WO2018076548A1 - 一种智能穿戴设备 - Google Patents

一种智能穿戴设备 Download PDF

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Publication number
WO2018076548A1
WO2018076548A1 PCT/CN2016/114035 CN2016114035W WO2018076548A1 WO 2018076548 A1 WO2018076548 A1 WO 2018076548A1 CN 2016114035 W CN2016114035 W CN 2016114035W WO 2018076548 A1 WO2018076548 A1 WO 2018076548A1
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Prior art keywords
module
device body
sensor
laser
smart wearable
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English (en)
French (fr)
Inventor
郄勇
朱双帅
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Goertek Techology Co Ltd
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Goertek Techology Co Ltd
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    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/033Pointing devices displaced or positioned by the user, e.g. mice, trackballs, pens or joysticks; Accessories therefor
    • G06F3/0346Pointing devices displaced or positioned by the user, e.g. mice, trackballs, pens or joysticks; Accessories therefor with detection of the device orientation or free movement in a three-dimensional [3D] space, e.g. 3D mice, 6-DOF [six degrees of freedom] pointers using gyroscopes, accelerometers or tilt-sensors
    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0487Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser
    • G06F3/0488Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09BEDUCATIONAL OR DEMONSTRATION APPLIANCES; APPLIANCES FOR TEACHING, OR COMMUNICATING WITH, THE BLIND, DEAF OR MUTE; MODELS; PLANETARIA; GLOBES; MAPS; DIAGRAMS
    • G09B17/00Teaching reading
    • G09B17/02Line indicators or other guides or masks

Definitions

  • the present invention relates to the field of electronic device technologies, and in particular, to a smart wearable device.
  • the laser pointer also known as the laser pointer, is a transmitter that is designed to be portable and easy to hold.
  • people are accustomed to using a laser pointer to project a light spot or a light pointing to an object during meetings and teachings instead of a pointer and a mouse, avoiding the problem of carrying a "whip" with them or frequently going back and forth to point out something.
  • the usual laser pointer needs to be carried as a separate device, causing inconvenience to the user.
  • smart wearable devices devices such as smart watches or smart bracelets have gradually become a must-have for people to go out, but the existing smart wearable devices have relatively simple functions and cannot replace laser pen devices.
  • the invention provides a smart wearing device with the function of a laser pen to solve the problem that the laser pen needs to be carried as an independent device, causing inconvenience to the user.
  • the smart wearable device includes a device body, wherein the device body is provided with a central processing unit, a power module and a button module, and the power module supplies power to each module in the device body;
  • a laser module with a laser head is also disposed in the body;
  • the button module is configured to send, to the central processing unit, a command for controlling whether the laser module is turned on or off;
  • the central processor is configured to control opening and closing of the laser module according to a switch control command received from the button module;
  • the laser module is configured to realize a laser pen function by projecting a light spot or a light beam through the laser head when turned on.
  • the invention has the beneficial effects that the laser module with a laser head is arranged in the device body of the smart wearable device.
  • the laser module When the laser module is turned on by the central processor, the laser head of the laser module is projected.
  • a light spot or a light beam points to an object to realize the function of the laser pen.
  • the smart wearable device itself is relatively portable, for example, it can be worn on the wrist or other parts of the body. Since the smart wearable device has the function of a laser pen, the user does not have to Carrying an independent laser pointer device reduces the number of items that are carried out and provides convenience for the user.
  • FIG. 1 is a functional block diagram of a smart wearable device according to Embodiment 1 of the present invention.
  • FIG. 2 is a functional block diagram of a smart wearable device according to Embodiment 2 of the present invention.
  • the design concept of the present invention is that many people are accustomed to using a laser pen in a meeting, teaching, and the like, but it is not convenient to carry a separate laser pen device when going out.
  • devices such as smart watches or smart bracelets have gradually become a must-have item when people go out, but the existing smart wearable devices have relatively simple functions and cannot replace laser pen devices.
  • the present invention provides a laser module with a laser head in the device body of the smart wearable device. When the laser module is turned on, the laser head projects a light spot or a light beam pointing to an object, thereby realizing The laser pen function, so that users do not have to carry a separate laser pen device, which reduces the number of items carried out and provides convenience for users.
  • the smart wearable device provided in this embodiment includes a device body 100.
  • the device body 100 is provided with a central processing unit 110 and a power supply.
  • the module 120 and the button module 130 and the power module 120 supply power to the modules in the device body 100.
  • the device body 100 is further provided with a laser module 140 with a laser head.
  • the button module 130 sends a command for controlling the opening or closing of the laser module 140 to the central processing unit 110.
  • the central processing unit 110 is configured according to the slave button module 130.
  • the received switch control command controls the opening and closing of the laser module 140.
  • the smart wearable device of the embodiment can be worn on the user and is convenient to carry.
  • the laser module in the device body can realize the function of the laser pen, thereby solving the problem that the existing laser pen needs to be carried as an independent device, causing the user to Inconvenience.
  • the smart wearable device of the embodiment may be a smart watch or a smart bracelet.
  • the smart wearable device further includes a wrist strap for fixing the device body to the wrist portion of the user.
  • the body of the device is combined with a wristband to form a complete smart watch or smart bracelet.
  • the device body 200 is further provided with a sensor module 250.
  • the sensor module 250 includes a photosensitive sensor 251 for collecting the ambient light intensity in the environment where the device body 200 is located.
  • the central processor 210 controls the emission power of the laser module 240 according to the ambient light intensity collected by the photosensitive sensor 251, thereby adjusting The brightness of the laser light, when the ambient light intensity is low, correspondingly reduce the emission power of the laser film group 240, so that the brightness of the laser light is lowered, in the ambient light
  • the intensity is high, for example, when the sunlight is shining or the light is bright
  • the emission power of the laser film group 240 is increased accordingly, so that the brightness of the laser is enhanced to ensure a better observation effect.
  • the device body 200 is further provided with a wireless communication module 260.
  • the device body 200 wirelessly connects to the host 300 through the wireless communication module 260 and communicates with the host 300.
  • the wireless communication module 260 can establish a connection with the host 300 via Bluetooth or a wireless local area network, and is more suitable for Bluetooth when transmitting at a short distance from point to point.
  • the button module 230 is further configured to send a command for controlling the device body 200 to enter the mouse mode to the central processing unit 210, and the central processor 210 receives the command to enter the mouse mode from the button module 230.
  • the command for controlling the mouse pointer of the host 300 to follow the device body 200 for corresponding movement is transmitted to the host 300 through the wireless communication module 260.
  • the device body 200 moves, not only the falling point of the laser moves, but also the mouse pointer of the host 300 moves along with the movement of the device body 200.
  • the user can use the smart wearing device provided in this embodiment instead of the mouse to implement the host 300. Drawing, labeling and other functions.
  • the sensor module 250 further includes an acceleration sensor 252 and a geomagnetic sensor 253.
  • the acceleration sensor 252 collects the acceleration of the movement of the device body 200
  • the geomagnetic sensor 253 collects the space of the device body 200.
  • the central processing unit 210 calculates the movement information of the device body 200 by using the built-in algorithm according to the acceleration collected by the acceleration sensor 252 and the direction of the magnetic field collected by the geomagnetic sensor 253.
  • the speaker often needs to control the presentation being displayed for page turning.
  • the existing method is controlled by a device such as a mouse or a keyboard, and the speaker needs to display the screen of the presentation and the place where the mouse is placed. Walking back and forth, it is not convenient to use.
  • the device body 200 is provided with a touch area
  • the sensor module 250 further includes a touch sensor 254.
  • the touch sensor 254 is disposed under the touch area for collecting the user's sliding in the touch area.
  • the central processing unit 210 is based on the sliding information collected by the touch sensor 254, such as top to bottom, bottom to top, left to right or right to left sliding information, through the wireless communication module 260 to the host 300 sends the corresponding control command.
  • the host 300 can perform pre-defined actions according to the received control commands, such as adjusting the volume, adjusting the brightness, scrolling the page, turning the page, and the like.
  • the wireless communication module 260 sends an instruction to the host 30001 to turn the presentation to the next page, and the host 300 will receive the instruction after receiving the instruction.
  • the displayed presentation is turned to the next page, making it easy for users to use the mouse or keyboard to control the presentation for page turning.
  • the device body 200 is further provided with a voice module 270 for collecting a sound signal sent by the user and processing the sound signal into a digital audio signal; and receiving the wireless communication module 260 from the host 300 The resulting digital audio signal is processed into a sound signal that is played to the user.
  • the wireless communication module 260 is connected to a communication device such as a mobile phone, the user can make a call through the voice module 270, and the voice module 270 can pass the voice signal sent by the user.
  • the wireless communication module 260 transmits to the mobile phone and plays the sound signal transmitted from the mobile phone to the user.
  • the device body 200 is further provided with a display module 280 for displaying information that the central processing unit 210 needs to display.
  • the display module 280 can be integrated with the touch area, and the touch area monitored by the touch sensor 254 is the area where the display module 280 is located, so that the display module 280 and the touch sensor 254 form a touch screen to implement more touch control functions. .
  • the sensor module 250 further includes a heart rate sensor 255 for measuring the heart rate of the user and transmitting the heart rate information to the central processing unit 210.
  • the central processing unit 210 can send the heart rate information to the host 300 through the wireless communication module 260 according to the needs of the user, and/or send the heart rate information to the display module 280, and the display module 280 displays the heart rate information to the user.
  • the device body 200 can further include a feedback module 290 to provide feedback information for the user in terms of hearing, tactile, visual, and the like.
  • the feedback module 290 can include a buzzer, a vibration motor, an indicator light, and the like.
  • the feedback module 290 can generate a prompt sound and generate a vibration.
  • the control indicator flashes to provide feedback information to the user.

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  • Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Human Computer Interaction (AREA)
  • Business, Economics & Management (AREA)
  • Educational Administration (AREA)
  • Educational Technology (AREA)
  • Position Input By Displaying (AREA)

Abstract

一种智能穿戴设备,包括设备本体(100),设备本体(100)中设置有中央处理器(110)、电源模组(120)和按键模组(130),电源模组(120)为设备本体(100)中各模组供电;按键模组(130)用于向中央处理器(110)发送用于控制激光模组(140)开启或关闭的命令;中央处理器(110)用于根据从按键模组(130)接收到的开关控制命令,控制激光模组(140)的开启和关闭;当激光模组(140)开启时,激光模组(140)的激光头投映出一个光点或一条光线指向某个物体,从而实现激光笔功能,智能穿戴设备本身比较便于携带,例如可以佩戴在手腕或身体其他部位上,由于智能穿戴设备具备了激光笔的功能,用户不必再携带一个独立激光笔设备,减少了外出携带物品的数量,为用户提供了便利。

Description

一种智能穿戴设备 技术领域
本发明涉及电子设备技术领域,具体涉及一种智能穿戴设备。
发明背景
激光笔,又称激光指示器,是把可见激光设计成便携、手易握的发射器。目前,人们习惯于在会议、教学时使用激光笔来投映一个光点或一条光线指向某个物体,以代替教鞭和鼠标,避免了随身携带“教鞭”或为指出某物而频繁来回走动的问题。但是,通常的激光笔需要作为一个独立的设备进行携带,给用户造成不便。随着智能穿戴设备的发展,智能手表或智能手环等设备已经逐渐成为人们外出时的必备品,但是现有的智能穿戴设备的功能又比较单一,并不能代替激光笔设备。
发明内容
本发明提供了一种智能穿戴设备,具备激光笔的功能,以解决激光笔需要作为一个独立的设备携带,给用户造成不便问题。
本发明提供的智能穿戴设备,包括设备本体,所述设备本体中设置有中央处理器、电源模组和按键模组,所述电源模组为所述设备本体中各模组供电;所述设备本体中还设置有带有激光头的激光模组;
所述按键模组,用于向所述中央处理器发送用于控制所述激光模组开启或关闭的命令;
所述中央处理器,用于根据从所述按键模组接收到的开关控制命令,控制所述激光模组的开启和关闭;
所述激光模组,用于在开启时,通过激光头投映出一个光点或一条光线,实现激光笔功能。
本发明的有益效果是:本发明在智能穿戴设备的设备本体中设置了一个带有激光头的激光模组,当激光模组受中央处理器控制而开启时,激光模组的激光头投映出一个光点或一条光线指向某个物体,从而实现激光笔功能,智能穿戴设备本身比较便于携带,例如可以佩戴在手腕或身体其他部位上,由于智能穿戴设备具备了激光笔的功能,用户不必再携带一个独立激光笔设备,减少了外出携带物品的数量,为用户提供了便利。
附图简要说明
图1是本发明实施例一提供的一种智能穿戴设备的功能框图;
图2是本发明实施例二提供的一种智能穿戴设备的功能框图。
具体实施方式
本发明的设计构思是:很多人习惯于在会议、教学等场景中使用激光笔,但是外出时需要专门携带一个独立的激光笔设备,并不方便。随着智能穿戴设备的发展,智能手表或智能手环等设备已经逐渐成为人们外出时的必备品,但是现有的智能穿戴设备的功能又比较单一,不能代替激光笔设备。针对这种情况,本发明在智能穿戴设备的设备本体中设置一个带有激光头的激光模组,当激光模组开启时,激光头投映出一个光点或一条光线指向某个物体,从而实现激光笔功能,这样用户就不必再专门携带一个独立激光笔设备,从而减少了外出携带物品的数量,为用户提供了便利。
实施例一
图1是本发明实施例一提供的一种智能穿戴设备的功能框图,如图1所示,本实施例提供的智能穿戴设备包括设备本体100,设备本体100中设置有中央处理器110、电源模组120和按键模组130,电源模组120为设备本体100中各模组供电。
设备本体100中还设置有带有激光头的激光模组140,按键模组130向中央处理器110发送用于控制激光模组140开启或关闭的命令,中央处理器110根据从按键模组130接收到的开关控制命令控制激光模组140的开启和关闭。当激光模组140受中央处理器110控制而开启时,激光模组140的激光头投映出一个光点或一条光线指向某个物体,从而实现激光笔功能。
本实施例的智能穿戴设备可以佩戴在用户身上,便于携带,设备本体中的激光模组可以实现激光笔的功能,从而解决了现有的激光笔需要作为一个独立的设备进行携带,给用户造成不便的问题。
优选地,本实施例的智能穿戴设备可以智能手表或智能手环,除了设备本体之外,该智能穿戴设备还包括一条腕带,用于将设备本体固定在用户的手腕部位。设备本体与腕带结合成为一个完整的智能手表或智能手环。
实施例二
图2是本发明实施例二提供的一种智能穿戴设备的功能框图,如图2所示,在实施例一的基础上,本实施例中,设备本体200中还设置有传感器模组250,传感器模组250中包括光敏传感器251,用于采集设备本体200所在环境中的环境光强度,中央处理器210根据光敏传感器251采集到的环境光强度,控制激光模组240的发射功率,从而调节激光的亮度,在环境光强度较低时,相应地降低激光膜组240的发射功率,使激光的亮度降低,在环境光 强度较高时,例如阳光照射或灯光较亮时,相应地提高激光膜组240的发射功率,使激光的亮度增强,保证更好的观察效果。
在一个优选实施方式中,设备本体200中还设置有无线通信模组260,设备本体200通过无线通信模组260无线连接主机300并与主机300进行通信。无线通信模组260可以通过蓝牙或无线局域网的方式与主机300建立连接,在短距离的点对点传输时,更适合采用蓝牙。
在另一个优选实施方式中,按键模组230还用于向中央处理器210发送用于控制设备本体200进入鼠标模式的命令,中央处理器210从按键模组230接收到进入鼠标模式的命令后,通过无线通信模组260向主机300发送用于控制主机300的鼠标指针跟随设备本体200进行相应移动的命令。设备本体200移动时,不仅激光的落点随之移动,主机300的鼠标指针也会随着设备本体200的移动而移动,用户可以使用本实施例提供的智能穿戴设备代替鼠标在主机300上实现画图、标注等功能。
为了获取设备本体200的移动信息,一种实施方式是,传感器模组250还包括加速度传感器252和地磁传感器253,加速度传感器252采集设备本体200运动的加速度,地磁传感器253采集设备本体200所在空间的磁场方向,在设备本体200进入鼠标模式后,中央处理器210根据加速度传感器252采集到的加速度以及地磁传感器253采集到的磁场方向,通过内置的算法计算出设备本体200的移动信息。
在进行会议、教学时,演讲者经常需要控制正在显示的演示文稿进行翻页,现有的方式是通过鼠标或键盘等设备进行控制,需要演讲者在显示演示文稿的屏幕与放置鼠标的地点之间来回走动,不便于使用。为了解决此类问题,本实施例中,设备本体200上设置有一触摸区域,传感器模组250还包括触摸传感器254,触摸传感器254设置在触摸区域的下方,用于采集用户在触摸区域内的滑动信息,中央处理器210于根据触摸传感器254采集到的滑动信息,如由上到下、由下到上、由左到右或由右到左等的滑动信息,通过无线通信模组260向主机300发送相应的控制指令。主机300可以根据接收到的控制指令执行预先定义好的动作,如调节音量、调节亮度、滚动页面、翻页等。例如,触摸传感器254采集到用户在触摸区域内由上到下的动作后,通过无线通信模组260向主机30001发送将演示文稿翻到下一页的指令,主机300接收到该指令之后将正在显示的演示文稿翻到下一页,不必使用鼠标或键盘控制演示文稿进行翻页,为用户提供便利。
在再一个优选实施方式中,设备本体200中还设置有语音模组270,用于采集用户发出的声音信号,并将声音信号处理成数字音频信号;以及将无线通信模组260从主机300接收到的数字音频信号处理成声音信号,播放给用户。当无线通信模组260连接到手机等通信设备时,用户可以通过语音模组270进行通话,语音模组270可以将用户发出的声音信号通过 无线通信模组260发送给手机,并且将手机传来的声音信号播放给用户。
在又一个优选实施方式中,设备本体200中还设置有显示模组280,用于显示中央处理器210发送的需要显示的信息。该显示模组280可以与触摸区域结合一体,触摸传感器254监测的触摸区域就是显示模组280所在的区域,从而使显示模组280与触摸传感器254构成一触摸屏,以实现更多的触摸控制功能。
在又一个优选实施方式中,传感器模组250还包括心率传感器255,用于测量用户的心率,并将心率信息发送给中央处理器210。中央处理器210可以根据用户的需要将心率信息通过无线通信模组260发送给主机300,和/或,将心率信息发送给显示模组280,由显示模组280将心率信息显示给用户。
设备本体200还可以包括反馈模组290,为用户提供听觉、触觉、视觉等方面的反馈信息,反馈模组290可以包括蜂鸣器、振动马达、指示灯等部件。例如,在设备本体200进行功能模式的切换时、在设备本体200与主机300成功建立无线连接时、以及主机300发来通话请求时等情形下,反馈模组290可以通过发出提示音、产生振动、控制指示灯闪烁等方式提供给用户反馈信息。
以上所述,仅为本发明的具体实施方式,在本发明的上述教导下,本领域技术人员可以在上述实施例的基础上进行其他的改进或变形。本领域技术人员应该明白,上述的具体描述只是更好的解释本发明的目的,本发明的保护范围应以权利要求的保护范围为准。

Claims (10)

  1. 一种智能穿戴设备,包括设备本体,所述设备本体中设置有中央处理器、电源模组和按键模组,所述电源模组为所述设备本体中各模组供电;其特征在于,所述设备本体中还设置有带有激光头的激光模组;
    所述按键模组,用于向所述中央处理器发送用于控制所述激光模组开启或关闭的命令;
    所述中央处理器,用于根据从所述按键模组接收到的开关控制命令,控制所述激光模组的开启和关闭;
    所述激光模组,用于在开启时,通过激光头投映出一个光点或一条光线,实现激光笔功能。
  2. 如权利要求1所述的智能穿戴设备,其特征在于,所述设备本体中还设置有传感器模组,所述传感器模组包括光敏传感器;
    所述光敏传感器,用于采集所述设备本体所在环境中的环境光强度;
    所述中央处理器,还用于根据所述光敏传感器采集到的环境光强度,控制所述激光模组的发射功率。
  3. 如权利要求2所述的智能穿戴设备,其特征在于,所述设备本体中还设置有无线通信模组;所述设备本体通过所述无线通信模组无线连接主机并与所述主机进行通信。
  4. 如权利要求3所述的智能穿戴设备,其特征在于,
    所述按键模组,还用于向所述中央处理器发送控制所述设备本体进入鼠标模式的命令;
    所述中央处理器,还用于根据从所述按键模组接收到的进入鼠标模式的命令,通过所述无线通信模组向所述主机发送控制所述主机的鼠标指针跟随所述设备本体进行相应移动的命令。
  5. 如权利要求4所述的智能穿戴设备,其特征在于,所述传感器模组还包括加速度传感器和地磁传感器;
    所述加速度传感器,用于采集所述设备本体运动的加速度;
    所述地磁传感器,用于采集所述设备本体所在空间的磁场方向;
    所述中央处理器,还用于在所述设备本体进入鼠标模式后,根据所述加速度传感器采集到的加速度以及所述地磁传感器采集到的磁场方向,获取所述设备本体的移动信息。
  6. 如权利要求3所述的智能穿戴设备,其特征在于,所述设备本体上设置有一触摸区域,所述传感器模组还包括触摸传感器,所述触摸传感器设置在所述触摸区域的下方;
    所述触摸传感器,用于采集用户在所述触摸区域内的滑动信息;
    所述中央处理器,还用于根据所述触摸传感器采集到的滑动信息,通过所述无线通信模组向所述主机发送相应的控制指令。
  7. 如权利要求3所述的智能穿戴设备,其特征在于,所述设备本体中还设置有语音模组;
    所述语音模组,用于采集用户发出的声音信号,并将声音信号处理成数字音频信号;以及将所述无线通信模组从所述主机接收到的数字音频信号处理成声音信号,播放给用户。
  8. 如权利要求3所述的智能穿戴设备,其特征在于,所述设备本体中还设置有显示模组和反馈模组;
    所述显示模组,用于显示所述中央处理器发送的需要显示的信息;
    所述反馈模组,为用户提供听觉、触觉和/或视觉方面的反馈信息。
  9. 如权利要求7所述的智能穿戴设备,其特征在于,所述传感器模组还包括心率传感器;
    所述心率传感器,用于测量用户的心率,并将心率信息发送给所述中央处理器;
    所述中央处理器,还用于将所述心率信息通过所述无线通信模组发送给所述主机,和/或,将所述心率信息发送给所述显示模组,由所述显示模组显示所述心率信息。
  10. 如权利要求1-9任一项所述的智能穿戴设备,其特征在于,所述智能穿戴设备为智能手表或智能手环。
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