WO2015180607A1 - 一种终端 - Google Patents

一种终端 Download PDF

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Publication number
WO2015180607A1
WO2015180607A1 PCT/CN2015/079729 CN2015079729W WO2015180607A1 WO 2015180607 A1 WO2015180607 A1 WO 2015180607A1 CN 2015079729 W CN2015079729 W CN 2015079729W WO 2015180607 A1 WO2015180607 A1 WO 2015180607A1
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WO
WIPO (PCT)
Prior art keywords
module
activation
sleep
terminal
communication module
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PCT/CN2015/079729
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English (en)
French (fr)
Inventor
邹浩
Original Assignee
国民技术股份有限公司
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Application filed by 国民技术股份有限公司 filed Critical 国民技术股份有限公司
Publication of WO2015180607A1 publication Critical patent/WO2015180607A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/725Cordless telephones
    • H04M1/73Battery saving arrangements

Definitions

  • the utility model relates to the field of terminal control, in particular to a terminal for controlling a communication function of a terminal to achieve power saving purposes.
  • Portable electronic devices such as smart watches and smart bracelets, are increasingly popular among users. They mainly communicate with other terminals (such as supporting hosts) through technologies such as Bluetooth, infrared, and NFC (Near Field Communication); After the device is turned on, the communication module such as Bluetooth is turned on.
  • the communication module such as Bluetooth is turned on.
  • such a terminal does not always communicate with other terminals. Therefore, the communication module that has been turned on often consumes most of the power that does not need to be consumed, thereby causing the terminal to stand by. Not long, affecting the user experience.
  • the utility model provides a terminal, which solves the problem of unnecessary power consumption caused by the communication module in the terminal being always turned on in the prior art.
  • the terminal includes a communication module for communicating with other terminals, a controller for controlling the communication module, an activation module for outputting an activation signal, and A vibration detector that detects whether the terminal transmits vibration; wherein the vibration detector is connected to the activation module, and when detecting vibration of the terminal, outputs a vibration signal to the activation module; the activation module is connected to the controller, and after receiving the vibration signal, The controller outputs an activation signal; the controller is coupled to the communication module and activates the communication module upon receiving the activation signal.
  • the terminal in the above embodiment further includes a calculator for calculating the frequency of the vibration signal, and the calculator is connected to the activation module, and the activation module outputs the activation signal when the vibration signal frequency is greater than or equal to the preset activation threshold.
  • the terminal in the above embodiment further includes an activation button for receiving a user operation, the activation button is connected to the activation module, and the activation module outputs an activation signal according to the user operation.
  • the terminal in the above embodiment further includes a timing activator, and the timing activator is connected to the activation module, and controls the activation module to output an activation signal according to the preset activation information.
  • the terminal in the above embodiment further includes a sleep module for outputting a sleep signal
  • the sleep module is connected to the controller, the sleep module outputs a sleep signal to the controller, and the controller sleeps the communication module after receiving the sleep signal.
  • the terminal in the foregoing embodiment further includes a timer for calculating a time difference between the last communication of the communication module and the current time, the timer is connected to the hibernation module and the communication module, and the timer compares the time difference with the preset sleep. Threshold comparison, when the time difference is greater than or equal to the preset sleep threshold, the sleep module is controlled to output a sleep signal.
  • the terminal in the above embodiment further includes a sleep button for receiving a user operation, and the sleep button is connected to the sleep module, and the sleep module outputs a sleep signal according to the user operation.
  • the terminal in the foregoing embodiment further includes a timer dormator, and the timer dormator is connected to the hibernation module, and controls the hibernation module to output the sleep signal according to the preset sleep information.
  • the terminal in the above embodiment is a Bluetooth electronic device or a near field communication device.
  • the communication module in the above embodiment is one or more of a Bluetooth communication module, an infrared communication module, a near field communication module, and a wireless communication module.
  • the terminal provided by the utility model is provided with a vibration detector and a controller dedicated to controlling the communication module. After the vibration detector detects that the terminal vibrates, the controller activates the communication module, that is, the communication module is activated. Switching between the sleep state and the sleep state, instead of being always in an active state, solves the problem of unnecessary power consumption caused by the communication module being always turned on in the prior art, and prolongs the single use duration after the terminal is fully charged. Enhanced user experience.
  • FIG. 1 is a schematic diagram of functional modules of a terminal according to a first embodiment of the present invention
  • FIG. 2 is a schematic diagram of functional modules of a terminal according to a second embodiment of the present invention.
  • FIG. 3 is a flowchart of a method for operating a terminal according to a third embodiment of the present invention.
  • the core idea of the utility model is to set a vibration detector for the terminal and a controller dedicated to controlling the communication module. After the vibration detector detects the vibration of the terminal, the controller activates the communication module, that is, the communication module is activated. Switching between the sleep state and the sleep state, instead of always being active, such as activating the communication module only when communication is required, reducing the power consumption of the terminal and prolonging the single-use duration after the terminal is fully charged.
  • FIG. 1 is a schematic diagram of a functional module of a terminal according to a first embodiment of the present invention.
  • the terminal 1 provided by the present application includes:
  • the communication module 101 is used for communication with other terminals. Specifically, if the terminal is a Bluetooth terminal, the communication module 101 uses Bluetooth technology to perform information interaction with other terminals (mainly hosts associated with the terminal), such as real-time detection of whether the host accepts New short message, etc., and when receiving a new short message, obtain the short message and display it to the user;
  • other terminals mainly hosts associated with the terminal
  • the controller 102 for controlling the communication module for example, when the user needs to use the Bluetooth terminal to receive the short message of the host, and touches the Bluetooth terminal several times, the controller 102 controls the communication module 101 to be activated.
  • the Bluetooth terminal can obtain the short message of the supporting host, and if the user does not operate the Bluetooth terminal within a certain period of time, the controller 102 considers that the user does not need to receive the short message of the host through the Bluetooth terminal, and the controller 102 controls the communication at this time.
  • Module 101 sleeps to avoid unnecessary power consumption
  • the activation module 103 for outputting an activation signal may be that the terminal 1 is touched by the user several times (for example, being touched by the user three times within 2 seconds), the preset time (such as 8 am), etc. In the case of an output activation signal;
  • the vibration detector 104 is configured to detect whether the terminal transmits a vibration. Specifically, for example, the user taps the terminal 1 with a finger, and the user needs to obtain the short information of the supporting host through the terminal 1, etc., at this time, the vibration detector 104 It can be detected that the terminal sends vibration, and then outputs a vibration signal to the activation module 103;
  • connection relationship and signal flow between the functional modules are as follows:
  • the vibration detector 104 is connected to the activation module 103, and outputs a vibration signal to the activation module 103 when detecting vibration of the terminal;
  • the activation module 103 is connected to the controller 102 and outputs an activation signal to the controller 102 after receiving the vibration signal;
  • the controller 102 is connected to the communication module 101 and activates the communication module 101 upon receiving the activation signal.
  • the terminal 1 shown in FIG. 1 is a terminal device such as a Bluetooth electronic device having a Bluetooth communication function, an infrared electronic device having an infrared communication function, and a near field communication device having a near field communication function.
  • the communication module 101 in FIG. 1 is a Bluetooth communication module that interacts with other terminals using Bluetooth technology, a near field communication module that interacts with other terminals using near field communication technology, and uses infrared technology to perform with other terminals.
  • An interactive Bluetooth communication module one or more of a wireless communication module that uses a WIFI network to interact with other terminals.
  • the terminal 1 provided by the present application includes a communication module 101, a controller 102, an activation module 103, and a vibration. Based on the detector 104, one or more of the following functional modules may also be included:
  • Calculator 105 connected to activation module 103, which is used to calculate the frequency of the vibration signal Whether it is greater than a preset activation threshold, and when the frequency is greater than or equal to the preset activation threshold, the control activation module 103 outputs an activation signal; specifically, for example, the calculator 105 is configured to calculate the frequency of the vibration signal output by the vibration detector 104, and It is compared with the preset activation threshold. If the frequency of the vibration signal calculated by the calculator 105 is 3 times/second and the preset activation threshold is 2 times/second, then the calculator 105 controls the activation module 103 to output the activation signal.
  • the embodiment is to avoid unnecessary power consumption caused by the user operating the communication module 101 by mistaken operation;
  • the activation button 106 is connected to the activation module 103.
  • the activation button 106 is used to output an activation signal according to the user operation control activation module 103. Specifically, for example, after the user clicks the activation button 106 specifically set on the terminal 1, the user needs to obtain the activation signal through the terminal 1. The short message of the host, etc., at this time, the activation module 103 outputs an activation signal to activate the communication module 101;
  • the timing activation device 107 is connected to the activation module 103, and controls the activation module 103 to output an activation signal according to the preset activation information.
  • the preset activation information is from 8:00 am to 2:00 pm, and the communication module 101 is activated once every hour. Detecting whether the host paired with the terminal 1 receives the new short message, then, at this time, the timing activator 107 starts to work after 8:00 in the morning, and the control activation module 103 outputs an activation every hour (such as 9:00, 10:00, etc.).
  • the signal is used to activate the communication module 101, which not only reduces the power consumption, but also enables the user to know the communication status of the host in time;
  • the hibernation module 108 is connected to the controller 102.
  • the hibernation module 108 is configured to output a sleep signal to the controller 102.
  • the controller 102 is specifically configured to hibernate the communication module 101 after receiving the sleep signal.
  • the hibernation module 108 may be a terminal. 1 The user does not operate or interact with the information for a period of time (such as no user touch or exchange information with the host within 2 minutes), and outputs a sleep signal when the preset time (such as 8:00 pm);
  • the timer 109 is connected to the hibernation module 108 and the communication module 101.
  • the timer 109 is configured to calculate the time difference between the last communication of the communication module 101 and the current time, compare the time difference with the preset sleep threshold, and compare the time difference.
  • the preset sleep threshold is greater than or equal to the preset sleep threshold
  • the sleep module 108 is controlled to output a sleep signal; for example, the last communication time of the communication module 11 is 20:20, and the current time is 20:26, then the time difference is 6 minutes. Setting the sleep threshold to 5 minutes, then the time difference is greater than the preset sleep threshold, and the timer 109 controls the sleep module 108 to output the sleep signal;
  • the sleep button 110 is connected to the sleep module 108, and the sleep button 110 is configured to control the sleep module 108 to output a sleep signal according to a user operation; for example, the user clicks on the sleep button specially set on the terminal 1. After the button 110, the user no longer needs to obtain the short message of the supporting host through the terminal 1, etc., at this time, the hibernation module 108 outputs a sleep signal to sleep the communication module 101;
  • the timer sleeper 111 is connected to the sleep module 108, and controls the sleep module 108 to output a sleep signal according to the preset sleep information.
  • the preset sleep information is 8:5 am to 22:5 pm, every hour (such as 9:5, 10:5, etc.) detects whether the communication module 101 communicates with the host paired with the terminal 1. If the communication is not performed and the communication module 101 is in the active state, the sleep module 108 is controlled to output a sleep signal for sleeping.
  • the communication module 101 cooperates with the timing activating device 107 to enable the user to timely understand the communication status of the host, and also reduces power consumption.
  • the activation button 106 and the sleep button 110 in FIG. 2 may be the same button that performs the function of the activation button 106 when the communication module 101 is in the sleep state, and when the communication module 101 is in the active state, The role of the sleep button 110 is performed; this embodiment reduces the design difficulty of the terminal.
  • the timing activator 107 and the timer sleeper 111 in FIG. 2 may be the same timer circuit or chip that controls different objects at different times, such as between 8 and 22 o'clock.
  • the hourly control activation module 103 controls the hibernation module 108 5 minutes after the hour from 8 o'clock to 22 o'clock; this embodiment reduces the design difficulty of the terminal.
  • the terminal is a Bluetooth watch as an example.
  • the Bluetooth watch communicates with the supporting host through the Bluetooth communication module.
  • FIG. 3 is a flowchart of the working method of the terminal according to the third embodiment of the present invention. As shown in FIG. 3, in the embodiment, the working method of the terminal provided by the present application includes the following steps:
  • S301 The Bluetooth watch is turned on and enters a sleep state
  • the Bluetooth communication module is in a sleep state, and the function is low;
  • the Bluetooth watch detects an activation signal
  • the activation signal generated by the Bluetooth watch when the user continuously taps the Bluetooth watch for a predetermined number of times, the activation signal generated by the Bluetooth watch;
  • step S303 The Bluetooth watch determines whether an activation signal is generated, and if so, step S304 is performed, otherwise returns to step S302;
  • S304 The Bluetooth watch enters an active state
  • the Bluetooth communication module is in an active state, and the function is large;
  • S305 the Bluetooth watch detects a sleep signal
  • the information does not interact with the supporting host during a certain period of time, and the sleep signal generated by the Bluetooth watch;
  • step S306 The Bluetooth watch determines whether a sleep signal is generated, and if so, proceeds to step S307, otherwise returns to step S305;
  • the Bluetooth communication module is in a sleep state and has a low function.
  • a vibration detector and a controller dedicated to controlling the communication module are disposed for the terminal. After the vibration detector detects that the terminal vibrates, the controller activates the communication module, that is, the communication module switches between the active state and the sleep state. Instead of being always in an active state, the problem of unnecessary power consumption caused by the communication module being always turned on in the prior art is solved, the single-use duration after the terminal is fully charged is extended, and the user experience is enhanced;
  • a plurality of solutions for activating and sleeping communication modules are provided to meet the personalized needs of the users.

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Abstract

本实用新型提供了一种终端;该终端包括用于与其他终端通信的通信模块、用于控制通信模块的控制器、用于输出激活信号的激活模块、以及用于在检测到终端是否发送振动的振动检测器;其中,振动检测器与激活模块连接,在检测到终端发生振动时,向激活模块输出振动信号;激活模块与控制器连接,在接收到振动信号后向控制器输出激活信号;控制器与通信模块连接,在接收到激活信号后激活通信模块。通过本实用新型的实施,在检测到终端发生振动后,才激活通信模块,而不是让通信模块一直处于激活状态,从而解决了现有技术中通信模块一直开启所带来的不必要功耗的问题,延长了终端充满电后的单次使用时长,增强了用户的使用体验。

Description

一种终端 技术领域
本实用新型涉及终端控制领域,尤其涉及一种用于控制终端通信功能以达到省电目的的终端。
背景技术
以智能手表、智能手镯等为代表的便携式电子设备越来越受到用户的欢迎,其主要通过蓝牙、红外、NFC(近场通信)等技术来完成与其他终端(如配套主机)的通信;这类终端在开机后即开启蓝牙等通信模块,然而这类终端并不是一直都与其他终端通信,那么,一直处于开启状态的通信模块往往消耗了大部分不需要消耗的电能,进而导致终端待机时间不长,影响了用户的使用体验。
因此,如何提供一种可以控制终端通信功能以达到省电目的的终端,是本领域技术人员亟待解决的技术问题。
实用新型内容
本实用新型提供了一种终端,以解决现有技术中终端内通信模块一直开启所带来的不必要功耗的问题。
本实用新型提供了一种终端,在一个实施例中,该终端包括用于与其他终端通信的通信模块、用于控制通信模块的控制器、用于输出激活信号的激活模块、以及用于在检测到终端是否发送振动的振动检测器;其中,振动检测器与激活模块连接,在检测到终端发生振动时,向激活模块输出振动信号;激活模块与控制器连接,在接收到振动信号后向控制器输出激活信号;控制器与通信模块连接,在接收到激活信号后激活通信模块。
进一步的,上述实施例中的终端还包括用于计算振动信号频率的计算器,计算器与激活模块连接,在振动信号频率大于或等于预设激活阈值时,控制激活模块输出激活信号。
进一步的,上述实施例中的终端还包括用于接收用户操作的激活按钮,激活按钮与激活模块连接,根据用户操作控制激活模块输出激活信号。
进一步的,上述实施例中的终端还包括定时激活器,定时激活器与激活模块连接,根据预设激活信息控制激活模块输出激活信号。
进一步的,上述实施例中的终端还包括用于输出休眠信号的休眠模块,休眠模块与控制器连接,休眠模块向控制器输出休眠信号,控制器在接收到休眠信号后休眠通信模块。
进一步的,上述实施例中的终端还包括用于计算通信模块最后一次通信与当前时间的时间差值的计时器,计时器与休眠模块及通信模块连接,计时器将时间差值与预设休眠阈值比较,在时间差值大于或等于预设休眠阈值时,控制休眠模块输出休眠信号。
进一步的,上述实施例中的终端还包括用于接收用户操作的休眠按钮,休眠按钮与休眠模块连接,根据用户操作控制休眠模块输出休眠信号。
进一步的,上述实施例中的终端还包括定时休眠器,定时休眠器与休眠模块连接,根据预设休眠信息控制休眠模块输出休眠信号。
进一步的,上述实施例中的终端为蓝牙电子设备或近场通信设备。
进一步的,上述实施例中的通信模块为蓝牙通信模块、红外通信模块、近场通信模块、无线通信模块中的一种或多种。
本实用新型的有益效果:
本实用新型提供的终端,为终端设置了振动检测器及专用于控制通信模块的控制器,在振动检测器检测到终端发生振动后,控制器才激活通信模块,也即通信模块是在激活状态与休眠状态之间进行切换的,而不是一直处于激活状态,从而解决了现有技术中通信模块一直开启所带来的不必要功耗的问题,延长了终端充满电后的单次使用时长,增强了用户的使用体验。
附图说明
图1为本实用新型第一实施例提供的终端的功能模块示意图;
图2为本实用新型第二实施例提供的终端的功能模块示意图;
图3为本实用新型第三实施例提供的终端工作方法的流程图。
具体实施方式
现通过具体实施方式结合附图的方式对本实用新型做出进一步的诠释说明。
本实用新型的核心思想是为终端设置振动检测器及专用于控制通信模块的控制器,在振动检测器在检测到终端发生振动后,控制器才激活通信模块,也即通信模块是在激活状态与休眠状态之间进行切换的,而不是一直处于激活状态,如仅在需要通信时激活通信模块,降低了终端的功耗,延长了终端充满电后的单次使用时长。
第一实施例:
图1为本实用新型第一实施例提供的终端的功能模块示意图,由图1可知,在本实施例中,本申请提供的终端1包括:
用于与其他终端通信的通信模块101,具体的如,终端为蓝牙终端,那么通信模块101采用蓝牙技术与其他终端(主要是与终端配套的主机)进行信息交互,如实时检测主机是否接受到新的短信息等,并在接收到新短信息时,获取该短信息并向用户显示;
用于控制所述通信模块的控制器102,具体的如,在用户需要利用蓝牙终端接收主机的短信息时,碰触蓝牙终端数次,那么控制器102就控制通信模块101激活,此时,蓝牙终端就可以获取到配套主机的短信息,又如用户在一定时间段内未操作蓝牙终端时,控制器102认为用户不需要通过蓝牙终端接收主机的短信息,此时控制器102就控制通信模块101休眠,以避免不必要的功耗
用于输出激活信号的激活模块103,具体的如,激活模块103可以是终端1被用户触碰数次(如2秒内被用户触碰3次),预设时间(如上午8点)等情况下输出激活信号;
用于在检测到所述终端是否发送振动的振动检测器104,具体的如,用户用手指敲打终端1,代表用户需要通过终端1获取配套主机的短信息等,此时,振动检测器104就可以检测到终端发送振动,进而向激活模块103输出振动信号;
如图1所示,本实施例中,各功能模块之间的连接关系及信号流走向如下:
振动检测器104与激活模块103连接,在检测到终端发生振动时,向激活模块103输出振动信号;
激活模块103与控制器连接102,在接收到振动信号后向控制器102输出激活信号;
控制器102与通信模块101连接,在接收到激活信号后激活通信模块101。
在一些实施例中,图1所示的终端1为具备蓝牙通信功能的蓝牙电子设备、具备红外通信功能的红外电子设备、具备近场通信功能的近场通信设备等终端设备。
在一些实施例中,图1中的通信模块101为使用蓝牙技术与其他终端进行交互的蓝牙通信模块、使用近场通信技术与其他终端进行交互的近场通信模块、使用红外技术与其他终端进行交互的蓝牙通信模块、使用WIFI网络与其他终端进行交互的无线通信模块中的一种或多种。
第二实施例:
图2为本实用新型第二实施例提供的终端的功能模块示意图,由图2可知,在本实施例中,本申请提供的终端1在包括通信模块101、控制器102、激活模块103及振动检测器104的基础上,还可以包括以下功能模块中的一个或多个:
计算器105:与激活模块103连接,计算器105用于计算振动信号的频率 是否大于预设激活阈值,并在频率大于或等于预设激活阈值时,控制激活模块103输出激活信号;具体的如,计算器105用于计算振动检测器104所输出的振动信号频率,并将其与预设激活阈值进行比较,如计算器105计算到的振动信号频率为3次/秒,而预设激活阈值为2次/秒,那么,此时计算器105控制激活模块103输出激活信号;本实施例是为了避免用户误操作激活通信模块101所带来的不必要功耗;
激活按钮106:与激活模块103连接,激活按钮106用于根据用户操作控制激活模块103输出激活信号;具体的如,用户点击终端1上专门设置的激活按钮106后,代表用户需要通过终端1获取配套主机的短信息等,此时,激活模块103就输出激活信号来激活通信模块101;
定时激活器107:与激活模块103连接,根据预设激活信息控制激活模块103输出激活信号;具体的如,预设激活信息为早上8点至晚上22点,每一小时激活一次通信模块101以检测与终端1配对的主机是否接收到新短信息,那么,此时,定时激活器107在早上8点以后开始工作,每一小时(如9点、10点等)控制激活模块103输出一次激活信号,用来激活通信模块101,这样既降低了功耗,又使的用户可以及时的了解主机的通信情况;
休眠模块108:与控制器102连接,休眠模块108用于向控制器102输出休眠信号,控制器102具体用于在接收到休眠信号后休眠通信模块101;具体的如,休眠模块108可以是终端1在一段时间内未被用户操作或发生信息交互(如2分钟内未被用户触碰或者与主机进行信息交互),预设时间(如晚上8点)等情况下输出休眠信号;
计时器109:与休眠模块108及通信模块101连接,计时器109用于计算通信模块101最后一次通信与当前时间的时间差值,将时间差值与预设休眠阈值比较,并在时间差值大于或等于预设休眠阈值时,控制休眠模块108输出休眠信号;具体的如,通信模块11最后一次通信时间为20:20,当前时间为20:26,那么时间差值为6分钟,若预设休眠阈值为5分钟,那么时间差值大于预设休眠阈值,计时器109控制休眠模块108输出休眠信号;
休眠按钮110:与休眠模块108连接,休眠按钮110用于根据用户操作控制休眠模块108输出休眠信号;具体的如,用户点击终端1上专门设置的休眠按 钮110后,代表用户不再需要通过终端1获取配套主机的短信息等,此时,休眠模块108输出休眠信号来休眠通信模块101;
定时休眠器111:与休眠模块108连接,根据预设休眠信息控制休眠模块108输出休眠信号;具体的如,预设休眠信息为早上8点5分至晚上22点5分,每一小时(如9点5分、10点5分等)检测一次通信模块101是否与终端1配对的主机进行通信,若未进行通信且通信模块101处于激活状态,则控制休眠模块108输出休眠信号,用来休眠通信模块101,该定时休眠器111与定时激活器107相互配合,在使的用户可以及时的了解主机的通信情况的同时,也降低了功耗。
在一些实施例中,图2中的激活按钮106与休眠按钮110可以为同一按钮,该按钮在通信模块101处于休眠状态时,执行激活按钮106的作用,而当通信模块101处于激活状态时,执行休眠按钮110的作用;该实施例降低了终端的设计难度。
在一些实施例中,图2中的定时激活器107与定时休眠器111可以为同一个定时器电路或芯片,该定时器电路或芯片在不同时刻控制不同的对象,如在8点至22点的整点控制激活模块103,在8点至22点的整点后5分控制休眠模块108;该实施例降低了终端的设计难度。
第三实施例:
在本实施例中,以终端为蓝牙手表为例进行说明,该蓝牙手表通过蓝牙通信模块与配套主机进行信息交互;图3为本实用新型第三实施例提供的终端工作方法的流程图,由图3可知,在本实施例中,本申请提供的终端工作方法包括以下步骤:
S301:蓝牙手表开机,进入休眠状态;
此时,蓝牙通信模块处于休眠状态,功能较低;
S302:蓝牙手表检测激活信号;
在本实施例中,用户连续敲打蓝牙手表预定次数时,蓝牙手表产生的激活信号;
S303:蓝牙手表判断是否产生激活信号,若是,则执行步骤S304,否则返回步骤S302;
S304:蓝牙手表进入激活状态;
此时,蓝牙通信模块处于激活状态,功能较大;
S305:蓝牙手表检测休眠信号;
在本实施例中,在一定时间段内未与配套主机发生信息交互,蓝牙手表产生的休眠信号;
S306:蓝牙手表判断是否产生休眠信号,若是,则执行步骤S307,否则返回步骤S305;
S307:蓝牙手表进入休眠状态,并返回步骤S302;
此时,蓝牙通信模块处于休眠状态,功能较低。
综上可知,通过本实用新型的实施,至少存在以下有益效果:
为终端设置了振动检测器及专用于控制通信模块的控制器,在振动检测器检测到终端发生振动后,控制器激活通信模块,也即通信模块是在激活状态与休眠状态之间进行切换的,而不是一直处于激活状态,从而解决了现有技术中通信模块一直开启所带来的不必要功耗的问题,延长了终端充满电后的单次使用时长,增强了用户的使用体验;
进一步的,还提供了多种激活及休眠通信模块的方案,满足了用户的个性化需求。
以上仅是本实用新型的具体实施方式而已,并非对本实用新型做任何形式上的限制,凡是依据本实用新型的技术实质对以上实施方式所做的任意简单修改、等同变化、结合或修饰,均仍属于本实用新型技术方案的保护范围。

Claims (10)

  1. 一种终端,其特征在于,包括:用于与其他终端通信的通信模块、用于控制所述通信模块的控制器、用于输出激活信号的激活模块、以及用于在检测到所述终端是否发送振动的振动检测器;其中,
    所述振动检测器与所述激活模块连接,在检测到所述终端发生振动时,向所述激活模块输出振动信号;
    所述激活模块与所述控制器连接,在接收到所述振动信号后向所述控制器输出所述激活信号;
    所述控制器与所述通信模块连接,在接收到所述激活信号后激活所述通信模块。
  2. 如权利要求1所述的终端,其特征在于,所述终端还包括用于计算所述振动信号频率的计算器,所述计算器与所述激活模块连接,在所述振动信号频率大于或等于预设激活阈值时,控制所述激活模块输出所述激活信号。
  3. 如权利要求1所述的终端,其特征在于,所述终端还包括用于接收用户操作的激活按钮,所述激活按钮与所述激活模块连接,根据用户操作控制所述激活模块输出所述激活信号。
  4. 如权利要求1所述的终端,其特征在于,所述终端还包括定时激活器,所述定时激活器与所述激活模块连接,根据预设激活信息控制所述激活模块输出所述激活信号。
  5. 如权利要求1所述的终端,其特征在于,所述终端还包括用于输出休眠信号的休眠模块,所述休眠模块与所述控制器连接,所述休眠模块向所述控制器输出休眠信号,所述控制器在接收到所述休眠信号后休眠所述通信模块。
  6. 如权利要求5所述的终端,其特征在于,所述终端还包括用于计算所述通信模块最后一次通信与当前时间的时间差值的计时器,所述计时器与所述休眠模块及所述通信模块连接,所述计时器将所述时间差值与预设休眠阈值比较,在所述时间差值大于或等于所述预设休眠阈值时,控制所述休眠模块输出所述休眠信号。
  7. 如权利要求5所述的终端,其特征在于,所述终端还包括用于接收用户操作的休眠按钮,所述休眠按钮与所述休眠模块连接,根据用户操作控制所述休 眠模块输出所述休眠信号。
  8. 如权利要求5所述的终端,其特征在于,所述终端还包括定时休眠器,所述定时休眠器与所述休眠模块连接,根据预设休眠信息控制所述休眠模块输出所述休眠信号。
  9. 如权利要求1至8任一项所述的终端,其特征在于,所述终端为蓝牙电子设备或近场通信设备。
  10. 如权利要求1至8任一项所述的终端,其特征在于,所述通信模块为蓝牙通信模块、红外通信模块、近场通信模块、无线通信模块中的一种或多种。
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