charging module and the supporting seat, specifically, the rotation hinge can be arranged to rotationally connect the charging module and the supporting seat, so that the rotation hinge can be provided with the damping fin, the charging module and the supporting seat can be turned over relatively only under the action of external force of a user, but the setting reliability is poor, and the generated supporting force is limited.
Disclosure of utility model
The utility model mainly aims to provide a wireless charger which is more stable for supporting electronic equipment and better in supporting reliability.
In order to achieve the above purpose, the embodiment of the present utility model adopts the following technical scheme:
a wireless charger, comprising:
A first module having a first face adapted for wireless charging and a third face opposite the first face;
a second module having a second face adapted for wireless charging;
A connection part rotatably connecting the first module and the second module to switch the wireless charger between the first state and the second state, and
A support part;
When the wireless charger is in the second state, the first surface is suitable for placing the electronic equipment, the second module is suitable for being placed on the supporting surface, one side of the supporting part along the gravity direction is connected with the third surface, the other side of the supporting part is connected with the second module, and the lower end, the connecting part, the second module and the supporting part of the electronic equipment are suitable for supporting the electronic equipment together.
In some embodiments, the support integrally connects the first module or the second module.
In some embodiments, the third face forms a receiving groove, and the support portion is connected to the first module and received in the receiving groove when the wireless charger is in the first state.
In some embodiments, the support includes a first fold and a second fold integrally connected, the first fold being rotatable relative to the first module about a first axis parallel to the first face, and the second fold being rotatable relative to the first fold about a second axis parallel to the first axis.
In some embodiments, the first folding portion is fixedly connected to the first module, and the second folding portion is magnetically connected to the second module when the wireless charger is in the second state.
In some embodiments, the support portion further includes a flexible connection portion, a first folding portion, a second folding portion, a first magnet, and a second magnet, the first folding portion is integrally connected to the first module, the flexible connection portion is integrally connected between the first folding portion and the second folding portion and enables the first folding portion and the second folding portion to rotate relatively, the first folding portion defines a first accommodating cavity, the second folding portion defines a second accommodating cavity, the first magnet is disposed in the first accommodating cavity, and the second magnet is disposed in the second accommodating cavity;
The first magnet and the second magnet are both magnetically connected with the third surface when the wireless charger is in the first state, and the second magnet is magnetically connected with the second surface when the wireless charger is in the second state.
In some embodiments, the second module has a fourth face opposite the second face, the third face including a first portion and a second portion;
When the wireless charger is in the second state, the first part is positioned on the upper side of the second part, the second surface is positioned on the upper side of the fourth surface, one side of the supporting part is connected with the first part, the other side of the supporting part is connected with the second surface, and the second part is abutted with the fourth surface.
In some embodiments, the second surface includes a third portion and a fourth portion, when the wireless charger is in the second state, along a direction perpendicular to the third surface, the third portion is located on a side of the fourth portion, which is close to the first module, and one side of the supporting portion is connected to the first portion, and the second magnet on the other side is magnetically connected to the third portion, so that the fourth portion is suitable for wireless charging.
In some embodiments, the second module has a fourth face opposite to the second face, the fourth face is provided with a third magnet, the wireless charger further has a third state, and when the wireless charger is in the third state, the third magnet is magnetically connected to the third face, so that the first module and the second module are stacked in a direction perpendicular to the third face.
In some embodiments, the third magnet is disposed at one end of the fourth surface, and the third magnet is magnetically connected to the third surface when the wireless charger is in the second state.
Compared with the prior art, the utility model has the beneficial effects that:
The wireless charger comprises a first module, a second module, a supporting part and a connecting part. The first surface of the first module and the second surface of the second module can be used for charging the electronic equipment, and the connecting part is rotationally connected with the first module and the second module, so that the wireless charger is switched between a first state and a second state. In the second state, the first surface is suitable for placing electronic equipment, the second module is suitable for being placed on a supporting surface, one side of the supporting part along the gravity direction is connected with the third surface, the other side of the supporting part is connected with the second module, and the lower end, the connecting part, the second module and the supporting part of the electronic equipment are suitable for jointly supporting the electronic equipment. Compared with the related art, the wireless charger of the utility model is additionally provided with the supporting part by only stabilizing the rotation angle through the rotation structure connected between the charging module and the supporting seat, so that the supporting part connected between the first module and the second module can further enhance the supporting effect in the second state. Therefore, the wireless charger is more stable in supporting the electronic equipment and better in supporting reliability.
Drawings
In order to more clearly illustrate the embodiments of the present utility model or the technical solutions in the prior art, the following description will briefly explain the drawings used in the embodiments or the description of the prior art, and it is obvious that the drawings in the following description are only some embodiments of the present utility model, and other drawings can be obtained according to the structures shown in these drawings without inventive effort for a person skilled in the art.
Fig. 1 is a schematic front view of a wireless charger and an electronic device according to an embodiment of the present utility model, wherein the wireless charger is in a first state;
Fig. 2 is a schematic perspective view of a wireless charger according to an embodiment of the present utility model, wherein the wireless charger is in a first state;
FIG. 3 is an exploded view of FIG. 2;
Fig. 4 is a schematic perspective view of a first side of a wireless charger and an electronic device according to an embodiment of the present utility model, wherein the wireless charger is in a second state;
FIG. 5 is a schematic side view of a wireless charger and an electronic device according to an embodiment of the present utility model, wherein the wireless charger is in a second state;
Fig. 6 is a schematic view of a second side of a wireless charger and an electronic device combined according to another embodiment of the present utility model, wherein the wireless charger is in a second state;
Fig. 7 is a schematic front view of a wireless charger and an electronic device combined according to an embodiment of the present utility model, where the wireless charger is in a third state.
Reference numerals illustrate:
a wireless charger 100;
a first module 110, a first face 111, a third face 112, a first portion 1121, a second portion 1122, a receiving slot 1123;
The second module 120, the second face 121, the third portion 1211, the fourth portion 1212, the fourth face 122, the third magnet 123;
A connection portion 130;
the support 140, the first folding portion 141, the first cavity 1411, the second folding portion 142, the second cavity 1421, the flexible connection portion 143, the first magnet 144, the second magnet 145;
a first axis L1;
a second axis L2;
The direction of gravity G.
The achievement of the objects, functional features and advantages of the present utility model will be further described with reference to the accompanying drawings, in conjunction with the embodiments.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and fully with reference to the accompanying drawings, in which it is evident that the embodiments described are only some, but not all embodiments of the utility model. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
It should be noted that, if the directional indication (such as up, down, left, right, front, and rear) is included in the embodiments of the present utility model, the directional indication is only used to explain the relative positional relationship, movement, etc. between the components at a particular pose and if the particular pose changes, the directional indication changes accordingly.
In addition, if there is a description of "first", "second", etc. in the embodiments of the present utility model, the description of "first", "second", etc. is for descriptive purposes only and is not to be construed as indicating or implying a relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defining "a first" or "a second" may explicitly or implicitly include at least one such feature. In addition, if "and/or", "and/or" and/or "are used throughout, the meaning includes three parallel schemes, for example," a and/or B ", including a scheme, or B scheme, or a scheme where a and B meet simultaneously. In addition, the technical solutions of the embodiments may be combined with each other, but it is necessary to base that the technical solutions can be realized by those skilled in the art, and when the technical solutions are contradictory or cannot be realized, the combination of the technical solutions should be considered to be absent and not within the scope of protection claimed in the present utility model.
The existing wireless charger is a folding bracket and is used for wireless charging, the folding bracket comprises a charging module and a supporting seat which can be turned over relatively, the supporting seat is horizontally placed on a desktop in a use state, the charging module is obliquely placed relative to the supporting seat and adsorbs electronic equipment, so that the electronic equipment can be charged, a user can adjust the rotation angle between the charging module and the supporting seat according to requirements, and in a storage state, the two charging modules are turned over relatively to a stacked position. In the related art, under the use state of the wireless charger, the rotation angle is stabilized only by virtue of the rotation structure connected between the charging module and the supporting seat, specifically, the rotation hinge can be arranged to rotationally connect the charging module and the supporting seat, so that the rotation hinge can be provided with the damping fin, the charging module and the supporting seat can be turned over relatively only under the action of external force of a user, but the setting reliability is poor, and the generated supporting force is limited.
In view of this, referring to fig. 1-7, a wireless charger 100 is provided in an embodiment of the present utility model, and the wireless charger 100 may charge any suitable type of electronic product, and the electronic product may be one of a mobile phone, an earphone, a smart watch, and a tablet computer. The wireless charger 100 may be connected to a charging wire to supply power to the electronic device when charging the electronic device, or may not be connected to the charging wire, that is, the wireless charger 100 may be used as a charging cradle. Specifically, the wireless charger 100 includes a first module 110, a second module 120, a supporting portion 140, and a connecting portion 130.
Referring to fig. 1-3, the first module 110 has a first face 111 adapted for wireless charging and a third face 112 opposite the first face 111. The second module 120 has a second face 121 adapted for wireless charging. It can be appreciated that the first module 110 and the second module 120 are both charging modules for wirelessly charging the electronic device, and the shape and specification parameters between the first module 110 and the second module 120 may be the same or different. The first surface 111 and the second surface 121 are surfaces of the first module 110 and the second module 120, respectively, for contacting the electronic device, and the first surface 111 and/or the second surface 121 may be configured to be capable of magnetically attracting the electronic device, or not capable of magnetically attracting the electronic device, according to requirements. It should be noted that, the magnetic action described in the present utility model may be direct magnetic attraction or indirect magnetic attraction, taking the action of the first surface 111 in magnetically attracting the electronic device as an example, at this time, the first surface 111 may be magnetically attracted to the electronic device, at this time, the first surface 111 may play a direct magnetic attraction role, or the electronic product may be attached to the first surface 111 under the action of magnetic attraction by using a magnet or other ferromagnetic materials disposed inside the first module 110, at this time, the first surface 111 plays an indirect magnetic attraction role. The magnetic attraction (or magnetic connection) of the two described in the present utility model may be both magnets, or one of them may be a magnet and the other may be a ferromagnetic material.
The third face 112 is defined as being opposite to the first face 111 in a direction normal to the first face 111, the third face 112 being located opposite to the side of the first module 110 where the first face 111 is provided. The same definition applies to other embodiments in which the first module 110 or the second module 120 is disposed opposite to the first module, and will not be described in detail below. Based on the third surface 112 defined above, in some embodiments, when the wireless charger 100 is in the second state, the wireless charger 100 supports the electronic device on the supporting surface, and along the direction perpendicular to the third surface 112, one end of the second module 120, which is close to the first module 110, abuts against the third surface 112, and the other end, which is far from the first module 110, is connected to the connection portion 130 and is adapted to abut against the supporting surface.
Referring to fig. 1 and 4, the connection portion 130 rotatably connects the first module 110 and the second module 120, so that the wireless charger 100 is switched between the first state and the second state. When the wireless charger 100 is in the first state, the first surface 111 and the second surface 121 are parallel and face the same direction, the supporting portion 140 is connected to the first module 110 or the second module 120, and both the first surface 111 and the second surface 121 are suitable for placing the electronic device. It can be appreciated that in the first state, both the first module 110 and the second module 120 can be laid flat on the desktop, such that the first surface 111 and the second surface 121 face upward, and the wireless charger 100 is in the laid flat state, so that the supporting portion 140 is not required. At this time, the user may place two electronic devices on the first surface 111 and the second surface 121 respectively and charge both at the same time, or the user may place only one electronic device on the first surface 111 or the second surface 121 and also can realize the charging function. The directions of the surfaces described in the present utility model (for example, the direction of the first surface 111 and the direction of the second surface 121) each indicate a normal direction of the surface toward the outside, for example, the direction of the first surface 111 is a direction perpendicular to the first surface 111, and the direction is directed from the first module 110 to the side of the first module 110 to which the electronic device is attached. The first surface 111 or the second surface 121 described in the present utility model is suitable for placement of electronic devices, and specifically, the electronic devices may be placed by any of a supporting action, a magnetic attraction action, and a clamping action.
Referring to fig. 4-6, when the wireless charger 100 is in the second state, the first face 111 is adapted to receive an electronic device and the second module 120 is adapted to be received on a support surface. The supporting surface is a surface on which the wireless charger 100 and the electronic device are placed, and may be a desktop. In particular, to provide a supporting effect, the supporting portion 140 is connected to the third surface 112 along one side and the second module 120 along the other side in the gravity direction G, and the lower end of the electronic device, the connecting portion 130, and the second module 120 are adapted to jointly support the electronic device. Specifically, referring to fig. 4-6, in the second state, the first module 110 is disposed obliquely (or vertically) as a whole, and the first surface 111 faces the front side, at which time the electronic device may be adsorbed to the first surface 111 and disposed obliquely (or vertically) as well, and at the same time, the second module 120 may be disposed obliquely or horizontally as a whole, so that the second module 120 at least partially contacts the supporting surface. It can be understood that, in the second state, the lower end of the electronic device, the connection portion 130 and the second module 120 may contact the supporting surface and serve as supporting points, and the supporting portion 140 is connected between the first module 110 and the second module 120, so that the second module 120 may further support the first module 110 and the electronic device, that is, the supporting portion 140 may play a role in enhancing the supporting. The second module 120 may be abutted against the supporting surface under a certain load force, and the second module 120 may be spaced from the supporting surface when no load is applied or the load force is small.
As can be seen, the wireless charger 100 of the present utility model includes a first module 110, a second module 120, a supporting portion 140, and a connecting portion 130. The first surface 111 of the first module 110 and the second surface 121 of the second module 120 may be used for charging the electronic device, and the connection portion 130 rotationally connects the first module 110 and the second module 120, so that the wireless charger 100 switches between the first state and the second state. In the first state, the first module 110 and the second module 120 can be horizontally placed on the desktop, so that the first surface 111 and the second surface 121 face upwards and can be used for charging, in the second state, the first surface 111 is suitable for placing electronic equipment, the second module 120 is suitable for being placed on a supporting surface, one side of the supporting portion 140 along the gravity direction G is connected with the third surface 112, the other side is connected with the second module 120, and the lower end of the electronic equipment, the connecting portion 130, the second module 120 and the supporting portion 140 are suitable for supporting the electronic equipment together. Compared to the related art, the wireless charger 100 of the present utility model is provided with the support 140 in addition to the design that only depends on the rotation structure connected between the charging module and the support base to stabilize the rotation angle, so that the support 140 connected between the first module 110 and the second module 120 can further enhance the supporting effect in the second state. Therefore, the wireless charger 100 of the present utility model is more stable for supporting the electronic device and has better supporting reliability.
For the specific structure of the support 140, referring to fig. 2-6, in some embodiments, the support 140 is integrally connected to the first module 110 or the second module 120, which may make the wireless charger 100 more integrated, and in other embodiments, the support 140 is detachably connected to the first module 110 and/or the second module 120, for example, the support 140 may be magnetically connected or snap-connected to the first module 110 and/or the second module 120. The support portion 140 includes a first folding portion 141 and a second folding portion 142 integrally connected, the first folding portion 141 being capable of rotating relative to the first module 110 about a first axis L1 parallel to the first face 111, and the second folding portion 142 being capable of rotating relative to the first folding portion 141 about a second axis L2 parallel to the first axis L1. Through the arrangement of the first folding portion 141 and the second folding portion 142, the supporting portion 140 can adapt to the relative rotation between the first module 110 and the second module 120, that is, the first module 110 and the second module 120 adjust the relative angle, and the first folding portion 141 and the second folding portion 142 of the supporting portion 140 can adapt to each other through the relative rotation, so as to improve the reliability of the supporting effect of the supporting portion 140.
Referring to fig. 2-3, in some embodiments, the third face 112 forms a receiving slot 1123, and the support 140 is coupled to the first module 110 and received in the receiving slot 1123 when the wireless charger 100 is in the first state. The accommodation groove 1123 provided as described above can be used to accommodate the support 140 in the first state, and the structure of the wireless charger 100 can be further simplified.
Referring to fig. 2-5, in some embodiments, the support 140 includes a first fold 141 and a second fold 142 integrally connected, the first fold 141 being rotatable relative to the first module 110 about a first axis L1 parallel to the first face 111, and the second fold 142 being rotatable relative to the first fold 141 about the first axis L1. Through the arrangement of the first folding portion 141 and the second folding portion 142, the supporting portion 140 can adapt to the relative rotation between the first module 110 and the second module 120, that is, the first module 110 and the second module 120 adjust the relative angle, and the first folding portion 141 and the second folding portion 142 of the supporting portion 140 can adapt to each other through the relative rotation, so as to improve the reliability of the supporting effect of the supporting portion 140.
Further, based on the first folding portion 141 and the second folding portion 142 provided in the foregoing embodiments, referring to fig. 4 to fig. 6, in some embodiments, the first folding portion 141 is fixedly connected to the first module 110, that is, the first folding portion 141 may be fixed to the first module 110 by a hinge structure or an adhesive, or the like (meanwhile, the first folding portion 141 may rotate relative to the first module 110), when the wireless charger 100 is in the second state, the second folding portion 142 is magnetically connected to the second module 120, that is, the supporting portion 140 is fixedly connected to the first module 110 through the first folding portion 141, so that the supporting portion 140 is integrally connected to the first module 110, and is magnetically connected to the second module 120 through the second folding portion 142, so that the supporting portion 140 forms a detachable connection with the second module 120 in the second state, and can be separated from the second folding portion 142 and the second module 120 when the wireless charger 100 needs to be switched to the first state. The above arrangement can enable the user to switch the connection state or the connection position between the support portion 140 and the second module 120 according to the requirement, and the switching operation is more convenient and the connection position is more convenient to adjust.
For a specific form in which the support 140 mates with the first module 110 and the second module 120, referring to fig. 4-6, in some embodiments, the support 140 integrally connects the first module 110, the first module 110 has a third face 112 opposite the first face 111, and the support 140 further includes a flexible connection 143130 to support 140, a first magnet 144, and a second magnet 145. In some embodiments, the flexible connection part 143130 is connected between the first folding part 141 and the second folding part 142 and enables the first folding part 141 and the second folding part 142 to rotate relatively, that is, the flexible connection part 143130 is made of flexible material and is used for rotationally connecting the first folding part 141 and the second folding part 142, in order to achieve the above effect, the flexible connection part 143130 may be made of PU (polyurethane) leather, and in addition, the flexible connection part 143130 may be made of PU (polyurethane) leather, and the materials of the support part 140, the first folding part 141 and the second folding part 142 may be PU (polyurethane) leather, so that the portion of the first folding part 141 integrally connected with the first module 110 is also PU (polyurethane) leather to form the rotational connection between the support part 140 and the first module 110.
Further, referring to fig. 3, in some embodiments, in order to achieve the magnetic attraction effect of the first folded portion 141 and the second folded portion 142, the first folded portion 141 defines a first accommodating cavity 1411, the second folded portion 142 defines a second accommodating cavity 1421, the first magnet 144 is disposed in the first accommodating cavity 1411, and the second magnet 145 is disposed in the second accommodating cavity 1421. When the wireless charger 100 is in the first state, the first magnet 144 and the second magnet 145 are magnetically connected to the third surface 112. That is, the support 140 is attached to the third surface 112 in a stored state. When the wireless charger 100 is in the second state, the second magnet 145 is magnetically connected to the second surface 121, that is, the supporting portion 140 is magnetically connected to the second module 120, and the first magnet 144 may or may not be magnetically connected to the third surface 112 or the second surface 121.
Based on the above-mentioned embodiment, for the specific form of the second magnet 145 magnetically connecting the second face 121, referring to fig. 4 to 6, in some embodiments, the second face 121 includes a third portion 1211 and a fourth portion 1212, when the wireless charger 100 is in the second state, the third portion 1211 is located on one side of the fourth portion 1212 near the first module 110 along the direction perpendicular to the third face 112, and the second magnet 145 on one side of the support 140 is connected to the first portion 1121 and the second magnet 145 on the other side is magnetically connected to the third portion 1211, so that the fourth portion 1212 is suitable for wireless charging. It will be appreciated that in the second state, the third portion 1211 is positioned near the front side of the first module 110 and the fourth portion 1212 is positioned far from the rear side of the first module 110, such that after the second magnet 145 magnetically connects the third portion 1211, the fourth portion 1212 is not shielded, and a user can place an electronic device on the fourth portion 1212 for charging.
Referring to fig. 4-6, in some embodiments, the second module 120 has a fourth surface 122 opposite to the second surface 121, when the wireless charger 100 is in the second state, the first portion 1121 is located on the upper side of the second portion 1122, the second surface 121 is located on the upper side of the fourth surface 122, one side of the supporting portion 140 is connected to the first portion 1121, the other side is connected to the second surface 121, and the third surface 112 abuts against the fourth surface 122. When the third surface 112 in the second state abuts against the fourth surface 122 according to the requirement, the first module 110 and the second module 120 may be provided with corresponding clamping structures (for example, one of the first module 110 and the second module 120 is provided with a clamping protrusion, and the other is provided with a corresponding clamping groove), or the abutting effect may be formed only by the contact action between the third surface 112 and the fourth surface 122 without providing the clamping structures.
Based on the fourth face 122 defined in the above embodiment, referring to fig. 2-6, in some embodiments, one end of the fourth face 122 is provided with a third magnet 123. That is, the third magnet 123 is disposed only at one side of the fourth surface 122 (in other embodiments, the third magnet 123 may be disposed at both sides of the fourth surface 122). Specifically, the third magnet 123 may have a block shape (the third magnet 123 of the embodiment shown in fig. 3 has a cylindrical shape), and the fourth surface 122 may form a groove in which the third magnet 123 is fitted. In some embodiments, when the wireless charger 100 is in the second state, the third magnet 123 is magnetically connected to the third face 112, and the third magnet 123 may be specifically magnetically connected to the second portion 1122 of the third face 112 located on the lower side. For magnetic connection with the third magnet 123, the third surface 112 may be made of a ferromagnetic material (e.g., a manganese steel sheet) or the inside of the third surface 112 may be provided with the above ferromagnetic material, and the support portion 140 may be magnetically connected to the third surface 112. That is, in the second state, the second module 120 can bring the fourth surface 122 into contact with the third surface 112, can bring the second surface 121 into indirect contact with the first portion 1121 of the third surface 112 (one end of the supporting portion 140 is connected to the first portion 1121, and the other end is connected to the second surface 121), and can further bring the third magnet 123 of the fourth surface 122 into magnetic connection with the second portion 1122 of the third surface 112, thereby further enhancing the supporting effect of the wireless charger 100 in the second state.
Referring to fig. 7, in some embodiments, the wireless charger 100 further has a third state in which the third magnet 123 is magnetically coupled to the third face 112 such that the first module 110 and the second module 120 are stacked in a direction perpendicular to the third face 112. It can be understood that the third state is a stacked state of the wireless charger 100, in which the first module 110 and the second module 120 are stacked on each other, so that the wireless charger 100 occupies a smaller volume, and the first module 110 or the second module 120 can charge the electronic device. In addition, the third magnet 123 in the foregoing embodiment is utilized to connect the first module 110 and the second module 120 in a stacked manner, so that the third magnet 123 plays two roles at the same time, and the overall structure of the wireless charger 100 is more simplified.
In addition, in the above embodiments, the arrangement in which the fourth surface 122 abuts against the third surface 112 may be equivalently replaced with the arrangement in which the peripheral wall of the second module 120 (the side wall of the second module 120 extending in an annular shape between the second surface 121 and the fourth surface 122) abuts against the third surface 112, and similar supporting effects can be achieved. Meanwhile, the third magnet 123 may be disposed on the peripheral wall of the second module 120, and the third magnet 123 disposed on the peripheral wall may be magnetically connected to the third surface 112 when the wireless charger 100 is in the second state or the third state.
For the configuration of the components of the wireless charger 100, referring to fig. 3, in one aspect, in some embodiments, the first module 110 has a disc shape, that is, the first module 110 has a short cylinder shape, and the outer periphery of the disc-shaped first module 110 may be further provided with a sheet-shaped protrusion and connected to the connection part 130. On the other hand, in some embodiments, the second module 120 has a disk-like shape, and since the second module 120 functions similarly to the first module 110, the second module 120 may have the same or similar shape and size as the first module 110. In yet another aspect, in some embodiments, the connection 130 is a flexible strip, and illustratively, the material of the connection 130 may be one of silicone, rubber, braided rope, memory metal. When the wireless charger 100 is in the first state, the connection portion 130 may have a rectangular shape as viewed along the directions of the first surface 111 and the second surface 121. It should be understood that the above definition indicates that the connection portion 130 may have a flat rectangular strip structure, so that during any transition of the wireless charger 100 between the first state, the second state and the third state, the bending rotation axis of the connection portion 130 is parallel to the rectangular broadside of the connection portion 130, and thus the bending operation of the connection portion 130 is more convenient and smoother.
The foregoing description of the preferred embodiments of the present utility model should not be construed as limiting the scope of the utility model, but rather as utilizing equivalent structural changes made in the description and drawings of the present utility model or directly/indirectly applied to other related technical fields under the application concept of the present utility model.

Claims (10)

1. A wireless charger, comprising:
A first module having a first face adapted for wireless charging and a third face opposite the first face;
a second module having a second face adapted for wireless charging;
A connection part rotatably connecting the first module and the second module to switch the wireless charger between a first state and a second state, and
A support part;
The wireless charger is in the first state, the first surface and the second surface are parallel and face the same direction, the supporting portion is connected to the first module or the second module, the first surface and the second surface are both suitable for placing electronic equipment, when the wireless charger is in the second state, the first surface is suitable for placing the electronic equipment, the second module is suitable for being placed on the supporting surface, one side of the supporting portion along the gravity direction is connected with the third surface, the other side of the supporting portion is connected with the second module, and the lower end of the electronic equipment, the connecting portion, the second module and the supporting portion are suitable for supporting the electronic equipment together.
2. The wireless charger of claim 1 wherein the battery charger is configured to receive the battery charger,
The support part is integrally connected with the first module or the second module.
3. The wireless charger of claim 1 wherein the battery charger is configured to receive the battery charger,
The third face forms a containing groove, and when the wireless charger is in the first state, the supporting part is connected with the first module and contained in the containing groove.
4. The wireless charger of claim 1 wherein the battery charger is configured to receive the battery charger,
The support portion includes integrally connected first and second folds, the first fold being rotatable relative to the first module about a first axis parallel to the first face, and the second fold being rotatable relative to the first fold about a second axis parallel to the first axis.
5. The wireless charger of claim 4, wherein the battery charger comprises a battery charger,
The first folding part is fixedly connected with the first module, and the second folding part is magnetically connected with the second module when the wireless charger is in the second state.
6. The wireless charger of claim 4, wherein the battery charger comprises a battery charger,
The support part further comprises a flexible connecting part, a first folding part, a second folding part, a first magnet and a second magnet, wherein the first folding part is integrally connected with the first module, the flexible connecting part is integrally connected between the first folding part and the second folding part and enables the first folding part and the second folding part to rotate relatively, the first folding part defines a first containing cavity, the second folding part defines a second containing cavity, the first magnet is arranged in the first containing cavity, and the second magnet is arranged in the second containing cavity;
The first magnet and the second magnet are both magnetically connected with the third surface when the wireless charger is in the first state, and the second magnet is magnetically connected with the second surface when the wireless charger is in the second state.
7. The wireless charger of claim 6 wherein the battery charger is configured to receive the battery charger,
The second module has a fourth face opposite the second face, the third face including a first portion and a second portion;
When the wireless charger is in the second state, the first part is positioned on the upper side of the second part, the second surface is positioned on the upper side of the fourth surface, one side of the supporting part is connected with the first part, the other side of the supporting part is connected with the second surface, and the second part is abutted with the fourth surface.
8. The wireless charger of claim 7, wherein the battery charger is configured to receive the battery charger,
The second surface comprises a third part and a fourth part, when the wireless charger is in the second state, the third part is positioned on one side of the fourth part, which is close to the first module, along the direction perpendicular to the third surface, and one side of the supporting part is connected with the first part, and the second magnet on the other side is magnetically connected with the third part, so that the fourth part is suitable for wireless charging.
9. The wireless charger of claim 1 wherein the battery charger is configured to receive the battery charger,
The second module is provided with a fourth surface opposite to the second surface, the fourth surface is provided with a third magnet, the wireless charger is also provided with a third state, and when the wireless charger is in the third state, the third magnet is magnetically connected with the third surface, so that the first module and the second module are arranged in a stacked mode along the direction perpendicular to the third surface.
10. The wireless charger of claim 9 wherein the battery charger is configured to receive the battery charger,
The third magnet is arranged at one end of the fourth surface, and is magnetically connected with the third surface when the wireless charger is in the second state.
CN202423221651.1U 2024-12-24 2024-12-24 Wireless charger Active CN223651993U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202423221651.1U CN223651993U (en) 2024-12-24 2024-12-24 Wireless charger

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202423221651.1U CN223651993U (en) 2024-12-24 2024-12-24 Wireless charger

Publications (1)

Publication Number Publication Date
CN223651993U true CN223651993U (en) 2025-12-09

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202423221651.1U Active CN223651993U (en) 2024-12-24 2024-12-24 Wireless charger

Country Status (1)

Country Link
CN (1) CN223651993U (en)

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