Charging platform and applications thereof

By designing a charging platform with controllable magnetic suction unit and shielding components, the problem of wireless power banks being unable to simultaneously charge lamps and electronic devices in different postures was solved, achieving the effect of powering lamps and mobile phones in different postures without affecting the normal operation of the devices.

CN113270906BActive Publication Date: 2026-03-27YUYAO YUCHANG ELECTRICAL APPLIANCE
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2020-02-14
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Existing wireless power banks cannot simultaneously meet the charging needs of lights and complex electronic devices, especially in different postures, where insufficient or excessive magnetic force can interfere with the normal operation of the devices.

Method used

A charging platform was designed, comprising a transmitting coil and a magnetic attraction unit. It can provide strong magnetic attraction to fix the lamp when it is in use, and weaken the magnetic attraction to avoid interference with internal components when the electronic device is in use. The magnetic field strength can be adjusted by the controllable magnetic attraction unit and shielding to adapt to the charging needs of different devices.

Benefits of technology

It enables power supply to lights and electronic devices such as mobile phones in both horizontal and vertical positions without affecting the normal operation of the devices, reducing the burden of carrying multiple power banks and improving portability and flexibility.

✦ Generated by Eureka AI based on patent content.

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Abstract

A charging platform and its application, wherein the charging platform can form a holding space to enable electronic devices to be used on the wall, the charging platform can supply power to lamps and mobile phones respectively or simultaneously, and when supplying power to the mobile phone, the magnetic attraction strength can be weakened to enable the mobile phone to work normally.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of electric energy transmission, and in particular to a charging platform and application thereof. BACKGROUND

[0002] Wireless charging is a popular direction in the field of electric energy transmission. The application of wireless charging to charging has become portable, and thus has been welcomed by consumers.

[0003] Lamps are common tools in daily life, which can convert electric energy into light energy and provide light in dark environments. Portable work lamps are a type of lamps, which can be used portably. Users can carry portable work lamps to various environments based on use requirements, such as outdoor, garage, and the like. The endurance time of a portable work lamp is an important performance, and a big problem for users to use a portable work lamp is that the portable work lamp cannot work due to lack of energy.

[0004] The emergence of portable external power storage devices such as power banks enables the endurance time of a portable work lamp to be extended. At present, power banks that can be applied to lamps have appeared on the market, and in order to facilitate use, wireless power banks have also appeared.

[0005] Wireless power banks applied to lamps are usually configured with magnets to fix the lamps on the wireless power banks by magnetic attraction, so as to facilitate the alignment between the wireless power bank and the lamp, thereby facilitating the electric energy transmission between the wireless power bank and the lamp. Further, in order to cooperate with the use environment of the portable work lamp, the wireless power bank can also be hung at a preset position so that the lamp can be kept at a desired height. Taking a garage as an example, when a user needs to obtain light and the lamp itself is insufficient in electric energy, the user can hang the wireless power bank at a preset position, and then install the lamp on the wireless power bank for charging, and at the same time, the lamp can also radiate light downward to a desired position. It is worth noting that in this process, the lamp can be in a vertical state, and the magnetic attraction force between the lamp and the wireless power bank needs to overcome the gravity of the lamp, which undoubtedly puts a requirement on the strength of the magnetic attraction force between the lamp and the wireless power bank.

[0006] Further, in addition to wireless lamps, there are many other devices that can be wirelessly charged, such as mobile phones. However, the application scene of the wireless power bank applied to lamps is single at present, and it is temporarily impossible to be applied to complex electronic devices. The reason is that once the wireless power bank applied to lamps needs to provide electric energy for complex electronic devices, many problems will be encountered, such as the magnetic attraction element of the wireless power bank may interfere with the normal work of the elements in the electronic device.

[0007] However, in contrast, the application of the lamp itself requires the wireless power bank to provide a larger magnetic force so that the lamp can be firmly fixed with the wireless power bank, whether the lamp is in a horizontal position or in a vertical position, the wireless power bank needs to provide sufficient magnetic force. Limited by these factors, the current lamp power bank can only simply meet the charging needs of the lamp, and it is difficult to meet the charging needs of other charging equipment, especially the charging needs of mobile phones. Users working in a garage or outdoor environment may need to carry at least two power banks, one power bank for powering the lamp, and the other power bank for powering mobile phones and other electronic devices, which is not portable for users. SUMMARY

[0008] One object of the present application is to provide a charging platform and its application, wherein the charging platform can be used in various scenarios, such as charging the lamp, and powering mobile phones and other electronic devices.

[0009] Another object of the present application is to provide a charging platform and its application, wherein the charging platform can power mobile phones in a horizontal placement state.

[0010] Another object of the present application is to provide a charging platform and its application, wherein the charging platform can power mobile phones in a vertical state.

[0011] Another object of the present application is to provide a charging platform and its application, wherein the charging platform can form a platform for placing mobile phones in a vertical state, and the mobile phone can be aligned with the charging platform to be powered.

[0012] Another object of the present application is to provide a charging platform and its application, wherein the charging platform can charge mobile phones and lamps in a vertical state, and when it is needed to charge mobile phones, the platform can be formed.

[0013] Another object of the present application is to provide a charging platform and its application, wherein mobile phones and lamps can be placed horizontally on the charging platform to be charged.

[0014] Another object of the present application is to provide a charging platform and its application, wherein the charging platform is provided with a mounting magnetic member for fixing the lamp to be charged on the charging platform, and when the charging platform is applied to mobile phones and other electronic devices, the mounting magnetic member will not interfere with the normal operation of mobile phones and other electronic devices.

[0015] Another object of the present application is to provide a charging platform and its application, wherein when the lamp is placed on the charging platform to be charged, the mounting magnetic member can provide sufficient magnetic attraction force.

[0016] Another object of the present application is to provide a charging platform and its application, wherein the magnetic attraction of the installed magnetic attraction member can be weakened when the electronic device such as a mobile phone is placed on the charging platform for use, so that the electronic device such as a mobile phone can work normally.

[0017] Another object of the present application is to provide a charging platform and its application, wherein the magnetic field generated by the installed magnetic attraction member can be shielded when the electronic device such as a mobile phone is placed on the charging platform for use, so that the electronic device such as a mobile phone can work normally.

[0018] Another object of the present application is to provide a charging platform and its application, wherein the magnetic field generated by the installed magnetic attraction member can be shielded when the electronic device such as a mobile phone is placed on the charging platform for use, so that the electronic device such as a mobile phone can work normally.

[0019] A charging platform body;

[0020] A sending coil, wherein the sending coil is conductively connected to the charging platform body for being powered by the charging platform body; and

[0021] A magnetic attraction unit, wherein the magnetic attraction unit is arranged on the charging platform body and maintains a predetermined distance from the sending coil, at least part of the magnetic attraction unit is adapted to be magnetically attracted to the magnetic attraction matching member of the lamp to position the lamp to be aligned with the sending coil, wherein the charging platform has a lamp use state and an electronic device use state, in the lamp use state, the lamp is adapted to be positioned on a bearing surface of the charging platform by the magnetic attraction of at least part of the magnetic attraction unit and the magnetic attraction matching member and aligned with the sending coil for being powered, in the electronic device use state, the magnetic attraction of the magnetic attraction unit is weakened to reduce the influence on the electronic components in the electronic device, the electronic device is adapted to be placed on the bearing surface of the charging platform for being powered.

[0022] According to one embodiment of the present application, if the power consuming device is selected as the electronic device, the electronic device is a wireless charging device and in the charging platform is in the electronic device usage state, the electronic device is adapted to be placed on the bearing surface in a manner of being aligned with the transmitting coil to be powered.

[0023] According to one embodiment of the present application, the magnetic attraction unit comprises at least one installation magnetic attraction member, wherein the installation magnetic attraction member is movably arranged on the charging platform body and is adapted to be magnetically attracted to the magnetic attraction matching member, and when the installation magnetic attraction member is operated to move to a position with a larger distance from the bearing surface of the charging platform, the charging platform is transformed from the lamp usage state to the electronic device usage state.

[0024] According to one embodiment of the present application, the magnetic attraction unit comprises at least one installation magnetic attraction member, wherein the installation magnetic attraction member is movably arranged on the charging platform body and is adapted to be magnetically attracted to the magnetic attraction matching member, and when the installation magnetic attraction member is operated to move to a position with a larger distance from the bearing surface of the charging platform, the charging platform is transformed from the lamp usage state to the electronic device usage state.

[0025] According to one embodiment of the present application, the magnetic attraction unit comprises at least one installation magnetic attraction member, wherein the installation magnetic attraction member is movably arranged on the charging platform body and is adapted to be magnetically attracted to the magnetic attraction matching member, and when the installation magnetic attraction member is operated to move to a position with a larger distance from the bearing surface of the charging platform, the charging platform is transformed from the lamp usage state to the electronic device usage state.

[0026] According to one embodiment of the present application, the charging platform further comprises a shielding member disposed in the charging platform body, wherein the shielding member has an active state and an idle state and is operable to be transformed between the active state and the idle state, in the active state, the shielding member is capable of shielding at least part of the magnetic field of the magnetic attraction unit, in the idle state, the shielding of the shielding member to the magnetic attraction unit is weakened, and when the shielding member is transformed from the active state to the idle state, the charging platform is transformed from the lamp usage state to the electronic device usage state.

[0027] According to one embodiment of the present application, the magnetic attraction unit comprises at least one installation magnetic attraction member disposed in the charging platform body and adapted to magnetically attract the magnetic attraction mating member, wherein in the active state of the shielding member, at least part of the magnetic field effect of the installation magnetic attraction member to the bearing surface is shielded.

[0028] According to one embodiment of the present application, the shielding member is movably disposed in the charging platform body, and when the magnetic attraction unit is operated to move to a distance away from the bearing surface of the charging platform, the charging platform is transformed from the lamp usage state to the electronic device usage state.

[0029] According to one embodiment of the present application, the magnetic attraction unit comprises at least one installation magnetic attraction member and a self magnetic attraction member, wherein the installation magnetic attraction member is disposed in the charging platform to magnetically attract the magnetic attraction mating member on the bearing surface of the charging platform, and the self magnetic attraction member is movably disposed in the charging platform body to magnetically attract a wall that can be magnetically attracted on a mounting surface of the charging platform, so that the charging platform can be hung on the wall, in the active state, the shielding member is capable of shielding at least part of the magnetic field of the installation magnetic attraction member or the self magnetic attraction member, in the idle state, the shielding of the shielding member to the installation magnetic attraction member or the self magnetic attraction member is weakened, and when the shielding member is transformed from the active state to the idle state, the charging platform is transformed from the lamp usage state to the electronic device usage state.

[0030] According to one embodiment of the present application, the magnetic attraction unit comprises a mounting magnetic attraction member and at least one self magnetic attraction member, wherein the mounting magnetic attraction member is arranged on the charging platform to magnetically attract the magnetic attraction member on the receiving surface of the charging platform, and the self magnetic attraction member is movably arranged on the main body of the charging platform to magnetically attract a wall that can be magnetically attracted on a mounting surface of the charging platform, so that the charging platform can be hung on the wall, and when the self magnetic attraction member is operated to move away from the receiving surface of the charging platform, the charging platform is switched from the lamp use state to the electronic device use state.

[0031] According to one embodiment of the present application, the magnetic attraction unit comprises a mounting magnetic attraction member and at least one self magnetic attraction member, wherein the mounting magnetic attraction member is arranged on the charging platform to magnetically attract the magnetic attraction member on the receiving surface of the charging platform, and the self magnetic attraction member is movably arranged on the main body of the charging platform to magnetically attract a wall that can be magnetically attracted on a mounting surface of the charging platform, so that the charging platform can be hung on the wall, and when the self magnetic attraction member is operated to move away from the receiving surface of the charging platform, the charging platform is switched from the lamp use state to the electronic device use state.

[0032] According to one embodiment of the present application, the magnetic attraction unit comprises a mounting magnetic attraction member and at least one self magnetic attraction member, wherein the mounting magnetic attraction member is arranged on the charging platform to magnetically attract the magnetic attraction member on the receiving surface of the charging platform, and the self magnetic attraction member is movably arranged on the main body of the charging platform to magnetically attract a wall that can be magnetically attracted on a mounting surface of the charging platform, so that the charging platform can be hung on the wall, and when the self magnetic attraction member is operated to move away from the receiving surface of the charging platform, the charging platform is switched from the lamp use state to the electronic device use state.

[0033] According to one embodiment of the present application, the magnetic attraction unit further comprises a self magnetic attraction member, wherein the self magnetic attraction member is mounted on the main body of the charging platform and located on the opposite side of the mounting magnetic attraction member, and the self magnetic attraction member is adapted to be attracted to a wall that can be magnetically attracted, so that the charging platform can be hung on the wall.

[0034] According to one embodiment of the present application, the number of the magnetic attraction members is two, and they are symmetrically arranged on both sides of the transmitting coil.

[0035] According to another aspect of the present application, the present application provides a charging platform adapted to supply power to an electrical device, which is optionally a wireless charging lamp or an electronic device, wherein the lamp is provided with at least one magnetic attraction matching member, wherein the charging platform comprises:

[0036] a charging platform body;

[0037] a transmitting coil, wherein the transmitting coil is electrically connected to the charging platform body in a conductive manner to be powered by the charging platform body; and

[0038] a magnetic attraction unit, wherein the magnetic attraction unit is arranged on the charging platform body and maintains a predetermined distance from the transmitting coil, at least part of the magnetic attraction unit is adapted to be attracted to a wall that can be magnetically attracted, so that the charging platform can be hung on the wall, wherein the charging platform has a lamp use state and an electronic device use state, in the lamp use state, the lamp is adapted to be placed on a bearing surface of the charging platform in a manner of being aligned with the transmitting coil to be powered, in the electronic device use state, the magnetic attraction of the magnetic attraction unit is weakened to reduce the influence on the electronic components in the electrical device, and the electrical device is adapted to be placed on the bearing surface of the charging platform to be powered.

[0039] According to one embodiment of the present application, the magnetic attraction unit comprises at least one self-magnetic attraction member, wherein the self-magnetic attraction member is movably arranged on the charging platform body, and when the self-magnetic attraction member is operated to move to a position away from the bearing surface of the charging platform, the charging platform changes from the lamp use state to the electronic device use state.

[0040] According to another aspect of the present application, the present application provides a working method of a charging platform, which comprises the following steps:

[0041] transmitting electric energy to an electrical device placed on a bearing surface of a charging platform, wherein the charging platform is adapted to be switched between a lamp use state and an electronic device use state, in the lamp use state, a lamp is adapted to be positioned on the bearing surface of the charging platform by the magnetic attraction of at least part of a magnetic attraction unit of the charging platform and a magnetic attraction matching member arranged on the lamp, and is aligned with a transmitting coil of the charging platform to be powered, in the electronic device use state, the magnetic attraction of the magnetic attraction unit is weakened to reduce the influence on the electronic components in the electrical device, and the electrical device is adapted to be placed on the bearing surface of the charging platform to be powered.

[0042] According to one embodiment of the present application, in the above method, a mounting magnetic attraction member of the magnetic attraction unit is movably arranged on the charging platform body and is adapted to magnetically attract the magnetic attraction mating member, and when the mounting magnetic attraction member is operated to move to a position away from the bearing surface of the charging platform, the charging platform is switched from the lamp usage state to the electronic device usage state.

[0043] According to one embodiment of the present application, the electrical device receives the electrical energy from the charging platform by wireless transmission.

[0044] According to one embodiment of the present application, in the above method, a self magnetic attraction member of the magnetic attraction unit is arranged on the charging platform body and is adapted to be attracted to a wall that can be magnetically attracted, so that the charging platform can be hung on the wall, and when the influence of the self magnetic attraction member on the electrical device is shielded by a shielding member, the charging platform is switched from the lamp usage state to the electronic device usage state. BRIEF DESCRIPTION OF DRAWINGS

[0045] Figure 1A is a schematic view of a charging platform according to a preferred embodiment of the present application.

[0046] Figure 1B is a schematic view of the charging platform according to the above preferred embodiment of the present application.

[0047] Figure 2A is an exploded schematic view of the charging platform according to the above preferred embodiment of the present application.

[0048] Figure 2B is an exploded schematic view of the charging platform according to the above preferred embodiment of the present application from another perspective.

[0049] Figure 3A is a schematic view of a limiting magnetic attraction member mounting assembly of the charging platform according to the above preferred embodiment of the present application.

[0050] Figure 3B is a schematic view of the limiting magnetic attraction member mounting assembly of the charging platform according to the above preferred embodiment of the present application from another perspective.

[0051] Figure 4A is a schematic view of one of the steps of the working process of the limiting magnetic attraction member mounting assembly of the charging platform according to the above preferred embodiment of the present application.

[0052] Figure 4B is a schematic view of one of the steps of the working process of the limiting magnetic attraction member mounting assembly of the charging platform according to the above preferred embodiment of the present application.

[0053] Figure 4C is a schematic diagram of one of the steps of the working process of the limiting magnetic attraction piece mounting assembly of the charging platform according to the above preferred embodiment of the present application.

[0054] Figure 4D is a schematic diagram of one of the steps of the working process of the limiting magnetic attraction piece mounting assembly of the charging platform according to the above preferred embodiment of the present application.

[0055] Figure 5A is a schematic diagram of the application of the charging platform according to the above preferred embodiment of the present application.

[0056] Figure 5B is a schematic diagram of the application of the charging platform according to the above preferred embodiment of the present application.

[0057] Figure 5C is a schematic diagram of the application of the charging platform according to the above preferred embodiment of the present application.

[0058] Figure 5D is a schematic diagram of the application of the charging platform according to the above preferred embodiment of the present application.

[0059] Figure 6A is a schematic diagram of the charging platform according to another preferred embodiment of the present application.

[0060] Figure 6B is a schematic diagram of the charging platform according to another preferred embodiment of the present application.

[0061] Figure 6C is a schematic diagram of the charging platform according to another preferred embodiment of the present application.

[0062] Figure 6D is a schematic diagram of the charging platform according to another preferred embodiment of the present application.

[0063] Figure 7A is a schematic diagram of a charging platform according to a preferred embodiment of the present application.

[0064] Figure 7B is a schematic diagram of the charging platform according to the above preferred embodiment of the present application.

[0065] Figure 8A is a schematic diagram of a charging platform according to a preferred embodiment of the present application.

[0066] Figure 8B is a schematic diagram of the charging platform according to the above preferred embodiment of the present application.

[0067] Figure 9Ais a schematic view of a charging platform according to a preferred embodiment of the present application.

[0068] Figure 9B is a schematic view of the charging platform according to the preferred embodiment of the present application.

[0069] Figure 10A is a schematic view of a charging platform according to a preferred embodiment of the present application.

[0070] Figure 10B is a schematic view of the charging platform according to the preferred embodiment of the present application.

[0071] Figure 11A is a schematic view of a charging platform according to a preferred embodiment of the present application.

[0072] Figure 11B is a schematic view of the charging platform according to the preferred embodiment of the present application.

[0073] Figure 12A is a schematic view of a charging platform according to a preferred embodiment of the present application.

[0074] Figure 12B is a schematic view of the charging platform according to the preferred embodiment of the present application.

[0075] Figure 13A is a schematic view of a charging platform according to a preferred embodiment of the present application.

[0076] Figure 13B is a schematic view of the charging platform according to the preferred embodiment of the present application.

[0077] Figure 14A is a schematic view of a charging platform according to a preferred embodiment of the present application.

[0078] Figure 14B is a schematic view of the charging platform according to the preferred embodiment of the present application.

[0079] Figure 15A is a schematic view of a charging platform according to a preferred embodiment of the present application.

[0080] Figure 15B is a schematic view of the charging platform according to the preferred embodiment of the present application.

[0081] Figure 16 is a schematic view of the charging platform according to another preferred embodiment of the present application. DETAILED DESCRIPTION

[0082] The following description is provided so as to enable any person skilled in the art to practice the application. The preferred embodiments are described in the following description with reference to the figures. Various modifications to these embodiments can be made by those skilled in the art without departing from the spirit and scope of the application. The basic principles illustrated in the following description can be applied to other embodiments, variations, modifications, equivalents, and other implementations of the application without departing from the spirit and scope of the application.

[0083] It should be understood by those skilled in the art that in the disclosure of the present application, the terms "longitudinal", "transverse", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", and the like indicate the orientation or positional relationship shown in the drawings, which are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, therefore the above terms cannot be understood as a limitation of the present application.

[0084] It should be understood that the term "one" should be understood as "at least one" or "one or more", that is, in one embodiment, the number of one element can be one, and in another embodiment, the number of the element can be multiple, and the term "one" cannot be understood as a limitation of the number.

[0085] According to an aspect of the present application, the present application provides a charging platform 1000, wherein the charging platform 1000 is suitable for providing power for an electrical device 2000, such as being able to provide power for a lamp 2000A, and being able to provide power for an electronic device 2000B such as a mobile phone, a tablet, a music player, an electronic bracelet, and the like.

[0086] It is worth noting that the charging platform 1000 can not only provide charging services for the lamp 2000A or the electronic device 2000B such as a mobile phone in a horizontal placement state, but also can provide charging services for the lamp 2000A or the electronic device 2000B such as a mobile phone in a vertical placement state.

[0087] In other words, when the electronic device 2000B such as a mobile phone is placed on the charging platform 1000 for charging, the electronic device 2000B such as a mobile phone can follow the charging platform 1000 to be mounted on the wall.

[0088] For the convenience of description, the mobile phone is taken as an example for illustration. The charging platform 1000 can magnetically attract the lamp to the receiving surface of the charging platform 1000 by magnetic attraction, regardless of whether the charging platform 1000 is in a horizontal placement state or in a vertical placement state. However, when the charging platform 1000 is used to place the mobile phone, the magnetic attraction of the charging platform 1000 can affect the mobile phone. The charging platform 1000 provided by the application can supply power to the mobile phone while allowing the mobile phone to work normally, regardless of whether it is in a horizontal placement state or in a vertical placement state. Referring to the accompanying Figures 1A to 5D The charging platform 1000 provided by the application can supply power to the mobile phone while allowing the mobile phone to work normally, regardless of whether it is in a horizontal placement state or in a vertical placement state. Referring to the accompanying

[0089] The charging platform 1000 includes a charging platform body 10, at least one transmitting coil 20, and a magnetic attraction unit 30. The magnetic attraction unit 30 is arranged on the charging platform body 10, and the magnetic attraction unit 30 can generate magnetic attraction to magnetically attract at least part of the magnetic attraction unit 30 to a magnetic attraction fitting part of the electrical equipment 2000, so that the electrical equipment 2000 can be magnetically attracted to the receiving surface 101 of the charging platform body 10 of the charging platform 1000.

[0090] The magnetic attraction unit 30 can include at least one limiting magnetic attraction part 31, which is arranged on the charging platform body 10 and allows the electrical equipment 2000 to be magnetically attracted to the receiving surface 101 of the charging platform body 10 of the charging platform 1000. Preferably, the receiving surface 101 is a flat surface to facilitate the fit of the receiving surface 101 and the electrical equipment 2000. The transmitting coil 20 is arranged on the charging platform body 10, and the charging platform body 10 can supply power to the transmitting coil 20, so that the transmitting coil 20 and a receiving coil of the electrical equipment 2000 can achieve power transmission. The electrical equipment 2000 can be a lamp or an electronic device such as a mobile phone. The charging platform body 10 can include a charging platform shell 11 and a power storage unit 12, wherein the power storage unit 12 is mounted on the charging platform shell 11, and the limiting magnetic attraction part 31 and the transmitting coil 20 are arranged on the charging platform shell 11 of the charging platform body 10, respectively.

[0091] The charging platform 1000 has a receiving surface 101 for receiving the electrical device 2000, such as the lamp 2000A or the mobile phone 2000B. The receiving surface 101 can be formed on an outer surface of the charging platform housing 11. The limiting magnetic member 31 can be exposed on the receiving surface 101 to facilitate the magnetic attraction between the limiting magnetic member 31 and the magnetic attraction member of the electrical device 2000. The limiting magnetic member 31 can also be located below the receiving surface 101 or installed in a recessed position of the receiving surface 101.

[0092] The transmitting coil 20 can be located on the receiving surface 101 or below the receiving surface 101.

[0093] The limiting magnetic member 31 and the transmitting coil 20 can be kept at a predetermined distance to avoid mutual interference between the limiting magnetic member 31 and the transmitting coil 20. For example, the minimum distance between the limiting magnetic member 31 and the transmitting coil 20 can be kept at 2mm to 10mm. According to some embodiments of the present application, the limiting magnetic member 31 and the transmitting coil 20 can be kept at a distance of, for example, more than 7mm, such as 7mm to 8mm, for example, 7.5mm, 7.8mm, or 8mm, to avoid the limiting magnetic member 31 affecting the normal operation of the transmitting coil 20. The charging platform 1000 has a lamp use state and an electronic device use state and is operable to change between the lamp use state and the electronic device use state. In the lamp use state, the lamp is placed on the receiving surface 101 of the charging platform main body 10 and is positioned to align with the transmitting coil 20 of the charging platform 1000 by the magnetic attraction between the magnetic attraction member and the limiting magnetic member 31 of the magnetic attraction unit 30. In the electronic device use state, the electronic device is aligned with the transmitting coil 20 to be powered. When the charging platform 1000 is installed on a wall, the charging platform 1000 can form a holding space 100 to change from the lamp use state to the electronic device use state. The electronic device can be held in the holding space 100 and aligned with the transmitting coil 20 to be powered.

[0094] In detail, the charging platform 1000 has a standing use state and a wall-hanging use state. In the standing use state, the electronic device or the lamp is selectively supported on the receiving surface 101 of the charging platform body 10 and aligned with the transmitting coil 20 for power supply. If the charging platform 1000 is placed on a horizontal surface or a surface with an acute angle with the horizontal surface, the mobile phone can be supported on the charging platform 1000 for charging and automatically falls off the charging platform 1000 under the action of gravity, and the lamp can be magnetically attracted to the receiving surface by the magnetic attraction between the magnetic attraction member 31 and the magnetic attraction fitting member.

[0095] In the wall-hanging use state, the electronic device or the lamp is selectively held outside the receiving surface 101 of the charging platform body 10. If the lamp is held outside the receiving surface 101 of the charging platform body 10, the lamp is hung on the receiving surface 101 of the charging platform body 10 by the magnetic attraction between the magnetic attraction fitting member and the magnetic attraction member 31. If the electronic device is held outside the receiving surface 101 of the charging platform body 10, the charging platform 1000 can form a holding space 100, and the electronic device can be held in the holding space 100 and aligned with the transmitting coil 20 for power supply.

[0096] In other words, the charging platform 1000 can provide multiple use states. One state is for placing the lamp. Due to the magnetic attraction between the charging platform 1000 and the lamp, the lamp can be attracted to the charging platform 1000 for power supply regardless of whether the charging platform 1000 is placed horizontally or hung. One state is for the electronic device. The electronic device can be manually aligned with the transmitting coil 20 or aligned with the charging platform 1000 by buckling or the like. However, the electronic device is generally not configured with the magnetic attraction fitting member. Therefore, when the charging platform 1000 is hung, the electronic device is held outside the receiving surface 101 by the holding space 100 formed by the charging platform 1000, so that the electronic device can also be wirelessly charged in the hanging state.

[0097] In more detail, the charging platform 1000 includes a supporting assembly 40, wherein the supporting assembly 40 is mounted on the charging platform body 10 and used to support the electronic device, especially when the electronic device is placed on the charging platform 1000 and may fall off the charging platform 1000. The supporting assembly 40 includes a supporting member 41 and a supporting control member 42, wherein the supporting member 41 is controllably connected to the supporting control member 42.

[0098] In the present embodiment, the support member 41 is movably mounted to the charging platform body 10, such as the charging platform housing 11. When at least a portion of the support member 41 is moved to a certain distance from the receiving surface 101 of the charging platform body 10, the holding space 100 can be formed between the support member 41 and the receiving surface 101 of the charging platform body 10. The electronic device can be held in the holding space 100, and the support member 41 can support the electronic device so that the electronic device can be kept in alignment with the transmitting coil 20 to be powered when the charging platform 1000 is used in a hanging manner.

[0099] The support member 41 comprises a first support arm 411 and a second support arm 412, wherein the first support arm 411 and the second support arm 412 are respectively connected to two ends of the charging platform body 10. The first support arm 411 and the second support arm 412 are respectively movably connected to the charging platform body 10.

[0100] The support member 41 further comprises a support table 413, wherein the support table 413 is respectively connected to the first support arm 411 and the second support arm 412. The support table 413 is located between the first support arm 411 and the second support arm 412. When the electronic device is used in a hanging manner, the support table 413 can directly support the electronic device to avoid the electronic device from directly falling under the action of gravity. The first support arm 411 and the second support arm 412 can avoid the electronic device from tilting so that the electronic device is closely attached to the receiving surface 101 of the charging platform body 10.

[0101] When the charging platform 1000 needs to be used on a wall, at least a portion of the support member 41 can be moved outward to form the holding space 100.

[0102] It is worth noting that when the charging platform 1000 does not need to be used on a wall and is used to power the electronic device, the support member 41 can be retracted and the receiving surface 101 of the charging platform 1000 can become a flat surface.

[0103] In detail, the surface of the charging platform body 10 is recessed to form a containing space 102, and the support member 41 is contained in the containing space 102.

[0104] The surface of the charging platform body 10 and the surface of the supporting member 41 form a supporting surface. Preferably, the surface of the supporting member 41 and the surface of the charging platform body 10 on the side where the supporting member 41 is located are in the same plane, so that the charging platform 1000 can provide a horizontal supporting surface 101.

[0105] Further, when the supporting member 41 is away from the charging platform body 10, the charging platform 1000 can form a holding opening 1001, which is in communication with the holding space 100 and is located at the high end of the supporting member 41. The supporting member 41 has a high end and a low end, and the distance from the supporting member 41 to the supporting surface 101 of the charging platform body 10 is gradually reduced from the high end to the low end of the supporting member 41, so that the holding opening 1001 is set to be larger to facilitate the placement of the electronic device.

[0106] The supporting base 413 of the supporting member 41 is rotatably connected to the charging platform body 10, and the first supporting arm 411 and the second supporting arm 412 are movably connected to the charging platform body 10.

[0107] The supporting control member 42 can include a resilient member 421 and an operation button 422, wherein the supporting member 41 is resiliently connected to the resilient member 421 and the resilient member 421 is connected to the charging platform body 10. The resilient member 421 is operatively connected to the operation button 422. When the user operates the operation button 422, the supporting member 41 is pushed by external force to overcome the elastic force of the resilient member 421, and then moves outward to form the holding space 100. When the user releases the operation button 422, the supporting member 41 automatically resets.

[0108] Further, the supporting assembly 40 includes a supporting limiting member 43, wherein the supporting limiting member 43 is respectively mounted on both sides of the supporting member 41, and the supporting limiting member 43 is connected to the charging platform body 10 and the supporting member 41.

[0109] The supporting limiting member 43 forms a limiting groove 430 with a preset length, wherein the first supporting arm 411 and the second supporting arm 412 of the supporting member 41 can move back and forth along the limiting groove 430 of the supporting limiting member 43, so that the supporting member 41 has a moving space.

[0110] In other words, the size of the holding space 100 formed by the support member 41 and the charging platform body 10 is variable within a certain range to accommodate electronic devices within a certain size range, or in other words, to leave a certain operable space for the user.

[0111] It can be understood that the support member 41 can be installed on the charging platform body 10 in other ways. For example, referring to FIG. 1, the support member 41 is arranged to be detachable, and when it is necessary to charge the electronic device in the wall-mounted state, the support member 41 can be installed on the charging platform body 10 to form the holding space 100. Figure 6A It can be understood that the support member 41 can be installed on the charging platform body 10 in other ways. For example, referring to FIG. 1, the support member 41 is arranged to be detachable, and when it is necessary to charge the electronic device in the wall-mounted state, the support member 41 can be installed on the charging platform body 10 to form the holding space 100. Figure 6B It can be understood that the support member 41 can be installed on the charging platform body 10 in other ways. For example, referring to FIG. 1, the support member 41 is arranged to be detachable, and when it is necessary to charge the electronic device in the wall-mounted state, the support member 41 can be installed on the charging platform body 10 to form the holding space 100.

[0112] Referring to FIG. 2, the support member 41 includes the first support arm 411 and the second support arm 412, and the first support arm 411 and the second support arm 412 respectively support the electronic device from both sides of the electronic device. Figure 6C It can be understood that the support member 41 can be installed on the charging platform body 10 in other ways. For example, referring to FIG. 1, the support member 41 is arranged to be detachable, and when it is necessary to charge the electronic device in the wall-mounted state, the support member 41 can be installed on the charging platform body 10 to form the holding space 100.

[0113] Referring to FIG. 3, the support member 41 includes the first support arm 411, the second support arm 412, and the support table 413, wherein the support table 413 is fixed to the charging platform body 10, and the first support arm 411 and the second support arm 412 are arranged to be movable to change the distance between the first support arm 411 and the second support arm 412, thereby accommodating electronic devices of different sizes. Figure 6D It can be understood that the support member 41 can be installed on the charging platform body 10 in other ways. For example, referring to FIG. 1, the support member 41 is arranged to be detachable, and when it is necessary to charge the electronic device in the wall-mounted state, the support member 41 can be installed on the charging platform body 10 to form the holding space 100.

[0114] It can be understood that at least one of the support arms is movably arranged on the charging platform body 10 to adjust the size of the holding space 100. It can be understood that at least one of the support arms is movably arranged on the charging platform body 10 to adjust the size of the holding space 100.

[0115] It can be understood that the electronic device can be held on the receiving surface 101 of the charging platform body 10 in various ways in the case that the electronic device cannot be aligned with the transmitting coil 20 of the charging platform 1000 under the action of gravity. The electronic device can be pressed, clamped, pressed, and restrained on the receiving surface 101 of the charging platform body 10, and can be supported, held, and suspended outside the receiving surface 101 and within the chargeable distance from the receiving surface 101.

[0116] It can be understood that the holding space 100 formed by the support 41 and the charging platform body 20 can always exist in different states. When the lamp 2000A is placed, the holding space 100 can be expanded to place the lamp 2000A, and when the electronic device 2000B is placed, the holding space 100 can be reduced to hold the electronic device 2000B.

[0117] The support 41 mainly holds the electronic device 2000B on the charging platform body 20 through two directions of force, one of which passes through the electronic device 2000B and the charging platform body 20, such as the direction perpendicular to the receiving surface 101, such as the way of pressing the electronic device 2000B on the receiving surface 101, and the other direction of force can only pass through the electronic device 2000B, such as the direction parallel to the receiving surface 101, such as clamping the electronic device 2000B to hold outside the receiving surface 101.

[0118] In other words, the electronic device 2000B is pressed to fit on the receiving surface 101 by the support 41, or the electronic device 2000B is supported and fitly held on the receiving surface 101 by the support 41.

[0119] Referring to FIG. 1, the charging platform 1000 is in the placing use state, and the lamp 2000A is placed on the charging platform 1000 and aligned to be powered under the magnetic attraction of the magnetic attraction member 31 and the magnetic attraction matching member. Figure 5A Referring to FIG. 1, the charging platform 1000 is in the placing use state, and the lamp 2000A is placed on the charging platform 1000 and aligned to be powered under the magnetic attraction of the magnetic attraction member 31 and the magnetic attraction matching member. Figure 5B Referring to FIG. 1, the charging platform 1000 is in the placing use state, and the lamp 2000A is placed on the charging platform 1000 and aligned to be powered under the magnetic attraction of the magnetic attraction member 31 and the magnetic attraction matching member. Figure 5CAs shown, the charging platform 1000 is in the upper wall use state, the lamp 2000A is held outside the receiving surface 101 by the magnetic attraction of the limiting magnetic attraction member 31 and the magnetic attraction fitting member and is kept in alignment with the transmitting coil 20 to be powered. Referring to the accompanying drawings Figure 5D As shown, the charging platform 1000 is in the upper wall use state, the electronic device 2000B is held outside the receiving surface 101 and is aligned with the transmitting coil 20 to be powered.

[0120] The charging platform 1000 has a lamp use state and an electronic device use state and is operable to switch between the lamp use state and the electronic device use state. Further, in the lamp use state, the lamp 2000A is adapted to be fixedly installed on the receiving surface 101 of the charging platform 1000 by the magnetic attraction of the limiting magnetic attraction member 31 and the magnetic attraction fitting member and is aligned with the transmitting coil 20 to be powered. In the electronic device use state, the magnetic attraction of the limiting magnetic attraction member 31 to the electronic device 2000B is weakened, and the electronic device 2000B is placed on the receiving surface 101 of the charging platform 1000 in a manner aligned with the transmitting coil 20.

[0121] It is worth noting that in the electronic device use state, the lamp 2000A can also be placed on the charging platform 1000. At present, the types of lamps 2000A are diverse, and intelligentization and Internet of Things are the direction of development. The lamp 2000A integrated with multiple electronic elements is adapted to be placed on the charging platform 1000 to charge when the charging platform 1000 is in the electronic device use state.

[0122] In other words, the lamp use state or the electronic device use state is not a mandatory restriction on the type of powered device 2000. When the charging platform 1000 is in the lamp use state, the charging platform 1000 is more suitable for providing power to the lamp 2000A, and when the charging platform 1000 is in the electronic device use state, the charging platform 1000 is more suitable for providing power to the electronic device 2000B such as a mobile phone.

[0123] Further, the limiting magnetic attraction member 31 is movably arranged on the charging platform body 10, and when the limiting magnetic attraction member 31 is operable to move to a distance away from the receiving surface 101 of the charging platform 1000, the charging platform 1000 can be transformed from the lamp use state to the electronic device use state.

[0124] It is worth noting that the limiting magnetic attraction member 31 can be arranged at a distance from the transmitting coil 20 to avoid affecting the transmission of electric energy between the transmitting coil 20 and the receiving coil.

[0125] It is worth noting that when the electrically powered device is placed on the charging platform 1000 for charging, a distance needs to be kept between the transmitting coil 20 of the charging platform 1000 and the receiving coil of the electrically powered device to facilitate the transmission efficiency between the transmitting coil 20 and the receiving coil. Too large or too small distance will affect the transmission efficiency. According to some embodiments of the present application, the distance between the transmitting coil 20 and the receiving coil is in the range of 2mm to 3mm, for example, 2.5mm.

[0126] Optionally, the transmitting coil 20 can be arranged at a middle position of the charging platform housing 11 of the charging platform body 10, and the limiting magnetic attraction member 31 can be arranged around the transmitting coil 20.

[0127] In the present embodiment, the limiting magnetic attraction member 31 is rotatable and movably arranged on the charging platform body 10.

[0128] The charging platform 1000 further comprises a limiting magnetic attraction member mounting assembly 50, wherein the limiting magnetic attraction member 32 is mounted on the limiting magnetic attraction member mounting assembly 50, and the limiting magnetic attraction member mounting assembly 50 is mounted on the charging platform body.

[0129] In detail, reference can be made to the accompanying drawings Figure 3A to the accompanying drawings Figure 4D The limiting magnetic attraction member mounting assembly 50 comprises a limiting magnetic attraction member mounting member 51 and a limiting magnetic attraction member control member 52, wherein the limiting magnetic attraction member mounting member 51 is movably connected to the charging platform body, and the limiting magnetic attraction member mounting member 51 is controllably connected to the limiting magnetic attraction member control member 52.

[0130] The charging platform body 10 is formed with a receiving groove 103 at an edge position, wherein the receiving groove 103 is recessed from at least part of the edge of the charging platform body 10. The limiting magnetic attraction member mounting member 51 is mounted on the charging platform body 10 and located in the receiving groove 103.

[0131] The limiting magnetic attraction member mounting member 51 is rotatably connected to the charging platform body 10, and the limiting magnetic attraction member mounting member 51 has a first connecting end and a second connecting end, which are rotatably connected to the charging platform body 10, respectively.

[0132] The limiting magnetic attraction member mounting member 51 has a working surface 501 and a non-working surface 502. When the working surface 501 and the receiving surface 101 of the charging platform body 10 are on the same side, for example, on the same plane, the limiting magnetic attraction member 31 mounted on the limiting magnetic attraction member mounting member 51 can magnetically attract the lamp placed on the receiving surface 101. When the non-working surface 502 and the receiving surface 101 of the charging platform body 10 are on the same plane, the limiting magnetic attraction member 31 mounted on the limiting magnetic attraction member mounting member 51 does not magnetically attract the lamp placed on the receiving surface 101, or does not magnetically attract the electronic device placed on the receiving surface 101 or the magnetic attraction can be weakened so that the electronic device can work normally.

[0133] In this embodiment, the limiting magnetic attraction member mounting member 51 is rotatably mounted on the charging platform body 10. By operating the limiting magnetic attraction member control member 52, the limiting magnetic attraction member mounting member 51 and a surface of the charging platform body 10 can be switched back and forth between the working surface 501 and the non-working surface 502.

[0134] Optionally, the working surface 501 can be a magnetic surface, and the non-working surface 502 can be a non-magnetic surface opposite to the magnetic surface. It is worth noting that the working surface 501 does not necessarily face away from the non-working surface 502, but can also be adjacent to the non-working surface 502.

[0135] The magnetic surface is used to magnetically attract the lamp 2000A. The limiting magnetic attraction member can be located on the magnetic surface or be arranged close to the magnetic surface.

[0136] When the working surface 501 is rotated to be on the same side as the receiving surface 101 of the charging platform body 10, the charging platform 1000 is in the lamp use state, and the lamp 2000A can be magnetically attracted to the receiving surface 101 and aligned with the transmitting coil 20 of the charging platform body 10 through the magnetic attraction fitting member. When the non-working surface 502 is rotated to be on the same side as the receiving surface 101 of the charging platform body 10, the charging platform 1000 is in the electronic device use state, and the magnetic attraction of the limiting magnetic attraction member to the electronic device 2000B placed on the receiving surface 101 can be weakened.

[0137] Specifically, the limiting magnetic attraction member control member 52 comprises a pushing member 521, a rotating member 522, and an elastic support member 523, wherein the rotating member 522 is connected to the limiting magnetic attraction member mounting member 51 to drive the limiting magnetic attraction member mounting member 51 to rotate, and the elastic support member 523 is supported on the rotating member 522. One end of the rotating member 522 is connected to the limiting magnetic attraction member mounting member 51, and the other end is connected to the elastic support member 523. The rotating member 522 is drivably connected to the pushing member 521, wherein the pushing member 521 can be operated by a user to move, thereby driving the rotating member 522 to rotate.

[0138] More specifically, the rotating member 522 is formed with a guide inclined groove 5220, wherein when the pushing member 521 is moved along the guide inclined groove 5220, the rotating member 522 is driven to rotate, so that the position of the limiting magnetic attraction member mounting member 51 changes between the working surface 501 and the idle surface 502.

[0139] The pushing member 521 comprises a pushing member housing 5211, a pushing moving member 5212, and a pushing elastic member 5213, wherein the pushing member housing 5211 is formed with a pushing operation channel 521102 and a driving moving channel 521101, the rotating member 522 is mounted in the driving moving channel 521101 and can rotate in the driving moving channel 521101 in the axial direction. The pushing moving member 5212 is contained in the pushing moving channel 521102 and can move back and forth in the pushing moving channel 521102.

[0140] One end of the pushing moving member 5212 is supported on the pushing elastic member 5213, and the other end is abutted against the rotating member 522.

[0141] The guide inclined groove 5220 is obliquely formed on the surface of the rotating member 522, and the rotating rod 522 is formed with a proximal end alignment groove 52201 and a distal end alignment groove 52202, wherein the proximal end alignment groove 52201 is close to the limiting magnetic attraction member mounting member 51, and the distal end alignment groove 52202 is close to the elastic support member 523.

[0142] The proximal end alignment groove 52201 and the distal end alignment groove 52202 are connected to each other through the guide inclined groove 5220.

[0143] It is worth noting that the positions of the proximal end alignment groove 52201 and the distal end alignment groove 52202 can be lower than the positions of the surrounding guide inclined groove 5220, thereby playing an alignment role.

[0144] In the present embodiment, when the working surface 501 of the limiting magnetic member mounting member 51 and the receiving surface 101 are located at the same side, the pushing moving member 5212 of the pushing member 521 is located at the proximal end alignment groove 52201 of the rotating member 522. When the pushing member 521 moves along the surface of the rotating member 522 towards the direction close to the elastic support member 523, the pushing moving member 5212 moves from the proximal end alignment groove 52201 along the guide inclined groove 5220 towards the distal end alignment groove 52202. Under the drive of the pushing moving member 5212, the rotating member 522 rotates simultaneously, which can be referred to in the accompanying drawings. Figure 4B

[0145] When the pushing moving member 5212 moves to the distal end alignment groove 52202, the elastic support member 523 has been compressed and the pushing moving member 5212 cannot continue to move in the same direction.

[0146] The user can release the pushing member 521, at which time the pushing moving member 5212 automatically moves along the guide inclined groove 5220 towards another proximal end alignment groove 52201 under the action of the elastic support member 523, so that the rotating member 522 continues to flip in a unified direction, which can be referred to in the accompanying drawings. Figure 4C Figure 4D When the pushing moving member 5212 moves to another proximal end alignment groove 52201, the positions of the working surface 501 of the limiting magnetic member mounting member 51 and the idle surface 502 are interchanged, and the idle surface 502 and the receiving surface 101 are located at the same side.

[0147] It is worth mentioning that in the present embodiment, the guide inclined groove 5220 is designed as two identical V-shaped grooves spliced together. In fact, the shape of the guide inclined groove 5220 can be designed according to actual needs, such as more or fewer V-shaped grooves, to obtain the expected rotation angle.

[0148] Further, the number of the pushing moving member 5212 and the pushing elastic member 5213 of the pushing member 521 is two respectively, and they are designed symmetrically on both sides of the rotating member 522.

[0149] For the pushing moving member 5212 of the pushing member 521, under the action of the pushing elastic member 5213, when the pushing moving member 5212 moves to the proximal end alignment groove 52201 or the distal end alignment groove 52202, it can be fitted with the surface of the rotating member 522 under the height difference, so that the rotation angle of the rotating member 522 can be aligned and controlled.

[0150] ​​Further, in the embodiment, the rotating member 522 comprises a rotating rod 5222 and a top rod 5221, wherein the rotating rod 5222 is installed on the limiting magnetic member installation 51, the top rod 5221 is supported on the elastic support 523, the top rod 5221 is supported on the rotating rod 5222, and the guide inclined groove 5220 is formed on the top rod 5221 and / or the rotating rod 5222. The proximal end alignment groove 52201 can be formed on the rotating rod 5222, and the distal end alignment groove 52202 can be formed on the top rod 5221.

[0151] In the embodiment, the number of the proximal end alignment groove 52201 and the distal end alignment groove 52202 is two respectively.

[0152] The top rod 5221 can form four inclined top rod grooves 52210 at the end, and adjacent top rod grooves 52210 form a V-shaped or U-shaped structure. Similarly, the rotating rod 5222 can form four inclined rotating rod grooves 52220 at the end, and adjacent rotating rod grooves 52220 form a V-shaped or U-shaped structure. When the top rod 5221 is installed on the rotating rod 522, the guide inclined groove 5220 is formed.

[0153] It is worth noting that by designing the inclined direction of the guide inclined groove 5220, the moving direction of the pushing moving member 5212 can be controlled, thereby determining the rotating direction of the rotating member 522, such as clockwise rotation or counterclockwise rotation.

[0154] In the above manner, the limiting magnetic member installation 51 is rotatably installed on the charging platform main body 10.

[0155] It is worth noting that in the above manner, when the charging platform 1000 provides electric energy for the electronic device, the influence of the limiting installation 51 of the charging platform 1000 on the electronic device can be weakened or disappeared, so that the electronic device is not affected by the magnetic field of the limiting installation 51, thereby being able to work normally.

[0156] Further, the formation of the limiting magnetic member installation assembly 50 and the holding space 100 can be linked.

[0157] It can be that the limiting magnetic member control 52 of the limiting magnetic member installation assembly 50 and the support control 42 for controlling the support 41 can be selectively operated, and any one is operated, the limiting magnetic member installation 51 and the support 41 can be actuated at the same time.

[0158] Alternatively, the limiting magnetic attraction member control member 52 and the supporting control member 42 of the limiting magnetic attraction member mounting assembly 50 can be integrated together.

[0159] It can be understood that the charging platform 10 can provide four usage modes. One usage mode is that the limiting magnetic attraction member 31 and the receiving surface 101 are located on the same side, and the holding space 100 is not formed. Another usage mode is that the limiting magnetic attraction member 31 and the receiving surface 101 are located on the same side, and the holding space 100 is formed. Another usage mode is that the limiting magnetic attraction member 31 and the receiving surface 101 are not located on the same side, for example, are arranged opposite to each other, the holding space 100 is not formed, and the horizontally placed mobile phone can be charged. Another usage mode is that the limiting magnetic attraction member 31 and the receiving surface 101 are not located on the same side, for example, are arranged opposite to each other, the holding space 100 is formed, and the vertically placed mobile phone can be charged.

[0160] It can be understood that the limiting magnetic attraction member 31 does not necessarily affect the normal operation of the electronic device. For example, when the lamp specification adapted by the charging platform 10 is small, and the magnetic force of the limiting magnetic attraction member 31 itself is weak, the limiting magnetic attraction member 31 can not be switched during the lamp use state and the electronic device use state in some cases.

[0161] When the limiting magnetic attraction member 31 and the supporting member 41 are linked, the charging platform 10 can provide two usage modes. One usage mode is that the limiting magnetic attraction member 31 and the receiving surface 101 are located on the same side, and the holding space 100 is not formed. Another usage mode is that the limiting magnetic attraction member 31 and the receiving surface 101 are not located on the same side, for example, are arranged opposite to each other, and the holding space 100 is formed, and the vertically placed mobile phone can be charged.

[0162] The limiting magnetic attraction member 31 and the supporting member 41 can be connected through a linkage mechanism such as a connecting rod, so as to achieve linkage.

[0163] The idle surface 502 can be coated with a magnetic shielding material, or at least part of the limiting magnetic attraction member mounting member 51 is made of a magnetic shielding material, so that when the charging platform 1000 is in the electronic device use state, the influence of the limiting magnetic attraction member 31 on the electronic device 2000B can be weakened, or even the magnetic attraction of the limiting magnetic attraction member 31 on the electronic device 2000B placed on the receiving surface 101 can disappear.

[0164] It is worth noting that in the process of switching the working surface 501 and the idle surface 502, the charging platform 1000 has a high magnetic state and a low magnetic state. In the high magnetic state, the charging platform 1000 has sufficient magnetic force for the lamp 2000A, so that the lamp 2000A can be adsorbed on the receiving surface 101. The lamp 2000A can be adsorbed on the charging platform 1000 whether in a horizontal position or in a vertical position. In the low magnetic state, the magnetic force of the charging platform 1000 for the electronic device 2000B is reduced as much as possible to reduce the influence on the internal elements of the electronic device 2000B. It can be understood that when the weight of the electronic device 2000B is light, the electronic device 2000B can still be magnetically attracted to the charging platform 1000.

[0165] In other words, when the charging platform 1000 is in the electronic device use state, the magnetic attraction force of the limiting magnetic attraction piece 31 for the electronic device 2000B does not completely disappear, but is weakened to a range that does not interfere with the normal operation of the electronic device 2000B. When the electronic device 2000B is provided with the magnetic attraction matching piece, the electronic device 2000B can still be positioned on the charging platform 1000 by magnetic attraction.

[0166] In some embodiments of the present application, the charging platform 1000 has a magnetic state and a non-magnetic state. In the magnetic state, the charging platform 1000 has sufficient magnetic force for the lamp 2000A, so that the lamp 2000A can be adsorbed on the receiving surface 101. For example, the lamp 2000A can be adsorbed on the charging platform 1000 whether in a horizontal position or in a vertical position. In the non-magnetic state, the limiting magnetic attraction piece 31 of the charging platform 1000 has a reduced magnetic force for the electronic device 2000B, so that the internal elements of the electronic device 2000B are not disturbed by the limiting magnetic attraction piece 31.

[0167] In other words, when the charging platform 1000 is in the electronic device use state, the magnetic attraction force of the limiting magnetic attraction piece 31 for the electronic device 2000B can completely disappear to ensure that there is no influence on the internal elements of the electronic device 2000B. The electronic device 2000B can be positioned on the charging platform 1000 by other means, such as being provided with corresponding recesses and protrusions on the electronic device 2000B and the charging platform 1000, respectively, and positioning the electronic device 2000B on the charging platform 1000 by clamping.

[0168] Further, in the present embodiment, the limiting magnetic attraction member 31 is arranged to be able to rotate around an axis, and the angle of rotation can be 180 degrees or more.

[0169] It can be understood that the switching between the high magnetic state and the low magnetic state, or between the magnetic state and the non-magnetic state, of the charging platform 1000 can be achieved by changing the relative position of the limiting magnetic attraction member 31 and the receiving surface 101, or by other means, such as changing the limiting magnetic attraction member 31.

[0170] Reference is made to the accompanying drawings Figure 7A and the accompanying drawings Figure 7B It can be understood that the switching between the high magnetic state and the low magnetic state, or between the magnetic state and the non-magnetic state, of the charging platform 1000 can be achieved by changing the relative position of the limiting magnetic attraction member 31 and the receiving surface 101, or by other means, such as changing the limiting magnetic attraction member 31.

[0171] In detail, the limiting magnetic attraction member is movably connected to the charging platform body 10. When the limiting magnetic attraction member moves to a predetermined position, the charging platform 1000 is in the lamp use state, and the lamp 2000A can be aligned with the receiving coil and the transmitting coil 20 through the alignment of the limiting magnetic attraction member 31 and the magnetic attraction member. When the limiting magnetic attraction member 31 moves to another position, which is farther away from the receiving surface 101 than the previous position, the charging platform 1000 is in the electronic device use state, and the electronic device 2000B can be placed on the charging platform 1000 in a manner that the receiving coil is aligned with the transmitting coil 20. At this time, the magnetic field influence of the limiting magnetic attraction member 31 on the electronic device 2000B placed on the receiving surface 101 of the charging platform 1000 can be weakened, so as to avoid the interference of the limiting magnetic attraction member of the charging platform 1000 on the electronic elements inside the electronic device 2000B, and thus affect the normal operation of the electronic device 2000B.

[0172] In more detail, the charging platform 1000 further comprises a limiting magnetic attraction member mounting member 51, wherein the limiting magnetic attraction member 31 is supported by the limiting magnetic attraction member mounting member 51, and the limiting magnetic attraction member mounting member 51 is arranged on the charging platform body 10, such as being arranged at the edge of the charging platform body 10.

[0173] The limiting magnetic attraction element mounting member 51 has a connecting end and a free end, wherein the connecting end of the limiting magnetic attraction element mounting member 51 is rotatably connected to the charging platform body 10, and the limiting magnetic attraction element mounting member 51 can be rotated to form an included angle with the charging platform body 10.

[0174] When the charging platform 1000 needs to be in the lamp use state, the limiting magnetic attraction element mounting member 51 can be rotated so that a working surface 501 of the limiting magnetic attraction element mounting member 51 provided with the limiting magnetic attraction element 31 and the receiving surface 101 of the charging platform body 10 are located in the same plane and the limiting magnetic attraction element mounting member 51 and the charging platform body 10 are close to each other. When the charging platform 1000 needs to be in the electronic device use state, the limiting magnetic attraction element mounting member 51 is rotated so that the included angle between the limiting magnetic attraction element mounting member 51 and the charging platform body 10 is enlarged, so that the working surface 501 of the limiting magnetic attraction element mounting member 51 and the receiving surface 101 can be far away, and then the influence of the limiting magnetic attraction element 31 on the electronic device 2000B placed on the receiving surface 101 can be weakened.

[0175] By changing the relative positions of the limiting magnetic attraction element mounting member 51 and the charging platform body 10, the magnetic field influence of the limiting magnetic attraction element 31 provided on the limiting magnetic attraction element mounting member 51 on the receiving surface 101 position of the charging platform body 10 can be changed.

[0176] When the user needs to use the charging platform 1000 to supplement the electric energy of the lamp 2000A, the limiting magnetic attraction element mounting member 51 can be operated so that the charging platform 1000 is in the lamp use state, and when the user needs to use the charging platform 1000 to supplement the electric energy of the mobile phone, the limiting magnetic attraction element mounting member 51 can be operated so that the charging platform 1000 is in the electronic device use state.

[0177] Reference is made to the accompanying drawings Figure 8A and the accompanying drawings Figure 8B , which show a schematic view of the charging platform 1000 according to another preferred embodiment of the present application.

[0178] In this embodiment, the limiting magnetic attraction element mounting member 51 of the charging platform 1000 is movably connected to the charging platform body 10.

[0179] In detail, the limiting magnetic attraction member 31 is arranged on the limiting magnetic attraction member mounting member 51, and the limiting magnetic attraction member mounting member 51 is movably arranged on the charging platform body 10.

[0180] The charging platform body 10 forms a sliding groove 104, and the limiting magnetic attraction member mounting member 51 is accommodated in the sliding groove 104 and is pushably accommodated in the sliding groove 104.

[0181] When the limiting magnetic attraction member mounting member 51 is accommodated in the sliding groove 104 and the limiting magnetic attraction member 31 arranged on the limiting magnetic attraction member mounting member 51 is located at a desired position, so that the limiting magnetic attraction member 31 and the transmitting coil 20 of the charging platform 1000 maintain a preset position, the charging platform 1000 is in the lamp use state, and when the lamp 2000A is placed on the charging platform 1000, under the action of the limiting magnetic attraction member 31 and the magnetic attraction member, the receiving coil of the lamp 2000A can be automatically aligned with the transmitting coil 20, and the alignment of the receiving coil of the lamp 2000A and the transmitting coil 20 can be maintained. That is, the lamp 2000A can be positioned on the charging platform 1000, for example, when the number of limiting magnetic attraction members 31 is two and the number of magnetic attraction members is two, two points determine a straight line, and through the alignment of each limiting magnetic attraction member 31 and the magnetic attraction member, the lamp 2000A can be positioned on the charging platform 1000.

[0182] When the user expects the charging platform 1000 to change from the lamp use state to the electronic device use state, the limiting magnetic attraction member 31 can be moved away from the receiving surface 101 by pushing the limiting magnetic attraction member mounting member 51 along the sliding groove 104, so that the influence of the limiting magnetic attraction member 31 on the electronic device 2000B located on the receiving surface 101 is weakened.

[0183] Further, in the embodiment, the number of limiting magnetic attraction member mounting members 51 is two, and each limiting magnetic attraction member mounting member 51 is provided with one limiting magnetic attraction member 31.

[0184] When the two limiting magnetic attraction member mounting members 51 move towards each other to be attached, the charging platform 1000 is in the lamp use state. When the two limiting magnetic attraction member mounting members 51 move away from each other to be away from the transmitting coil 20, the charging platform 1000 changes from the lamp use state to the electronic device use state.

[0185] Reference is made to the accompanying drawings Figure 9A and the accompanying drawings Figure 9B , which show the charging platform 1000 according to another preferred embodiment of the present application.

[0186] In the present embodiment, the limiting magnetic attraction member 31 is arranged to be variable in magnetic force. The charging platform 1000 further comprises a control member 60, wherein the limiting magnetic attraction member 31 is controllably connected to the control member 60 in magnetic force.

[0187] The power storage unit 12 of the charging platform body 10 is electrically connectable to the limiting magnetic attraction member 31, and the limiting magnetic attraction member 31 is capable of converting electric energy into magnetic field. The control member 60 can control the magnetic force of the limiting magnetic attraction member 31 by controlling the power supply size of the power storage unit 12 to the limiting magnetic attraction member 31 or the on-off between the power storage unit 12 and the limiting magnetic attraction member 31.

[0188] When the limiting magnetic attraction member 31 is in the high magnetic state, the lamp 2000A can be magnetically attracted to the charging platform 1000 through the interaction of the magnetic attraction fitting and the limiting magnetic attraction member 31, and when the limiting magnetic attraction member 31 is in the low magnetic state, the electronic device 2000B can be placed on the charging platform 1000 to be charged, while the limiting magnetic attraction member 31 of the charging platform 1000 does not affect the normal operation of the electronic device 2000B. By controlling the magnetic force of the limiting magnetic attraction member 31 by the control member 60, the lamp use state and the electronic device use state of the charging platform 1000 can be switched.

[0189] In another embodiment, when the limiting magnetic attraction member 31 is in the magnetic state, the lamp 2000A can be magnetically attracted to the charging platform 1000 through the interaction of the magnetic attraction fitting and the limiting magnetic attraction member 31, and when the limiting magnetic attraction member 31 is in the non-magnetic state, the electronic device 2000B can be placed on the charging platform 1000 to be charged, while the limiting magnetic attraction member 31 of the charging platform 1000 does not affect the normal operation of the electronic device 2000B. By controlling the magnetic state and the non-magnetic state of the limiting magnetic attraction member 31 by the control member 60, the lamp use state and the electronic device use state of the charging platform 1000 can be switched.

[0190] Reference is made to the accompanying drawings that show Figure 10A and the accompanying drawings that show Figure 10B the charging platform 1000 according to another preferred embodiment of the present application.

[0191] Further, the charging platform 1000 comprises a shielding member 70, wherein the shielding member 70 can be arranged on the charging platform body 10. The shielding member 70 can shield the limiting magnetic attraction member 31.

[0192] The shielding member 70 has a working state and an idle state. In the working state, the shielding member 70 can shield at least part of the magnetic field generated by the limiting magnetic member 31. In the idle state, the shielding member 70 weakens the shielding of the limiting magnetic member 31. When the shielding member 70 is switched from the working state to the idle state, the charging platform 1000 is switched from the lamp use state to the electronic device 2000B use state.

[0193] The shielding member 70 can be movably arranged on the charging platform body 10. By changing the relative position of the shielding member 70 and the limiting magnetic member 31, the influence of the limiting magnetic member 31 on the lamp 2000A or the electronic device 2000B placed on the receiving surface 101 of the charging platform body 10 can be changed.

[0194] For example, the shielding member 70 is reversibly connected to the charging platform body 10. When the shielding member 70 is flipped to cover the limiting magnetic member 31 to play a shielding role, the charging platform 1000 is in the electronic device use state. When the shielding member 70 is flipped to expose the limiting magnetic member 31 to the position of the receiving surface 101, the charging platform 1000 is in the lamp use state.

[0195] For example, the shielding member 70 is detachably mounted on the charging platform body 10. The shielding member 70 is provided with the magnetic attraction matching member and is made of a magnetic shielding material. When the shielding member 70 is mounted on the charging platform body 10, the shielding member 70 covers the limiting magnetic member 31 and plays a shielding role. When the user needs to position the lamp 2000A, the shielding member 70 can be detached to expose the limiting magnetic member 31 again.

[0196] It can be understood that, based on the specifications of the support 41 provided by the charging platform 1000, the electronic device can be vertically held between the support 41 and the charging platform body 10, or can be horizontally held between the support 41 and the charging platform body 10.

[0197] Reference is made to the accompanying drawings Figure 11A and the accompanying drawings Figure 11B It is shown that the charging platform 1000 according to another preferred embodiment of the present application.

[0198] In the present embodiment, the magnetic attraction unit 30 of the charging platform 1000 further comprises a self-magnetic attraction member 32, wherein the self-magnetic attraction member 32 is arranged on the charging platform body 10 and is adapted to be magnetically attracted to a wall, so that the charging platform 1000 can be installed at a certain height position of the wall for use.

[0199] It can be understood that the self-magnetic attraction member 32 can be made of a magnetic material, and the wall can be made of a material that can be magnetically attracted, for example, the self-magnetic attraction member 32 can be made of a magnet, and the wall can be made of iron. Conversely, the self-magnetic attraction member 32 can be made of a material that can be magnetically attracted, and the wall can be made of a magnetic material.

[0200] Similarly, the limiting magnetic attraction member 31 can be made of a magnetic material, and the magnetic attraction matching member can be made of a magnetic material or a material that can be magnetically attracted. Alternatively, the magnetic attraction matching member can be made of a magnetic material, and the limiting magnetic attraction member 31 can be supported by a magnetic material or a material that can be magnetically attracted.

[0201] Further, optionally, the self-magnetic attraction member 32 and the limiting magnetic attraction member 31 are respectively located on opposite sides of the charging platform body 10, for example, the limiting magnetic attraction member 31 can be located on the receiving surface 101 of the charging platform body 10, and the self-magnetic attraction member 32 can be located on a mounting surface 105 of the charging platform body 10, wherein the receiving surface 101 and the mounting surface 105 are respectively located on opposite sides, and the mounting surface 105 is adapted to be mounted on the wall or other positions that can be used to mount the charging platform 1000.

[0202] The charging platform 1000 has a lamp use state and an electronic device use state. In the lamp use state, the lamp 2000A is adapted to be positioned on the receiving surface 101 of the charging platform 1000 and aligned with the transmitting coil 20 to be powered by the magnetic attraction of at least part of the magnetic attraction unit 30 and the magnetic attraction matching member. In the electronic device use state, the magnetic attraction of the magnetic attraction unit 30 is weakened to reduce the influence on the electronic components in the electronic device 2000B, and the electronic device 2000B is adapted to be placed on the receiving surface 101 of the charging platform 1000 in a manner aligned with the transmitting coil 20 to be powered.

[0203] The influence of the magnetic attraction unit 30 on the electronic device 2000B can be weakened in three ways, one is to weaken the influence of the limiting magnetic attraction piece 31 on the electronic device 2000B, the second is to weaken the influence of the self-magnetic attraction piece 32 on the electronic device 2000B, and the third is to weaken both the limiting magnetic attraction piece 31 and the self-magnetic attraction piece 32.

[0204] How to weaken the influence of the limiting magnetic attraction piece 31 on the electronic device 2000B has been described in detail above, and will not be repeated here.

[0205] In this embodiment, the charging platform 1000 further comprises the shielding piece 70, wherein the shielding piece 70 is arranged on the charging platform body 10, and the shielding piece 70 has a working state and an idle state, and the shielding piece 70 is operable to switch between the working state and the idle state.

[0206] In the working state, the shielding piece 70 can shield at least part of the magnetic field of the self-magnetic attraction piece 32, in the idle state, the shielding of the self-magnetic attraction piece 32 by the shielding piece 70 can be weakened, and when the shielding piece 70 changes from the working state to the idle state, the charging platform 1000 changes from the lamp use state to the electronic device use state.

[0207] In other words, in this embodiment, the shielding piece 70 shields the self-magnetic attraction piece 32. In another embodiment of the present application, the shielding piece 70 can shield the limiting magnetic attraction piece 31. In another embodiment of the present application, the shielding piece 70 can shield both the self-magnetic attraction piece 32 and the limiting magnetic attraction piece 31, for example, the shielding piece 70 is arranged between the self-magnetic attraction piece 32 and the receiving surface 101, shielding the self-magnetic attraction piece 32 while shielding the limiting magnetic attraction piece 31.

[0208] In this embodiment, the shielding piece 70 can be arranged between the limiting magnetic attraction piece 31 and the self-magnetic attraction piece 32.

[0209] The shielding piece 70 can be an electromagnetic shielding piece, when the shielding piece 70 is powered on, the shielding piece 70 can shield, the shielding piece 70 is in the working state, when the shielding piece 70 is powered off, the shielding piece 70 can not shield the self-magnetic attraction piece 32, the shielding piece 70 is in the idle state.

[0210] In another embodiment of the present application, the shielding member 70 is movably mounted to the charging platform body 10, and when the shielding member 70 is moved away from the position of the self-magnetic member 32, the shielding member 70 is transformed from the working state to the idle state. The charging platform 1000 is transformed from the electronic device using state to the luminaire 2000A user state.

[0211] Further, the shielding member 70 is pushably movably mounted to the charging platform body 10, or is rotatably movably mounted to the charging platform 1000.

[0212] It can be understood that in the present embodiment, when the electronic device 2000B is wall-mounted, the fixing to the charging platform 1000 is achieved by the support member 41. It can be understood that when the electronic device 2000B is provided with a magnetic cooperation member, the wall-mounting can be achieved by the magnetic cooperation member without the support member 41.

[0213] Reference is made to the accompanying drawings that show Figure 12A and the accompanying drawings that show Figure 12B It is shown that the charging platform 1000 according to another preferred embodiment of the present application.

[0214] In the present embodiment, the self-magnetic member 32 is movably arranged on the charging platform body 10 and is adapted to magnetically attract the magnetic cooperation member, and when the self-magnetic member 32 is operated to move away from the receiving surface 101 of the charging platform 1000, the charging platform 1000 is transformed from the luminaire using state to the electronic device using state.

[0215] In the present embodiment, the charging platform 1000 further comprises a self-magnetic member mounting member 51A, wherein the self-magnetic member 32 is mounted to the self-magnetic member mounting member 51A, and the self-magnetic member mounting member 51A is arranged on the charging platform body 10.

[0216] In the present embodiment, the self-magnetic member mounting member 51A of the charging platform 1000 is movably connected to the charging platform body 10.

[0217] In detail, the self-magnetic member 32 is arranged on the self-magnetic member mounting member 51A, and the self-magnetic member mounting member 51A is movably arranged on the charging platform body 10.

[0218] The charging platform body 10 forms a sliding groove 104A, wherein the self-magnetic member mounting member 51A is accommodated in the sliding groove 104A and is pushably movably accommodated in the sliding groove 104A.

[0219] When the self-magnetic mounting component 51A is accommodated in the slide groove 104A and the self-magnetic component 32 of the self-magnetic mounting component 51A is in the desired position, so that the self-magnetic component 32 and the transmitting coil 20 of the charging platform 1000 maintain a preset position, the charging platform 1000 is in the lamp use state. When the lamp 2000A is placed on the charging platform 1000, under the action of the self-magnetic component 32 and the wall, the charging platform 1000 is mounted on the wall and magnetically attached to the wall.

[0220] When the user expects the charging platform 1000 to change from the lamp usage state to the electronic device usage state, the self-magnetic suction member 32 can be moved away from the receiving surface 101 by pushing the self-magnetic suction member 51A along the slide 104A, thereby reducing the influence of the self-magnetic suction member 32 on the electronic device 2000B located on the receiving surface 101.

[0221] Furthermore, in this embodiment, the number of self-magnetic mounting members 51A is two, and each self-magnetic mounting member 51A is provided with one self-magnetic member 32.

[0222] When the two self-magnetic mounting members 51A move towards each other until they are in contact, the charging platform 1000 is in the lamp usage state. When the two self-magnetic mounting members 51A move away from each other to move away from the transmitting coil 20, the charging platform 1000 changes from the lamp usage state to the electronic device usage state.

[0223] It is understood that, similar to the limiting magnetic 31, the self-magnetic 32 can also be movably mounted to the charging platform body 10 in other ways, for example, as shown in the attached diagram. Figure 13A and attached Figure 13B As shown, the self-magnetic suction member 32 is rotatably and movablely mounted to the charging platform body 10. Specifically, the self-magnetic suction member mounting member 51A is mounted to the charging platform body 10 at an angle, and the self-magnetic suction member mounting member 51A is rotatable relative to the charging platform 1000 to change the angle between the self-magnetic suction member mounting member 51A and the charging platform body 10. The self-magnetic suction member 32 is mounted to the charging platform body 10.

[0224] Reference Appendix Figure 14A and attached Figure 14BAs shown, the self-magnetic member 32 is rotatably mounted to the charging platform body 10. In detail, two ends of the self-magnetic member mounting member 51A are respectively mounted to the charging platform body 10 and the self-magnetic member mounting member 51A is rotatably mounted to the charging platform body 10 about an axis, the self-magnetic member 32 is arranged on the self-magnetic member mounting member 51A and can rotate with the self-magnetic member mounting member 51A. When the self-magnetic member 32 rotates towards the direction away from the receiving surface 101, the charging platform 1000 changes to the electronic device use state, and when the self-magnetic member 32 rotates towards the direction close to the receiving surface 101, the charging platform 1000 changes to the lamp use state.

[0225] Reference is made to the accompanying drawings that show Figure 15A and the accompanying drawings that show Figure 15B As shown, the self-magnetic member 32 has a high magnetic state and a low magnetic state, the magnetic field strength of the self-magnetic member 32 in the high magnetic state is greater than that in the low magnetic state, and when the self-magnetic member 32 is controlled to change from the high magnetic state to the low magnetic state, the charging platform 1000 changes from the lamp use state to the electronic device use state. Alternatively, the self-magnetic member 32 has a magnetic state and a non-magnetic state, the self-magnetic member 32 generates a magnetic field in the magnetic state and stops generating a magnetic field in the non-magnetic state, and when the self-magnetic member 32 is controlled by the control member 60 to change from the magnetic state to the non-magnetic state, the charging platform 1000 changes from the lamp use state to the electronic device use state.

[0226] Further, it can be understood that the charging platform 1000 can supply power to the electronic device 2000B in a wired power supply manner. When the electronic device 2000B is placed on the receiving surface 101 of the charging platform 1000 in a wired power supply manner to be powered, the influence of the magnetic attraction unit 30 of the charging platform 1000 on the electronic device 2000B can also be reduced.

[0227] Reference is made to the accompanying drawings that show Figure 16 As shown, the charging platform 1000 according to another preferred embodiment of the present application is shown.

[0228] In the present embodiment, the number of the transmitting coils 20 of the charging platform 1000 is two, and of course can be three or more.

[0229] The charging platform 1000 provides two charging areas for respectively supplying power to two electronic devices 2000, one of which can be a lamp 2000A and the other of which can be an electronic device 2000B.

[0230] Further, one of the transmitting coils 20 can correspond to the lamp 2000A, and the other transmitting coil can correspond to the mobile phone or the lamp 2000A.

[0231] In detail, the limiting magnetic attraction member 31 is arranged around the transmitting coil 20 to position the lamp 2000A. The supporting member 41 is arranged around one of the transmitting coils 20 to hold the electronic device 2000B. For one of the charging areas, the supporting member 41 is not arranged, and this charging area can be used for charging the lamp 2000A or the electronic device 2000B, and cannot be used for supplying power to the electronic device without the magnetic attraction member when being mounted on the wall. For the other charging area, the supporting member 41 is arranged, and this charging area can be used for charging the lamp 2000A or the electronic device 2000B, no matter whether the charging platform 1000 is horizontally placed or mounted on the wall.

[0232] According to another aspect of the present application, the present application provides a working method of the charging platform 1000, wherein the working method comprises the following steps:

[0233] The charging platform 1000 is operated to change between the placing use state and the wall mounting use state to supply power to the power required device, which can be selected as the lamp or the electronic device. In the placing use state, the lamp or the electronic device is selected to be supported on the receiving surface 101 of the charging platform 1000 and to be aligned with the transmitting coil 20 to be supplied with power. In the wall mounting use state, if the power required device is selected as the lamp, the lamp is held outside the receiving surface 101 by the magnetic attraction between the magnetic attraction member and the limiting magnetic attraction member 31 arranged on the charging platform 1000. If the power required device is selected as the electronic device, the charging platform 1000 can form the holding space 100, and the electronic device is held in the holding space 100 to be aligned with the transmitting coil 20 to be supplied with power.

[0234] According to at least one embodiment of the present application, the holding space 100 is formed by the movable supporting member 41.

[0235] According to at least one embodiment of the present application, one of the supporting members 41 is arranged on the charging platform 1000 to form one of the holding spaces 100 between the supporting member 41 and the charging platform 1000.

[0236] According to at least one embodiment of the present application, in the above method, the supporting member 41 has a closed state and an open state, in the closed state, the supporting member 41 is attached to the charging platform body 10 and is limited in the charging platform body 10, in the open state, the supporting member 41 is movably connected to the charging platform body 10 to form the holding space 100 between the supporting member 41 and the charging platform body 10, the supporting member 41 is operable to change between the closed state and the open state.

[0237] According to at least one embodiment of the present application, in the above method, the magnetic attraction strength of the limiting magnetic attraction member 31 on the receiving surface 101 is allowed to be reduced to enable the charging platform 1000 to change between a lamp use state and an electronic device use state, in the lamp use state, the lamp 2000A is adapted to be positioned on the receiving surface 101 of the charging platform 1000 by the magnetic attraction between the magnetic attraction unit 30 of the charging platform 1000 and the magnetic attraction matching member of the lamp 2000A and is aligned with the transmitting coil 20 of the charging platform 1000 to be powered, in the electronic device use state, the electronic device is adapted to be placed on the receiving surface 101 of the charging platform 1000 and is aligned with the transmitting coil 20 of the charging platform 1000 to be powered.

[0238] According to at least one embodiment of the present application, in the above method, the formation of the holding space 100 and the change of the magnetic attraction strength of the limiting magnetic attraction member 31 are interlocked, when the holding space 100 is formed, the magnetic attraction strength of the limiting magnetic attraction member 31 is simultaneously reduced, weakened or substantially disappeared. According to another aspect of the present application, the present application provides a working method of the charging platform 1000, wherein the working method comprises the following steps:

[0239] transmitting electric energy to the electrically powered device 2000 placed on the receiving surface 101 of the charging platform 1000, wherein the charging platform 1000 is selectively changed between the lamp use state and the electronic device use state, in the lamp use state, the lamp 2000A is adapted to be positioned on the receiving surface 101 of the charging platform 1000 by the magnetic attraction between at least part of the magnetic attraction unit 30 of the charging platform 1000 and the magnetic attraction matching member of the lamp 2000A and is aligned with the transmitting coil 20 of the charging platform 1000 to be powered, in the electronic device use state, the magnetic attraction of the magnetic attraction unit 30 is weakened to reduce the influence on the electronic components in the electrically powered device 2000, the electrically powered device 2000 is adapted to be placed on the receiving surface 101 of the charging platform 1000 to be powered.

[0240] According to one embodiment of the present application, in the above method, the limiting magnetic attraction member 31 of the magnetic attraction unit 30 is movably arranged on the charging platform body 10 and is adapted to magnetically attract the magnetic attraction member, and when the limiting magnetic attraction member 31 is operated to move to a position away from the receiving surface 101 of the charging platform 1000, the charging platform 1000 is switched from the lamp use state to the electronic device use state.

[0241] According to one embodiment of the present application, the electric device 2000 receives electric energy from the charging platform 1000 through wireless transmission.

[0242] According to one embodiment of the present application, in the above method, the self magnetic attraction member 32 of the magnetic attraction unit 30 is movably arranged on the charging platform body 10 and is adapted to be attracted to a wall that can be magnetically attracted, so that the charging platform 1000 can be hung on the wall, and when the self magnetic attraction member 32 is operated to move to a position away from the receiving surface 101 of the charging platform 1000, the charging platform 1000 is switched from the lamp use state to the electronic device use state.

[0243] According to one embodiment of the present application, in the above method, the self magnetic attraction member 32 of the magnetic attraction unit 30 is arranged on the charging platform body 10 and is adapted to be attracted to a wall that can be magnetically attracted, so that the charging platform 1000 can be hung on the wall, and when the influence of the self magnetic attraction member 32 on the electric device 2000 is shielded by the shielding member 70, the charging platform 1000 is switched from the lamp use state to the electronic device use state. Those skilled in the art should understand that the above description and the embodiments of the present application shown in the drawings are only examples and do not limit the present application. The purpose of the present application has been fully and effectively achieved. The function and structural principle of the present application has been shown and explained in the embodiments, and the embodiments of the present application can be modified or changed without departing from the principle.

Claims

1. A charging platform adapted to power a powered device, wherein the powered device is a wireless charging light fixture or a cell phone, wherein the light fixture is provided with at least one magnetic attraction fitting, characterized in that, The charging platform comprises: a charging platform body; a transmitting coil, wherein the transmitting coil is conductively connected to the charging platform body to be powered by the charging platform body; and a magnetic attraction unit, wherein the magnetic attraction unit comprises at least one limiting magnetic attraction piece, wherein the limiting magnetic attraction piece is arranged on the charging platform body and maintains a preset distance from the transmitting coil, at least a part of the limiting magnetic attraction piece is adapted to magnetically attract the magnetic attraction matching piece of the lamp to position the lamp to align a receiving coil of the lamp with the transmitting coil of the charging platform, wherein the charging platform has a standing use state and a wall-mounted use state, in the standing use state, the mobile phone or the lamp is selectively supported on a receiving surface of the charging platform body and is aligned with the transmitting coil to be powered, in the wall-mounted use state, if the powered device is selected as the lamp, the lamp is hung outside the receiving surface of the charging platform body by the magnetic attraction between the magnetic attraction matching piece and the limiting magnetic attraction piece, if the powered device is selected as the mobile phone, the charging platform can form a holding space, and the mobile phone is held in the holding space to be aligned with the transmitting coil to be powered. The magnetic attraction strength of the magnetic attraction unit at the receiving surface position is allowed to be reduced to enable the charging platform to switch between a lamp use state and a mobile phone use state, in the lamp use state, the lamp is adapted to be positioned on the receiving surface by the magnetic attraction between the limiting magnetic attraction piece and the magnetic attraction matching piece and is aligned with the transmitting coil to be powered, in the mobile phone use state, the mobile phone is placed on the receiving surface and is aligned with the transmitting coil to be powered.

2. The charging platform of claim 1, further comprising a supporting piece, wherein the supporting piece is used to be mounted on the charging platform body to form the holding space with the receiving surface of the charging platform body.

3. The charging platform of claim 1, further comprising a supporting piece, wherein the supporting piece is movably connected to the charging platform body, and the holding space is formed between the supporting piece and the charging platform body when the supporting piece is moved to maintain a preset distance from the receiving surface of the charging platform body.

4. The charging platform of claim 3, wherein the supporting piece has a closed state and an open state, in the closed state, the supporting piece is attached to the charging platform body and is limited on the charging platform body, in the open state, the supporting piece is movably connected to the charging platform body to form the holding space between the supporting piece and the charging platform body, and the supporting piece is operable to switch between the closed state and the open state.

5. The charging platform of claim 1, wherein the distance between the limiting magnetic attraction piece and the transmitting coil ranges from 7mm to 8mm. ​ 6. The charging platform of claim 1, further comprising a supporting member, wherein the supporting member comprises at least two supporting arms, wherein the holding space is formed between the two supporting arms, and at least one of the supporting arms is movably arranged on the charging platform body so that the size of the holding space can be adjusted.

7. The charging platform of claim 1, further comprising a supporting member, wherein the mobile phone is pressed to fit on the receiving surface by the supporting member, or the mobile phone is supported and held to fit on the receiving surface by the supporting member.

8. The charging platform of claim 1, wherein the formation of the holding space and the change of the magnetic attraction strength of the limiting magnetic attraction member are interlinked, when the holding space is formed, the magnetic attraction strength of the limiting magnetic attraction member is simultaneously weakened.

9. The charging platform of claim 1, wherein the limiting magnetic attraction member is movably arranged on the charging platform body and adapted to magnetically attract the magnetic attraction fitting member, and when the limiting magnetic attraction member is operated to move to a position far away from the receiving surface of the charging platform, the charging platform is transformed from the lamp use state to the mobile phone use state.

10. The charging platform of claim 9, further comprising a limiting magnetic attraction member mounting member, the limiting magnetic attraction member mounting member is rotatably mounted on the charging platform body and the limiting magnetic attraction member is mounted on the limiting magnetic attraction member mounting member, the limiting magnetic attraction member has a working surface and an idle surface, when the working surface and the receiving surface are on the same side, the magnetic field strength of the limiting magnetic attraction member at the position of the receiving surface is the strongest, the charging platform is in the lamp use state, when the limiting magnetic attraction member is moved to the idle surface and the receiving surface are on the same side, the magnetic field strength of the limiting magnetic attraction member at the position of the receiving surface is reduced, the charging platform is in the mobile phone use state.

11. The charging platform of claim 1, wherein the charging platform further comprises a control member, the magnetic attraction unit is controllably connected to the control member, wherein the magnetic attraction unit has a high magnetic state and a low magnetic state, the magnetic field strength of the magnetic attraction unit in the high magnetic state is greater than the magnetic field strength of the magnetic attraction unit in the low magnetic state, and when the magnetic attraction unit is controlled by the control member to change from the high magnetic state to the low magnetic state, the charging platform is transformed from the lamp use state to the mobile phone use state.

12. The charging platform of claim 1, wherein, The charging platform further comprises a control member, wherein the magnetic attraction unit is controllably connected to the control member, wherein the magnetic attraction unit has a magnetic state and a non-magnetic state, the magnetic attraction unit generates a magnetic field in the magnetic state, and the magnetic attraction unit stops generating a magnetic field in the non-magnetic state, and when the magnetic attraction unit is controlled by the control member to change from the magnetic state to the non-magnetic state, the charging platform is transformed from the lamp use state to the mobile phone use state.

13. The charging platform of claim 1, wherein the charging platform further comprises a shield disposed in the charging platform body, wherein the shield has an active state and an inactive state and is operable to be transformed between the active state and the inactive state, in the active state, the shield is capable of shielding at least part of the magnetic field of the magnetic attraction unit, in the inactive state, the shield is weakened in shielding the magnetic attraction unit, and when the shield is transformed from the active state to the inactive state, the charging platform is transformed from the mobile phone usage state to the lamp usage state.

14. The charging platform of claim 1, wherein the magnetic attraction unit further comprises a self-magnetic attraction element, wherein the self-magnetic attraction element is disposed in the charging platform body to magnetically attract a wall that can be magnetically attracted at a mounting surface of the charging platform, so that the charging platform can be hung on the wall, the limiting magnetic attraction element and the self-magnetic attraction element are located at opposite sides respectively.

15. The charging platform of any one of claims 1 to 7, wherein the distance between the transmitting coil of the charging platform and the receiving coil of the electrical device is in the range of 2mm to 3mm.

16. A charging platform adapted to power a powered device, wherein the powered device is optionally a wireless charging light fixture or a cell phone, wherein the light fixture is provided with at least one magnetic catch, characterized in that, including: a charging platform body: a transmitting coil, wherein the transmitting coil is conductively connected to the charging platform body for being powered by the charging platform body a magnetic attraction unit, wherein the magnetic attraction unit is disposed in the charging platform body and maintains a predetermined distance from the transmitting coil, at least part of the magnetic attraction unit is adapted to magnetically attract the magnetic attraction fitting of the lamp to position the lamp to be aligned with the transmitting coil, wherein the charging platform has a lamp usage state and a mobile phone usage state, in the lamp usage state, the lamp is adapted to be positioned on a receiving surface of the charging platform by the magnetic attraction of at least part of the magnetic attraction unit and the magnetic attraction fitting and be aligned with the transmitting coil for being powered, in the mobile phone usage state, the magnetic attraction of the magnetic attraction unit is weakened to enable normal operation of the electronic components in the electrical device, and the electrical device is adapted to be placed on the receiving surface of the charging platform for being powered; wherein the magnetic attraction unit comprises at least one limiting magnetic attraction element, wherein the limiting magnetic attraction element is movably disposed in the charging platform body and is adapted to magnetically attract the magnetic attraction fitting, and when the limiting magnetic attraction element is operated to move to a position away from the receiving surface of the charging platform, the charging platform is transformed from the lamp usage state to the mobile phone usage state.

17. The charging platform of claim 16, wherein if the electrical device is selected as the mobile phone, the mobile phone is a wireless charging device and is adapted to be placed on the receiving surface in a manner of being aligned with the transmitting coil for being powered when the charging platform is in the mobile phone usage state. ​ 18. The charging platform of claim 16, further comprising a limiting magnetic member mount rotatably mounted to the charging platform body and a limiting magnetic member mounted to the limiting magnetic member mount, the limiting magnetic member having an active face and an idle face, the limiting magnetic member having a maximum magnetic field strength at the receiving face position when the active face and the receiving face are on the same side, the charging platform being in the light fixture use state, the limiting magnetic member having a reduced magnetic field strength at the receiving face position when the limiting magnetic member is moved to the idle face and the receiving face are on the same side, the charging platform being in the mobile phone use state.

19. The charging platform of claim 16, further comprising a control member, the magnetic member unit being controllably connected to the control member, wherein the magnetic member unit has a high magnetic state and a low magnetic state, the magnetic field strength of the magnetic member unit in the high magnetic state being greater than the magnetic field strength of the magnetic member unit in the low magnetic state, and when the magnetic member unit is controlled by the control member to change from the high magnetic state to the low magnetic state, the charging platform changes from the light fixture use state to the mobile phone use state.

20. The charging platform of claim 16, wherein, the magnetic member unit having a magnetic state and a non-magnetic state, the magnetic member unit generating a magnetic field when in the magnetic state and the magnetic member unit ceasing to generate a magnetic field when in the non-magnetic state, and when the magnetic member unit is controlled by the control member to change from the magnetic state to the non-magnetic state, the charging platform changes from the light fixture use state to the mobile phone use state.

21. The charging platform of claim 16, further comprising a shielding member disposed in the charging platform body, the shielding member having an active state and an idle state and being operable to change between the active state and the idle state, the shielding member being capable of shielding at least a portion of the magnetic field of the magnetic member unit in the active state, the shielding of the magnetic member unit being reduced in the idle state, and when the shielding member changes from the active state to the idle state, the charging platform changes from the mobile phone use state to the light fixture use state.

22. The charging platform of any one of claims 16 to 21, wherein the magnetic member unit comprises at least one self-magnetic member, wherein the limiting magnetic member magnetically attracts the magnetic member at the receiving face of the charging platform, wherein the self-magnetic member is disposed in the charging platform body to magnetically attract a wall that is magnetically attractable at a mounting face of the charging platform to enable the charging platform to be hung on the wall, the limiting magnetic member and the self-magnetic member being located on opposite sides, respectively.

23. A method of operating a charging platform, characterized by, comprising the steps of: The present application relates to a charging platform for charging an electrical device, wherein the charging platform is adapted to be switched between a lamp use state and a mobile phone use state, when the electrical device is a lamp, the charging platform is adapted to be selected as the lamp use state, the lamp is adapted to be positioned on a receiving surface of the charging platform and aligned with a transmitting coil of the charging platform by magnetic attraction of at least part of a magnetic attraction unit of the charging platform and a magnetic attraction fitting provided on the lamp for being powered, when the electrical device is a mobile phone, the charging platform is adapted to be selected as the mobile phone use state, magnetic attraction of the magnetic attraction unit is reduced to allow electronic components in the electrical device to work normally, the electrical device is adapted to be placed on the receiving surface of the charging platform for being powered. A limiting magnetic attraction piece is movably provided on the charging platform body and adapted to be magnetically attracted to the magnetic attraction fitting, and when the limiting magnetic attraction piece is operated to move away from the receiving surface of the charging platform, the charging platform is switched from the lamp use state to the mobile phone use state.

24. A method of operating a charging platform, characterized by, The present application relates to a charging platform for charging an electrical device, wherein the charging platform is adapted to be switched between a lamp use state and a mobile phone use state, when the electrical device is a lamp, the charging platform is adapted to be selected as the lamp use state, the lamp is adapted to be positioned on a receiving surface of the charging platform and aligned with a transmitting coil of the charging platform by magnetic attraction of at least part of a magnetic attraction unit of the charging platform and a magnetic attraction fitting provided on the lamp for being powered, when the electrical device is a mobile phone, the charging platform is adapted to be selected as the mobile phone use state, magnetic attraction of the magnetic attraction unit is reduced to allow electronic components in the electrical device to work normally, the electrical device is adapted to be placed on the receiving surface of the charging platform for being powered. The present application relates to a charging platform for charging an electrical device, wherein the charging platform is adapted to be switched between a lamp use state and a mobile phone use state, when the electrical device is a lamp, the charging platform is adapted to be selected as the lamp use state, the lamp is adapted to be positioned on a receiving surface of the charging platform and aligned with a transmitting coil of the charging platform by magnetic attraction of at least part of a magnetic attraction unit of the charging platform and a magnetic attraction fitting provided on the lamp for being powered, when the electrical device is a mobile phone, the charging platform is adapted to be selected as the mobile phone use state, magnetic attraction of the magnetic attraction unit is reduced to allow electronic components in the electrical device to work normally, the electrical device is adapted to be placed on the receiving surface of the charging platform for being powered.

25. A limiting magnetic suction component mounting assembly, suitable for mounting on a charging platform, for driving a limiting magnetic suction component to rotate, characterized in that, The present application relates to a charging platform for charging an electrical device, wherein the charging platform is adapted to be switched between a lamp use state and a mobile phone use state, when the electrical device is a lamp, the charging platform is adapted to be selected as the lamp use state, the lamp is adapted to be positioned on a receiving surface of the charging platform and aligned with a transmitting coil of the charging platform by magnetic attraction of at least part of a magnetic attraction unit of the charging platform and a magnetic attraction fitting provided on the lamp for being powered, when the electrical device is a mobile phone, the charging platform is adapted to be selected as the mobile phone use state, magnetic attraction of the magnetic attraction unit is reduced to allow electronic components in the electrical device to work normally, the electrical device is adapted to be placed on the receiving surface of the charging platform for being powered. ​ A limiting magnetic attraction member control device, wherein the limiting magnetic attraction member control device comprises a pushing member, a rotating member and an elastic support member, one end of the rotating member is supported on the elastic support member, the other end is connected to the limiting magnetic attraction member mounting member, the circumferential surface of the rotating member is formed with a guide inclined groove, when the pushing member is pushed along the guide inclined groove on one side of the rotating member to move, the rotating member is driven to drive the limiting magnetic attraction member mounting member to rotate to change the position of the working surface and the idle surface of the limiting magnetic attraction member.

Citation Information

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