WO2021232417A1 - 无线充电器 - Google Patents

无线充电器 Download PDF

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Publication number
WO2021232417A1
WO2021232417A1 PCT/CN2020/091854 CN2020091854W WO2021232417A1 WO 2021232417 A1 WO2021232417 A1 WO 2021232417A1 CN 2020091854 W CN2020091854 W CN 2020091854W WO 2021232417 A1 WO2021232417 A1 WO 2021232417A1
Authority
WO
WIPO (PCT)
Prior art keywords
protective cover
charging
electrical connector
wireless charger
avoiding
Prior art date
Application number
PCT/CN2020/091854
Other languages
English (en)
French (fr)
Inventor
廖卓文
Original Assignee
广东高普达集团股份有限公司
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
Application filed by 广东高普达集团股份有限公司 filed Critical 广东高普达集团股份有限公司
Priority to PCT/CN2020/091854 priority Critical patent/WO2021232417A1/zh
Priority to CN202090000076.3U priority patent/CN213151724U/zh
Publication of WO2021232417A1 publication Critical patent/WO2021232417A1/zh

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Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R13/00Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
    • H01R13/44Means for preventing access to live contacts
    • H01R13/447Shutter or cover plate
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J50/00Circuit arrangements or systems for wireless supply or distribution of electric power
    • 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

  • This application belongs to the technical field of charging equipment, and in particular relates to a wireless charger.
  • smart watches can also provide functions such as step calculation, distance calculation, calorie calculation, time reminder, call reminder, data synchronization, sleep monitoring, alarm clock, etc., and more high-end products can also provide heart rate monitoring, GPS positioning, Advanced functions such as trajectory recording, camera remote control, seating reminder, etc., users can wear for 24 hours.
  • functions such as step calculation, distance calculation, calorie calculation, time reminder, call reminder, data synchronization, sleep monitoring, alarm clock, etc.
  • more high-end products can also provide heart rate monitoring, GPS positioning, Advanced functions such as trajectory recording, camera remote control, seating reminder, etc., users can wear for 24 hours.
  • charging When charging is needed, they can be placed flat on the wireless charger, but this requires the wireless charger to be placed horizontally. To extend, the wireless charger needs to be plugged in vertically. At this time, the smart watch is easily separated from the sensing area of the wireless charger due to gravity and is not aligned correctly.
  • the purpose of this application is to provide a wireless charger, which aims to solve the technical problem that the smart wearable device is easy to leave the sensing area when the wireless charger is vertically plugged in the prior art.
  • a wireless charger for wireless charging of smart wearable devices including:
  • a charging mechanism for forming a charging magnetic field on the sensing area on its upper surface, and the charging magnetic field can wirelessly charge the smart wearable device
  • the protective cover is slidably connected to the charging mechanism and can rotate relative to the charging mechanism.
  • the protective cover has a first side surface and a second side opposite to the first side surface.
  • the protective cover By sliding and rotating relative to the charging mechanism to switch between the covering position covering the electrical connector and the supporting position avoiding the electrical connector, the first side surface is at the position of the protective cover.
  • the angle between the supporting position facing the sensing area and the upper surface of the charging mechanism is less than or equal to 90°;
  • the electrical connector can be electrically connected with an external power source when the protective cover is in the supporting position.
  • the protective cover is provided with a limit structure, and the protective cover is switched between the cover position and the avoiding position by sliding relative to the charging mechanism along the extension direction of the electrical connector
  • the limiting structure can limit the relative rotation of the protective cover and the electrical connector when the protective cover is in the closing position, and avoid the protective cover when the protective cover is in the avoiding position.
  • An electrical connector, the second side faces upward when the protective cover is in the avoiding position, and the protective cover is switched between the avoiding position and the supporting position by rotating relative to the charging mechanism .
  • the protective cover body further has a covering surface, which faces rearward when the protective cover body is in the covering position and the avoiding position, and is positioned on the protective cover
  • the protective cover is provided with a avoidance groove connected to the second side surface on the cover surface, and the electrical connector is in the avoidance groove when the protective cover is When in the position, it is at least partially contained in the avoiding groove, and is located outside the avoiding groove when the protective cover is in the supporting position.
  • the limiting structure is a limiting slot opened at the bottom of the avoiding slot, and the electrical connector can be at least partially inserted into the protective cover when the protective cover is in the closing position. Inside the limit slot.
  • the charging case is opened in a sliding groove
  • the protective cover includes a protection part and a rotating ear connected to the protection part, and the rotating ear is slidably connected to the sliding groove so that the The protective cover is switched between the closing position and the avoiding position, and the rotating ear can also be rotated in the sliding groove, so that the protective cover is in the avoiding position and the supporting position Switch between the two, the avoiding groove is opened in the protection part.
  • the charging case is further provided with an adapter groove communicating with the groove wall of the sliding groove, the rotating ear is non-circular, and the rotating ear can be in the adapter groove When rotating, the groove wall of the sliding groove can restrict the rotation of the rotating ear.
  • the charging mechanism includes a charging case and a charging controller connected to the charging case, the charging case has the sensing area on its upper surface, and the charging controller is used for The sensing area provides a charging magnetic field, the charging controller includes a control board and a sensing sheet electrically connected to the control board, the sensing sheet is used to sense the smart wearable device placed in the sensing area, and the control The board can charge the smart wearable device placed in the sensing area through the sensing sheet, and the electrical connector is electrically connected to the control board.
  • the charging case has an accommodating cavity, the control board is located in the accommodating cavity, and the charging case is provided with insertion holes that are all connected to the accommodating cavity.
  • the wireless charger also includes at least one socket electrically connected to the control board, and one socket faces a socket hole.
  • the socket is a USB-Type-C interface socket, a USB-Type-B interface socket, a TF card interface socket, an audio interface socket or an HDMI interface socket.
  • the charging case includes a base and a turning base rotatably connected to the base, the sensing sheet is connected to the turning base, the turning base has the sensing area, and the turning base has A separation position set at an included angle with the base and a bonding position attached to the base, the flip seat is switched between the separation position and the bonding position by rotating relative to the charging mechanism ,
  • the base has the accommodating cavity, and the insertion hole is opened in the base.
  • the sensing area is a circular area.
  • the base includes a charging portion and an adapter portion connected to the front of the charging portion, the electrical connector protrudes from the front end surface of the adapter portion, and the protective cover is slidably connected to The adapter part.
  • the upper surface of the base is provided with an adapting groove adapted to the turning seat, and the turning seat can be located in the fitting groove when the turning seat is in the fitting position.
  • the turning seat has a turning cavity, and the sensing sheet is located in the turning cavity.
  • the electrical connector is a USB-Type-C interface socket, USB-Type-B interface socket, DC interface socket, Lightning interface socket, Micro USB interface socket, or, USB-Type-C plug, USB-Type-B plug, DC plug, Lightning plug, Micro USB plug.
  • the technical effect of the present application is that the wireless charger connects the electrical connector with the external power source, so that the charging mechanism can wirelessly charge the smart charging device placed in the sensing area, and the protective cover is slidably connected to the
  • the charging shell prevents the protective cover from being separated from the charging shell and avoids the loss of the protective cover.
  • the protective cover covers the electrical connector.
  • the electrical connector can protect the electrical connector from external bumps and dust.
  • the electrical connector avoids The protective cover, that is, the electrical connector is exposed for electrical connection with an external power source.
  • the first side faces the charging mechanism when the protective cover is in the supporting position, that is, faces backwards.
  • the first side faces the upper surface of the charging mechanism.
  • the angle between the two is less than or equal to 90°.
  • the sensing area of the charging mechanism faces the horizontal direction, and the first side faces upward.
  • its downward-facing side can abut against the first side of the protective cover.
  • the protective cover supports the smart wearable device at this time, while restricting the separation of the smart wearable device from the sensing area to ensure that the wireless charger can The wearable device is charged stably.
  • FIG. 1 is a schematic diagram of a three-dimensional structure of a wireless charger provided by an embodiment of the present application, in which the protective cover is located at the covering position, and the flip seat is located at the attaching position;
  • Fig. 2 is a three-dimensional structural diagram of the wireless charger in Fig. 1 from another perspective;
  • FIG. 3 is a schematic diagram of a three-dimensional structure of a wireless charger provided by an embodiment of the present application, in which the protective cover is located at the avoiding position, and the flip seat is located at the bonding position;
  • FIG. 4 is a schematic diagram of a three-dimensional structure of a wireless charger provided by an embodiment of the present application, in which the protective cover is located at the supporting position, and the flip seat is located at the attaching position;
  • FIG. 5 is a schematic diagram of a three-dimensional structure of a wireless charger provided by an embodiment of the present application, in which the protective cover is located in the closed position, and the flip seat is located in the separated position;
  • Figure 6 is an exploded view of the wireless charger in Figure 5;
  • Fig. 7 is a cross-sectional view of the wireless charger in Fig. 5.
  • Charging mechanism 101, sensing area; 102, adapting slot; 103, plug hole; 104, connecting hole; 105, accommodating cavity; 106, turning cavity; 107, sliding groove; 108, adapter groove; 11 , Charging housing; 111, base; 1111, charging part; 1112, adapter part; 112, flip seat; 12, charging controller; 121, control board; 122, sensor sheet; 20, protective cover; 201, One side surface; 202, the second side surface; 203, the covering surface; 204, the avoiding groove; 205, the limit structure; 21, the protective part; 22, the rotating ear; 30, the electrical connector.
  • the side located in the positive direction of the X-axis is defined as the front, the side located in the negative direction of the X-axis is defined as the back; in the positive direction of the Y-axis
  • the side of is defined as the left, the side in the negative direction of the Y-axis is defined as the right; the side in the positive direction of the Z-axis is defined as up, and the side in the negative direction of the Z-axis is defined as down.
  • the terms “installed”, “connected”, “connected”, “fixed” and other terms should be understood in a broad sense, for example, it can be a fixed connection or a detachable connection , Or integrated; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the internal communication of two components or the interaction relationship between two components.
  • installed can be a fixed connection or a detachable connection , Or integrated; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the internal communication of two components or the interaction relationship between two components.
  • the smart wearable device may be an electronic device capable of wireless charging, such as a smart watch, a smart bracelet, and a wireless earphone.
  • a smart watch is taken as an example.
  • the wireless charger includes a charging mechanism 10 for charging, an electrical connector 30 for electrical connection with a power source, and a protective cover 20 for protecting the electrical connector 30.
  • the charging mechanism 10 includes a charging housing 11 and a charging controller 12 connected to the charging housing 11.
  • the charging housing 11 has a sensing area 101 on its upper surface for sensing on the upper surface
  • the area forms a charging magnetic field, which can wirelessly charge the smart wearable device.
  • the charging controller 12 can sense the smart watch and wirelessly charge the smart watch.
  • the area and shape of the sensing area 101 are adapted to the sensing surface of the smart watch, so that the smart watch and the sensing area 101 can be aligned.
  • the sensing area 101 is a circular area so as to match the circular sensing surface of the smart watch.
  • the sensing area 101 may also be square, circular, oval, etc., including but not limited to this.
  • the electrical connector 30 is electrically connected to the charging controller 12 and located at the front side of the charging mechanism 10, and the electrical connector 30 is used to plug in an external power source to supply power to the charging controller 12.
  • the external power supply here refers to a power supply capable of providing power, which can be an AC stabilized power supply, a DC power supply, or electronic equipment such as computers, notebooks, and mobile phones.
  • the power supply has a power socket.
  • the electrical connector 30 can be set to USB-Type-C plug, USB-Type-B plug, DC plug, Lightning plug, Micro USB plug.
  • the electrical connector 30 may also be a USB-Type-C interface socket, a USB-Type-B interface socket, a DC interface socket, a Lightning interface socket, or a Micro USB interface socket.
  • the protective cover 20 is slidably connected to the charging mechanism 10 and can rotate relative to the charging mechanism 10.
  • the protective cover 20 has a first side surface 201 and a second side surface 202 opposite to the first side surface 201 And the cover surface 203 connecting the first side surface 201 and the second side surface 202, the protective cover body 20 slides and rotates relative to the charging mechanism 10 to cover the cover position of the electrical connector 30 and avoid the support of the electrical connector 30 Switch between positions, the first side surface 201 faces the sensing area 101 in the same direction when the protective cover 20 is in the covering position, that is, facing upwards, and the first side 201 faces the sensing area 101 when the protective cover 20 is in the supporting position.
  • the included angle with the upper surface of the charging mechanism 10 at this time is less than or equal to 90°.
  • the covering surface 203 faces backward when the protective cover 20 is in the covering position and the avoiding position, and faces upward when the protective cover 20 is in the supporting position.
  • the forward and downward fingers of the second side surface 202 are generally forward or downward.
  • the first side surface 201 can support the smart watch.
  • the protective cover 20 has a catch point when it is rotated to the supporting position, so as to prevent the protective cover 20 from shaking.
  • the protective cover body 20 can be rotated after the sliding is completed, or can be rotated before sliding, and can also be rotated during the sliding process, which is not limited here.
  • the wireless charger connects the electrical connector 30 with an external power source, so that the charging mechanism 10 can wirelessly charge the smart charging device placed in the sensing area 101, and the protective cover 20 is slidably connected to the charging housing 11 to prevent the protective cover
  • the body 20 is separated from the charging housing 11 to avoid loss of the protective cover 20.
  • the protective cover 20 covers the electrical connector 30, so that the electrical connector 30 can protect the electrical connector 30 from external bumps and dust.
  • the protective cover 20 is in the supporting position
  • the first side surface 201 faces the charging mechanism 10 when the protective cover 20 is in the supporting position, that is, faces backwards.
  • the smart wearable device When the angle between the first side 201 and the upper surface of the charging mechanism 10 is less than or equal to 90°, if it is greater than 90°, the smart wearable device is likely to slide down along the first side.
  • the sensing area 101 of the charging mechanism 10 faces the horizontal direction, and the first side surface 201 basically faces upward.
  • the bottom surface of the smart wearable device abuts against the sensing area 101, it faces downward. It can lean against the first side 201 of the protective cover 20.
  • the protective cover 20 supports the smart wearable device at this time, and at the same time restricts the smart wearable device from being separated from the sensing area 101, and prevents the smart wearable device from sliding down along the first side. Ensure that the wireless charger can stably charge the smart wearable device.
  • the protective cover 20 rotates after the sliding is completed.
  • the charging housing 11 is opened in the sliding groove 107, and the extending direction of the sliding groove 107 is the same as the extending direction of the electrical connector 30.
  • the protective cover 20 includes a protective portion 21 and a rotating ear 22 connected to the protective portion 21.
  • the rotating ear 22 is slidably connected to the sliding groove 107 so that the protective cover 20 can be switched between the covering position and the avoiding position.
  • the rotating ear 22 is also It can be rotated in the sliding groove 107 so that the protective cover 20 can be switched between the avoiding position and the supporting position.
  • the protective cover body 20 first moves from the covering position to the avoiding position by translation, and then rotates from the avoiding position to the supporting position by rotating.
  • the setting of the avoiding position makes the protective cover 20 have a fixed rotation point, that is, it can rotate only when it moves to the avoiding position, preventing the user from unknowingly breaking the protective cover 20 and other misoperations, and improving the operating feel , Easy for users to operate.
  • two sliding grooves 107 are provided and arranged opposite to each other, and two rotating ears 22 are provided and are respectively matched with the sliding grooves 107 to maintain a stable connection between the protective cover 20 and the charging housing 11.
  • the rotating ear 22 can be rotated at any position of the sliding groove 107.
  • the charging housing 11 is further provided with an adapter groove 108 communicating with the groove wall of the sliding groove 107.
  • the adapter groove 108 and the sliding groove 107 preferably form a rotating space with a circular cross section.
  • the ear 22 is non-circular, such as a rectangle.
  • the length of the rectangle is the extension direction of the sliding groove 107.
  • the width of the sliding groove 107 can be adapted to the width of the rectangle, and the diameter of the rotating space can be adapted to the length of the rectangle.
  • the rotating ear 22 can only slide in the sliding groove 107, and the groove wall of the sliding groove 107 can restrict the rotation of the rotating ear 22. Rotation can be realized when the rotating ear 22 moves to the transition groove 108, so as to further prevent the user from misoperation.
  • the protective cover 20 in order to prevent the protective cover 20 from being separated from the electrical connector 30 when in the closed position and the electrical connector 30 is exposed, the protective cover 20 is provided with a limiting structure 205, and the limiting structure 205 can When the protective cover 20 is in the closed position, the relative rotation of the protective cover 20 and the electrical connector 30 is restricted.
  • the protective cover 20 is switched between the cover position and the avoiding position by sliding translation relative to the charging mechanism 10, and the sliding direction is along the extension direction of the electrical connector 30.
  • the protective cover 20 avoids the electrical connector 30 when in the avoiding position. , That is, the electrical connector 30 is separated from the limiting structure 205 at this time to facilitate leakage of the electrical connector 30.
  • the second side surface 202 faces downward when the protective cover 20 is in the avoiding position, and the protective cover 20 rotates relative to the charging mechanism 10 Switch between avoiding position and supporting position.
  • the cover surface 203 of the protective cover 20 is provided with a avoiding groove 204 connected to the second side surface 202, and the electrical connector 30 is in the avoiding position of the protective cover 20 It is at least partially accommodated in the avoiding groove 204 and located outside the avoiding groove 204 when the protective cover 20 is in the supporting position.
  • the avoidance groove 204 provides a storage space for the electrical connector 30, and at the same time, its groove wall plays a role of limiting the electrical connector 30 to prevent the protective cover 20 from rotating toward the second side surface 202, so that the first side surface 201 can be connected to the charging device.
  • the upper surface of the housing 11 has an included angle less than or equal to 90°, which facilitates the placement of the smart wearable device.
  • the electrical connector 30 when the protective cover 20 is in the avoiding position, the electrical connector 30 can be located in the avoiding groove 204. At this time, the electrical connector 30 has a limiting effect on the protective cover 20 to prevent the protective cover 20 from downward. Spin.
  • the electrical connector 30 when the protective cover 20 is at the supporting position, the electrical connector 30 is separated from the avoiding slot 204 and exposed to be plugged into an external power socket. Among them, the avoidance groove 204 is opened in the protection part 21.
  • the limiting structure 205 is a limiting slot opened at the bottom of the avoiding slot 204, and the electrical connector 30 can be at least partially inserted into the limiting slot when the protective cover 20 is in the closing position .
  • the limiting slot plays a role of limiting and guiding the electrical connector 30, so that the protective cover 20 will not rotate towards the first side 201 or the second side 202 when in the closed position, and can move along the distance away from the electrical connector 30. Move in the direction to finally avoid the electrical connector 30 and realize the rotation.
  • the charging controller 12 includes a control board 121 and a sensor sheet 122 electrically connected to the control board 121.
  • the control board 121 can be a smart watch when the sensor sheet 122 senses the smart watch placed in the sensing area 101 Charge.
  • the induction sheet 122 may be an induction coil.
  • the charging case 11 has an accommodating cavity 105, the control board 121 is located in the accommodating cavity 105, and the accommodating cavity 105 is used for accommodating the control board 121 to protect it from external bumps.
  • the sensing sheet 122 can be located in the accommodating cavity 105 or can be attached to the upper surface of the charging case 11 to more sensitively sense the smart watch.
  • the charging case 11 is provided with a connecting hole 104 and at least one plug hole 103 that are both connected to the accommodating cavity 105.
  • the electrical connector 30 is inserted through the connecting hole 104, and the wireless charger further includes at least A socket is electrically connected to the charging controller 12, and a socket is directly opposite to a socket 103.
  • a computer or notebook can also be used as a power source for the wireless charger.
  • the wireless charger can be connected to the power source by plugging the electrical connector 30 into the socket on the computer or notebook. At this time, the wireless charger can be used as an adapter.
  • Other electronic devices can be electrically connected to the socket for charging or data transmission with a computer or laptop.
  • each socket is USB-Type-C interface socket, USB-Type-B interface socket, TF card interface socket, audio interface socket, HDMI interface socket, DC interface socket, Lightning interface socket Or Micro One of the USB interface sockets, so that other electronic devices can be plugged in.
  • the charging case 11 includes a base 111 and a turning base 112 that is rotatably connected to the base 111.
  • the sensing sheet 122 is connected to the turning base 112, and the sensing area 101 is provided on the turning base 112
  • the turning base 112 has a separation position set at an included angle with the base 111 and a bonding position that is attached to the base 111.
  • the turning base 112 is switched between the separation position and the attachment position by rotating relative to the base 111.
  • the flip seat 112 can be rotated from the attached position to the separated position.
  • the sensing area 101 faces the horizontal direction or the diagonally upward direction, and the smart watch is placed on the flip seat 112 and the bottom surface of the dial
  • the smart watch can be wirelessly charged by attaching it to the sensing area 101.
  • the turning seat 112 has a card position for staying at the separated position.
  • the upper surface of the base 111 is provided with an adapting groove 102 that is adapted to the turning base 112.
  • the turning base 112 can be positioned when it is in the fitting position.
  • the turning seat 112 can be snap-fitted with the adapting groove 102 to position the turning seat 112 in the fitting position, and the adapting groove 102 also plays a guiding role to prevent the turning seat 112 from being misaligned during the rotation.
  • the adapting groove 102 also has the function of placing the watchband and restricting the movement of the watchband, so that the smart watch can accurately align with the sensing area 101.
  • the accommodating cavity 105 may be located in the base 111, at this time the insertion hole 103 is opened in the base 111, and the control board 121 is located in the accommodating cavity 105 in the base 111.
  • the turning base 112 has a turning cavity 106, and the sensing sheet 122 is located in the turning cavity 106. In this way, the accommodating cavity 105 and the turning cavity 106 can protect the control board 121 and the sensing sheet 122 respectively.
  • the accommodating cavity 105 may also be provided in the turning base 112, and the sensing sheet 122 and the control board 121 are both located in the housing cavity 105 of the turning base 112 to prevent the sensing sheet 122 and the control board 121 bracket from rotating due to Poor contacts frequently occur.
  • the insertion hole 103 is opened in the turning base 112, and the electrical connector 30 is fixedly connected to the base 111 and connected to the control base by a wire.

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

Abstract

一种无线充电器,包括充电机构(10)、电连接器(30)及保护盖体(20),充电机构(10)用于在感应区域(101)形成充电磁场;电连接器(30)与充电机构(10)电连接;保护盖体(20)滑接于充电机构(10)并能够转动,保护盖体(20)通过滑动及转动在盖合于电连接器(30)的盖合位置及避让电连接器(30)的支撑位置之间切换,保护盖体(20)的第一侧面(201)在保护盖体处于支撑位置时与充电机构(10)的上表面之间的夹角小于或等于90°,电连接器(30)在保护盖体(20)处于支撑位置时能够与外部的电源电连接。保护盖体(20)在处于支撑位置时能对智能穿戴设备起到了支撑作用,保证无线充电器能够对智能穿戴设备进行稳定充电。

Description

无线充电器 技术领域
本申请属于充电设备技术领域,尤其涉及一种无线充电器。
背景技术
随着科技的发展,科技产品给人们生活带来越来越多的便利,智能穿戴设备和生活的联系愈发紧密,受众率也越来越高,给生活提供了更多的智能体验,比如智能手表在兼顾钟表功能的同时还能够提供步数计算、距离计算、卡路里计算、时间提醒、呼叫提醒、数据同步、睡眠监测、闹钟等功能,更有高端产品还能够提供心率监测、GPS定位、轨迹记录、拍照遥控、就座提醒等进阶功能,用户可24小时穿戴,当需要充电时,可平放于无线充电器上,但这就要求无线充电器水平放置,若电源插口竖直方向延伸,则需将无线充电器也竖直插接,此时智能手表由于重力作用易与无线充电器的感应区域脱离而对位不准。
技术问题
本申请的目的在于提供一种无线充电器,旨在解决现有技术中无线充电器竖直插接时智能穿戴设备易脱离感应区域的技术问题。
技术解决方案
本申请是这样实现的,一种无线充电器,用于对智能穿戴设备进行无线充电,包括:
充电机构,用于在其上表面的感应区域形成充电磁场,所述充电磁场能够为所述智能穿戴设备进行无线充电;
电连接器,与所述充电机构电连接,并位于所述充电机构的前侧,所述电连接器用于与外部的电源电连接,以为所述充电机构供电;
保护盖体,滑接于所述充电机构并能够相对于所述充电机构转动,所述保护盖体具有第一侧面及与所述第一侧面相背对的第二侧面,所述保护盖体通过相对于所述充电机构滑动及转动在盖合于所述电连接器的盖合位置及避让所述电连接器的支撑位置之间切换,所述第一侧面在所述保护盖体处于所述支撑位置时朝向所述感应区域并与所述充电机构的上表面之间的夹角小于或等于90°;
其中,所述电连接器在所述保护盖体处于所述支撑位置时能够与外部的电源电连接。
在一实施例中,所述保护盖体设有限位结构,所述保护盖体通过相对于所述充电机构沿所述电连接器的延伸方向滑动在所述盖合位置及避让位置之间切换,所述限位结构能够在所述保护盖体处于盖合位置时限制所述保护盖体与所述电连接器的相对转动,并在所述保护盖体处于所述避让位置时避让所述电连接器,所述第二侧面在所述保护盖体处于所述避让位置时朝上,所述保护盖体通过相对于所述充电机构转动在所述避让位置与所述支撑位置之间切换。
在一实施例中,所述保护盖体还具有盖合面,所述盖合面在所述保护盖体处于所述盖合位置及所述避让位置时均朝后,并在所述保护盖体处于所述支撑位置时朝上,所述保护盖体于其所述盖合面开设有连通至所述第二侧面的避让槽,所述电连接器在所述保护盖体处于所述避让位置时至少部分收容于所述避让槽,并在所述保护盖体处于所述支撑位置时位于所述避让槽外。
在一实施例中,所述限位结构为开设于所述避让槽的槽底的限位槽,所述电连接器能够在所述保护盖体处于所述盖合位置时至少部分插设于所述限位槽内。
在一实施例中,所述充电壳体开设于滑槽,所述保护盖体包括保护部以及连接于所述保护部的转动耳,所述转动耳滑接于所述滑槽,以使得所述保护盖体在所述盖合位置及所述避让位置之间切换,所述转动耳还能够在所述滑槽内转动,以使得所述保护盖体在所述避让位置与所述支撑位置之间切换,所述避让槽开设于所述保护部。
在一实施例中,所述充电壳体还开设有与所述滑槽的槽壁相连通的转接槽,所述转动耳为非圆形,所述转动耳能够在所述转接槽内转动,所述滑槽的槽壁能够限制所述转动耳转动。
在一实施例中,所述充电机构包括充电壳体以及连接于所述充电壳体的充电控制器,所述充电壳体于其上表面具有所述感应区域,所述充电控制器用于为所述感应区域提供充电磁场,所述充电控制器包括控制板以及电连接于所述控制板的感应片,所述感应片用于感应放置于所述感应区域的所述智能穿戴设备,所述控制板能够通过所述感应片为放置于所述感应区域的所述智能穿戴设备充电,所述电连接器电连接于所述控制板。
在一实施例中,所述充电壳体具有容置腔,所述控制板位于所述容置腔内,所述充电壳体开设有均连通至所述容置腔的插接孔,所述无线充电器还包括至少一个电连接于所述控制板的插接座,一所述插接座正对一所述插接孔。
在一实施例中,所述插接座为USB-Type-C接口座、USB-Type-B接口座、TF卡接口座、音频接口座或HDMI接口座。
在一实施例中,所述充电壳体包括底座以及转动连接于所述底座的翻转座,所述感应片连接于所述翻转座,所述翻转座具有所述感应区域,所述翻转座具有与所述底座呈夹角设置的分离位置以及与所述底座贴合的贴合位置,所述翻转座通过相对于所述充电机构转动而在所述分离位置与所述贴合位置之间切换,所述底座具有所述容置腔,所述插接孔开设于底座。
在一实施例中,所述感应区域为圆形区域。
在一实施例中,所述底座包括充电部以及连接于所述充电部前方的转接部,所述电连接器凸出于所述转接部的前端面,所述保护盖体滑接于所述转接部。
在一实施例中,所述底座的上表面开设有与所述翻转座适配的适配槽,所述翻转座能够在其位于所述贴合位置时位于所述适配槽内。
在一实施例中,所述翻转座具有翻转腔,所述感应片位于所述翻转腔内。
在一实施例中,所述电连接器为USB-Type-C接口座、USB-Type-B接口座、DC接口座、Lightning接口座、Micro USB接口座,或,USB-Type-C插头、USB-Type-B插头、DC插头、Lightning插头、Micro USB插头。
有益效果
本申请相对于现有技术的技术效果是:本无线充电器通过将电连接器与外部电源插接,使得充电机构能够对放置于感应区域的智能充电设备进行无线充电,保护盖体滑接于充电壳体,防止保护盖体与充电壳体分离,避免保护盖体丢失。当保护盖体位于盖合位置时,保护盖体盖合电连接器,电连接器得以保护电连接器免受外界磕碰,也避免落灰,当保护盖体位于支撑位置时,电连接器避让保护盖体,即电连接器露出,以便与外部的电源电连接,第一侧面在保护盖体处于支撑位置时朝向充电机构,即朝向后,此时第一侧面与所述充电机构的上表面之间的夹角小于或等于90°,当本无线充电器竖直插入电源插口时,充电机构的感应区域朝向水平方向,第一侧面基本朝上,当智能穿戴设备的底面抵靠于感应区域时,其朝向下的侧面能够抵靠于保护盖体的第一侧面,保护盖体此时对智能穿戴设备起到了支撑作用,同时限制智能穿戴设备与感应区域分离,保证无线充电器能够对智能穿戴设备进行稳定充电。
附图说明
为了更清楚地说明本申请实施例的技术方案,下面将对本申请实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面所描述的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是本申请实施例提供的无线充电器的立体结构示意图,其中,保护盖体位于盖合位置,翻转座位于贴合位置;
图2为图1中无线充电器另一视角下的立体结构图;
图3是本申请实施例提供的无线充电器的立体结构示意图,其中,保护盖体位于避让位置,翻转座位于贴合位置;
图4是本申请实施例提供的无线充电器的立体结构示意图,其中,保护盖体位于支撑位置,翻转座位于贴合位置;
图5是本申请实施例提供的无线充电器的立体结构示意图,其中,保护盖体位于盖合位置,翻转座位于分离位置;
图6是图5中的无线充电器的爆炸图;
图7是图5中的无线充电器的剖视图。
附图标记说明:
10、充电机构;101、感应区域;102、适配槽;103、插接孔;104、连接孔;105、容置腔;106、翻转腔;107、滑槽;108、转接槽;11、充电壳体;111、底座;1111、充电部;1112、转接部;112、翻转座;12、充电控制器;121、控制板;122、感应片;20、保护盖体;201、第一侧面;202、第二侧面;203、盖合面;204、避让槽;205、限位结构;21、保护部;22、转动耳;30、电连接器。
本发明的实施方式
下面详细描述本申请的实施例,所述实施例的示例在附图中示出,其中自始至终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元件。下面通过参考附图描述的实施例是示例性的,旨在用于解释本申请,而不能理解为对本申请的限制。
在本申请的描述中,需要理解的是,术语“长度”、“宽度”、“上”、“下”、“前”、“后”、“左”、“右”、“竖直”、“水平”、“内”、“外”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本申请和简化描述,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,因此不能理解为对本申请的限制。
本实施例中,按照图1至图7中所建立的XYZ直角坐标系定义:位于X轴正方向的一侧定义为前,位于X轴负方向的一侧定义为后;位于Y轴正方向的一侧定义为左方,位于Y轴负方向的一侧定义为右方;位于Z轴正方向的一侧定义为上,位于Z轴负方向的一侧定义为下。
在本申请中,除非另有明确的规定和限定,术语“安装”、“相连”、“连接”、“固定”等术语应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或成一体;可以是机械连接,也可以是电连接;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通或两个元件的相互作用关系。对于本领域的普通技术人员而言,可以根据具体情况理解上述术语在本申请中的具体含义。
为了使本申请的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本申请进行进一步详细说明。
本申请提供一种无线充电器,用于对智能穿戴设备进行无线充电。其中,智能穿戴设备可以为智能手表、智能手环、无线耳机等能够进行无线充电的电子器件。在本实施例中,以智能手表为例。
请参照图1和图2,无线充电器包括用于充电的充电机构10、用于与电源电连接的电连接器30及用于保护电连接器30的保护盖体20。
请参照图6和图7,充电机构10包括充电壳体11以及连接于充电壳体11的充电控制器12,充电壳体11于其上表面具有感应区域101,用于在其上表面的感应区域形成充电磁场,充电磁场能够为智能穿戴设备进行无线充电,当智能手表放置于感应区域101时,充电控制器12能够感应到该智能手表,并向该智能手表进行无线充电。感应区域101的面积及形状与智能手表的感应面适配,以便智能手表与感应区域101进行对位。在本实施例中,感应区域101为圆形区域,以便与智能手表的圆形感应面相匹配。在其他实施例中,感应区域101也可以为方形、环形或椭圆形等,包括但不限于此。
请参照图1和图2,电连接器30电连接于充电控制器12并位于充电机构10前侧,电连接器30用于与外部的电源插接,以为充电控制器12供电。此处的外部的电源指能够提供电力的电源,可以为交流稳压电源、直流电源或电脑、笔记本、手机等电子设备。电源具有电源插口,根据电源插口的不同,电连接器30可以设置为USB-Type-C插头、USB-Type-B插头、DC插头、Lightning插头、Micro USB插头。若电源为插头,电连接器30也可以为USB-Type-C接口座、USB-Type-B接口座、DC接口座、Lightning接口座、Micro USB接口座。
请参照图3和图4,保护盖体20滑接于充电机构10并能够相对于充电机构10转动,保护盖体20具有第一侧面201、与第一侧面201相背对的第二侧面202以及连接第一侧面201与第二侧面202的盖合面203,保护盖体20通过相对于充电机构10滑动及转动在盖合于电连接器30的盖合位置及避让电连接器30的支撑位置之间切换,第一侧面201在保护盖体20处于盖合位置时与感应区域101的朝向同向,即朝上,第一侧面201在保护盖体20处于支撑位置时朝向感应区域101,即朝后,此时与充电机构10的上表面之间的夹角小于或等于90°。盖合面203在保护盖体20处于盖合位置及避让位置时均朝后,并在保护盖体20处于支撑位置时朝上。上述第二侧面202的朝前与朝下指大致朝前或朝下,当保护盖体20位于支撑位置时,第一侧面201能够承托住智能手表即可。优选地,保护盖体20在转动至支撑位置时具有卡点,以防止保护盖体20发生晃动。其中,保护盖体20可以在滑动完成后进行转动,也可以先转动在滑动,还能够在滑动过程中进行转动,此处不做限制。
本无线充电器通过将电连接器30与外部电源插接,使得充电机构10能够对放置于感应区域101的智能充电设备进行无线充电,保护盖体20滑接于充电壳体11,防止保护盖体20与充电壳体11分离,避免保护盖体20丢失。当保护盖体20位于盖合位置时,保护盖体20盖合电连接器30,电连接器30得以保护电连接器30免受外界磕碰,也避免落灰,当保护盖体20位于支撑位置时,电连接器30避让保护盖体20,即电连接器30露出,以便与外部的电源电连接,第一侧面201在保护盖体20处于支撑位置时朝向充电机构10,即朝向后,此时第一侧面201与所述充电机构10的上表面之间的夹角小于或等于90°,若大于90°,智能穿戴设备易沿第一侧面下滑。当本无线充电器竖直插入电源插口时,充电机构10的感应区域101朝向水平方向,第一侧面201基本朝上,当智能穿戴设备的底面抵靠于感应区域101时,其朝向下的侧面能够抵靠于保护盖体20的第一侧面201,保护盖体20此时对智能穿戴设备起到了支撑作用,同时限制智能穿戴设备与感应区域101分离,防止智能穿戴设备沿第一侧面下滑,保证无线充电器能够对智能穿戴设备进行稳定充电。
在本实施例中,保护盖体20为在滑动完成后进行转动。具体地,请参照图3和图4,充电壳体11开设于滑槽107,滑槽107的延伸方向与电连接器30的延伸方向同向。保护盖体20包括保护部21以及连接于保护部21的转动耳22,转动耳22滑接于滑槽107,以使得保护盖体20在盖合位置及避让位置之间切换,转动耳22还能够在滑槽107内转动,以使得保护盖体20在避让位置与支撑位置之间切换。这样保护盖体20便先通过平移由盖合位置运动至避让位置,再通过转动由避让位置转动至支撑位置。避让位置的设置使得保护盖体20具有固定的转动点,即只有在运动至避让位置时才能够转动,防止用户在不知情的情况下出现硬掰保护盖体20等误操作,提高了操作手感,便于用户操作。具体地,滑槽107设有两个且相背对设置,转动耳22设有两个且分别与滑槽107相适配,以保持保护盖体20与充电壳体11的稳定连接。其中,转动耳22可在滑槽107的任意位置进行转动。
请参阅图6,优选地,充电壳体11还开设有与滑槽107的槽壁相连通的转接槽108,转接槽108与滑槽107优选为形成截面为圆形的转动空间,转动耳22为非圆形,例如矩形,该矩形的长度方向为滑槽107的延伸方向,滑槽107的宽度可与矩形的宽度适配,转动空间的径长可与矩形的长度相适配,这样转动耳22在滑槽107中只能够滑动,滑槽107的槽壁能够限制转动耳22转动。转动耳22运动至转接槽108处时才能够实现转动,以进一步防止用户误操作。
请参照图2至图4,为避免保护盖体20在处于盖合位置时与电连接器30分离而使得电连接器30外露,保护盖体20上设有限位结构205,限位结构205能够在保护盖体20处于盖合位置时限制保护盖体20与电连接器30的相对转动。保护盖体20通过相对于充电机构10平移滑动在盖合位置及避让位置之间切换,其滑动方向为沿电连接器30的延伸方向,保护盖体20在处于避让位置时避让电连接器30,即此时电连接器30与限位结构205分离,以便于漏出电连接器30,第二侧面202在保护盖体20处于避让位置时朝下,保护盖体20通过相对于充电机构10转动在避让位置与支撑位置之间切换。
请参照图2至图4,在本实施例中,保护盖体20于其盖合面203开设有连通至第二侧面202的避让槽204,电连接器30在保护盖体20处于避让位置时至少部分收容于避让槽204,并在保护盖体20处于支撑位置时位于避让槽204外。避让槽204为电连接器30提供了收容空间,同时其槽壁对电连接器30起到了限位作用,防止保护盖体20朝向第二侧面202方向转动,以使得第一侧面201能够与充电壳体11的上表面呈小于或等于90°的夹角,从而便于智能穿戴设备放置。请参照图3,在保护盖体20处于避让位置时,电连接器30能够位于避让槽204内,此时电连接器30对保护盖体20起到了限位作用,防止保护盖体20向下旋转。请参照图4,在保护盖体20位于支撑位置时,电连接器30脱离避让槽204并露出,以与外部的电源插口进行插接。其中,避让槽204开设于保护部21。
请参照图4,优选地,限位结构205为开设于避让槽204的槽底的限位槽,电连接器30能够在保护盖体20处于盖合位置时至少部分插设于限位槽内。限位槽对电连接器30起到了限位及导向作用,使得保护盖体20在处于盖合位置时不会朝向第一侧面201或第二侧面202转动,且能够沿远离电连接器30的方向运动,以最终避让电连接器30并实现转动。
请参照图6和图7,充电控制器12包括控制板121以及电连接于控制板121的感应片122,控制板121能够在感应片122感应到放置于感应区域101的智能手表时为智能手表充电。感应片122可以为感应线圈。
请参照图7,充电壳体11具有容置腔105,控制板121位于容置腔105内,容置腔105用于收纳控制板121使其免受外界磕碰。感应片122可以位于容置腔105内也可以贴合于充电壳体11的上表面,以便更灵敏的感应智能手表。
请参照图3和图4,充电壳体11开设有均连通至容置腔105的连接孔104以及至少一个插接孔103,电连接器30穿设于连接孔104,无线充电器还包括至少一个电连接于充电控制器12的插接座,一插接座正对一插接孔103。电脑或笔记本也可以作为无线充电器的电源,该无线充电器可以通过将电连接器30与电脑或笔记本上的插口插接实现与电源的连接,此时无线充电器可以作为转接器使用,其他电子器件可以通过与插接座电连接来实现充电或与电脑或笔记本进行数据传输。插接座可以设有多个,各插接座为USB-Type-C接口座、USB-Type-B接口座、TF卡接口座、音频接口座、HDMI接口座、DC接口座、Lightning接口座或Micro USB接口座中的一个,以便于其他电子器件实现插接。
由于智能手表有些呈环状或在使用状态呈环状,不便解开,当无线充电器平放时其距离地面的距离较小,难以放入智能手表的表带,导致智能手表的充电困难。请参照图5和图7,在本实施例中,充电壳体11包括底座111以及转动连接于底座111的翻转座112,感应片122连接于翻转座112,感应区域101设于翻转座112上表面,翻转座112具有与底座111呈夹角设置的分离位置以及与底座111贴合的贴合位置,翻转座112通过相对于底座111转动在分离位置与贴合位置之间切换。这样,当智能手表为环状时,可将翻转座112由贴合位置转动至分离位置,此时感应区域101朝向水平方向或者斜向上方向,将智能手表套设于翻转座112并将表盘底面贴合于感应区域101即可实现对智能手表的无线充电。优选地,翻转座112具有使得停留在分离位置的卡位。
请参照图5和图6,为防止翻转座112受到外界磕碰影响转动,底座111的上表面开设有与翻转座112适配的适配槽102,翻转座112能够在其位于贴合位置时位于适配槽102内。作为优选,翻转座112可以与适配槽102卡接,以便对翻转座112在贴合位置时进行定位,适配槽102也起到了导向作用,防止翻转座112在转动过程中发生错位。同时,适配槽102还具有放置表带并限制表带移动的作用,以使得智能手表能够与感应区域101准确对位。
请参照图7,容置腔105可以位于底座111内,此时插接孔103开设于底座111,控制板121位于底座111中的容置腔105内。翻转座112具有翻转腔106,感应片122位于翻转腔106内。这样容置腔105与翻转腔106分别能够保护控制板121与感应片122。
在其他实施例中,容置腔105也可设于翻转座112内,感应片122及控制板121均位于翻转座112的容置腔105内,以防止感应片122与控制板121支架由于转动频繁发生接触不良的情况。插接孔103开设于翻转座112,电连接器30固定连接于底座111且与控制座通过导线连接。
以上仅为本申请的较佳实施例而已,仅具体描述了本申请的技术原理,这些描述只是为了解释本申请的原理,不能以任何方式解释为对本申请保护范围的限制。基于此处解释,凡在本申请的精神和原则之内所作的任何修改、等同替换和改进,及本领域的技术人员不需要付出创造性的劳动即可联想到本申请的其他具体实施方式,均应包含在本申请的保护范围之内。

Claims (15)

  1. 一种无线充电器,用于对智能穿戴设备进行无线充电,其特征在于,包括:
    充电机构,用于在其上表面的感应区域形成充电磁场,所述充电磁场能够为所述智能穿戴设备进行无线充电;
    电连接器,与所述充电机构电连接,并位于所述充电机构的前侧,所述电连接器用于与外部的电源电连接,以为所述充电机构供电;
    保护盖体,滑接于所述充电机构并能够相对于所述充电机构转动,所述保护盖体具有第一侧面及与所述第一侧面相背对的第二侧面,所述保护盖体通过相对于所述充电机构滑动及转动在盖合于所述电连接器的盖合位置及避让所述电连接器的支撑位置之间切换,所述第一侧面在所述保护盖体处于所述支撑位置时朝向所述感应区域并与所述充电机构的上表面之间的夹角小于或等于90°;
    其中,所述电连接器在所述保护盖体处于所述支撑位置时能够与外部的电源电连接。
  2. 如权利要求1所述的无线充电器,其特征在于,所述保护盖体设有限位结构,所述保护盖体通过相对于所述充电机构沿所述电连接器的延伸方向滑动在所述盖合位置及避让位置之间切换,所述限位结构能够在所述保护盖体处于盖合位置时限制所述保护盖体与所述电连接器的相对转动,并在所述保护盖体处于所述避让位置时避让所述电连接器,所述第二侧面在所述保护盖体处于所述避让位置时朝上,所述保护盖体通过相对于所述充电机构转动在所述避让位置与所述支撑位置之间切换。
  3. 如权利要求2所述的无线充电器,其特征在于,所述保护盖体还具有盖合面,所述盖合面在所述保护盖体处于所述盖合位置及所述避让位置时均朝后,并在所述保护盖体处于所述支撑位置时朝上,所述保护盖体于其所述盖合面开设有连通至所述第二侧面的避让槽,所述电连接器在所述保护盖体处于所述避让位置时至少部分收容于所述避让槽,并在所述保护盖体处于所述支撑位置时位于所述避让槽外。
  4. 如权利要求3所述的无线充电器,其特征在于,所述限位结构为开设于所述避让槽的槽底的限位槽,所述电连接器能够在所述保护盖体处于所述盖合位置时至少部分插设于所述限位槽内。
  5. 如权利要求3所述的无线充电器,其特征在于,所述充电壳体开设于滑槽,所述保护盖体包括保护部以及连接于所述保护部的转动耳,所述转动耳滑接于所述滑槽,以使得所述保护盖体在所述盖合位置及所述避让位置之间切换,所述转动耳还能够在所述滑槽内转动,以使得所述保护盖体在所述避让位置与所述支撑位置之间切换,所述避让槽开设于所述保护部。
  6. 如权利要求5所述的无线充电器,其特征在于,所述充电壳体还开设有与所述滑槽的槽壁相连通的转接槽,所述转动耳为非圆形,所述转动耳能够在所述转接槽内转动,所述滑槽的槽壁能够限制所述转动耳转动。
  7. 如权利要求1所述的无线充电器,其特征在于,所述充电机构包括充电壳体以及连接于所述充电壳体的充电控制器,所述充电壳体于其上表面具有所述感应区域,所述充电控制器用于为所述感应区域提供充电磁场,所述充电控制器包括控制板以及电连接于所述控制板的感应片,所述感应片用于感应放置于所述感应区域的所述智能穿戴设备,所述控制板能够通过所述感应片为放置于所述感应区域的所述智能穿戴设备充电,所述电连接器电连接于所述控制板。
  8. 如权利要求7所述的无线充电器,其特征在于,所述充电壳体具有容置腔,所述控制板位于所述容置腔内,所述充电壳体开设有均连通至所述容置腔的插接孔,所述无线充电器还包括至少一个电连接于所述控制板的插接座,一所述插接座正对一所述插接孔。
  9. 如权利要求8所述的无线充电器,其特征在于,所述插接座为USB-Type-C接口座、USB-Type-B接口座、TF卡接口座、音频接口座或HDMI接口座。
  10. 如权利要求7所述的无线充电器,其特征在于,所述充电壳体包括底座以及转动连接于所述底座的翻转座,所述感应片连接于所述翻转座,所述翻转座具有所述感应区域,所述翻转座具有与所述底座呈夹角设置的分离位置以及与所述底座贴合的贴合位置,所述翻转座通过相对于所述充电机构转动而在所述分离位置与所述贴合位置之间切换,所述底座具有所述容置腔,所述插接孔开设于底座。
  11. 如权利要求10所述的无线充电器,其特征在于,所述感应区域为圆形区域。
  12. 如权利要求1所述的无线充电器,其特征在于,所述底座包括充电部以及连接于所述充电部前方的转接部,所述电连接器凸出于所述转接部的前端面,所述保护盖体滑接于所述转接部。
  13. 如权利要求10所述的无线充电器,其特征在于,所述底座的上表面开设有与所述翻转座适配的适配槽,所述翻转座能够在其位于所述贴合位置时位于所述适配槽内。
  14. 如权利要求10所述的无线充电器,其特征在于,所述翻转座具有翻转腔,所述感应片位于所述翻转腔内。
  15. 如权利要求1所述的无线充电器,其特征在于,所述电连接器为USB-Type-C接口座、USB-Type-B接口座、DC接口座、Lightning接口座、Micro USB接口座,或,USB-Type-C插头、USB-Type-B插头、DC插头、Lightning插头、Micro USB插头。
PCT/CN2020/091854 2020-05-22 2020-05-22 无线充电器 WO2021232417A1 (zh)

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CN2824345Y (zh) * 2005-08-17 2006-10-04 乔讯电子工业股份有限公司 排线连接器结构
CN103887638A (zh) * 2012-12-21 2014-06-25 廖生兴 具有保护套的组合式连接装置
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