WO2019056196A1 - 一种检测装置及具有该检测装置的便携式电子设备 - Google Patents

一种检测装置及具有该检测装置的便携式电子设备 Download PDF

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Publication number
WO2019056196A1
WO2019056196A1 PCT/CN2017/102399 CN2017102399W WO2019056196A1 WO 2019056196 A1 WO2019056196 A1 WO 2019056196A1 CN 2017102399 W CN2017102399 W CN 2017102399W WO 2019056196 A1 WO2019056196 A1 WO 2019056196A1
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WIPO (PCT)
Prior art keywords
conductive
electronic device
portable electronic
module
bit
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PCT/CN2017/102399
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English (en)
French (fr)
Inventor
曹琛
李凤雷
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深圳市隐秀科技有限公司
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Application filed by 深圳市隐秀科技有限公司 filed Critical 深圳市隐秀科技有限公司
Priority to PCT/CN2017/102399 priority Critical patent/WO2019056196A1/zh
Priority to CN201780014811.9A priority patent/CN108700628B/zh
Publication of WO2019056196A1 publication Critical patent/WO2019056196A1/zh

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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01RMEASURING ELECTRIC VARIABLES; MEASURING MAGNETIC VARIABLES
    • G01R31/00Arrangements for testing electric properties; Arrangements for locating electric faults; Arrangements for electrical testing characterised by what is being tested not provided for elsewhere
    • G01R31/50Testing of electric apparatus, lines, cables or components for short-circuits, continuity, leakage current or incorrect line connections
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K1/00Printed circuits
    • H05K1/02Details
    • H05K1/0275Security details, e.g. tampering prevention or detection
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K1/00Printed circuits
    • H05K1/02Details
    • H05K1/0266Marks, test patterns or identification means
    • H05K1/0268Marks, test patterns or identification means for electrical inspection or testing
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K2201/00Indexing scheme relating to printed circuits covered by H05K1/00
    • H05K2201/03Conductive materials
    • H05K2201/0302Properties and characteristics in general
    • H05K2201/0311Metallic part with specific elastic properties, e.g. bent piece of metal as electrical contact
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K2201/00Indexing scheme relating to printed circuits covered by H05K1/00
    • H05K2201/09Shape and layout
    • H05K2201/09009Substrate related
    • H05K2201/09063Holes or slots in insulating substrate not used for electrical connections
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K2201/00Indexing scheme relating to printed circuits covered by H05K1/00
    • H05K2201/10Details of components or other objects attached to or integrated in a printed circuit board
    • H05K2201/10007Types of components
    • H05K2201/10053Switch

Definitions

  • the present invention relates to the field of electronic products, and in particular to a detecting device and a portable electronic device having the same.
  • the detecting device for preventing the electronic device from being opened due to abnormal maintenance is an important safety mechanism of the electronic device, and the electronic device is detected after the detecting device detects the open state.
  • the device performs corresponding operations to protect the electronic device.
  • this type of detecting device can be used not only in the open cover detection, but also to detect whether some important components of the electronic device are separated from the device, so as to facilitate timely The equipment is controlled accordingly.
  • the detecting devices of electronic devices are in a connected state when the electronic device is in normal use, continuously consume power to detect the state of the device, and disconnect the electrical connection when the cover or other important components fall off, and the corresponding detecting module in the device After detecting the power-off signal, the corresponding operation is performed on the electronic device, so that during the use of the device, the continuous power consumption of the detecting device causes waste of electrical energy and reduces the ideal use time of the device.
  • the main technical problem to be solved by the present invention is to provide a detecting device for reducing the waste of electric energy, and in addition, the present invention also provides a portable electronic device having the device.
  • the present invention provides a detecting device, the detecting device comprising: a circuit board, the circuit board is provided with a through hole, and the opposite sides of the through hole are respectively provided with a first conductive position and a second conductive position; the elastic switch member, the elastic switch member includes a conductive contact portion, and the two ends of the conductive contact portion are respectively forced to the first conductive position and the second by elastic resetting of the elastic switch member Conductive contact contact connection to achieve conductive communication between the first conductive position and the second conductive position; the detected member, the detected member abuts with the elastic switch member, such that the elastic switch member occurs Elastically deforming, so that the two ends of the conductive contact portion are not in contact connection with the first conductive bit and the second conductive bit to disconnect between the first conductive bit and the second conductive bit
  • the detecting module is electrically connected to the circuit board for detecting whether the first conductive bit and the second conductive bit are electrically connected.
  • the elastic switch member is a conductive elastic piece, and the two ends of the conductive elastic piece are respectively fixed ends fixedly connected to the first conductive position and movable movable ends, the fixed end and the movable end The end is the conductive contact portion, and the elastic return of the conductive elastic piece forces the movable end to make a contact connection with the second conductive position; when the detected component passes through the through hole through the through-hole abutment When the conductive elastic piece causes the conductive elastic piece to elastically deform, the movable end of the conductive elastic piece is separated from the second conductive position.
  • the detecting device further includes a bracket
  • the elastic switch member includes a first spring and a conductive member
  • two ends of the first spring are respectively fastly connected to the bracket and the conductive member
  • the conductive The two ends of the member are respectively disposed corresponding to the first conductive position and the second conductive position, and the elastic reset of the first spring forces the two ends of the conductive member to be respectively associated with the first conductive position and the second conductive a contact connection occurs;
  • the first member abuts the conductive member through the through hole through a rod structure to make the first
  • both ends of the conductive member are separated from the first conductive position and the second conductive position, respectively.
  • the elastic switch member includes a second spring, a connecting rod and a conductive rod, and one end of the connecting rod is fastened to the conductive rod through the through hole to form a T-shaped structure, and the conductive rod
  • the two ends are disposed corresponding to the first conductive position and the second conductive position
  • the second spring is sleeved on the connecting rod
  • two ends of the second spring are respectively connected to the circuit board and the
  • the connecting rod is away from one end of the conductive rod, and the elastic return of the second spring forces the two ends of the conductive rod to be in contact with the first conductive position and the second conductive position respectively; when the detected When abutting the end of the connecting rod away from the conductive rod to cause the second spring to be compressed and elastically deformed, both ends of the conductive rod respectively are opposite to the first conductive position and the second conductive position Separation.
  • the present invention further provides a portable electronic device, comprising the detection device of any of the above, and a control module, the control module being installed in the electronic device and electrically connected to the detection module, Controlling the operation of the portable electronic device according to the detection result of the detection module.
  • a storage module is further electrically connected to the control module, and is configured, under the control of the control module, to the portable electronic device according to the detection result of the detection module.
  • System data is stored for storage control.
  • the switch module further includes an electrical connection between the switch module and the control module, and the portable electronic device is used according to the detection result of the detection module under the control of the control module.
  • the device is controlled by the switch.
  • the method further includes a warning interface module, wherein the warning interface module is electrically connected to the control module, and is configured to, under the control of the control module, the portable electronic device according to the detection result of the detection module.
  • the device performs warning information presentation.
  • the portable electronic device is a smart watch, a mobile phone, a laptop or a tablet.
  • the detecting device provided by the present invention and the portable electronic device having the detecting device include a circuit board, an elastic switch member, a detected member and a detecting module, wherein the circuit board is provided with a through hole, and two opposite sides of the through hole The first switch position and the second conductive position are respectively disposed, and the elastic switch member includes a conductive contact portion.
  • the detected member In the normal use state, the detected member is abutted with the elastic switch member, so that the elastic switch member is elastically deformed, thereby The two ends of the conductive contact portion are not in contact connection with the first conductive bit and the second conductive bit at the same time to disconnect the conductive connection between the first conductive bit and the second conductive bit, at this time, due to the circuit board in the detecting device When no circuit is connected, power consumption is not caused; and when the detected component is separated from the elastic switch device, the elastic switch member is elastically reset, forcing the two ends of the conductive contact portion to be respectively associated with the first conductive position and the second Conductive contact connection to achieve electrical conduction between the first conductive position and the second conductive position.
  • the circuit on the circuit board in the detecting device is turned on before starting. Measuring, detecting and begins to enter the power consumption; Accordingly, the detecting device can effectively reduce the power loss. Therefore, the portable electronic device having the detecting device controls the operation of the portable electronic device by using the detection result of the detecting device, thereby effectively reducing the power loss of the portable electronic device and improving the normal use time of the portable electronic device.
  • FIG. 1 is a schematic structural view of a detecting device in a normal use state according to an embodiment of the present invention
  • FIG. 2 is a schematic structural diagram of a detecting device entering a detection state according to an embodiment of the present invention
  • FIG. 3 is a schematic structural diagram of a detecting device in a normal use state according to Embodiment 2 of the present invention.
  • FIG. 4 is a schematic structural diagram of a detecting device entering a detecting state according to Embodiment 2 of the present invention.
  • FIG. 5 is a schematic structural diagram of a detecting device in a normal use state according to Embodiment 3 of the present invention.
  • FIG. 6 is a schematic structural diagram of a detecting device entering a detecting state according to Embodiment 3 of the present invention.
  • FIG. 7 is a structural block diagram of a portable electronic device according to Embodiment 4 of the present invention.
  • the present invention provides a detecting device 100.
  • the detecting device 100 includes a circuit board 110, an elastic switch member, a detected component 130 and a detecting module.
  • the circuit board 110 is provided with a through hole 111.
  • the opposite sides of the through hole 111 are respectively provided with a first conductive position 112 and a second conductive position 113;
  • the elastic switch member includes a conductive contact portion, and the two ends of the conductive contact portion are respectively forced by the elastic reset of the elastic switch member
  • a conductive position 112 is in contact with the second conductive position 113 to achieve electrical conduction between the first conductive position 112 and the second conductive position 113.
  • the detected member is connected to the elastic switch member by the detecting member, so that the elastic switch
  • the member is elastically deformed, so that the two ends of the conductive contact portion are not in contact with the first conductive bit and the second conductive bit at the same time to disconnect the conductive connection between the first conductive bit and the second conductive bit;
  • the elastic switch member is a conductive elastic piece 120. One end of the conductive elastic piece 120 is fixedly connected to the first conductive position 112.
  • the two ends of the conductive elastic piece 120 are conductive contact portions, and the two ends of the conductive elastic piece 120 are respectively Active set connected to the fixed end 112 of the first conductive bit 121 and freely movable end 122,
  • the fixed end 121 and the movable end 122 are the conductive contacts, and the elastic return of the conductive elastic piece 120 forces the movable end 122 of the conductive elastic piece 120 to contact with the second conductive position 113; when the detected component 130 passes through a rod body
  • the conductive elastic piece 120 is elastically deformed by the structure through the through hole 111, and the movable end of the conductive elastic piece 120 is separated from the second conductive position 113.
  • the detecting module is electrically connected to the circuit board for detecting the first Whether the conductive position and the second conductive position are electrically connected.
  • the detected component 130 is in abutting connection with the conductive elastic piece 120 , so that the conductive elastic piece 120 is elastically deformed, so that the two ends of the conductive elastic piece 120 are different at the same time.
  • the first conductive bit 112 and the second conductive bit 113 are in contact connection to disconnect the conductive connection between the first conductive bit 112 and the second conductive bit 113.
  • the conductive elastic piece 120 is elastically reset, forcing the movable end 122 and the second conductive position 113 of the conductive elastic piece 120.
  • a contact connection occurs to achieve electrical conduction between the first conductive bit 112 and the second conductive bit 113.
  • the circuit on the circuit board 110 in the detecting device 100 is turned on, and the detecting device 100 starts detection and enters the detecting state.
  • the power consumption begins to be consumed; thus, the detecting device 100 can effectively reduce the power loss.
  • a second embodiment of the detecting device provided by the present invention includes a circuit board 210, an elastic switch member 220, a detected component 230, and a detecting module, wherein the difference is that
  • the detecting device 200 further includes a bracket 240.
  • the elastic switch member 220 includes a first spring 221 and a conductive member 222.
  • the two ends of the first spring 221 are respectively fastened to the bracket 240 and the conductive member 222, and the two ends of the conductive member 222 are respectively Corresponding to the first conductive position 212 and the second conductive position 213, the elastic return of the first spring 221 forces the two ends of the conductive member 222 to be in contact with the first conductive position 212 and the second conductive position 213, respectively; 230 abuts the conductive member 222 through the through hole 211 through a rod structure to make the first spring When the 221 is compressed and elastically deformed, the two ends of the conductive member 222 are separated from the first conductive position 212 and the second conductive position 213, respectively.
  • the detected component 230 is abutted with the conductive member 222 through a through hole 211 through a rod structure, so that the first spring 221 is compressed and elastically deformed.
  • the two ends of the conductive member 222 are not in contact with the first conductive position 212 and the second conductive position 213 to disconnect the conductive connection between the first conductive position 212 and the second conductive position 213. Since no circuit is turned on on the circuit board 210 of the detecting device 200, power consumption is not caused; and when the detected component 230 is separated from the conductive switch member 220, as shown in FIG. 4, the first spring 221 is elastic.
  • the resetting causes the two ends of the conductive member 222 to be in contact with the first conductive position 212 and the second conductive position 213 to achieve electrical conduction between the first conductive position 212 and the second conductive position 213.
  • the detecting device 200 The circuit on the middle circuit board 210 is turned on, and the detecting device 200 starts detection, enters a detection state, and starts to consume electric energy; thus, the detecting device 200 can effectively reduce power loss.
  • a third embodiment of the detecting device includes a circuit board 310, an elastic switch member 320, a detected member 330, and a detecting module, wherein the difference is that
  • the elastic switch member 320 includes a second spring 321, a connecting rod 322 and a conductive rod 323.
  • One end of the connecting rod 322 is fastened to the conductive rod 323 through the through hole 311 to form a T-shaped structure.
  • a conductive position 312 and a second conductive position 313 are correspondingly disposed, and the second spring 321 is sleeved on the connecting rod 322, and the two ends of the second spring 321 are respectively connected to the end of the circuit board 310 and the connecting rod 322 away from the conductive rod 323.
  • the elastic return of the second spring 321 forces the two ends of the conductive rod 323 to be in contact with the first conductive position 312 and the second conductive position 313 respectively; when the detected member 330 abuts the end of the connecting rod 322 away from the conductive rod 323, the first When the two springs 321 are compressed and elastically deformed, both ends of the conductive rod 323 are separated from the first conductive position 312 and the second conductive position 313, respectively.
  • the detected component 330 abuts the end of the connecting rod 322 away from the conductive rod 323, so that the second spring 321 is compressed and elastically deformed, thereby making The two ends of the conductive rod 323 are not in contact with the first conductive position 312 and the second conductive position 313 at the same time to disconnect the conductive connection between the first conductive position 312 and the second conductive position 313.
  • the first spring 321 is elastically reset, forcing the conductive
  • the two ends of the rod 323 are in contact with the first conductive position 312 and the second conductive position 313, respectively, to achieve electrical conduction between the first conductive position 312 and the second conductive position 313.
  • the circuit board 310 in the detecting device 300 The upper circuit is turned on, and the detecting device 300 starts the detection, enters the detection state, and starts to consume electric energy; thus, the detecting device 300 can effectively reduce the power loss.
  • a fourth embodiment of the present invention provides a portable electronic device 400, which includes the detecting device and a control module 410 in any of the above embodiments.
  • the control module 410 is installed in a portable electronic device.
  • the device 400 is electrically connected to the detection module 420 for controlling the operation of the portable electronic device 400 according to the detection result of the detection module 420.
  • the portable electronic device 400 further includes a storage module 430 electrically connected to the control module 410 for being portable according to the detection result of the detection module 420 under the control of the control module 410.
  • the system data of the electronic device 400 is subjected to storage control. Specifically, when the detecting module 420 detects that the conductive disconnection between the first conductive bit and the second conductive bit of the detecting device changes to detect the conductive connection between the first conductive bit and the second conductive bit, the control module The 410 control storage module 430 performs storage system data operations on the portable electronic device 400.
  • the portable electronic device 400 further includes a switch module 440 electrically connected to the control module 410 for controlling according to the control module 410.
  • the detection result of the measurement module 420 performs on-off control of the portable electronic device 400. Specifically, when the detecting module 420 detects that the conductive disconnection between the first conductive bit and the second conductive bit of the detecting device changes to detect the conductive connection between the first conductive bit and the second conductive bit, the control module The 410 control switch module 440 performs a shutdown operation on the portable electronic device 400.
  • the portable electronic device 400 further includes a warning interface module 450 , and the warning interface module 450 is electrically connected to the control module 410 for detecting the detection result of the detection module 420 under the control of the control module 410.
  • Alert information presentation is performed on the portable electronic device 400. Specifically, when the detecting module 420 detects that the conductive disconnection between the first conductive bit and the second conductive bit of the detecting device changes to detect the conductive connection between the first conductive bit and the second conductive bit, the control module The 410 control alert interface module 450 presents alert information.
  • the portable electronic device 400 in this embodiment may be any one of a smart watch, a mobile phone, a notebook computer, and a tablet computer.
  • the detecting device and the portable electronic device having the detecting device provided by the embodiment of the invention include a circuit board, an elastic switch member, a detected component and a detecting module, wherein the circuit board is provided with a through hole, and the through hole has two The first switch position and the second conductive position are respectively disposed on the opposite sides, and the elastic switch member includes a conductive contact portion.
  • the detected member is in abutting connection with the elastic switch member, so that the elastic switch member is elastically deformed.
  • the two ends of the conductive contact portion are not in contact with the first conductive bit and the second conductive bit at different times to disconnect the conductive connection between the first conductive bit and the second conductive bit.
  • the circuit in the detecting device Due to the circuit in the detecting device The circuit is not connected to the circuit, and the power consumption is not caused.
  • the elastic switch member When the detected component is separated from the elastic switch device, the elastic switch member is elastically reset, forcing the two ends of the conductive contact portion to be respectively associated with the first conductive position and The second conductive bit is in contact connection to achieve conductive communication between the first conductive bit and the second conductive bit.
  • the circuit on the circuit board in the detecting device is turned on. Start detection, and begins to enter the detection state power consumption; Accordingly, the detecting device can effectively reduce the power loss. Therefore, The portable electronic device having the detecting device controls the operation of the portable electronic device by using the detection result of the detecting device, thereby effectively reducing the power loss of the portable electronic device and improving the normal use time of the portable electronic device.

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  • Engineering & Computer Science (AREA)
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Abstract

本发明提供了一种检测装置及具有该检测装置的便携式电子设备,其检测装置包括电路板、弹性开关件、被检测件及检测模块,该电路板上设有通孔,该通孔的两相对侧分别设置有第一导电位与第二导电位,该弹性开关件包括导电接触部,通过被检测件使弹性开关件发生弹性形变或者弹性开关件弹性复位,进而决定导电接触部的两端是否同时与第一导电位及第二导电位发生接触,以实现或断开第一导电位与第二导电位之间的导电连通,该检测模块与电路板进行电性连接以检测第一导电位及第二导电位之间是否导电连通,使用该检测装置可以有效降低电能损耗,而具有该检测装置的便携式电子设备,可有效降低便携式电子设备的电能损耗,提高其正常使用时间。

Description

一种检测装置及具有该检测装置的便携式电子设备 技术领域
本发明涉及电子产品领域,特别涉及一种检测装置及具有该检测装置的便携式电子设备。
背景技术
数据通信系统高度发展的现代化信息社会中,便携式电子设备被广泛的应用于各个领域中,例如移动电话、笔记本电脑等,便携式电子设备的维护也是其设计制造中的重要环节,但是非正常维护和开盖可能会导致电子设备的重要机构遭受损坏,因此,用于防止电子设备因非正常维护而开盖的检测装置是电子设备的重要安全机构,其在检测装置检测到开盖状态后对电子设备执行相应操作以达到保护电子设备的作用,另外,该种类型的检测装置不仅可用于在开盖检测中,也可以用于检测电子设备的某些重要零部件是否脱离设备,以便于及时对设备进行相应运作控制。
目前电子设备的检测装置都是在电子设备正常使用时处于连通状态,持续耗电以对设备的状态进行检测,在盖体或者其他重要零部件脱落的瞬间断开电连接,设备内相应检测模块检测到该断电信号后对电子设备执行相应操作,这样在设备的使用过程中,检测装置的持续耗电造成了电能的浪费,降低了设备的理想使用时间。
发明内容
本发明所要解决的主要技术问题是提供一种降低电能浪费的检测装置,另外本发明还提供了一种具有该装置的便携式电子设备。
为了解决以上技术问题,本发明提供了一种检测装置,所述检测装置包括:电路板,所述电路板上设有通孔,所述通孔的两相对侧分别设置有第一导电位与第二导电位;弹性开关件,所述弹性开关件包括导电接触部,通过所述弹性开关件的弹性复位迫使所述导电接触部的两端分别与所述第一导电位及所述第二导电位接触连接,以实现所述第一导电位与第二导电位之间的导电连通;被检测件,所述被检测件与所述弹性开关件抵接连接,使得所述弹性开关件发生弹性形变,进而使得所述导电接触部的两端不同时与所述第一导电位及所述第二导电位发生接触连接,以断开所述第一导电位与第二导电位之间的导电连通;检测模块,所述检测模块与所述电路板进行电性连接,用于检测所述第一导电位及第二导电位之间是否导电连通。
可选的,所述弹性开关件为导电弹片,所述导电弹片的两端分别为固定连接于所述第一导电位的固定端和可自由活动的活动端,所述固定端和所述活动端为所述导电接触部,所述导电弹片的弹性复位迫使所述活动端与所述第二导电位发生接触连接;当所述被检测件通过一杆体结构穿过所述通孔抵接所述导电弹片使所述导电弹片发出弹性形变时,所述导电弹片的活动端与所述第二导电位分离。
可选的,所述检测装置还包括支架,所述弹性开关件包括第一弹簧及导电件,所述第一弹簧的两端分别与所述支架及所述导电件紧固连接,所述导电件的两端分别与所述第一导电位及第二导电位对应设置,所述第一弹簧的弹性复位迫使所述导电件的两端分别与所述第一导电位及所述第二导电位发生接触连接;当所述被检测件通过一杆体结构穿过所述通孔抵接所述导电件使所述第一 弹簧被压缩而发生弹性形变时,所述导电件的两端分别与所述第一导电位及所述第二导电位分离。
可选的,所述弹性开关件包括第二弹簧、连杆以及导电杆,所述连杆的一端穿过所述通孔与所述导电杆紧固连接,形成T型结构,所述导电杆的两端与所述第一导电位及第二导电位对应设置,所述第二弹簧套设于所述连杆上,且所述第二弹簧的两端分别连接所述电路板及所述连杆远离所述导电杆的一端,所述第二弹簧的弹性复位迫使所述导电杆的两端分别与所述第一导电位及所述第二导电位发生接触连接;当所述被检测件抵接所述连杆远离所述导电杆的一端使所述第二弹簧被压缩而发生弹性形变时,所述导电杆的两端分别与所述第一导电位及所述第二导电位分离。
此外,本发明还提供了一种便携式电子设备,包括以上任一所述的检测装置以及一控制模块,所述控制模块安装于所述电子设备内且与所述检测模块进行电性连接,用于根据所述检测模块的检测结果控制所述便携式电子设备的运作。
可选的,还包括一存储模块,所述存储模块与所述控制模块进行电性连接,用于在所述控制模块的控制下,根据所述检测模块的检测结果对所述便携式电子设备的系统数据进行存储控制。
可选的,还包括一开关机模块,所述开关机模块与所述控制模块进行电性连接,用于在所述控制模块的控制下,根据所述检测模块的检测结果对所述便携式电子设备进行开关机控制。
可选的,还包括一警示界面模块,所述警示界面模块与所述控制模块进行电性连接,用于在所述控制模块的控制下,根据所述检测模块的检测结果对所述便携式电子设备进行警示信息呈现。
可选的,所述便携式电子设备为智能手表、移动电话、笔记本电脑或者平板电脑。
本发明提供的检测装置及具有该检测装置的便携式电子设备,其检测装置包括电路板、弹性开关件、被检测件及检测模块,该电路板上设有通孔,该通孔的两相对侧分别设置有第一导电位与第二导电位,该弹性开关件包括导电接触部,正常使用状态下,该被检测件与该弹性开关件抵接连接,使得弹性开关件发生弹性形变,进而使得导电接触部的两端不同时与第一导电位及第二导电位发生接触连接,以断开第一导电位与第二导电位之间的导电连通,此时,由于检测装置中电路板上没有电路接通,不会造成电能的消耗;而在该被检测件分离于该弹性开关件时,该弹性开关件弹性复位,迫使该导电接触部的两端分别与第一导电位及第二导电位接触连接,以实现第一导电位与第二导电位之间的导电连通此时,检测装置中电路板上的电路方才接通,才会启动检测,进入检测状态并开始消耗电能;因而,该检测装置可以有效降低电能损耗。因此,具有该检测装置的便携式电子设备,用该检测装置的检测结果来控制本身的运作,可有效降低便携式电子设备的电能损耗,提高该便携式电子设备的正常使用时间。
附图说明
附图是用来提供对本发明的进一步理解,并且构成说明书的一部分,与下面的具体实施方式一起用于解释本发明,但并不应构成本发明的限制,在附图中:
图1为本发明实施例一检测装置正常使用状态下的的结构示意图;
图2为本发明实施例一检测装置进入检测状态下的的结构示意图;
图3为本发明实施例二检测装置正常使用状态下的的结构示意图;
图4为本发明实施例二检测装置进入检测状态下的的结构示意图;
图5为本发明实施例三检测装置正常使用状态下的的结构示意图;
图6为本发明实施例三检测装置进入检测状态下的的结构示意图;
图7为本发明实施例四便携式电子设备的结构框图。
具体实施方式
以下结合附图对本发明的具体实施方式进行详细说明。应当理解的是,此处所描述的具体实施方式仅用于说明和解释本发明,并不是用于限制本发明。实施例一
如图1、图2所示,本发明提供了一种检测装置100,该检测装置100包括电路板110、弹性开关件、被检测件130及检测模块,该电路板110上设有通孔111,该通孔111的两相对侧分别设置有第一导电位112与第二导电位113;该弹性开关件包括导电接触部,通过弹性开关件的弹性复位迫使导电接触部的两端分别与第一导电位112与第二导电位113接触连接,以实现第一导电位112与第二导电位113之间的导电连通,被检测件,被检测件与弹性开关件抵接连接,使得弹性开关件发生弹性形变,进而使得导电接触部的两端不同时与第一导电位及第二导电位发生接触连接,以断开第一导电位与第二导电位之间的导电连通;具体的,该弹性开关件为导电弹片120,该导电弹片120的一端与第一导电位112固定连接,其中该导电弹片120的两端即为导电接触部,所述导电弹片120的两端分别为固定连接于第一导电位112的固定端121和可自由活动的活动端122, 所述固定端121和所述活动端122为所述导电接触部,导电弹片120的弹性复位迫使导电弹片120的活动端122与第二导电位113发生接触连接;当被检测件130通过一杆体结构穿过通孔111抵接导电弹片120使导电弹片120发生弹性形变,该导电弹片120的活动端与第二导电位113分离;该检测模块与电路板进行电性连接,用于检测第一导电位及第二导电位之间是否导电连通。
本实施例一在正常使用状态下,如图1所示,该被检测件130与该导电弹片120抵接连接,使得导电弹片120发生弹性形变,进而使得该导电弹片120的两端不同时与第一导电位112及第二导电位113发生接触连接,以断开第一导电位112与第二导电位113之间的导电连通,此时,由于检测装置中电路板110上没有电路接通,不会造成电能的消耗;而在该被检测件分离于该导电弹片120时,如图2所示,该导电弹片120弹性复位,迫使该导电弹片120的活动端122与第二导电位113发生接触连接,实现第一导电位112与第二导电位113之间的导电连通,此时,检测装置100中电路板110上的电路方才接通,该检测装置100启动检测,进入检测状态并开始消耗电能;因而,该检测装置100可以有效降低电能损耗。
实施例二
如图3、图4所示,为本发明提供的检测装置的第二种实施例,该检测装置200包括电路板210、弹性开关件220、被检测件230及检测模块,其不同之处在于该检测装置200还包括支架240,该弹性开关件220包括第一弹簧221及导电件222,第一弹簧221的两端分别与支架240及导电件222紧固连接,导电件222的两端分别与第一导电位212及第二导电位213对应设置,第一弹簧221的弹性复位迫使导电件222的两端分别与第一导电位212及第二导电位213发生接触连接;当被检测件230通过一杆体结构穿过通孔211抵接导电件222使第一弹簧 221被压缩而发生弹性形变时,导电件222的两端分别与第一导电位212及第二导电位213分离。
本实施例二在正常使用状态下,如图3所示,该被检测件230通过一杆体结构穿过通孔211与该导电件222抵接连接,使得第一弹簧221被压缩而发生弹性形变,进而使得该导电件222的两端不同时与第一导电位212及第二导电位213发生接触连接,以断开第一导电位212与第二导电位213之间的导电连通,此时,由于检测装置200中电路板210上没有电路接通,不会造成电能的消耗;而在该被检测件230分离于该导电开关件220时,如图4所示,该第一弹簧221弹性复位,迫使导电件222的两端分别与第一导电位212及第二导电位213发生接触连接,实现第一导电位212与第二导电位213之间的导电连通,此时,检测装置200中电路板210上的电路方才接通,该检测装置200启动检测,进入检测状态并开始消耗电能;因而,该检测装置200可以有效降低电能损耗。
实施例三
如图5、图6所示,为本发明提供的检测装置的第三种实施例,该检测装置300包括电路板310、弹性开关件320、被检测件330及检测模块,其不同之处在于该弹性开关件320包括第二弹簧321、连杆322以及导电杆323,连杆322的一端穿过通孔311与导电杆323紧固连接,形成T型结构,导电杆323的两端与第一导电位312及第二导电位313对应设置,第二弹簧321套设于连杆322上,且第二弹簧321的两端分别连接电路板310及连杆322上远离导电杆323的一端,第二弹簧321的弹性复位迫使导电杆323的两端分别与第一导电位312及第二导电位313发生接触连接;当被检测件330抵接连杆322上远离导电杆323的一端使第二弹簧321被压缩而发生弹性形变时,导电杆323的两端分别与第一导电位312及第二导电位313分离。
本实施例三在正常使用状态下,如图5所示,该被检测件330与连杆322上远离导电杆323的一端抵接连接,使得第二弹簧321被压缩而发生弹性形变,进而使得该导电杆323的两端不同时与第一导电位312及第二导电位313发生接触连接,以断开第一导电位312与第二导电位313之间的导电连通,此时,由于检测装置300中电路板310上没有电路接通,不会造成电能的消耗;而在该被检测件330分离于该连杆322时,如图6所示,该第一弹簧321弹性复位,迫使导电杆323的两端分别与第一导电位312及第二导电位313发生接触连接,实现第一导电位312与第二导电位313之间的导电连通,此时,检测装置300中电路板310上的电路方才接通,该检测装置300启动检测,进入检测状态并开始消耗电能;因而,该检测装置300可以有效降低电能损耗。
实施例四
如图7所示,本发明实施例四提供了一种便携式电子设备400,该便携式电子设备400包括包含上述任一实施例中的检测装置及一控制模块410,该控制模块410安装于便携式电子设备400内且与检测模块420进行电性连接,以用于根据检测模块420的检测结果来控制便携式电子设备400的运作。
从图7中可知,该便携式电子设备400还包括一存储模块430,该存储模块430与控制模块410进行电性连接,用于在控制模块410的控制下,根据检测模块420的检测结果对便携式电子设备400的系统数据进行存储控制。具体地,当检测模块420由检测到检测装置的第一导电位与第二导电位之间的导电断开改变为检测到第一导电位与第二导电位之间的导电连通时,控制模块410控制存储模块430对便携式电子设备400进行存储系统数据操作。
从图7中可知,该便携式电子设备400还包括一开关机模块440,该开关机模块440与控制模块410进行电性连接,用于在控制模块410的控制下,根据检 测模块420的检测结果对便携式电子设备400进行开关机控制。具体地,当检测模块420由检测到检测装置的第一导电位与第二导电位之间的导电断开改变为检测到第一导电位与第二导电位之间的导电连通时,控制模块410控制开关机模块440对便携式电子设备400执行关机操作。
从图7中可知,该便携式电子设备400还包括一警示界面模块450,该警示界面模块450与控制模块410进行电性连接,用于在控制模块410的控制下,根据检测模块420的检测结果对便携式电子设备400进行警示信息呈现。具体地,当检测模块420由检测到检测装置的第一导电位与第二导电位之间的导电断开改变为检测到第一导电位与第二导电位之间的导电连通时,控制模块410控制警示界面模块450呈现警示信息。
另外,本实施例中的便携式电子设备400可以为智能手表、移动电话、笔记本电脑及平板电脑中的任意一种。
本发明实施例提供的检测装置及具有该检测装置的便携式电子设备,其检测装置包括电路板、弹性开关件、被检测件及检测模块,该电路板上设有通孔,该通孔的两相对侧分别设置有第一导电位与第二导电位,该弹性开关件包括导电接触部,正常使用状态下,该被检测件与该弹性开关件抵接连接,使得弹性开关件发生弹性形变,进而使得导电接触部的两端不同时与第一导电位及第二导电位发生接触连接,以断开第一导电位与第二导电位之间的导电连通,此时,由于检测装置中电路板上没有电路接通,不会造成电能的消耗;而在该被检测件分离于该弹性开关件时,该弹性开关件弹性复位,迫使该导电接触部的两端分别与第一导电位及第二导电位接触连接,以实现第一导电位与第二导电位之间的导电连通此时,检测装置中电路板上的电路方才接通,才会启动检测,进入检测状态并开始消耗电能;因而,该检测装置可以有效降低电能损耗。因此, 具有该检测装置的便携式电子设备,用该检测装置的检测结果来控制本身的运作,可有效降低便携式电子设备的电能损耗,提高该便携式电子设备的正常使用时间。
以上结合附图对本发明的实施方式作了详细说明,但本发明不限于所描述的实施方式。对于本领域的技术人员而言,在不脱离本发明原理和精神的情况下,对这些实施方式进行多种变化、修改、替换和变型,仍落入本发明的保护范围内。

Claims (9)

  1. 一种检测装置,其特征在于,所述检测装置包括:
    电路板,所述电路板上设有通孔,所述通孔的两相对侧分别设置有第一导电位与第二导电位;
    弹性开关件,所述弹性开关件包括导电接触部,通过所述弹性开关件的弹性复位迫使所述导电接触部的两端分别与所述第一导电位及所述第二导电位接触连接,以实现所述第一导电位与第二导电位之间的导电连通;
    被检测件,所述被检测件与所述弹性开关件抵接连接,使得所述弹性开关件发生弹性形变,进而使得所述导电接触部的两端不同时与所述第一导电位及所述第二导电位发生接触连接,以断开所述第一导电位与第二导电位之间的导电连通;
    检测模块,所述检测模块与所述电路板进行电性连接,用于检测所述第一导电位及第二导电位之间是否导电连通。
  2. 根据权利要求1所述的一种检测装置,其特征在于,所述弹性开关件为导电弹片,所述导电弹片的两端分别为固定连接于所述第一导电位的固定端和可自由活动的活动端,所述固定端和所述活动端为所述导电接触部,所述导电弹片的弹性复位迫使所述活动端与所述第二导电位发生接触连接;当所述被检测件通过一杆体结构穿过所述通孔抵接所述导电弹片使所述导电弹片发出弹性形变时,所述导电弹片的活动端与所述第二导电位分离。
  3. 根据权利要求1所述的一种检测装置,其特征在于,所述检测装置还包括支架,所述弹性开关件包括第一弹簧及导电件,所述第一弹簧的两端分别与所述支架及所述导电件紧固连接,所述导电件的两端分别与所述第一导电位及第二导电位对应设置,所述第一弹簧的弹性复位迫使所述导电件的两端分别与所述第一导电位及所述第二导电位发生接触连接;当所述被检测件通过一杆体 结构穿过所述通孔抵接所述导电件使所述第一弹簧被压缩而发生弹性形变时,所述导电件的两端分别与所述第一导电位及所述第二导电位分离。
  4. 根据权利要求1所述的一种检测装置,其特征在于,所述弹性开关件包括第二弹簧、连杆以及导电杆,所述连杆的一端穿过所述通孔与所述导电杆紧固连接,形成T型结构,所述导电杆的两端与所述第一导电位及第二导电位对应设置,所述第二弹簧套设于所述连杆上,且所述第二弹簧的两端分别连接所述电路板及所述连杆远离所述导电杆的一端,所述第二弹簧的弹性复位迫使所述导电杆的两端分别与所述第一导电位及所述第二导电位发生接触连接;当所述被检测件抵接所述连杆远离所述导电杆的一端使所述第二弹簧被压缩而发生弹性形变时,所述导电杆的两端分别与所述第一导电位及所述第二导电位分离。
  5. 一种便携式电子设备,其特征在于,包括如权利要求1至4任一所述的检测装置以及一控制模块,所述控制模块安装于所述电子设备内且与所述检测模块进行电性连接,用于根据所述检测模块的检测结果控制所述便携式电子设备的运作。
  6. 根据权利要求5所述的一种便携式电子设备,其特征在于,还包括一存储模块,所述存储模块与所述控制模块进行电性连接,用于在所述控制模块的控制下,根据所述检测模块的检测结果对所述便携式电子设备的系统数据进行存储控制。
  7. 根据权利要求5所述的一种便携式电子设备,其特征在于,还包括一开关机模块,所述开关机模块与所述控制模块进行电性连接,用于在所述控制模块的控制下,根据所述检测模块的检测结果对所述便携式电子设备进行开关机控制。
  8. 根据权利要求5所述的一种便携式电子设备,其特征在于,还包括一警 示界面模块,所述警示界面模块与所述控制模块进行电性连接,用于在所述控制模块的控制下,根据所述检测模块的检测结果对所述便携式电子设备进行警示信息呈现。
  9. 根据权利要求5所述的一种便携式电子设备,其特征在于,所述便携式电子设备为智能手表、移动电话、笔记本电脑或者平板电脑。
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