WO2020010579A1 - 一种带具有语音交互功能耳机的智能手表 - Google Patents

一种带具有语音交互功能耳机的智能手表 Download PDF

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Publication number
WO2020010579A1
WO2020010579A1 PCT/CN2018/095457 CN2018095457W WO2020010579A1 WO 2020010579 A1 WO2020010579 A1 WO 2020010579A1 CN 2018095457 W CN2018095457 W CN 2018095457W WO 2020010579 A1 WO2020010579 A1 WO 2020010579A1
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WIPO (PCT)
Prior art keywords
earphone
main body
communication module
smart watch
headset
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PCT/CN2018/095457
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English (en)
French (fr)
Inventor
陆海传
邓超
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深圳傲智天下信息科技有限公司
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Application filed by 深圳傲智天下信息科技有限公司 filed Critical 深圳傲智天下信息科技有限公司
Priority to PCT/CN2018/095457 priority Critical patent/WO2020010579A1/zh
Priority to CN201810819406.0A priority patent/CN108549206A/zh
Priority to CN201821173820.0U priority patent/CN208689384U/zh
Publication of WO2020010579A1 publication Critical patent/WO2020010579A1/zh

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    • GPHYSICS
    • G04HOROLOGY
    • G04GELECTRONIC TIME-PIECES
    • G04G21/00Input or output devices integrated in time-pieces
    • GPHYSICS
    • G04HOROLOGY
    • G04GELECTRONIC TIME-PIECES
    • G04G21/00Input or output devices integrated in time-pieces
    • G04G21/04Input or output devices integrated in time-pieces using radio waves
    • GPHYSICS
    • G04HOROLOGY
    • G04GELECTRONIC TIME-PIECES
    • G04G21/00Input or output devices integrated in time-pieces
    • G04G21/06Input or output devices integrated in time-pieces using voice
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04RLOUDSPEAKERS, MICROPHONES, GRAMOPHONE PICK-UPS OR LIKE ACOUSTIC ELECTROMECHANICAL TRANSDUCERS; DEAF-AID SETS; PUBLIC ADDRESS SYSTEMS
    • H04R1/00Details of transducers, loudspeakers or microphones
    • H04R1/10Earpieces; Attachments therefor ; Earphones; Monophonic headphones
    • H04R1/1041Mechanical or electronic switches, or control elements

Definitions

  • the invention relates to a smart watch, in particular to a smart watch with a headset having a voice interaction function.
  • Existing smart watches are built-in smart watch systems, equipped with smart phone systems, and connected to the network to achieve multi-functions. They can synchronize calls with Bluetooth, send and receive text messages, monitor sleep, monitor heart rate, sedentary reminders, and jog running. , Remote camera, music playback, video, compass and other functions, and can also synchronize the e-mail, photos, music, etc. in the mobile phone, designed for fashion trendsetters.
  • the existing smart watches often have speakers built into the watch. When you need to listen to the sound, you often need to put the wrist watch on your ear or insert it into the earphone hole of the smart watch with a wired headset, which is not very convenient to use.
  • the present application provides a smart watch with a headset with a voice interaction function, which can realize human-computer interaction through voice interaction, and is provided with a TWS headset, a classic stereo Bluetooth headset or a classic unilateral Bluetooth headset, which is more convenient to use.
  • the present application provides a smart watch with a headset with a voice interaction function, including a main body and a headset detachably connected to the main body.
  • the main body includes a display, a main body case, and a wristband.
  • the wristband is fixedly connected to the main body case.
  • An earphone slot for placing earphones is provided on the side of the body casing, and the earphones can be placed in the earphone slot to realize electrical connection with the body for charging.
  • the bottom of the body casing is provided with a photoelectric hole position, and the body casing is provided with an electrocardiogram.
  • the ECG monitoring module is disposed on the photoelectric hole position.
  • the body processor is electrically connected to the body communication module, respectively.
  • the body communication module includes a Bluetooth module and a mobile data access module. , A cellular transceiver and a WiFi communication module; the earphone includes an in-ear portion and an earphone shell arranged at an end, and the earphone shell is provided with a earphone communication module, a earphone processor, a speaker and a pickup, and the earphone processor and the earphone communication module, respectively;
  • the speaker and the pickup are electrically connected, and the headset communication module is wirelessly connected with the body communication module.
  • a battery electrically connected to the processor of the body is further provided in the main body casing, the battery is further connected to a power input interface and an electric power output circuit, and the electric power output circuit is further connected to a power input interface
  • An electric energy output terminal, the electric energy output terminal is disposed in the earphone slot, the power input interface includes a wireless power input interface or a USB interface power input interface; the earphone casing is provided with an electric energy input terminal, and the earphone casing
  • a headphone battery is provided therein, and the power input terminal is electrically connected to the headphone battery.
  • the power output terminal matches the power input terminal, including but not limited to a metal contact, a thin metal surface, or a metal male and female plug connector.
  • the earphone placed in the earphone slot is detachably connected to the body by magnetic attraction, buckling or snapping.
  • the main body communication module further includes: an e-SIM card module or a SIM card module.
  • the headset communication module and the main body communication module are wirelessly connected via Bluetooth.
  • the headset includes a TWS headset or a classic stereo Bluetooth headset or a classic unilateral Bluetooth headset.
  • the earphone when the earphone is a TWS earphone, two earphone slots of the earphone are respectively provided on the two sides of the main body case, for placing the master earphone and the slave earphone respectively.
  • the display is electrically connected to the main body processor, and the display is a touch screen.
  • the smart watch picks up the user's voice through the pickup, converts it to digital voice signals through the headphone processor, and then sends it to the body communication module via Bluetooth through the headphone communication module.
  • the processor can communicate with the cloud server through a mobile data network module or a WiFi transceiver, and send the voice signal to the cloud server.
  • the smart watch can make a call , Send text messages, or make the headset play music, navigate, and play information search results in voice.
  • FIG. 1 is a perspective view of a smart watch with a voice interaction function headset according to an embodiment
  • FIG. 2 is a second perspective view 2 of a smart watch with a headset with a voice interaction function according to an embodiment
  • FIG. 3 is a system diagram of a smart watch with a headset having a voice interaction function according to an embodiment
  • FIG. 4 is a block diagram of an internal structure of the earphone according to an embodiment
  • FIG. 5 is a block diagram of an internal structure of an ontology communication module according to an embodiment
  • FIG. 6 is a structural diagram of a main body casing according to an embodiment
  • FIG. 7 is a schematic diagram of a smart watch with a TWS headset as an embodiment of the headset
  • FIG. 8 is a perspective view of a smart watch combined with a TWS earphone according to an embodiment
  • FIG. 9 is a schematic diagram of a smart watch with a TWS headset as another embodiment of the headset.
  • connection and “connection” in this application include direct and indirect connections (connections) unless otherwise specified.
  • the present application provides a smart watch with an AI voice interaction function.
  • the smart watch includes a body 10 and a headset 20 detachably connected to the body.
  • the body 10 includes a display 16, a body case 11, and a wrist.
  • the band 102, the wristband 102 is fixedly connected to the main body casing 11.
  • the side of the main body casing 11 is provided with an earphone slot 112 for placing an earphone 20.
  • the earphone 20 can be placed in the earphone slot 112 to be electrically connected to the body 10 for charging.
  • the bottom of the main body casing 11 is provided with a photoelectric hole 117.
  • the main body casing 11 is provided with an electrocardiogram monitoring module 17, a main body communication module 12, and a main body processor 19.
  • the electrocardiogram monitoring module 17 is provided at the photocell hole 117.
  • the main body processor 19 is electrically connected to the main body communication module 12 respectively.
  • the main body communication module 12 includes a Bluetooth module 121, a mobile data internet module 123, a cellular transceiver 124, and a WiFi communication module 122.
  • the headset 20 includes settings The earphone 202 and the earphone housing 201 are located at the ends.
  • the earphone housing 201 is provided with a headphone communication module 22, a headphone processor 29, a speaker 28, and a pickup 27, and the headphone processor 29 communicates with the headphones respectively.
  • Block 22, a speaker 28 and microphone 27 are electrically connected to the earphone 22 is connected to the communication module 12 of wireless communication module body.
  • a battery 13 electrically connected to the body processor 19 is further provided in the main body casing 11, and the battery 13 is further connected to a power input interface 18, a power output circuit 14, and a power output circuit.
  • 14 is also connected to a power input interface 18 and an electric energy output terminal 15, which is disposed in the earphone slot 112.
  • the power input interface 18 includes a wireless power input interface or a USB interface power input interface.
  • the earphone casing 11 is provided with an electric energy input terminal 21.
  • the earphone casing 11 is provided with an earphone battery 23.
  • the electric energy input terminal 21 and The earphone battery 23 is electrically connected; wherein, the power output terminal 15 is matched with the power input terminal 21, including but not limited to a metal contact, a thin metal surface, or a metal male and female plug connector.
  • the earphone slot 112 includes a first earphone slot 1121 for placing a headphone handle and a second earphone slot 1122 for placing an ear.
  • the first earphone slot 1121 is provided with the power output terminal 15.
  • the power input terminal 21 is disposed on the earphone handle.
  • the earphone placed in the earphone slot 112 is detachably connected to the body 10 by magnetic attraction, buckling or snapping.
  • the communication module of the body 10 further includes: an e-SIM card module or a SIM card module.
  • the headset communication module 22 and the main body communication module 12 are wirelessly connected via Bluetooth.
  • the headset 20 includes a TWS headset 20a / 20b, or a classic stereo Bluetooth headset 20c or a classic unilateral Bluetooth headset 20c.
  • two earphone slots 112a / 112b are respectively provided on the two sides of the main body case for placing the master earphone 20a and the slave earphone 20b, and the master earphone 20a and the slave earphone respectively. Both 20b can pick up the user's voice signal and send it to the body 10 through the first communication module.
  • the body processor 19 denoises and compares the user's voice picked up by the main headset 20a and the headset 20b, respectively, and merges them into one voice signal.
  • the display 15 is electrically connected to the main body processor 19, and the display 15 is a touch screen, which can perform touch screen control.
  • the local communication module 12 can also be used for wireless communication connection between a smart watch and an existing smart home device, thereby further controlling the smart home device through AI voice, making the smart watch a “remote control for smart home” ⁇ ".
  • the smart watch picks up the user's voice through the pickup 27, converts it into digital voice signals through the headphone processor 29, and sends it to the body communication module 12 via Bluetooth through the headphone communication module 21,
  • the ontology processor 19 can implement a communication connection with the cloud server through a mobile data internet module or a WiFi transceiver, and send the voice signal to the cloud server. After the digital voice signal is sent to the cloud server, the cloud server performs speech recognition and semantic analysis.
  • the analysis result is sent back to the smart watch, and then sent and received through the cellular
  • the device uses the existing technology to implement functions such as making calls and sending text messages. Otherwise, the server processes the corresponding Internet data, calls the corresponding network data, and sends the network data to the smart watch. After the smart watch receives the network data, the headset makes The network data is broadcasted accordingly.
  • the cloud server may start a program to perform an Internet search (such as Baidu search) and send the search result back to the smart watch and make the headset broadcast in voice form, or start a program to call a network music player resource for music playback, or start a road Navigation applications (such as Gaode maps) for navigation, or launch programs to request audio programs, etc.
  • an Internet search such as Baidu search
  • a program to call a network music player resource for music playback or start a road Navigation applications (such as Gaode maps) for navigation, or launch programs to request audio programs, etc.
  • the mobile data communication (3G / 4G / 5G) or WiFi communication is used to send the network data resources back to the smart watch that the user wears on the wrist, making the smart watch It does not need a processor with powerful computing power, it only needs good communication capabilities, which can reduce the hardware cost of smart watches.
  • the program may be stored in a computer-readable storage medium, and the storage medium may include: a read-only memory, a random access memory, a magnetic disk, an optical disk, a hard disk, etc.
  • the computer executes the program to realize the above functions.
  • the program is stored in the memory of the device, and when the processor executes the program in the memory, all or part of the functions described above can be implemented.
  • the program may also be stored in a storage medium such as a server, another computer, a magnetic disk, an optical disk, a flash disk, or a mobile hard disk, and saved by downloading or copying.
  • a storage medium such as a server, another computer, a magnetic disk, an optical disk, a flash disk, or a mobile hard disk, and saved by downloading or copying.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Acoustics & Sound (AREA)
  • Signal Processing (AREA)
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Abstract

一种带具有语音交互功能耳机的智能手表,包括本体以及与本体可拆卸连接的耳机。由于具有本体和耳机这样的基本组成结构,智能手表通过拾音器拾取用户语音,经耳机处理器模数转换为数字语音信号,再通过耳机通讯模块经蓝牙发送至本体通讯模块,本体处理器响应该数字语音信号,可通过移动数据上网模块或WiFi收发器实现与云服务器通讯连接,并将语音信号发送至云服务器,云服务器进行语音识别及语义分析后,智能手表可实现拨打电话、发送短信,或使得耳机进行音乐播放、导航、以语音形式播放资讯搜索结果等。

Description

一种带具有语音交互功能耳机的智能手表 技术领域
本发明涉及智能手表,具体涉及一种带具有语音交互功能耳机的智能手表。
背景技术
现有的智能手表,是将手表内置智能化系统、搭载智能手机系统而连接于网络而实现多功能,可蓝牙同步手机打电话、收发短信、监测睡眠、监测心率、久坐提醒、跑步记步、远程拍照、音乐播放、录像、指南针等功能,还能同步手机中的电邮件、照片、音乐等,专为时尚潮流人士设计。但是也存在一些弊端,由于现有的智能手表的人机交互更多依赖于屏幕的触屏交互方式,而现有的智能手表显示器屏幕往往比较下,常常导致操控不方便;而且,现有的智能手表往往将扬声器内置于手表内,在需要听取声音时,往往需要将佩戴于手腕的手表置于耳边或借助有线耳机插入智能手表的耳机孔内使用,使用起来不是很方便。
发明内容
本申请提供一种带具有语音交互功能耳机的智能手表,可通过语音交互实现人机交互,并设置了TWS耳机、经典立体声蓝牙耳机或经典单边蓝牙耳机,使用更方便。
本申请提供一种带具有语音交互功能耳机的智能手表,包括本体以及与所述本体可拆卸连接的耳机,所述本体包括显示器、本体机壳和腕带,腕带与本体机壳固定连接,本体机壳侧面上设置有用于放置耳机的耳机槽,耳机可放置于所述耳机槽内与本体实现电连接进行充电,本体机壳底部设置有光电孔位,所述本体机壳内设置有心电监测模块、本体通讯模块和本体处理器,心电监测模块设置于所述光电孔位上,所述本体处理器分别与本体通讯模块电连接,所述本体通讯模块包括蓝牙模块、移动数据上网模块、蜂窝收发器和WiFi通讯模块;所述耳机包括设置于端部的入耳部和耳机外壳,耳机外壳内设置有耳机通讯模块、耳机处理器、扬声器和拾音器,耳机处理器分别与耳机通讯模块、扬声器和拾音器电连接,所述耳机通讯模块与本体通讯模块无线连接。
在一些实施例,所述本体机壳内还设置有与所述本体处理器电连接的电池, 所述电池还连接有电源输入接口、电能输出电路,所述电能输出电路还连接有电源输入接口、电能输出端,所述电能输出端设置于所述耳机槽内,所述电源输入接口包括无线电源输入接口或USB接口电源输入接口;所述耳机外壳上设置有电能输入端,所述耳机外壳内设置有耳机电池,所述电能输入端与耳机电池电连接;其中,所述电能输出端与所述电能输入端相匹配,包括但不限于金属触点、金属薄面或金属公母插接头。
在一些实施例,所述放置于所述耳机槽内的耳机通过磁吸、扣合或卡合方式实现与所述本体可拆卸连接。
在一些实施例,所述本体通讯模块还包括:e-SIM卡模块或SIM卡模块。
在一些实施例,所述耳机通讯模块与本体通讯模块通过蓝牙方式实现无线连接,所述耳机包括TWS耳机或经典立体声蓝牙耳机或经典单边蓝牙耳机。
在一些实施例,所述耳机为TWS耳机时,本体机壳的两个侧面分别设置有一个耳机的耳机槽,用以分别放置主耳机与从耳机。
在一些实施例,所述显示器与本体处理器电连接,所述显示器为触摸屏。
依据上述实施例,由于具有本体和耳机这样的基本组成结构,智能手表通过拾音器拾取用户语音,经耳机处理器模数转换为数字语音信号,再通过耳机通讯模块经蓝牙发送至本体通讯模块,本体处理器响应该数字语音信号,可通过移动数据上网模块或WiFi收发器实现与云服务器通讯连接,并将语音信号发送至云服务器,云服务器进行语音识别及语义分析后,智能手表可实现拨打电话、发送短信,或使得耳机进行音乐播放、导航、以语音形式播放资讯搜索结果等。
附图说明
图1为一种实施例的带具有语音交互功能耳机的智能手表立体图一;
图2为一种实施例的带具有语音交互功能耳机的智能手表立体图二;
图3为一种实施例的带具有语音交互功能耳机的智能手表系统图;
图4为一种实施例的耳机内部结构框图;
图5为一种实施例的本体通讯模块内部结构框图;
图6为一种实施例的本体机壳结构图;
图7为一种实施例的耳机为TWS耳机的智能手表分体示意图;
图8为一种实施例的耳机为TWS耳机的智能手表合体透视图;
图9为另一种实施例的耳机为TWS耳机的智能手表分体示意图。
具体实施方式
下面通过具体实施方式结合附图对本发明作进一步详细说明。其中不同实施方式中类似元件采用了相关联的类似的元件标号。在以下的实施方式中,很多细节描述是为了使得本申请能被更好的理解。然而,本领域技术人员可以毫不费力的认识到,其中部分特征在不同情况下是可以省略的,或者可以由其他元件、材料、方法所替代。在某些情况下,本申请相关的一些操作并没有在说明书中显示或者描述,这是为了避免本申请的核心部分被过多的描述所淹没,而对于本领域技术人员而言,详细描述这些相关操作并不是必要的,他们根据说明书中的描述以及本领域的一般技术知识即可完整了解相关操作。
另外,说明书中所描述的特点、操作或者特征可以以任意适当的方式结合形成各种实施方式。同时,方法描述中的各步骤或者动作也可以按照本领域技术人员所能显而易见的方式进行顺序调换或调整。因此,说明书和附图中的各种顺序只是为了清楚描述某一个实施例,并不意味着是必须的顺序,除非另有说明其中某个顺序是必须遵循的。
本文中为部件所编序号本身,例如“第一”、“第二”等,仅用于区分所描述的对象,不具有任何顺序或技术含义。而本申请所说“连接”、“联接”,如无特别说明,均包括直接和间接连接(联接)。
参考图1至图9,本申请提供一种带AI语音交互功能的智能手表,包括本体10以及与所述本体可拆卸连接的耳机20,所述本体10包括显示器16、本体机壳11和腕带102,腕带102与本体机壳11固定连接,本体机壳11侧面上设置有用于放置耳机20的耳机槽112,耳机20可放置于所述耳机槽112内与本体10实现电连接进行充电,本体机壳11底部设置有光电孔位117,所述本体机壳11内设置有心电监测模块17、本体通讯模块12和本体处理器19,心电监测模块17设置于所述光电孔位117上,所述本体处理器19分别与本体通讯模块12电连接,所述本体通讯模块12包括蓝牙模块121、移动数据上网模块123、蜂窝收发器124和WiFi通讯模块122;所述耳机20包括设置于端部的入耳部202 和耳机外壳201,耳机外壳201内设置有耳机通讯模块22、耳机处理器29、扬声器28和拾音器27,耳机处理器29分别与耳机通讯模块22、扬声器28和拾音器27电连接,所述耳机通讯模块22与本体通讯模块12无线连接。
在一些实施例,所述本体机壳11内还设置有与所述本体处理器19电连接的电池13,所述电池13还连接有电源输入接口18、电能输出电路14,所述电能输出电路14还连接有电源输入接口18、电能输出端15,所述电能输出端15设置于所述耳机槽112内。所述电源输入接口18包括无线电源输入接口或USB接口电源输入接口;所述耳机外壳11上设置有电能输入端21,所述耳机外壳11内设置有耳机电池23,所述电能输入端21与耳机电池23电连接;其中,所述电能输出端15与所述电能输入端21相匹配,包括但不限于金属触点、金属薄面或金属公母插接头。
具体地,耳机槽112包括用于放置耳机柄的第一耳机槽1121和用于放置入耳部的第二耳机槽1122,第一耳机槽1121上设置有所述电能输出端15,相应地,所述电能输入端21设置于耳机柄上。
在一些实施例,所述放置于所述耳机槽112内的耳机通过磁吸、扣合或卡合方式实现与所述本体10可拆卸连接。
在一些实施例,所述本体10通讯模块还包括:e-SIM卡模块或SIM卡模块。
在一些实施例,所述耳机通讯模块22与本体通讯模块12通过蓝牙方式实现无线连接。
参考图7至图9,在一些实施例,所述耳机20包括TWS耳机20a/20b,或经典立体声蓝牙耳机20c或经典单边蓝牙耳机20c。
在一些实施例,所述耳机为TWS耳机时,本体机壳的两个侧面分别设置有一个耳机的耳机槽112a/112b,用以分别放置主耳机20a与从耳机20b,主耳机20a与从耳机20b均可拾取用户语音信号,并通过第一通讯模块发送至本体10,本体处理器19将主耳机20a、从耳机20b分别拾取的用户语音进行去噪、比较,融合为一个语音信号。
在一些实施例,所述显示器15与本体处理器19电连接,所述显示器15为触摸屏,可进行触屏操控。
在一些实施例,本地通讯模块12还可用于智能手表与现有的智能家居装置 实现无线通讯连接,从而进一步,通过AI语音实现对智能家居装置的控制,使得智能手表成为一个智能家居的“遥控器”。
由于具有本体10和耳机20这样的基本组成结构,智能手表通过拾音器27拾取用户语音,经耳机处理器29模数转换为数字语音信号,再通过耳机通讯模块21经蓝牙发送至本体通讯模块12,本体处理器19响应该数字语音信号,可通过移动数据上网模块或WiFi收发器实现与云服务器通讯连接,并将语音信号发送至云服务器。其中,该数字语音信号发送至云服务器后,由云服务器进行语音识别及语义分析,分析完成后,若分析的结果与拨打电话、发送短信有关,将分析结果发送回智能手表,再通过蜂窝收发器利用现有技术实现拨打电话、发送短信等功能,否则,由服务器进行相应的互联网数据处理,调用对应网络数据,并将该网络数据发送智能手表,智能手表接收该网络数据后,使得耳机根据该网络数据进行相应的语音播报。具体地,云服务器可启动程序以进行互联网搜索(如百度搜索)并将搜索结果发回智能手表并使得耳机以语音形式播报、或启动程序以调用网络音乐播放器资源进行音乐播放、或启动道路导航应用程序(如高德地图)进行导航、或启动程序以点播音频节目等等。
由于大量的数据处理和数据分析工作是在云端由云服务器完成的,并借助移动数据通讯(3G/4G/5G)或WiFi通讯将网络数据资源发回用户佩戴在手腕的智能手表,使得智能手表不需要强大计算能力的处理器,只需要较好的通讯能力即可,可降低智能手表的硬件成本。
本领域技术人员可以理解,上述实施方式中各种方法的全部或部分功能可以通过硬件的方式实现,也可以通过计算机程序的方式实现。当上述实施方式中全部或部分功能通过计算机程序的方式实现时,该程序可以存储于一计算机可读存储介质中,存储介质可以包括:只读存储器、随机存储器、磁盘、光盘、硬盘等,通过计算机执行该程序以实现上述功能。例如,将程序存储在设备的存储器中,当通过处理器执行存储器中程序,即可实现上述全部或部分功能。另外,当上述实施方式中全部或部分功能通过计算机程序的方式实现时,该程序也可以存储在服务器、另一计算机、磁盘、光盘、闪存盘或移动硬盘等存储介质中,通过下载或复制保存到本地设备的存储器中,或对本地设备的系统进行版本更新,当通过处理器执行存储器中的程序时,即可实现上述实施方式中 全部或部分功能。
以上应用了具体个例对本发明进行阐述,只是用于帮助理解本发明,并不用以限制本发明。对于本发明所属技术领域的技术人员,依据本发明的思想,还可以做出若干简单推演、变形或替换。

Claims (7)

  1. 一种带具有语音交互功能耳机的智能手表,其特征在于,包括本体以及与所述本体可拆卸连接的耳机,所述本体包括显示器、本体机壳和腕带,腕带与本体机壳固定连接,本体机壳侧面上设置有用于放置耳机的耳机槽,耳机可放置于所述耳机槽内与本体实现电连接进行充电,本体机壳底部设置有光电孔位,所述本体机壳内设置有心电监测模块、本体通讯模块和本体处理器,心电监测模块设置于所述光电孔位上,所述本体处理器分别与本体通讯模块电连接,所述本体通讯模块包括蓝牙模块、移动数据上网模块、蜂窝收发器和WiFi通讯模块;所述耳机包括设置于端部的入耳部和耳机外壳,耳机外壳内设置有耳机通讯模块、耳机处理器、扬声器和拾音器,耳机处理器分别与耳机通讯模块、扬声器和拾音器电连接,所述耳机通讯模块与本体通讯模块无线连接。
  2. 如权利要求1所述的智能手表,其特征在于,所述本体机壳内还设置有与所述本体处理器电连接的电池,所述电池还连接有电源输入接口、电能输出电路,所述电能输出电路还连接有电源输入接口、电能输出端,所述电能输出端设置于所述耳机槽内,所述电源输入接口包括无线电源输入接口或USB接口电源输入接口;所述耳机外壳上设置有电能输入端,所述耳机外壳内设置有耳机电池,所述电能输入端与耳机电池电连接;其中,所述电能输出端与所述电能输入端相匹配,包括但不限于金属触点、金属薄面或金属公母插接头。
  3. 如权利要求1所述的智能手表,其特征在于,所述放置于所述耳机槽内的耳机通过磁吸、扣合或卡合方式实现与所述本体可拆卸连接。
  4. 如权利要求1所述的智能手表,其特征在于,所述本体通讯模块还包括:e-SIM卡模块或SIM卡模块。
  5. 如权利要求1所述的智能手表,其特征在于,所述耳机通讯模块与本体通讯模块通过蓝牙方式实现无线连接,所述耳机包括TWS耳机或经典立体声蓝牙耳机或经典单边蓝牙耳机。
  6. 如权利要求5所述的智能手表,其特征在于,所述耳机为TWS耳机时,本体机壳的两个侧面分别设置有一个耳机的耳机槽,用以分别放置主耳机与从耳机。
  7. 如权利要求1所述的智能手表,其特征在于,所述显示器与本体处理 器电连接,所述显示器为触摸屏。
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