CN112393143A - Magnetic attraction type wireless charging and illuminating device and working method thereof - Google Patents

Magnetic attraction type wireless charging and illuminating device and working method thereof Download PDF

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Publication number
CN112393143A
CN112393143A CN201910753649.3A CN201910753649A CN112393143A CN 112393143 A CN112393143 A CN 112393143A CN 201910753649 A CN201910753649 A CN 201910753649A CN 112393143 A CN112393143 A CN 112393143A
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CN
China
Prior art keywords
magnetic
charging
magnetic attraction
magnetically
magnetism
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CN201910753649.3A
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Chinese (zh)
Inventor
鲍永
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Yuyao Yuchang Electrical Appliance Co Ltd
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Yuyao Yuchang Electrical Appliance Co Ltd
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Priority to CN201910753649.3A priority Critical patent/CN112393143A/en
Publication of CN112393143A publication Critical patent/CN112393143A/en
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S8/00Lighting devices intended for fixed installation
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V21/00Supporting, suspending, or attaching arrangements for lighting devices; Hand grips
    • F21V21/08Devices for easy attachment to any desired place, e.g. clip, clamp, magnet
    • F21V21/096Magnetic devices
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V23/00Arrangement of electric circuit elements in or on lighting devices
    • F21V23/003Arrangement of electric circuit elements in or on lighting devices the elements being electronics drivers or controllers for operating the light source, e.g. for a LED array
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J50/00Circuit arrangements or systems for wireless supply or distribution of electric power
    • H02J50/90Circuit arrangements or systems for wireless supply or distribution of electric power involving detection or optimisation of position, e.g. alignment

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Microelectronics & Electronic Packaging (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Power Engineering (AREA)
  • Charge And Discharge Circuits For Batteries Or The Like (AREA)

Abstract

The invention discloses a magnetic attraction type wireless charging and illuminating device and a working method thereof, wherein the magnetic attraction type wireless charging and illuminating device comprises a magnetic attraction type lamp and a magnetic attraction type charging platform, the magnetic attraction type lamp comprises a lamp body and at least one magnetic element, the magnetic element is arranged on the lamp body, the magnetic attraction type charging platform comprises a charging main body and at least one magnetic attraction element, the magnetic attraction element is arranged on the charging main body, the charging main body is provided with a bearing surface, the magnetic attraction type lamp can be kept on the bearing surface of the charging main body in a way that the magnetic element is attracted to the magnetic attraction element, the charging main body can charge the lamp body, the bearing surface of the charging main body is allowed to be switched between a strong magnetic state and a weak magnetic state so as to change the magnetic attraction force of the magnetic attraction type charging platform on the magnetic attraction type lamp, thereby meeting different use requirements of users.

Description

Magnetic attraction type wireless charging and illuminating device and working method thereof
Technical Field
The invention relates to the field of illumination, in particular to a magnetic wireless charging and illuminating device and a working method thereof.
Background
With the popularization of electronic products, wireless charging technology is also widely applied to daily life of people. However, there are still many problems in the use process of the existing wireless charging product. The wireless charging lamp is taken as an example for explanation.
The existing wireless charging lamp comprises a chargeable lighting device and a wireless charging base, wherein the chargeable lighting device comprises a light-emitting main body and a receiving coil, the receiving coil is installed in an assembling cavity of the light-emitting main body, and the receiving coil is electrically connected to the light-emitting main body, the wireless charging base comprises a charging main body and a bearing shell, and the charging main body is installed in an accommodating cavity of the bearing shell. When the chargeable lighting device is held at one side of the wireless charging base in a manner that the receiving coil corresponds to a transmitting coil of the charging body of the wireless charging base, and the receiving coil of the chargeable lighting device is close to the transmitting coil of the charging body, the transmitting coil of the charging body causes a current to be generated in the receiving coil of the chargeable lighting device through electromagnetic induction based on a certain frequency of alternating current, so that the wireless charging base can charge the transmitting body of the chargeable lighting device. However, in an actual use process, if a corresponding position of the receiving coil of the chargeable lighting device and the transmitting coil of the charging body of the wireless charging base is deviated, the wireless charging base may intermittently charge the chargeable lighting device, or even fail to charge the chargeable lighting device. Therefore, the charging efficiency of the wireless charging lamp is reduced, the use of a user is influenced, the wireless charging lamp is unstably charged for a long time, and the service lives of the rechargeable lighting device and the wireless charging base are easily shortened.
In the manufacturing process of the existing wireless charging lamp, it is common to provide a charging sign on the surface of the chargeable lighting device and the wireless charging base, respectively, where the charging sign of the chargeable lighting device and the wireless charging base corresponds to the receiving coil and the transmitting coil, respectively. During the use process, a user needs to manually correspond the charging mark of the chargeable lighting device to the charging mark of the wireless charging base, so that the receiving coil and the transmitting coil are opposite, and the charging operation is stably carried out. Not only complex operation, influence user's use and experience, manual operation also can have the deviation moreover, is difficult to the guarantee wireless charging base is steadily all the time can charge lighting device.
Therefore, it is urgently needed to improve the structure of the wireless charging lamp so that the wireless charging base of the wireless charging lamp can stably charge the rechargeable lighting device.
Disclosure of Invention
An object of the present invention is to provide a magnetic wireless charging and lighting device and a method for operating the same, wherein the magnetic wireless charging and lighting device can be stably charged.
Another objective of the present invention is to provide a magnetic wireless charging and lighting device and a working method thereof, wherein the magnetic wireless charging and lighting device includes a magnetic lamp and a magnetic charging platform, the magnetic lamp and the magnetic charging platform can attract each other and automatically correct in the process of attracting each other, so that the charging position of the magnetic lamp and the charging position of the magnetic charging platform are opposite to each other, and the magnetic charging platform is further beneficial to stably charge the magnetic lamp.
Another objective of the present invention is to provide a magnetic wireless charging and lighting device and a working method thereof, wherein the magnetic lamp of the magnetic wireless charging and lighting device includes at least one magnetic element, the magnetic charging platform includes at least one magnetic element, the magnetic lamp is disposed on the magnetic charging platform in such a manner that the magnetic element is attracted to the attraction element of the magnetic charging platform, and the magnetic element have different magnetic poles, so as to automatically correct the position of the magnetic charging platform and the magnetic lamp corresponding to each other in the process of attracting the magnetic element and the magnetic element to each other.
Another objective of the present invention is to provide a magnetic wireless charging illumination device and a working method thereof, wherein a charging body of the magnetic charging platform has a carrying surface, and the carrying surface can be switched between a strong magnetic state and a weak magnetic state, so as to change the magnetic attraction of the magnetic charging platform to the magnetic lamp, thereby meeting different user requirements.
Another objective of the present invention is to provide a magnetic wireless charging illumination device and a working method thereof, wherein when the carrying surface of the magnetic charging platform is in the strong magnetic state, the magnetic charging platform strongly attracts the magnetic lamp, so that the magnetic lamp is stably attracted to the carrying surface of the magnetic charging platform to replenish electric power.
Another objective of the present invention is to provide a magnetic attraction type wireless charging illumination device and a working method thereof, wherein when the carrying surface of the magnetic attraction type charging platform is in the weak magnetic state, the magnetic attraction of the magnetic attraction type charging platform to the magnetic attraction type lamp is weak, so that a user can take the magnetic attraction type lamp on the carrying surface with one hand, and the operation is convenient and fast.
Another objective of the present invention is to provide a magnetic attraction type wireless charging illumination device and a working method thereof, wherein the magnetic attraction element is installed on the charging body in a rotatable manner, and then the magnetic attraction surface of the magnetic attraction element is close to or away from the bearing surface of the charging body by rotating the magnetic attraction element, so as to change a use state of the bearing surface of the charging body, and further change a magnetic attraction force of the bearing surface of the bearing platform to the magnetic attraction type lamp.
Another objective of the present invention is to provide a magnetic attraction type wireless charging illumination device and a working method thereof, wherein the magnetic attraction element is telescopically mounted on the charging platform, so that the magnetic attraction surface of the magnetic attraction element is close to or far from the bearing surface of the charging main body by extending or retracting the magnetic attraction element, thereby changing a use state of the bearing surface of the charging main body.
Another objective of the present invention is to provide a magnetic attraction type wireless charging illumination device and a working method thereof, wherein the magnetic attraction element is slidably mounted on the charging platform, and during a sliding process of the magnetic attraction element relative to the charging platform, the magnetic attraction surface of the magnetic attraction element can be shielded or exposed, so as to change a use state of the bearing surface of the charging main body, and further change a magnetic attraction force of the magnetic attraction type charging platform on the lamp.
Another objective of the present invention is to provide a magnetic wireless charging illumination device and a working method thereof, wherein the magnetic charging platform includes a shielding element, the shielding element is operatively installed on the charging platform, and the shielding element is held above the magnetic surface of the magnetic element, so that the shielding element can shield or expose the magnetic surface of the magnetic element, thereby changing the usage status of the bearing surface of the charging body and further changing the magnetic attraction of the magnetic charging platform to the lamp.
Another objective of the present invention is to provide a magnetic wireless charging illumination device and a working method thereof, wherein when the carrying surface of the charging main body is in the weak magnetic state, the magnetic element of the magnetic charging platform can still generate an attractive force to the magnetic element of the magnetic lamp, so that when the magnetic lamp is placed on the carrying surface of the charging main body, the magnetic lamp automatically corrects a position corresponding to the magnetic charging platform, so that a charged position of the magnetic lamp is directly opposite to a charging position of the magnetic charging platform, thereby facilitating the magnetic charging platform to stably charge the magnetic lamp.
Another objective of the present invention is to provide a magnetic wireless charging illumination device and a working method thereof, wherein the number of the magnetic elements of the magnetic charging platform is two or more, and the magnetic lamp can be placed on the magnetic charging platform and charged in a manner that the magnetic elements are attracted by at least one magnetic element, so that the magnetic charging platform can be adapted to different types of magnetic lamps, thereby improving the applicability of the magnetic charging platform.
Another objective of the present invention is to provide a magnetic attraction type wireless charging lighting device and a working method thereof, wherein the magnetic attraction type lamp and the magnetic attraction type charging platform complete position correction by means of mutual attraction between at least two magnetic elements and the magnetic attraction type charging platform, so as to further ensure that a charged position of the magnetic attraction type lamp and a charging position of the magnetic attraction type charging platform are opposite to each other.
Another objective of the present invention is to provide a magnetic wireless charging illumination device and a working method thereof, wherein the magnetic lamp further includes at least one isolation layer, wherein the isolation layer is covered on the magnetic surface of the magnetic element to prevent external impurities from being directly adsorbed on the magnetic surface, which is beneficial to rapidly clean the impurities attached on the magnetic surface of the magnetic element.
Another objective of the present invention is to provide a magnetic wireless charging illumination device and a working method thereof, wherein the magnetic charging platform further includes at least one isolation layer, and the isolation layer is covered on the magnetic surface of the magnetic element to prevent external impurities from being directly adsorbed on the magnetic surface, which is beneficial to quickly clean the impurities attached on the magnetic surface of the magnetic element.
According to an aspect of the present invention, the present invention further provides a magnetic wireless charging illumination device, comprising:
the magnetic attraction type lamp comprises a lamp body and at least one magnetic element, wherein the magnetic element is arranged on the lamp body; and
a magnetism is inhaled formula charging platform, wherein magnetism is inhaled formula charging platform and is inhaled the component including a main part of charging and an at least magnetism, wherein magnetism is inhaled the component and is set up in the main part of charging, the main part of charging has a loading end, magnetism inhale the formula lamps and lanterns can with magnetic element is adsorbed in magnetism is inhaled the mode of component and is kept in the main part of charging the loading end, just the main part of charging can do the lamps and lanterns body charges, the main part of charging the loading end allows to switch between a strong magnetic state and a weak magnetic state, in order to change magnetism is inhaled the formula charging platform right the size of the magnetic attraction of magnetism type lamps and lanterns are inhaled.
According to an embodiment of the present invention, the lamp body further includes a lamp main body and a receiving coil, wherein the receiving coil element and the magnetic element are disposed on the lamp main body, the charging main body further includes a carrying housing, a power-generating coil and a power supply unit, wherein the power-generating coil, the power supply unit and the magnetic attraction element are disposed on the carrying housing, the power-generating coil is electrically connected to the power supply unit, the carrying surface is formed on the carrying housing, and when the magnetic element of the magnetic attraction type lamp is attracted to the magnetic attraction element, the receiving coil faces the power-generating coil.
According to an embodiment of the present invention, the magnetically attracting element has a magnetically attracting surface, and a relative position between the magnetically attracting surface of the magnetically attracting element and the carrying surface of the charging body is allowed to be adjusted.
According to an embodiment of the present invention, the charging body of the magnetically-attracted charging platform further includes a mounting member rotatably mounted to the carrying case, and the magnetically-attracted member is movably disposed on the charging body by being mounted to the mounting member.
According to an embodiment of the invention, the magnetically attractable charging platform further comprises a braking element, wherein the mounting element is brazeably connected to the braking element.
According to an embodiment of the present invention, the charging body of the magnetic charging platform further includes a mounting member, the mounting member is telescopically mounted to the carrying housing, and the magnetic member is movably disposed on the charging body by being mounted to the mounting member.
According to an embodiment of the present invention, the charging body of the magnetic charging platform further includes an assembly component, the bearing housing has an assembly space and a receiving groove, an opening of the receiving groove communicates with the assembly space, the magnetic component is mounted on the assembly component, the assembly component can move between the assembly space and the receiving groove, and when the magnetic component enters the receiving groove, the magnetic attraction surface of the magnetic component is shielded by a groove wall defining the receiving groove, and when the magnetic component enters the assembly space, the magnetic attraction surface of the magnetic component is exposed.
According to an embodiment of the present invention, the magnetically-attracted wireless charging and lighting device further includes a shielding element movably retained above the magnetically-attracted surface of the magnetically-attracted element.
According to one embodiment of the invention, the magnetic element and the magnetically attractive element are both implemented as magnets.
According to one embodiment of the invention, the distance between the magnetically attractive element and the transmitting coil is greater than or equal to 7.5 mm.
According to one embodiment of the invention, the distance between the magnetically attractive element and the transmitting coil is equal to 7.8 mm.
According to one embodiment of the invention, the distance between the magnetic element and the receiving coil is greater than or equal to 7.5 mm.
According to one embodiment of the invention, the distance between the magnetic element and the receiving coil is equal to 7.8 mm.
According to one embodiment of the invention, the distance between the transmitting coil and the receiving coil is greater than or equal to 2 mm.
According to one embodiment of the invention, the distance between the transmitting coil and the receiving coil is equal to 2.5 mm.
According to one embodiment of the invention, the distance between the magnetic element and the receiving coil is the same as the distance between the magnetically attractive element and the transmitting coil.
According to an embodiment of the invention, the lamp body further includes an isolation layer covering a surface of the magnetic element.
According to an embodiment of the present invention, the two magnetic elements are distributed on the same side of the receiving coil, and the two magnetic attraction elements are distributed on the same side of the transmitting coil.
According to an embodiment of the present invention, the lamp body has a contact surface, the contact surface has an identification area, the identification area corresponds to the receiving coil, the carrying surface of the charging main body has a prompt area, the prompt area corresponds to the transmitting coil, and the charging main body is capable of charging the lamp body in a manner that the prompt area of the carrying surface corresponds to the identification area of the contact surface of the lamp body.
According to an embodiment of the present invention, the carrying housing of the charging body has at least one mounting hole, and the mounting hole penetrates through the carrying housing.
According to one embodiment of the present invention, the magnetic-type charging platform further comprises at least one suction element, wherein the suction element is mounted on the back surface of the carrying housing.
According to an embodiment of the present invention, the magnetic-type charging platform further comprises at least one prompting device, wherein the prompting device is communicably connected to the charging body.
According to one embodiment of the invention, the prompting device is implemented as a signal light and/or a sound emitter.
According to another aspect of the present invention, the present invention further provides an operating method of a magnetic wireless charging and lighting device, the operating method including the steps of:
(a) allowing a bearing surface of a charging main body of a magnetic type charging platform to be switched between a strong magnetic state and a weak magnetic state;
(b) adsorbing at least one magnetic element of a magnetic attraction type lamp to at least one magnetic attraction element of a magnetic attraction type charging platform; and
(c) the charging main body charges the lamp body in a mode that a transmitting coil corresponds to a receiving coil of the lamp body.
According to an embodiment of the present invention, in the step (a), the bearing surface is switched between the strong magnetic state and the weak magnetic state by changing an orientation of a magnetic attracting surface of the magnetic attracting element.
According to an embodiment of the present invention, in the above method, a mounting member of the magnetically-attracted charging platform is rotated to change an orientation of the magnetically-attracted surface of the magnetically-attracted member fixed to the mounting member.
According to an embodiment of the present invention, in the step (a), the carrying surface is switched between the strong magnetic state and the weak magnetic state by changing a vertical distance between a magnetic attracting surface of the magnetic attracting element and the carrying surface of the charging body.
According to an embodiment of the present invention, in the above method, further comprising the step of: pressing the fitting member.
According to an embodiment of the invention, in the above method, the magnetically attracting surface of the magnetically attracting element is exposed, so that the bearing surface of the charging body is in the strong magnetic state.
According to an embodiment of the invention, in the above method, the magnetically attracting surface of the magnetically attracting element is shielded, so that the bearing surface of the charging body is in the weak magnetic state.
According to another aspect of the present invention, the present invention further provides a working method of the magnetic wireless charging and lighting device, the working method includes the following steps:
(a) in the process that at least one magnetic attraction element of a magnetic attraction type charging platform and at least one magnetic attraction element of a magnetic attraction type lamp attract each other, automatically correcting the corresponding positions of a transmitting coil of a charging main body of the magnetic attraction type charging platform and a receiving coil of a lamp body of the magnetic attraction type lamp; and
(b) the charging main body charges the lamp body in a mode that the transmitting coil is over against the receiving coil of the lamp body.
According to an embodiment of the present invention, in the above method, the magnetically attracting element and the magnetic element having different magnetic poles attract each other to correct the corresponding position between the transmitting coil and the receiving coil.
According to an embodiment of the present invention, in the above method, a carrying surface of the charging body is switched between a strong magnetic state and a weak magnetic state.
Drawings
Fig. 1 is a perspective view of a magnetic wireless charging and lighting device according to a preferred embodiment of the invention.
Fig. 2A is an exploded view of a magnetic-attraction type lamp of the magnetic-attraction type wireless charging and illuminating device according to the above preferred embodiment of the invention.
Fig. 2B is an exploded view of a magnetic charging platform of the magnetic wireless charging illumination device according to the above preferred embodiment of the invention.
Fig. 3A is a perspective view of the magnetic wireless charging and lighting device according to the above preferred embodiment of the present invention.
Fig. 3B is a perspective view of the magnetic wireless charging and lighting device according to another preferred embodiment of the invention.
Fig. 3C is a perspective view of the magnetic wireless charging and lighting device according to the above preferred embodiment of the present invention.
Fig. 4 is a schematic view of a usage scenario of the magnetic wireless charging and illuminating device according to the above preferred embodiment of the present invention.
Fig. 5A is a perspective view of the magnetic wireless charging and lighting device according to another preferred embodiment of the invention.
Fig. 5B is a schematic view of a usage scenario of the magnetic wireless charging and illuminating device according to the above preferred embodiment of the invention.
Fig. 6A is a perspective view of the magnetic wireless charging and lighting device according to another preferred embodiment of the invention.
Fig. 6B is a schematic view of a usage scenario of the magnetic wireless charging and illuminating device according to another preferred embodiment of the invention.
Fig. 7A is a perspective view of the magnetic wireless charging and lighting device according to another preferred embodiment of the invention.
Fig. 7B is a schematic view of a usage scenario of the magnetic wireless charging and illuminating device according to the above preferred embodiment of the invention.
Fig. 8 is a perspective view of the magnetic wireless charging and lighting device according to another preferred embodiment of the invention.
Fig. 9 is a perspective view of the magnetic wireless charging and lighting device according to another preferred embodiment of the invention.
Fig. 10 is a perspective view of the magnetic wireless charging and lighting device according to another preferred embodiment of the invention.
Fig. 11 is a perspective view of the magnetic wireless charging and lighting device according to another preferred embodiment of the invention.
Detailed Description
The following description is presented to disclose the invention so as to enable any person skilled in the art to practice the invention. The preferred embodiments in the following description are given by way of example only, and other obvious variations will occur to those skilled in the art. The basic principles of the invention, as defined in the following description, may be applied to other embodiments, variations, modifications, equivalents, and other technical solutions without departing from the spirit and scope of the invention.
It will be understood by those skilled in the art that in the present disclosure, the terms "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," and the like are used in an orientation or positional relationship indicated in the drawings for ease of description and simplicity of description, and do not indicate or imply that the referenced devices or components must be constructed and operated in a particular orientation and thus are not to be considered limiting.
It is understood that the terms "a" and "an" should be interpreted as meaning that a number of one element or element is one in one embodiment, while a number of other elements is one in another embodiment, and the terms "a" and "an" should not be interpreted as limiting the number.
Referring to fig. 1 to 4 of the specification, a magnetic wireless charging illumination device 1000 according to a preferred embodiment of the present invention will be described in the following description, wherein the magnetic wireless charging illumination device 1000 includes a magnetic charging platform 100 and a magnetic lamp 200, wherein the magnetic charging platform 100 and the magnetic lamp 200 can attract each other and automatically correct in the process of attracting each other, so that the charging position of the magnetic lamp 200 and the charging position of the magnetic charging platform 100 are aligned, and the magnetic charging platform 100 is further beneficial to stably charge the magnetic lamp 200.
Referring to fig. 1 to 4, according to a preferred embodiment of the present invention, the magnetic charging platform 100 of the magnetic wireless charging device 1000 includes a charging body 110 and at least one magnetic element 120, wherein the charging body 110 has a carrying surface 1101, the magnetic element 120 has a magnetic surface 1201, and the magnetic element 120 is mounted on the charging body 110. The magnetic attraction type lamp 200 includes a lamp body 210 and at least one magnetic element 220, wherein the lamp body 210 has a contact surface 2101, the magnetic element 220 has a magnetic surface 2201, the magnetic element 220 is mounted on the lamp body 210, the contact surface 2101 of the lamp body 210 can be attached to the carrying surface 1101 of the charging main body 110 in a manner that the magnetic surface 2201 of the magnetic element 220 is attracted by the magnetic attraction surface 1201 of the magnetic attraction element 120, and the charging position of the lamp body 210 corresponds to the charging position of the charging main body 110. Moreover, the lamp body 210 is stably maintained at one side of the charging body 110 by the mutual attraction between the magnetic element 120 and the magnetic element 220, so as to prevent the lamp body 210 and the charging body 110 from being easily separated due to collision or other impacts. In this way, the magnetic type charging platform 100 can stably charge the magnetic type lamp.
Preferably, the magnetically attracting element 120 of the magnetically attracting charging platform 100 and the magnetic element 220 of the magnetically attracting lamp 200 are implemented as magnets, and the type of the magnets is not limited.
Further, as shown in fig. 3A, in the specific embodiment of the magnetically-attracted wireless charging illumination apparatus 1000 of the present invention, the magnetically attracting surface 1201 of the magnetically-attracted element 120 of the magnetically-attracted charging platform 100 and the magnetic surface 2201 of the magnetic element 220 of the magnetically-attracted lamp 200 respectively have different magnetic poles. In this way, the magnetic attraction surface 1201 of the magnetic attraction element 120 and the magnetic surface 2202 of the magnetic element 220 can attract each other, and automatically correct the corresponding positions of the lamp body 210 and the charging main body 110 in the process of attracting the magnetic attraction surface 1201 and the magnetic surface 2201 to each other, and when the magnetic attraction surface 1201 of the magnetic attraction element 120 and the magnetic surface 2201 of the magnetic element 220 are attached to each other, the charging position of the lamp body 210 and the charging position of the charging main body 110 are opposite to each other. Furthermore, the magnetic charging platform 100 can stably charge the magnetic lamp 200. Preferably, the magnetic attraction surface 1201 of the magnetic attraction element 120 of the magnetic charging platform 100 is an "N" pole, and the magnetic surface 2201 of the magnetic element 220 of the magnetic attraction lamp 200 is an "S" pole. Preferably, the magnetic attraction surface 1201 of the magnetic attraction element 120 of the magnetic charging platform 100 is "S" pole, and the magnetic surface 2201 of the magnetic element 220 of the magnetic attraction lamp 200 is "N" pole.
According to a preferred embodiment of the present invention, when the numbers of the magnetic attraction elements 120 and the magnetic elements 220 are respectively two or more, the magnetic poles of the magnetic attraction surfaces 1201 of the adjacent magnetic attraction elements 120 are different, and the magnetic poles of the magnetic surfaces 2201 of the magnetic elements 220 are different from the magnetic poles of the magnetic attraction surfaces 1201 of the corresponding magnetic attraction elements 120, that is, the magnetic properties of the magnetic surfaces 2201 of the adjacent magnetic elements 220 are different. In this way, only if the charging position of the magnetic attraction type lamp 200 faces the charging position of the magnetic attraction type charging platform 100, the magnetic element 220 of the magnetic attraction type lamp 200 can be attracted to the magnetic attraction type charging platform 100 to avoid the magnetic element 120 to be attracted to the magnetic element 220, but the charging position of the magnetic attraction type lamp 200 does not correspond to the charging position of the magnetic attraction type charging platform 100.
For example, referring to fig. 3B, the magnetic attraction surfaces 1201 of two adjacent magnetic attraction elements 120 are respectively set to "N" pole and "S" pole, the magnetic surfaces 2201 corresponding to the magnetic elements 220 are respectively set to "S" pole and "N" pole, the magnetic attraction lamp 200 is close to the magnetic attraction charging platform 100 in a manner that the charging position of the magnetic attraction lamp 200 faces the charging position of the magnetic attraction charging platform 100, and the magnetic attraction elements 120 of the magnetic attraction charging platform 100 can attract the corresponding magnetic elements 220. When the magnetic surface 2201 of the magnetic attraction type lamp 200 with the "S" pole and the "N" pole corresponds to the magnetic attraction surface 1201 of the "S" pole and the "N" pole of the magnetic attraction type charging platform 100, the magnetic attraction surface 1201 and the magnetic surface 2201 repel each other to remind the user to adjust the orientation of the magnetic attraction type lamp 200. Optionally, the magnetic poles of the magnetic attraction surfaces 1201 of the adjacent magnetic attraction elements 120 are the same, the magnetic poles of the magnetic attraction surfaces 2201 of the adjacent magnetic elements 220 are the same, and the magnetic poles of the magnetic surfaces 2201 of the magnetic elements 220 are different from the magnetic poles of the magnetic attraction surfaces 1201 of the corresponding magnetic attraction elements 120.
Optionally, the magnetically attractive element 120 of the magnetically attractive charging platform 100 is implemented as a magnet, and the magnetic element 220 of the magnetically attractive light fixture 200 is implemented as a metal capable of being attracted by a magnet, such as but not limited to iron. Optionally, the magnetically attractive element 120 of the magnetically attractive charging platform 100 is implemented as a metal capable of being attracted by a magnet, such as but not limited to iron, and the magnetic element 220 of the magnetically attractive light fixture 200 is implemented as a magnet. That is, at least one of the magnetically attractive element 120 of the magnetically attractive charging platform 100 and the magnetic element 220 of the magnetically attractive lamp 200 is implemented as a magnet, and the other is a magnet or a metal capable of being attracted by a magnet. It should be understood by those skilled in the art that the embodiments of the magnetically attractive element 120 and the magnetic element 220 are only examples, and should not be construed as limiting the content and scope of the magnetically attractive wireless charging and lighting device 1000 of the present invention.
According to a preferred embodiment of the present invention, the magnetic attraction element 120 of the magnetic attraction type charging platform 100 and the magnetic element 220 of the magnetic attraction type lamp are consistent in number. Preferably, magnetism of formula charging platform 100 is inhaled the magnetism and is inhaled component 120 with magnetism of formula lamps and lanterns 200 the magnetic element 220 is all implemented as one, magnetism inhale component 120 distribute in the length direction of main part 110 or one side of width direction charges, just magnetism inhale formula lamps and lanterns 200 the position of magnetic element 220 with magnetism of formula charging platform 100 is inhaled the magnetism and is inhaled component 120 and corresponding, and works as magnetism inhale formula lamps and lanterns 200 one magnetic element 220 the magnetic surface 2201 is adsorbed in magnetism of formula charging platform 100 magnetism inhale formula charging platform 120 when inhaling the magnetism and inhale surface 1201, the position of charging of lamps and lanterns body 210 with the position of charging of main part 110 is just right.
Preferably, as shown in fig. 1 to 9, the magnetically attractive element 120 of the magnetically attractive charging platform 100 and the magnetic element 220 of the magnetically attractive lamp 200 are implemented in two. Preferably, the two magnetically attracting elements 120 may also be spaced apart from each other on the same side of the charging platform 110 in the length direction or the width direction. In an embodiment of the present invention, the two magnetically attracting elements 120 are symmetrically distributed on two sides of the charging platform 110 in the length direction. In another embodiment of the present invention, two magnetically attracting elements 120 are symmetrically distributed on two sides of the charging platform 110 in the width direction. In another embodiment of the present invention, one of the two magnetic attraction elements 120 is distributed in the length direction of the charging platform, and the other is distributed in the width direction of the charging platform. Magnetism is inhaled formula lamps and lanterns 200 the position of magnetic element 220 with magnetism is inhaled formula charging platform 100 magnetism inhale the position of component 120 and correspond each other, and then, magnetism is inhaled two of formula lamps and lanterns 200 magnetic element 220 quilt magnetism is inhaled two of formula charging platform 100 magnetism and is inhaled component 120 and attract each other to correct in the process of attracting each other, like this, further ensure through two position correction's mode the position of charging of lamps and lanterns body 210 with the position of charging main part 110 is just right, in order to ensure charging main part 110 does steadily lamps and lanterns body 210 charges.
Preferably, as shown in fig. 10, the magnetically attractive element 120 of the magnetically attractive charging platform 100 and the magnetic element 220 of the magnetically attractive lamp 200 are implemented in three. In an embodiment of the present invention, three magnetic attraction elements 120 are distributed in the charging body 110 in a triangular shape, for example, one magnetic attraction element 120 of the three magnetic attraction elements 120 is distributed on one side of the charging body 110 in the width direction, and the other two magnetic attraction elements 120 are distributed on the other side of the charging body 11 in the width direction; or, one magnetic attraction element 120 is distributed on one side of the charging main body 110 in the width direction, and the other two magnetic attraction elements 120 are distributed on two sides of the charging main body 110 in the length direction; or, one magnetic attraction element 120 is distributed on one side of the length direction of the charging main body 110, and the other two magnetic attraction elements 120 are distributed on one side of the width direction of the charging main body 110; alternatively, one of the magnetic attraction elements 120 is distributed on one side of the charging main body 110 in the length direction, and the other two of the magnetic attraction elements 120 are distributed on the other side of the charging main body 11 in the length direction. In another embodiment of the present invention, three magnetic attraction elements 120 are spaced apart from each other and are held on the same side of the charging body 110 in the length or width direction. Magnetism is inhaled formula lamps and lanterns 200 the position of magnetic element 220 with magnetism is inhaled formula charging platform 100 magnetism inhale the position of component 120 and correspond each other, and then magnetism is inhaled formula lamps and lanterns 200 three magnetic element 220 quilt magnetism is inhaled formula charging platform is three magnetism inhale component 120 and attract each other to correct automatically at the in-process that attracts each other the charging position of lamps and lanterns body 210 with the corresponding relation of the charging position of main part 110 charges, like this, further ensure through the mode of three-point position correction the charging position of lamps and lanterns body 210 with the charging position of main part 110 is just right, in order to ensure main part 110 that charges steadily does lamp body 210 charges.
Alternatively, as shown in fig. 11, the magnetically attractive element 120 of the magnetically attractive charging platform 100 and the magnetic element 220 of the magnetically attractive light fixture 200 are implemented as four. For example, but not limited to, four magnetic attraction elements 120 are distributed at four corners of the charging body 110. The position of the magnetic element 220 of the magnetic attraction type lamp 200 corresponds to the position of the magnetic attraction type element 120 of the magnetic attraction type charging platform 100, and when the magnetic surfaces 2201 of the four magnetic elements 220 of the magnetic attraction type lamp 200 are respectively adsorbed on the magnetic attraction type surfaces 1201 of the four magnetic attraction type elements 120 of the magnetic attraction type charging platform 100, the charging position of the lamp body 210 is opposite to the charging position of the charging main body 110. Like this, further ensure through the mode that four-point position was corrected the position of charging of lamps and lanterns body 210 with the position of charging of main part 110 is just right to, and four-point position adsorbed mode makes formula charging platform 100 is inhaled to magnetism provides the bigger magnetic attraction of formula lamps and lanterns 200 is inhaled to magnetism, is favorable to adsorbing stably that the volume is great, and the quality is heavier formula lamps and lanterns 200 are inhaled to magnetism. It should be understood by those skilled in the art that the magnetic attraction of the magnetically-attracted charging platform 100 to the magnetically-attracted light fixture 200 can be increased by adding the magnetic attraction element 120.
In another preferred embodiment of the present invention, the number of the magnetic elements 220 of the magnetically-attractable lamp 200 is different from the number of the magnetically-attractable elements 120 of the magnetically-attractable charging platform 100. Preferably, the magnetic element 220 of the magnetic attraction type lamp 200 is implemented as one, the magnetic attraction type charging platform 100 has two magnetic attraction elements 120, two magnetic attraction elements 120 are distributed on two sides of the charging main body 110, when the magnetic attraction type lamp 200 has the magnetic attraction element 220 attracted to any one of the magnetic attraction elements, the charging position of the lamp body 110 of the magnetic attraction type lamp 200 can be opposite to the charging position of the charging main body 110. In this way, it is favorable to avoiding the user to need to adjust when charging the magnetism is inhaled formula lamps and lanterns 200 or the formula charging platform 100 is inhaled to magnetism position and orientation.
It should be noted that the specific number and distribution of the magnetic attraction elements 120 of the magnetic attraction charging platform 100 and the magnetic attraction elements 220 of the magnetic attraction lamp 200 are only examples, and should not be construed as limiting the content and scope of the magnetic attraction wireless charging illumination device 1000 of the present invention.
Referring to fig. 2B, the charging body 110 includes a carrying case 1110, a transmitting coil 1120 and a power supply unit 1130, wherein the carrying case 1110 has a mounting cavity 1111, the carrying surface 1101 is formed on the carrying case 1110, the transmitting coil 1120 and the power supply unit 1130 are held in the mounting cavity 1111, and the transmitting coil 1120 is electrically connected to the power supply unit 1130. The magnetically attractive elements 120 are disposed on the carrying case 1110, and at least one of the magnetically attractive elements 120 is distributed around the transmitting coil 1120 at intervals. Preferably, the distance between the magnetic attraction element 120 and the transmitting coil 1120 is greater than or equal to 7.5mm, so as to avoid the magnetic attraction element 120 from affecting the normal operation of the transmitting coil 1120, thereby ensuring the normal use of the magnetic attraction type wireless charging lighting device 1000. More preferably, the distance between the magnetically attractive element 120 and the transmitting coil 1120 is 7.8 mm.
Referring to fig. 2A, the lamp body 210 further includes a lamp body 2110 and a receiving coil 2120, wherein the lamp body 2110 has a receiving cavity 2111, the contact surface 2101 is formed on the lamp body 2110, the receiving coil 2120 is received in the receiving cavity 2111 of the lamp body 2110, and the receiving coil 2120 is electrically connected to the lamp body 2110. At least one of the magnetic elements 220 is disposed on the lamp body 2110, and the magnetic elements 220 are distributed around the receiving coil 2120 at intervals. Preferably, the distance between the magnetic element 220 and the receiving coil 2120 is greater than or equal to 7.5mm, so as to avoid the influence of the magnetic element 220 on the normal operation of the receiving coil 2120, and further ensure the normal use of the magnetic wireless charging and illuminating device 1000. Preferably, the distance between the magnetic element 220 and the receiving coil 2120 is 7.8 mm. More preferably, the distance between the magnetic element 220 and the receiving coil 2120 of the magnetic attraction lamp 200 is the same as the distance between the magnetic element 120 and the transmitting coil 1120 of the magnetic attraction charging platform 100, so that when the magnetic element 220 is attracted to the magnetic element 120, the receiving coil 2120 is directly opposite to the transmitting coil 1120, so as to facilitate the magnetic attraction charging platform 100 to stably charge the magnetic attraction lamp 200.
Preferably, referring to fig. 1 to 11, the contact surface 2101 of the lamp body 210 has an identification region 21011, the identification region 21011 faces the receiving coil 2120, the contact surface 2101 is recessed inward to form an identification texture, and the region where the identification texture is located is defined as the identification region 21011. The carrying surface 1101 of the charging main body 110 has a prompt region 11011, the prompt region 11011 faces the transmitting coil 1120, the carrying surface 1101 is recessed inwards to form a prompt texture, and a region where the prompt texture is located is defined as the prompt region. When the magnetic element 220 of the magnetically-attracted lamp 200 is attracted to the magnetic element 120 of the magnetically-attracted charging platform 100, the lamp body 210 corresponds to the identification area 21011, and the receiving coil 2120 is opposite to the transmitting coil 1120. In other words, when the magnetic attraction type lamp 200 is placed on the carrying surface 1101 of the charging main body 110 in such a manner that the identification region 21011 corresponds to the prompt region 11011 of the magnetic attraction type charging platform 100, and the receiving coil 2120 is facing the transmitting coil 1120, the magnetic attraction type charging platform 100 can charge the magnetic attraction type lamp.
It should be noted that the specific embodiments of the indication region 2101 of the lamp body 210 and the prompt region 11011 of the charging main body 110 are only examples, and cannot be a limitation to the content and scope of the magnetic attraction type charging illumination device 1000 according to the present invention.
Preferably, as shown in fig. 2A, the lamp body 210 further comprises an operating element 2130, wherein the operating element 2130 is rotatably mounted on the lamp body 2110, and the operating element 220 can be used for supporting the lamp body 2110. The included angle between the operating element 2130 and the lamp body 2110 is allowed to be adjusted, and the illumination angle and the illumination range of the lamp body 2110 can be changed by adjusting the angle between the operating element 2130 and the lamp body 2110. In addition, by adjusting the angle between the operating element 2130 and the lamp body 2110, the magnetic-attraction type lamp 200 can be allowed to be used in a suspended manner or carried, so that the flexibility and applicability of the magnetic-attraction type lamp 200 are improved.
Preferably, as shown in fig. 2A, the lamp body 200 further includes an isolating layer 230, wherein the isolating layer 230 is covered on the magnetic surface 2201 of the magnetic element 220, so as to clean impurities such as iron filings adsorbed on the magnetic surface 2201 of the magnetic element 220. The specific implementation of the isolation layer 230 is not limited, for example, but not limited to, the isolation layer 230 is implemented as a plastic film, the plastic film is attached to the magnetic attraction surface 2201, when the user uses the magnetic attraction type lamp, impurities such as iron filings in the environment are easily adsorbed to the magnetic element 220, by setting the isolation layer 230, the magnetic element 220 and the adsorbed substance are isolated, so that the user can easily and quickly process the impurities such as the adsorbed iron filings before charging, so as to ensure that the magnetic attraction type element 220 is stably adsorbed to the magnetic attraction type element 120, and the magnetic attraction type charging platform 100 can stably charge the magnetic attraction type lamp 200. Preferably, the magnetically-attracted charging platform 100 also includes at least one isolation layer 230, and the isolation layer 230 of the magnetically-attracted charging platform 100 is covered on the magnetically-attracted surface 1201 of the magnetically-attracted element 120.
Preferably, as shown in fig. 9, the magnetically attractive element 120 of the magnetically attractive charging platform 100 and the magnetic element 220 of the magnetically attractive lamp 200 are embedded in the carrying case 1110 and the lamp body 2110, respectively. More preferably, the magnetic element 220 of the magnetically-attracted lamp 200 is embedded in the lamp body 2110 in a manner that the end portion protrudes from the contact surface 2101 of the lamp body 2110, and the magnetic element 120 of the magnetically-attracted charging platform 100 is embedded in the carrying housing 1110 in a manner of being recessed in the carrying housing 1110, so that the magnetic element 120 of the magnetically-attracted charging platform 100 and the magnetic element 220 of the magnetically-attracted lamp 200 can be positioned more quickly. It should be understood by those skilled in the art that the specific installation manner of the magnetically attractive element 120 of the magnetically attractive charging platform 100 and the magnetic element 220 of the magnetically attractive lamp 200 is merely illustrative and should not be construed as limiting the content and scope of the magnetically attractive wireless charging illumination apparatus 1000 of the present invention.
Further, when the magnetic lamp 200 is held above the magnetic charging platform 100 in a manner that the magnetic surface 2201 of the magnetic element 220 faces the magnetic surface 1201 of the magnetic element 120 of the magnetic charging platform 100, and the magnetic lamp 200 and the magnetic charging platform 100 approach each other, the magnetic surface 2201 of the magnetic element 220 and the magnetic surface 1201 of the magnetic element 120 attract each other, and automatically correct the corresponding position, so that when the magnetic surface 2201 of the magnetic element 220 is attracted to the magnetic surface 1201 of the magnetic element 120, the receiving coil 2120 held in the accommodating cavity 2111 of the lamp body 2110 faces the transmitting coil 1120 held in the mounting cavity 1111 of the carrier housing 1110. The transmitting coil 1120 generates a current in the receiving coil 2120 by electromagnetic induction based on a certain frequency of alternating current, so that the power supply unit 1130 of the charging body 110 of the magnetic charging platform 100 can charge the lamp body 2110 of the lamp body 210 of the magnetic lamp 200. It should be understood by those skilled in the art that the power supply unit 1130 of the charging body 110 may be implemented as a built-in power supply or may be implemented to be electrically connected to an external power supply, and the specific embodiment of the power supply unit 1130 is not limited.
Preferably, when formula lamps and lanterns 200 are inhaled to magnetism is arranged in formula charging platform 100 magnetism is inhaled when the loading face 1101, formula lamps and lanterns 200 are inhaled to magnetism receive coil 2120 with formula charging platform 100 is inhaled to magnetism distance more than or equal to 2mm between transmitting coil 1120, in order to ensure formula charging platform 100 is inhaled to magnetism stably for formula lamps and lanterns 200 charges are inhaled to magnetism. More preferably, the distance between the receiving coil 2120 of the magnetically-attracted luminaire 200 and the transmitting coil 1120 of the magnetically-attracted charging platform 100 is equal to 2.5 mm.
Referring to fig. 1 to 7B, in some specific embodiments of the magnetic wireless charging illumination device 1000 of the present invention, the carrying surface 1101 of the charging body 110 of the magnetic charging platform 100 can be switched between a strong magnetic state and a weak magnetic state. When the carrying surface 1101 is in the strong magnetic state, the magnetic type charging platform 100 is opposite to the magnetic type lamp 200 generating strong magnetic attraction, so that the magnetic type lamp 200 is stably attracted to the magnetic type charging platform 100 for power supply. When the loading face 1101 is in during the weak magnetic state, magnetism is inhaled formula charging platform 100 and is right the magnetism appeal of magnetism formula lamps and lanterns 200 is inhaled to magnetism is relatively weak, and the user can singlehanded take fast and charge magnetism is inhaled formula lamps and lanterns 200, and then satisfies the different operation demand of user, has improved magnetism is inhaled formula wireless lighting device 1000 that charges.
Referring to fig. 1 to 4, in a preferred embodiment of the present invention, the carrying case 1110 of the charging body 110 of the magnetic charging platform 100 has an assembling space 1112, the magnetic element 120 is movably held in the assembling space 1112, and by changing a relative position between the magnetic surface 1201 of the magnetic element 120 and the carrying surface 1101 of the charging body 110, the carrying surface 1101 can be switched between the strong magnetic state and the weak magnetic state, so as to change a magnetic attraction force of the magnetic charging platform 100 on the magnetic lamp 200.
Preferably, referring to fig. 2B, the magnetically attractive charging platform 100 further includes a mounting member 130, wherein the mounting member 130 is movably mounted in the mounting space 1112 of the carrying housing 1110, the magnetically attractive member 120 is fixed to the mounting member 130, and when the mounting member 130 rotates relative to the carrying housing 1110, the magnetically attractive member 120 and the mounting member 130 rotate synchronously to change the relative position between the magnetically attractive surface 1201 of the magnetically attractive member 120 and the carrying surface 1101.
Referring to fig. 2B, specifically, the bearing housing 1110 has two assembling holes 1113, the two assembling holes 1113 are formed in an inner wall defining the assembling space 1112, the assembling holes 1113 are oppositely disposed, the assembling holes 1113 are communicated with the assembling space 1112, the assembling element 130 includes a holding body 1301 and two assembling arms 1302, the two assembling arms 1302 respectively extend on two sides of the holding body 1301, and the two assembling arms 1302 of the assembling element 130 are respectively rotatably mounted in the assembling holes 1113, so that the holding body 1301 is rotatably held in the assembling space 1112. Further, the magnetic attraction element 120 is embedded in the holding body 1301, and the magnetic attraction element 120 rotates synchronously with the holding body 1301, so as to change the relative position between the magnetic attraction surface 1201 of the magnetic attraction element 120 and the carrying surface 1101 of the carrying shell 1110, so that the carrying surface 1101 is switched between the strong magnetic state and the weak magnetic state.
Referring to fig. 3A and 3C, in this specific embodiment, when the magnetic attraction surface 1201 of the magnetic attraction element 120 faces the carrying surface 1101 of the charging body 110, and the plane of the magnetic attraction surface 1201 is parallel to or coincides with the plane of the carrying surface 1101 of the charging body 110, the carrying surface 1101 of the charging body 110 is in the strong magnetic state, and at this time, the magnetic attraction type charging device 100 can generate a strong magnetic attraction force to the magnetic attraction type lamp 200, so that the magnetic attraction type lamp 200 is attracted to the magnetic attraction type charging platform 100 to replenish electric quantity. In addition, the magnetic attraction type lamp 200 and the magnetic attraction type charging platform 100 are not easy to separate from each other when being charged in such a way, so that the magnetic attraction type lamp 200 and the magnetic attraction type charging platform 100 can be kept perpendicular to the ground in the charging process, and various use options of a user can be provided.
Referring to fig. 4, before the magnetic attraction type charging lamp 200 is close to the magnetic attraction type charging platform 100, the assembling element 130 is rotated, and the orientation of the magnetic attraction surface 1201 of the magnetic attraction element 120 is changed, so that the magnetic attraction surface 1201 of the magnetic attraction element 120 is far away from the carrying surface 1101 of the charging main body 110, and thus, the carrying surface 1101 is switched from the strong magnetic state to the weak magnetic state, thereby reducing the magnetic attraction force of the magnetic attraction type charging platform 100 on the magnetic attraction type charging platform 200. When the user places the magnetic-attraction type lamp 200 on the carrying surface 1101 of the charging main body 110 and makes the receiving coil 2130 of the lamp body 210 directly face the transmitting coil 1130 of the charging main body 110, the charging main body 110 charges the lamp body 210. And when the user needs to use when the formula lamps and lanterns 200 are inhaled to magnetism, can the one hand take and be charging inhale formula lamps and lanterns 200, the operation is swift convenient. The rotation in the opposite direction may switch the carrying surface 1101 of the charging body 110 from the weak magnetic state to the strong magnetic state.
Preferably, referring to fig. 2B, the mounting arm 1302 has a cylindrical structure, that is, the cross section of the mounting arm 1302 is circular, the mounting hole 1113 is a circular hole, and the cross section of the mounting arm 1302 and the size of the mounting hole 1113 are matched with each other, so that the mounting arm 1302 can rotate in the mounting hole 1113 without any pole and the orientation of the mounting element 130 and the magnetic attraction element 120 is changed. It should be noted that an angle that the assembling element 130 of the magnetic attraction type charging platform 100 can rotate relative to the charging body 110 is not limited, for example, but not limited to, the assembling element 130 can rotate 90 °, 180 °, 270 °, or 360 ° relative to the charging body 110, so as to drive the magnetic attraction element 120 to rotate 90 °, 180 °, 270 °, or 360 ° relative to the charging body 110, so that the bearing surface 1101 of the charging body 110 is switched between the strong magnetic state and the weak magnetic state.
Preferably, the magnetically attractive charging platform 100 further comprises at least one braking element 170, wherein the braking element 170 is mounted on the carrying housing 1110 of the charging body 110, the mounting arm 1302 of the mounting element 130 is connected to the braking element 170 in a brakable manner, the braking element 170 can prevent the mounting arm 1302 of the mounting element 130 from rotating, so that the mounting element 130 can be held at a fixed position, and the orientation of the magnetically attractive surface 1201 of the magnetically attractive element 120 is also fixed. For example, but not limited to, pressing the braking element 170, the force of the braking element 170 resisting the rotation of the mounting arm 1302 is increased, so that the mounting arm 1302 cannot rotate, and pressing the braking element 170 again reduces the resistance force of the mounting arm 1302, so as to allow the mounting element 130 to continue to be rotated, thereby allowing the orientation of the magnetically attractive surface 1201 of the magnetically attractive element 120 to be adjusted.
Referring to fig. 5A and 5B, in the specific embodiment of the magnetic wireless charging illumination apparatus 1000 of the present invention, the magnetic attraction element 120 is movably held in the assembly space 1112 of the carrying housing 1110 up and down, and a vertical distance between the magnetic attraction surface 1201 of the magnetic attraction element 120 and the carrying surface 1101 of the carrying housing 1110 allows to be adjusted, so as to switch the carrying surface 1101 between the strong magnetic state and the weak magnetic state by changing the distance between the magnetic attraction surface 1201 and the carrying surface 1101.
Specifically, referring to fig. 5A and 5B, the assembling element 130 includes a fixed body 131, a movable body 132 and an elastic member 133, wherein the elastic member 133 is fixed in the assembling space 1112 of the carrying case 1110, and the extending direction of the elastic member 133 is consistent with the height extending direction of the magnetic charging platform 100, and the movable body 132 movably extends from the elastic member 133 to the fixed body 133, and enables the fixed body 131 to be telescopically held in the assembling space 1112 of the carrying case 1110. The magnetic attraction element 120 is embedded in the fixing body 133, and the magnetic attraction element 120 moves along with the movement of the fixing body 133 to change a vertical distance between the magnetic attraction surface 1201 of the magnetic attraction element 120 and the carrying surface 1101 of the charging body 110, so that the carrying surface 1101 is switched between the strong magnetic state and the weak magnetic state.
Referring to fig. 5A, in this specific embodiment, when the elastic member 133 of the assembling element 130 is in the initial position, the magnetic attraction surface 1201 of the magnetic attraction element 120 is close to the carrying surface 1101 of the charging body 110, or the plane of the magnetic attraction surface 1201 is coincident with the plane of the carrying surface 1101 of the charging body 110, at this time, the carrying surface 1101 of the charging body 110 is in the strong magnetic state, and the magnetic attraction type charging device 100 can generate a strong magnetic attraction force on the magnetic attraction type lamp 200, so that the magnetic attraction type lamp 200 is attracted to the magnetic attraction type charging platform 100 for power replenishment.
Referring to fig. 5B, before the magnetic attraction type charging light fixture 200 approaches the magnetic attraction type charging platform 100, the fixing body 131 is pressed downward, the fixing body 131 and the movable body 132 move downward, and the elastic member 133 is pressed. Further, the fixed body 131 and the movable body 132 are held in a fixed position, the elastic member 133 is in a compressed state, at this time, the magnetic attraction surface 1201 of the magnetic attraction element 120 mounted on the fixed body 131 is far away from the carrying surface 1101 of the charging body 110, the magnitude of the magnetic attraction force of the magnetic attraction type charging platform 100 on the magnetic attraction type lamp 200 is reduced, and the carrying surface 1101 is switched from the strong magnetic state to the weak magnetic state. When the fixed body 131 is pressed again, the elastic force of the elastic member 133 tending to restore the initial state pushes the movable body 132 to move and drive the fixed body 131 and the magnetic attraction element 120 to move upward, the magnetic attraction surface 1201 of the magnetic attraction element 120 is close to the bearing surface 1101 of the charging body 110, the magnetic attraction force of the magnetic attraction type charging platform 100 on the magnetic attraction type lamp 100 is enhanced, that is, the bearing surface 1101 of the charging body 110 is switched from the weak magnetic state to the strong magnetic state. For example, but not limited to, the movable body 132 is a ratchet mechanism, and the elastic member 133 is a spring.
Referring to fig. 6A and 6B, in the specific embodiment of the magnetic wireless charging and lighting device 1000 of the present invention, the magnetic attraction element 120 is slidably retained in the assembly space 1112 of the carrying housing 1110 from side to side, and the carrying surface 1101 of the charging body 110 is switched between the strong magnetic state and the weak magnetic state by exposing and shielding the magnetic attraction surface 1201 of the magnetic attraction element 120.
Referring to fig. 6A and 6B, specifically, the carrying case 1110 further has a receiving groove 1113, an opening of the receiving groove 1113 is communicated with the assembling space 1112 of the carrying case 1110, the assembling element 130 is movably mounted on the carrying case 1110 of the charging main body 110, and the assembling element 130 can move between the assembling space 1112 and the receiving groove 1113 and drives the magnetic element 120 mounted on the assembling element 130 to move between the assembling space 112 and the receiving groove 1113. Further, when the magnetic element 120 is located in the assembling space 112, the magnetic surface 1201 of the magnetic element 120 is exposed, there is no shielding between the magnetic surface 1201 of the magnetic element 120 and the carrying surface 1101 of the charging body 110, and the magnetically-attracted charging platform 100 can generate a strong magnetic attraction force on the magnetically-attracted lamp 200. When the magnetic element 120 moves into the receiving slot 1113, the magnetic attraction surface 1201 of the magnetic element 120 is shielded by the slot wall defining the receiving slot 1113, and the magnetic attraction element 120 is hidden in the receiving slot 1113 of the carrying housing 113. The magnetic charging platform 100 can generate a magnetic attraction force to the magnetic lamp 200 to weaken.
The fitting member 130 includes a movable body 131 and an extension portion 132, and the extension portion 132 integrally extends outward from an outer side surface of the movable body 131 in a width direction of the movable body 131. Further, the magnetic attraction element 120 is fixed to the movable body 131, and the cross-sectional dimension of the movable body 131 is matched with the dimension of the receiving groove 1113, so as to allow a user to push or pull the extension portion 132 to move the movable body 131 in the assembling space 112 and the receiving groove 1113, so as to change the magnetic attraction force of the magnetic attraction charging platform 100 on the magnetic attraction lamp 200.
Referring to fig. 7A and 7B, in the specific embodiment of the magnetically-attracted wireless charging and lighting device 1000 of the present invention, the magnetic attraction element 120 is embedded in the carrying shell 1110, and a receiving groove 1114 is formed between the magnetic attraction surface 121 of the magnetic attraction element 120 and the carrying shell 1110 of the charging body 110. The magnetically-attractive charging platform 100 further includes a shielding element 140, wherein the shielding element 140 is movably mounted on the carrying case 1110 of the charging body 110, and the shielding element 140 can be held in the receiving groove 1111 and located above the magnetically-attractive surface 1201 of the magnetically-attractive element 120, or the shielding element 140 is separated from the receiving groove 1114 to expose the magnetically-attractive surface 1201 of the magnetically-attractive element 120. Thus, when the magnetic attraction surface 1201 of the magnetic attraction element 120 is not shielded, the carrying surface 1101 of the charging body 110 is in the strong magnetic state, and the magnetic attraction charging platform 100 generates a strong magnetic attraction force on the magnetic attraction lamp 200. When the shielding element 140 shields the magnetically attracting surface 1201 of the magnetically attracting element 120, the magnetic attraction force generated by the magnetically attracting type charging platform 100 on the magnetically attracting type lamp 200 is weakened. In this way, the carrying surface 1101 of the charging body 110 of the magnetic attraction type charging platform 100 is switched between the strong magnetic state and the weak magnetic state. It should be noted that the upper surface of the shielding element 14 above the magnetic attraction element 120 is not higher than the bearing surface 1101 to ensure that the contact surface 2101 of the lamp body 210 can be attached to the bearing surface 1101, and the charging main body 110 can stably supply power to the lamp body 210.
Preferably, the carrying shell 1110 has a sliding groove 1115, and the shielding element 140 is retained in the sliding groove 1115 of the carrying shell 1110 in a manner of sliding left and right relative to the magnetically attracting element 120. Specifically, the shielding element 140 includes a shielding portion 141 and an operating portion 142, the operating portion 142 integrally extends to the shielding portion 141, the sliding groove 1115 is located at one side of the magnetic element 120, so as to push the shielding portion 141 of the shielding element 140 into the sliding groove 1115 by pushing the operating portion 142, so that the magnetic attraction surface 1201 of the magnetic attraction surface 120 is not shielded, and the shielding portion 141 of the shielding element 140 can be hidden in the sliding groove 1115, so as to avoid increasing the overall volume of the magnetic attraction type charging platform 100. At this time, the carrying surface 1101 of the charging body 110 is in the strong magnetic state. The operation portion 142 is pulled in the opposite direction, so that the shielding portion 141 of the shielding element 140 enters the receiving groove 1114, and the shielding portion 141 shields the magnetic attraction surface 1201 of the magnetic attraction element 120. At this time, the carrying surface 1101 of the charging body 110 is in the weak magnetic state. Preferably, the surface of the operating portion 142 is recessed inward to form a groove, so that the user can move the shielding member 140.
In another preferred embodiment of the present invention, the shielding element 140 is pivotally connected to one side of the carrying shell 1110, and the shielding element 140 can move towards the magnetic attraction surface 1201 of the magnetic attraction element 120, cover the magnetic attraction surface 1201 of the magnetic element 120, and keep away from the magnetic attraction surface 1201 of the magnetic attraction element 120, so as to keep the magnetic attraction surface 120 exposed all the time. In this way, the carrying surface 1101 of the charging body 110 is switched between the weak magnetic state and the strong magnetic state.
It should be understood by those skilled in the art that the specific structure of the magnetic attraction type charging platform 100 is merely an example, and the manner of allowing the carrying surface 1101 of the charging body 110 of the magnetic attraction type charging platform 100 to be switched between the strong magnetic state and the weak magnetic state is not limited.
It should be noted that, although when the carrying surface 1101 of the charging main body 110 of the magnetic type charging platform 100 is in the magnetic weakening state, the magnetic attraction element 120 of the magnetic type charging platform 100 can attract the magnetic element 220 of the magnetic type lamp 200 all the time, in the process of attracting the magnetic element 220 and the magnetic attraction element 120 to each other, the receiving coil 2120 of the lamp body 210 is correctively corresponding to the transmitting coil 1120 of the charging main body 110, so that the magnetic type charging platform 100 stably charges the magnetic type lamp 200.
Referring to fig. 1 to 7B, preferably, the carrying case 1110 of the charging body 110 of the magnetically-attracted charging platform 100 has at least one mounting hole 1116, wherein the mounting hole 1116 penetrates through the carrying case 1110, and the magnetically-attracted charging platform 100 can be mounted in a working position through the mounting hole 1116. For example, a screw or bolt is inserted through the mounting hole 1116 and then fixed to the desk or the wall, so as to mount the magnetic charging platform 100 on the desk or the wall. Preferably, the mounting holes 1116 are implemented in two, and two mounting holes are symmetrically distributed on the carrier case 1110.
Referring to fig. 2B, in this embodiment of the invention, the magnetically attractable charging platform 100 further comprises at least one adsorbing element 150, wherein the adsorbing element 150 is mounted on a back surface of the carrying housing 1110 of the charging body 110, the back surface of the carrying housing 1110 is opposite to the carrying surface 1101, so that the magnetically attractable charging platform 100 is adsorbed to the working position by the adsorbing element 150. For example, but not limited to, the attraction element 150 is implemented as a magnet, so that the magnetic attraction type charging platform 100 can charge the magnetic attraction type lamp 200 in a manner of being attracted to a metal plate.
Referring to fig. 1 to 7B, the magnetic attraction type charging platform 100 further includes at least one prompting device 160, wherein the prompting element 160 is communicably connected to the charging main body 110, the prompting element 160 is capable of acquiring the working state of the charging main body 110 and sending a corresponding prompting signal according to the working state of the charging main body 110, so that a user can acquire the working state of the magnetic attraction type charging platform 100.
Preferably, the prompting device 160 is a signal lamp 161, wherein the signal lamp 161 is communicably connected to the charging main body 110, and the signal lamp 161 changes a light-ray characteristic of the generated light according to the working state of the charging main body 110, so as to facilitate a user to obtain the working state of the magnetic-type charging platform 100, such as starting charging, charging failure, charging completion, and the like. Such as, but not limited to, light color, light brightness, light change time, etc.
For example, when the magnetic type lamp 200 is placed on the carrying surface 1101 of the charging body 110, and the charging body 110 supplies power to the magnetic type lamp 200, at this time, the signal lamp is on and emits red light, and when the charging body 110 is the magnetic type lamp 200 after charging is completed, the signal lamp 161 is turned off or emits yellow or other colors of light, so that the user can clearly know the charging state of the magnetic type lamp 200.
Preferably, the prompting device 160 is a sound generator 162, the sound generator 162 is communicably connected to the charging main body 110, and the sound generator 162 changes a sound characteristic of sound generated by the sound generator 162 according to an operating state of the charging main body 110, so that a user can conveniently obtain an operating state of the magnetic attraction type charging platform 100, such as start of charging, charging failure, completion of charging, and the like. Such as, but not limited to, sound type, time of change of sound, etc.
For example, when the magnetic-attraction-type lamp 200 is placed on the carrying surface 1101 of the charging body 110, but the charging body 110 cannot normally charge the magnetic-attraction-type lamp 200, the sound generator 162 generates a continuous and sudden "dripping" sound or a buzzer sound to attract the attention of the user and timely confirm the cause of the failure, and when the charging body 110 supplies power to the magnetic-attraction-type lamp 200, the sound generator 162 generates a short "dripping" sound. For example, but not limiting of, the sounder 162 is implemented as a buzzer.
It should be noted that a plurality of the prompting devices 160 can be combined for use, so that the user can obtain the working state of the magnetic-type charging platform 100 in time. In addition, the embodiment of the signal lamp 161 is only for illustration and should not be construed as a limitation to the content and scope of the magnetic wireless charging and lighting device 1000 according to the present invention.
According to another aspect of the present invention, the present invention further provides an operating method of the magnetic wireless charging and lighting device 1000, wherein the operating method further comprises the following steps:
(a) in the process of attracting at least one magnetically attracting element 120 of the magnetically attracted charging platform 100 and the magnetic element 220 of the magnetically attracted lamp 200 to each other, automatically correcting the corresponding positions of the transmitting coil 1120 of the charging main body 110 of the magnetically attracted charging platform 100 and the receiving coil 2120 of the lamp body 210 of the magnetically attracted lamp 200; and
(b) the charging body 110 charges the lamp body 210 in such a manner that the transmitting coil 1120 faces the receiving coil 2120 of the lamp body 210.
Preferably, in the above method, the magnetically attracting element 120 and the magnetic element 220 with different magnetic poles attract each other to correct the corresponding positions of the magnetically attracted charging platform 100 and the lamp body 210.
Preferably, in the above method, further comprising the step of: the magnetic strength of the carrying surface 1101 of the charging body 110 is changed so that the carrying surface 1101 is switched between the strong magnetic state and the weak magnetic state.
According to another aspect of the present invention, the present invention further provides another working method of the magnetic wireless charging and lighting device 1000, wherein the working method further comprises the following steps:
(a) allowing the carrying surface 1101 of the charging body 110 of the magnetic charging platform 100 to be switched between the strong magnetic state and the weak magnetic state;
(b) attracting the at least one magnetic element 220 of the magnetically attractive lamp 200 to the at least one magnetic element 120 of the magnetically attractive charging platform 100; and
(c) the charging main body 110 charges the lamp body 210 in such a manner that the transmitting coil 1120 corresponds to the receiving coil 2120 of the lamp body 210.
Specifically, when the carrying surface 1101 is in the strong magnetic state, the magnetic attraction type charging platform 100 generates a strong magnetic attraction force on the magnetic attraction type lamp 200, so that the magnetic attraction type lamp 200 is stably attracted to the magnetic attraction type charging platform 100 to replenish the electric quantity. When the loading face 1101 is in during the weak magnetic state, magnetism is inhaled formula charging platform 100 and is right the magnetism appeal of magnetism formula lamps and lanterns 200 is inhaled to magnetism is relatively weak, and the user can singlehanded take fast and charge magnetism is inhaled formula lamps and lanterns 200, and then satisfies the different operation demand of user, has improved magnetism is inhaled formula wireless lighting device 1000 that charges.
In a preferred embodiment of the present invention, in the step (a), the carrying surface 1101 is switched between the strong magnetic state and the weak magnetic state in a manner of changing the orientation of the magnetic attracting surface 1201 of the magnetic attracting element 120. Preferably, in the above method, the mounting element 130 of the magnetically attractive charging platform 100 is rotated to change the orientation of the magnetically attractive surface 1201 of the magnetically attractive element 120 fixed to the mounting element 130.
Preferably, in the above method, the assembling element 130 is pressed to switch the carrying surface 1101 between the strong magnetic state and the weak magnetic state in a manner of changing the vertical distance between the magnetic attraction surface 1201 of the magnetic attraction element 120 and the carrying surface 1101 of the charging body 110.
In some preferred embodiments of the present invention, in the above method, the magnetically attracting surface 1201 of the magnetically attracting element 120 is exposed, so that the carrying surface 1101 of the charging body 110 is in the strong magnetic state. Preferably, the assembling component 130 is pulled so that the magnetic attraction component 120 enters the assembling space 1112 from the accommodating groove 1113. Preferably, the blocking element 140 is slid away from the magnetically attractive surface 1201 of the magnetically attractive element 120.
Further, the magnetic attraction surface 1201 of the magnetic attraction element 120 is shielded, so that the bearing surface 1101 of the charging body 110 is in the weak magnetic state. Preferably, the assembling element 130 is pushed so that the magnetic attracting element 120 enters the receiving groove 1113 from the assembling space 1112. Preferably, the shielding element 140 is slid and the shielding element 140 is held directly above the magnetic surface 1201 of the magnetic element 120 to shield the magnetic surface 1201 of the magnetic element 120.
It will be appreciated by persons skilled in the art that the above embodiments are only examples, wherein features of different embodiments may be combined with each other to obtain embodiments which are easily conceivable in accordance with the disclosure of the invention, but which are not explicitly indicated in the drawings.
It will be appreciated by persons skilled in the art that the embodiments of the invention described above and shown in the drawings are given by way of example only and are not limiting of the invention. The objects of the invention have been fully and effectively accomplished. The functional and structural principles of the present invention have been shown and described in the examples, and any variations or modifications of the embodiments of the present invention may be made without departing from the principles.

Claims (34)

1. The utility model provides a wireless lighting device that charges of formula is inhaled to magnetism, its characterized in that includes:
the magnetic attraction type lamp comprises a lamp body and at least one magnetic element, wherein the magnetic element is arranged on the lamp body; and
a magnetism is inhaled formula charging platform, wherein magnetism is inhaled formula charging platform and is inhaled the component including a main part of charging and an at least magnetism, wherein magnetism is inhaled the component and is set up in the main part of charging, the main part of charging has a loading end, magnetism inhale the formula lamps and lanterns can with magnetic element is adsorbed in magnetism is inhaled the mode of component and is kept in the main part of charging the loading end, just the main part of charging can do the lamps and lanterns body charges, the main part of charging the loading end allows to switch between a strong magnetic state and a weak magnetic state, in order to change magnetism is inhaled the formula charging platform right the size of the magnetic attraction of magnetism type lamps and lanterns are inhaled.
2. A magnetic attraction type wireless charging illumination device according to claim 1, wherein the lamp body further comprises a lamp body and a receiving coil, wherein the receiving coil element and the magnetic element are disposed on the lamp body, the charging body further comprises a bearing housing, a radiation coil and a power supply unit, wherein the radiation coil, the power supply unit and the magnetic attraction element are disposed on the bearing housing, the radiation coil is electrically connected to the power supply unit, the bearing surface is formed on the bearing housing, and when the magnetic element of the magnetic attraction type lamp is attracted to the magnetic attraction element, the receiving coil faces the radiation coil.
3. The magnetic attraction type wireless charging and illuminating device according to claim 2, wherein the magnetic attraction element has a magnetic attraction surface, and the relative position between the magnetic attraction surface of the magnetic attraction element and the bearing surface of the charging body is allowed to be adjusted.
4. The wireless lighting device that charges of formula of claim 3, wherein the formula of charging platform is inhaled to magnetism further includes a mounting member, the mounting member is rotatably installed in the bears the casing, the formula of inhaling is inhaled to magnetism and is set up movably in the main part that charges through being installed in the mounting member the mode.
5. The magnetically-attractable wireless charging illumination device as claimed in claim 4, wherein the magnetically-attractable charging platform further comprises a braking member, wherein the mounting member is brazeably coupled to the braking member.
6. The wireless lighting device that charges of formula of claim 3, wherein formula of charging platform is inhaled to magnetism further includes an assembly component, the assembly component is installed in bearing the casing telescopically, the magnetism is inhaled the component and is set up in the main part that charges movably through being installed in the mode of assembly component.
7. The wireless lighting device that charges of formula is inhaled to magnetism of claim 3, wherein formula charging platform is inhaled to magnetism further includes an assembly component, it has an assembly space and a storage tank to bear the casing, the opening of storage tank communicate in the assembly space, magnetism inhale the component be installed in the assembly component, the assembly component can the assembly space with move between the storage tank, and work as the component entering is inhaled to magnetism is inhaled behind the storage tank, magnetism inhale the component the magnetism inhale the face and be defined the cell wall of storage tank is sheltered from, work as the component entering is inhaled to magnetism behind the assembly space, magnetism inhale the component the magnetism inhale the face and be exposed.
8. The magnetically-attractable wireless charging illumination device as claimed in claim 3, further comprising a blocking member movably retained above the magnetically-attracting surface of the magnetically-attractable member.
9. The magnetic wireless charging and lighting device according to any one of claims 1 to 8, wherein the magnetic element and/or the magnetic element is implemented as a magnet.
10. The magnetically-attracted wireless charging and lighting device of claim 9, wherein a distance between the magnetically-attracted element and the transmitting coil is greater than or equal to 7.5 mm.
11. The magnetically-attractable wireless charging illumination device of claim 10, wherein a distance between the magnetically-attractable element and the transmit coil is equal to 7.8 mm.
12. The magnetically-attractable wireless charging illumination device according to claim 10, wherein a distance between the magnetic element and the receiving coil is greater than or equal to 7.5 mm.
13. The magnetically-attractable wireless charging illumination device according to claim 10, wherein a distance between the magnetic element and the receiving coil is equal to 7.8 mm.
14. The magnetically-attractable wireless charging illumination device as recited in claim 12, wherein a distance between the transmitter coil and the receiver coil is greater than or equal to 2 mm.
15. The magnetically-attractable wireless charging illumination device as recited in claim 14, wherein a distance between the transmitter coil and the receiver coil is equal to 2.5 mm.
16. The magnetically-attractable wireless charging illumination device as recited in claim 14, wherein a distance between the magnetic element and the receiving coil is consistent with a distance between the magnetically-attractable element and the transmitting coil.
17. The wireless lighting device that charges of formula of claim 16 is inhaled to magnetism, wherein the lamps and lanterns body further includes an isolation layer, the isolation layer of lamps and lanterns body covers in the surface of magnetic element.
18. The wireless lighting device that charges of formula is inhaled to magnetism of claim 17, wherein formula charging platform is inhaled to magnetism further includes at least one the isolation layer, formula charging platform is inhaled to magnetism the isolation layer cover in the surface of the component is inhaled to magnetism.
19. The magnetically-attractable wireless charging illumination device as claimed in claim 18, wherein the two magnetic elements are distributed on a same side of the receiving coil, and the two magnetically-attractable elements are distributed on a same side of the transmitting coil.
20. The magnetic wireless charging and illuminating device according to claim 19, wherein the lamp body has a contact surface, the contact surface has an identification area, the identification area corresponds to the receiving coil, the bearing surface of the charging body has a prompt area, the prompt area corresponds to the transmitting coil, the charging body can charge the lamp body in a manner that the prompt area of the bearing surface corresponds to the identification area of the contact surface of the lamp body.
21. The magnetically-attractable wireless charging illumination device as claimed in claim 20, wherein the carrying housing of the charging body has at least one mounting hole, the mounting hole extending through the carrying housing.
22. The magnetically-attractable wireless charging illumination device as recited in claim 21, wherein the magnetically-attractable charging platform further comprises at least one suction element, wherein the suction element is mounted to a back side of the carrying housing.
23. The wireless lighting device that charges of formula of magnetic-attraction of claim 22, wherein the charging platform of formula of magnetic-attraction further includes at least one prompting device, wherein the prompting device is communicably connected to the charging body.
24. The magnetically-attractable wireless charging illumination device according to claim 23, wherein the prompting device is implemented as a signal light and/or a sound emitter.
25. A working method of a magnetic wireless charging lighting device is characterized by comprising the following steps:
(a) allowing a bearing surface of a charging main body of a magnetic type charging platform to be switched between a strong magnetic state and a weak magnetic state;
(b) adsorbing at least one magnetic element of a magnetic attraction type lamp to at least one magnetic attraction element of a magnetic attraction type charging platform; and
(c) the charging main body charges the lamp body in a mode that a transmitting coil corresponds to a receiving coil of the lamp body.
26. The method of claim 25 wherein in step (a) the bearing surface is switched between the strong magnetic state and the weak magnetic state by changing the orientation of a magnetically attracting surface of the magnetically attracting element.
27. The method of claim 26, wherein in the method, a mounting member of the magnetically attractable charging platform is rotated to change an orientation of the magnetically attractive surface of the magnetically attractable member secured to the mounting member.
28. The method of claim 27, wherein in step (a), the magnetic attraction surface of the magnetic attraction element is switched between the strong magnetic state and the weak magnetic state by changing a vertical distance between the magnetic attraction surface and the bearing surface of the charging body.
29. The method of operation of claim 28, wherein in said method, further comprising the step of: pressing the fitting member.
30. The method of claim 25, wherein in the above method, the magnetically attracting surface of the magnetically attracting element is exposed to make the bearing surface of the charging body in the strong magnetic state.
31. The working method of claim 30, wherein in the above method, the magnetically attracting surface of the magnetically attracting element is shielded so that the bearing surface of the charging body is in the weak magnetic state.
32. A working method of a magnetic wireless charging lighting device is characterized by comprising the following steps:
(a) in the process that at least one magnetic attraction element of a magnetic attraction type charging platform and at least one magnetic attraction element of a magnetic attraction type lamp attract each other, automatically correcting the corresponding positions of a transmitting coil of a charging main body of the magnetic attraction type charging platform and a receiving coil of a lamp body of the magnetic attraction type lamp; and
(b) the charging main body charges the lamp body in a mode that the transmitting coil is over against the receiving coil of the lamp body.
33. The method of claim 32, wherein in the method, a magnetically attracting surface of the magnetically attracting member and a magnetic surface of the magnetic member having different magnetic poles attract each other to correct the corresponding position between the transmitting coil and the receiving coil.
34. The method of claim 33, wherein the method comprises switching a carrying surface of the charging body between a strong magnetic state and a weak magnetic state.
CN201910753649.3A 2019-08-15 2019-08-15 Magnetic attraction type wireless charging and illuminating device and working method thereof Pending CN112393143A (en)

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Application publication date: 20210223