WO2016062032A1 - 一种分体式可穿戴设备 - Google Patents

一种分体式可穿戴设备 Download PDF

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Publication number
WO2016062032A1
WO2016062032A1 PCT/CN2015/076416 CN2015076416W WO2016062032A1 WO 2016062032 A1 WO2016062032 A1 WO 2016062032A1 CN 2015076416 W CN2015076416 W CN 2015076416W WO 2016062032 A1 WO2016062032 A1 WO 2016062032A1
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module
wearable device
wireless module
wireless
processor
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PCT/CN2015/076416
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English (en)
French (fr)
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周朝晖
黄磊
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北京传送科技有限公司
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Publication of WO2016062032A1 publication Critical patent/WO2016062032A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR 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
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR 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 3D space, e.g. 3D mice, 6-DOF [six degrees of freedom] pointers using gyroscopes, accelerometers or tilt-sensors

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  • the present invention relates to a wearable device, and more particularly to a split wearable device.
  • wearable devices are a portable device that is directly worn on the body or integrated into the user's clothes or accessories, which brings great convenience to people's lives.
  • the technical problem to be solved by the present invention is to provide a split type wearable device, which enables a user to obtain a better user experience through a wide-screen extension end while wearing a small and lightweight wearable device body. With the large screen, the functions of wearable devices can also be greatly expanded.
  • a split type wearable device comprising a wearable device body and an extension end
  • the wearable device body includes: a processor and a memory respectively connected to the processor, a first display screen, a first wireless module, and a virtual large screen module, wherein the virtual large screen module is connected to the first wireless module ;
  • the extension end includes: a decoding module and a second display screen and a second wireless module respectively connected to the decoding module;
  • the processor After the first wireless module establishes a wireless connection with the second wireless module, the processor outputs a display to the virtual large screen module, and the virtual large screen module adjusts an output resolution to be suitable for the After the size of the second display screen is displayed, the display output is transmitted to the extended end by the first wireless module;
  • the second wireless module of the extension end After receiving the display output sent by the wearable device body, the second wireless module of the extension end transmits the decoding output to the decoding module for decoding, and then displays the second display screen.
  • the extension end as described above further includes a second user input module coupled to the second wireless module, the second user input module receiving input from the user and converting it into a format recognizable by the processor, The second wireless module and the first wireless module are transmitted to the processor, and are responded by the processor.
  • the wearable device body as described above further includes a first user input module connected to the processor, and the process of establishing a wireless connection between the first wireless module and the second wireless module includes:
  • the first wireless module discovers a connectable second wireless module and sends a signal to the processor
  • the processor receives the signal and asks the user whether to connect
  • the first wireless module After the user determines that the connection is made by the first user input module, the first wireless module establishes a connection with the second wireless module.
  • the wearable device body as described above further includes a first audio input and output module, and the extended end further includes a second audio input and output module.
  • the processor After the first wireless module establishes a wireless connection with the second wireless module, the processor outputs audio output through the first wireless module to the extended end, and the second wireless module of the extended end receives The audio output by the body of the wearable device is output to the second audio input and output module for output;
  • the second audio input and output module acquires audio data and converts it into a format recognizable by the processor, and transmits the same to the processor through the second wireless module and the first wireless module.
  • the wearable device body as described above is a watch-like device that is worn on a wrist of a human body.
  • the wireless transmission protocol adopted by the first wireless module and the second wireless module as described above is Miracast and/or Bluetooth.
  • the wearable device body as described above further includes: a GPS module, a network module, a camera, and a gyroscope respectively connected to the processor.
  • the first user input module and the second user input module as described above are touch screens or buttons.
  • the wearable device body as described above further includes a first data interface, the extended end further includes a second data interface, and the first data interface and the second data interface can be connected in a wired manner. And data transmission.
  • the present invention provides a split wearable device comprising a compact and lightweight wearable device body, and an extension capable of receiving a display output sent by the wearable device body and displaying through a large screen.
  • the user can directly operate the body of the wearable device through components such as a touch screen on the extension end, which is convenient for the user's operation.
  • FIG. 1 is a block diagram showing the structure of a first embodiment of a split type wearable device according to the present invention.
  • Figure 2 is a block diagram showing the structure of a second embodiment of the present invention.
  • FIG. 1 is a structural block diagram of a first embodiment of a split type wearable device according to the present invention.
  • the split wearable device includes a wearable device body 10 and an extension end 20.
  • the wearable device body 10 includes a processor 101, a first wireless module 102, a first display screen 103, a memory 104, and a virtual large screen module 105.
  • the processor 101 is electrically connected to the first wireless module 102, the first display screen 103, the memory 104, and the virtual large screen module 105, and the virtual large screen module 105 is also electrically connected to the first wireless module 102.
  • the extension 20 includes a decoding module 201, a second wireless module 202, and a second display 203.
  • the decoding module 201 is electrically connected to the second wireless module 202 and the second display screen 203, respectively.
  • the wearable device body 10 is preferably a watch-like device that is worn on a wrist of a human body.
  • the wearable device body 10 and the extension terminal 20 are close to each other, after the first wireless module 102 and the second wireless module 202 are connected, the wearable device body 10 and the extension terminal 20 can pass through the first wireless module 102 and the first The second wireless module 202 performs data transmission.
  • the size of the first display screen 103 is also small, so that when the small-sized display is not suitable for the user to view, the wearable device main body 10 can
  • the display output is sent to the extension terminal 20, and is played through the second display 203 of a large size.
  • the processor 101 sends the display output to the virtual large screen module 105, and the virtual large screen module 105 adjusts the display output sent by the processor 101 according to the parameters of the second display screen 203 to make the resolution suitable for the second display.
  • Screen 203 after which the display output is sent to extension terminal 20 via first wireless module 102.
  • the second wireless module 202 of the extension terminal 20 After receiving the display output sent by the first wireless module 102, the second wireless module 202 of the extension terminal 20 transmits the display output to the decoding module 201, and the decoding module 201 decodes the display output, and then transmits the display output to the second display screen 203. Display.
  • FIG. 2 is a structural block diagram of a second embodiment of a split type wearable device according to the present invention.
  • the wearable device body 10 includes, in addition to the processor 101, the first wireless module 102, the first display screen 103, the memory 104, and the virtual large screen module 105, A first user input module 106, a first audio input output module 107, and a first data interface 108 are included.
  • the first user input module 106, the first audio input output module 107, and the first data interface 108 are coupled to the processor 101, respectively.
  • the extension 20 includes a second user input module 206, a second audio input and output module 207, and a second data interface 208 in addition to the decoding module 201, the second wireless module 202, and the second display screen 203.
  • the second user input module 206, the second audio input output module 207, and the second data interface 208 are respectively coupled to the decoding module 201.
  • the user can input an instruction through the second user input module 206, convert it into an identifiable format, and then transmit it to the second wireless module 202 through the decoding module 201, and wirelessly transmit it to the second wireless module 202.
  • a wireless module 101, the first wireless module 101 transmits a user input command to the processor 101, and the processor 101 responds.
  • the user can control the wearable device body 10 through the expansion terminal 20.
  • the first user input module and the second user input module are preferably touch screens or buttons. Since the screen size of the extended terminal 20 is much larger than the screen size of the wearable device 10, because the operation is performed by the expansion terminal 20, Users are more convenient, while reducing the rate of misuse.
  • the process of establishing a wireless connection between the wearable device body 10 and the extension terminal 20 is as follows:
  • the first wireless module 102 finds the connectable second wireless module 202, and sends a signal to the processor 101;
  • the processor 101 receives the above signal and asks the user whether to connect;
  • the processor 101 controls the first wireless module 102 to establish a wireless connection with the second wireless module 202.
  • the wearable device main body 10 can transmit an audio signal to the extension terminal 20 in addition to the display signal to the extension terminal 20 for output.
  • the processor 101 transmits the audio output to the second wireless module 202 of the extension 20 through the first wireless module 102.
  • the second wireless module 202 of the extension terminal 20 transmits it to the second audio input and output module 207 for playback.
  • the second audio input and output module 207 can also acquire the audio input signal of the user and send it to the wearable device body 10 through the second wireless module 202.
  • the wearable device body 10 and the extension terminal 20 can also be connected by wire to overcome the limitation that the connection cannot be performed wirelessly in some special environments.
  • the wearable device body 10 has a first data interface 108 and the extension 20 has a second data interface 208.
  • the first data interface 108 and the second data interface 208 can be directly docked together or connected by a data line, and data transmission is performed, so that the wearable device body 10 can be connected wirelessly even in a special environment.
  • the various data interactions described above can still be performed with the extension 20.
  • the wireless transmission protocol adopted between the first wireless module 102 and the second wireless module 202 is preferably a Miracast and/or a Bluetooth protocol, and the display output can be played on the extended terminal 20 without using a cloud or a payment network. And controlling the wearable device body 10 with the extension terminal 20.
  • the wearable device body 10 may further include a GPS module, a network module, a camera, a gyroscope, and the like, which are all prior art, and are not described herein.
  • a split type wearable device of the present invention includes a wearable device body and an expansion
  • the wearable device body includes: a processor, a memory, a first display screen, a first wireless module, and a virtual large screen module;
  • the extended end includes: a decoding module, a second display screen, and a second wireless module;
  • the processor After the first wireless module of the wearable device body establishes a wireless connection with the second wireless module of the extension end, the processor outputs a display to the virtual large screen module, and the virtual large screen module adjusts the output resolution to be suitable.
  • the display output is transmitted to the extension terminal by the first wireless module; after receiving the display output sent by the body of the wearable device, the second wireless module of the extension terminal transmits The decoding module is decoded, and then displayed through the second display screen.
  • the visual experience of the user can be greatly improved without increasing the volume of the wearable device worn on the human body.
  • wearables can add some applications for large screens, extending the reach of wearables.
  • the present invention is capable of operating the wearable device through the extended-screen large-screen touch screen, which greatly facilitates user operations and reduces the misoperation rate.
  • a split type wearable device of the present invention is merely used to illustrate the principle and structure of the present invention, and is not intended to limit the present invention, and such an equivalent change according to the present invention or the prior art. It will be apparent to those skilled in the art that it is within the scope of the present disclosure.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Human Computer Interaction (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • User Interface Of Digital Computer (AREA)

Abstract

本发明公开了一种分体式可穿戴设备,包括小巧轻便的可穿戴设备主体,和能够接收可穿戴设备主体发送的显示输出并通过大屏幕显示的扩展端。这就在不降低便携性的同时,大大提高了可穿戴设备带给用户的视觉体验。同时,用户还能够通过扩展端上的触摸屏等部件直接操作可穿戴设备主体,方便用户的操作。

Description

一种分体式可穿戴设备 技术领域
本发明涉及一种可穿戴设备,尤其涉及一种分体式的可穿戴设备。
背景技术
随着科学技术的不断发展,可穿戴设备作为直接穿在身上,或是整合到用户的衣服或配件的一种便携式设备,给人们的生活带来了很大的方便。
但是,现有的可穿戴设备存在着一些问题,首当其冲的就是没有屏幕或者屏幕过小。对于让用户获知信息来说,屏幕是最直接和方便的。屏幕过小的始终是限制用户获得良好的使用体验的瓶颈。
因此迫切需要设计一种新的可穿戴设备,解决此问题。
发明内容
本发明要解决的技术问题是:提供一种分体式可穿戴设备,使用户在佩戴小巧轻便的可穿戴设备主体的同时,能够通过具有大屏幕的扩展端来获得更好的用户体验,同时,具备了大屏幕后,可穿戴设备的功能也能获得较大的拓展。
为解决上述的技术问题,本发明是通过以下技术方案来实现的:
一种分体式可穿戴设备,包括可穿戴设备主体和扩展端;
所述可穿戴设备主体包括:处理器和分别与所述处理器连接的存储器、第一显示屏、第一无线模块及虚拟大屏幕模块,所述虚拟大屏幕模块与所述第一无线模块连接;
所述扩展端包括:解码模块和分别与所述解码模块连接的第二显示屏及第二无线模块;
所述的第一无线模块与所述的第二无线模块建立无线连接后,所述处理器将显示输出至所述虚拟大屏幕模块,所述虚拟大屏幕模块将输出分辨率调整至适合所述第二显示屏显示的大小后,通过第一无线模块将显示输出传输至所述的扩展端;
所述扩展端的第二无线模块接收到所述可穿戴设备主体发送的显示输出后,传送至所述的解码模块进行解码,之后通过第二显示屏进行显示。
如上所述扩展端还包括与所述第二无线模块连接的第二用户输入模块,所述第二用户输入模块接收用户的输入,并将其转化成为所述处理器可识别的格式,通过所述的第二无线模块以及所述的第一无线模块传输至所述处理器,由所述处理器进行响应。
如上所述的可穿戴设备主体还包括与所述处理器连接的第一用户输入模块,所述的第一无线模块与第二无线模块建立无线连接的过程包括:
所述第一无线模块发现可连接的第二无线模块,发送信号至所述处理器;
所述处理器接收到所述信号,询问用户是否连接;
用户通过所述第一用户输入模块确定进行连接后,所述第一无线模块与所述第二无线模块建立连接。
如上所述的可穿戴设备主体还包括第一音频输入输出模块,所述的扩展端还包括第二音频输入输出模块,
当所述第一无线模块与所述第二无线模块建立无线连接后,所述处理器将音频输出通过所述第一无线模块至所述的扩展端,所述扩展端的第二无线模块接收到所述可穿戴设备主体发送的音频输出后,传送至所述的第二音频输入输出模块进行输出;
所述的第二音频输入输出模块获取音频数据,并将其转化成为所述处理器可识别的格式,通过所述的第二无线模块以及所述的第一无线模块传输至所述处理器。
如上所述的可穿戴设备主体为佩戴于人体手腕上的手表状设备。
如上所述的第一无线模块与所述的第二无线模块所采用的无线传输协议为Miracast和/或蓝牙。
如上所述的可穿戴设备主体还包括:分别与所述处理器连接的GPS模块、网络模块、摄像头以及陀螺仪。
如上所述的第一用户输入模块和所述的第二用户输入模块为触摸屏或按键。
如上所述的可穿戴设备主体还包括第一数据接口,所述的扩展端还包括第二数据接口,所述的第一数据接口和所述的第二数据接口能够以有线的方式进行连接,并且进行数据传输。
综上所述,本发明提供了一种分体式可穿戴设备,包括小巧轻便的可穿戴设备主体,和能够接收可穿戴设备主体发送的显示输出并通过大屏幕显示的扩展端。这就在不降低便携性的同时,大大提高了可穿戴设备带给用户的视觉体验。同时,用户还能够通过扩展端上的触摸屏等部件直接操作可穿戴设备主体,方便用户的操作。
附图说明
图1是本发明一种分体式可穿戴设备第一实施例的结构框图。
图2是本发明第二实施例的结构框图。
具体实施方式
为进一步阐述本发明达成预定目的所采取的技术手段及功效,以下结合附图及实施例,对本发明的具体实施方式,详细说明如下。
如图1所示,为本发明分体式可穿戴设备第一实施例的结构框图。分体式可穿戴设备包括可穿戴设备主体10和扩展端20。可穿戴设备主体10包括:处理器101、第一无线模块102、第一显示屏103、存储器104和虚拟大屏幕模块105。处理器101分别与第一无线模块102、第一显示屏103、存储器104和虚拟大屏幕模块105电性连接,并且虚拟大屏幕模块105还与第一无线模块102电性连接。
扩展端20包括解码模块201、第二无线模块202和第二显示屏203。解码模块201分别与第二无线模块202和第二显示屏203电性连接。
在本发明中,可穿戴设备主体10优选为佩戴于人体手腕的手表状设备。当可穿戴设备主体10与扩展端20相互靠近时,第一无线模块102与第二无线模块202建立连接后,可穿戴设备主体10与扩展端20之间就可以通过第一无线模块102与第二无线模块202进行数据传输了。
由于可穿戴设备主体10为了便于佩戴在手腕上,体积不能过大,因而第一显示屏103的尺寸也就会偏小,所以在小尺寸显示不适于用户观看的时候,可穿戴设备主体10可以将显示输出发送至扩展端20,通过大尺寸的第二显示屏203进行播放。具体如下:处理器101将显示输出发送至虚拟大屏幕模块105,虚拟大屏幕模块105根据第二显示屏203的参数对处理器101传来的显示输出进行调整,使分辨率适合于第二显示屏203,之后将显示输出通过第一无线模块102发送给扩展端20。
扩展端20的第二无线模块202接收到第一无线模块102发送的显示输出后,将其传送至解码模块201,由解码模块201对显示输出进行解码,之后将其传输至第二显示屏203进行显示。
如图2所示,为本发明分体式可穿戴设备第二实施例的结构框图。与第一实施例的不同之处在于,在本实施例中,可穿戴设备主体10除了包括处理器101、第一无线模块102、第一显示屏103、存储器104和虚拟大屏幕模块105,还包括第一用户输入模块106、第一音频输入输出模块107和第一数据接口108,第一用户输入模块106、第一音频输入输出模块107和第一数据接口108分别与处理器101连接。
扩展端20除了包括解码模块201、第二无线模块202和第二显示屏203,还包括第二用户输入模块206、第二音频输入输出模块207和第二数据接口208。第二用户输入模块206、第二音频输入输出模块207和第二数据接口208分别与解码模块201连接。
在本实施例中,用户可以通过第二用户输入模块206输入指令,将其转化为可识别的格式,再通过解码模块201传送至第二无线模块202,由第二无线模块202无线传输至第一无线模块101,第一无线模块101将用户输入指令传输至处理器101,由处理器101进行响应。这样,用户就可以通过扩展端20对可穿戴设备主体10进行控制了。在本实施例中,第一用户输入模块和第二用户输入模块优选为触摸屏或按键,由于扩展端20的屏幕尺寸远大于可穿戴设备10的屏幕尺寸,因为通过扩展端20来操作,可以让用户更方便,同时降低误操作率。
在本实施例中,可穿戴设备主体10与扩展端20之间建立无线连接的过程如下:
(1)第一无线模块102发现可连接的第二无线模块202,发送信号至处理器101;
(2)处理器101接收到上述信号,询问用户是否连接;
(3)用户通过第一用户输入模块106确定进行连接后,处理器101控制第一无线模块102与第二无线模块202建立无线连接。
在本实施例中,可穿戴设备主体10除了能够发送显示信号至扩展端20进行输出,还能够与扩展端20相互发送音频信号。在可穿戴设备主体10与扩展端20之间建立连接后,处理器101将音频输出通过第一无线模块102发送至扩展端20的第二无线模块202。扩展端20的第二无线模块202接收到音频输出后,将其传输至第二音频输入输出模块207进行播放。同样的,第二音频输入输出模块207也可以获取用户的音频输入信号,通过第二无线模块202发送至可穿戴设备主体10。
在本实施例中,可穿戴设备主体10与扩展端20还能够通过有线的方式进行连接,以克服一些特殊的环境中无法通过无线的方式进行连接的限制。可穿戴设备主体10具有第一数据接口108,扩展端20具有第二数据接口208。第一数据接口108与第二数据接口208能够直接对接在一起或者通过数据线连接在一起,并且进行数据传输,这样,即使在特殊的环境中无法通过无线的方式进行连接,可穿戴设备主体10仍然能够与扩展端20进行上述的各种数据交互。
在本发明中,第一无线模块102和第二无线模块202之间所采用的无线传输协议优选为Miracast和/或蓝牙协议,无需通过云或者付费网络就可以实现将显示输出在扩展端20播放以及利用扩展端20控制可穿戴设备主体10。
在本发明中,可穿戴设备主体10还可以包括GPS模块、网络模块、摄像头以及陀螺仪等等,这些都是现有技术,在此不一一赘述。
综上所述,本发明的一种分体式可穿戴设备,包括可穿戴设备主体和扩 展端;所述可穿戴设备主体包括:处理器、存储器、第一显示屏、第一无线模块及虚拟大屏幕模块;所述扩展端包括:解码模块、第二显示屏及第二无线模块;当可穿戴设备主体的第一无线模块与扩展端的第二无线模块建立无线连接后,所述处理器将显示输出至所述虚拟大屏幕模块,所述虚拟大屏幕模块将输出分辨率调整至适合所述第二显示屏显示的大小后,通过第一无线模块将显示输出传输至所述的扩展端;所述扩展端的第二无线模块接收到所述可穿戴设备主体发送的显示输出后,传送至所述的解码模块进行解码,之后通过第二显示屏进行显示。
通过本发明的分体式可穿戴设备,可以大幅度提高用户的视觉体验,同时不增加佩戴于人体的可穿戴设备的体积。此外,配备了大屏幕之后,可穿戴设备可以增加一些适用于大屏的应用,扩展了可穿戴设备的使用范围。最后,本发明能够通过扩展端的大屏幕触摸屏对可穿戴设备进行操作,大大方便了用户操作,同时降低了误操作率。
本发明的一种分体式可穿戴设备在上述所举的实施例仅仅用以说明本发明的原理和结构,而非用以限制本发明,凡此种种依据本发明或现有技术的等效变换是本领域的技术人员所显而易见地得知,理应在本发明所公开保护的范畴之内。

Claims (9)

  1. 一种分体式可穿戴设备,其特征在于,包括可穿戴设备主体和扩展端;
    所述可穿戴设备主体包括:处理器和分别与所述处理器连接的存储器、第一显示屏、第一无线模块及虚拟大屏幕模块,所述虚拟大屏幕模块与所述第一无线模块连接;
    所述扩展端包括:解码模块和分别与所述解码模块连接的第二显示屏及第二无线模块;
    所述的第一无线模块与所述的第二无线模块建立无线连接后,所述处理器将显示输出至所述虚拟大屏幕模块,所述虚拟大屏幕模块将输出分辨率调整至适合所述第二显示屏显示的大小后,通过第一无线模块将显示输出传输至所述的扩展端;
    所述扩展端的第二无线模块接收到所述可穿戴设备主体发送的显示输出后,传送至所述的解码模块进行解码,之后通过第二显示屏进行显示。
  2. 根据权利要求1所述的分体式可穿戴设备,其特征在于,所述扩展端还包括与所述第二无线模块连接的第二用户输入模块,所述第二用户输入模块接收用户的输入,并将其转化成为所述处理器可识别的格式,通过所述的第二无线模块以及所述的第一无线模块传输至所述处理器,由所述处理器进行响应。
  3. 根据权利要求2所述的分体式可穿戴设备,其特征在于,所述的可穿戴设备主体还包括与所述处理器连接的第一用户输入模块,所述的第一无线模块与第二无线模块建立无线连接的过程包括:
    所述第一无线模块发现可连接的第二无线模块,发送信号至所述处理器;
    所述处理器接收到所述信号,询问用户是否连接;
    用户通过所述第一用户输入模块确定进行连接后,所述第一无线模块与所述第二无线模块建立连接。
  4. 根据权利要求3所述的分体式可穿戴设备,其特征在于,所述的可穿戴设备主体还包括第一音频输入输出模块,所述的扩展端还包括第二音频输入输出模块,
    当所述第一无线模块与所述第二无线模块建立无线连接后,所述处理器将音频输出通过所述第一无线模块至所述的扩展端,所述扩展端的第二无线模块接收到所述可穿戴设备主体发送的音频输出后,传送至所述的第二音频输入输出模块进行输出;
    所述的第二音频输入输出模块获取音频数据,并将其转化成为所述处理器可识别的格式,通过所述的第二无线模块以及所述的第一无线模块传输至所述处理器。
  5. 根据权利要求1至4中任一权利要求所述的分体式可穿戴设备,其特征在于,所述的可穿戴设备主体为佩戴于人体手腕上的手表状设备。
  6. 根据权利要求5所述的分体式可穿戴设备,其特征在于,所述的第一无线模块与所述的第二无线模块所采用的无线传输协议为Miracast和/或蓝牙。
  7. 根据权利要求5所述的分体式可穿戴设备,其特征在于,所述的可穿戴设备主体还包括:分别与所述处理器连接的GPS模块、网络模块、摄像头以及陀螺仪。
  8. 根据权利要求3所述的分体式可穿戴设备,其特征在于,所述的第一用户输入模块和所述的第二用户输入模块为触摸屏或按键。
  9. 根据权利要求1至4中任一权利要求所述的分体式可穿戴设备,其特征在于,所述的可穿戴设备主体还包括第一数据接口,所述的扩展端还包括第二数据接口,所述的第一数据接口和所述的第二数据接口能够以有线的方式进行连接,并且进行数据传输。
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