WO2020239127A1 - 无线充电设备、无线充电座、无线充电座的制造方法、无线充电装置以及无线充电照明系统 - Google Patents

无线充电设备、无线充电座、无线充电座的制造方法、无线充电装置以及无线充电照明系统 Download PDF

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Publication number
WO2020239127A1
WO2020239127A1 PCT/CN2020/093759 CN2020093759W WO2020239127A1 WO 2020239127 A1 WO2020239127 A1 WO 2020239127A1 CN 2020093759 W CN2020093759 W CN 2020093759W WO 2020239127 A1 WO2020239127 A1 WO 2020239127A1
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WO
WIPO (PCT)
Prior art keywords
wireless charging
magnetic attraction
charging
magnetic
lamp
Prior art date
Application number
PCT/CN2020/093759
Other languages
English (en)
French (fr)
Inventor
鲍永
Original Assignee
余姚煜昌电器有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from CN201920817780.7U external-priority patent/CN210640698U/zh
Priority claimed from CN201910468175.8A external-priority patent/CN112018833B/zh
Priority claimed from CN201910468168.8A external-priority patent/CN112018832A/zh
Application filed by 余姚煜昌电器有限公司 filed Critical 余姚煜昌电器有限公司
Publication of WO2020239127A1 publication Critical patent/WO2020239127A1/zh

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Classifications

    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J7/00Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries

Definitions

  • the present invention relates to the field of wireless charging, and in particular to a wireless charging device, a wireless charging stand, a manufacturing method of a wireless charging stand, a wireless charging device, and a wireless charging lighting system.
  • Wireless charging technology is currently a relatively mature technology, and Apple has launched a wireless charging dock for wireless charging of mobile phones.
  • wireless charging technology can also be applied to other power-consuming devices. For example, in the field of lighting. At present, there have been some wireless charging cradles used to provide power to lamps, especially portable lamps.
  • the general working principle of the wireless charging stand is to provide a transmitting coil.
  • the transmitting coil of the wireless charging stand and a receiving coil of the lamp to be charged work together and then pass the electric
  • the electric energy stored in the wireless charging base is transmitted to the lamp to be charged by means of magnetic induction.
  • a common solution is to use magnetic elements to magnetically attract the device to be charged to the wireless charging base. For example, place two first magnetic elements around the transmitter coil of the wireless charging base. Two second magnetic attraction elements are placed around the receiving coil of the device to be charged, the distance between the two first magnetic attraction elements is fixed, and the distance between the two second magnetic attraction elements is fixed, And the distance between the first magnetic attraction elements is equal to the distance between the second magnetic attraction elements.
  • the wireless charging base and the standby are fixed at two points by the magnetic attraction between the first magnetic element and the second magnetic element. The relative position of the charging device.
  • the first The magnetic attraction element and the second magnetic attraction element need to maintain a certain distance from the transmitter coil and the receiving coil, respectively.
  • the first magnetic attraction element, the The distance between the second magnetic attraction element and the transmitting coil and the receiving coil respectively.
  • the wireless charging stand may only be adapted to one type of the device to be charged. When the size of the charging device changes, the device to be charged may not be able to fit the wireless charging stand.
  • Rechargeable lamps need to use a charger to charge or connect the power plug of the lamp to the power source to charge when the power is exhausted.
  • the charging method of the rechargeable lamp in the prior art mostly adopts a wired electric contact charging method. This electric contact charging method is cumbersome to operate, and there is a greater danger in the charging process.
  • Wireless charging technology helps to solve the above problems.
  • Wireless charging is the transfer of energy between the charger and the electric device using a magnetic field, such as electromagnetic induction wireless charging or magnetic resonance wireless charging, wherein the wireless charger and the electric device There is no wire connection between the devices, so both the charger and the power-using device can achieve no exposed conductive contacts.
  • the lamp needs to be accurately positioned at a specific position of the charging device. If the lamp and the charging device are misaligned, the charging efficiency will be low, or even the charging will not be possible.
  • a magnet is usually installed under the lamp, and the lamp is adsorbed above the charging device through magnetic adsorption.
  • the magnetic adsorption lamps in the prior art especially the magnetic adsorption work lights, will adsorb iron foreign matter, such as iron filings and iron sheets, which are difficult to remove during use. If a lamp with sundries is placed in the wireless charging device for charging, the distance between the lamp and the wireless charging device will increase, and the transmission efficiency of image power will even cause the lamp to fail to charge.
  • the wireless charging device in the prior art is charged, it is difficult to separate the lamp and the wireless charging device due to the large magnetic adsorption effect. When the lamp is picked up from the charging device, because the magnets are attracted together, the user needs to hold the charging device with the other hand while picking up the lamp with one hand, which brings inconvenience to the user. Summary of the invention
  • An advantage of the present invention is to provide a wireless charging device, a wireless charging base, and a method for manufacturing a wireless charging base, wherein the wireless charging base can charge lighting devices of various sizes.
  • Another advantage of the present invention is to provide a wireless charging device, a wireless charging stand, and a method of manufacturing a wireless charging stand, wherein the lighting devices of various sizes can be positioned on the wireless charging stand and charged by the wireless charging stand .
  • Another advantage of the present invention is to provide a wireless charging device, a wireless charging stand, and a method of manufacturing a wireless charging stand, wherein the wireless charging stand provides a positioning member, wherein the positioning member can be adapted to the size of the lighting device Change and change, so that the lighting devices of different sizes or different types can be positioned on the wireless charging stand for charging.
  • Another advantage of the present invention is to provide a wireless charging device, a wireless charging stand, and a method for manufacturing a wireless charging stand, wherein the positioning member can be adapted to a positioning matching member of the lighting device to make the wireless charging stand And the lighting device is positioned by the cooperation between the positioning member and the positioning matching member.
  • Another advantage of the present invention is to provide a wireless charging device, a wireless charging stand, and a method for manufacturing a wireless charging stand, wherein the positioning member of the wireless charging stand does not affect the gap between the wireless charging stand and the lighting device Charge normally.
  • Another advantage of the present invention is to provide a wireless charging device, a wireless charging stand, and a method of manufacturing a wireless charging stand, wherein by the method of manufacturing the wireless charging stand, it is possible to obtain the ability to adapt the lighting device to position the lighting The wireless charging stand of the device.
  • the present invention provides a wireless charging base for supplying power to a lighting device, wherein the lighting device is provided with at least one positioning fitting, wherein the wireless charging base includes a charging base body, A transmitting coil and a plurality of magnetic attraction sites, wherein the transmitting coil is housed in the charging base body, and the magnetic attraction sites are located on the charging base body and located around the transmitting coil.
  • the illuminating device is placed on the wireless charging stand, a receiving coil of the illuminating device is aligned with the transmitting coil of the wireless charging stand, and the positioning fitting can be in contact with the magnetic attraction site At least one of the mutual magnetic attraction.
  • the positioning member has a magnetic attraction surface
  • the positioning matching member has a magnetic attraction mating surface, wherein the magnetic attraction surface is larger than the magnetic attraction mating surface, and the magnetic attraction site Located on the magnetic surface.
  • the transmitting coil is located in a middle position of the charging base body, and one end of the positioning member extends from the periphery of the transmitting coil toward the periphery of the charging base body.
  • the wireless charging stand has at least one guide groove and includes at least one positioning member, wherein the magnetic attraction site is located on the positioning member, wherein the guide groove is located on the charging base body and Located around the transmitting coil, the positioning member is movably accommodated in the guide groove, and when the lighting device is placed on the charging base body, the positioning member can move along the guide groove to The positioning matching pieces of the lighting device are magnetically attracted to each other.
  • the positioning member is movably accommodated in the guide groove along the guide groove.
  • the positioning member is detachably installed at multiple positions of the charging base body.
  • the wireless charging stand further includes at least one guide channel, wherein the guide channel is disposed on the wireless charging stand, and the guide groove is formed in the guide channel.
  • the guide groove is a linear guide groove, wherein the guide groove is located around the transmitting coil.
  • the guide groove is a spiral guide groove formed by spiraling outwards around the transmitting coil.
  • the number of the guide grooves is not less than two, and the straight lines on which the two guide grooves are located cross each other.
  • the number of the guide grooves is three, the first guide groove, the second guide groove, and the third guide groove, wherein the straight lines of the first guide groove and the second guide groove are mutually Parallel or overlapping each other, the line where the third guide groove is located and the line where the first guide groove is located or the line where the second guide groove is located cross each other.
  • the guide groove is formed recessed inward from the surface of the charging base body.
  • the wireless charging stand further includes at least one guide channel, wherein the guide channel is disposed on the wireless charging stand, the guide groove is formed in the guide channel, and the guide groove The guide channel is exposed to the outside and at least part of the guide channel is made of an elastic material, and the positioning member is installed on the guide channel with an interference fit.
  • the present invention provides a wireless charging device, which includes:
  • a lighting device wherein the lighting device includes a lighting device main body, a receiving coil, and at least two positioning fitting parts, wherein the receiving coil is arranged on the lighting device main body, and the positioning fitting part is arranged on the lighting device.
  • the device main body is located on both sides of the receiving coil, and the wireless charging stand is used to charge the lighting device.
  • the present invention provides a method for manufacturing a wireless charging stand, which includes the following steps:
  • the method of manufacturing the wireless charging stand further includes the following steps:
  • At least one guiding groove is formed on the charging base body, wherein the step of forming at least one guiding groove on the charging base body is before the adjusting step.
  • the method of manufacturing the wireless charging stand further includes the following steps:
  • At least one guiding channel is installed on the charging base body, wherein the guiding groove is formed in the guiding channel.
  • the guide groove is spirally located on the charging base body.
  • the relative positions of the multiple positioning members and the transmitting coil are adjusted respectively, and after passing a detection device In the step of detecting the power transmission efficiency of the transmitting coil to the lighting device, the power transmission efficiency test is performed together.
  • the relative positions of the positioning elements and the transmitting coil are adjusted one by one, and the position is detected by a detection device. After determining the adjusted position of the positioning member in the step of transmitting power from the transmitting coil to the lighting device, the next adjustment of the relative position of the positioning member and the transmitting coil is performed.
  • One of the main advantages of the present invention is to provide a wireless charging device and a wireless charging lighting system, wherein the wireless charging device makes at least one lamp of the lighting system attached to the wireless charging device in a magnetic manner, which is conducive to fixing The lamps.
  • Another advantage of the present invention is to provide a wireless charging device and a wireless charging lighting system, wherein the wireless charging device absorbs the lamp, so that the lamp is attached to the wireless charging device in an alignment manner to facilitate The wireless charging device charges the lamp.
  • Another advantage of the present invention is to provide a wireless charging device and a wireless charging lighting system, wherein when the lighting system is being charged, the lamp is attached to the wireless charging device, and the wireless charging device fixes the lamp , So that the lighting system can be charged on vertical or inclined surfaces.
  • the wireless charging device of the lighting system can be set on a vertical surface or an inclined surface, such as a wall, wherein the wireless charging device adsorbs the lamp during charging to keep the lamp charged. status.
  • Another advantage of the present invention is to provide a wireless charging device and a wireless charging lighting system, wherein the wireless charging device includes at least one magnetic attraction device, wherein the magnetic attraction device includes at least two magnetic attraction units, and the magnetic attraction unit They are arranged at intervals, and the magnetic unit absorbs the lamp and adjusts the position of the lamp, so that the lamp is attached to the wireless charging device in position to avoid charging due to misplaced placement The speed is slow or cannot be charged.
  • Another advantage of the present invention is to provide a wireless charging device and a wireless charging lighting system, wherein the base of the lamp is provided with two magnetic attraction metal units corresponding to the magnetic attraction unit, such as iron blocks, ferrous metal alloys, etc.
  • the metal that can be attracted by the magnetic attraction unit wherein the magnetic attraction metal unit is aligned and attracted to the magnetic attraction unit, and the magnetic attraction unit and the magnetic attraction metal unit automatically Adjusting the position where the lamp is adsorbed to the wireless charging device, thereby improving the positioning accuracy of the lamp, and improving the charging efficiency of the lamp.
  • Another advantage of the present invention is to provide a wireless charging device and a wireless charging lighting system, wherein the magnetic attraction device is movably disposed on a charging body of the wireless charging device, and the magnetic attraction device is operated to make The lamp is adsorbed on the wireless charging device and separated from the wireless charging device.
  • Another advantage of the present invention is to provide a wireless charging device and a wireless charging lighting system, wherein the magnetic attraction device is rotatably disposed on the charging body, and the magnetic attraction unit is disposed on the magnetic attraction device.
  • One side so that one side of the magnetic attraction unit is magnetic, and the other side is non-magnetic.
  • the magnetic attraction device When the magnetic attraction device is rotated so that the magnetic attraction unit faces the lamp, the magnetic attraction device attracts the The lamp, when the magnetic unit of the magnetic attraction device is adjusted to face the lamp, so as to facilitate the separation of the lamp and the wireless charging device.
  • Another advantage of the present invention is to provide a wireless charging device and a wireless charging lighting system, wherein the wireless charging device can automatically adjust the position of the lamp and the wireless charging device when charging the lamp, which is convenient to use ⁇ uses.
  • Another advantage of the present invention is to provide a wireless charging device and a wireless charging lighting system, wherein the wireless charging device realizes the alignment and alignment of the lamp, the charging body, and the lamp by rotating or rotating the magnetic attraction device. Separation, simple operation and strong reliability.
  • Another advantage of the present invention is to provide a wireless charging device and a wireless charging lighting system, wherein the magnetic attraction device is movably arranged on the charging body, and the lamp can be connected to the lighting system by pressing the magnetic attraction device.
  • the magnetic attraction device is separated, which is convenient for users to operate and use.
  • Another advantage of the present invention is to provide a wireless charging device and a wireless charging lighting system, wherein the wireless charging device further includes at least one prompting device.
  • the prompting device Prompt the operating state of the wireless charging device.
  • a wireless charging device of the present invention which can achieve the foregoing objectives and other objectives and advantages, is suitable for wirelessly charging a lamp, including:
  • a charging body and
  • At least one magnetic attraction device wherein the magnetic attraction device is movably disposed on the charging body, and the lamp is adsorbed by the magnetic attraction device and attached to the charging body.
  • the magnetic attraction device is rotatably disposed on the charging body.
  • the magnetic attraction device is movably disposed on the charging body.
  • the magnetic attraction device includes a carrying device, at least one magnetic attraction unit, and a rotating shaft.
  • the magnetic attraction unit is disposed on the carrying device, wherein the carrying device is adjustable by the rotating shaft. It is rotatably connected to the charging main body, and the magnetic attraction unit is driven to rotate by the carrying device.
  • the magnetic attraction device further has a magnetic attraction surface and a non-magnetic attraction surface, wherein the magnetic attraction unit is embedded in the carrier device, and the magnetic attraction unit is in the carrier device.
  • the embedded end forms the magnetic surface
  • the other end of the carrying device forms the non-magnetic surface
  • the magnetic surface and the non-magnetic surface of the magnetic device are adjusted by rotating the magnetic device. The orientation of the face.
  • the magnetic attraction device further has a magnetic attraction surface and a non-magnetic attraction surface adjacent to each other, so as to adjust the magnetic attraction device when the magnetic attraction device is moved relative to the charging body.
  • the magnetic attraction device further includes at least one rotary lock, wherein the rotary lock can lock the rotation angle of the carrying device.
  • the magnetic attraction device includes a carrying device, at least one magnetic attraction unit, and a rotating shaft, wherein the magnetic attraction unit is disposed on the carrying device, and the rotating shaft is connected to the A carrying device is located at the upper end of the charging body, wherein the carrying device drives the magnetic attraction unit to swing up and down based on the rotating shaft.
  • the magnetic attraction unit is embedded in the carrying device, wherein by adjusting the swing angle of the carrying device, the attraction force of the magnetic attraction device to the lamp is adjusted.
  • the magnetic attraction unit further includes at least one supporting element, wherein the supporting element is disposed below the carrying device, and the supporting element supports the carrying device upwardly.
  • the number of the magnetic attraction units of the magnetic attraction device is two, and the magnetic attraction units are arranged at intervals.
  • the charging body includes a housing, at least one transmitting module, a power interface, and a circuit board, wherein the circuit board is electrically connected to the power interface to the transmitting module, wherein The transmitting module is attached to the inside of the housing, and the distance between the transmitting module and the magnetic attraction device is greater than or equal to 7.5 mm.
  • the housing includes an upper housing, a lower housing, and a mounting groove formed by the upper housing and the lower housing, wherein the housing attracts the magnetic
  • the device is movably held in the mounting slot.
  • the housing further has at least one mounting hole through which the wireless charging device is fixedly mounted on the attached surface.
  • the charging body further includes a prompting device, wherein the prompting device is communicatively connected to the charging main body, and the prompting device prompts the wireless charging device based on the work information of the charging main body
  • the prompting device includes at least one warning light and a buzzer, wherein the warning light and the buzzer are arranged on the upper shell of the shell.
  • the present invention further provides a wireless charging lighting system, including:
  • the wireless charging device as described above;
  • At least one lamp wherein the lamp includes a lamp main body and at least one magnetic metal unit, wherein the magnetic metal unit is disposed on the lamp main body, and the magnetic metal unit can be used by the wireless charging device
  • the magnetic attraction device adsorbs and attaches the lamp main body to the charging main body.
  • the number of the magnetic metal unit of the lamp is two, wherein the magnetic metal units are arranged on the lamp body of the lamp at intervals, and the magnetic metal unit
  • the separation distance of the units is the same as the separation distance of the magnetic attraction unit of the wireless charging device.
  • the lamp body of the lamp further includes a lamp housing, at least one light source, at least one receiving module, and at least one energy storage device, wherein the energy storage device is electrically connected to the light source And the receiving module, the receiving module stores electric energy in the energy storage device, wherein the light source is arranged in the lamp housing, and the receiving module is attached to the inner side of the lamp housing, When the lamp is charged by the wireless charging device, the interval between the receiving module and the transmitting module is greater than or equal to 2 mm.
  • the position of the receiving module of the lamp relative to the magnetic metal unit is equivalent to the position of the transmitting module relative to the magnetic unit, wherein the magnetic unit is The metal unit is magnetically attracted so that the receiving module is located on the transmitting module.
  • FIG. 1A is a schematic diagram of a wireless charging dock according to a preferred embodiment of the present invention.
  • FIG. 1B is a schematic diagram of the application of the wireless charging stand according to the above preferred embodiment of the present invention.
  • FIG. 2A is a schematic diagram of a wireless charging dock according to another preferred embodiment of the present invention.
  • FIG. 2B is a schematic diagram of a wireless charging stand according to another preferred embodiment of the present invention.
  • Fig. 3 is a schematic diagram of a wireless charging stand according to another preferred embodiment of the present invention.
  • FIG. 4A is a schematic diagram of a wireless charging dock according to another preferred embodiment of the present invention.
  • 4B is a schematic diagram of the application of the wireless charging stand according to the above-mentioned preferred embodiment of the present invention.
  • 5A is a schematic diagram of a wireless charging dock according to another preferred embodiment of the present invention.
  • 5B is a schematic diagram of the application of the wireless charging stand according to the above-mentioned preferred embodiment of the present invention.
  • Fig. 6 is a schematic diagram of a wireless charging stand according to another preferred embodiment of the present invention.
  • FIG. 7A is a schematic diagram of manufacturing a wireless charging stand according to a preferred embodiment of the present invention.
  • FIG. 7B is a schematic diagram of manufacturing a wireless charging stand according to a preferred embodiment of the present invention.
  • FIG. 8A is an overall schematic diagram from a perspective of a wireless charging device according to the first preferred embodiment of the present invention.
  • FIG. 8B is an overall schematic diagram of a wireless charging device according to the first preferred embodiment of the present invention from another perspective.
  • Fig. 9 is an exploded schematic diagram of the wireless charging device according to the above preferred embodiment of the present invention.
  • FIG. 10 is a schematic diagram of a magnetic attraction device of the wireless charging device according to the above preferred embodiment of the present invention.
  • FIG. 11 is a schematic cross-sectional view of a charging body of the wireless charging device according to the above-mentioned preferred embodiment of the present invention.
  • FIG. 12A is a schematic diagram of another alternative implementation of the wireless charging device according to the above-mentioned preferred embodiment of the present invention.
  • 12B is a diagram of the magnetic attraction state of the wireless charging device according to the above-mentioned preferred embodiment of the present invention.
  • 12C is a schematic diagram of the non-magnetic state of the wireless charging device according to the above preferred embodiment of the present invention.
  • FIG. 13 is a schematic diagram of another alternative implementation of the wireless charging device according to the above-mentioned preferred embodiment of the present invention.
  • FIG. 14 is a schematic diagram of a magnetic attraction device according to the above-mentioned optional implementation of the wireless charging device according to the above-mentioned preferred embodiment of the present invention.
  • 15 is an overall schematic diagram of a lighting system with the wireless charging device according to the above-mentioned preferred embodiment of the present invention.
  • Fig. 16A is an overall schematic diagram of a lamp of the lighting system according to the above preferred embodiment of the present invention.
  • Fig. 16B is a schematic diagram of the lamp of the lighting system according to the above preferred embodiment of the present invention from another perspective.
  • Fig. 16C is an exploded schematic diagram of the lamp of the lighting system according to the above preferred embodiment of the present invention.
  • FIG. 17A is a schematic diagram of a charging scene of the lighting system according to the above-mentioned preferred embodiment of the present invention, which shows the charging of the lamp when the wireless charging device is installed on a wall.
  • Fig. 17B is a schematic diagram of a charging scene of the lighting system according to the above preferred embodiment of the present invention, which shows the positioning connection of the lamp and the wireless charging device.
  • Fig. 17C is a schematic diagram of another charging scene of the lighting system according to the above preferred embodiment of the present invention, which shows the separation process of the lamp from the wireless charging device.
  • the wireless charging device 1000 includes a wireless charging stand 1 and a lighting device 2, wherein the wireless charging stand 1 can charge the lighting device 2 in a wireless charging manner.
  • the wireless charging stand 1 can be The lighting device 2 is charged.
  • the wireless charging stand 1 can not only provide charging services for one type of the lighting device 2, but also provide charging services for the lighting devices 2 of multiple sizes or even multiple types.
  • the wireless charging stand 1 can not only charge the lighting device 2, but also play a role in positioning the lighting device 2 to maintain The relative positions of the wireless charging stand 1 and the lighting device 2 ensure the power transmission efficiency between the wireless charging stand 1 and the lighting device 2.
  • the wireless charging stand 1 can ensure the power transmission efficiency between the two through positioning when charging.
  • the wireless charging stand 1 may provide a plurality of magnetic attraction points to adapt to the lighting devices 2 of different sizes, so that the lighting device 2 and the wireless charging stand 1 can be positioned relatively.
  • the wireless charging base 1 includes a charging base body 10, a transmitting coil 20, at least one guiding channel 30, and at least one positioning member 40, wherein the charging base body 10 is used to store electrical energy, and the transmitting coil 20 is connected to the charging base body 10 in a power-supply manner, so as to transfer the electric energy stored in the charging base body 10 to the lighting device 2.
  • the guide channel 30 is located at the charging base body 10 and is located around the transmitting coil 20.
  • the positioning member 40 is located in the guide channel 30.
  • the positioning member 40 and the lighting device 2 can be magnetically attracted to each other to position the lighting device 2 on the charging base body 10.
  • the magnetic attraction site is located at the positioning member 40.
  • the charging base body 10 may include a housing 11 and a power storage part 12, wherein the housing 11 has a storage cavity 110, and the power storage part 12 is accommodated in the storage cavity 110.
  • the transmitting coil 20 is accommodated in the receiving cavity 110. It is understandable that the charging base body 10 can use the electric energy in the power storage unit 12 to charge the lighting device 2, and the charging base body 10 can also use an external power source to charge the lighting device 2.
  • the lighting device 2 includes a lighting device main body 21, a receiving coil 22, and at least one positioning fitting 23, wherein the lighting device main body 21 may include a light emitting part 211 and a power supply part 212, wherein the power supply part 212 is Rechargeably connected to the light-emitting part 211, the light-emitting part 211 is used to emit light, and the receiving coil 22 is energized and connected to the power supply part 212 so as to transfer the electric energy from the wireless charging stand 1 to all The power supply unit 212 of the main body of the lighting device 2.
  • the positioning fitting 23 of the illuminating device 2 is used to cooperate with the positioning component 40 of the wireless charging stand 1 so as to fix the illuminating device 2 and the wireless charging stand 1.
  • the positioning fitting 23 is disposed on the main body 21 of the lighting device. At least part of the positioning fitting 23 may be exposed to the outside, or the entire positioning fitting 23 may be embedded in the main body 21 of the lighting device.
  • the positioning member 40 is arranged on the wireless charging base body 11. At least part of the positioning member 40 may be exposed to the outside, or the entire positioning member 40 may be embedded in the wireless charging base body 11.
  • the transmitting coil 20 is arranged on the wireless charging base body 11. At least part of the transmitting coil 20 may be exposed outside, or the entire transmitting coil 20 may be embedded in the wireless charging base body 11.
  • the receiving coil 22 is provided in the lighting device main body 21. At least part of the receiving coil 22 may be exposed to the outside, or the entire receiving coil 22 may be embedded in the main body 21 of the lighting device.
  • the transmitting coil 20 and the receiving coil 22 are respectively embedded in the wireless charging base body 11 and the lighting device main body 21 to reduce external moisture or dust.
  • the transmission between the receiving coils 22 causes interference.
  • the positioning member 40 is located around the transmitting coil 20, and the positioning matching member 23 is located around the receiving coil 22.
  • the positioning member 40 and the positioning matching member 23 are attracted to each other through magnetic attraction to fix the relative position of the wireless charging stand 1 and the lighting device 2.
  • the positioning member 40 and the transmitting coil 20 maintain a certain necessary separation distance
  • the positioning mating member 23 and the receiving coil 22 maintain a certain necessary separation distance to avoid the positioning member 40 and the receiving coil 22.
  • the magnetic attraction between the positioning fittings 23 or the magnetic field around the positioning fittings 40 or the magnetic field of the positioning fittings 23 cause the transmission efficiency between the transmitting coil 20 and the receiving coil 22 influences.
  • the positioning member 40 and the positioning matching member 23 can be made of magnetic material, or the positioning member 40 is made of magnetic material, and the positioning matching member 23 can be made of magnetic material.
  • the material is made of a metal material adsorbed by the material, such as iron, or the positioning fitting 23 is made of a magnetic material, and the positioning element 40 is made of a metal material that can be adsorbed by a magnetic material, such as iron.
  • the distance between the receiving coil 22 and the positioning fitting 23 of the lighting device 2 is fixed.
  • the position of the positioning member 40 of the wireless charging stand 1 can be changed according to the distance between the positioning matching member 23 and the receiving coil 22.
  • the distance between the receiving coil 22 and the positioning fitting 23 may also be different.
  • the distance between the receiving coil 22 and the positioning fitting 23 may also be different. In these cases, the wireless charging stand 1 can still accurately position the lighting device 2 by moving the positioning member 40 while charging the lighting device 2.
  • the number of the positioning member 40 and the number of the positioning matching member 23 is two respectively for illustration.
  • the number of the guide passages 30 is also two, and the guide passages 30 can be formed in the wireless charging stand 1, for example, through the opening and slotting.
  • the guide channel 30 may also be installed in the wireless charging stand 1.
  • the guide channel 30 has a guide groove 300, wherein the positioning member 40 is accommodated in the guide groove 300, and the position of the positioning member 40 in the guide groove 300 can be determined according to the positioning fitting 23 and the position of the positioning member 40.
  • the distance of the receiving coil 22 is adaptively changed, so that when the receiving coil 22 is aligned with the transmitting coil 20, the positioning matching member 23 and the positioning member 40 are attracted to each other to position the wireless charging stand 1 and The lighting device 2.
  • the wireless charging stand 1 can provide a plurality of magnetic attraction sites.
  • the positioning member 40 is movably installed on the guide channel 30 along the guide groove 300.
  • the two positioning members 40 are respectively located on both sides of the transmitting coil 20, and the two guiding channels 30 are located on both sides of the transmitting coil 20 respectively.
  • At least one positioning member 40 is installed in a guide channel 30.
  • the guide channel 30 is a straight-line guide channel 30. It can be understood that “straight-line” means that the extension direction of the guide channel 30 is substantially in a straight direction. In other embodiments of the present invention, the guide groove 300 of the guide channel 30 may also be curved.
  • the two guide channels 30 are referred to as a first guide channel 30A and a second guide channel 30B for distinguishing purposes, wherein the first guide channel 30A and the second guide channel 30B are located in the transmitter coil 20 around.
  • the first guide passage 30A and the second guide passage 30B are respectively located on both sides of the transmitting coil 20, and the first guide passage 30A and the second guide passage 30B are located on the same axis, and the transmitting The coil 20 is located in the middle of the first guide passage 30A and the second guide passage 30B.
  • the guide passage 30 has a first end 31 and a second end 32, wherein the first end 31 of the guide passage 30 is close to the transmitting coil 20 relative to the second end 32 . It is worth noting that the first end 31 can maintain a certain distance from the transmitting coil 20 to prevent the positioning member 40 from moving to the first end 31 of the guide channel 30. The working efficiency of the transmitting coil 20 is affected.
  • the number of the positioning fittings 23 of the lighting device 2 is two, and they are located on both sides of the receiving coil 22, and the two positioning fittings 23 and the receiving The coils 22 are located on the same straight line.
  • the distance between the positioning fitting 23 and the receiving coil 22 may be 1 cm.
  • the positioning member 40 located in the guide channel 30 moves to the shortest distance from the positioning member 23 under the interaction of the positioning member 40 and the positioning matching member 23 to maximize the suction force between the two.
  • the original distance between the positioning member 40 and the transmitting coil 20 was 2 cm, and the positioning member 40 was moved along the guide groove 300 to the transmitting coil under the action of the positioning matching member 23.
  • the distance 20 is 1 cm to be close to the positioning fitting 23.
  • the positioning member 40 and the positioning matching member 23 located on both sides of the transmitting coil 20 and the receiving coil 22 can reduce the relative movement between the wireless charging stand 1 and the lighting device 2, especially The movement is perpendicular to the linear direction where the guide channel 30 is located.
  • the movement of the positioning member 40 can be restricted by arranging an engaging member in the guide groove 300 of the guide channel 30, thereby restricting the wireless The relative movement between the charging stand 1 and the lighting device 2.
  • the first end 31 of the first guiding channel 30A is close to the transmitting coil 20
  • the first end 31 of the second guiding channel 30B is close to the transmitting coil 20.
  • an engaging member may be provided on the side of the positioning member 40 close to the second end 32 of the first guide channel 30A to The positioning member 40 is restricted from moving toward the second end 32 of the first guide channel 30A.
  • an engaging member may be provided on the side of the positioning member 40 close to the second end 32 of the second guide channel 30B to restrict The positioning member 40 moves toward the second end 32 of the second guide channel 30B, thereby restricting the movement of the lighting device 2 and the wireless charging stand 1 along the guide groove 300.
  • the engaging member may be implemented as a screw, the screw extends into the guide groove, and the screw can be rotated to change the depth of the protrusion into the guide groove, so that the screw can be inserted in the guide groove.
  • the groove moves in order to limit the positioning member 40 as the position of the positioning member 40 changes.
  • first end 31 of the first guide channel 30A and the transmitting coil 20 are kept at a certain distance to prevent the positioning member 40 from moving to the first guide channel 30A.
  • the one end 31 thus affects the working efficiency of the transmitting coil 20.
  • the second end 32 of the second guide channel 30B and the transmitting coil 20 are kept at a certain distance to prevent the positioning member 40 from moving to the second end of the second guide channel 30B
  • the portion 32 thus affects the working efficiency of the transmitting coil 20.
  • the straight line where the first guide channel 30A is located and the straight line where the second guide channel 30B is located are parallel to each other, as shown in FIG. 2A. In other embodiments of the present invention, the straight lines of the first guide channel 30A and the second guide channel 30B intersect each other, as shown in FIG. 2B.
  • the position, length and width of the first guide channel 30A and the second guide channel 30B can be set according to requirements.
  • the positioning member 40 of the wireless charging stand 1 may be made of electromagnetic material. When the positioning member 40 is energized, the positioning member 40 may be in contact with the lighting device 2 The positioning and matching parts 23 are magnetically attracted to each other. When the positioning part 40 is not energized, the positioning part 40 and the positioning matching part 23 of the lighting device 2 cannot be magnetically attracted to each other.
  • the positioning member 40 can be energized for use, and when the wireless charging stand 1 does not need to be used, the positioning member 40 There is no magnetism, which is beneficial to reduce the adsorption of iron filings and other magazines at the position of the wireless charging stand 1 in the working environment.
  • FIG. 3 it is a modified embodiment of the wireless charging device 1000 according to the above-mentioned preferred embodiment of the present invention.
  • the number of the guide channels 30 of the wireless charging stand 1 is four
  • the number of the positioning members 40 is also four
  • the number of the positioning matching members 23 of the lighting device 2 is also four. four.
  • the four guide channels 30 are named as a first guide channel 30A, a second guide channel 30B, a third guide channel 30C, and a fourth guide channel 30D.
  • each of the guiding channels 30 and the transmitting coil 20 are kept at a certain distance to avoid the positioning member 40 accommodated in the guiding channel 30 from affecting the working efficiency of the transmitting coil 20.
  • the first guide channel 30A, the second guide channel 30B, the third guide channel 30C, and the fourth guide channel 30D surround the transmitting coil 20, and are close to one of the transmitting coil 20. The location extends outward.
  • the first guide channel 30A and the third guide channel 30C are located in a first straight line
  • the second guide channel 30B and the fourth guide channel 30D are located in a second straight line
  • the first The straight line and the second straight line are perpendicular to each other
  • the transmitting coil 20 is located in the middle of the first guide channel 30A and the third guide channel 30C, and is also located in the second guide channel 30B and the fourth guide channel 30B.
  • the middle position of the guide channel 30D is
  • Each guide channel 30 contains one positioning member 40.
  • the number of the positioning fittings 23 of the lighting device 2 is four, and the angle between the four positioning fittings 23 and the receiving coil 22 is 90 degrees.
  • the distance between the receiving coil 22 and the positioning fitting 23 of the lighting device 2 is 5 cm.
  • FIG. 4A and FIG. 4B it is a modified embodiment of the wireless charging device 1000 according to the above-mentioned preferred embodiment of the present invention.
  • the guide groove 300 of the guide channel 30 of the wireless charging stand 1 has a spiral structure.
  • the transmitting coil 20 is located in the middle position of the guide groove 300, and the guide groove 300 is equivalent to continuously spirally rotating outwards around the transmitting coil 20.
  • the guide groove 300 may include a first part guide groove 300, a second part guide groove 300, a third part guide groove 300 to an nth part guide groove 300.
  • the distance from each part of the guide groove 300 to the transmitting coil 20 is different.
  • the first part of the guide groove 300 is closer to the transmitter coil 20 than other parts, and the second part of the guide groove 300 is closer to the transmitter than the part of the guide groove 300 except the first part of the guide groove 300.
  • the coil 20 And so on.
  • the positioning member 40 can not only move away from or close to the transmitting coil 20, but can also move around the transmitting coil 20 to adapt to different types of the lighting device 2.
  • the two positioning members 40 are located in the first part guide groove 300 and are located on both sides of the transmitting coil 20 respectively.
  • the distance from the first part of the guide groove 300 to the transmitting coil 20 is approximately 1 cm
  • the distance from the second part of the guide groove 300 to the transmitting coil 20 is approximately 2 cm
  • the third part of the guide groove 300 to the The approximate distance of the transmitting coil 20 is 3 cm.
  • two positioning fittings 23 are symmetrically arranged on both sides of the receiving coil 22, and the distance between one positioning fitting 23 and the receiving coil 22 is 3 cm.
  • the transmitting coil 20 is aligned with the receiving coil 22.
  • the positioning member 40 of the wireless charging stand 1 moves along the guide groove 300, moves from the first part guide groove 300 to the third part guide groove 300, and is aligned with the positioning partner 23, so that the transmitting coil 20 of the wireless charging stand 1 can always be aligned with the receiving coil 22 of the lighting device 2.
  • the positioning member 40 may automatically move toward the positioning member 23 under the suction force of the positioning member 23, or the user may assist the positioning member 40 to move to be aligned with the positioning member. Piece 23.
  • the positioning member 40 and the positioning fitting 23 do not have to be completely aligned, and the positioning member 40 and the positioning fitting 23 can generate suction within a certain distance.
  • FIG. 5A and FIG. 5B it is a modified embodiment of the wireless charging device 1000 according to the above-mentioned preferred embodiment of the present invention.
  • the positioning member 40 is installed in the guide channel 30 and the positioning member 40 can be selectively installed in multiple positions of the guide channel 30.
  • the user can select the position of the positioning member 40 in the guide channel 30 according to requirements, which is beneficial to fix the lighting device 2 and the wireless charging stand 1 of different sizes.
  • the type of the lighting device 2 can be varied, such as a head lamp, lantern, portable lamp, outdoor lamp and other types.
  • a surface of the charging base body 10 of the wireless charging stand 1 is preferably a flat surface
  • a surface of the lighting device main body 21 of the lighting device 2 is preferably a flat surface to facilitate the wireless charging.
  • the charging stand 1 and the lighting device 2 are attached to each other.
  • the guide channel 30 is made of elastic material, the guide groove 300 is exposed, and the user can directly install the positioning member 40 on the guide channel 30.
  • the positioning member 40 is installed on the guide channel 30 with an interference fit.
  • the guide channel 30 has a certain deformability so that the positioning member 40 can be relatively fixedly installed on the guide channel 30.
  • the user can also remove the positioning member 40 from a certain position of the guide channel 30 under the condition of applying a large force, and then install the positioning member 40 at the target position of the guide channel 30 to align The positioning fitting 23 of the lighting device 2.
  • the material of the guide channel 30 may be but not limited to rubber or resin.
  • the wireless charging base 1 includes the charging base body 10, the transmitting coil 20, the guiding channel 30 and the positioning member 40.
  • the positioning member 40 is filled in the guide groove 300 of the guide channel 30, and the positioning member 40 is fixedly installed in the guide channel 30.
  • the positioning member 40 has a certain length so that the wireless charging stand 1 can provide positioning for the lighting devices 2 of different specifications.
  • the positioning member 40 has a magnetic surface
  • the positioning matching member 23 has a magnetic matching surface.
  • the magnetically attracted mating surface of 23 and the magnetically attracted surface of the positioning member 40 face each other.
  • the magnetic attraction surface of the positioning member 40 is larger than the magnetic attraction surface of the positioning fitting 23, so the positioning member 40 can provide the positioning fitting 23 with a plurality of magnetic attraction sites.
  • the positioning fitting 23 and the positioning member 40 of the lighting device 2 can be magnetically attracted to each other.
  • the distance between the two positioning fittings 23 of the lighting device 2 is greater than the distance between the previous lighting device 2 due to the positioning
  • the piece 40 has a certain length, so the lighting device 2 can still be magnetically attracted to the wireless charging stand 1.
  • the present invention provides a manufacturing method of the wireless charging stand 1, wherein the manufacturing method includes the following steps:
  • the transmission efficiency of the transmitting coil 20 to the lighting device 2 is detected by a testing device to determine the necessary separation distance between the positioning member 40 and the transmitting coil 20;
  • a charging base body 10 wherein the transmitting coil 20 can be preset in the charging base body 10 in advance.
  • the transmitting coil 20 is located inside the charging base body 10 so that the transmitting coil 20 can be protected by the charging base body 10.
  • the transmitting coil 20 may also be fixed to the charging base body 10 after determining the relative position of the positioning member 40 and the transmitting coil 20.
  • the detection device may be used to detect the transmission efficiency between the transmitting coil 20 and the lighting device 2.
  • the detection device can be a special device, such as a magnetic flux detection device, or the need for the positioning member 40 and the transmitting coil 20 can be determined by the time required to transport the same amount of electricity for the same lighting device 2 Separation distance.
  • the first positioning member 40A can be placed in the first positioning member 40A.
  • the charging base body 10 and then detect the transmission efficiency of the transmitting coil 20 to determine the necessary separation distance between the first positioning member 40A and the transmitting coil 20 or the first positioning member 40A relative to the transmitting coil 20, and then place the second positioning member 40B on the charging base body 10, and then detect the transmission efficiency of the transmitting coil 20 to determine the second positioning member 40B and the transmitting coil 20
  • the necessary separation distance or the movable range of the second positioning member 40B relative to the transmitting coil 20 are necessary separation distance or the movable range of the second positioning member 40B relative to the transmitting coil 20.
  • the necessary separation distance between each positioning member 40 and the transmitting coil 20 or the positioning member 40 relative to the transmitting coil is determined one by one by detecting the positioning members 40 one by one. 20 movable range.
  • the first positioning member 40A, the second positioning member 40B, and the third positioning member 40C may be placed on the charging base body 10 at the same time. Then adjust the positions of the first positioning member 40A, the second positioning member 40B, and the third positioning member 40C relative to the transmitting coil 20 separately or at the same time to determine the first positioning member 40A, The necessary separation distance between the second positioning member 40B and the third positioning member 40C and the transmitting coil 20 or the movable range relative to the transmitting coil 20.
  • the corresponding guide channel 30 may be formed in the charging base body 10, wherein the positioning member 40 is accommodated The guide groove 300 in the guide channel 30.
  • the position and shape of the guide channel 30 can be set according to the shape of the positioning member 40, the necessary separation distance between the positioning member 40 and the transmitting coil 20, and the needs of the user.
  • the guide channel 30 may be installed on the charging base body 10, and the guide channel 30 may also be formed in the charging base body 10 by slotting.
  • the size of the guide groove 300 of the guide channel 30 may be set based on the size of the positioning member 40 to prevent the positioning member 40 from easily escaping from the guide groove 300.
  • the distance between the end of the guide channel 30 close to the transmitting coil 20 and the transmitting coil 20 may not be less than the necessary separation distance between the positioning member 40 and the transmitting coil 20 to avoid the positioning.
  • the piece 40 is too close to the transmitting coil 20.
  • the distance from the end of the guide channel 30 close to the transmitting coil 20 to the transmitting coil 20 may also be less than the necessary separation distance between the positioning member 40 and the transmitting coil 20, and then the engaging member 33 is arranged at the position.
  • the guide groove 300 is used to restrict the positioning member 40 from moving toward the transmitting coil 20.
  • the guide channel 30 may be formed in the charging base body 10 after determining the necessary separation distance between the positioning member 40 and the transmitting coil 20. In other embodiments of the present invention, the guide channel 30 may be formed in the charging base body 10 before the necessary separation distance between the positioning member 40 and the transmitting coil 20 is determined.
  • the positioning member 40 may be installed on the guide channel 30 and then along the guide channel 30 Move to determine the necessary separation distance between the positioning member 40 and the transmitting coil 20. If the positioning member 40 has a normal influence on the transmission efficiency of the transmitting coil 20 when the positioning member 40 is located at the end of the guide channel 30 close to the transmitting coil 20, then there is no need for the positioning The relative position of the piece 40 and the transmitting coil 20 is adjusted.
  • the movable range of the guide channel 30 is defined by the member 40.
  • the engaging member 33 is provided at the end of the guide channel 30 close to the transmitting coil 20, so that the positioning member 40 is spaced at a necessary interval. When the distance is out of range, it cannot continue to approach the transmitting coil 20.
  • the positioning member 40 and the transmitting coil 20 can also be clamped by a clamping device, and then the relative position of the positioning member 40 and the transmitting coil 20 can be adjusted to determine the transmitting coil.
  • the necessary distance between 20 and the positioning member 40, and then respectively install the transmitting coil 20 and the positioning member 40 on the charging base body 10, or it may be around the transmitting coil 20 and the positioning member 40 A housing 11 of the charging base body 10 is formed, and then the power storage unit 12 of the charging base body 10 is mounted on the housing 11.
  • the housing 11 of the charging base body 10 may be integrally formed on the transmitting coil 20.
  • the wireless charging lighting system includes a wireless charging device 810 and a lamp 820, wherein the lamp 820 can be attached to the wireless charging device 810, and when the wireless charging device 810 is powered on, the lamp 820 820 charging.
  • the lamp 820 is adsorbed by the wireless charging device 810, and the lamp 820 is charged by the wireless charging device 810.
  • the wireless charging device 810 can be installed or placed on an inclined surface or a vertical surface, and the relative position of the lamp 820 and the wireless charging device 810 is kept stable by the adsorption effect of the wireless charging device 810 on the lamp 820 , Thereby improving the charging stability of the wireless charging lighting system.
  • the wireless charging device 810 can be installed on a wall, an inclined tabletop, or other irregularly shaped surfaces, wherein the lamp 820 is adsorbed on the surface of the wireless charging device 810, and the wireless charging device 810 The charging device 810 charges the lamp 820 wirelessly.
  • the wireless charging device 810 includes a charging body 811 and at least one magnetic attraction device 812, wherein the magnetic attraction device 812 is disposed on the charging body 811, and the magnetic attraction The device 812 adsorbs the lamp 820 to the charging main body 811, wherein the charging main body 811 wirelessly transmits electric energy to the lamp 820 when it is powered on.
  • the magnetic attraction device 812 is movably disposed on the charging main body 811. By adjusting the magnetic attraction device 812, it is convenient for the lamp 820 to be attracted to the charging main body 811 and for the lamp 820 and the charging main body 811 separated.
  • the magnetic attraction device 812 is rotatably arranged on the charging body 811, and the magnetic attraction device 812 and the lamp 820 are adjusted by rotating the magnetic attraction device 812.
  • the relative position is convenient for the lamp 820 to be adsorbed or separated from the charging body 811.
  • the magnetic attraction device 812 has a magnetic attraction surface 8121, at least one non-magnetic attraction surface 8122, and a rotating shaft 8123, wherein the magnetic attraction surface 8121 of the magnetic attraction device 812 has a magnetic attraction effect, which It can adsorb magnetic metal materials such as iron, cobalt, and nickel, and the non-magnetic surface 8122 has no adsorption effect on the magnetic material.
  • the magnetic attraction device 812 is rotated to rotate around the rotation axis 8123, wherein the magnetic attraction surface 8121 and the non-magnetic attraction surface 8122 of the magnetic attraction device 812 rotate based on the rotation axis 8123.
  • the lamp 820 can be attracted by the magnetic attraction device 812 to fit On the charging surface of the charging body 811.
  • the magnetic attraction device 812 is rotated until the non-magnetic attraction surface 8122 faces the lamp 820, that is, when the non-magnetic attraction surface 8122 faces the charging direction of the charging body 811, due to the non-magnetic attraction
  • the suction surface 8122 does not have a magnetic attraction effect, and the lamp 820 can be separated from the surface of the charging body 811.
  • the magnetic attraction surface 8121 and the non-magnetic attraction surface 8122 of the magnetic attraction device 812 correspond to each other, so that the magnetic attraction device 812 is driven to rotate around the rotation axis 8123
  • the way can selectively make one of the magnetic surface 8121 and the non-magnetic surface 8122 of the magnetic attraction device 812 face the lamp 820, wherein when the magnetic attraction device 812 is When the suction surface 8121 faces the lamp 820, the lamp 820 can be adsorbed to the wireless charging device 810 by the magnetic attraction device 812.
  • the way of driving the magnetic attraction device 812 to rotate around the rotation axis 8123 is not limited in the lighting system of the present invention.
  • it can be driven by manually driving the magnetic attraction device 812.
  • the magnetic attraction device 812 rotates around the rotating shaft 8123 relative to the wireless charging device 810, or the magnetic attraction device 812 can be driven around the wireless charging device 812 by a driving motor.
  • the rotating shaft 8123 rotates relative to the wireless charging device 810.
  • the magnetic attraction device 812 further includes at least one magnetic attraction unit 8124 and a carrier device 8125, wherein the magnetic attraction unit 8124 is disposed on the carrier device 8125, and the carrier device 8125 rotates based on the rotating shaft 8123.
  • the magnetic attraction unit 8124 is disposed adjacent to the magnetic attraction surface 8121.
  • the magnetic attraction unit 8124 is embedded in the carrier device 8125, and the magnetic attraction surface 8121 is formed on one surface of the carrier device 8125 by the magnetic attraction unit 8124, wherein the carrier device 8125 corresponds to
  • the non-magnetic attraction surface 8122 is formed on the opposite side of the magnetic attraction surface 8121. It is understandable that the position of the magnetic attraction surface 8121 and the non-magnetic attraction surface 8122 of the magnetic attraction device 812 can be identified by the position of the magnetic attraction unit 8124.
  • the magnetic attraction unit 8124 is a magnetic element made of permanent magnetic materials, such as magnets, alnico permanent magnetic alloys, iron-chromium-cobalt permanent magnetic alloys, permanent magnet ferrites, rare earth permanent magnetic materials, and composite permanent magnetic materials. It is understandable that the type of the magnetic attraction unit 8124 is only exemplary here, and not a limitation. Therefore, the magnetic attraction unit 8124 can also be implemented as an electromagnetic device. Preferably, in this preferred embodiment of the present invention, the magnetic attraction unit 8124 is embedded in the carrying device 8125, and the upper surface of the magnetic attraction unit 8124 and one surface of the carrying device 8125 are formed together The magnetic attraction surface 8121 of the magnetic attraction device 812. The carrying device 8125 shields the magnetism of the magnetic attraction unit 8124, so that the non-magnetic attraction surface 8122 of the magnetic attraction device 812 is formed on the opposite side of the carrying device 8125.
  • permanent magnetic materials such as magnets, alnico permanent magnetic alloys, iron-chromium-cobalt permanent magnetic alloys, permanent magnet ferr
  • the magnetic attraction device 812 further includes at least one rotary lock 8126, wherein the rotary lock 8126 controls the rotation of the carrying device 8125.
  • the rotating shaft 8123 of the magnetic attraction device 812 is brakeably connected to the rotating lock 8126, and the rotating shaft 8123 is braked by the rotating lock 8126 to lock the carrying device 8125, Prevent the bearing device 8125 from rotating.
  • the rotary lock 8126 is arranged on the charging body 811, and when the rotary lock 8126 is pressed, the rotary lock 812 stops braking the rotating shaft 8123, and the carrying device 8125 It can be rotated to adjust the positions of the magnetic surface 8121 and the non-magnetic surface 8122.
  • the number of the magnetic attraction units 8124 of the magnetic attraction device 812 is two or more, wherein the magnetic attraction units 8124 are arranged at intervals, by The position of the lamp 820 is positioned by the magnetic attraction unit 8124 so that the lamp 820 and the wireless charging device 810 are positioned in alignment, thereby improving the charging efficiency of the wireless charging device 810 to the lamp 820.
  • the attraction force between the magnetic attraction surface 8121 of the magnetic attraction device 812 and the lamp 820 is increased, so that the wireless charging device 810 is in the charging process The position of the lamp 820 is stably maintained.
  • the charging main body 811 includes a housing 8111, at least one transmitting module 8112, a power interface 8113, and a circuit board 8114, wherein the transmitting module 8112 passes through the power interface 8113 It is electrically connected to an external power source.
  • the transmitting module 8112 is disposed in the housing 8111, the transmitting module 8112 is fixed to the housing 8111, and the transmitting module 8112 transmits electromagnetic signals for charging to the lamp 820 based on the housing 8111.
  • the magnetic attraction device 812 is movably arranged on the housing 8111 of the charging main body 811, wherein the housing 8111 includes an upper housing 81111, a lower housing 81112, and the upper housing 81111 and The lower housing 81112 forms a mounting groove 81113, wherein the housing 8111 movably holds the magnetic attraction device 812 in the mounting groove 81113.
  • the mounting groove 81113 is formed at the middle position of one side of the housing 8111.
  • the magnetic attraction device 812 is supported by the housing 8111 and rotates in the installation groove 81113. It is worth mentioning that when the magnetic attraction device 812 is rotated, the magnetic attraction device 812 rotates in the mounting slot 81113, that is, the magnetic attraction device 812 does not exceed the housing 8111 when rotating. Bottom edge.
  • the housing 8111 of the charging body 811 has an upper surface 81117 and a lower surface 81118, wherein the upper surface 81117 is located at the upper end of the upper housing 8111, and the lower surface 81118 is formed On the lower side of the lower housing 8112.
  • the edge of the magnetic attraction device 812 does not exceed the lower surface 81118 of the housing 8111.
  • the transmitting module 8112 is arranged on the upper housing 81111 of the housing 8111.
  • the transmitting module 8112 is attached to the inner side of the upper housing 81111, so that when the lamp 820 is charged When the transmitter module 8112 is close to the lamp 820, the charging efficiency of the wireless charging device 810 is improved.
  • the transmitting module 8112 includes at least one wireless transmitting coil, wherein the wireless transmitting coil is electrically connected to the circuit board 8114. It is worth mentioning that the distance between the transmitting module 8112 and the magnetic attraction device 812 is greater than or equal to 87.85mm, which prevents the transmitting module 8112 of the wireless charging device 810 from being affected by the magnetic attraction device 812 during operation.
  • the magnetic field image facilitates the stable operation of the wireless charging device 810.
  • the housing 8111 has an accommodating space 81114, wherein the upper housing 81111 and the lower housing 81112 of the housing 8111 jointly form the accommodating space 81114, wherein the transmitting module 8112 and the The circuit board 8114 is held in the accommodating space 81114 by the housing 8111.
  • the housing 8111 further has at least two shaft holes 81115, wherein the rotating shaft 8123 rotatably sets the magnetic attraction device 812 in the housing 8111 through the shaft holes 81115.
  • the housing 8111 is further provided with at least one mounting hole 81116, wherein the mounting hole 81116 penetrates the upper housing 81111 and the lower housing 81112 of the housing 8111, and the mounting hole 81116 can be
  • the wireless charging device is installed on a wall surface, tables, chairs and other positions. It is understandable that, in this preferred embodiment of the present invention, the wireless charging device 810 can be fixedly installed on a wall, wherein the magnetic attraction device 812 of the wireless charging device 810 can be attracted by magnetic attraction.
  • the charging lamp 820 is on the surface of the wireless charging device 810.
  • the circuit board 8114 is connected to an external power source through the power interface 8113, and transmits the power of the external power source to the transmitting module 8112, so that the transmitting module 8112 can wirelessly transmit the power of the external power source. Transmission to the lamp 820.
  • the wireless charging device 810 transmits electric energy to the lamp 820 by the transmitting module 8112 through electromagnetic induction, or through the transmitting module 8112 The electric energy is transmitted to the lamp 820 by means of magnetic resonance.
  • the way of transmitting electric energy of the wireless charging device 810 is merely exemplary here, and not a limitation.
  • the wireless charging device 810 further includes at least one installation unit 813, wherein the installation unit 813 installs the charging body 811 of the wireless charging device 810 on an object to be installed, such as Desktop, iron plate, workbench, etc.
  • the installation unit 813 installs the wireless charging main body 811 on the object to be installed by adsorption or attachment.
  • the mounting unit 813 can be implemented as an adhesive element or a magnetic attraction element.
  • the mounting unit 813 is a magnet, wherein the mounting unit 813 is disposed on the housing 8111 of the charging body 811, and the mounting unit 813
  • the charging main body 811 is fixed to a magnetically adsorbable desktop, such as the surface of an iron object, by adsorption.
  • the mounting unit 813 is embedded in the lower housing 81112 of the housing 8111.
  • the wireless charging device 810 further includes at least one notification device 814, wherein the notification device 814 is communicatively connected to the charging body 811, wherein the notification device 814 obtains the charging body
  • the operating status of the 811 and the operating status based on the charging body 811 are prompted to the operator.
  • the prompting device 814 prompts the operator that the wireless charging device is currently charging the lamp 820 820 charging.
  • the prompting device 814 prompts the operator to stop the charging process of the lamp 820 in time, or remove the lamp 820 that has been charged.
  • the notification device 814 further includes at least one warning light 8141 and a buzzer 8142, wherein the warning light 8141 reminds the operator of the charging status of the lamp 820 or the wireless charging device 810 in a light manner.
  • the buzzer 8142 prompts the operator of the current working status of the wireless charging device 810 in a voice prompt manner.
  • the warning light 8141 of the notification device 814 or the buzzer beeps The device 8142 prompts the operator so that the operator can adjust the wireless charging device 810 according to the prompt information, adjust the relative position of the lamp 820 and the wireless charging device 810, or separate the lamp from above the wireless charging device 810 820.
  • the prompting device 814 is provided in the upper housing 81111 of the housing 8111. It can be understood that the installation positions of the warning light 8141 and the buzzer 8142 of the prompting device 814 are merely exemplary here, and not limited.
  • the wireless charging device 810A includes a charging body 811A, a magnetic attraction device 812A, at least one mounting unit 813A, and at least one prompt device 814A, wherein the magnetic attraction device 812A is movably disposed on the charging body 811A, By adjusting the position of the magnetic attraction device 812A, the lamp 820 is attracted to the upper surface of the charging body 811A by the magnetic attraction device 812A, and the lamp 820 is separated from the charging body 811A. It is worth mentioning that in the present invention, the structure and function of the installation unit 813A and the prompting device 814A of the wireless charging device 810A are the same as the wireless charging device in the first preferred embodiment.
  • the magnetic attraction device 812A is arranged on the charging main body 811A, and the magnetic attraction device 812A can be driven to move or rotate in parallel on the charging main body, by adjusting the position or rotation angle of the magnetic attraction device 812A
  • Adsorbing the lamp 820 on the charging body 811A facilitates the separation of the lamp 820 from the charging body.
  • the charging body 811A includes a housing 8111A, at least one transmitting module 8112A, a power interface 8113A, and a circuit board 8114A, wherein the transmitting module 8112A is electrically connected to an external device through the power interface 8113A. power supply.
  • the housing 8111A of the charging main body 811A has a mounting slot 81113A, wherein the magnetic attraction device 812A is relatively movable in the mounting slot 81113A.
  • the magnetic attraction position of the magnetic attraction device 812A is adjusted by moving the position of the magnetic attraction device 812A in the mounting slot 81113A, thereby adjusting the position where the lamp 820 is attracted.
  • the magnetic attraction device 812A has a magnetic attraction surface 8121A and at least one non-magnetic attraction surface 8122A, wherein the magnetic attraction surface 8121A and the non-magnetic attraction surface 8122A are located on the same plane or the magnetic attraction surface 8121A and the non-magnetic attraction surface 8122A The planes of the magnetic attraction surfaces 8122A are parallel to each other.
  • the magnetic attraction device 812A is pushed to move or rotate in parallel in the mounting groove 81113A by pressing or pushing, so that the magnetic attraction surface 8121A of the magnetic attraction device 812A and the non-magnetic attraction
  • the position of the surface 8122A relative to the charging body 811A changes.
  • the magnetic attraction surface 8121A of the magnetic attraction device 812A is located inside the non-magnetic attraction surface 8122A.
  • the magnetic attraction device 812A further includes a carrying device 8125A and at least one magnetic attraction unit 8124A, wherein the magnetic attraction unit 8124A is disposed on the magnetic attraction surface 8121A of the magnetic attraction device 812A.
  • the position where the magnetic attraction unit 8124A is located forms the magnetic attraction surface 8121A
  • the position away from the magnetic attraction unit 8124A forms the non-magnetic attraction surface 8122A of the magnetic attraction device 812A.
  • the supporting device 8125A of the magnetic attraction device 812A is held in the mounting groove 81113A by the housing 8111A.
  • the magnetic attraction device 812A further includes at least one supporting element 8126A, wherein the supporting element 8126A is disposed in the mounting groove 81113A of the housing 8111A, and the supporting element 8126A supports the supporting device 8125A to Keep the relative position of the magnetic attraction device 812A.
  • the supporting element 8126A supports the supporting device 8125A at the opening position outside the mounting groove 81113A, and the lamp 820 is held by the magnetic attraction device 812A.
  • the magnetic attraction unit 8124A is attracted and attached to the surface of the charging body 810A.
  • the number of the magnetic attraction units 8124A of the magnetic attraction device 812A is at least two, wherein the magnetic attraction units 8124A are spaced apart from each other, and the magnetic attraction units 8124A are spaced apart from each other by
  • the adsorption of the lamp 820 causes the lamp 820 to be charged to be adsorbed on the housing 8111A of the charging main body 811A in a positional manner.
  • the carrying device 8125A of the magnetic attraction device 812A protrudes outward from the mounting groove 81113A of the housing 8111A.
  • the user can adjust the bearing device 8125A of the magnetic attraction device 812A by pressing or pushing to adjust the magnetic attraction surface 8121A and the non-magnetic attraction surface 8122A of the magnetic attraction device 812A relative to The location of the mounting groove 81113A.
  • the carrying device 8125A of the magnetic attraction device 812A is pressed or pushed, wherein the carrying device 8125A of the magnetic attraction device 812A is pressed to the inner side of the mounting groove 81113A, wherein the magnetic The suction surface 8121A and the lamp 820 are misaligned, thereby reducing the suction effect of the magnetic attraction device 812A on the lamp housing 820, so as to separate the lamp 820 from the charging body 811A.
  • the supporting element 8126A is implemented as a spring element, wherein the spring element is arranged inside the mounting groove 81113A, and the supporting element 8126A pushes the carrying device of the magnetic attraction device 812A 8125A.
  • the magnetic attraction device 812A is arranged on the charging body 811A in a parallel movement manner.
  • the magnetic attraction device 812A can also be implemented as a dial device.
  • the wireless charging device 810 includes a charging body 811, a magnetic attraction device 812, at least one installation unit 813, and at least one notification device 814, wherein the magnetic attraction device 812 is movably disposed on the charging body 811, By adjusting the position of the magnetic attraction device 812, the lamp 820 is attracted to the upper surface of the charging body 811 by the magnetic attraction device 812, and the lamp 820 is separated from the charging body 811.
  • the charging body 811 includes a housing 8111, at least one transmitting module 8112, a power interface 8113, and a circuit board 8114, wherein the transmitting module 8112 is electrically connected to an external power source through the power interface 8113.
  • the housing 8111 further includes an upper housing 81111 and a lower housing 81112, wherein the upper housing 8111 forms a mounting groove 81113, wherein the magnetic attraction device 812 is movably disposed in the mounting groove 81113.
  • the magnetic attraction device 812 is swingably disposed on the charging main body 811, wherein the charging main body 811 supports the magnetic attraction device 812 to swing up and down on the charging main body 811 along a rotating shaft.
  • the magnetic attraction device 812 includes a rotating shaft 8123, a supporting device 8125, and at least one magnetic attraction unit 8124, wherein the rotating shaft 8123 is rotatably connected to the upper casing 81111 of the casing 8111.
  • the magnetic attraction unit 8124 is embedded in the carrier device 8125, and the carrier device 8125 carries the magnetic attraction unit 8124 to rotate around the rotation axis 8123.
  • the supporting device 8125 rotates to the uppermost position, the upper surfaces of the supporting device 8125 and the magnetic attraction unit 8124 are parallel to the charging body 811.
  • the supporting device 8125 is rotated downward based on the rotating shaft 8123, and the magnetic unit 8124 is moved downward by the supporting device 8125, so that the magnetic unit 8124 is away from the upper surface of the charging body 811.
  • the number of the magnetic attraction units 8124 in the magnetic attraction device 812 is at least two, and the magnetic attraction units 8124 are arranged at intervals with each other.
  • the magnetic attraction effect of the magnetic attraction unit 8124 on the lamp 820 adjusts the relative position of the lamp 820 and the wireless charging device 810 to facilitate the accurate alignment of the lamp 820 and the wireless charging device 810, thereby improving The charging efficiency of the wireless charging device 810 to the lamp 820.
  • the magnetic unit 8124 of the magnetic attraction device 812 attracts the lamp 820 so that the lamp 820 is attached to the housing The upper housing 81111 of the body 8111.
  • the bearing device 8125 carries the magnetic attraction unit 8124 to rotate around the rotation axis 8123, wherein the The magnetic attraction unit 8124 is rotated away from the lamp 820, thereby reducing the magnetic force attracted to the lamp 820.
  • the magnetic attraction device 812 further includes at least one supporting element 8126, wherein the supporting element 8126 is arranged below the carrying device 8125 to provide an upward supporting force of the carrying device 8125 to
  • the supporting device 8125 supports the magnetic attraction unit 8124 to maintain a position close to the upper surface of the charging body 811.
  • the supporting element 8126 is implemented as a spring element.
  • the lamp 820 of the wireless charging lighting system includes a lamp body 821 and at least one magnetic metal unit 822, wherein the magnetic metal unit 822 is disposed on the lamp body 821 .
  • the magnetic metal unit 822 can be attracted by the magnetic unit 8124 of the magnetic device 812, so that the wireless charging device 810 can adsorb the lamp main body 821 through the magnetic metal unit 822.
  • the magnetic metal unit 822 is embedded in the lamp main body 821 of the lamp 820, so as to reduce the distance between the transmitting module 8112 of the wireless charging device 810 and the lamp main body 821.
  • the magnetic metal unit 822 can be attracted by the magnetic unit 8124, but the magnetic metal unit 822 does not have magnetism, which prevents the lamp 820 from being charged.
  • the 822 is magnetic and attracts iron filings and other debris, so as to image the next charging of the lamp 820.
  • the magnetic metal person 822 may be, but is not limited to, an iron block, an iron metal alloy block and other materials that can be adsorbed by the magnetic attraction unit 8124.
  • the number of the magnetic metal unit 822 is the same as the number of the magnetic metal unit 8124 of the wireless charging device 810, that is, the magnetic metal unit of the lamp 820
  • the number of the units 822 is at least two, and the magnetic metal units 822 are arranged at intervals.
  • the separation distance between the magnetic attraction metal unit 822 and the separation distance between the magnetic attraction unit 8124 is the same as H.
  • the magnetic metal unit 822 When the lamp 820 is placed on the wireless charging device 810, the magnetic metal unit 822 is correspondingly attracted to the magnetic unit 8124 of the wireless charging device 810, wherein the magnetic unit 8124 and The magnetic metal unit 822 is aligned up and down, so that the magnetic device 812 of the wireless charging device 810 is adsorbed above the charging body 811 through the magnetic metal unit 822 of the lamp 820.
  • the lamp body 821 includes at least one light source 8211, a lamp housing 8212, at least one receiving module 8213, and at least one energy storage device 8214, wherein the light source 8211 is disposed on the lamp housing 8212, and the light source 8211 is electrically It is connected to the energy storage device 8214, and the energy storage device 8214 provides the light source 8211 with working power.
  • the receiving module 8213 is disposed on the lamp housing 8212. When the lamp 820 is placed on the wireless charging device 810, the receiving module 8213 of the lamp 820 receives the electromagnetic radiation emitted by the transmitting module 8112. Signal and generate induced current.
  • the receiving module 8213 is electrically connected to the energy storage device 8214, and the electrical energy generated by the receiving module 8213 is stored in the energy storage device 8214.
  • the light source 8211 may be, but not limited to, an LED lamp, and the type and structure of the light source 8211 are merely exemplary here, and not limited.
  • the lamp housing 8212 includes a lamp upper shell 82121, a lamp lower shell 82122, and a lamp body space 82123 further formed by the lamp upper shell 82121 and the lamp lower shell 82122, wherein the receiving module 8213 and the lamp
  • the energy storage device 8214 is held in the lamp body space 82123 by the lamp housing 8212.
  • the upper lamp housing 82121 and the lower lamp housing 82122 are hermetically connected.
  • the receiving module 8213 is attached to the inner side of the lamp housing 82122 of the lamp housing 8212, so that when the wireless charging device 810 wirelessly charges the lamp 820, the receiving module 8212 and the The distance between the transmitting modules 8122 improves the charging efficiency of the wireless charging device 810 to the lamp 820.
  • the position of the receiving module 8213 relative to the magnetic metal unit 822 corresponds to the relative position of the transmitting module 8122 relative to the magnetic attraction unit 8124, that is, when the magnetic attraction unit 8124 is located in the When the metal unit 822 is magnetically attracted, the transmitting module 8122 is located at the receiving module 8213. Therefore, it can be judged whether the transmitting module 8122 and the receiving module 8213 are aligned by the relative position of the magnetic attraction unit 8124 and the magnetic attraction metal unit 822.
  • each of the magnetic attraction units 8124 of the wireless charging device 810 adsorbs each of the magnetic attraction metal units 822 of the lamp 820, so that all Each of the magnetic attraction units 8124 of the wireless charging device 810 is located on each of the magnetic attraction metal units 822 of the lamp 820, so that the transmitting module 8122 is located on the receiving module 8213. That is to say, along the charging direction of the wireless charging device 810, the wireless charging device 810 absorbs the lamp 820 by magnetic attraction, so that the transmitting module 8122 and the receiving module 8213 correspond to each other, Thus, the charging efficiency of the lamp 820 is improved.
  • the distance between the transmitting module 8122 and the receiving module 8213 is greater than or equal to 82 mm.
  • the energy storage device 8214 is implemented as a battery cell or battery pack with charging and discharging functions, wherein the energy storage device 8214 stores the induced electric energy generated by the receiving module 8213 for the The light source 8211 emits light.
  • the light source 8211 includes at least one light emitting unit 82111 and a light source support 82112, wherein the light source support 82112 fixes the light emitting unit 82111 to the housing 8212.
  • the light emitting unit 82111 is thermally connected to the light source support 82112, and the light source support 82112 dissipates the heat generated by the light emitting unit 82111 during light emission by heat transfer, so as to reduce The temperature of the light-emitting unit 82111.
  • the specific structure and shape of the lamp 820 are merely exemplary here, rather than limiting.
  • the lamp 820 further includes a bracket 823, wherein the bracket 823 is disposed on the lamp body 821, and the bracket 823 supports the lighting of the lamp body 821.
  • the bracket 823 is movably connected to the outside of the lamp main body 821, and the angle at which the lamp main body 821 is placed and supported is adjusted by adjusting the rotation angle of the bracket 823.
  • FIG. 17A to 17C show the usage mode and usage scenarios of the wireless charging lighting system of the present invention.
  • the wireless charging device 810 can be fixedly installed on a wall, a desktop, or a flat or inclined surface of a workbench at any angle; or the wireless charging device 810 can be adsorbed on a surface of ferrous metal.
  • FIG. 16B when the lamp 820 is placed on the wireless charging device 810 for charging, the magnetic attraction device 812 of the wireless charging device 810 is adjusted so that the magnetic attraction device 812 The magnetic attraction surface 8121 faces the charging direction of the wireless charging device 810, or faces the lamp 820.
  • the magnetic attraction device 812 After the position of the magnetic attraction device 812 is adjusted, the magnetic attraction device 812 is locked by the rotary lock 8126 to maintain the position of the magnetic attraction device 812 and prevent the magnetic attraction device 812 from being damaged during the charging process. It rotates to separate from the lamp 820.
  • the magnetic metal unit 822 of the lamp 820 is aligned and adsorbed by the magnetic attraction unit 8124 of the wireless charging device 810, wherein the magnetic metal unit 822 and the magnetic attraction unit 8124 are aligned up and down . Since the position of the transmitting module 8112 relative to the magnetic attraction unit 8124 and the position of the receiving module 8213 relative to the magnetic attraction unit 822 are the same, when the magnetic attraction metal unit 822 and the magnetic attraction unit 8124 After the alignment, the transmitting module 812 and the receiving module 8213 are aligned up and down, so that the transmitting module 812 transmits electromagnetic signals with electrical energy to the receiving module 8213, so that the receiving module 8213 is based on the The electromagnetic signal emitted by the transmitting module 812 generates induced electric energy.
  • the magnetic attraction device 812 When the lamp 820 is separated from the wireless charging device 810, for example, when the lamp 820 is fully charged, the magnetic attraction device 812 is rotated or rotated to make the non-magnetic surface 8122 of the magnetic attraction device 812 Facing the lamp 820. Since the non-magnetic attraction surface 8122 is not magnetic or has a small magnetic attraction effect, the adsorption force generated by the lamp 820 is small, which facilitates the separation of the lamp 820 and the wireless charging device 810.

Abstract

本发明提供了一无线充电设备、无线充电座、无线充电座的制造方法、无线充电装置以及无线充电照明系统,其中所述无线充电座,用于向一照明装置供电,其中所述照明装置被设置有至少一个定位配合件,其中所述无线充电座包括一充电座体、一发射线圈以及具有多个磁吸位点,其中所述发射线圈被收容于所述充电座体,所述磁吸位点位于于所述充电座体,并且位于所述发射线圈的周围,当所述照明装置被放置于所述无线充电座,所述照明装置的一接收线圈被对准于所述无线充电座的所述发射线圈,所述定位配合件能够和所述磁吸位点中的至少一个相互磁吸。

Description

无线充电设备、无线充电座、无线充电座的制造方法、无线充电装置以及无线充电照明系统 技术领域
本发明涉及到无线充电领域,尤其涉及到无线充电设备、无线充电座、无线充电座的制造方法、无线充电装置以及无线充电照明系统。
背景技术
无线充电技术目前是一项较为成熟的技术,苹果公司已经推出了给手机无线充电的无线充电座。类似地,在其他需电设备,也可以应用无线充电技术。比如说在照明领域。目前市场上已经出现了一些用于为灯具尤其是便携灯具提供电力的无线充电座。
一般无线充电座的工作原理是提供一发射线圈,当待充电灯具被放置于无线充电座时,所述无线充电座的所述发射线圈和所述待充电灯具的一接收线圈配合工作然后通过电磁感应的方式将所述无线充电座存储的电能输送到所述待充电灯具。
所述待充电灯具等待充电设备直接放置到所述无线充电座就可以直接方便地进行电力输送。存在的一个问题在于,当所述待充电设备被放置在所述无线充电座进行充电后,所述待充电设备和所述无线充电座之间的相对位置很可能出现偏移,使得所述无线充电座的所述发射线圈和所述待充电设备的所述接收线圈无法对准,从而影响到充电效率。
常见的解决方式是采用磁性元件将所述待充电设备以磁吸于所述无线充电座,比如说在所述无线充电座的所述发射线圈的周围放置二个第一磁吸元件,在所述待充电设备的所述接收线圈的周围放置二个第二磁吸元件,两个所述第一磁吸元件之间的距离固定,两个所述第二磁吸元件之间的距离固定,并且所述第一磁吸元件之间的距离等于所述第二磁吸元件之间的距离。
当所述待充电设备被放置于所述无线充电座,通过所述第一磁吸元件和所述第二磁吸元件之间的磁吸作用以两点固定所述无线充电座和所述待充电设备的 相对位置。
当然,本领域技术人员可以理解的是,为了避免所述第一磁吸元件和所述第二磁吸元件对于所述发射线圈和所述接收线圈之间的电磁效应造成干扰,所述第一磁吸元件、所述第二磁吸元件分别需要和所述发射线圈、所述接收线圈保持一定的距离,当然,通过简单和有限次的尝试就可以方便地确定所述第一磁吸元件、所述第二磁吸元件分别到和所述发射线圈、所述接收线圈的距离。
显然,这种所述无线充电座和所述待充电设备之间的配合存在着一定的问题,所述无线充电座可能只能适配于一种类型的所述待充电设备,一旦所述待充电设备的尺寸发生变化,所述待充电设备可能就无法和所述无线充电座配合。
可充电式灯具在电能使用耗尽时需要使用充电器充电或者将灯具的电源插头接入电源充电。现有技术的可充电式灯具的充电方式多采用有线电接触式的充电方式,这种电接触式充电方式操作繁琐,并且在充电过程中存在较大的危险。
无线充电技术有助于解决上述问题,无线充电是充电器与用电装置之间以磁场传送能量,比如电磁感应式无线充电或磁共振式无线充电,其中所述无线充电器和所述用电装置之间不用电线连接,因此充电器及用电的装置都可以做到无导电接点外露。无线充电灯具在充电时需要将灯具准确定位地放置在充电装置的特定位置处,如果所述灯具和所述充电装置错位时,就会导致充电效率低,甚至无法充电。现有技术的无线充电灯具在充电时为了保持所述灯具与所述无线充电装置的对位放置,通常只能够将所述灯具平放在所述无线充电的上方。如果倾斜放置,灯具的位置不稳,可能会导致灯具与充电装置脱离,从而影响所述灯具的充电效率。
为了避免所述灯具充电时放置不稳和方便所述灯具的准确放置,通常会在所述灯具的下方安装一磁铁,通过磁吸附的作用将所述灯具吸附在所述充电装置的上方。但是现有技术的这种磁吸附灯具,特别是磁吸附的工作灯,在使用时会吸附铁制异物,比如铁屑、铁片等,难以去除。如果将带有杂物的灯具放置于所述无线充电装置充电时,会使得所述灯具和所述无线充电装置之间的间距增大,影像电能的传输效率,甚至导致所述灯具无法充电。另一方面,现有技术的这种无线充电装置在充电后,由于磁吸附作用较大,会导致所述灯具和所述无线充电装置难以分离。灯具从所述充电装置拿起时,由于磁铁吸附在一起,用户一只手拿起所述灯具的同时,需要另一只手按住所述充电装置,给用户带来操作不便。 发明内容
本发明的一优势在于提供一无线充电设备、无线充电座和无线充电座的制造方法,其中所述无线充电座能够向多种尺寸的照明装置充电。
本发明的另一优势在于提供一无线充电设备、无线充电座和无线充电座的制造方法,其中多种尺寸的所述照明装置能够被定位于所述无线充电座并且被所述无线充电座充电。
本发明的另一优势在于提供一无线充电设备、无线充电座和无线充电座的制造方法,其中所述无线充电座提供了一定位件,其中所述定位件能够适应于所述照明装置的尺寸变化而变化,以使得不同尺寸或者是不同类型的所述照明装置能够被定位于所述无线充电座以充电。
本发明的另一优势在于提供一无线充电设备、无线充电座和无线充电座的制造方法,其中所述定位件能够自适应于所述照明装置的一定位配合件,以使所述无线充电座和所述照明装置通过所述定位件和所述定位配合件之间的配合以定位。
本发明的另一优势在于提供一无线充电设备、无线充电座和无线充电座的制造方法,其中所述无线充电座的所述定位件不影响所述无线充电座和所述照明装置之间的正常充电。
本发明的另一优势在于提供一无线充电设备、无线充电座和无线充电座的制造方法,其中藉由所述无线充电座的制造方法,可以获得能够自适应所述照明装置以定位所述照明装置的所述无线充电座。
根据本发明的一方面,本发明提供了一无线充电座,用于向一照明装置供电,其中所述照明装置被设置有至少一个定位配合件,其中所述无线充电座包括一充电座体、一发射线圈以及具有多个磁吸位点,其中所述发射线圈被收容于所述充电座体,所述磁吸位点位于于所述充电座体,并且位于所述发射线圈的周围,当所述照明装置被放置于所述无线充电座,所述照明装置的一接收线圈被对准于所述无线充电座的所述发射线圈,所述定位配合件能够和所述磁吸位点中的至少一个相互磁吸。
根据本发明的一些实施例,所述定位件具有一磁吸面,所述定位配合件具有一磁吸配合面,其中所述磁吸面大于所述磁吸配合面,所述磁吸位点位于所述磁吸面。
根据本发明的一些实施例,所述发射线圈位于所述充电座体的中间位置,所述定位件的一端自所述发射线圈的周围朝向所述充电座体的周沿延伸而成。
根据本发明的一些实施例,所述无线充电座具有至少一导向槽和包括至少一定位件,其中所述磁吸位点位于所述定位件,其中所述导向槽位于所述充电座体并且位于所述发射线圈周围,所述定位件被能够移动地容纳于所述导向槽,当所述照明装置被放置于所述充电座体,所述定位件能够沿着所述导向槽移动以和所述照明装置的所述定位配合件相互磁吸。
根据本发明的一些实施例,所述定位件被可沿着所述导向槽移动地容纳于所述导向槽。
根据本发明的一些实施例,所述定位件被可拆卸地安装于所述充电座体的多个位置。
根据本发明的一些实施例,所述无线充电座进一步包括至少一导向通道,其中所述导向通道被设置于所述无线充电座,所述导向槽形成于所述导向通道。
根据本发明的一些实施例,所述导向槽是一直线型导槽,其中所述导向槽位于所述发射线圈的周围。
根据本发明的一些实施例,所述导向槽是一螺旋形导槽,围绕所述发射线圈朝外螺旋而成。
根据本发明的一些实施例,所述导向槽的数目不少于二,并且二所述导向槽所在的直线相互交叉。
根据本发明的一些实施例,所述导向槽的数目是三,第一导向槽、第二导向槽以及第三导向槽,其中所述第一导向槽和所述第二导向槽所在的直线相互平行或者是相互重叠,所述第三导向槽所在直线和所述第一导向槽所在直线或者是所述第二导向槽所在直线相互交叉。
根据本发明的一些实施例,所述导向槽自所述充电座体的表面朝内凹陷形成。
根据本发明的一些实施例,所述无线充电座进一步包括至少一导向通道,其中所述导向通道被设置于所述无线充电座,所述导向槽形成于所述导向通道,其中所述导向槽被暴露在外并且所述导向通道的至少部分是弹性材料制成的,所述定位件被过盈配合地安装于所述导向通道。
根据本发明的另一方面,本发明提供了一无线充电设备,其包括:
根据上述的一无线充电座;和
一照明装置,其中所述照明装置包括一照明装置主体、一接收线圈和至少二定位配合件,其中所述接收线圈被设置于所述照明装置主体,所述定位配合件被设置于所述照明装置主体并且分别位于所述接收线圈两侧,其中所述无线充电座用于向所述照明装置充电。
根据本发明的另一方面,本发明提供了一无线充电座的制造方法,其包括如下步骤:
调整放置于一充电座体的一定位件和位于所述充电座体的一发射线圈的相对位置;
通过一检测设备检测所述发射线圈向一照明装置的输电效率以确定所述定位件和所述发射线圈的必要间隔距离;以及
安装所述定位件于一导向槽并且保持所述定位件和所述发射线圈之间的距离不小于必要间隔距离,其中所述定位件用于和所述照明装置的所述定位配合件相互磁吸。
根据本发明的一些实施例,在上述方法中,所述无线充电座的制造方法进一步包括如下步骤:
形成至少一导向槽于所述充电座体,其中所述形成至少一导向槽于所述充电座体的步骤位于所述调整步骤之前。
根据本发明的一些实施例,在上述方法中,所述无线充电座的制造方法进一步包括如下步骤:
安装至少一导向通道于所述充电座体,其中所述导向槽形成于所述导向通道。
根据本发明的一些实施例,所述导向槽螺旋地位于所述充电座体。
根据本发明的一些实施例,在上述方法中,当所述定位件的数目是多个时,分别调整多个所述定位件和所述发射线圈的相对位置,并且在所述通过一检测设备检测所述发射线圈向所述照明装置的输电效率步骤中共同进行输电效率的测试。
根据本发明的一些实施例,在上述方法中,当所述定位件的数目是多个时,逐个调整所述定位件和所述发射线圈的相对位置,并且经过所述通过一检测设备检测所述发射线圈向所述照明装置的输电效率步骤确定被调整后的所述定位件的位置后,再进行下一个所述定位件和所述发射线圈的相对位置的调整。
本发明的一个主要优势在于提供一无线充电装置和无线充电照明系统,其中 所述无线充电装置以磁吸的方式使所述照明系统的至少一灯具贴附于所述无线充电装置,有利于固定所述灯具。
本发明的另一个优势在于提供一无线充电装置和无线充电照明系统,其中所述无线充电装置吸附所述灯具,使得所述灯具以对位的方式贴附于所述无线充电装置,以利于所述无线充电装置对所述灯具充电。
本发明的另一个优势在于提供一无线充电装置和无线充电照明系统,其中所述照明系统在充电时,所述灯具被吸附于无线充电装置,藉由所述无线充电装置固定地保持所述灯具,以便所述照明系统能够在垂直面或倾斜表面充电。也就是说,所述照明系统的所述无线充电装置能够被设置在垂直面或倾斜的表面,比如墙面,其中所述无线充电装置在充电时吸附所述灯具,以保持所述灯具的充电状态。
本发明的另一个优势在于提供一无线充电装置和无线充电照明系统,其中所述无线充电装置包括至少一磁吸装置,其中所述磁吸装置包括至少两个磁吸单元,所述磁吸单元相互间隔地设置,藉由所述磁吸单元吸附所述灯具和调整所述灯具的位置,以使得所述灯具被对位地贴附于所述无线充电装置,从而避免由于错位放置而导致充电速度慢,或无法充电。
本发明的另一个优势在于提供一无线充电装置和无线充电照明系统,其中所述灯具的底座设有对应于所述磁吸单元的两个磁吸金属单元,比如铁块、铁类金属合金等可被所述磁吸单元吸引的金属,其中所述磁吸金属单元被对位地吸附于所述磁吸单元,通过所述磁吸单元和所述磁吸金属单元的对位吸附,自动地调整所述灯具被吸附于所述无线充电装置的位置,从而提高所述灯具对位准确性,提高所述灯具的充电效率。
本发明的另一个优势在于提供一无线充电装置和无线充电照明系统,其中所述磁吸装置被可活动地设置于所述无线充电装置的一充电主体,通过操作所述磁吸装置,以使得所述灯具吸附于所述无线充电装置和自所述无线充电装置分离。
本发明的另一个优势在于提供一无线充电装置和无线充电照明系统,其中所述磁吸装置被可转动地设置于所述充电主体,其中所述磁吸单元被设置于所述磁吸装置的一面,以使所述磁吸单元的一面具有磁性,另一面不具有磁性,当所述磁吸装置被旋转,使得所述磁吸单元朝向于所述灯具时,所述磁吸装置吸附所述灯具,当所述磁吸装置的所述磁吸单元被调整朝向于所述灯具时,以便于所述灯 具和所述无线充电装置分离。
本发明的另一个优势在于提供一无线充电装置和无线充电照明系统,其中所述无线充电装置在对所述灯具充电时,可自动地调整所述灯具与所述无线充电装置的位置,方便使用者使用。
本发明的另一个优势在于提供一无线充电装置和无线充电照明系统,其中所述无线充电装置通过旋转或转动所述磁吸装置实现所述灯具和所述充电主体和所述灯具的对位和分离,操作简单,可靠性强。
本发明的另一个优势在于提供一无线充电装置和无线充电照明系统,其中所述磁吸装置被可活动地设置于所述充电主体,通过按压所述磁吸装置即可将所述灯具与所述磁吸装置分离,方便使用者操作和使用。
本发明的另一个优势在于提供一无线充电装置和无线充电照明系统,其中所述无线充电装置进一步包括至少一提示装置,当所述无线充电装置为所述灯具充电时,藉由所述提示装置提示所述无线充电装置的动作状态。
本发明的其它优势和特点通过下述的详细说明得以充分体现并可通过所附权利要求中特地指出的手段和装置的组合得以实现。
依本发明的一个方面,能够实现前述目的和其他目的和优势的本发明的一无线充电装置,适于对一灯具无线地充电,包括:
一充电主体;和
至少一磁吸装置,其中所述磁吸装置被可活动地设置于所述充电主体,其中所述灯具被所述磁吸装置吸附,而贴附于所述充电主体。
根据本发明的一个实施例,所述磁吸装置被可转动地设置于所述充电主体。
根据本发明的一个实施例,所述磁吸装置被可移动地设置于所述充电主体。
根据本发明的一个实施例,所述磁吸装置包括一承载装置、至少一磁吸单元以及一旋转轴,所述磁吸单元被设置于所述承载装置,其中承载装置被所述旋转轴可转动地连接于所述充电主体,藉由所述承载装置带动所述磁吸单元转动。
根据本发明的一个实施例,所述磁吸装置进一步具有一磁吸面和一非磁吸面,其中所述磁吸单元被嵌入至所述承载装置,所述磁吸单元在所述承载装置的嵌入端形成所述磁吸面,所述承载装置的另一端形成所述非磁吸面,通过转动所述磁吸装置调整所述磁吸装置的所述磁吸面和所述非磁吸面的朝向。
根据本发明的一个实施例,所述磁吸装置进一步具有相互邻近的一磁吸面和 一非磁吸面,以在驱动所述磁吸装置做相对于所述充电主体的运动时调整所述磁吸面和所述非磁吸面相对于所述充电主体的位置。
根据本发明的一个实施例,所述磁吸装置进一步包括至少一旋转锁扣,其中所述旋转锁扣可锁定所述承载装置的旋转角度。
根据本发明的一个实施例,所述磁吸装置包括一承载装置、至少一磁吸单元、以及一旋转轴,其中所述磁吸单元被设置于所述承载装置,所述旋转轴连接所述承载装置于所述充电主体的上端,其中所述承载装置带动所述磁吸单元基于所述旋转轴上下地摆动。
根据本发明的一个实施例,所述磁吸单元被嵌入至所述承载装置,其中通过调整所述承载装置的摆动角度,调整所述磁吸装置对所述灯具的吸附作用力。
根据本发明的一个实施例,所述磁吸单元进一步包括至少一支撑元件,其中所述支撑元件被设置于所述承载装置的下方,藉由所述支撑元件向上地支撑所述承载装置。
根据本发明的一个实施例,所述磁吸装置的所述磁吸单元的数量为二,所述磁吸单元相互间隔地设置。
根据本发明的一个实施例,所述充电主体包括一壳体、至少一发射模块、一电源接口、以及一线路板,其中所述线路板电气连接所述电源接口于所述发射模块,其中所述发射模块被贴附于所述壳体内侧,所述发射模块与所述磁吸装置的间距大于等于7.5mm。
根据本发明的一个实施例,所述壳体包括一上壳体、一下壳体以及由所述上壳体和所述下壳体形成的一安装槽,其中所述壳体将所述磁吸装置可活动地保持在所述安装槽。
根据本发明的一个实施例,所述壳体进一步具有至少一安装孔,通过所述安装孔将所述无线充电装置固定地安装于被附着表面。
根据本发明的一个实施例,所述充电主体进一步包括一提示装置,其中所述提示装置通信地连接于所述充电主体,所述提示装置基于所述充电主体的工作信息提示所述无线充电装置的工作状态,所述提示装置包括至少一警示灯和一蜂鸣器,其中所述警示灯和所述蜂鸣器被设置于所述壳体的所述上壳体。
根据本发明的另一方面本发明进一步提供一无线充电照明系统,包括:
如上任一所述的无线充电装置;和
至少一灯具,其中所述灯具包括一灯具主体和至少一磁吸金属单元,其中所述磁吸金属单元被设置于所述灯具主体,所述磁吸金属单元可被所述无线充电装置的所述磁吸装置吸附,而贴附所述灯具主体于所述充电主体。
根据本发明的一个实施例,所述灯具的所述磁吸金属单元的数量为二,其中所述磁吸金属单元被相互间隔地设置于所述灯具的所述灯具主体,所述磁吸金属单元的间隔距离与所述无线充电装置的所述磁吸单元的间隔距离相同。
根据本发明的一个实施例,所述灯具的所述灯具主体进一步包括一灯具壳体、至少一光源、至少一接收模块、以及至少一储能装置,其中所述储能装置电气连接所述光源和所述接收模块,所述接收模块将电能存储至所述储能装置,其中所述光源被设置于所述灯具壳体,所述接收模块被贴附于所述灯壳壳体的内侧,其中当所述灯具被所述无线充电装置充电时,所述接收模块与所述发射模块之间的间隔大于等于2mm。
根据本发明的一个实施例,所述灯具的所述接收模块相对于所述磁吸金属单元的位置等同于所述发射模块相对于所述磁吸单元的位置,其中所述磁吸单元通过吸附所述磁吸金属单元,而使得接收模块对位于所述发射模块。
通过对随后的描述和附图的理解,本发明进一步的目的和优势将得以充分体现。
本发明的这些和其它目的、特点和优势,通过下述的详细说明,附图和权利要求得以充分体现。
附图说明
图1A是根据本发明的一较佳实施例的一无线充电座的示意图。
图1B是根据本发明的上述较佳实施例的所述无线充电座的应用示意图。
图2A是根据本发明的另一较佳实施例的一无线充电座的示意图。
图2B是根据本发明的另一较佳实施例的一无线充电座的示意图。
图3是根据本发明的另一较佳实施例的一无线充电座的示意图。
图4A是根据本发明的另一较佳实施例的一无线充电座的示意图。
图4B是根据本发明的上述较佳实施例的所述无线充电座的应用示意图。
图5A是根据本发明的另一较佳实施例的一无线充电座的示意图。
图5B是根据本发明的上述较佳实施例的所述无线充电座的应用示意图。
图6是根据本发明的另一较佳实施例的一无线充电座的示意图。
图7A是根据本发明的一较佳实施例的一无线充电座的制造示意图。
图7B是根据本发明的一较佳实施例的一无线充电座的制造示意图。
图8A是根据本发明的第一较佳实施例的一无线充电装置的一视角的整体示意图。
图8B是根据本发明的第一较佳实施例的一无线充电装置的另一视角的整体示意图。
图9是根据本发明上述较佳实施例的所述无线充电装置的分解示意图。
图10是根据本发明上述较佳实施例的所述无线充电装置的一磁吸装置的示意图。
图11是根据本发明上述较佳实施例的所述无线充电装置的一充电主体的剖面示意图。
图12A是根据本发明上述较佳实施例的所述无线充电装置的另一可选实施方式的示意图。
图12B是根据本发明上述较佳实施例的所述无线充电装置的磁吸状态图。
图12C是根据本发明上述较佳实施例的所述无线充电装置的非磁吸状态示意图。
图13是根据本发明上述较佳实施例的所述无线充电装置的另一可选实施方式的示意图。
图14是根据本发明上述较佳实施例的所述无线充电装置的上述可选实施方式的一磁吸装置的示意图。
图15是根据本发明上述较佳实施例的带有所述无线充电装置的一照明系统的整体示意图。
图16A是根据本发明上述较佳实施例的所述照明系统的一灯具的整体示意图。
图16B是根据本发明上述较佳实施例的所述照明系统的所述灯具的另一视角的示意图。
图16C是根据本发明上述较佳实施例的所述照明系统的所述灯具的爆炸示意图。
图17A是根据本发明上述较佳实施例的所述照明系统的一充电场景示意图, 其示出了所述无线充电装置被安装于墙面时对所述灯具充电。
图17B是根据本发明上述较佳实施例的所述照明系统的一充电场景示意图,其示出了所述灯具与无线充电装置的定位连接。
图17C是根据本发明上述较佳实施例的所述照明系统的另一充电场景示意图,其示出了所述灯具从所述无线充电装置的分离过程。
具体实施方式
以下描述用于揭露本发明以使本领域技术人员能够实现本发明。以下描述中的优选实施例只作为举例,本领域技术人员可以想到其他显而易见的变型。在以下描述中界定的本发明的基本原理可以应用于其他实施方案、变形方案、改进方案、等同方案以及没有背离本发明的精神和范围的其他技术方案。
本领域技术人员应理解的是,在本发明的揭露中,术语“纵向”、“横向”、“上”、“下”、“前”、“后”、“左”、“右”、“竖直”、“水平”、“顶”、“底”、“内”、“外”等指示的方位或位置关系是基于附图所示的方位或位置关系,其仅是为了便于描述本发明和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此上述术语不能理解为对本发明的限制。
可以理解的是,术语“一”应理解为“至少一”或“一个或多个”,即在一个实施例中,一个元件的数量可以为一个,而在另外的实施例中,该元件的数量可以为多个,术语“一”不能理解为对数量的限制。
参考附图1A和附图1B所示,是根据本发明的一较佳实施例的一无线充电设备1000被阐明。所述无线充电设备1000包括一无线充电座1和一照明装置2,其中所述无线充电座1能够向所述照明装置2以无线充电的方式充电。当所述照明装置2被放置在所述无线充电座1或者是所述照明装置2被保持和所述无线充电座1在一定的距离范围内,所述无线充电座1就可以为待充电的所述照明装置2充电。
值得一提的是,当所述无线充电座1不仅可以为一种类型的所述照明装置2提供充电服务,还可以为多种尺寸甚至是多种类型的所述照明装置2提供充电服务。
当不同的所述照明装置2被放置在所述无线充电座1时,所述无线充电座1 不仅能够为所述照明装置2充电,还可以对于所述照明装置2起到定位作用,以保持所述无线充电座1和所述照明装置2的相对位置,从而保证所述无线充电座1和所述照明装置2之间的输电效率。
也就是,对于不同尺寸甚至是不同类型的所述照明装置2,所述无线充电座1可以在为其充电时通过定位的方式保证两者间的输电效率。
所述无线充电座1可以提供多个磁吸位点,以适配于不同尺寸的所述照明装置2,以使得所述照明装置2和所述无线充电座1可以相对定位。
具体地说,所述无线充电座1包括一充电座体10、一发射线圈20、至少一导向通道30以及至少一定位件40,其中所述充电座体10用于存储电能,所述发射线圈20被可供电地连接于所述充电座体10,以将存储于所述充电座体10内的电能传递至所述照明装置2。所述导向通道30位于所述充电座体10,并且位于所述发射线圈20的周围。所述定位件40位于所述导向通道30。所述定位件40能够和所述照明装置2相互磁吸以将所述照明装置2定位于所述充电座体10。所述磁吸位点位于所述定位件40。
所述充电座体10可以包括一壳体11和一蓄电部12,其中所述壳体11具有一收纳腔110,所述蓄电部12被容纳于所述收纳腔110。可选地,所述发射线圈20被容纳于所述收纳腔110。可以理解的是,所述充电座体10可以利用所述蓄电部12内的电能给所述照明装置2充电,所述充电座体10也可以利用外接的电源给所述照明装置2充电。
所述照明装置2包括一照明装置主体21、一接收线圈22以及至少一定位配合件23,其中所述照明装置主体21可以包括一发光部211和一供电部212,其中所述供电部212被可充电地连接于所述发光部211,所述发光部211用于发光,所述接收线圈22被可供电连接于所述供电部212,以将来自所述无线充电座1的电能传递至所述照明装置2主体的所述供电部212。
所述照明装置2的所述定位配合件23用于和所述无线充电座1的所述定位件40配合,从而将所述照明装置2和所述无线充电座1固定。
所述定位配合件23被设置于所述照明装置主体21。所述定位配合件23的至少部分可以被暴露在外,也可以是整个所述定位配合件23被包埋于所述照明装置主体21。
所述定位件40被设置于所述无线充电座体11。所述定位件40的至少部分被 可暴露在外,也可以是整个所述定位件40被包埋于所述无线充电座体11。
所述发射线圈20被设置于所述无线充电座体11。所述发射线圈20的至少部分可以被暴露在外,也可以是整个所述发射线圈20被包埋于所述无线充电座体11。
所述接收线圈22被设置于所述照明装置主体21。所述接收线圈22的至少部分可以被暴露在外,也可以是整个所述接收线圈22被包埋于所述照明装置主体21。
优选地,所述发射线圈20和所述接收线圈22分别被包埋于所述无线充电座体11和所述照明装置主体21,以减少外部水分或者是灰尘对于所述发射线圈20和所述接收线圈22之间的传输造成干扰。
所述定位件40位于所述发射线圈20的周围,所述定位配合件23位于所述接收线圈22的周围。所述定位件40和所述定位配合件23通过磁吸作用相互吸引从而固定所述无线充电座1和所述照明装置2的相对位置。
值得注意的是,所述定位件40和所述发射线圈20保持一定的必要间隔距离,所述定位配合件23和所述接收线圈22保持一定的必要间隔距离,以避免所述定位件40和所述定位配合件23之间的磁吸作用或者是所述定位件40周围的磁场或者是所述定位配合件23的磁场对于所述发射线圈20和所述接收线圈22之间的传输效率造成影响。
可以理解的是,所述定位件40和所述定位配合件23可以是磁性材料制成的,或者是,所述定位件40是磁性材料制成的,所述定位配合件23是可以被磁性材料吸附的金属材料制成的,比如说铁,或者是所述定位配合件23是磁性材料制成的,所述定位件40是可以被磁性材料吸附的金属材料制成的,比如说铁。
对于所述照明装置2而言,所述照明装置2的所述接收线圈22和所述定位配合件23的距离是固定的。对于所述无线充电座1而言,所述无线充电座1的所述定位件40的位置能够配合于所述定位配合件23和所述接收线圈22之间的距离的不同而变化。比如说当所述照明装置2的尺寸不同时,所述接收线圈22和所述定位配合件23之间的距离也可能是不同的。当所述照明装置2的类型不同时,所述接收线圈22和所述定位配合件23之间的距离也可能是不同的。在这些情况下,所述无线充电座1仍然可以在为所述照明装置2充电的同时通过所述定位件40的移动以准确定位所述照明装置2。
以所述定位件40和所述定位配合件23的数目分别为二个进行举例说明。所述导向通道30的数目也是二,所述导向通道30可以形成于所述无线充电座1,比如说通过所述开孔,挖槽的方式。所述导向通道30也可以被安装于所述无线充电座1。
所述导向通道30具有一导向槽300,其中所述定位件40被容纳于所述导向槽300,并且所述定位件40在所述导向槽300的位置可以根据所述定位配合件23和所述接收线圈22的距离适应地变化,以在所述接收线圈22对准于所述发射线圈20时,所述定位配合件23和所述定位件40相互吸附从而定位所述无线充电座1和所述照明装置2。通过所述定位件40在所述导向槽300内位置的改变,所述无线充电座1可以提供多个所述磁吸位点。
在本实施例中,所述定位件40被可沿着所述导向槽300移动地安装于所述导向通道30。两个所述定位件40分别位于所述发射线圈20的两侧,两个所述导向通道30分别位于所述发射线圈20的两侧。一所述导向通道30被安装至少一个所述定位件40。
进一步地,所述导向通道30是一直线型导向通道30,可以理解的是,“直线型”是指所述导向通道30的延伸方向大致处于一直线方向。在本发明另一些实施例中,所述导向通道30的所述导向槽300也可以是曲线形状的。
两个所述导向通道30,为了以示区分,称为第一导向通道30A和第二导向通道30B,其中所述第一导向通道30A和所述第二导向通道30B位于所述发射线圈20的周围。
所述第一导向通道30A所在直线和所述第二导向通道30B所在直线主要有三种关系,一种是所述第一导向通道30A所在直线和所述第二导向通道30B所在直线相互平行,一种是所述第一导向通道30A所在直线和所述第二导向通道30B所在直线相互重叠,另一种是所述第一导向通道30A所在直线和所述第二导向通道30B所在直线相互交叉。
以所述第一导向通道30A所在直线和所述第二导向通道30B所在直线相互重叠为例进行说明。
所述第一导向通道30A和所述第二导向通道30B分别位于所述发射线圈20的两侧,并且所述第一导向通道30A和所述第二导向通道30B位于同一轴线,并且所述发射线圈20位于所述第一导向通道30A和所述第二导向通道30B的中 间位置。
所述导向通道30具有一第一端部31和一第二端部32,其中所述导向通道30的所述第一端部31相对于所述第二端部32靠近于所述发射线圈20。值得注意的是,所述第一端部31可以和所述发射线圈20保持一定的距离以避免所述定位件40移动到所述导向通道30的所述第一端部31时,对于所述发射线圈20的工作效率造成影响。
对于所述照明装置2而言,所述照明装置2的所述定位配合件23的数目是二,并且分别位于所述接收线圈22的两侧,两个所述定位配合件23和所述接收线圈22位于同一直线。所述定位配合件23和所述接收线圈22之间的距离可以是1cm。当所述照明装置2被安装于所述无线充电座1,以使所述接收线圈22对准于所述发射线圈20,所述照明装置2的所述定位配合件23对准于所述导向通道30。
位于所述导向通道30内的所述定位件40在所述定位件40和所述定位配合件23的相互作用下移动至和所述定位配合件23距离最短以使两者间的吸力最大。
比如说,原先所述定位件40和所述发射线圈20的距离为2cm,所述定位件40在所述定位配合件23的作用下沿着所述导向槽300移动中至和所述发射线圈20的距离为1cm以靠近于所述定位配合件23。
位于所述发射线圈20和所述接收线圈22两侧的所述定位件40和所述定位配合件23可以减少所述无线充电座1和所述照明装置2之间的相对移动,尤其是在垂直于所述导向通道30所在直线方向的移动。对于沿着所述导向通道30所在直线方向的移动,可以通过在所述导向通道30的所述导向槽300内设置卡合件的方式来限制所述定位件40的移动,从而限制所述无线充电座1和所述照明装置2之间的相对移动。比如说所述第一导向通道30A的所述第一端部31靠近于所述发射线圈20,所述第二导向通道30B的所述第一端部31靠近于所述发射线圈20。可以对于位于所述第一导向通道30A的所述定位件40而言,可以在所述定位件40靠近所述第一导向通道30A的所述第二端部32一侧设置一卡合件以限制所述定位件40朝向所述第一导向通道30A的所述第二端部32移动。对于位于所述第二导向通道30B的所述定位件40而言,可以在所述定位件40靠近所述第二导向通道30B的所述第二端部32一侧设置一卡合件以限制所述定位件40朝向所述第二导向通道30B的所述第二端部32移动,从而限制所述照明 装置2和所述无线充电座1沿着所述导向槽300方向的移动。所述卡合件可以被实施为一螺钉,所述螺钉伸入所述导向槽,并且所述螺钉能够被旋转以改变伸入所述导向槽的深度,从而使得所述螺钉能够在所述导向槽内移动以随着所述定位件40位置的变化对于所述定位件40进行限位。
值得注意的是,所述第一导向通道30A的所述第一端部31和所述发射线圈20保持一定的距离以避免所述定位件40移动到所述第一导向通道30A的所述第一端部31从而对于所述发射线圈20的工作效率造成影响。类似地,所述第二导向通道30B的所述第二端部32和所述发射线圈20保持一定的距离以避免所述定位件40移动到所述第二导向通道30B的所述第二端部32从而对于所述发射线圈20的工作效率造成影响。
在本发明的另一些实施例中,所述第一导向通道30A所在直线和所述第二导向通道30B所在直线相互平行,可参考附图2A所示。在本发明的另一些实施例中,所述第一导向通道30A和所述第二导向通道30B所在直线相互交叉,可参考附图2B所示。所述第一导向通道30A和所述第二导向通道30B的位置、长度以及宽度可以根据需求被设置。
值得注意的是,所述无线充电座1的所述定位件40可以是电磁材料制成的,当所述定位件40被通电时,所述定位件40可以和所述照明装置2的所述定位配合件23相互磁吸,当所述定位件40没有被通电时,所述定位件40和所述照明装置2的所述定位配合件23无法相互磁吸。
因此,当所述照明装置2需要被放置于所述无线充电座1充电时,所述定位件40可以被通电以使用,当所述无线充电座1不需要被使用时,所述定位件40没有磁性,从而有利于减少工作环境中铁屑等杂志在所述无线充电座1位置的吸附。
参考附图3所示,是根据本发明的上述较佳实施例的所述无线充电设备1000的一变形实施例。
在本实施例中,所述无线充电座1的所述导向通道30的数目为四,所述定位件40的数目也为四,所述照明装置2的所述定位配合件23的数目也为四。
为了方便区别,四个所述导向通道30被命名为一第一导向通道30A、一第二导向通道30B、一第三导向通道30C以及一第四导向通道30D。优选地,每一所述导向通道30和所述发射线圈20保持一定的距离,以避免被容纳于所述导向 通道30的所述定位件40影响到所述发射线圈20的工作效率。
所述第一导向通道30A、所述第二导向通道30B、所述第三导向通道30C以及所述第四导向通道30D环绕于所述发射线圈20,并且自靠近于所述发射线圈20的一位置朝外延伸而成。
可选地,所述第一导向通道30A和所述第三导向通道30C位于第一直线,所述第二导向通道30B和所述第四导向通道30D位于第二直线,其中所述第一直线和所述第二直线相互垂直,所述发射线圈20位于所述第一导向通道30A和所述第三导向通道30C的中间位置,也位于所述第二导向通道30B和所述第四导向通道30D的中间位置。
每一所述导向通道30容纳有一个所述定位件40。相应地,所述照明装置2的所述定位配合件23的数目是四,并且四个所述定位配合件23到所述接收线圈22的距离之间的夹角为90度。
所述照明装置2的所述接收线圈22和所述定位配合件23之间的距离为5cm。当所述照明装置2的所述接收线圈22对准于所述发射线圈20,并且所述照明装置2的所述定位配合件23对准于所述无线充电座1的所述导向通道30。所述导向通道30内的所述定位件40自动朝向所述定位配合件23移动,从而所述照明装置2可以被固定于所述无线充电座1。
参考附图4A和附图4B所示,是根据本发明的上述较佳实施例的所述无线充电设备1000的一变形实施例。
在本实施例中,所述无线充电座1的所述导向通道30的所述导向槽300是一螺旋形结构。所述发射线圈20位于所述导向槽300的中间位置,所述导向槽300相当于围绕所述发射线圈20不断地朝外螺旋式旋转而成。
以所述定位件40的数目为二进行举例说明,所述定位件40分别被可沿着所述导向槽300移动地容纳于所述导向槽300。所述导向槽300可以包括一第一部分导向槽300、一第二部分导向槽300、第三部分导向槽300至第n部分导向槽300。所述导向槽300的各个部分到所述发射线圈20的距离不同。所述第一部分导向槽300相对于其他部分更加靠近于所述发射线圈20,所述第二部分导向槽300相对于除了所述第一部分导向槽300以外所述导向槽300部分更加靠近所述发射线圈20。以此类推。
通过螺旋式的所述导向槽300,所述定位件40不仅可以在远离或者靠近所述 发射线圈20,还可以环绕所述发射线圈20移动以适应不同类型的所述照明装置2。
举例说明,在安装所述照明装置2于所述无线充电座1之前,两个所述定位件40位于所述第一部分导向槽300,并且分别位于所述发射线圈20两侧。所述第一部分导向槽300到所述发射线圈20的大致距离为1cm,所述第二部分导向槽300到所述发射线圈20的大致距离为2cm,所述第三部分导向槽300到所述发射线圈20的大致距离为3cm。
对于所述照明装置2而言,两个所述定位配合件23被对称地设置于所述接收线圈22的两侧,一个所述定位配合件23到所述接收线圈22的距离为3cm。
当所述照明装置2被放置于所述无线充电座1充电,所述发射线圈20被对准于所述接收线圈22。所述无线充电座1的所述定位件40沿着所述导向槽300移动,自所述第一部分导向槽300移动至所述第三部分导向槽300,并且被对准于所述定位配合件23,从而使得所述无线充电座1的所述发射线圈20始终能够对准于所述照明装置2的所述接收线圈22。
可以理解的是,所述定位件40可以在所述定位配合件23的吸力下自动朝向所述定位配合件23移动,也可以是用户协助所述定位件40移动至对准于所述定位配合件23。当然,所述定位件40和所述定位配合件23并非一定要完全对准,所述定位件40和所述定位配合件23在一定距离范围内都可以产生吸力。
参考附图5A和附图5B所示,是根据本发明的上述较佳实施例的所述无线充电设备1000的一变形实施例。
本实施例和上述实施例不同之处在所述定位件40被安装于所述导向通道30,并且所述定位件40能够被可选择地安装于所述导向通道30的多个位置。用户可以根据需求选择所述定位件40在所述导向通道30的位置,从而有利于将不同尺寸的所述照明装置2和所述无线充电座1之间的固定。
可以理解的是,所述照明装置2的类型可以是多变的,比如说一头灯、提灯、便携灯、户外灯等各种类型。
可以理解的是,所述无线充电座1的所述充电座体10的一表面优选为平面,所述照明装置2的所述照明装置主体21的一表面优选为平面,以有利于所述无线充电座1和所述照明装置2的相互贴合。
在本实施例中,所述导向通道30的至少部分是由弹性材料制成的,所述导 向槽300被暴露在外,用户可以直接将所述定位件40安装于所述导向通道30。所述定位件40被过盈配合地安装于所述导向通道30。
所述导向通道30具有一定的形变能力以使所述定位件40可以被相对固定地安装于所述导向通道30。用户在施加较大作用力的情况下也可以将所述定位件40从所述导向通道30的某一位置拆卸,然后安装所述定位件40于所述导向通道30的目标位置,以对准于所述照明装置2的所述定位配合件23。
所述导向通道30的制作材料可以是但是并不限制于橡胶或者是树脂。
参考附图6所示,是根据本发明的所述无线充电座1的另一较佳实施方式被阐明。所述无线充电座1包括所述充电座体10、所述发射线圈20、所述导向通道30以及所述定位件40。
所述定位件40填充于所述导向通道30的所述导向槽300,并且所述定位件40被固定安装于所述导向通道30。
也就是说,所述定位件40具有一定的长度以使所述无线充电座1可以为不同规格的所述照明装置2提供定位。
进一步地,所述定位件40具有一磁吸面,所述定位配合件23具有一磁吸配合面,当所述照明装置2被放置于所述无线充电座体1充电,所述定位配合件23的所述磁吸配合面和所述定位件40的所述磁吸面面对面。所述定位件40的所述磁吸面大于所述定位配合件23的所述磁吸配合面,从而所述定位件40可以为所述定位配合件23提供多个所述磁吸位点。
具体地说,当所述照明装置2被安装于所述无线充电座1,所述照明装置2的所述定位配合件23和所述定位件40可以相互磁吸。当另一所述照明装置2被安装所述无线充电座1,所述照明装置2的两个所述定位配合件23之间的间距大于前一所述照明装置2的间距,由于所述定位件40具有一定的长度,因此这一所述照明装置2依然可以和所述无线充电座1相互磁吸。
根据本发明的另一方面,参考附图7A和附图7B,本发明提供了所述无线充电座1的一制造方法,其中所述制造方法包括如下步骤:
提供所述充电座体10,其中所述发射线圈20被设置于所述充电座体10;
调整放置于所述充电座体10的所述定位件40和所述发射线圈20的相对距离;
通过一检测设备检测所述发射线圈20向所述照明装置2的输电效率以确定 所述定位件40和所述发射线圈20的必要间隔距离;以及
安装所述定位件40于所述充电座体10的所述导向通道30并且保持于所述定位件40和所述发射线圈20之间的距离不小于必要间隔距离,其中所述定位件40用于和所述照明装置2的所述定位配合件23相互磁吸。
具体地说,首先提供一充电座体10,其中所述发射线圈20可以事先被预置于所述充电座体10。优选地,所述发射线圈20位于所述充电座体10内部,以使所述发射线圈20能够被所述充电座体10保护。
所述发射线圈20也可以在确定所述定位件40和所述发射线圈20的相对位置后再被固定于所述充电座体10。
所述检测设备可以用于检测所述发射线圈20和所述照明装置2之间的传输效率。所述检测设备可以是一专门的设备,比如说磁通量检测设备,或者是可以通过对于同一所述照明装置2运输相同电量所需要的时间来确定所述定位件40和所述发射线圈20的必要间隔距离。
值得注意的是,当所述定位件40的数目是多个时,比如说第一定位件40A、第二定位件40B以及第三定位件40C,可以先放置所述第一定位件40A于所述充电座体10,然后检测所述发射线圈20的传输效率以确定所述第一定位件40A和所述发射线圈20的必要间隔距离或者是所述第一定位件40A相对于所述发射线圈20的可移动范围,然后再放置所述第二定位件40B于所述充电座体10,然后检测所述发射线圈20的传输效率以确定所述第二定位件40B和所述发射线圈20的必要间隔距离或者是所述第二定位件40B相对于所述发射线圈20的可移动范围。然后再放置所述第三定位件40C于所述充电座体10,然后检测所述发射线圈20的传输效率以确定所述第三定位件40C和所述发射线圈20的必要间隔距离或者是所述第二定位件40B相对于所述发射线圈20的可移动范围,
也就是说,对于多个所述定位件40进行逐个检测的方式来逐个确定每个所述定位件40和所述发射线圈20的必要间隔距离或者是所述定位件40相对于所述发射线圈20的可移动范围。
当所述定位件40的数目是多个时,也可以是同时将所述第一定位件40A、所述第二定位件40B以及所述第三定位件40C放置于所述充电座体10,然后分别或者是同时调整所述第一定位件40A、所述第二定位件40B以及所述第三定位件40C相对于所述发射线圈20的位置,从而确定所述第一定位件40A、所述 第二定位件40B以及所述第三定位件40C和所述发射线圈20的必要间隔距离或者是相对于所述发射线圈20的可移动范围。
参考附图7B,在确定各个所述定位件40和所述发射线圈20的必要间隔距离之后,可以在所述充电座体10形成对应的所述导向通道30,其中所述定位件40被容纳于所述导向通道30的所述导向槽300。
所述导向通道30的位置和形状可以根据所述定位件40的形状、所述定位件40和所述发射线圈20的必要间隔距离以及用户的需要设置。所述导向通道30可以被安装于所述充电座体10,所述导向通道30也可以是通过开槽的方式形成于所述充电座体10。
所述导向通道30的所述导向槽300的大小可以基于所述定位件40的大小被设置,以避免所述定位件40较为容易地自所述导向槽300脱出。
值得注意的是,所述导向通道30靠近所述发射线圈20的一端到所述发射线圈20的距离可以不小于所述定位件40和所述发射线圈20的必要间隔距离,以避免所述定位件40和所述发射线圈20过于接近。所述导向通道30靠近所述发射线圈20的一端到所述发射线圈20的距离也可以小于所述定位件40和所述发射线圈20的必要间隔距离,然后设置所述卡合件33于所述导向槽300,以限制所述定位件40朝向所述发射线圈20移动。
在本发明的一些实施例中,所述导向通道30可以在确定所述定位件40和所述发射线圈20之间的必要间隔距离之后形成于所述充电座体10。在本发明的另一些实施例中,所述导向通道30可以在确定所述定位件40和所述发射线圈20之间的必要间隔距离之前形成于所述充电座体10。
参考附图7A,比如说在调整所述定位件40和所述发射线圈20的相对位置的过程中,所述定位件40可以被安装于所述导向通道30,然后沿着所述导向通道30移动以确定所述定位件40和所述发射线圈20的必要间隔距离。如果当所述定位件40位于所述导向通道30靠近于所述发射线圈20一端时所述定位件40对于所述发射线圈20的传输效率的影响在正常范围内,那么无需再对于所述定位件40和所述发射线圈20的相对位置再进行调整。如果当所述定位件40位于所述导向通道30靠近于所述发射线圈20的一端时所述定位件40对于所述发射线圈20的传输效率的影响超出了正常范围,那么需要对于所述定位件40在所述导向通道30的可移动范围进行限定,比如说在所述导向通道30靠近于所述发射 线圈20的一端设置所述卡合件33,以使所述定位件40在必要间隔距离之外时无法继续朝向所述发射线圈20靠近。
值得注意的是,也可以通过一夹持装置分别夹持所述定位件40和所述发射线圈20,然后调整所述定位件40和所述发射线圈20的相对位置,以确定所述发射线圈20和所述定位件40的必要间隔距离,然后分别安装所述发射线圈20和所述定位件40于所述充电座体10,也可以是在所述发射线圈20和所述定位件40周围形成所述充电座体10的一壳体11,然后安装于所述充电座体10的所述蓄电部12于所述壳体11。
所述充电座体10的所述壳体11可以一体成型于所述发射线圈20。
参照本发明说明书附图之图8A至图15所示,依照本发明第一较佳实施例的一无线充电照明系统在接下来的描述中被阐明。所述无线充电照明系统包括一无线充电装置810和一灯具820,其中所述灯具820可被吸附于所述无线充电装置810,并且在所述无线充电装置810通电的情况下,为所述灯具820充电。所述灯具820被所述无线充电装置810吸附,藉由所述无线充电装置810对所述灯具820充电。所述无线充电装置810可被安装或放置在一倾斜表面或垂直表面,通过所述无线充电装置810对所述灯具820的吸附作用保持所述灯具820和所述无线充电装置810的相对位置稳定,从而提高所述无线充电照明系统的充电稳定性。简言之,所述无线充电装置810可以被安装在墙面、倾斜桌面、或者其他不规则形状的表面,其中所述灯具820被吸附于所述无线充电装置810的表面,藉由所述无线充电装置810对所述灯具820无线地充电。
如图8A至图11所示,所述无线充电装置810包括一充电主体811和至少一磁吸装置812,其中所述磁吸装置812被设置于所述充电主体811,藉由所述磁吸装置812吸附所述灯具820于所述充电主体811,其中所述充电主体811在通电情况下无线传输电能至所述灯具820。所述磁吸装置812被可活动地设置于所述充电主体811,通过调整所述磁吸装置812,便于所述灯具820吸附于所述充电主体811和便于所述灯具820与所述充电主体811分离。在本发明的该优选实施例中,所述磁吸装置812被可转动地设置于所述充电主体811,通过转动所述磁吸装置812,调整所述磁吸装置812与所述灯具820的相对位置,从而便于所述灯具820吸附或分离于所述充电主体811。
相应地,所述磁吸装置812具有一磁吸面8121、至少一非磁吸面8122、以 及一旋转轴8123,其中所述磁吸装置812的所述磁吸面8121具有磁性吸附作用,其能够吸附铁、钴、镍等磁吸金属材料,所述非磁吸面8122对所述磁性材料不具有吸附作用。所述磁吸装置812被转动而绕所述旋转轴8123转动,其中所述磁吸装置812的所述磁吸面8121和所述非磁吸面8122基于所述旋转轴8123转动。当所述磁吸面8121朝向于所述灯具820时,即所述磁吸面8121朝向于所述充电主体811的充电方向,所述灯具820可被所述磁吸装置812吸附,而贴合于所述充电主体811的所述充电表面。当所述磁吸装置812被旋转至所述非磁吸面8122朝向于所述灯具820时,即所述非磁吸面8122朝向于所述充电主体811的充电方向时,由于所述非磁吸面8122不具有磁吸作用,所述灯具820可与所述充电主体811的表面分离。
具体地,参考附图8A至图11所述磁吸装置812的所述磁吸面8121和所述非磁吸面8122相互对应,从而驱动所述磁吸装置812绕着所述旋转轴8123转动的方式可以选择性地使所述磁吸装置812的所述磁吸面8121和所述非磁吸面8122中的一个面朝向所述灯具820,其中当所述磁吸装置812的所述磁吸面8121朝向所述灯具820时,所述灯具820可以被所述磁吸装置812吸附于所述无线充电装置810,相应地,当所述磁吸装置812的所述非磁吸面8122朝向所述灯具820时,所述灯具820于所述无线充电装置810之间的磁性吸附力消失,以方便地将所述灯具820从所述无线充电装置810分离。
值得一提的是,驱动所述磁吸装置812绕着所述旋转轴8123转动的方式在本发明的所述照明系统中不受限制,例如通过手动驱动所述磁吸装置812的方式可以驱动所述磁吸装置812绕着所述旋转轴8123做相对于所述无线充电装置810的转动,或者通过一个驱动电机驱动所述磁吸装置812的方式可以驱动所述磁吸装置812绕着所述旋转轴8123做相对于所述无线充电装置810的转动。
所述磁吸装置812进一步包括至少一磁吸单元8124和一承载装置8125,其中所述磁吸单元8124被设置于所述承载装置8125,所述承载装置8125基于所述旋转轴8123转动。所述磁吸单元8124被邻近地设置于所述磁吸面8121。优选地,所述磁吸单元8124被嵌入至所述承载装置8125,藉由所述磁吸单元8124在所述承载装置8125的一个表面形成所述磁吸面8121,其中所述承载装置8125对应于所述磁吸面8121的反面形成所述非磁吸面8122。可以理解的是,通过所述磁吸单元8124的位置可识别出所述磁吸装置812的所述磁吸面8121和所述非 磁吸面8122的位置。
所述磁吸单元8124为永磁材料的磁性元件,比如磁铁、铝镍钴系永磁合金、铁铬钴系永磁合金、永磁铁氧体、稀土永磁材料和复合永磁材料等。可以理解的是,所述磁吸单元8124的种类的类型在此仅仅作为示例性的,而非限制,因此,所述磁吸单元8124还可被实施为一电磁装置。优选地,在本发明的该优选实施例中,所述磁吸单元8124被嵌入至所述承载装置8125,藉由所述磁吸单元8124的上表面和所述承载装置8125的一个表面共同形成所述磁吸装置812的所述磁吸面8121。所述承载装置8125屏蔽所述磁吸单元8124的磁性,从而在所述承载装置8125的反面形成所述磁吸装置812的所述非磁吸面8122。
所述磁吸装置812进一步包括至少一旋转锁扣8126,其中所述旋转锁扣8126控制所述承载装置8125的转动。所述磁吸装置812的所述旋转轴8123被可制动地连接至所述旋转锁扣8126,藉由所述旋转锁扣8126制动所述旋转轴8123,从而锁定所述承载装置8125,防止所述承载装置8125旋转。优选地,所述旋转锁扣8126被设置于所述充电主体811,当所述旋转锁扣8126被按压时,所述旋转锁扣812对所述旋转轴8123停止制动,所述承载装置8125可被旋转,以调整所述磁吸面8121和所述非磁吸面8122的位置。
优选地,在本发明的该优选实施例中,所述磁吸装置812的所述磁吸单元8124的数量为两个或两个以上,其中所述磁吸单元8124被相互间隔地设置,藉由所述磁吸单元8124对所述灯具820的位置进行定位,以便所述灯具820与所述无线充电装置810对位设置,从而提高所述无线充电装置810对所述灯具820的充电效率。此外,通过增加所述磁吸单元8124的数量,增加所述磁吸装置812的所述磁吸面8121与所述灯具820之间的吸附作用力,以便所述无线充电装置810在充电过程中稳定地保持所述灯具820的位置。
如图8至图11所示,所述充电主体811包括一壳体8111、至少一发射模块8112、以及一电源接口8113、以及一线路板8114,其中所述发射模块8112通过所述电源接口8113电连接于一外接电源。所述发射模块8112被设置于所述壳体8111,所述发射模块8112被固定于所述壳体8111,所述发射模块8112基于所述壳体8111向所述灯具820发射充电的电磁信号。所述磁吸装置812被可活动地设置于所述充电主体811的所述壳体8111,其中所述壳体8111包括一上壳体81111、一下壳体81112以及由所述上壳体81111和所述下壳体81112形成的一安 装槽81113,其中所述壳体8111将所述磁吸装置812可活动地保持在所述安装槽81113中。优选地,所述安装槽81113被形成于所述壳体8111的一个侧边的中间位置。所述磁吸装置812被所述壳体8111支撑,在所述安装槽81113中转动。值得一提的是,所述磁吸装置812被转动时,所述磁吸装置812在所述安装槽81113内旋转,即所述磁吸装置812在旋转时不会超出所述壳体8111的底边。
值得一提的是,所述充电主体811的所述壳体8111具有一上表面81117和一下表面81118,其中所述上表面81117位于所述上壳体8111的上端,所述下表面81118被形成于所述下壳体8112的下侧。当所述磁吸装置812在所述安装槽81113内转动时,所述磁吸装置812的边缘不超过所述壳体8111的所述下表面81118。
所述发射模块8112被设置于所述壳体8111的所述上壳体81111,优选地,所述发射模块8112被贴附于所述上壳体81111的内侧,以使得当所述灯具820充电时,所述发射模块8112靠近于所述灯具820,提高所述无线充电装置810的充电效率。所述发射模块8112包括至少一无线发射线圈,其中所述无线发射线圈电连接于所述线路板8114。值得一提的是,所述发射模块8112与所述磁吸装置812的距离大于等于87.85mm,避免所述无线充电装置810的所述发射模块8112在工作过程中受到所述磁吸装置812的磁场影像,以利于所述无线充电装置810的工作稳定。
所述壳体8111具有一容置空间81114,其中所述壳体8111的所述上壳体81111和所述下壳体81112共同形成所述容置空间81114,其中所述发射模块8112和所述线路板8114被所述壳体8111保持在所述容置空间81114。所述壳体8111进一步具有至少两个轴孔81115,其中所述旋转轴8123通过所述轴孔81115将所述磁吸装置812可转动地设置于所述壳体8111。
所述壳体8111进一步设有至少一安装孔81116,其中所述安装孔81116贯穿于所述壳体8111的所述上壳体81111和所述下壳体81112,通过所述安装孔81116可将所述无线充电装置安装于一墙体表面、桌椅等位置。可以理解的是,在本发明的该优选实施例中,所述无线充电装置810可被固定地安装于墙壁,其中所述无线充电装置810的所述磁吸装置812可通过磁吸作用吸附被充电的所述灯具820于所述无线充电装置810的表面。
所述线路板8114通过所述电源接口8113连接于一外部电源,和将所述外部电源的电能传输至所述发射模块8112,以供所述发射模块8112将外部电源的电 能通过无线传输的方式传输至所述灯具820。值得一提的是,在本发明的该优选实施例中,所述无线充电装置810通过电磁感应的方式由所述发射模块8112将电能传输至所述灯具820,或者藉由所述发射模块8112以磁共振的方式将电能传输至所述灯具820。在本发明中,所述无线充电装置810的电能传输的方式在此仅仅作为示例性的,而非限制。
如图9至图11所示,所述无线充电装置810进一步包括至少一安装单元813,其中所述安装单元813将所述无线充电装置810的所述充电主体811安装于一被安装物,比如桌面、铁板、工作台等。优选地,所述安装单元813通过吸附或贴附的方式安装所述无线充电主体811于所述被安装物。也就是说,所述安装单元813可以被实施为一胶粘元件或者一磁吸附元件。优选地,在本发明的该优选实施例中,所述安装单元813为一磁铁,其中所述安装单元813被设置于所述充电主体811的所述壳体8111,藉由所述安装单元813以吸附的方式将所述充电主体811固定于一具有磁吸附性的桌面,比如铁质物体的表面。更优选地,所述安装单元813被嵌入至所述壳体8111的所述下壳体81112。
如图9至图11所示,所述无线充电装置810进一步包括至少一提示装置814,其中所述提示装置814通信地连接于所述充电主体811,其中所述提示装置814获取所述充电主体811的工作状态和基于所述充电主体811的工作状态提示操作人员。详细地说,当所述无线充电装置810为所述灯具820无线充电时,所述无线充电装置810处于充电状态,则所述提示装置814提示操作人员当前所述无线充电装置正在为所述灯具820充电。当所述灯具820充电完成后,所述提示装置814提示操作人员及时停止所述灯具820的充电过程,或取走已经被充电的所述灯具820。
详细地说,所述提示装置814进一步包括至少一警示灯8141和一蜂鸣器8142其中所述警示灯8141以灯光的方式提示操作人员所述灯具820的充电状态或所述无线充电装置810的工作状态。所述蜂鸣器8142以声音提示的方式提示操作人员当前所述无线充电装置810的工作状态。特别地,当所述灯具820充满电、所述无线充电装置810无法为所述灯具820充电、或者所述无线充电装置810工作异常时,所述提示装置814的所述警示灯8141或蜂鸣器8142提示操作人员,以便操作人员根据提示信息调整所述无线充电装置810、调整所述灯具820与所述无线充电装置810的相对位置、或从所述无线充电装置810的上方分离所述灯 具820。优选地,所述提示装置814被设置于所述壳体8111的所述上壳体81111。可以理解的是,所述提示装置814的所述警示灯8141和所述蜂鸣器8142的安装位置在此仅仅作为示例性质的,而非限制。
参照本发明说明书附图之图12A至图12C所示,依照本发明上述较佳实施例的所述无线充电照明系统的一无线充电装置810A的另一可选实施方式在接下来的描述中被阐明。所述无线充电装置810A包括一充电主体811A、一磁吸装置812A、至少一安装单元813A、以及至少一提示装置814A,其中所述磁吸装置812A被可活动地设置于所述充电主体811A,通过调整所述磁吸装置812A的位置,以便所述灯具820被所述磁吸装置812A吸附于所述充电主体811A的上表面,和便于所述灯具820与所述充电主体811A分离。值得一提的是,在本发明中,所述无线充电装置810A的所述安装单元813A和所述提示装置814A的结构和功能与上述第一较佳实施例的所述无线充电装置相同。
所述磁吸装置812A被设置于所述充电主体811A,并且所述磁吸装置812A可被驱动地在所述充电主体平行地移动或转动,通过调整所述磁吸装置812A的位置或转动角度吸附所述灯具820于所述充电主体811A和便于所述灯具820从所述充电主体分离。具体而言,所述充电主体811A包括一壳体8111A和至少一发射模块8112A、以及一电源接口8113A、以及一线路板8114A,其中所述发射模块8112A通过所述电源接口8113A电连接于一外接电源。所述充电主体811A的所述壳体8111A具有一安装槽81113A,其中所述磁吸装置812A被以可相对移动的方式设置于所述安装槽81113A。
在本发明的该优选实施例中,通过移动所述磁吸装置812A在所述安装槽81113A中的位置调整所述磁吸装置812A的磁吸位置,从而调整所述灯具820被吸附的位置。所述磁吸装置812A具有一磁吸面8121A和至少一非磁吸面8122A,其中所述磁吸面8121A和所述非磁吸面8122A位于同一平面或者所述磁吸面8121A和所述非磁吸面8122A所在平面相互平行。通过按压的方式或者通过推动的方式推动所述磁吸装置812A在所述安装槽81113A内平行地移动或转动,从而使得所述磁吸装置812A的所述磁吸面8121A和所述非磁吸面8122A的相对于所述充电主体811A的位置变化。示例性地,所述磁吸装置812A的所述磁吸面8121A位于所述非磁吸面8122A的内侧。所述磁吸装置812A进一步包括一承载装置8125A和至少一磁吸单元8124A,其中所述磁吸单元8124A内 设置于所述磁吸装置812A的所述磁吸面8121A。可以理解的是,所述磁吸单元8124A所在的位置形成所述磁吸面8121A,远离所述磁吸单元8124A的位置形成所述磁吸装置812A的所述非磁吸面8122A。所述磁吸装置812A的所述承载装置8125A被所述壳体8111A保持在所述安装槽81113A中。
所述磁吸装置812A进一步包括至少一支撑元件8126A,其中所述支撑元件8126A被设置于所述壳体8111A的所述安装槽81113A,藉由所述支撑元件8126A支撑所述承载装置8125A,以保持所述磁吸装置812A的相对位置。当所述灯具820在所述无线充电装置810A充电时,所述支撑元件8126A支撑所述承载装置8125A在所述安装槽81113A的外侧开口位置,所述灯具820被所述磁吸装置812A的所述磁吸单元8124A吸引而贴附于所述充电主体810A的表面。优选地,所述磁吸装置812A的所述磁吸单元8124A的数量为至少两个,其中所述磁吸单元8124A被相互地间隔,通过至少两个相互间隔的所述磁吸单元8124A对所述灯具820的吸附作用,使得被充电的所述灯具820被对位地吸附在所述充电主体811A的所述壳体8111A。
值得一提的是,所述磁吸装置812A的所述承载装置8125A向外地突出于所述壳体8111A的所述安装槽81113A。使用者可通过按压的方式或推动的方式调整所述磁吸装置812A的所述承载装置8125A,以调整所述磁吸装置812A的所述磁吸面8121A和所述非磁吸面8122A相对于所述安装槽81113A的位置。
如图12C所示,按压或推动所述磁吸装置812A的所述承载装置8125A,其中所述磁吸装置812A的所述承载装置8125A被按压至所述安装槽81113A的内侧,其中所述磁吸面8121A和所述灯具820错位,从而减小所述磁吸装置812A对所述灯壳820的吸附作用,以便将所述灯具820与所述充电主体811A分离。优选地,所述支撑元件8126A被实施为一弹簧元件,其中所述弹簧元件被设置于所述安装槽81113A的内侧,藉由所述支撑元件8126A推动所述磁吸装置812A的所述承载装置8125A。
可以理解的是,在本发明的该优选实施例中,所述磁吸装置812A被以平行移动的方式设置在所述充电主体811A。本领域技术人员可以想到的是,所述磁吸装置812A还可以被实施为一拨盘装置。
参照本发明说明书附图之图13和图14所示,依照本发明上述较佳实施例的所述无线充电照明系统的一无线充电装置810的另一可选实施方式在接下来的 描述中被阐明。所述无线充电装置810包括一充电主体811、一磁吸装置812、至少一安装单元813、以及至少一提示装置814,其中所述磁吸装置812被可活动地设置于所述充电主体811,通过调整所述磁吸装置812的位置,以便所述灯具820被所述磁吸装置812吸附于所述充电主体811的上表面,和便于所述灯具820与所述充电主体811分离。值得一提的是,在本发明的该优选实施例中,所述充电主体811、所述安装单元813、以及所述提示装置814的结构和形状与上述第一较佳实施例相同,不同点在于所述磁吸装置812。所述充电主体811包括一壳体8111和至少一发射模块8112、以及一电源接口8113、以及一线路板8114,其中所述发射模块8112通过所述电源接口8113电连接于一外接电源。所述壳体8111进一步包括一上壳体81111和一下壳体81112,其中所述上壳体8111形成一安装槽81113,其中所述磁吸装置812被可活动地设置于所述安装槽81113。
详细地说,所述磁吸装置812可摆动地设置于所述充电主体811,其中所述充电主体811支撑所述磁吸装置812沿一转轴在所述充电主体811上下地摆动。所述磁吸装置812包括一旋转轴8123、一承载装置8125、以及至少一磁吸单元8124,其中所述旋转轴8123可转动地连接于所述壳体8111的所述上壳体81111。所述磁吸单元8124被嵌入至所述承载装置8125,并且所述承载装置8125携带所述磁吸单元8124绕所述旋转轴8123转动。当所述承载装置8125旋转至上方最高位置时,所述承载装置8125和所述磁吸单元8124的上表面平行于所述充电主体811。基于所述旋转轴8123向下地转动所述承载装置8125,藉由所述承载装置8125向下地移动所述磁吸单元8124,以使得所述磁吸单元8124远离所述充电主体811的上表面。
优选地,在本发明中,所述磁吸装置812中所述磁吸单元8124的数量为至少两个,其中所述磁吸单元8124被相互间隔地设置,藉由至少两个不同位置的所述磁吸单元8124对所述灯具820的磁吸作用,调整所述灯具820与所述无线充电装置810的相对位置,便于所述灯具820与所述无线充电装置810的准确对位,从而提高所述无线充电装置810对所述灯具820的充电效率。
因此,当所述灯具820被放置于所述充电主体811的上方时,所述磁吸装置812的所述磁吸单元8124吸引所述灯具820,以使所述灯具820贴附于所述壳体8111的所述上壳体81111。当分离所述灯具820与所述无线充电装置810时,通过按压所述承载装置8125的远端,使得所述承载装置8125携带所述磁吸单元 8124绕所述旋转轴8123转动,其中所述磁吸单元8124被旋转而远离所述灯具820,从而减小所述灯具820被吸引的磁力。
如图14所示,所述磁吸装置812进一步包括至少一支撑元件8126,其中所述支撑元件8126被设置于所述承载装置8125的下方,提供所述承载装置8125向上的支撑作用力,以使得承载装置8125支撑所述磁吸单元8124保持在靠近于所述充电主体811上表面的位置。优选地,所述支撑元件8126被实施为一弹簧元件。
如图15至图16C所示,所述无线充电照明系统的所述灯具820包括一灯具主体821和至少一磁吸金属单元822,其中所述磁吸金属单元822被设置于所述灯具主体821。可以理解的是,所述磁吸金属单元822能够被所述磁吸装置812的所述磁吸单元8124吸引,以便所述无线充电装置810通过所述磁吸金属单元822吸附所述灯具主体821。优选地,所述磁吸金属单元822被嵌入至所述灯具820的所述灯具主体821,以便减小所述无线充电装置810的所述发射模块8112与所述灯具主体821之间的距离。更优选地,所述磁吸金属单元822能够被所述磁吸单元8124吸引,但所述磁吸金属单元822本身不具有磁性,避免所述灯具820在被充电后,所述磁吸金属单元822具有磁性而吸引铁屑等杂物,从而影像所述灯具820的下次充电。所述磁吸金属人员822可以但不限于一铁块,铁金属合金块等能够被所述磁吸单元8124吸附的材料。
优选地,在本发明该优选实施例中,所述磁吸金属单元822的数量和所述无线充电装置810的所述磁吸单元8124的数量相同,即所述灯具820的所述磁吸金属单元822的数量为至少两个,并且所述磁吸金属单元822被间隔地设置。优选地,所述磁吸金属单元822的间隔距离与所述磁吸单元8124之间的间隔距离相同为H。当所述灯具820被放置于所述无线充电装置810时,所述磁吸金属单元822被对应地吸附于所述无线充电装置810的所述磁吸单元8124,其中所述磁吸单元8124与所述磁吸金属单元822上下对位,以使得所述无线充电装置810的所述磁吸装置812通过所述灯具820的所述磁吸金属单元822吸附于所述充电主体811的上方。
所述灯具主体821包括至少一光源8211、一灯具壳体8212、至少一接收模块8213以及至少一储能装置8214,其中所述光源8211被设置于所述灯具壳体8212,所述光源8211电气连接于所述储能装置8214,藉由所述储能装置8214 为所述光源8211提供工作电能。所述接收模块8213被设置于所述灯具壳体8212,当所述灯具820被放置于所述无线充电装置810时,所述灯具820的所述接收模块8213接收所述发射模块8112发射的电磁信号,并产生感应电流。所述接收模块8213电气连接于所述储能装置8214,所述接收模块8213产生的电能被存储至所述储能装置8214中。
值得一提的是,在本发明该优选实施例中,所述光源8211可以但不限于一LED灯具,其中所述光源8211的类型和结构在此仅仅作为示例性质的,而非限制。
所述灯具壳体8212包括一灯上壳82121、一灯下壳82122以及进一步由所述灯上壳82121和所述灯下壳82122形成的一灯体空间82123,其中所述接收模块8213和所述储能装置8214被所述灯具壳体8212保持于所述灯体空间82123。所述灯上壳82121和所述灯下壳82122密封地连接。
所述接收模块8213被贴附于所述灯具壳体8212的所述灯下壳82122的内侧,以使得当所述无线充电装置810为所述灯具820无线充电时,减少所述接收模块8212与所述发射模块8122之间的距离,从而提高所述无线充电装置810对所述灯具820的充电效率。优选地,所述接收模块8213相对于所述磁吸金属单元822的位置对应于所述发射模块8122相对于所述磁吸单元8124的相对位置,即当所述磁吸单元8124对位于所述磁吸金属单元822时,所述发射模块8122对位于所述接收模块8213。因此,可以通过所述磁吸单元8124与所述磁吸金属单元822的相对位置判断所述发射模块8122和所述接收模块8213是否对位。
当所述灯具820放置于所述无线充电装置810的上方充电时,所述无线充电装置810的各所述磁吸单元8124吸附所述灯具820的各所述磁吸金属单元822,以使得所述无线充电装置810的各所述磁吸单元8124对位于所述灯具820的各所述磁吸金属单元822,从而使得所述发射模块8122对位于所述接收模块8213。也就是说,沿所述无线充电装置810的充电的方向上,所述无线充电装置810通过磁吸作用吸附所述灯具820,以使得所述发射模块8122对位于所述接收模块8213相互对应,从而提高所述灯具820的充电效率。
值得一提的是,所述发射模块8122与所述接收模块8213之间的距离大于等于82mm。
值得一提的是,所述储能装置8214被实施为一具有充电和放电功能的电池 单元或电池组,其中所述储能装置8214存储所述接收模块8213产生的感应电能,以供所述光源8211发光。
所述光源8211包括一至少一发光单元82111和一光源支架82112,其中所述光源支架82112固定所述发光单元82111于所述壳体8212。优选地,所述发光单元82111被导热地连接于所述光源支架82112,藉由所述光源支架82112对所述发光单元82111在发光时产生的热量以热传到的方式散热,以便于降低所述发光单元82111的温度。值得一提的是,在本发明中,所述灯具820的具体结构和形状在此仅仅作为示例性质的,而非限制。
所述灯具820进一步包括一支架823,其中所述支架823被设置于所述灯具主体821,其中所述支架823支撑所述灯具主体821的照明。优选地,所述支架823被可活动地连接于所述灯具主体821的外侧,通过调整所述支架823的转动角度,调整所述灯具主体821的被摆放和支撑的角度。
如图17A至图17C示出了本发明的所述无线充电照明系统的使用方式和使用场景。所述无线充电装置810可被固定地安装于墙面、桌面、或者工作台的平面或斜面的任意角度位置;或者所述无线充电装置810可被吸附在铁质金属的表面。如图16B所示,所述当所述灯具820被放置于所述无线充电装置810充电时,所述无线充电装置810的所述磁吸装置812的被调整,以使所述磁吸装置812的所述磁吸面8121朝向于所述无线充电装置810的充电方向,或者朝向于所述灯具820。所述磁吸装置812被调整位置后,通过所述旋转锁扣8126锁定所述磁吸装置812,以便保持所述磁吸装置812的位置,防止在充电过程中,所述磁吸装置812被转动而与所述灯具820分离。
所述灯具820的所述磁吸金属单元822被所述无线充电装置810的所述磁吸单元8124对位地吸附,其中所述磁吸金属单元822与所述磁吸单元8124上下地对位。由于所述发射模块8112相对于所述磁吸单元8124的位置和所述接收模块8213相对于所述磁吸单元822的位置相同,则当所述磁吸金属单元822与所述磁吸单元8124对位后,所述发射模块812与所述接收模块8213上下地对位,以便所述发射模块812传输带有电能的电磁信号至所述接收模块8213,以供所述接收模块8213基于所述发射模块812发射的电磁信号产生感应电能。
当所述灯具820与所述无线充电装置810分离时,比如所述灯具820电能充满时,通过转动或旋转所述磁吸装置812,使得所述磁吸装置812的所述非磁吸 面8122朝向于所述灯具820。由于所述非磁吸面8122不具有磁性或者磁吸作用较小,其中所述灯具820产生的吸附作用力小,从而便于分离所述灯具820和所述无线充电装置810。
本领域的技术人员应理解,上述描述及附图中所示的本发明的实施例只作为举例而并不限制本发明。本发明的目的已经完整并有效地实现。本发明的功能及结构原理已在实施例中展示和说明,在没有背离所述原理下,本发明的实施方式可以有任何变形或修改。

Claims (65)

  1. 一无线充电座,用于向一照明装置供电,其中所述照明装置被设置有至少一个定位配合件,其中所述无线充电座包括一充电座体、一发射线圈以及具有多个磁吸位点,其中所述发射线圈被收容于所述充电座体,所述磁吸位点位于于所述充电座体,并且位于所述发射线圈的周围,当所述照明装置被放置于所述无线充电座,所述照明装置的一接收线圈被对准于所述无线充电座的所述发射线圈,所述定位配合件能够和所述磁吸位点中的至少一个相互磁吸。
  2. 根据权利要求1所述的无线充电座,其中所述定位件具有一磁吸面,所述定位配合件具有一磁吸配合面,其中所述磁吸面大于所述磁吸配合面,所述磁吸位点位于所述磁吸面。
  3. 根据权利要求2所述的无线充电座,其中所述发射线圈位于所述充电座体的中间位置,所述定位件的一端自所述发射线圈的周围朝向所述充电座体的周沿延伸而成。
  4. 根据权利要求1所述的无线充电座,其中所述无线充电座具有至少一导向槽和包括至少一定位件,其中所述磁吸位点位于所述定位件,其中所述导向槽位于所述充电座体并且位于所述发射线圈周围,所述定位件被能够移动地容纳于所述导向槽,当所述照明装置被放置于所述充电座体,所述定位件能够沿着所述导向槽移动以和所述照明装置的所述定位配合件相互磁吸。
  5. 根据权利要求4所述的无线充电座,其中所述定位件被可沿着所述导向槽移动地容纳于所述导向槽。
  6. 根据权利要求4所述的无线充电座,其中所述定位件被可拆卸地安装于所述充电座体的多个位置。
  7. 根据权利要求4至6任一所述的无线充电座,其中所述无线充电座进一步包括至少一导向通道,其中所述导向通道被设置于所述无线充电座,所述导向槽形成于所述导向通道。
  8. 根据权利要求5或6所述的无线充电座,其中所述导向槽是一直线型导槽,其中所述导向槽位于所述发射线圈的周围。
  9. 根据权利要求5或6所述的无线充电座,其中所述导向槽是一螺旋形导槽,围绕所述发射线圈朝外螺旋而成。
  10. 根据权利要求8所述的无线充电座,其中所述导向槽的数目不少于二,并且二所述导向槽所在的直线相互交叉。
  11. 根据权利要求8所述的无线充电座,其中所述导向槽的数目是三,第一导向槽、第二导向槽以及第三导向槽,其中所述第一导向槽和所述第二导向槽所在的直线相互平行或者是相互重叠,所述第三导向槽所在直线和所述第一导向槽所在直线或者是所述第二导向槽所在直线相互交叉。
  12. 根据权利要求5或6所述的无线充电座,其中所述导向槽自所述充电座体的表面朝内凹陷形成。
  13. 根据权利要求6所述的无线充电座,其中所述无线充电座进一步包括至少一导向通道,其中所述导向通道被设置于所述无线充电座,所述导向槽形成于所述导向通道,其中所述导向槽被暴露在外并且所述导向通道的至少部分是弹性材料制成的,所述定位件被过盈配合地安装于所述导向通道。
  14. 一无线充电设备,包括:
    一无线充电座;和
    一照明装置,其中所述照明装置包括一照明装置主体、一接收线圈和至少二定位配合件,其中所述接收线圈被设置于所述照明装置主体,所述定位配合件被设置于所述照明装置主体并且分别位于所述接收线圈两侧,其中所述无线充电座用于向所述照明装置充电,其中所述无线充电座包括一充电座体、一发射线圈以及具有多个磁吸位点,其中所述发射线圈被收容于所述充电座体,所述磁吸位点位于于所述充电座体,并且位于所述发射线圈的周围,当所述照明装置被放置于所述无线充电座,所述照明装置的一接收线圈被对准于所述无线充电座的所述发射线圈,所述定位配合件能够和所述磁吸位点中的至少一个相互磁吸。
  15. 根据权利要求14所述的无线充电设备,其中所述定位件具有一磁吸面,所述定位配合件具有一磁吸配合面,其中所述磁吸面大于所述磁吸配合面,所述磁吸位点位于所述磁吸面。
  16. 根据权利要求15所述的无线充电设备,其中所述发射线圈位于所述充电座体的中间位置,所述定位件的一端自所述发射线圈的周围朝向所述充电座体的周沿延伸而成。
  17. 根据权利要求14所述的无线充电设备,其中所述无线充电座具有至少一导向槽和包括至少一定位件,其中所述磁吸位点位于所述定位件,其中所述导 向槽位于所述充电座体并且位于所述发射线圈周围,所述定位件被能够移动地容纳于所述导向槽,当所述照明装置被放置于所述充电座体,所述定位件能够沿着所述导向槽移动以和所述照明装置的所述定位配合件相互磁吸。
  18. 根据权利要求17所述的无线充电设备,其中所述定位件被可沿着所述导向槽移动地容纳于所述导向槽。
  19. 根据权利要求17所述的无线充电设备,其中所述定位件被可拆卸地安装于所述充电座体的多个位置。
  20. 根据权利要求17至19任一所述的无线充电设备,其中所述无线充电座进一步包括至少一导向通道,其中所述导向通道被设置于所述无线充电座,所述导向槽形成于所述导向通道。
  21. 根据权利要求18或19所述的无线充电设备,其中所述导向槽是一直线型导槽,其中所述导向槽位于所述发射线圈的周围。
  22. 根据权利要求18或19所述的无线充电设备,其中所述导向槽是一螺旋形导槽,围绕所述发射线圈朝外螺旋而成。
  23. 根据权利要求21所述的无线充电设备,其中所述导向槽的数目不少于二,并且二所述导向槽所在的直线相互交叉。
  24. 根据权利要求21所述的无线充电设备,其中所述导向槽的数目是三,第一导向槽、第二导向槽以及第三导向槽,其中所述第一导向槽和所述第二导向槽所在的直线相互平行或者是相互重叠,所述第三导向槽所在直线和所述第一导向槽所在直线或者是所述第二导向槽所在直线相互交叉。
  25. 根据权利要求18或19所述的无线充电设备,其中所述导向槽自所述充电座体的表面朝内凹陷形成。
  26. 根据权利要求19所述的无线充电设备,其中所述无线充电座进一步包括至少一导向通道,其中所述导向通道被设置于所述无线充电座,所述导向槽形成于所述导向通道,其中所述导向槽被暴露在外并且所述导向通道的至少部分是弹性材料制成的,所述定位件被过盈配合地安装于所述导向通道。
  27. 一无线充电座的制造方法,包括如下步骤:
    调整放置于一充电座体的一定位件和位于所述充电座体的一发射线圈的相对位置;
    通过一检测设备检测所述发射线圈向一照明装置的输电效率以确定所述定 位件和所述发射线圈的必要间隔距离;以及
    安装所述定位件于一导向槽并且保持所述定位件和所述发射线圈之间的距离不小于必要间隔距离,其中所述定位件用于和所述照明装置的所述定位配合件相互磁吸。
  28. 根据权利要求27所述的制造方法,其中在上述方法中,所述无线充电座的制造方法进一步包括如下步骤:
    形成至少一导向槽于所述充电座体,其中所述形成至少一导向槽于所述充电座体的步骤位于所述调整步骤之前。
  29. 根据权利要求27所述的制造方法,其中在上述方法中,所述无线充电座的制造方法进一步包括如下步骤:
    安装至少一导向通道于所述充电座体,其中所述导向槽形成于所述导向通道。
  30. 根据权利要求28至29任一所述的制造方法,其中所述导向槽螺旋地位于所述充电座体。
  31. 根据权利要求28至29任一所述的制造方法,其中在上述方法中,当所述定位件的数目是多个时,分别调整多个所述定位件和所述发射线圈的相对位置,并且在所述通过一检测设备检测所述发射线圈向所述照明装置的输电效率步骤中共同进行输电效率的测试。
  32. 根据权利要求28至29任一所述的制造方法,其中在上述方法中,当所述定位件的数目是多个时,逐个调整所述定位件和所述发射线圈的相对位置,并且经过所述通过一检测设备检测所述发射线圈向所述照明装置的输电效率步骤确定被调整后的所述定位件的位置后,再进行下一个所述定位件和所述发射线圈的相对位置的调整。
  33. 一无线充电装置,适于对一灯具无线地充电,其中所述无线充电装置包括:
    一充电主体;和
    至少一磁吸装置,其中所述磁吸装置被可活动地设置于所述充电主体,其中所述灯具被所述磁吸装置吸附,而贴附于所述充电主体。
  34. 根据权利要求33所述的无线充电装置,其中所述磁吸装置被可转动地设置于所述充电主体。
  35. 根据权利要求33所述的无线充电装置,其中所述磁吸装置被可移动地 设置于所述充电主体。
  36. 根据权利要求34所述的无线充电装置,其中所述磁吸装置包括一承载装置、至少一磁吸单元以及一旋转轴,所述磁吸单元被设置于所述承载装置,其中所述承载装置被所述旋转轴可转动地连接于所述充电主体,藉由所述承载装置带动所述磁吸单元转动。
  37. 根据权利要求36所述的无线充电装置,其中所述磁吸装置进一步具有一磁吸面和对应于所述磁吸面的一非磁吸面,其中所述磁吸单元被嵌入至所述承载装置,所述磁吸单元在所述承载装置的嵌入端形成所述磁吸面,所述承载装置的另一端形成所述非磁吸面,通过转动所述磁吸装置调整所述磁吸装置的所述磁吸面和所述非磁吸面的朝向。
  38. 根据权利要求35所述的无线充电装置,其中所述磁吸装置进一步具有相互邻近的一磁吸面和一非磁吸面,以在驱动所述磁吸装置做相对于所述充电主体的运动时调整所述磁吸面和所述非磁吸面相对于所述充电主体的位置。
  39. 根据权利要求37所述的无线充电装置,其中所述磁吸装置进一步包括至少一旋转锁扣,其中所述旋转锁扣可锁定所述承载装置的旋转角度。
  40. 根据权利要求33所述的无线充电装置,其中所述磁吸装置包括一承载装置、至少一磁吸单元、以及一旋转轴,其中所述磁吸单元被设置于所述承载装置,所述旋转轴连接所述承载装置于所述充电主体的上端,其中所述承载装置带动所述磁吸单元基于所述旋转轴上下地摆动。
  41. 根据权利要求40所述的无线充电装置,其中所述磁吸单元被嵌入至所述承载装置,其中通过调整所述承载装置的摆动角度,调整所述磁吸装置对所述灯具的吸附作用力。
  42. 根据权利要求41所述的无线充电装置,其中所述磁吸单元进一步包括至少一支撑元件,其中所述支撑元件被设置于所述承载装置的下方,藉由所述支撑元件向上地支撑所述承载装置。
  43. 根据权利要求36、37、38、39、40或41所述的无线充电装置,其中所述磁吸装置的所述磁吸单元的数量为两个,两个所述磁吸单元相互间隔地设置。
  44. 根据权利要求43所述的无线充电装置,其中所述充电主体包括一壳体、至少一发射模块、一电源接口、以及一线路板,其中所述线路板电气连接所述电源接口于所述发射模块,其中所述发射模块被贴附于所述壳体内侧,所述发射模 块与所述磁吸装置的间距大于等于7.5mm。
  45. 根据权利要求44所述的无线充电装置,其中所述壳体包括一上壳体、一下壳体以及由所述上壳体和所述下壳体形成的一安装槽,其中所述壳体将所述磁吸装置可活动地保持在所述安装槽。
  46. 根据权利要求44所述的无线充电装置,其中所述壳体进一步具有至少一安装孔,通过所述安装孔将所述无线充电装置固定地安装于被附着表面。
  47. 根据权利要求45所述的无线充电装置,其中所述充电主体进一步包括一提示装置,其中所述提示装置通信地连接于所述充电主体,所述提示装置基于所述充电主体的工作信息提示所述无线充电装置的工作状态,所述提示装置包括至少一警示灯和一蜂鸣器,其中所述警示灯和所述蜂鸣器被设置于所述壳体的所述上壳体。
  48. 一无线充电照明系统,包括:
    一无线充电装置;和
    至少一灯具,其中所述灯具包括一灯具主体和至少一磁吸金属单元,其中所述磁吸金属单元被设置于所述灯具主体,所述磁吸金属单元可被所述无线充电装置的所述磁吸装置吸附,而贴附所述灯具主体于所述充电主体,其中所述无线充电装置包括:
    一充电主体;和
    至少一磁吸装置,其中所述磁吸装置被可活动地设置于所述充电主体,其中所述灯具被所述磁吸装置吸附,而贴附于所述充电主体。
  49. 根据权利要求48所述的无线充电照明系统,其中所述磁吸装置被可转动地设置于所述充电主体。
  50. 根据权利要求48所述的无线充电照明系统,其中所述磁吸装置被可移动地设置于所述充电主体。
  51. 根据权利要求49所述的无线充电照明系统,其中所述磁吸装置包括一承载装置、至少一磁吸单元以及一旋转轴,所述磁吸单元被设置于所述承载装置,其中所述承载装置被所述旋转轴可转动地连接于所述充电主体,藉由所述承载装置带动所述磁吸单元转动。
  52. 根据权利要求51所述的无线充电照明系统,其中所述磁吸装置进一步具有一磁吸面和对应于所述磁吸面的一非磁吸面,其中所述磁吸单元被嵌入至所 述承载装置,所述磁吸单元在所述承载装置的嵌入端形成所述磁吸面,所述承载装置的另一端形成所述非磁吸面,通过转动所述磁吸装置调整所述磁吸装置的所述磁吸面和所述非磁吸面的朝向。
  53. 根据权利要求50所述的无线充电照明系统,其中所述磁吸装置进一步具有相互邻近的一磁吸面和一非磁吸面,以在驱动所述磁吸装置做相对于所述充电主体的运动时调整所述磁吸面和所述非磁吸面相对于所述充电主体的位置。
  54. 根据权利要求52所述的无线充电照明系统,其中所述磁吸装置进一步包括至少一旋转锁扣,其中所述旋转锁扣可锁定所述承载装置的旋转角度。
  55. 根据权利要求48所述的无线充电照明系统,其中所述磁吸装置包括一承载装置、至少一磁吸单元、以及一旋转轴,其中所述磁吸单元被设置于所述承载装置,所述旋转轴连接所述承载装置于所述充电主体的上端,其中所述承载装置带动所述磁吸单元基于所述旋转轴上下地摆动。
  56. 根据权利要求55所述的无线充电照明系统,其中所述磁吸单元被嵌入至所述承载装置,其中通过调整所述承载装置的摆动角度,调整所述磁吸装置对所述灯具的吸附作用力。
  57. 根据权利要求56所述的无线充电照明系统,其中所述磁吸单元进一步包括至少一支撑元件,其中所述支撑元件被设置于所述承载装置的下方,藉由所述支撑元件向上地支撑所述承载装置。
  58. 根据权利要求51述的无线充电照明装置,其中所述磁吸装置的所述磁吸单元的数量为两个,两个所述磁吸单元相互间隔地设置。
  59. 根据权利要求58所述的无线充电照明系统,其中所述充电主体包括一壳体、至少一发射模块、一电源接口、以及一线路板,其中所述线路板电气连接所述电源接口于所述发射模块,其中所述发射模块被贴附于所述壳体内侧,所述发射模块与所述磁吸装置的间距大于等于7.5mm。
  60. 根据权利要求59所述的无线充电照明系统,其中所述壳体包括一上壳体、一下壳体以及由所述上壳体和所述下壳体形成的一安装槽,其中所述壳体将所述磁吸装置可活动地保持在所述安装槽。
  61. 根据权利要求59所述的无线充电照明系统,其中所述壳体进一步具有至少一安装孔,通过所述安装孔将所述无线充电装置固定地安装于被附着表面。
  62. 根据权利要求60所述的无线充电照明系统,其中所述充电主体进一步 包括一提示装置,其中所述提示装置通信地连接于所述充电主体,所述提示装置基于所述充电主体的工作信息提示所述无线充电装置的工作状态,所述提示装置包括至少一警示灯和一蜂鸣器,其中所述警示灯和所述蜂鸣器被设置于所述壳体的所述上壳体。
  63. 根据权利要求48至62任一所述的无线充电照明系统,其中所述灯具的所述磁吸金属单元的数量为二,其中所述磁吸金属单元被相互间隔地设置于所述灯具的所述灯具主体,所述磁吸金属单元的间隔距离与所述无线充电装置的所述磁吸单元的间隔距离相同。
  64. 根据权利要求63所述的无线充电照明系统,其中所述灯具的所述灯具主体进一步包括一灯具壳体、至少一光源、至少一接收模块、以及至少一储能装置,其中所述储能装置电气连接所述光源和所述接收模块,所述接收模块将电能存储至所述储能装置,其中所述光源被设置于所述灯具壳体,所述接收模块被贴附于所述灯具壳体的内侧,其中当所述灯具被所述无线充电装置充电时,所述接收模块与所述发射模块之间的间隔大于等于2mm。
  65. 根据权利要求63所述的无线充电照明系统,其中所述灯具的所述接收模块相对于所述磁吸金属单元的位置等同于一发射模块相对于所述磁吸单元的位置,其中所述磁吸单元通过吸附所述磁吸金属单元,而使得接收模块对位于所述发射模块。
PCT/CN2020/093759 2019-05-31 2020-06-01 无线充电设备、无线充电座、无线充电座的制造方法、无线充电装置以及无线充电照明系统 WO2020239127A1 (zh)

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Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2011120432A (ja) * 2009-12-07 2011-06-16 Sanyo Electric Co Ltd 電力搬送システム、受電器及び受電器の製造方法
CN205960733U (zh) * 2016-08-25 2017-02-15 洪邦森 一种无线充电装置
CN206875305U (zh) * 2017-05-27 2018-01-12 厦门东昂光电科技有限公司 一种无线充电的照明设备
CN207542839U (zh) * 2017-12-11 2018-06-26 深圳品佑科技有限公司 一种具有照明功能的移动电源
CN210640698U (zh) * 2019-05-31 2020-05-29 余姚煜昌电器有限公司 无线充电装置和无线充电照明系统

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2011120432A (ja) * 2009-12-07 2011-06-16 Sanyo Electric Co Ltd 電力搬送システム、受電器及び受電器の製造方法
CN205960733U (zh) * 2016-08-25 2017-02-15 洪邦森 一种无线充电装置
CN206875305U (zh) * 2017-05-27 2018-01-12 厦门东昂光电科技有限公司 一种无线充电的照明设备
CN207542839U (zh) * 2017-12-11 2018-06-26 深圳品佑科技有限公司 一种具有照明功能的移动电源
CN210640698U (zh) * 2019-05-31 2020-05-29 余姚煜昌电器有限公司 无线充电装置和无线充电照明系统

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