WO2016201861A1 - 一种实现终端保护的方法及保护壳 - Google Patents

一种实现终端保护的方法及保护壳 Download PDF

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Publication number
WO2016201861A1
WO2016201861A1 PCT/CN2015/093437 CN2015093437W WO2016201861A1 WO 2016201861 A1 WO2016201861 A1 WO 2016201861A1 CN 2015093437 W CN2015093437 W CN 2015093437W WO 2016201861 A1 WO2016201861 A1 WO 2016201861A1
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Prior art keywords
information
terminal
sensor
alarm
alarm threshold
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PCT/CN2015/093437
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English (en)
French (fr)
Inventor
周大勇
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中兴通讯股份有限公司
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Publication of WO2016201861A1 publication Critical patent/WO2016201861A1/zh

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    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45CPURSES; LUGGAGE; HAND CARRIED BAGS
    • A45C11/00Receptacles for purposes not provided for in groups A45C1/00-A45C9/00
    • A45C11/24Etuis for purposes not covered by a single one of groups A45C11/02 - A45C11/22, A45C11/26, A45C11/32 - A45C11/38
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02HEMERGENCY PROTECTIVE CIRCUIT ARRANGEMENTS
    • H02H5/00Emergency protective circuit arrangements for automatic disconnection directly responsive to an undesired change from normal non-electric working conditions with or without subsequent reconnection
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets

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  • This document refers to, but is not limited to, terminal application technology, especially a method and a protective case for implementing terminal protection.
  • the main waterproof terminal on the market is subjected to waterproof treatment by a trigger switch provided on the terminal's own casing and a sealed relay disposed at both ends of the power supply in the event of a sudden splash of water; wherein, the movable contact of the relay One contact of one of the static contacts is connected to one end of the power supply, and the other contact is connected to the other end of the power supply through the terminal working circuit; the trigger switch forms a path between the trigger switch and the power source after the water is turned on, and the terminal is made through the relay
  • the working circuit is in a completely open state; when the working circuit of the terminal is in a completely open state, the circuit board can be prevented from being damaged due to short circuit of the water inlet.
  • the above water-repellent treatment method is that after the accident occurs for a period of time, the terminal body has triggered the switch to be disconnected when the water is turned on, and when the terminal trigger switch is turned on, it is likely that the water body has penetrated into the terminal, which may be damaged instantaneously.
  • the terminal equipment cannot guarantee timely and effective protection.
  • an embodiment of the present invention provides a method for implementing terminal protection and a protection shell, which can perform terminal protection in a timely and effective manner.
  • a method for implementing terminal protection comprising:
  • obtaining the monitoring sensing information of the terminal includes:
  • the surface temperature information of the terminal is obtained by a preset temperature sensor.
  • the first alarm threshold is a pressure value equal to 200 cattle;
  • the first alarm threshold is a splash area equal to 20%
  • the first alarm threshold is the number of detection points of the influent body equal to 2;
  • the first alarm threshold is equal to 50 degrees Celsius.
  • performing the alarm includes:
  • the alarm is generated when the monitoring sensing information of one or more sensors is greater than the preset first alarm threshold corresponding to the sensor.
  • the second alarm threshold corresponding to each type of sensor is preset, and when the monitored sensing information obtained by the one or more sensors is greater than the second alarm threshold, the method further includes:
  • the second alarm threshold is greater than or equal to the first alarm threshold.
  • transmitting the trigger disconnection information to the terminal includes:
  • the trigger disconnection information is transmitted to the terminal through WIFI, infrared, and Bluetooth.
  • a protective case for implementing terminal protection including: a sensor unit and a judgment Broken alarm unit; among them,
  • a sensor unit configured to obtain monitoring sensing information of the terminal through a preset sensor
  • the determining alarm unit includes a judging module and an alarm module; wherein
  • the determining module is configured to: when the monitoring sensing information is greater than the preset first alarm threshold, generate and send the trigger information to the alarm module;
  • the alarm module is configured to receive trigger information for alarm.
  • the sensor unit is set to,
  • the surface temperature information of the terminal is obtained by a preset temperature sensor.
  • the first alarm threshold is a pressure value equal to 200 cattle;
  • the first alarm threshold is a splash area equal to 20%
  • the first alarm threshold is the number of detection points of the influent body equal to 2;
  • the first alarm threshold temperature is equal to 50 degrees Celsius
  • the determining module is configured to generate and send the trigger information to the alarm module when the monitoring sensing information of the one or more sensors is greater than the preset first alarm threshold corresponding to the sensor.
  • the protection shell further includes a trigger processing unit, configured to preset a corresponding second alarm threshold of each type of sensor, and when the one or more sensors are present, the monitored sensing information obtained is greater than the second When the alarm threshold is used, the generated trigger disconnection information is transmitted wirelessly to the end. End, so that the terminal performs disconnection processing on the terminal working circuit according to the triggered disconnection information;
  • a trigger processing unit configured to preset a corresponding second alarm threshold of each type of sensor, and when the one or more sensors are present, the monitored sensing information obtained is greater than the second
  • the generated trigger disconnection information is transmitted wirelessly to the end. End, so that the terminal performs disconnection processing on the terminal working circuit according to the triggered disconnection information
  • the second alarm threshold is greater than or equal to the first alarm threshold.
  • the present application further provides a protection shell for implementing terminal protection, including: a sensor unit, a central processing unit, a storage medium, and an alarm module;
  • a sensor unit configured to obtain monitoring sensing information of the terminal through a preset sensor
  • the central processor is configured to receive the monitoring sensing information, and generate and send the triggering information to the alarm module when the sensing information is greater than a preset first alarm threshold stored by the storage medium;
  • a storage medium configured to store a preset first alarm threshold
  • the alarm module is configured to receive trigger information of the central processing unit and perform an alarm.
  • the device further includes a wireless transmission module
  • the storage medium is further configured to store a second alarm threshold corresponding to each type of sensor preset
  • the central processing unit is further configured to receive the monitoring sensing information, and generate and send a trigger disconnection when the monitored sensing information obtained by the one or more sensors is greater than the second alarm threshold stored by the storage medium Information to the wireless transmission module;
  • the wireless transmission module is configured to interact with the terminal, and trigger the disconnection information to be transmitted to the terminal, so that the terminal performs disconnection processing on the terminal working circuit according to the triggered disconnection information;
  • the second alarm threshold is greater than or equal to the first alarm threshold.
  • the technical solution of the present application includes: obtaining monitoring and sensing information of the terminal by using a preset sensor; and performing alarm when the monitoring sensing information is greater than a preset first alarm threshold.
  • the solution of the embodiment of the invention obtains the monitoring and sensing information of the terminal through the sensor in time when the terminal accidentally occurs, thereby realizing more timely protection of the terminal.
  • different types of sensors are used to collect different information that is easy to cause terminal damage, and provide protection for different types of accidents for the terminal; and the second alarm threshold is set to perform disconnection processing of the terminal working circuit to avoid The damage of the terminal working circuit.
  • FIG. 2 is a structural block diagram of a protective case for implementing terminal protection according to the present invention.
  • FIG. 3 is a structural block diagram of another protective case for implementing terminal protection according to the present invention.
  • Figure 5 is a schematic illustration of a closed pattern of an irregular water area algorithm component.
  • Figure 1 is a flowchart of a method for implementing terminal protection according to an embodiment of the present invention. As shown in Figure 1, the method includes:
  • Step 100 Obtain monitoring information of the terminal by using a preset sensor
  • obtaining monitoring and sensing information of the terminal includes:
  • a splash detection point is set in a plurality of areas of the terminal that are easy to enter, and the number of detected points in the water splash detection point is obtained by a preset splash sensor; and/or,
  • the surface temperature information of the terminal is obtained by a preset temperature sensor.
  • the water splash area information of the terminal and/or the number of water inlet detection points can be obtained by the water splash sensor, thereby realizing the water splashing of the terminal.
  • the external pressure information it can be obtained whether the terminal is squeezed by excessive external pressure to achieve the acquisition of the terminal extrusion condition; through the surface temperature information of the terminal, it is possible to obtain whether the terminal is in an overheated environment or whether it has an overheated environment, and timely Remind the end user to perform related processing.
  • Step 101 When the monitoring sensing information is greater than a preset first alarm threshold, perform an alarm.
  • the manner of performing the alarm generally adopts a conventional alarm manner, for example, an audible alarm, a vibration alarm, a light alarm, and the like.
  • the first alarm threshold is a pressure value equal to 200 cattle;
  • the first alarm threshold is equal to 20% of the splash area
  • the first alarm threshold is equal to 2;
  • the first alarm threshold temperature is equal to 50 degrees Celsius.
  • the first alarm threshold is obtained according to statistical analysis by a person skilled in the art, and can be appropriately adjusted according to the architecture and security requirements of the terminal.
  • the short circuit caused by splashing water, the damage of the mobile phone circuit caused by high temperature may even cause explosion, and the excessive pressure may cause deformation of the mobile phone, etc., when the first alarm threshold is reached, timely Remind that the user can avoid damage caused by splashing water, high temperature or squeezing according to the reminder.
  • the method for providing a second alarm threshold corresponding to the at least one type of the sensor is preset, and when the monitored sensing information obtained by the one or more sensors is greater than the second alarm threshold, the method provided by the embodiment of the present invention further includes:
  • the second alarm threshold is greater than or equal to the first alarm threshold.
  • the terminal working circuit when the terminal working circuit is disconnected, it is necessary to provide a relay and a trigger switch on the terminal.
  • the circuit design belongs to the prior art, and the circuit for the open circuit receives the touch of the present invention. After the disconnection information is sent, the on/off processing of the trigger switch is performed to realize complete disconnection of the terminal working circuit, thereby ensuring the circuit safety of the terminal.
  • Transmitting the trigger disconnection information to the terminal includes: triggering the disconnection information to the terminal through WIFI, infrared, and Bluetooth transmission.
  • the method provided by the embodiment of the invention obtains the monitoring and sensing information of the terminal through the sensor in time when the terminal accidentally occurs, and protects the terminal in a timely manner.
  • the method obtains the monitoring and sensing information of the terminal through the sensor in time when the terminal accidentally occurs, and protects the terminal in a timely manner.
  • by setting different types of sensors collecting different monitoring sensing information that is easy to cause terminal damage, providing protection for different accidents for the terminal; setting a second alarm threshold, correspondingly performing disconnection processing of the terminal working circuit, Damage to the terminal working circuit is avoided.
  • FIG. 2 is a structural block diagram of a protection shell for implementing terminal protection according to an embodiment of the present invention. As shown in FIG. 2, the method includes: a sensor unit 10 and a determination alarm unit 20;
  • the sensor unit 10 is configured to obtain monitoring sensing information of the terminal by using a preset sensor
  • the sensor unit 10 is configured to
  • a splash detection point is set in a plurality of areas of the terminal that are easy to enter, and the number of detected points in the splash detection point is obtained by a preset splash sensor; and/or,
  • the surface temperature information of the terminal is obtained by a preset temperature sensor.
  • the judgment alarm unit 20 includes a judgment module 201 and an alarm module 202;
  • the determining module 201 is configured to determine whether the monitoring sensing information is greater than a preset first alarm threshold, and when the first alarm threshold is greater than the first alarm threshold, generate and send the trigger information to the alarm module;
  • the first alarm threshold is a pressure value equal to 200 cattle;
  • the first alarm threshold is equal to 20% of the splash area
  • the first alarm threshold is the number of detection points of the influent body equal to 2;
  • the first alarm threshold temperature is equal to 50 degrees Celsius.
  • the determining module 201 is configured to generate and send the trigger information to the alarm module 202 when the monitoring sensing information of the one or more sensors is greater than the preset first alarm threshold corresponding to the sensor.
  • the alarm module 202 is configured to receive trigger information for performing an alarm.
  • the protective casing further includes a trigger processing unit 30 configured to preset a second alarm threshold corresponding to the at least one type of sensor, when the monitored sensing information obtained by the one or more sensors is greater than the second alarm threshold Transmitting the generated trigger disconnection information to the terminal by using a wireless manner, so that the terminal performs disconnection processing on the terminal working circuit according to the triggered disconnection information;
  • the second alarm threshold is greater than or equal to the first alarm threshold.
  • the senor in the embodiment of the present invention and related information for performing alarm or disconnection processing may be embedded or fused to the terminal itself. It can be set by means of a protective case, and it can be applied to a terminal that has not been equipped with this function.
  • FIG. 3 is a structural block diagram of another protection device for implementing terminal protection according to an embodiment of the present invention. As shown in FIG. 3, the method includes: a sensor unit 300, a central processing unit 310, a storage medium 320, and an alarm module 330.
  • the sensor unit 300 is configured to obtain monitoring sensing information of the terminal by using a preset sensor
  • the central processing unit 310 is configured to receive the monitoring sensing information, and when the monitoring sensing information is greater than the preset first alarm threshold stored by the storage medium 320, generate and send the trigger information to the alarm module 330;
  • the storage medium 320 is configured to store a preset first alarm threshold
  • the alarm module 330 is configured to receive trigger information of the central processing unit and perform an alarm.
  • the device of the present invention further includes a wireless transmission module 340.
  • the storage medium 320 is further configured to store a second corresponding to at least one type of sensor preset Alarm threshold
  • the central processing unit 310 is further configured to receive the monitoring sensing information, and generate and send the triggering disconnection information to the wireless when the monitored sensing information obtained by the one or more sensors is greater than the second alarm threshold stored by the storage medium Transmission module 340;
  • the wireless transmission module 340 is configured to interact with the terminal, and transmit the triggered disconnection information to the terminal, so that the terminal performs a disconnection process on the terminal working circuit according to the triggered disconnection information;
  • the second alarm threshold is greater than or equal to the first alarm threshold.
  • the terminal protection method provided by the embodiment of the present invention is clearly and in detail illustrated by using the mobile phone as an example.
  • the mobile phone case as an accessory device for physically protecting the mobile phone, can provide certain protection for the daily use of the mobile phone, for example, avoiding the mobile phone falling.
  • the damage caused by the falling process is mainly achieved by the buffering effect of the mobile phone case.
  • the current mobile phone case does not have such a function for the damage of the mobile phone caused by water, high temperature and external backlog; in daily life, washing hands and cooking In the process of drinking water, work, riding a car, charging a mobile phone, etc., the mobile phone is likely to be splashed, accumulated, close to the heating area, etc., causing circuit damage to the mobile phone. If an alarm is obtained in time or the mobile circuit is disconnected, Both can effectively reduce or even avoid damage to the phone.
  • a splash sensor is used as a terminal-protected sensor for monitoring sensor information.
  • Other types of sensors can be integrated with the splash sensor working process.
  • FIG. 4 is a flowchart of a method provided by the embodiment. As shown in FIG. 4, when a mobile phone is splashed, the method includes:
  • Step 400 The preset water splash sensor on the mobile phone case calculates the external splash area information according to the splash area and the area and/or the number of detection points that the splash sensor detects the water entering;
  • calculation method of the external splash area information can be obtained by an existing method, for example,
  • Method 1 Calculation of irregular water area, mainly through the principle of graphic processing to complete the calculation of irregular area. By scanning the entire irregular pattern, find the end points of the graph, by synthesizing multiple lines Segment or draw multi-line segment method to close the graph, calculate the area for each endpoint and edge of the closed graph.
  • Figure 5 is a schematic illustration of a closed pattern of an irregular water area algorithm component.
  • Method 2 Calculate the irregular graphic area by integrating the method, scan the entire irregular figure, take a lot of vertex positions according to the segmentation method, and then complete the irregular graphic area calculation by integrating.
  • Step 401 Compare the calculated external splash area information and/or the number of detected points that have entered the water with a preset first alarm threshold. When the alarm threshold is greater than the first alarm threshold, the trigger information is sent to generate an alarm.
  • the first alarm threshold is equal to 20% of the splash area
  • the first alarm threshold is equal to 2 the number of detection points that have entered the water.
  • the sound can be alarmed by means of sound and vibration, and the user can be informed in time that the mobile phone is splashed with water, which is prone to damage and needs to be processed in time.
  • Step 402 When the monitoring sensing information is greater than the preset second alarm threshold, generate and send the triggering disconnection information to the wireless transmission module; the second alarm threshold is greater than the first alarm threshold.
  • Step 403 The terminal interacts with the wireless transmission module of the protection shell through the wireless function to obtain trigger disconnection information, and performs disconnection processing on the terminal working circuit according to the triggered disconnection information.
  • the monitoring sensing information of the terminal is obtained by using a preset sensor; when the monitoring sensing information is greater than a preset first alarm threshold, the alarm is performed.
  • the terminal can monitor the sensing information through the sensor in time when the terminal accidentally occurs, and realize the protection of the terminal in a timely manner.

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Abstract

一种实现终端保护的方法及保护壳,包括:通过预先设置的传感器获得终端的监测传感信息;当监测传感信息大于预先设定的第一告警阈值时,进行告警。更加及时的实现了对终端进行保护。可选地,通过压力传感器、溅水传感器、温度传感器的设置,采集外部压力信息、外部溅水面积信息、已进水检测点的个数、表面温度信息,为终端提供针对不同意外的保护;通过第二告警阈值的设置,进行终端工作电路的断路处理,避免了终端工作电路的损坏。

Description

一种实现终端保护的方法及保护壳 技术领域
本文涉及但不限于终端应用技术,尤指一种实现终端保护的方法及保护壳。
背景技术
随着移动终端的应用和发展,移动终端的相关技术也受到了技术人员的关注,如何避免手机由于意外情况造成损坏是其中一个研究方向;例如、针对手机或平板电脑等移动终端进行的防水设计,目前市场上主要的防水终端在遇到溅水的突发情况时,通过设置在终端自身壳体上的触发开关和设置在电源两端的密封的继电器进行防水处理;其中,继电器的动触点或静触点之一的一个触点与电源一端连接,另一个触点通过终端工作电路与电源另一端连接;触发开关遇水导通后通过触发开关与电源之间形成通路,通过继电器使终端的工作电路处于完全断路状态;当终端的工作电路处于完全断路状态时,即可以避免电路板因为进水发生短路而被损坏。
上述防水处理方法是在意外发生一段时间后,终端本体已经触发开关遇水导通后时进行断路处理,而终端触发开关遇水导通时,很可能水体已经渗透到终端内部,对于可能瞬间损坏的终端设备,无法确保及时有效的保护。
发明内容
以下是对本文详细描述的主题的概述,本概述并非是为了限制权利要求的保护范围。
为了解决上述技术问题,本发明实施例提供一种实现终端保护的方法及保护壳,能够及时有效的进行终端保护。
一种实现终端保护的方法,包括:
通过预先设置的传感器获得终端的监测传感信息;
当监测传感信息大于预先设定的第一告警阈值时,进行告警。
可选地,获得终端的监测传感信息包括:
通过预先设置的压力传感器获得终端的外部压力信息;和/或,
通过预先设置的溅水传感器获得终端的外部溅水面积信息;和/或,
通过预先设置的溅水传感器获取在终端的易进水的各个区域设置溅水检测点,获得溅水检测点中检测到进水的检测点的个数;和/或,
通过预先设置的温度传感器获取终端的表面温度信息。
可选地,当所述监测传感信息为外部压力值时,所述第一告警阈值为压力值等于200牛;
当所述监测传感信息为外部溅水面积信息时,所述第一告警阈值为溅水面积等于20%;
当所述监测传感信息为检测到进水体的个数时,所述第一告警阈值为进水体的检测点的个数等于2;
当所述检测传感信息为表面温度信息时,所述第一告警阈值为温度等于50摄氏度。
可选地,进行告警包括:
当出现一种或一种以上传感器的监测传感信息大于该种传感器对应的预先设定的所述第一告警阈值时,进行告警。
可选地,预先设定各类型传感器相应的第二告警阈值,当出现一种或一种以上传感器获得的监测的传感信息大于所述第二告警阈值时,该方法还包括,
生成并传输触发断路信息到终端,以使终端根据触发断路信息对终端工作电路进行断路处理;
所述第二告警阈值大于等于所述第一告警阈值。
可选地,传输触发断路信息到终端包括:
通过WIFI、红外、蓝牙传输所述触发断路信息到终端。
另一方面,还提供一种实现终端保护的保护壳,包括:传感器单元和判 断告警单元;其中,
传感器单元,设置为通过预先设置的传感器获得终端的监测传感信息;
判断告警单元包括判断模块和告警模块;其中,
判断模块,设置为判断监测传感信息大于预先设定的第一告警阈值时,生成并发送触发信息到告警模块;
告警模块,设置为接收触发信息进行告警。
可选地,传感器单元是设置为,
通过预先设置的压力传感器获得终端的外部压力信息;和/或,
通过预先设置的溅水传感器获得终端的外部溅水面积信息;和/或,
通过预先设置的溅水传感器获取在终端的易进水的各个区域设置溅水检测点,获得溅水检测点中检测到进水的检测点的个数;和/或,
通过预先设置的温度传感器获取终端的表面温度信息。
可选地,
当所述监测传感信息为外部压力值时,所述第一告警阈值为压力值等于200牛;
当所述监测传感信息为外部溅水面积信息时,所述第一告警阈值为溅水面积等于20%;
当所述监测传感信息为检测到进水体的个数时,所述第一告警阈值为进水体的检测点的个数等于2;
当所述检测传感信息为表面温度信息时,所述第一告警阈值温度等于50摄氏度;
所述判断模块,是设置为当出现一种或一种以上传感器的监测传感信息大于该种传感器对应的预先设定的所述第一告警阈值时,生成并发送触发信息到告警模块。
可选地,该保护壳还包括触发处理单元,设置为预先设定每一类型传感器相应的第二告警阈值,当出现一种或一种以上传感器获得的监测的传感信息大于所述第二告警阈值时,通过无线方式传输生成的触发断路信息到终 端,以使终端根据触发断路信息对终端工作电路进行断路处理;
所述第二告警阈值大于等于所述第一告警阈值。
再一方面,本申请还提供一种实现终端保护的保护壳,包括:传感器单元、中央处理器、存储介质及告警模块;其中,
传感器单元,设置为通过预先设置的传感器获得终端的监测传感信息;
中央处理器,设置为接收监测传感信息,监测传感信息大于存储介质存储的预先设定的第一告警阈值时,生成并发送触发信息到告警模块;
存储介质,设置为存储预先设定的第一告警阈值;
告警模块,设置为接收中央处理器的触发信息,进行告警。
可选地,该装置还包括无线传输模块,
所述存储介质还设置为存储预先设定各类型传感器相应的的第二告警阈值;
所述中央处理器,还设置为所述接收监测传感信息,出现一种或一种以上传感器获得的监测的传感信息大于存储介质存储的所述第二告警阈值时,生成并发送触发断路信息到无线传输模块;
无线传输模块,设置为与终端交互,将触发断路信息传输至终端,以使终端根据触发断路信息对终端工作电路进行断路处理;
所述第二告警阈值大于等于所述第一告警阈值。
与现有技术相比,本申请技术方案包括:通过预先设置的传感器获得终端的监测传感信息;当监测传感信息大于预先设定的第一告警阈值时,进行告警。本发明实施例的方案在终端意外发生之时,及时的通过传感器获得终端的监测传感信息,实现了更加及时的对终端进行保护。
可选地,通过不同种类的传感器的设置,对容易造成终端损坏的不同信息进行采集,为终端提供针对不同类型意外的保护;通过第二告警阈值的设置,进行终端工作电路的断路处理,避免了终端工作电路的损坏。
在阅读并理解了附图和详细描述后,可以明白其他方面。
附图概述
此处所说明的附图用来提供对本发明的进一步理解,构成本申请的一部分,本发明的示意性实施例及其说明用于解释本发明,并不构成对本发明的不当限定。在附图中:
图1为本发明实现终端保护的方法的流程图;
图2为本发明实现终端保护的保护壳的结构框图;
图3为本发明另一实现终端保护的保护壳的结构框图;
图4为本发明实施例1中提供的方法流程图;
图5为不规则水面积算法构件封闭图形的示意图。
本发明的较佳实施方式
下文中将结合附图对本发明的实施例进行详细说明。需要说明的是,在不冲突的情况下,本申请中的实施例及实施例中的特征可以相互任意组合。
图1为本发明实施例提供的一种实现终端保护的方法的流程图,如图1所示,包括:
步骤100、通过预先设置的传感器获得终端的监测传感信息;
本步骤中,获得终端的监测传感信息包括:
通过预先设置的压力传感器获得终端的外部压力信息;和/或,
通过预先设置的溅水传感器获得终端的外部溅水面积信息;和/或,
在终端的易进水的多个区域设置溅水检测点,通过预先设置的溅水传感器获得溅水检测点中已进水的检测点的个数;和/或,
通过预先设置的温度传感器获取终端的表面温度信息。
需要说明的是,通过溅水传感器可以获得终端外部溅水面积信息,和/或进水检测点的个数,从而实现对终端溅水情况进行获取。通过外部压力信息,可以获得终端是否被外部过大的压力挤压,实现终端挤压情况的获取;通过终端的表面温度信息,可以获取终端是否处于过热环境或是否自身出现了过热环境,及时的提醒终端用户进行相关处理。
步骤101、当监测传感信息大于预先设定的第一告警阈值时,进行告警。
这里,出现一种或一种以上传感器的监测传感信息大于该种传感器对应的预先设定的所述第一告警阈值时,进行告警。
需要说明的是,进行告警的方式一般采用常规的告警方式,例如、声音告警、振动告警、光亮告警等。
当监测传感信息为外部压力值时,第一告警阈值为压力值等于200牛;
当监测传感信息为外部溅水面积信息时,第一告警阈值为溅水面积等于20%;
当监测传感信息为检测到进水点的个数时,第一告警阈值为进水检测点的个数等于2;
当检测传感信息为表面温度信息时,第一告警阈值温度等于50摄氏度。
这里,第一告警阈值根据本领域技术人员根据数据统计分析获得,根据终端的架构及安全要求可以进行适当的调整。通过不同传感器相应的第一告警阈值的设定,对溅水容易造成的短路,高温容易造成的手机电路损坏甚至爆炸,压力过大可能造成手机变形等,可以在第一告警阈值达到时,及时的进行提醒,用户根据提醒,避免了终端由于溅水、高温或挤压造成的损坏。
可选地,
预先设定至少一个类型的传感器相应的第二告警阈值,当出现一种或一种以上传感器获得的监测的传感信息大于第二告警阈值时,本发明实施例提供的方法还包括,
生成并传输触发断路信息到终端,以使终端根据触发断路信息对终端工作电路进行断路处理;
第二告警阈值大于等于第一告警阈值。
需要说明的是,终端工作电路的断路处理时,需要在终端上设置继电器和触发开关等,电路设计属于现有技术,断路处理的电路接收到本发明的触 发断路信息后,进行触发开关的通断处理,实现终端工作电路的完全断路,保证了终端的电路安全。
传输触发断路信息到终端包括:通过WIFI、红外、蓝牙传输触发断路信息到终端。
本发明实施例提供的方法在终端意外发生之时,及时的通过传感器获得终端的监测传感信息,更加及时的对终端进行保护。可选地,通过设置不同种类的传感器,对于容易造成终端损坏的不同监测传感信息进行采集,为终端提供针对不同意外的保护;通过设置第二告警阈值,相应进行终端工作电路的断路处理,避免了终端工作电路的损坏。
图2为本发明实施例提供的实现终端保护的保护壳的结构框图,如图2所示,包括:传感器单元10和判断告警单元20;其中,
传感器单元10,设置为通过预先设置的传感器获得终端的监测传感信息;
其中,传感器单元10是设置为,
通过预先设置的压力传感器获得终端的外部压力信息;和/或,
通过预先设置的溅水传感器获得终端的外部溅水面积信息;和/或,
在终端的易进水的多个区域设置溅水检测点,通过预先设置的溅水传感器获取溅水检测点中已进水的检测点的个数;和/或,
通过预先设置的温度传感器获取终端的表面温度信息。
判断告警单元20包括判断模块201和告警模块202;其中,
判断模块201,设置为判断监测传感信息是否大于预先设定的第一告警阈值,大于第一告警阈值时,生成并发送触发信息到告警模块;
当监测传感信息为外部压力值时,第一告警阈值为压力值等于200牛;
当监测传感信息为外部溅水面积信息时,第一告警阈值为溅水面积等于20%;
当监测传感信息为检测到进水体的个数时,第一告警阈值为进水体的检测点的个数等于2;
当检测传感信息为表面温度信息时,第一告警阈值温度等于50摄氏度。
判断模块201,是设置为当出现一种或一种以上传感器的监测传感信息大于该种传感器对应的预先设定的所述第一告警阈值时,生成并发送触发信息到告警模块202。
告警模块202,设置为接收触发信息进行告警。
该保护壳还包括触发处理单元30,设置为预先设定至少一个类型传感器相应的第二告警阈值,当出现一种或一种以上传感器获得的监测的传感信息大于所述第二告警阈值时,通过无线方式传输生成的触发断路信息到终端,以使终端根据触发断路信息对终端工作电路进行断路处理;
第二告警阈值大于等于第一告警阈值。
需要说明的是,本发明实施例中的传感器及进行告警或断路处理的相关信息可以嵌入或融合至终端本身。采用保护壳的方式进行设置,可以适用于已经出厂的不具备该功能的终端上。
图3为本发明实施例提供的另一实现终端保护的保护壳的结构框图,如图3所示,包括:传感器单元300、中央处理器310、存储介质320及告警模块330;其中,
传感器单元300,设置为通过预先设置的传感器获得终端的监测传感信息;
中央处理器310,设置为接收监测传感信息,监测传感信息大于存储介质320存储的预先设定的第一告警阈值时,生成并发送触发信息到告警模块330;
存储介质320,设置为存储预先设定的第一告警阈值;
告警模块330,设置为接收中央处理器的触发信息,进行告警。
可选地,本发明装置还包括无线传输模块340,
存储介质320还设置为存储预先设定至少一个类型的传感器相应的第二 告警阈值;
中央处理器310,还设置为接收监测传感信息,出现一种或一种以上传感器获得的监测的传感信息大于存储介质存储的所述第二告警阈值时,生成并发送触发断路信息到无线传输模块340;
无线传输模块340,设置为与终端交互,将触发断路信息传输至终端,以使终端根据触发断路信息对终端工作电路进行断路处理;
所述第二告警阈值大于等于所述第一告警阈值。
以下通过具体实施例对本发明方法进行清楚详细的说明,实施例仅用于陈述本发明,并不用于限制本发明方法的保护范围。
实施例1
本实施例以手机为例,对本发明实施例提供的终端保护方法进行清楚详细的说明,手机壳作为对手机进行物理保护的配件装置,可以对日常使用手机提供一定的保护,例如避免手机在掉落过程中造成损坏,主要是通过手机壳的缓冲作用实现,对于水、高温、以及外部积压造成手机损坏的情况,目前的手机壳并不具备这样的功能;在日常生活中,洗手、做饭、喝水、工作、乘车、手机充电等过程中,手机很可能发生溅水、被积压、靠近发热区域等情况,对手机造成电路损坏,如果及时获得告警或对手机工作电路进行断路处理,均可以有效的降低,甚至是避免手机的损坏。
本实施例以溅水传感器作为终端保护的监测传感信息的传感器为例,其他类型的传感器可以与溅水传感器工作过程进行整合叠加。
图4为本实施例提供的方法流程图,如图4所示,当手机出现被溅水情况时,包括:
步骤400、手机壳上预先设置的溅水感应器会根据溅水区域和面积计算获得外部溅水面积信息和/或溅水感应器检测到已进水的检测点的个数;
需要说明的是,外部溅水面积信息的计算方法可以通过现有的方法进行获取,例如,
方法一:不规则水面积计算,主要通过图形处理原理去完成不规则面积计算。通过扫描整个不规则图形,找到图形的各个端点位置,通过合成多线 段或者画多线段方式去封闭图形,针对封闭图形的各个端点、边去计算面积。图5为不规则水面积算法构件封闭图形的示意图。
方式二:通过积分方式去完成不规则图形面积计算,扫描整个不规则图形,按照分段方式去取很多顶点位置,然后通过积分方式去完成不规则图形面积计算。
步骤401、将计算出来的外部溅水面积信息和/或已进水的检测点的个数与预先设定的第一告警阈值进行比较,大于第一告警阈值时,发送触发信息进行告警。
当监测传感信息为外部溅水面积信息时,第一告警阈值为溅水面积等于20%;或,
当监测传感信息为检测的到已进水的检测点的个数时,第一告警阈值为已进水的检测点的个数等于2。
这里,可以采用声音和振动的方式进行告警,及时的告知用户,手机被溅水,容易出现损坏,需要及时的进行处理。
步骤402、监测传感信息大于预先设定的第二告警阈值时,生成并发送触发断路信息到无线传输模块;第二告警阈值大于第一告警阈值。
步骤403、终端通过无线功能与保护壳的无线传输模块交互,获得触发断路信息,根据触发断路信息对终端工作电路进行断路处理。
通过终端工作电路的断路处理,避免了手机由于溅水面积过大或检测点进水个数多等表示终端很可能出现水大量进入手机内部造成的手机损坏。
工业实用性
本发明实施例通过预先设置的传感器获得终端的监测传感信息;当监测传感信息大于预先设定的第一告警阈值时,进行告警。可以在终端意外发生之时,及时的通过传感器获得终端的监测传感信息,更加及时的实现了对终端的保护。

Claims (12)

  1. 一种实现终端保护的方法,包括:
    通过预先设置的传感器获得终端的监测传感信息;
    当监测传感信息大于预先设定的第一告警阈值时,进行告警。
  2. 根据权利要求1所述的方法,其中,所述获得终端的监测传感信息包括:
    通过预先设置的压力传感器获得终端的外部压力信息;和/或,
    通过预先设置的溅水传感器获得终端的外部溅水面积信息;和/或,
    在终端的易进水的多个区域设置溅水检测点,通过预先设置的溅水传感器获得溅水检测点中已进水的检测点的个数;和/或,
    通过预先设置的温度传感器获取终端的表面温度信息。
  3. 根据权利要求2所述的方法,其中,
    当所述监测传感信息为外部压力值时,所述第一告警阈值为压力值等于200牛;
    当所述监测传感信息为外部溅水面积信息时,所述第一告警阈值为溅水面积等于20%;
    当所述监测传感信息为到已进水的检测点个数时,所述第一告警阈值为已进水的检测点的个数等于2;
    当所述检测传感信息为表面温度信息时,所述第一告警阈值温度等于50摄氏度。
  4. 根据权利要求3所述的方法,其中,进行告警包括:
    当出现一种或一种以上传感器的监测传感信息大于该种传感器对应的预先设定的所述第一告警阈值时,进行告警。
  5. 根据权利要求2所述的方法,还包括,预先设定至少一个类型的传感器相应的第二告警阈值,当出现一种或一种以上传感器获得的监测的传感信息大于所述第二告警阈值时,
    生成并传输触发断路信息到终端,以使终端根据触发断路信息对终端工作电路进行断路处理;
    所述第二告警阈值大于等于所述第一告警阈值。
  6. 根据权利要求5所述的方法,其中,所述传输触发断路信息到终端包括:
    通过WIFI、红外、蓝牙传输所述触发断路信息到终端。
  7. 一种实现终端保护的保护壳,包括:传感器单元和判断告警单元;其中,
    所述传感器单元,设置为通过预先设置的传感器获得终端的监测传感信息;
    其中,所述判断告警单元包括判断模块和告警模块;其中,
    所述判断模块,设置为判断监测传感信息大于预先设定的第一告警阈值时,生成并发送触发信息到告警模块;
    所述告警模块,设置为接收触发信息进行告警。
  8. 根据权利要求7所述的保护壳,其中,所述传感器单元是是设置为,
    通过预先设置的压力传感器获得终端的外部压力信息;和/或,
    通过预先设置的溅水传感器获得终端的外部溅水面积信息;和/或,
    在终端的易进水的多个区域设置溅水检测点,通过预先设置的溅水传感器,获得溅水检测点中已进水的检测点的个数;和/或,
    通过预先设置的温度传感器获取终端的表面温度信息。
  9. 根据权利要求8所述的保护壳,其中,
    当所述监测传感信息为外部压力值时,所述第一告警阈值为压力值等于200牛;
    当所述监测传感信息为外部溅水面积信息时,所述第一告警阈值为溅水面积等于20%;
    当所述监测传感信息为检测到的已进水的检测点个数时,所述第一告警 阈值为已进水的检测点的个数等于2;
    当所述检测传感信息为表面温度信息时,所述第一告警阈值温度等于50摄氏度;
    所述判断模块,设置为当出现一种或一种以上传感器的监测传感信息大于该种传感器对应的预先设定的所述第一告警阈值时,生成并发送触发信息到告警模块。
  10. 根据权利要求7所述的保护壳,还包括触发处理单元,设置为预先设定至少一个类型的传感器相应的第二告警阈值,当出现一种或一种以上传感器获得的监测的传感信息大于所述第二告警阈值时,通过无线方式传输生成的触发断路信息到终端,以使终端根据触发断路信息对终端工作电路进行断路处理;
    所述第二告警阈值大于等于所述第一告警阈值。
  11. 一种实现终端保护的保护壳,包括:传感器单元、中央处理器、存储介质及告警模块;其中,
    所述传感器单元,设置为通过预先设置的传感器获得终端的监测传感信息;
    所述中央处理器,设置为接收监测传感信息,监测传感信息大于存储介质存储的预先设定的第一告警阈值时,生成并发送触发信息到告警模块;
    所述存储介质,设置为存储预先设定的第一告警阈值;
    所述告警模块,设置为接收所述中央处理器的触发信息,进行告警。
  12. 根据权利要求11所述的保护壳,还包括无线传输模块,
    所述存储介质还设置为存储预先设定各类型传感器相应的的第二告警阈值;
    所述中央处理器,还设置为接收监测传感信息,出现一种或一种以上传感器获得的监测的传感信息大于存储介质存储的所述第二告警阈值时,生成并发送触发断路信息到无线传输模块;
    所述无线传输模块,设置为与终端交互,将触发断路信息传输至终端, 以使终端根据触发断路信息对终端工作电路进行断路处理;
    所述第二告警阈值大于等于所述第一告警阈值。
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