CN102611169B - Wireless Charging Transmission Device for Portable Electronic Devices - Google Patents
Wireless Charging Transmission Device for Portable Electronic Devices Download PDFInfo
- Publication number
- CN102611169B CN102611169B CN201010598547.8A CN201010598547A CN102611169B CN 102611169 B CN102611169 B CN 102611169B CN 201010598547 A CN201010598547 A CN 201010598547A CN 102611169 B CN102611169 B CN 102611169B
- Authority
- CN
- China
- Prior art keywords
- wireless charging
- housing
- portable electronic
- wireless
- electronic device
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Expired - Fee Related
Links
- 230000005540 biological transmission Effects 0.000 title abstract description 137
- 230000004308 accommodation Effects 0.000 claims 5
- 238000010586 diagram Methods 0.000 description 25
- 238000005516 engineering process Methods 0.000 description 11
- 230000006698 induction Effects 0.000 description 8
- 238000000034 method Methods 0.000 description 4
- 238000013461 design Methods 0.000 description 3
- 230000001154 acute effect Effects 0.000 description 2
- 238000011161 development Methods 0.000 description 2
- 230000007547 defect Effects 0.000 description 1
- 230000005674 electromagnetic induction Effects 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 238000012827 research and development Methods 0.000 description 1
Landscapes
- Charge And Discharge Circuits For Batteries Or The Like (AREA)
Abstract
本发明关于一种可携式电子装置的无线充电传输装置,其包括第一壳体、第二壳体以及设置于第二壳体中的无线充电传输模块。第二壳体可相对于第一壳体转动而与第一壳体之间形成夹角或与第一壳体重叠而形成矩型外型。当形成夹角时,第二壳体可与一无线充电接收装置接触并供电给无线充电接收装置。而第一壳体与第二壳体重叠所形成的矩型外型则方便使用者携带。
The present invention relates to a wireless charging transmission device for a portable electronic device, which includes a first shell, a second shell, and a wireless charging transmission module disposed in the second shell. The second shell can rotate relative to the first shell to form an angle with the first shell or overlap with the first shell to form a rectangular shape. When the angle is formed, the second shell can contact a wireless charging receiving device and supply power to the wireless charging receiving device. The rectangular shape formed by the overlap of the first shell and the second shell is convenient for users to carry.
Description
技术领域 technical field
本发明关于一种充电装置,尤其是关于可携式电子装置的无线充电传输装置。The invention relates to a charging device, in particular to a wireless charging transmission device for a portable electronic device.
背景技术 Background technique
随着科技的发展,各种电子装置应使用者的需求而轻薄化,因此各种电子装置的厂商研发出可携带的可携式电子装置。一般而言,可携式电子装置包括移动电话、个人数字助理(PersonalDigitalAssistant,PDA)以及掌上型游戏机(例如:PSP、NDSL以及Gameboy系列游戏机)等。With the development of science and technology, various electronic devices have become thinner and lighter in response to the needs of users. Therefore, manufacturers of various electronic devices have developed portable electronic devices. Generally speaking, portable electronic devices include mobile phones, personal digital assistants (Personal Digital Assistant, PDA), and handheld game consoles (such as: PSP, NDSL, and Gameboy series game consoles).
由于可携式电子装置具有可携带的特性,故可携式电子装置无法随时连接于电源而必须安装有供应电力的电池,其中,该电池为充电电池,因此使用者可于具有电源的处对可携式电子装置的充电电池进行充电。Due to the portable nature of portable electronic devices, portable electronic devices cannot be connected to a power source at any time and must be equipped with a battery that supplies power. The rechargeable battery of the portable electronic device is charged.
当可携式电子装置的电量不足时,使用者使用一充电装置对可携式电子装置的充电电池进行充电。现有充电装置具有一连接线,使用者将该连接线插设于可携式电子装置并将现有充电装置插接于电源,现有充电装置即可将电源的电力藉由连接线传输至可携式电子装置中。然而,由于现有充电装置的连接线的限制,使用者于可携式电子装置的充电过程中会被连接线所限制而无法依照其使用习惯操作之。When the power of the portable electronic device is low, the user uses a charging device to charge the rechargeable battery of the portable electronic device. The existing charging device has a connecting line. The user inserts the connecting line into the portable electronic device and plugs the existing charging device into the power source. The existing charging device can transmit the power of the power source to the in portable electronic devices. However, due to the limitation of the connecting wire of the existing charging device, the user will be limited by the connecting wire during the charging process of the portable electronic device and cannot operate it according to his usage habits.
再者,随着充电技术的发展,市面上研发一种可进行无线充电(WirelessCharging)的无线充电装置。该无线充电装置包括一感应线圈以及一另一感应线圈。感应线圈设置于该无线充电装置中,用以作为电力的无线充电传输模块,而另一感应线圈连接于充电电池,用以作为电力的无线充电接收模块。当无线充电器中的无线充电传输模块(亦即感应线圈)被通电而产生感应电流时,无线充电接收模块(亦即另一感应线圈)因电磁感应现象而产生电流,且该电流被传输至充电电池中以进行充电。Furthermore, with the development of charging technology, a wireless charging device capable of wireless charging (Wireless Charging) has been developed on the market. The wireless charging device includes an induction coil and another induction coil. The induction coil is arranged in the wireless charging device and used as a wireless charging transmission module for power, and the other induction coil is connected to the rechargeable battery and used as a wireless charging receiving module for power. When the wireless charging transmission module (that is, the induction coil) in the wireless charger is energized to generate an induced current, the wireless charging receiving module (that is, another induction coil) generates a current due to electromagnetic induction, and the current is transmitted to into the rechargeable battery for charging.
然而,上述无线充电装置仍处于研发阶段,且无线充电装置于产品化的过程中会存在有许多问题,例如:无线充电传输模块与无线充电接收模块之间的连接关系以及无线充电接收模块如何与可携式电子装置连接等问题。However, the above-mentioned wireless charging device is still in the research and development stage, and there will be many problems in the productization process of the wireless charging device, such as: the connection relationship between the wireless charging transmission module and the wireless charging receiving module and how the wireless charging receiving module communicates with Portable electronic device connection and other issues.
发明内容 Contents of the invention
本发明主要解决的技术问题是,针对现有技术存在的上述不足,提供一种连接于可携式电子装置的无线充电接收模块的可携式电子装置的无线充电传输装置。The main technical problem to be solved by the present invention is to provide a wireless charging transmission device for a portable electronic device connected to a wireless charging receiving module of the portable electronic device in view of the above-mentioned shortcomings in the prior art.
本发明解决其技术问题所采用的技术方案是提供一种可携式电子装置的无线充电传输装置,用以传输一电力至一无线充电接收装置,且该无线充电接收装置收容一可携式电子装置于其中,该无线充电传输装置包括第一壳体、第二壳体以及无线充电传输模块;其中,该第二壳体连接于该第一壳体并可相对于该第一壳体转动,使该第二壳体与该第一壳体之间形成一夹角或使该第二壳体叠合于该第一壳体,用以与该无线充电接收装置接触;该无线充电传输模块设置于该第二壳体中,用以于该无线充电接收装置与该第二壳体接触时,传输该电力至该无线充电接收装置。The technical solution adopted by the present invention to solve the technical problem is to provide a wireless charging transmission device for a portable electronic device, which is used to transmit a power to a wireless charging receiving device, and the wireless charging receiving device accommodates a portable electronic device Installed therein, the wireless charging transmission device includes a first housing, a second housing and a wireless charging transmission module; wherein the second housing is connected to the first housing and can rotate relative to the first housing, An included angle is formed between the second housing and the first housing or the second housing is superimposed on the first housing to be in contact with the wireless charging receiving device; the wireless charging transmission module is set In the second casing, it is used for transmitting the electric power to the wireless charging receiving device when the wireless charging receiving device is in contact with the second casing.
可选地,所述可携式电子装置的无线充电传输装置还包括无线充电接收座,用以于该无线充电接收座接触于一电子装置时,接收来自于该无线充电传输模块的该电力并传输该电力至该电子装置或接收来自于另一无线充电传输模块的另一电力,并传输该另一电力至该电子装置。Optionally, the wireless charging transmission device of the portable electronic device further includes a wireless charging receiving stand, used to receive the power from the wireless charging transmitting module when the wireless charging receiving stand is in contact with an electronic device and Transmitting the power to the electronic device or receiving another power from another wireless charging transmission module, and transmitting the other power to the electronic device.
可选地,该另一无线充电传输模块设置于该第一壳体中,用以于该无线充电接收座与该第一壳体接触时,传输该另一电力至该无线充电接收座。Optionally, the other wireless charging transmission module is disposed in the first housing, and is used for transmitting the other electric power to the wireless charging receiving base when the wireless charging receiving base is in contact with the first housing.
可选地,该无线充电接收座具有连接插槽,用以被该电子装置的一端伸入而固定该电子装置于其中,使该无线充电接收座接触于该电子装置而传输该另一电力至该电子装置。Optionally, the wireless charging receiving stand has a connection slot for being inserted by one end of the electronic device to fix the electronic device therein, so that the wireless charging receiving stand contacts the electronic device and transmits the other power to the the electronic device.
可选地,该另一无线充电传输模块设置于该第二壳体中,用以于该无线充电接收座与该第二壳体接触时,传输该另一电力至该无线充电接收座。Optionally, the other wireless charging transmission module is disposed in the second housing, and is used for transmitting the other electric power to the wireless charging receiving base when the wireless charging receiving base is in contact with the second housing.
可选地,该第一壳体包括容置空间,用以收容该无线充电接收座于其中,且当该第二壳体相对于该第一壳体转动且该第二壳体叠合于该第一壳体时,该第二壳体覆盖该容置空间,使该容置空间不显露于该第一壳体之外。Optionally, the first casing includes an accommodating space for accommodating the wireless charging receiving stand therein, and when the second casing rotates relative to the first casing and the second casing is superimposed on the When the first casing is used, the second casing covers the accommodating space so that the accommodating space is not exposed outside the first casing.
可选地,该第一壳体还包括连接线以及收纳槽,其中,该连接线连接于一电源,用以传输来自该电源的该电力至该无线充电传输模块;该收纳槽设置于该第一壳体的一侧,用以收容该连接线。Optionally, the first housing further includes a connection line and a storage slot, wherein the connection line is connected to a power supply for transmitting the power from the power supply to the wireless charging transmission module; the storage slot is disposed on the first One side of the housing is used to accommodate the connecting wire.
可选地,该第二壳体包括容置空间,该容置空间位于该第二壳体的一表面上,用以收容该无线充电接收装置于其中,且该第一壳体包括连接插槽,该连接插槽位于该第一壳体的一侧,用以被一电子装置的一端伸入而固定该电子装置于其中。Optionally, the second housing includes an accommodating space located on a surface of the second housing for accommodating the wireless charging receiving device therein, and the first housing includes a connecting slot , the connecting slot is located on one side of the first casing, and is used for being inserted by one end of an electronic device to fix the electronic device therein.
本发明还提供一种可携式电子装置的无线充电传输装置,用以传输一电力至一无线充电接收装置,且该无线充电接收装置收容一可携式电子装置于其中,该无线充电传输装置包括壳体、支撑架以及无线充电传输模块,其中,该壳体用以与该无线充电接收装置接触;该支撑架连接于该壳体并可相对于该壳体转动,使该支撑架与该壳体之间形成一夹角或使该支撑架叠合于该壳体;该无线充电传输模块设置于该壳体中,用以于该无线充电接收装置与该壳体接触时,传输该电力至该无线充电接收装置。The present invention also provides a wireless charging transmission device for a portable electronic device, which is used to transmit a power to a wireless charging receiving device, and the wireless charging receiving device accommodates a portable electronic device therein, the wireless charging transmitting device It includes a casing, a support frame and a wireless charging transmission module, wherein the casing is used to contact the wireless charging receiving device; the support frame is connected to the casing and can rotate relative to the casing, so that the support frame and the An included angle is formed between the housings or the supporting frame is superimposed on the housing; the wireless charging transmission module is arranged in the housing to transmit the power when the wireless charging receiving device is in contact with the housing to the wireless charging receiving device.
可选地,该壳体包括连接插槽,该连接插槽位于该壳体的一侧,用以被一电子装置的一端伸入而固定该电子装置于其中,使该电子装置接触于该无线充电传输模块,且该电力由该无线充电传输模块传输至该电子装置。Optionally, the casing includes a connecting slot, which is located on one side of the casing, and is used to be inserted by one end of an electronic device to fix the electronic device therein, so that the electronic device contacts the wireless device. A charging transmission module, and the electric power is transmitted to the electronic device by the wireless charging transmission module.
可选地,该壳体包括连接插槽以及另一无线充电传输模块,其中,该连接插槽位于该壳体的一侧,用以被一电子装置的一端伸入而固定该电子装置于其中;该另一无线充电传输模块设置于该壳体中,用以于该电子装置被固定于该连接插槽中时与该电子装置接触而传输另一电力予该电子装置。Optionally, the casing includes a connecting slot and another wireless charging transmission module, wherein the connecting slot is located on one side of the casing, and is used for being inserted by one end of an electronic device to fix the electronic device therein The other wireless charging transmission module is arranged in the casing, and is used for contacting the electronic device when the electronic device is fixed in the connection slot to transmit another electric power to the electronic device.
本发明利用壳体与壳体(或支撑架)间的相对转动而改变无线充电传输装置的外型结构,以令使用者于进行无线充电的同时得以检视或操作可携式电子装置。藉由本发明无线充电传输装置的结构可使无线充电传输装置与无线充电接收装置稳定接触,以进行无线充电。The invention utilizes the relative rotation between the housing and the housing (or support frame) to change the appearance structure of the wireless charging transmission device, so that the user can view or operate the portable electronic device while performing wireless charging. With the structure of the wireless charging transmission device of the present invention, the wireless charging transmission device can be stably contacted with the wireless charging receiving device for wireless charging.
附图说明 Description of drawings
图1是本发明可携式电子装置的无线充电传输装置第一较佳实施例于开启状态的结构示意图。FIG. 1 is a schematic structural diagram of a first preferred embodiment of a wireless charging transmission device for a portable electronic device in an open state according to the present invention.
图2是本发明可携式电子装置的无线充电传输装置第一较佳实施例于关闭状态的结构示意图。FIG. 2 is a schematic structural diagram of a first preferred embodiment of a wireless charging transmission device for a portable electronic device in a closed state according to the present invention.
图3是本发明可携式电子装置的无线充电传输装置第一较佳实施例传输电力至无线充电接收装置的结构示意图。FIG. 3 is a structural schematic diagram of a first preferred embodiment of a wireless charging transmission device for a portable electronic device transmitting power to a wireless charging receiving device according to the present invention.
图4是本发明可携式电子装置的无线充电传输装置第一较佳实施例传输电力至无线充电接收装置及电子装置的结构示意图。FIG. 4 is a structural diagram of a first preferred embodiment of a wireless charging transmission device for a portable electronic device according to the present invention, which transmits power to a wireless charging receiving device and an electronic device.
图5是本发明可携式电子装置的无线充电传输装置第二较佳实施例于开启状态的结构示意图。FIG. 5 is a schematic structural diagram of a second preferred embodiment of the wireless charging transmission device for a portable electronic device in an open state according to the present invention.
图6是本发明可携式电子装置的无线充电传输装置第二较佳实施例的无线充电接收座与电子装置的结构示意图。FIG. 6 is a structural diagram of the wireless charging receiving stand and the electronic device of the second preferred embodiment of the wireless charging transmission device for the portable electronic device of the present invention.
图7是本发明可携式电子装置的无线充电传输装置第二较佳实施例传输电力至无线充电接收装置及电子装置的结构示意图。FIG. 7 is a structural diagram of a second preferred embodiment of a wireless charging transmission device for a portable electronic device transmitting power to a wireless charging receiving device and an electronic device according to the present invention.
图8是本发明可携式电子装置的无线充电传输装置第二较佳实施例收容的无线充电接收座的结构示意图。FIG. 8 is a schematic structural diagram of a wireless charging receiving stand accommodated in the second preferred embodiment of the wireless charging transmission device for portable electronic devices of the present invention.
图9是本发明可携式电子装置的无线充电传输装置第三较佳实施例及电子装置的结构示意图。FIG. 9 is a schematic diagram of a third preferred embodiment of a wireless charging transmission device for a portable electronic device and the structure of the electronic device according to the present invention.
图10是本发明可携式电子装置的无线充电传输装置第三较佳实施例于弯折状态的结构侧视示意图。FIG. 10 is a schematic side view of the structure of the third preferred embodiment of the wireless charging transmission device of the portable electronic device in a bent state according to the present invention.
图11是本发明可携式电子装置的无线充电传输装置第三较佳实施例传输电力至无线充电接收装置及电子装置的结构示意图。FIG. 11 is a structural diagram of a third preferred embodiment of a wireless charging transmission device for a portable electronic device transmitting power to a wireless charging receiving device and an electronic device according to the present invention.
图12是本发明可携式电子装置的无线充电传输装置第四较佳实施例的结构示意图。FIG. 12 is a structural diagram of a fourth preferred embodiment of a wireless charging transmission device for a portable electronic device according to the present invention.
图13是本发明可携式电子装置的无线充电传输装置第四较佳实施例的另一视角的结构示意图。FIG. 13 is a structural schematic diagram of another viewing angle of the fourth preferred embodiment of the wireless charging transmission device for the portable electronic device of the present invention.
图14是本发明可携式电子装置的无线充电传输装置第四较佳实施例传输电力至无线充电接收装置及电子装置的结构示意图。FIG. 14 is a schematic structural diagram of a fourth preferred embodiment of a wireless charging transmission device for a portable electronic device transmitting power to a wireless charging receiving device and an electronic device according to the present invention.
具体实施方式 detailed description
鉴于现有技术的缺陷,本发明提供一种可携式电子装置的无线充电传输装置。请参阅图1,其为本发明可携式电子装置的无线充电传输装置第一较佳实施例于开启状态的结构示意图。无线充电传输装置1包括一第一壳体11、一第二壳体12、一无线充电传输模块13、一无线充电接收座14以及一另一无线充电传输模块15。第一壳体11具有一容置空间111、一连接线112以及一收纳槽113,容置空间111用以收容无线充电接收座14于其中,连接线112连接于一电源,用以传输来自电源的电力至无线充电传输模块13以及另一无线充电传输模块15,且连接线112具有一接头1121,于本较佳实施例中,接头1121为一通用串行总线(UniversalSeriesBus,USB)接头。而收纳槽113设置于第一壳体11的一侧,用以收容连接线112于其中。In view of the defects in the prior art, the present invention provides a wireless charging transmission device for a portable electronic device. Please refer to FIG. 1 , which is a structural schematic diagram of a first preferred embodiment of a wireless charging transmission device for a portable electronic device in an open state according to the present invention. The wireless charging transmission device 1 includes a first housing 11 , a second housing 12 , a wireless charging transmission module 13 , a wireless charging receiving stand 14 and another wireless charging transmission module 15 . The first casing 11 has an accommodating space 111, a connecting wire 112 and a receiving groove 113. The accommodating space 111 is used for accommodating the wireless charging receiving base 14 therein. The connecting wire 112 is connected to a power source for transmitting power from the power source The electric power of the wireless charging transmission module 13 and another wireless charging transmission module 15, and the connection line 112 has a connector 1121. In this preferred embodiment, the connector 1121 is a Universal Serial Bus (USB) connector. The receiving groove 113 is disposed on one side of the first casing 11 for receiving the connecting wire 112 therein.
图1中,第二壳体12连接于第一壳体11并可相对于第一壳体11转动,使第二壳体12与第一壳体之间形成一夹角A或使第二壳体12叠合于第一壳体11(如图2所示)。无线充电传输模块13设置于第二壳体12中,用以当容置可携式电子装置2于其中的一无线充电接收装置3(请参见图3)与第二壳体12接触时,传输电力至无线充电接收装置3。同样地,另一无线充电传输模块15亦设置于第二壳体12中,用以当无线充电接收座14与第二壳体12接触时传输另一电力至无线充电接收座14。无线充电接收座14用以对一电子装置4(请参见图3)进行无线充电,且无线充电接收座14具有一连接插槽141,用以被电子装置4的一端伸入而固定电子装置4于其中。于本较佳实施例中,可携式电子装置2是一行动电话,且电子装置4是一无线耳机,至于无线充电传输模块13以及另一无线充电传输模块15皆是以感应线圈以及充电电路所组成,而感应线圈与充电电路为本领域普通技术人员所公知,故不再赘述。当然,于其它较佳实施例中,电子装置可为可充电式手电筒、无线鼠标等。In Fig. 1, the second casing 12 is connected to the first casing 11 and can rotate relative to the first casing 11, so that an angle A is formed between the second casing 12 and the first casing or the second casing The body 12 is superimposed on the first casing 11 (as shown in FIG. 2 ). The wireless charging transmission module 13 is arranged in the second casing 12, and is used for transmitting when a wireless charging receiving device 3 (see FIG. 3 ) containing the portable electronic device 2 contacts the second casing 12. Power to the wireless charging receiving device 3 . Similarly, another wireless charging transmission module 15 is also disposed in the second housing 12 for transmitting another electric power to the wireless charging receiving base 14 when the wireless charging receiving base 14 is in contact with the second housing 12 . The wireless charging receiving stand 14 is used to wirelessly charge an electronic device 4 (please refer to FIG. 3 ), and the wireless charging receiving stand 14 has a connection slot 141, which is used to be inserted by one end of the electronic device 4 to fix the electronic device 4 in it. In this preferred embodiment, the portable electronic device 2 is a mobile phone, and the electronic device 4 is a wireless earphone. As for the wireless charging transmission module 13 and another wireless charging transmission module 15, both are based on an induction coil and a charging circuit The induction coil and the charging circuit are well known to those skilled in the art, so details are not repeated here. Of course, in other preferred embodiments, the electronic device can be a rechargeable flashlight, a wireless mouse, and the like.
需特别说明的是,作为另一种实施方式,第二壳体亦可仅设置有一无线充电传输模块于其中,而不设置另一无线充电传输模块于第二壳体中。因此该无线充电传输模块与上述无线充电传输模块13的电路设计不同,该无线充电传输模块被设计为可同时传输二道电力,并分别传输一电力至无线充电接收装置,而同时传输另一电力至无线充电接收座。惟第一较佳实施例中是采用第二壳体设置有无线充电传输模块以及另一无线充电传输模块的设计。It should be noted that, as another implementation manner, the second casing may only have one wireless charging transmission module disposed therein, without another wireless charging transmission module disposed in the second casing. Therefore, the circuit design of this wireless charging transmission module is different from that of the wireless charging transmission module 13 above. to the wireless charging dock. However, in the first preferred embodiment, the second housing is provided with a wireless charging transmission module and another wireless charging transmission module.
接下来请参阅图2,其为本发明可携式电子装置的无线充电传输装置第一较佳实施例于关闭状态的结构示意图。当第二壳体12相对于第一壳体11转动而使第二壳体12叠合于第一壳体11时,第一壳体11被收容于容置空间111中。再者,还可收纳连接线112于收纳槽113中,使得无线充电传输装置1具有一矩形外型而便于携带。当然地,亦可在放置无线充电接收座14或其它小型物品于容置空间111中之后,再转动第二壳体12而收容第一壳体11于容置空间111中,而不需另外手持无线充电接收座14或其它小型物品。Next, please refer to FIG. 2 , which is a structural schematic diagram of a first preferred embodiment of a wireless charging transmission device for a portable electronic device in a closed state according to the present invention. When the second casing 12 is rotated relative to the first casing 11 so that the second casing 12 is stacked on the first casing 11 , the first casing 11 is accommodated in the accommodating space 111 . Furthermore, the connecting wire 112 can also be stored in the receiving slot 113 , so that the wireless charging transmission device 1 has a rectangular shape and is easy to carry. Of course, after placing the wireless charging receiving stand 14 or other small items in the accommodating space 111, the second casing 12 can be rotated to accommodate the first casing 11 in the accommodating space 111 without additional hands. Wireless charging dock 14 or other small items.
接下来说明无线充电传输装置1传输电力至可携式电子装置2的运行情形,请参阅图3,其为本发明可携式电子装置的无线充电传输装置第一较佳实施例传输电力至无线充电接收装置的结构示意图。当使用者欲对可携式电子装置2进行无线充电时,转动第二壳体12至其被第一壳体11抵顶而无法再转动,此时,第二壳体12与第一壳体11间的夹角A小于90度而形成一锐角,使无线充电传输装置1呈现一支架结构。接下来,将容置可携式电子装置2于其中的无线充电接收装置3与第二壳体12接触,亦即无线充电接收装置3倚靠着第二壳体12。第二壳体12中的无线充电传输模块13藉由无线传输技术将电力传输至无线充电接收装置3,电力再由无线充电接收装置3传输至可携式电子装置2中的充电电池(图中未标示)。Next, the operation of the wireless charging transmission device 1 transmitting power to the portable electronic device 2 will be described. Please refer to FIG. Schematic diagram of the charging receiver. When the user wants to wirelessly charge the portable electronic device 2, the second housing 12 is rotated until it is pressed against the first housing 11 and cannot be rotated any more. At this time, the second housing 12 and the first housing 12 The angle A between 11 is less than 90 degrees and forms an acute angle, so that the wireless charging transmission device 1 presents a support structure. Next, the wireless charging receiving device 3 accommodating the portable electronic device 2 is brought into contact with the second housing 12 , that is, the wireless charging receiving device 3 leans against the second housing 12 . The wireless charging transmission module 13 in the second casing 12 transmits power to the wireless charging receiving device 3 through wireless transmission technology, and then the power is transmitted from the wireless charging receiving device 3 to the rechargeable battery in the portable electronic device 2 (in the figure not marked).
而当使用者欲同时对可携式电子装置2以及电子装置4进行无线充电时,首先将电子装置4的一端伸入无线充电接收座14的连接插槽141中而固定电子装置4于无线充电接收座14中,再同时将可携式电子装置2以及电子装置4与呈现支架结构的无线充电传输装置1接触,亦即可携式电子装置2以及电子装置4倚靠着第二壳体12,其中电子装置4悬挂于第二壳体12的一侧,使无线充电接收座14得以倚靠着第二壳体12。此时,第二壳体12中的无线充电传输模块13传输电力至无线充电接收装置3,而第二壳体12中的另一无线充电传输模块15传输另一电力至电子装置4,如图4所示。And when the user wants to wirelessly charge the portable electronic device 2 and the electronic device 4 at the same time, firstly, one end of the electronic device 4 is inserted into the connection slot 141 of the wireless charging receiving stand 14 to fix the electronic device 4 in the wireless charging In the receiving seat 14, the portable electronic device 2 and the electronic device 4 are brought into contact with the wireless charging transmission device 1 showing a stand structure at the same time, that is, the portable electronic device 2 and the electronic device 4 lean against the second casing 12, The electronic device 4 is suspended on one side of the second casing 12 , so that the wireless charging receiving stand 14 can lean against the second casing 12 . At this time, the wireless charging transmission module 13 in the second housing 12 transmits power to the wireless charging receiving device 3, and another wireless charging transmission module 15 in the second housing 12 transmits another power to the electronic device 4, as shown in the figure 4.
再者,本发明还提供一第二较佳实施例。请同时参阅图5以及图6,图5为本发明可携式电子装置的无线充电传输装置第二较佳实施例于开启状态的结构示意图,而图6为本发明可携式电子装置的无线充电传输装置第二较佳实施例的无线充电接收座与电子装置的结构示意图。无线充电传输装置5包括一第一壳体51、一第二壳体52、一无线充电传输模块53、一无线充电接收座54以及一另一无线充电传输模块55。第一壳体51具有一容置空间511、一连接线512以及一收纳槽513,容置空间511用以收容无线充电接收座54于其中,连接线512连接于一电源,用以传输来自电源的电力至无线充电传输模块53以及另一无线充电传输模块55,且连接线512具有一接头5121,与第一较佳实施例相同地,接头5121为一通用串行总线接头。而收纳槽513设置于第一壳体51的一侧,用以收容连接线512于其中。Furthermore, the present invention also provides a second preferred embodiment. Please refer to FIG. 5 and FIG. 6 at the same time. FIG. 5 is a schematic structural diagram of the second preferred embodiment of the wireless charging transmission device of the portable electronic device of the present invention in an open state, and FIG. 6 is a wireless charging transmission device of the portable electronic device of the present invention. A schematic structural diagram of the wireless charging receiving stand and the electronic device of the second preferred embodiment of the charging transmission device. The wireless charging transmission device 5 includes a first housing 51 , a second housing 52 , a wireless charging transmission module 53 , a wireless charging receiving stand 54 and another wireless charging transmission module 55 . The first housing 51 has an accommodating space 511, a connecting wire 512 and a receiving groove 513. The accommodating space 511 is used for accommodating the wireless charging receiving base 54 therein. The electric power of the wireless charging transmission module 53 and another wireless charging transmission module 55, and the connection line 512 has a connector 5121, the same as the first preferred embodiment, the connector 5121 is a USB connector. The receiving groove 513 is disposed on one side of the first casing 51 for receiving the connecting wire 512 therein.
图5中,第二壳体52连接于第一壳体51并可相对于第一壳体51转动,使第二壳体52与第一壳体51之间形成一夹角A’或使第二壳体52叠合于第一壳体51。无线充电传输模块53设置于第二壳体52中,用以当容置可携式电子装置2于其中的无线充电接收装置3(请参见图3)与第二壳体52接触时,传输电力至无线充电接收装置3。而另一无线充电传输模块55则设置于第一壳体51中,用以当无线充电接收座54与第一壳体51接触时传输另一电力至无线充电接收座54。无线充电接收座54用以对一电子装置4’(请参见图6)进行无线充电,且无线充电接收座54具有一连接插槽541,用以被电子装置4’的一端伸入而固定电子装置4’于其中,于本较佳实施例中,电子装置4’为一无线耳机。In Fig. 5, the second housing 52 is connected to the first housing 51 and can rotate relative to the first housing 51, so that an angle A' is formed between the second housing 52 and the first housing 51 or the second housing 52 The second casing 52 is stacked on the first casing 51 . The wireless charging transmission module 53 is disposed in the second casing 52, and is used for transmitting power when the wireless charging receiving device 3 (see FIG. 3 ) containing the portable electronic device 2 is in contact with the second casing 52. to the wireless charging receiving device 3. Another wireless charging transmission module 55 is disposed in the first housing 51 for transmitting another electric power to the wireless charging receiving base 54 when the wireless charging receiving base 54 is in contact with the first housing 51 . The wireless charging receiving base 54 is used to wirelessly charge an electronic device 4' (please refer to FIG. 6), and the wireless charging receiving base 54 has a connection slot 541 for being inserted by one end of the electronic device 4' to fix the electronic device 4'. The device 4' is contained therein. In this preferred embodiment, the electronic device 4' is a wireless earphone.
接下来说明无线充电传输装置5传输电力至可携式电子装置2的运行情形。请参阅图7,其为本发明可携式电子装置的无线充电传输装置第二较佳实施例传输电力至无线充电接收装置及电子装置的结构示意图。当使用者欲对可携式电子装置2进行无线充电时,将第二壳体52转动至第二壳体52平行于第一壳体51,亦即第二壳体52与第一壳体51间的夹角A等于180度,使无线充电传输装置5呈现一平板结构。接下来,将容置可携式电子装置2于其中的无线充电接收装置3与第二壳体12接触,亦即放置无线充电接收装置3于第二壳体52上。使第二壳体52中的无线充电传输模块53藉由无线传输技术将电力传输至无线充电接收装置3,电力再由无线充电接收装置3被传输至可携式电子装置2中的充电电池(图中未标示),以进行无线充电。Next, the operation of the wireless charging transmission device 5 transmitting power to the portable electronic device 2 will be described. Please refer to FIG. 7 , which is a structural diagram of a second preferred embodiment of a wireless charging transmission device for a portable electronic device transmitting power to a wireless charging receiving device and an electronic device according to the present invention. When the user intends to charge the portable electronic device 2 wirelessly, the second housing 52 is rotated until the second housing 52 is parallel to the first housing 51, that is, the second housing 52 and the first housing 51 The angle A between them is equal to 180 degrees, so that the wireless charging transmission device 5 presents a flat plate structure. Next, the wireless charging receiving device 3 accommodating the portable electronic device 2 is brought into contact with the second housing 12 , that is, the wireless charging receiving device 3 is placed on the second housing 52 . The wireless charging transmission module 53 in the second housing 52 transmits power to the wireless charging receiving device 3 through wireless transmission technology, and the power is then transmitted to the rechargeable battery ( not marked in the figure) for wireless charging.
另一方面,将容置电子装置4于其中的无线充电接收座54与第一壳体51接触,亦即放置无线充电接收座54于第一壳体51上,使第一壳体51中的另一无线充电传输模块55藉由无线传输技术将电力传输至无线充电接收座54,该另一电力再由无线充电接收座54传输至电子装置4以进行无线充电。On the other hand, the wireless charging receiving base 54 containing the electronic device 4 is brought into contact with the first housing 51, that is, the wireless charging receiving base 54 is placed on the first housing 51, so that the wireless charging receiving base 54 in the first housing 51 Another wireless charging transmission module 55 transmits power to the wireless charging receiving stand 54 through wireless transmission technology, and the other electric power is then transmitted to the electronic device 4 by the wireless charging receiving stand 54 for wireless charging.
需特别说明的是,作为另一种实施方式,第二壳体设置有一无线充电传输模块于其中,而第一壳体不设置另一无线充电传输模块于其中,亦即无线充电传输模块可同时传输二道电力,因此该无线充电传输模块与上述无线充电传输模块53的电路设计不同,该无线充电传输模块被设计为传输一电力至无线充电接收装置,而同时传输另一电力至无线充电接收座。当然,无线充电接收座必须与第二壳体接触,而非与第一壳体接触。惟第二较佳实施例中是采用第二壳体设置有无线充电传输模块,而第一壳体设置有另一无线充电传输模块的设计。It should be noted that, as another embodiment, the second housing is provided with a wireless charging transmission module, while the first housing is not provided with another wireless charging transmission module, that is, the wireless charging transmission module can simultaneously The wireless charging transmission module is different from the circuit design of the above wireless charging transmission module 53. The wireless charging transmission module is designed to transmit one power to the wireless charging receiving device, and at the same time transmit another power to the wireless charging receiving device. seat. Of course, the wireless charging receiving stand must be in contact with the second case, not the first case. However, in the second preferred embodiment, the second housing is provided with a wireless charging transmission module, and the first housing is provided with another wireless charging transmission module.
请参阅图8,其为本发明可携式电子装置的无线充电传输装置第二较佳实施例收容的无线充电接收座的结构示意图。当无线充电完成之后,可将无线充电接收座54放入第一壳体51的容置空间511中,并转动第二壳体52,使第二壳体52叠合于第一壳体51而覆盖第一壳体51,藉此,无线充电传输装置5变形为一矩形外型而便利于携带。Please refer to FIG. 8 , which is a schematic structural diagram of a wireless charging receiving stand accommodated in a second preferred embodiment of the wireless charging transmission device for portable electronic devices of the present invention. After the wireless charging is completed, the wireless charging receiving base 54 can be put into the accommodating space 511 of the first casing 51, and the second casing 52 can be rotated so that the second casing 52 is stacked on the first casing 51 The first casing 51 is covered, whereby the wireless charging transmission device 5 is transformed into a rectangular shape, which is convenient for carrying.
再者,本发明还提供一第三较佳实施例。请参阅图9,其为本发明可携式电子装置的无线充电传输装置第三较佳实施例及电子装置的结构示意图。无线充电传输装置6包括一第一壳体61、一第二壳体62、一无线充电传输模块63以及一另一无线充电传输模块64。第一壳体61具有一连接插槽611,位于第一壳体61的一侧,用以被一电子装置4”的一端伸入而固定电子装置4”于其中。于本较佳实施例中,电子装置4”是一无线耳机。第二壳体62具有一表面621以及一容置空间622,容置空间622位于第二壳体62的表面621上。Moreover, the present invention also provides a third preferred embodiment. Please refer to FIG. 9 , which is a schematic diagram of a third preferred embodiment of a wireless charging transmission device for a portable electronic device and the structure of the electronic device according to the present invention. The wireless charging transmission device 6 includes a first housing 61 , a second housing 62 , a wireless charging transmission module 63 and another wireless charging transmission module 64 . The first casing 61 has a connecting slot 611 located on one side of the first casing 61 for being inserted by one end of an electronic device 4" to fix the electronic device 4" therein. In this preferred embodiment, the electronic device 4 ″ is a wireless earphone. The second housing 62 has a surface 621 and an accommodating space 622 , and the accommodating space 622 is located on the surface 621 of the second housing 62 .
无线充电传输模块63设置于第二壳体62中,用以当容置可携式电子装置2于其中的无线充电接收装置3(请参见图11)与第二壳体62接触时,传输电力至无线充电接收装置3。而另一无线充电传输模块64则设置于第一壳体61中,用以当电子装置4”伸入于连接插槽611且固定于其中时,藉由无线传输技术传输另一电力至该电子装置4”。The wireless charging transmission module 63 is disposed in the second casing 62, and is used for transmitting power when the wireless charging receiving device 3 (see FIG. 11 ) containing the portable electronic device 2 is in contact with the second casing 62. to the wireless charging receiving device 3. Another wireless charging transmission module 64 is arranged in the first casing 61, and is used to transmit another electric power to the electronic device 4" by wireless transmission technology when the electronic device 4" is inserted into the connection slot 611 and fixed therein. Device 4".
接下来请同时参阅图9以及图10,图10是本发明可携式电子装置的无线充电传输装置第三较佳实施例于弯折状态的结构侧视示意图。第二壳体62连接于第一壳体61且第二壳体62可相对于第一壳体61转动,图9中,第二壳体62与第一壳体61平行,使无线充电传输装置6呈现一平板结构。图10显示了第二壳体62相对于第一壳体61转动而使第二壳体62与第一壳体61之间形成一夹角A”。Next, please refer to FIG. 9 and FIG. 10 at the same time. FIG. 10 is a schematic side view of a third preferred embodiment of a wireless charging transmission device for a portable electronic device of the present invention in a bent state. The second housing 62 is connected to the first housing 61 and the second housing 62 can rotate relative to the first housing 61. In FIG. 9, the second housing 62 is parallel to the first housing 61, so that the wireless charging transmission device 6 presents a flat plate structure. FIG. 10 shows that the second casing 62 rotates relative to the first casing 61 so that an angle A" is formed between the second casing 62 and the first casing 61 .
接下来说明无线充电传输装置6传输电力至可携式电子装置2的运行情形,请参阅图11,其为本发明可携式电子装置的无线充电传输装置第三较佳实施例传输电力至无线充电接收装置及电子装置的结构示意图。当使用者欲对可携式电子装置2进行无线充电时,将第二壳体62转动使第二壳体62与第一壳体61之间形成夹角A”,且该夹角A”大于90度,使无线充电传输装置6呈现一凸起结构。接下来,将容置可携式电子装置2于其中的无线充电接收装置3与第二壳体62接触,亦即放置无线充电接收装置3于第二壳体62的表面621上的容置空间622中,使第二壳体62中的无线充电传输模块63藉由无线传输技术将电力传输至无线充电接收装置3,电力再由无线充电接收装置3传输至可携式电子装置2中的充电电池(图中未标示),以进行无线充电。Next, the operation of the wireless charging transmission device 6 transmitting power to the portable electronic device 2 will be described. Please refer to FIG. Schematic diagram of the structure of the charging receiving device and the electronic device. When the user intends to charge the portable electronic device 2 wirelessly, the second casing 62 is rotated so that an angle A" is formed between the second casing 62 and the first casing 61, and the angle A" is larger than 90 degrees, so that the wireless charging transmission device 6 presents a convex structure. Next, the wireless charging receiving device 3 accommodating the portable electronic device 2 is brought into contact with the second casing 62, that is, the receiving space where the wireless charging receiving device 3 is placed on the surface 621 of the second casing 62 In 622, the wireless charging transmission module 63 in the second casing 62 transmits power to the wireless charging receiving device 3 through wireless transmission technology, and the power is then transmitted from the wireless charging receiving device 3 to the charging device in the portable electronic device 2 battery (not shown) for wireless charging.
另一方面,将电子装置4”插接于第一壳体61的连接插槽611中,使电子装置4接触位于第一壳体61中的另一无线充电传输模块64,另一无线充电传输模块64藉由无线传输技术将电力传输至电子装置4”以进行无线充电。无线充电接收装置3被放置于容置空间622中且电子装置4”被固定于连接插槽611中的情况如图11所示,无线充电接收装置3被放置于凸起的无线充电传输装置6上是为了令使用者于无线充电过程中仍得以轻松检视可携式电子装置2的屏幕。当然,当无线充电传输装置6呈现平板结构时亦可放置无线充电接收装置3于其中,并进行无线充电。On the other hand, plug the electronic device 4" into the connection slot 611 of the first casing 61, make the electronic device 4 contact another wireless charging transmission module 64 located in the first casing 61, another wireless charging transmission module 64 The module 64 transmits the electric power to the electronic device 4" through the wireless transmission technology for wireless charging. The wireless charging receiving device 3 is placed in the accommodating space 622 and the electronic device 4" is fixed in the connection slot 611 as shown in FIG. 11, the wireless charging receiving device 3 is placed on the raised wireless charging transmitting device 6 The above is to allow the user to easily view the screen of the portable electronic device 2 during the wireless charging process. Of course, when the wireless charging transmission device 6 has a flat structure, the wireless charging receiving device 3 can also be placed in it, and wireless charging can be carried out. Charge.
再者,本发明另提供一第四较佳实施例。请同时参阅图12以及图13,图12为本发明可携式电子装置的无线充电传输装置第四较佳实施例的结构示意图,而图13则为本发明可携式电子装置的无线充电传输装置第四较佳实施例的另一视角的结构示意图。无线充电传输装置7包括一壳体71、一支撑架72、一无线充电传输模块73以及一另一无线充电传输模块74。壳体71具有一连接插槽711,位于壳体71的一侧,用以被一电子装置4*的一端伸入而固定电子装置4*于其中。支撑架72连接于壳体71并可相对于壳体71转动,使支撑架72与壳体71之间形成一夹角A*(如图13所示)或使支撑架72叠合于壳体71(未显示于图中)。Moreover, the present invention further provides a fourth preferred embodiment. Please refer to FIG. 12 and FIG. 13 at the same time. FIG. 12 is a schematic structural diagram of a fourth preferred embodiment of a wireless charging transmission device for a portable electronic device of the present invention, and FIG. 13 is a wireless charging transmission device for a portable electronic device of the present invention A schematic structural diagram of another viewing angle of the fourth preferred embodiment of the device. The wireless charging transmission device 7 includes a housing 71 , a supporting frame 72 , a wireless charging transmission module 73 and another wireless charging transmission module 74 . The casing 71 has a connection slot 711 located on one side of the casing 71 for being inserted by one end of an electronic device 4 * to fix the electronic device 4 * therein. The support frame 72 is connected to the casing 71 and can rotate relative to the casing 71, so that an angle A* is formed between the support frame 72 and the casing 71 (as shown in FIG. 13 ) or the support frame 72 is stacked on the casing 71 (not shown in the figure).
无线充电传输模块73设置于壳体71中,用以当容置可携式电子装置2于其中的无线充电接收装置3(请参见图14)与壳体71接触时,传输电力至无线充电接收装置3。而另一无线充电传输模块74则设置于壳体71中,用以当电子装置4*伸入于连接插槽711且固定电子装置4*于其中时,藉由无线传输技术传输另一电力至电子装置4*。The wireless charging transmission module 73 is arranged in the casing 71, and is used for transmitting power to the wireless charging receiving device 3 (see FIG. 14 ) containing the portable electronic device 2 in contact with the casing 71. device 3. Another wireless charging transmission module 74 is arranged in the casing 71, and is used to transmit another electric power to the battery via wireless transmission technology when the electronic device 4* is inserted into the connection slot 711 and the electronic device 4* is fixed therein. Electronics 4*.
需特别说明的是,壳体亦可设置有一无线充电传输模块于其中,而不设置另一无线充电传输模块于其中。因此该无线充电传输模块与上述无线充电传输模块73的电路设计不同,该无线充电传输模块被设计为可同时传输二道电力,并分别传输一电力至无线充电接收装置,而同时传输另一电力至电子装置。惟第四较佳实施例中是采用壳体设置有无线充电传输模块以及另一无线充电传输模块的设计。It should be noted that the casing can also be provided with a wireless charging transmission module therein, without another wireless charging transmission module being provided therein. Therefore, the circuit design of this wireless charging transmission module is different from that of the above wireless charging transmission module 73. The wireless charging transmission module is designed to transmit two channels of power at the same time, and transmit one power to the wireless charging receiving device respectively, while transmitting the other power at the same time. to the electronic device. However, in the fourth preferred embodiment, the housing is provided with a wireless charging transmission module and another wireless charging transmission module.
接下来说明无线充电传输装置7传输电力至可携式电子装置2的运行情形,请参阅图14,其为本发明可携式电子装置的无线充电传输装置第四较佳实施例传输电力至无线充电接收装置及电子装置的结构示意图。当使用者欲对可携式电子装置2进行无线充电时,将支撑架72相对于壳体71转动使壳体71与支撑架72之间形成夹角A*,且该夹角A*为一锐角,亦即夹角A*小于90度,使无线充电传输装置7呈现一相框外型。接下来,将容置可携式电子装置2于其中的无线充电接收装置3与壳体71接触,亦即将无线充电接收装置3倚靠着壳体71。使壳体71中的无线充电传输模块73藉由无线传输技术将电力传输至无线充电接收装置3,电力再由无线充电接收装置3传输至可携式电子装置2中的充电电池(图中未标示),以进行无线充电。Next, the operation of the wireless charging transmission device 7 transmitting power to the portable electronic device 2 will be described. Please refer to FIG. Schematic diagram of the structure of the charging receiving device and the electronic device. When the user wants to wirelessly charge the portable electronic device 2, the support frame 72 is rotated relative to the housing 71 so that an angle A* is formed between the housing 71 and the support frame 72, and the angle A* is one The acute angle, that is, the included angle A* is less than 90 degrees, so that the wireless charging transmission device 7 presents a picture frame appearance. Next, the wireless charging receiving device 3 accommodating the portable electronic device 2 is brought into contact with the housing 71 , that is, the wireless charging receiving device 3 is leaned against the housing 71 . The wireless charging transmission module 73 in the casing 71 transmits power to the wireless charging receiving device 3 through wireless transmission technology, and then the power is transmitted from the wireless charging receiving device 3 to the rechargeable battery in the portable electronic device 2 (not shown in the figure). marked) for wireless charging.
另一方面,将电子装置4*插接于壳体71的连接插槽711中,使电子装置4*接触位于壳体71中的另一无线充电传输模块74,另一无线充电传输模块74藉由无线传输技术将电力传输至电子装置4*以进行无线充电。On the other hand, the electronic device 4* is plugged into the connection slot 711 of the housing 71, so that the electronic device 4* contacts another wireless charging transmission module 74 located in the housing 71, and the other wireless charging transmission module 74 borrows The electric power is transmitted to the electronic device 4* by wireless transmission technology for wireless charging.
根据上述各较佳实施例可知,本发明无线充电传输装置是利用壳体与壳体(或支撑架)间的相对转动而改变无线充电传输装置的外型结构,以令使用者于进行无线充电的同时得以检视或操作可携式电子装置。藉由本发明无线充电传输装置的结构可使无线充电传输装置与无线充电接收装置稳定接触,以进行无线充电。According to the above-mentioned preferred embodiments, the wireless charging transmission device of the present invention uses the relative rotation between the casing and the casing (or support frame) to change the appearance structure of the wireless charging transmission device, so that the user can perform wireless charging While viewing or operating the portable electronic device. With the structure of the wireless charging transmission device of the present invention, the wireless charging transmission device can be stably contacted with the wireless charging receiving device for wireless charging.
以上所述仅为本发明的较佳实施例,并非用以限定本发明的权利要求范围,因此凡其它未脱离本发明所揭示的精神下所完成的等效改变或修饰,均应包含于本发明的范围内。The above descriptions are only preferred embodiments of the present invention, and are not intended to limit the scope of the claims of the present invention. Therefore, all other equivalent changes or modifications that do not deviate from the spirit disclosed in the present invention should be included in this disclosure. within the scope of the invention.
Claims (6)
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201010598547.8A CN102611169B (en) | 2010-12-21 | 2010-12-21 | Wireless Charging Transmission Device for Portable Electronic Devices |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201010598547.8A CN102611169B (en) | 2010-12-21 | 2010-12-21 | Wireless Charging Transmission Device for Portable Electronic Devices |
Publications (2)
Publication Number | Publication Date |
---|---|
CN102611169A CN102611169A (en) | 2012-07-25 |
CN102611169B true CN102611169B (en) | 2016-05-11 |
Family
ID=46528389
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201010598547.8A Expired - Fee Related CN102611169B (en) | 2010-12-21 | 2010-12-21 | Wireless Charging Transmission Device for Portable Electronic Devices |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN102611169B (en) |
Families Citing this family (10)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2014101135A1 (en) * | 2012-12-28 | 2014-07-03 | 海能达通信股份有限公司 | Clip for carrying electronic device |
CN104143860B (en) * | 2013-05-07 | 2020-01-21 | 深圳富泰宏精密工业有限公司 | Multifunctional assembly combined with portable electronic device |
CN104218625B (en) | 2013-05-31 | 2018-07-13 | 中兴通讯股份有限公司 | A kind of wireless charging method and device of hand-held mobile terminal |
TWI528137B (en) * | 2013-10-23 | 2016-04-01 | 威剛科技股份有限公司 | Charger |
CN104935052A (en) * | 2015-07-04 | 2015-09-23 | 苏州科锐恒机械科技有限公司 | A multifunctional support |
CN105048604A (en) * | 2015-09-01 | 2015-11-11 | 罗宝 | Mobile phone wireless charger |
KR102595232B1 (en) * | 2016-09-23 | 2023-10-30 | 삼성전자주식회사 | Wireless power transmission apparatus in electronic device and method thereof |
CN107968489A (en) * | 2017-12-29 | 2018-04-27 | 中山市飞特五金制品有限公司 | Wireless charging device is received in a kind of deformation exhibition |
CN108448734B (en) * | 2018-02-05 | 2020-08-18 | 宁波力芯科信息科技有限公司 | Mobile phone charging base for KTV and implementation method |
CN109066873A (en) * | 2018-08-30 | 2018-12-21 | 四川易海华科技有限公司 | A kind of charging unit and the high-speed rail seat including the device |
Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
TW200426563A (en) * | 2003-01-16 | 2004-12-01 | Sony Corp | Information terminal apparatus |
CN2720508Y (en) * | 2004-07-28 | 2005-08-24 | 昆盈企业股份有限公司 | Wireless Signal Receiver with Detachable Charging Device |
CN2752977Y (en) * | 2004-10-14 | 2006-01-18 | 上海环达计算机科技有限公司 | Portable charging stand |
Family Cites Families (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
KR101425678B1 (en) * | 2007-09-12 | 2014-07-31 | 엘지전자 주식회사 | Solid-state charging system |
-
2010
- 2010-12-21 CN CN201010598547.8A patent/CN102611169B/en not_active Expired - Fee Related
Patent Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
TW200426563A (en) * | 2003-01-16 | 2004-12-01 | Sony Corp | Information terminal apparatus |
CN2720508Y (en) * | 2004-07-28 | 2005-08-24 | 昆盈企业股份有限公司 | Wireless Signal Receiver with Detachable Charging Device |
CN2752977Y (en) * | 2004-10-14 | 2006-01-18 | 上海环达计算机科技有限公司 | Portable charging stand |
Also Published As
Publication number | Publication date |
---|---|
CN102611169A (en) | 2012-07-25 |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
CN102611169B (en) | Wireless Charging Transmission Device for Portable Electronic Devices | |
US8395353B2 (en) | Wireless charging transmitter for portable electronic device | |
JP6110956B2 (en) | Mobile power supply that can carry a charge conversion adapter and supports 2D barcode identification | |
US9118195B2 (en) | Mobile communication device housing | |
CN204167924U (en) | Wireless charging device | |
US8699230B2 (en) | Combined type storage case for electronic device accessories | |
EP2472697A1 (en) | Wireless charging transmitter for portable electronic device | |
CN103166287A (en) | Base for mobile electronic terminal equipment | |
CN102593877B (en) | Wireless Charging Receiver for Portable Electronic Devices | |
TWI495222B (en) | Transmitter of portable electric device | |
CN108258774A (en) | Wireless charger with support structure | |
CN217469478U (en) | Portable charging device | |
JP3184539U (en) | Electric power sensor type charging device with electric cord storage function | |
KR101516321B1 (en) | Power supply apparatus for smartphone | |
US7990104B2 (en) | Mobile charger receptacle configured with universal serial bus (USB), cigarette lighter adapter (CLA) plug and control firmware | |
US9325199B2 (en) | Wireless charging device | |
TWM431612U (en) | Electronic facility protection cover with charge cable | |
CN222052632U (en) | A wirelessly rechargeable tablet case | |
CN201696832U (en) | Placing structure of electronic device | |
CN203504237U (en) | Wireless charging protection device | |
CN211061936U (en) | Dull and stereotyped protective housing with remove function of charging | |
CN212486171U (en) | Portable storage power supply | |
CN202145711U (en) | shell structure | |
CN201430450Y (en) | multifunctional charger | |
TWI479721B (en) | Portable power source |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
C06 | Publication | ||
PB01 | Publication | ||
C10 | Entry into substantive examination | ||
SE01 | Entry into force of request for substantive examination | ||
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20160511 Termination date: 20171221 |