WO2018232629A1 - 移动终端及电池鼓包检测装置 - Google Patents

移动终端及电池鼓包检测装置 Download PDF

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Publication number
WO2018232629A1
WO2018232629A1 PCT/CN2017/089361 CN2017089361W WO2018232629A1 WO 2018232629 A1 WO2018232629 A1 WO 2018232629A1 CN 2017089361 W CN2017089361 W CN 2017089361W WO 2018232629 A1 WO2018232629 A1 WO 2018232629A1
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Prior art keywords
contact
battery
detecting component
controller
mobile terminal
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PCT/CN2017/089361
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English (en)
French (fr)
Inventor
杨必华
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深圳市柔宇科技有限公司
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Application filed by 深圳市柔宇科技有限公司 filed Critical 深圳市柔宇科技有限公司
Priority to PCT/CN2017/089361 priority Critical patent/WO2018232629A1/zh
Priority to CN201780050948.XA priority patent/CN109643830A/zh
Publication of WO2018232629A1 publication Critical patent/WO2018232629A1/zh

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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
    • H01M10/00Secondary cells; Manufacture thereof
    • H01M10/42Methods or arrangements for servicing or maintenance of secondary cells or secondary half-cells
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/10Energy storage using batteries

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  • the present invention relates to the field of mobile terminal technologies, and in particular, to a mobile terminal and a battery drum package detecting device.
  • the reliability of the battery is directly related to the product quality of the mobile terminal and the user safety of the user. Therefore, in the design and use of the mobile terminal, it is necessary to monitor and protect the charging and discharging process of the battery to prevent damage to the battery due to factors such as overcharging, overdischarging or high temperature.
  • the battery may expand and cause bulging after a certain period of use.
  • the battery drum package not only affects the appearance and feel of the terminal, but also reduces the reliability of the battery and increases the safety risk of the explosion.
  • embodiments of the present invention provide a mobile terminal and a battery drum package detecting device to reduce the cost of battery drum package detection and reduce the security risk during use of the mobile terminal.
  • a mobile terminal includes: a body and a cover, a main body and a battery are disposed in the body, a controller is disposed on the main board, and a first detecting component is disposed on a surface of the battery facing away from the body, An inner surface of the cover body is provided with a second detecting component opposite to the first detecting component, the first detecting component and the second detecting component contacting each other when the battery drum is wrapped, and providing a trigger signal to the And a controller, configured to control, according to the trigger signal, the mobile terminal to issue battery drum package prompt information.
  • a battery drum kit detecting device is applied to a mobile terminal, the mobile terminal includes a body and a cover body, the main body and the battery are disposed in the body, the main board is provided with a controller, and the device includes: a first detecting component of the battery facing away from the surface of the body, a second detecting component disposed on an inner surface of the cover and opposite to the first detecting component;
  • the first detecting component and the second detecting component are in contact with each other when the battery drum is wrapped, and send a trigger signal to the controller, and the controller is configured to control the mobile terminal to send a battery drum package according to the trigger signal. Prompt message.
  • the mobile terminal and the battery drum detecting device are provided with a first detecting component on a surface of the battery, and a second detecting component opposite to the first detecting component is disposed on a cover inner surface of the mobile terminal, when the battery has a bulge bag, The first detecting component contacts the second detecting component under the resistance of the battery, thereby providing a trigger signal to the controller, and the controller controls the mobile terminal to issue a battery drum package reminder.
  • the detection of the battery drum package can be realized at a lower cost, and the user is promptly reminded to replace the battery that has been drum-packed, so as to prevent a safety accident caused by the battery drum package and reduce the safety risk during use of the mobile terminal.
  • FIG. 1 is a schematic diagram of a first structure of a mobile terminal according to an embodiment of the present invention
  • FIG. 2 is a schematic diagram of a second structure of a mobile terminal according to an embodiment of the present invention.
  • FIG. 3 is a schematic diagram of a third structure of a mobile terminal according to an embodiment of the present invention.
  • FIG. 4 is a schematic diagram of a fourth structure of a mobile terminal according to an embodiment of the present invention.
  • FIG. 5 is a schematic diagram of a fifth structure of a mobile terminal according to an embodiment of the present disclosure.
  • FIG. 6 is a schematic structural diagram of a battery drum kit detecting apparatus according to an embodiment of the present invention.
  • a mobile terminal 100 including: a body 10 and a cover 30 .
  • the main body 10 is provided with a main board 11 and a battery 13 therein.
  • the main board 11 is provided with a controller 111.
  • the battery 13 is disposed opposite to the surface of the body 10 with a first detecting component 50, That is, the first detecting component 50 is disposed on the surface of the battery 13 facing away from the body 10 and facing the cover 30.
  • the inner surface of the cover 30 is provided with a second detecting assembly 70 opposite to the first detecting assembly 50.
  • the first detecting component 50 and the second detecting component 70 are in contact with each other when the battery 13 is bulged, and send a trigger signal to the controller 111.
  • the controller 111 is configured to control the mobile terminal 100 to issue battery drum package prompt information according to the trigger signal.
  • the mobile terminal 100 may be, but not limited to, a smart phone, a tablet computer, a smart wearable device, or the like.
  • the main board 11 may include a plurality of circuit boards for respectively arranging different devices and circuits, and the controller 111 may be disposed on any one of the circuit boards.
  • the battery 13 may be, but not limited to, a liquid lithium ion battery, a lithium polymer battery, or the like.
  • the first detecting component 50 and the second detecting component 70 may be made of a conductive material.
  • the controller 111 may be electrically connected to the first detecting component 50 and/or the second detecting component 70 to detect when the first detecting component 50 and the second detecting component 70 are in contact with each other The trigger signal.
  • the mobile terminal 100 may be controlled to display a battery drum package prompt message on the screen to prompt the user to replace the battery in time.
  • the cover 30 is covered by the body 10 , and when the battery 13 is not bulged, a first gap S1 is formed between the cover 30 and the battery 13 , and the first detection is performed.
  • a second gap S2 is formed between the assembly 50 and the second detecting assembly 70. That is, when the battery 13 is in a normal state, that is, when the battery 13 is not bulged, the first detecting component 50 and the second detecting component 70 are not in contact, and the controller 111 cannot detect And the trigger signal is not controlled, so that the mobile terminal 100 does not control the battery drum package prompt information.
  • the first detecting component 50 when the battery 13 is bulged, the first detecting component 50 is in contact with the second detecting component 70 under the resistance of the battery 13, thereby providing a trigger signal to the controller 111. .
  • the first detecting component 50 is electrically connected to the controller 111, and the second detecting component 70 is configured to provide a trigger signal, when the battery 13 is bulged, the trigger signal passes the The first detecting component 50 is provided to the controller 11.
  • the first detecting component 50 is configured to provide a trigger signal
  • the second detecting component 70 is electrically connected to the controller 111, and when the battery 13 is bulged, the trigger signal passes the A second detection component 70 is provided to the controller 111.
  • the device 70 can also be electrically coupled to the controller 111 and acquire a trigger signal from the controller 111.
  • the first detecting component 50 can be electrically connected to a common input/output pin of the controller 111, and from the input/output The pin acquires a high level trigger signal and electrically connects the second detection component 70 to another general purpose input/output pin of the controller 111.
  • the first detecting component 50 is in contact with the second detecting component 70 under the resistance of the battery 13, so that the universal detecting/outputting is electrically connected to the second detecting component 70.
  • the foot can detect the trigger signal of the high level, so that the controller 111 can determine that the battery 13 has a bulge according to the trigger signal of the high level, and control the mobile terminal 100 to issue the battery spurt prompt information.
  • the first detecting component 50 and the second detecting component 70 may be electrodes made of a conductive material.
  • the first detection assembly 50 can be placed in the center of the surface of the battery 13 facing away from the body 10 for early detection of the battery bulge.
  • the first detecting component 50 may include a plurality of first electrodes arranged in an array
  • the second detecting component 70 may include a plurality of second electrodes arranged in an array. Each of the second electrodes is opposite to the first electrode.
  • the first detecting component 50 is a conductive foil, such as an aluminum foil.
  • the second detecting component 70 includes a flexible circuit board 71 and a first contact 73 and a second contact 75 spaced apart from the flexible circuit board 71. An orthographic projection of the first contact 73 and the second contact 75 on the surface of the battery 13 is on the conductive sheet.
  • the first contact 73 is for providing a trigger signal, and the second contact 75 is electrically connected to the controller 111.
  • the first contact 73 for providing a trigger signal may be electrically connected to a general-purpose input/output pin of the controller 111, and acquire a trigger signal from the input/output pin, the The two contacts 75 can be electrically coupled to another general purpose input/output pin of the controller 111.
  • the conductive sheet contacts the first contact 73 and the second contact 75 under the resistance of the battery 13, and at the first contact 73 and the A signal path is formed between the second contacts 75, and the trigger signal is supplied to the controller 111 through the second contact 75.
  • the first contact 73 and the second contact 75 may be electrodes made of a conductive material.
  • the first detecting component 50 includes a flexible circuit board 51 and first and second contacts 53 and 55 spaced apart from the flexible circuit board 51 .
  • the second detecting component 70 is a conductive foil, such as an aluminum foil. An orthographic projection of the conductive sheet on the surface of the battery 13 covers the first contact 53 and the second contact 55, the first contact 53 is for providing a trigger signal, and the second contact 55 It is electrically connected to the controller 111.
  • the first contact 53 for providing a trigger signal may be electrically connected to a general-purpose input/output pin of the controller 111, and acquire a trigger signal from the input/output pin, the first The two contacts 55 can be electrically connected to another general purpose input/output pin of the controller 111.
  • the first contact 53 and the second contact 55 are in contact with the conductive sheet under the resistance of the battery 13, and at the first contact 53 and the A signal path is formed between the second contacts 55, and the trigger signal is supplied to the controller 111 through the second contact 55.
  • the first contact 53 and the second contact 55 may be electrodes made of a conductive material.
  • a battery spur detecting device 200 is provided, which is applied to the mobile terminal 100 provided in the embodiment shown in FIG. 1 to FIG. 5 of the present invention.
  • the method includes: a first detecting group disposed on the surface of the battery 13 facing away from the body 10, 50, a second detecting component 70 disposed on an inner surface of the cover body 30 and opposite to the first detecting component 50 ;
  • the first detecting component 50 and the second detecting component 70 are in contact with each other when the battery 13 is bulged, and send a trigger signal to the controller 111, and the controller 111 is configured to control the device according to the trigger signal.
  • the mobile terminal 100 issues a battery drum package prompt message.
  • composition and function of the first detecting component 50 and the second detecting component 70 included in the battery drum detecting device 200 can also refer to the related description in the embodiment shown in FIG. 1 to FIG. No longer.
  • the mobile terminal and the battery spur detecting device are provided with a first detecting component on a surface of the battery, and a second detecting component opposite to the first detecting component is disposed on a surface of the cover body of the mobile terminal
  • the first detecting component contacts the second detecting component under the resistance of the battery, thereby providing a trigger signal to the controller, and the controller controls the mobile terminal to send a battery Drum bag reminder.
  • the detection of the battery drum package can be realized at a lower cost, and the user is promptly reminded to replace the battery that has been drum-packed, so as to prevent a safety accident caused by the battery drum package and reduce the safety risk during use of the mobile terminal.

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  • Engineering & Computer Science (AREA)
  • Manufacturing & Machinery (AREA)
  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Electrochemistry (AREA)
  • General Chemical & Material Sciences (AREA)
  • Telephone Set Structure (AREA)
  • Battery Mounting, Suspending (AREA)

Abstract

一种移动终端(100)及电池鼓包检测装置(200),所述移动终端(100)包括:本体(10)和盖体(30),所述本体(10)内设置有主板(11)及电池(13),所述主板(11)上设置有控制器(111),所述电池(13)背向所述本体(10)的表面设置有第一检测组件(50),所述盖体(30)的内表面设置有与所述第一检测组件(50)相对的第二检测组件(70),所述第一检测组件(50)和所述第二检测组件(70)在所述电池(13)鼓包时相互接触,并发送触发信号给所述控制器(111),所述控制器(111)用于根据所述触发信号控制所述移动终端(100)发出电池(13)鼓包提示信息。所述移动终端(100)及电池鼓包检测装置(200)可以降低电池(13)鼓包检测的成本,并降低移动终端(100)使用过程中的安全风险。

Description

移动终端及电池鼓包检测装置 技术领域
本发明涉及移动终端技术领域,尤其涉及一种移动终端及电池鼓包检测装置。
背景技术
电池作为智能手机、平板电脑等移动终端的电能储备部件,其可靠性直接关系到移动终端的产品品质及使用者的用户安全。因此,在移动终端的设计及使用过程中,均需要对电池的充放电过程进行监测和保护,以防止因过充电、过放电或者高温等因素而对电池造成损害。然而,由于电池保护电路不良、第三方充电器性能不良、移动终端使用环境等因素的影响,电池在使用一定时间之后可能会出现膨胀而导致鼓包的情况。电池鼓包不仅会影响到终端的外观和手感,同时会造成电池的可靠性降低,并增加爆炸的安全风险。
发明内容
鉴于现有技术中存在的上述问题,本发明实施例提供一种移动终端及电池鼓包检测装置,以降低电池鼓包检测的成本,并降低移动终端使用过程中的安全风险。
一种移动终端,包括:本体和盖体,所述本体内设置有主板及电池,所述主板上设置有控制器,所述电池背向所述本体的表面设置有第一检测组件,所述盖体的内表面设置有与所述第一检测组件相对的第二检测组件,所述第一检测组件和所述第二检测组件在所述电池鼓包时相互接触,并提供触发信号给所述控制器,所述控制器用于根据所述触发信号控制所述移动终端发出电池鼓包提示信息。
一种电池鼓包检测装置,应用于移动终端,所述移动终端包括本体和盖体,所述本体内设置有主板及电池,所述主板上设置有控制器,所述装置包括:设置于所述电池背向所述本体的表面的第一检测组件,设置于所述盖体的内表面并与所述第一检测组件相对的第二检测组件;
所述第一检测组件和所述第二检测组件在所述电池鼓包时相互接触,并发送触发信号给所述控制器,所述控制器用于根据所述触发信号控制所述移动终端发出电池鼓包提示信息。
所述移动终端及电池鼓包检测装置通过在电池的表面设置第一检测组件,并在移动终端的盖体内表面设置与所述第一检测组件相对的第二检测组件,当电池出现鼓包时,所述第一检测组件在所述电池的抵持作用下与所述第二检测组件接触,从而提供触发信号给所述控制器,并由所述控制器控制移动终端发出电池鼓包提醒。如此,则可以以较低的成本实现对电池鼓包的检测,并及时提醒用户更换已鼓包的电池,以防止因电池鼓包而导致安全事故,降低移动终端使用过程中的安全风险。
附图说明
为了更清楚地说明本发明实施例中的技术方案,下面将对实施例描述中所需要使用的附图作简单地介绍。
图1是本发明实施例提供的移动终端的第一结构示意图;
图2是本发明实施例提供的移动终端的第二结构示意图;
图3是本发明实施例提供的移动终端的第三结构示意图;
图4是本发明实施例提供的移动终端的第四结构示意图;
图5是本发明实施例提供的移动终端的第五结构示意图;
图6是本发明实施例提供的电池鼓包检测装置的结构示意图。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
请参阅图1,在本发明一个实施例中,提供一种移动终端100,包括:本体10和盖体30。所述本体10内设置有主板11及电池13。所述主板11上设置有控制器111。所述电池13背向所述本体10的表面设置有第一检测组件50, 即所述第一检测组件50设置于所述电池13的表面,背向所述本体10,并朝向所述盖体30。所述盖体30的内表面设置有与所述第一检测组件50相对的第二检测组件70。所述第一检测组件50和所述第二检测组件70在所述电池13鼓包时相互接触,并发送触发信号给所述控制器111。所述控制器111用于根据所述触发信号控制所述移动终端100发出电池鼓包提示信息。
其中,所述移动终端100可以是但不限于智能手机、平板电脑、智能可穿戴设备等。所述主板11可以包括多块电路板,分别用于布设不同的器件及电路,所述控制器111可以设置于任一电路板上。所述电池13可以是但不限于液态锂离子电池、锂聚合物电池等。所述第一检测组件50和所述第二检测组件70可以由导电材料制成。所述控制器111可以与所述第一检测组件50和/或所述第二检测组件70电连接,以在所述第一检测组件50和所述第二检测组件70相互接触时,检测所述触发信号。当所述控制器111检测到所述触发信息时,可以控制所述移动终端100在屏幕上显示电池鼓包提示信息,以提示用户及时更换电池。
请参阅图2,所述盖体30盖合于所述本体10,且所述电池13未鼓包时,所述盖体30与所述电池13之间形成第一间隙S1,所述第一检测组件50与所述第二检测组件70之间形成第二间隙S2。也就是说,在所述电池13处于正常状态时,即所述电池13未鼓包时,所述第一检测组件50与所述第二检测组件70之间未接触,所述控制器111无法检测到所述触发信号,从而不会控制所述移动终端100发出电池鼓包提示信息。
请参阅图3,当所述电池13鼓包时,所述第一检测组件50在所述电池13的抵持作用下与所述第二检测组件70接触,从而提供触发信号给所述控制器111。在一种实施方式中,所述第一检测组件50与所述控制器111电连接,所述第二检测组件70用于提供触发信号,所述电池13鼓包时,所述触发信号通过所述第一检测组件50提供给所述控制器11。在一种实施方式中,所述第一检测组件50用于提供触发信号,所述第二检测组件70与所述控制器111电连接,所述电池13鼓包时,所述触发信号通过所述第二检测组件70提供给所述控制器111。
可以理解,用于提供触发信号的所述第一检测组件50或所述第二检测组 件70也可以与所述控制器111电连接,并从所述控制器111获取触发信号。例如,若所述第一检测组件50用于提供触发信号,则可以将所述第一检测组件50与所述控制器111的一个通用输入/输出引脚电连接,并从所述输入/输出引脚获取高电平的触发信号,并将所述第二检测组件70与所述控制器111的另一个通用输入/输出引脚电连接。当电池13鼓包时,所述第一检测组件50在所述电池13的抵持作用下与所述第二检测组件70接触,从而使得与所述第二检测组件70电连接通用输入/输出引脚可以检测到所述高电平的触发信号,从而使得所述控制器111可以根据所述高电平的触发信号确定电池13出现鼓包,并控制所述移动终端100发出电池鼓包提示信息。其中,所述第一检测组件50和所述第二检测组件70可以是由导电材料制成的电极。
可以理解,由于电池鼓包通常是从电池的中间开始出现,为尽早地检测到电池鼓包,可以将所述第一检测组件50设置于所述电池13背向所述本体10的表面的中心。当然,为实现更全面的电池鼓包检测,所述第一检测组件50可以包括多个呈阵列排布的第一电极,所述第二检测组件70可以包括多个呈阵列排布的第二电极,每一个第二电极与一个第一电极相对,如此,则可以在电池13的任意位置出现鼓包时,均可以触发所述控制器111控制所述移动终端100发出电池鼓包提示信息。
请参阅图4,在一种实施方式中,所述第一检测组件50为导电薄片,例如铝箔。所述第二检测组件70包括柔性电路板71及间隔设置于所述柔性电路板71上的第一触点73和第二触点75。所述第一触点73和所述第二触点75在所述电池13表面的正投影位于所述导电薄片上。所述第一触点73用于提供触发信号,所述第二触点75与所述控制器111电连接。
具体地,所述用于提供触发信号的第一触点73可以与所述控制器111的一个通用输入/输出引脚电连接,并从所述输入/输出引脚获取触发信号,所述第二触点75可以与所述控制器111的另一个通用输入/输出引脚电连接。当电池13鼓包时,所述导电薄片在所述电池13的抵持作用下与所述第一触点73和所述第二触点75接触,并在所述第一触点73和所述第二触点75之间形成信号通路,所述触发信号通过所述第二触点75提供给所述控制器111。可以理解,所述电池13未鼓包时,所述导电薄片与所述第一触点73和所述第二触 点75均未接触,所述第一触点73与所述第二触点75之间断路。所述第一触点73与所述第二触点75可以是由导电材料制成的电极。
请参阅图5,在一种实施方式中,所述第一检测组件50包括柔性电路板51及间隔设置于所述柔性电路板51上的第一触点53和第二触点55。所述第二检测组件70为导电薄片,例如铝箔。所述导电薄片在所述电池13表面的正投影覆盖所述第一触点53和所述第二触点55,所述第一触点53用于提供触发信号,所述第二触点55与所述控制器111电连接。
具体地,所述用于提供触发信号的第一触点53可以与所述控制器111的一个通用输入/输出引脚电连接,并从所述输入/输出引脚获取触发信号,所述第二触点55可以与所述控制器111的另一个通用输入/输出引脚电连接。当电池13鼓包时,所述第一触点53和所述第二触点55在所述电池13的抵持作用下与所述导电薄片接触,并在所述第一触点53和所述第二触点55之间形成信号通路,所述触发信号通过所述第二触点55提供给所述控制器111。可以理解,所述电池13未鼓包时,所述导电薄片与所述第一触点53和所述第二触点55均未接触,所述第一触点53与所述第二触点55之间断路。所述第一触点53与所述第二触点55可以是由导电材料制成的电极。
请参阅图6,在本发明一个实施例中,提供一种电池鼓包检测装置200,应用于如本发明图1至图5所示实施例提供的移动终端100中,所述电池鼓包检测装置200包括:设置于所述电池13背向所述本体10的表面的第一检测组,50,设置于所述盖体30的内表面并与所述第一检测组件50相对的第二检测组件70;
所述第一检测组件50和所述第二检测组件70在所述电池13鼓包时相互接触,并发送触发信号给所述控制器111,所述控制器111用于根据所述触发信号控制所述移动终端100发出电池鼓包提示信息。
可以理解,所述电池鼓包检测装置200包含的所述第一检测组件50及所述第二检测组件70的组成及功能还可以参照图1至图5所示实施例中的相关描述,此处不再赘述。
所述移动终端及电池鼓包检测装置通过在电池的表面设置第一检测组件,并在移动终端的盖体内表面设置与所述第一检测组件相对的第二检测组件,当 电池出现鼓包时,所述第一检测组件在所述电池的抵持作用下与所述第二检测组件接触,从而提供触发信号给所述控制器,并由所述控制器控制移动终端发出电池鼓包提醒。如此,则可以以较低的成本实现对电池鼓包的检测,并及时提醒用户更换已鼓包的电池,以防止因电池鼓包而导致安全事故,降低移动终端使用过程中的安全风险。
以上所揭露的仅为本发明的较佳实施例而已,当然不能以此来限定本发明之权利范围,本领域普通技术人员可以理解实现上述实施例的全部或部分流程,并依本发明权利要求所作的等同变化,仍属于发明所涵盖的范围。

Claims (18)

  1. 一种移动终端,包括:本体和盖体,所述本体内设置有主板及电池,所述主板上设置有控制器,其特征在于,所述电池背向所述本体的表面设置有第一检测组件,所述盖体的内表面设置有与所述第一检测组件相对的第二检测组件,所述第一检测组件和所述第二检测组件在所述电池鼓包时相互接触,并发送触发信号给所述控制器,所述控制器用于根据所述触发信号控制所述移动终端发出电池鼓包提示信息。
  2. 如权利要求1所述的移动终端,其特征在于,所述盖体盖合于所述本体,且所述电池未鼓包时,所述盖体与所述电池之间形成第一间隙,所述第一检测组件与所述第二检测组件之间形成第二间隙。
  3. 如权利要求2所述的移动终端,其特征在于,所述第一检测组件设置于所述电池背向所述本体的表面的中心。
  4. 如权利要求1所述的移动终端,其特征在于,所述第一检测组件为导电薄片,所述第二检测组件包括柔性电路板及间隔设置于所述柔性电路板上的第一触点和第二触点,所述第一触点和所述第二触点在所述电池表面的正投影位于所述导电薄片上,所述第一触点用于提供触发信号,所述第二触点与所述控制器电连接。
  5. 如权利要求1所述的移动终端,其特征在于,所述第一检测组件包括柔性电路板及间隔设置于所述柔性电路板上的第一触点和第二触点,所述第二检测组件为导电薄片,所述导电薄片在所述电池表面的正投影覆盖所述第一触点和所述第二触点,所述第一触点用于提供触发信号,所述第二触点与所述控制器电连接。
  6. 如权利要求4或5所述的移动终端,其特征在于,所述电池未鼓包时, 所述导电薄片与所述第一触点和所述第二触点均未接触,所述第一触点与所述第二触点之间断路。
  7. 如权利要求4或5所述的移动终端,其特征在于,所述电池鼓包时,所述导电薄片与所述第一触点和所述第二触点接触,并在所述第一触点和所述第二触点之间形成信号通路,所述触发信号通过所述第二触点提供给所述控制器。
  8. 如权利要求1所述的移动终端,其特征在于,所述第一检测组件与所述控制器电连接,所述第二检测组件用于提供触发信号,所述电池鼓包时,所述触发信号通过所述第一检测组件提供给所述控制器。
  9. 如权利要求1所述的移动终端,其特征在于,所述第一检测组件用于提供触发信号,所述第二检测组件与所述控制器电连接,所述电池鼓包时,所述触发信号通过所述第二检测组件提供给所述控制器。
  10. 一种电池鼓包检测装置,应用于移动终端,所述移动终端包括本体和盖体,所述本体内设置有主板及电池,所述主板上设置有控制器,其特征在于,所述装置包括:设置于所述电池背向所述本体的表面的第一检测组件,设置于所述盖体的内表面并与所述第一检测组件相对的第二检测组件;
    所述第一检测组件和所述第二检测组件在所述电池鼓包时相互接触,并发送触发信号给所述控制器,所述控制器用于根据所述触发信号控制所述移动终端发出电池鼓包提示信息。
  11. 如权利要求10所述的装置,其特征在于,所述盖体盖合于所述本体,且所述电池未鼓包时,所述盖体与所述电池之间形成第一间隙,所述第一检测组件与所述第二检测组件之间形成第二间隙。
  12. 如权利要求11所述的装置,其特征在于,所述第一检测组件设置于 所述电池背向所述本体的表面的中心。
  13. 如权利要求10所述的装置,其特征在于,所述第一检测组件为导电薄片,所述第二检测组件包括柔性电路板及间隔设置于所述柔性电路板上的第一触点和第二触点,所述第一触点和所述第二触点在所述电池表面的正投影位于所述导电薄片上,所述第一触点用于提供触发信号,所述第二触点与所述控制器电连接。
  14. 如权利要求10所述的装置,其特征在于,所述第一检测组件包括柔性电路板及间隔设置于所述柔性电路板上的第一触点和第二触点,所述第二检测组件为导电薄片,所述导电薄片在所述电池表面的正投影覆盖所述第一触点和所述第二触点,所述第一触点用于提供触发信号,所述第二触点与所述控制器电连接。
  15. 如权利要求13或14所述的装置,其特征在于,所述电池未鼓包时,所述导电薄片与所述第一触点和所述第二触点均未接触,所述第一触点与所述第二触点之间断路。
  16. 如权利要求13或14所述的装置,其特征在于,所述电池鼓包时,所述导电薄片与所述第一触点和所述第二触点接触,并在所述第一触点和所述第二触点之间形成信号通路,所述触发信号通过所述第二触点提供给所述控制器。
  17. 如权利要求10所述的装置,其特征在于,所述第一检测组件与所述控制器电连接,所述第二检测组件用于提供触发信号,所述电池鼓包时,所述触发信号通过所述第一检测组件提供给所述控制器。
  18. 如权利要求10所述的装置,其特征在于,所述第一检测组件用于提供触发信号,所述第二检测组件与所述控制器电连接,所述电池鼓包时,所述触发信号通过所述第二检测组件提供给所述控制器。
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