WO2017156689A1 - 可穿戴电子设备 - Google Patents

可穿戴电子设备 Download PDF

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Publication number
WO2017156689A1
WO2017156689A1 PCT/CN2016/076326 CN2016076326W WO2017156689A1 WO 2017156689 A1 WO2017156689 A1 WO 2017156689A1 CN 2016076326 W CN2016076326 W CN 2016076326W WO 2017156689 A1 WO2017156689 A1 WO 2017156689A1
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Prior art keywords
user
module
output
wearable electronic
electronic device
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PCT/CN2016/076326
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English (en)
French (fr)
Inventor
杨松龄
杨帆
蒋超
夏新元
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深圳市柔宇科技有限公司
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Application filed by 深圳市柔宇科技有限公司 filed Critical 深圳市柔宇科技有限公司
Priority to PCT/CN2016/076326 priority Critical patent/WO2017156689A1/zh
Priority to CN201680014756.9A priority patent/CN107404983A/zh
Publication of WO2017156689A1 publication Critical patent/WO2017156689A1/zh

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    • AHUMAN NECESSITIES
    • A44HABERDASHERY; JEWELLERY
    • A44CPERSONAL ADORNMENTS, e.g. JEWELLERY; COINS
    • A44C5/00Bracelets; Wrist-watch straps; Fastenings for bracelets or wrist-watch straps

Definitions

  • the present invention relates to wearable electronic devices, and more particularly to a wearable electronic device having a plurality of optional functions.
  • Embodiments of the present invention provide a wearable electronic device having a plurality of optional functions.
  • the present invention provides a wearable electronic device comprising a wearable body for wearing to a user and circuitry coupled to the wearable body, the circuitry comprising an output device, a storage device, an input device, and a central control device.
  • the output device is for outputting color and/or brightness information.
  • the storage device stores a plurality of functional modules composed of software codes, and the results of the respective functional modules are output through color and/or luminance information of the output device.
  • the input device is configured to receive a function corresponding to the function module selected by the user.
  • the central control device is connected to the output device, the input device and the storage device, and is configured to retrieve a corresponding function module in the storage device in response to the user's selection, and execute its software code to complete the defined function.
  • the wearable electronic device of the present invention has multiple functions for the user to select, and can meet the needs of multifunctional functions.
  • the information is output by color and/or brightness, so that the user can know the relevant results at a glance, especially when the user is in motion.
  • FIG. 1 is a schematic diagram of a wearable electronic device, that is, a wristband, according to an embodiment of the present invention.
  • FIG. 2 is a schematic diagram of a circuit system frame of the wearable electronic device of FIG. 1.
  • FIG. 3 is a schematic view of the frame of the color changing function module of FIG. 2.
  • FIG. 4 is a schematic diagram of a frame of the navigation function module of FIG. 2.
  • FIG. 5 is a schematic view of the frame of the body temperature function module of FIG. 2.
  • FIG. 6 is a schematic view of the frame of the heart rate function module of FIG. 2.
  • the present invention provides a wearable electronic device 10 that includes a wearable body 20 for wearing to a user and circuitry 30 that is secured to the wearable body 20.
  • the circuitry 30 includes an output device 32, a storage device 34, an input device 36, and a central control device 38.
  • Output device 32 is for outputting color and/or brightness information.
  • the storage device 34 stores a plurality of functional modules composed of software codes, and the results of the respective functional modules are output by color and/or luminance information of the output device 32.
  • the input device 36 is configured to receive a function corresponding to the function module selected by the user.
  • the central control unit 38 is coupled to the output unit 32, the storage unit 34, and the input unit 36 for retrieving corresponding functional modules in the storage unit 34 in response to the user's selection and executing its software code to perform the defined functions.
  • the wearable electronic device 10 of the present invention has multiple functions for the user to select, which can meet the needs of multifunctional functions.
  • the information is output through the color and/or brightness of the input device 36, so that the user can know the relevant results at a glance, especially when the user is in motion. For example, when the user is running, he can directly view the color and/or brightness information without having to look at the specific text or number.
  • Wearable electronics of the present invention Device 10 can be a wristband, watch, arm strap, or other type of wearable device.
  • the wearable body 20 of the wearable electronic device 10 includes a top portion 22 that connects the bottom portion 22 of the bottom portion 22.
  • the bottom portion 22 can have a strap structure that allows the user to wear or remove the wearable electronic device 10.
  • the bottom portion 22 can also include a resilient portion that is deformable to a degree sufficient for the user to wear or remove the wearable electronic device 10.
  • the bottom portion 22 allows the user to wear or remove the wearable electronic device 10, in any particular form.
  • the top 24 is located on the side of the user under the wearing state for the user to observe.
  • the bottom portion 22 may be made of a non-transparent material such as silica gel; the top portion 24 may be made of a transparent material such as acrylic; and the output device 32 includes at least one RGB LED lamp disposed on the contact surface of the bottom portion 22 and the top portion 24, preferably An RGB LED lamp is disposed on each of the two contact faces of the bottom portion 22 and the top portion 24.
  • the input device 36 includes a plurality of buttons 36a disposed on the bottom portion 22 for the user to select a corresponding function. Only one button 36a is shown in the angle problem map.
  • the plurality of functional modules may include a color changing function module 42, and the input device 36 further includes a touch panel 36b disposed on a side of the top portion 24 facing the user.
  • the color changing function module 42 includes a monitoring sub-module 42a and a feedback sub-module 42b.
  • the monitoring sub-module 42a is configured to monitor first input information swiped in the first direction on the touch panel 36b, second input information swiped in the second direction, and third input information that is inactive and continuously in contact.
  • the feedback sub-module 42b is configured to control the output device 32 when the monitoring sub-module 42a monitors the first input information, that is, the brightness of the RGB LED lamp changes, and controls the output device 32 when the second input information is monitored, that is, the color of the RGB LED lamp.
  • the output device 32 that is, the color cycle change of the RGB LED lamp is controlled.
  • the color changing function module 42 is activated.
  • the first direction of the touch panel 36b such as the length direction of the top portion 24
  • the brightness of the RGB LED lamp of the output device 32 changes, for example, the upward swipe is brighter and the downward swipe is dark; the user is touching
  • the panel 36b is swiped in the second direction, such as the width direction of the top portion 24
  • the color of the RGB LED lamp of the output device 32 changes, for example, the leftward swipe changes to the warm tone color direction, and the rightward swipe to the cold The color tone direction changes; when the user touches the touch panel 36b statically, the output The color of the RGB LED of device 32 is cyclically changed.
  • button 36a may also be replaced by gesture input on touch panel 36b, thereby eliminating the need to provide multiple buttons 36a. For example, when the user inputs a circular gesture on the touch panel 36b, it indicates that the color changing function of the color changing function module 42 is selected, and when other gestures are input, it indicates that other corresponding functions are selected.
  • the plurality of functional modules may further include a navigation function module 44
  • the wearable electronic device 10 further includes a positioning device 31 connected to the central control device 38, such as a GPS device, and for connecting to an external device 50.
  • a connection device 33 such as a USB related component or a Bluetooth related component; the storage device 34 also stores map information.
  • the navigation function module 44 includes a positioning sub-module 44a, a communication sub-module 44b, a planning sub-module 44c, and a steering sub-module 44d.
  • the positioning sub-module 44a is configured to determine a current location in the map information; the communication sub-module 44b is configured to connect to an external device and receive its set destination; the planning sub-module 44c is configured to find the destination in the map information. And guiding the navigation line; the steering sub-module 44d is configured to control, according to the navigation line and the current position, the output device to output color information representing a current direction of travel.
  • the navigation function module 44 is activated.
  • the communication sub-module 44b is connected to an external device 50, such as a mobile phone, by wire or wirelessly.
  • the user transmits it to the wearable electronic device 10 through the communication sub-module 44b.
  • the planning sub-module 44c searches the map information for the destination and plans the navigation line.
  • the steering sub-module 44d controls the RGB LED light output of the output device 32 to represent color information representative of the current direction of travel. For example, a white light represents a straight line, a green light represents a left turn, a blue light represents a right turn, and a red light represents a turn.
  • the navigation channel can be transmitted to the wearable electronic device 10 after the external device 50 plans the route.
  • the navigation function module may only include a positioning sub-module for determining a current location in the map information; a communication sub-module for connecting to an external device and receiving a navigation line set by the navigation device; The line and the current position control the output device to output a steering sub-module representing color information of the current direction of travel.
  • the plurality of functional modules may further include a body temperature function module 46
  • the wearable electronic device 10 further includes a body temperature sensing device 35, such as an infrared thermometer, the principles and technical solutions of which are well known to those skilled in the art, and will not be described herein; the storage device 34 also stores a normal range of body temperature.
  • the body temperature function module 46 includes a body temperature sub-module 46a and an identification sub-module 46b.
  • the body temperature sub-module 46a is used to detect the body temperature of the user.
  • the identification sub-module 46b is configured to identify whether the user's body temperature is in the normal range, the high level, the normal range or lower than the normal range, and control the RGB LED lights of the output device 32 to output different color information according to the different results described above.
  • the body temperature function module 46 is activated.
  • the recognition sub-module 46b recognizes the relationship between the body temperature and the normal range, and then controls the RGB LED lamp of the output device 32 to output different color information. For example, when the body temperature is in the normal range, the RGB LED lights are displayed in green, the high range is displayed in red, and the lower range is blue.
  • the plurality of functional modules may further include a heart rate function module 48.
  • the wearable electronic device 10 further includes a heart rate sensing device 37, which can adopt a green light photoelectric based on two green wavelengths of the LEDs and one photosensor. The principle of measurement is based on the change of the density of the blood in the blood vessels of the arm during the pulsation, and the light-emitting LED emits a green wavelength of light.
  • the photosensitive sensor can receive the reflected light from the skin of the arm and sense the intensity of the light field. The change is converted into a heart rate, and the technical solution thereof is well known to those skilled in the art, and is not described herein; the storage device 34 also stores a first threshold of the heart rate and a second threshold.
  • the heart rate function module 48 includes a heart rate sub-module 48a for detecting a heart rate of the user, and a method for determining whether the heart rate of the user is higher than the first threshold, higher than the second threshold, and higher than the first threshold and The second threshold value controls the RGB LED lamp of the output device 32 to output a determination sub-module 48b of different color information.
  • the heart rate function module 48 is activated.
  • the heart rate sub-module 48a senses the user's heart rate through the heart rate sensing device 37
  • the determining sub-module 48b determines the relationship between the heart rate and the first threshold and the second threshold, and controls the RGB LEDs of the output device 32 to output different color information. For example, when the heart rate is higher than the first threshold, the RGB LED lights are displayed in pink, and when the heart rate is higher than the second threshold, red is displayed.
  • the functions of the wristband are not limited to the functions listed above, and may be added or subtracted according to specific needs, for example, a blood glucose detecting function using the principle of non-invasive detection of near-infrared blood glucose.
  • the keys may not be provided, and the functions thereof may be replaced by gesture input on the touch panel.
  • the RGB LED lamp can also be replaced with a plurality of LED lights of different colors.
  • the color changing function allows the user to adjust the color and brightness of the RGB LED lights of the output device 32 at any time according to mood, environment, and preference;
  • the navigation function allows the user to leave the mobile phone after setting the destination or navigation line through the mobile phone.
  • the body temperature function and the heart rate function enable the user to see the self through the color and easily
  • the range in which the body temperature and heart rate are located is more convenient for the user in motion to know the state of the body than the specific text and value.

Abstract

一种可穿戴电子设备(10),包括用于佩戴至用户的可穿戴本体(20)及固定至该可穿戴本体(20)的电路系统(30),该电路系统(30)包括输出装置(32)、存储装置(34)、输入装置(36)和中控装置(38)。输出装置(32)用于输出颜色和/或亮度信息。存储装置(34)存储多个由软件代码构成的功能模块,各功能模块的结果通过该输出装置(32)的颜色和/或亮度信息输出。输入装置(36)用于接收用户所选择的功能模块对应的功能。中控装置(38)连接至该输出装置(32)、输入装置(36)及存储装置(34),用于响应用户的选择调取存储装置(34)中对应的功能模块,并执行其软件代码而完成定义的功能。由于具有多个功能供用户选择,可满足多功能的需求。另外,信息通过颜色和/或亮度输出,便于用户一目了然得知相关结果,尤其在用户处于运动状态下。

Description

可穿戴电子设备 技术领域
本发明涉及可穿戴电子设备,尤其涉及一种具有多个可选功能的可穿戴电子设备。
背景技术
随着电子元件集成度越来越高,功耗变得越来越低,能实现完整功能的电子系统的体积也随着变小。由此,便携的电子系统的应用正变得越来越普及。比如,智能手环由于智能及便携等优点,正变得越来越普及。然而,目前市面上大部分智能手环的功能都比较单一。
发明内容
本发明的实施方式提供了具有多个可选功能的可穿戴电子设备。
本发明提供了一种可穿戴电子设备,包括用于佩戴至用户的可穿戴本体及固定至该可穿戴本体的电路系统,该电路系统包括输出装置、存储装置、输入装置和中控装置。输出装置用于输出颜色和/或亮度信息。存储装置存储多个由软件代码构成的功能模块,各功能模块的结果通过该输出装置的颜色和/或亮度信息输出。输入装置用于接收用户所选择的功能模块对应的功能。中控装置连接至该输出装置、输入装置及存储装置,用于响应用户的选择调取存储装置中对应的功能模块,并执行其软件代码而完成定义的功能。
本发明的可穿戴电子设备,具有多个功能供用户选择,可满足多功能的需求。另外,信息通过颜色和/或亮度输出,便于用户一目了然得知相关结果,尤其是在用户处于运动状态下。
附图说明
下列附图用于结合具体实施方式详细说明本发明的各个实施方式。应当理 解,附图中示意出的各元件并不代表实际的大小及比例关系,仅是为了清楚说明而示意出来的示意图,不应理解成对本发明的限制。
图1是本发明一个实施方式提供的可穿戴电子设备,即手环的示意图。
图2是图1的可穿戴电子设备的电路系统框架示意图。
图3是图2的变色功能模块的框架示意图。
图4是图2的导航功能模块的框架示意图。
图5是图2的体温功能模块的框架示意图。
图6是图2的心率功能模块的框架示意图。
具体实施方式
为了使本发明的目的、技术方案及优点更加清楚明白,以下结合多个实施方式及附图,对本发明进行进一步详细说明。应当理解,此处所描述的具体实施方式仅仅用以解释本发明,并不用于限定本发明。
本发明提供一种可穿戴电子设备10包括用于佩戴至用户的可穿戴本体20及固定至可穿戴本体20的电路系统30。电路系统30包括输出装置32、存储装置34、输入装置36和中控装置38。输出装置32用于输出颜色和/或亮度信息。存储装置34存储多个由软件代码构成的功能模块,各功能模块的结果通过输出装置32的颜色和/或亮度信息输出。输入装置36用于接收用户所选择的功能模块对应的功能。中控装置38连接至输出装置32、存储装置34及输入装置36,用于响应用户的选择调取存储装置34中对应的功能模块,并执行其软件代码而完成定义的功能。
本发明的可穿戴电子设备10,具有多个功能供用户选择,可满足多功能的需求。另外,信息通过输入装置36的颜色和/或亮度输出,便于用户一目了然得知相关结果,尤其是在用户处于运动状态下。比如用户在跑步时,直接看颜色和/或亮度信息便可,无需去看具体的文字或数字。
下面将会具体地介绍可穿戴电子设备10的各种功能。本发明的可穿戴电子 设备10可以是手环、手表、手臂带或其它类型的可穿戴设备。下面说明书中,以手环为实施例做说明。可穿戴电子设备10的可穿戴本体20包括底部22连接底部22的顶部24。底部22可具有一个表带结构,便于用户穿戴或卸下可穿戴电子设备10。当然底部22也可以包括弹性部分,其可变形程度足以让用户穿戴或卸下可穿戴电子设备10。总之,底部22可让用户穿戴或卸下可穿戴电子设备10,具体形式不限。顶部24位于佩戴状态下面对用户的一侧,以便于用户观察。
在本实施方式中,底部22可由硅胶等非透明材料制成;顶部24可由亚克力等透明材料制成;输出装置32包括设置在底部22与顶部24的接触面上的至少一个RGB LED灯,优选在底部22与顶部24的两个接触面上各设置有一个RGB LED灯,如此,RGB LED灯发出的光可使得整个由透明材料制成的顶部24都具有光亮,增加了灯光的可视面积;输入装置36包括设置在底部22上的多个按键36a,用户供用户选择对应的功能。由于角度问题图中仅显示了一个按键36a。
具体地,该多个功能模块可包括变色功能模块42,此时输入装置36还包括设置在顶部24面向用户的一侧设置的触摸面板36b。变色功能模块42包括监测子模块42a及反馈子模块42b。监测子模块42a用于监测在触摸面板36b上沿第一方向划动的第一输入信息、沿第二方向划动的第二输入信息以及不动并持续接触的第三输入信息。反馈子模块42b用于在监测子模块42a监测到第一输入信息时控制输出装置32,即RGB LED灯的亮度发生变化、监测到第二输入信息时控制输出装置32,即RGB LED灯的颜色发现变化、监测到第三输入信息时控制输出装置32,即RGB LED灯的颜色循环变化。
使用过程中,当用户按下代表变色功能的按键36a后,变色功能模块42就被启动。当用户在触摸面板36b沿第一方向,比如顶部24的长度方向划动时,输出装置32的RGB LED灯的亮度便发生变化,比如向上划动变亮向下划动便暗;用户在触摸面板36b沿第二方向,比如顶部24的宽度方向划动时,输出装置32的RGB LED灯的颜色便发生变化,比如向左划动便向温色调颜色方向变化,向右划动便向冷色调颜色方向变化;用户在静止地接触触摸面板36b时,输出 装置32的RGB LED灯的颜色循环变化。
可以理解,在其它实施方式中,按键36a的功能也可以被在触摸面板36b上的手势输入所代替,从而无需设置多个按键36a。比如,用户在触摸面板36b上输入圆形的手势时,便代表是选择了变色功能模块42的变色功能,输入其它手势时,便代表选择其它对应的功能。
具体地,该多个功能模块还可包括导航功能模块44,此时可穿戴电子设备10还包括连接至中控装置38的定位装置31,如GPS装置,及用于连接至一个外部装置50的连接装置33,如USB相关组件或蓝牙相关组件;存储装置34还存储地图信息。导航功能模块44包括定位子模块44a、通讯子模块44b、规划子模块44c以及转向子模块44d。定位子模块44a用于在该地图信息中确定当前位置;通讯子模块44b用于连接至一个外部装置并接收其设定的目的地;规划子模块44c用于在该地图信息中查找该目的地并规划导航线路;转向子模块44d用于根据该导航线路及该当前位置控制该输出装置输出代表当前需行走方向的颜色信息。
使用过程中,用户按下代表导航功能的按键36a后,导航功能模块44就被启动。通讯子模块44b通过有线或无线的方式连接至外部装置50,比如手机。用户在手机设定好目的地后,便通过通讯子模块44b传输至可穿戴电子设备10。定位子模块44a在地图信息中确定当前位置后,规划子模块44c便在该地图信息中查找该目的地并规划导航线路。根据定位到的用户的位置,转向子模块44d便控制输出装置32的RGB LED灯输出代表当前需行走方向的颜色信息。比如,白色灯代表直行,绿色灯代表左转,蓝色灯代表右转,红色灯代表掉头等。
可以理解,在其它实施方式中,也可以是外部装置50规划后路线后再把导航线路传送至可穿戴电子设备10。此时,导航功能模块便可只包括用于在该地图信息中确定当前位置的定位子模块;用于连接至一个外部装置并接收其设定的导航线路的通讯子模块;用于根据该导航线路及该当前位置控制该输出装置输出代表当前需行走方向的颜色信息的转向子模块。
具体地,该多个功能模块还可包括体温功能模块46,此时可穿戴电子设备 10还包括体温感测装置35,比如红外线测温仪,其原理及技术方案已为本领域技术人员所熟知,本文不做赘述;存储装置34还存储一个体温的正常范围。体温功能模块46包括体温子模块46a及识别子模块46b。体温子模块46a用于检测用户的体温。识别子模块46b用于识别用户的体温是处于该正常范围、高位该正常范围还是低于该正常范围,并根据上述不同的结果控制输出装置32的RGB LED灯输出不同颜色信息。
使用过程中,用户按下代表体温功能的按键36a后,体温功能模块46就被启动。体温子模块46a通过体温感测装置35感测用户体温后,识别子模块46b识别该体温与正常范围的关系后,控制输出装置32的RGB LED灯输出不同颜色信息。比如,体温处于正常范围时控制RGB LED灯显示绿色、高位正常范围时显示红色,低于正常范围是显示蓝色。
具体地,该多个功能模块还可包括心率功能模块48,此时可穿戴电子设备10还包括心率感测装置37,其可采用基于两个绿色波长的发光LED和一个光敏传感器的绿光光电测量法,原理是基于手臂血管中的血液在脉动的时候会发生密度改变而引起透光率的变化,发光LED发出绿色波长的光波,光敏传感器可以接受手臂皮肤的反射光并感测光场强度的变化并换算成心率,其技术方案已为本领域技术人员所熟知,本文不做赘述;该存储装置34还存储心率的一个第一阈值及一个第二阈值。心率功能模块48包括用于检测用户心率的心率子模块48a,以及用于判断用户的心率是否高于该第一阈值、是否高于该第二阈值,并分别在高于该第一阈值及该第二阈值时控制输出装置32的RGB LED灯输出不同颜色信息的判断子模块48b。
使用过程中,用户按下代表心率功能的按键36a后,心率功能模块48就被启动。心率子模块48a通过心率感测装置37感测用户心率后,判断子模块48b便判断该心率与第一阈值及第二阈值的关系,并控制输出装置32的RGB LED灯输出不同颜色信息。比如,心率高于第一阈值时控制RGB LED灯显示粉红色,高于第二阈值时显示红色。
上述的各功能满足了用户对手环多功能的需求,并且,需要所需功能时才 选择启动对应的功能,可有效降低功耗提升续航时间。另外,可以理解,手环所具备的功能不限于上述所列功能,可根据具体需求设计而加或减,比如还可有利用近红外血糖无创检测原理的血糖检测功能。同时应当理解,在手环设置有触摸面板的情况下,按键也可不必设置,其功能可通过在触摸面板上的手势输入代替。另外,在其它实施方式中,RGB LED灯也可以利用多个不同颜色的LED灯代替。
上述所列功能中,变色功能使得用户可根据心情、环境、喜好随时调节输出装置32的RGB LED灯的颜色及亮度;导航功能使得用户通过手机设置后目的地或导航线路后,便可脱离手机而通过手环进行导航,由于行走或跑步时手臂会自然摆动到身体前方,用户很方便就能通过颜色知道行走的方向;体温功能及心率功能使得用户可脱离手机而通过颜色方便得看到自己的体温及心率所在的区间,相比起需要去看具体的文字及数值,通过颜色表现结果对于运动中的用户想得知自己身体状态的情况尤为方便。
以上所述仅为本发明的较佳实施方式而已,并不用以限制本发明,凡在本发明的精神和原则之内所作的任何修改、等同替换和改进等,均应包含在本发明的保护范围之内。

Claims (11)

  1. 一种可穿戴电子设备,包括用于佩戴至用户的可穿戴本体及固定至该可穿戴本体的电路系统,该电路系统包括:
    输出装置,其用于输出颜色和/或亮度信息;
    存储装置,其存储多个由软件代码构成的功能模块,各功能模块的结果通过该输出装置的颜色和/或亮度信息输出;
    输入装置,其用于接收用户所选择的功能模块对应的功能;
    中控装置,其连接至该输出装置、输入装置及存储装置,用于响应用户的选择调取存储装置中对应的功能模块,并执行其软件代码而完成定义的功能。
  2. 如权利要求1所述的可穿戴电子设备,其特征在于,该输入装置包括用于供用户选择各功能模块对应的功能的按键。
  3. 如权利要求1所述的可穿戴电子设备,其特征在于,该输入装置包括触摸面板,在触摸面板上不同手势的输入用于选择各功能模块对应的功能的按键。
  4. 如权利要求1所述的可穿戴电子设备,其特征在于,该输入模块包括触摸面板;该多个功能模块包括变色功能模块,其包括:
    监测子模块,用于监测在该触摸屏上沿第一方向划动的第一输入信息、沿第二方向划动的第二输入信息以及不动并持续接触的第三输入信息;
    反馈子模块,用于在该监测子模块监测到第一输入信息时控制该输出装置的亮度发生变化、监测到第二输入信息时控制该输出装置的颜色发现变化、监测到第三输入信息时控制该输出装置的颜色循环变化。
  5. 如权利要求4所述的可穿戴电子设备,其特征在于,该可穿戴本体呈环状并包括由透明材料制成的顶部,该触摸面板透明并贴合至该顶部面对用户的一侧。
  6. 如权利要求5所述的可穿戴电子设备,其特征在于,该可穿戴本体呈环状并包括由非透明材料制成的底部,该输出装置包括RGB LED灯,其设置于该底部 与顶部的接触面上。
  7. 如权利要求1所述的可穿戴电子设备,其特征在于,还包括连接至该中控装置的定位装置及用于连接至一个外部装置的连接装置;该存储装置还存储地图信息;该多个功能模块包括导航功能模块,其包括:
    定位子模块,用于在该地图信息中确定当前位置;
    通讯子模块,用于连接至一个外部装置并接收其设定的目的地;
    规划子模块,用于在该地图信息中查找该目的地并规划导航线路;及
    转向子模块,用于根据该导航线路及该当前位置控制该输出装置输出代表当前需行走方向的颜色信息。
  8. 如权利要求1所述的可穿戴电子设备,其特征在于,还包括连接至该中控装置的定位装置及用于连接至一个外部装置的连接装置;该存储装置还存储地图信息;该多个功能模块包括导航功能模块,其包括:
    定位子模块,用于在该地图信息中确定当前位置;
    通讯子模块,用于连接至一个外部装置并接收其设定的导航线路;
    转向子模块,用于根据该导航线路及该当前位置控制该输出装置输出代表当前需行走方向的颜色信息。
  9. 如权利要求1所述的可穿戴电子设备,其特征在于,还包括体温感测装置;该存储装置还存储一个体温的正常范围;该多个功能模块包括体温功能模块,其包括:
    体温子模块,用于检测用户的体温;
    识别子模块,用于识别用户的体温是处于该正常范围、高位该正常范围还是低于该正常范围,并根据上述不同的结果控制该输出装置输出不同颜色信息。
  10. 如权利要求1所述的可穿戴电子设备,其特征在于,还包括心率感测装置;该存储装置还存储心率的一个第一阈值及一个第二阈值;该功能模块包括心率功能模块,其包括:
    心率子模块,用于检测用户的心率;
    判断子模块,用于判断用户的心率是否高于该第一阈值、是否高于该第二阈值,并分别在高于该第一阈值及该第二阈值时控制该输出装置输出不同颜色信息。
  11. 如权利要求7至10任一项所述的可穿戴电子设备,其特征在于,该可穿戴本体呈环状并包括由透明材料制成的顶部及由非透明材料制成的底部,该输出装置包括设置于该底部与顶部的接触面上的RGB LED灯。
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