WO2017071133A1 - 一种智能手表 - Google Patents

一种智能手表 Download PDF

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Publication number
WO2017071133A1
WO2017071133A1 PCT/CN2016/072355 CN2016072355W WO2017071133A1 WO 2017071133 A1 WO2017071133 A1 WO 2017071133A1 CN 2016072355 W CN2016072355 W CN 2016072355W WO 2017071133 A1 WO2017071133 A1 WO 2017071133A1
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WO
WIPO (PCT)
Prior art keywords
watch
shaft
electronic display
display screen
gear
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Application number
PCT/CN2016/072355
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English (en)
French (fr)
Inventor
刘劲松
Original Assignee
歌尔声学股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 歌尔声学股份有限公司 filed Critical 歌尔声学股份有限公司
Priority to US15/035,623 priority Critical patent/US20170261940A1/en
Publication of WO2017071133A1 publication Critical patent/WO2017071133A1/zh

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Classifications

    • GPHYSICS
    • G04HOROLOGY
    • G04GELECTRONIC TIME-PIECES
    • G04G9/00Visual time or date indication means
    • GPHYSICS
    • G04HOROLOGY
    • G04CELECTROMECHANICAL CLOCKS OR WATCHES
    • G04C17/00Indicating the time optically by electric means
    • G04C17/0091Combined electro-optical and electro-mechanical displays
    • GPHYSICS
    • G04HOROLOGY
    • G04BMECHANICALLY-DRIVEN CLOCKS OR WATCHES; MECHANICAL PARTS OF CLOCKS OR WATCHES IN GENERAL; TIME PIECES USING THE POSITION OF THE SUN, MOON OR STARS
    • G04B19/00Indicating the time by visual means
    • GPHYSICS
    • G04HOROLOGY
    • G04BMECHANICALLY-DRIVEN CLOCKS OR WATCHES; MECHANICAL PARTS OF CLOCKS OR WATCHES IN GENERAL; TIME PIECES USING THE POSITION OF THE SUN, MOON OR STARS
    • G04B19/00Indicating the time by visual means
    • G04B19/04Hands; Discs with a single mark or the like
    • GPHYSICS
    • G04HOROLOGY
    • G04BMECHANICALLY-DRIVEN CLOCKS OR WATCHES; MECHANICAL PARTS OF CLOCKS OR WATCHES IN GENERAL; TIME PIECES USING THE POSITION OF THE SUN, MOON OR STARS
    • G04B47/00Time-pieces combined with other articles which do not interfere with the running or the time-keeping of the time-piece
    • GPHYSICS
    • G04HOROLOGY
    • G04GELECTRONIC TIME-PIECES
    • G04G21/00Input or output devices integrated in time-pieces
    • G04G21/08Touch switches specially adapted for time-pieces

Definitions

  • the present invention relates to the field of smart devices, and in particular to a smart watch.
  • the present invention provides a smart watch to solve the above problems or at least partially solve the above problems.
  • a smart watch includes a watch case and a watchband, and the smart watch further includes: an electronic display screen, a watch shaft, a hands, and a rotatable watch shaft mounting member;
  • a through hole is disposed at a designated position of the electronic display screen
  • the watch shaft is mounted in the watch case and passes through a through hole in the electronic display screen, and the first end of the watch shaft passing through the back of the electronic display screen is connected to the watch shaft mounting member, and the watch shaft is mounted When the piece rotates, the watch shaft rotates around the axis under the driving of the watch shaft mounting member;
  • the meter shaft is fitted with the hands on the second end which is passed through the front surface of the electronic display screen, and the hands are rotated about the axis under the driving of the watch shaft.
  • the watch shaft mount is a gear member.
  • the through hole is disposed at a central portion of the electronic display screen.
  • the table axis is formed by nesting three coaxial hollow table axes, and the three coaxial hollow table axes include: a first table axis, a second table axis, and a third Table axis
  • the hands include an hour hand, a minute hand and a second hand;
  • the gear member includes a first gear, a second gear, and a third gear; wherein the first gear rotates the first predetermined angle to drive the second gear to rotate 1/60 of the first preset angle, The second gear rotates the first predetermined angle to drive the third gear to rotate 1/60 of the first preset angle;
  • a first end of the first watch shaft passing through the back of the electronic display screen is connected to the first gear, and a second end of the first watch shaft is connected from the front end of the electronic display screen to the second hand;
  • the second a first end of the watch shaft passing through the back of the electronic display screen is connected to the second gear, and a second end of the second watch shaft is connected from the front end of the electronic display screen to the minute hand;
  • the third watch shaft is from the electronic The first end of the display screen is connected to the third gear, and the third end of the third display shaft is connected to the hour hand from the first end of the electronic display.
  • the smart watch further comprises: a motor; the motor drives the gear member to rotate.
  • the smart watch further comprises: a mechanical energy storage structure; the mechanical energy storage structure drives the gear member to rotate.
  • the smart watch further includes: a touch screen having a preset transparency;
  • the touch screen is fixed above the front side of the electronic display such that the hands are between the touch screen and the electronic display and are not in contact with the two.
  • the smart watch further includes: a display screen driving circuit, a touch screen driving circuit, and a micro control unit;
  • the electronic display screen is connected to the display screen driving circuit, and the display screen driving circuit is connected to the micro control unit;
  • the touch screen is connected to the touch screen driving circuit, and the touch screen driving circuit is connected to the micro control unit.
  • the electronic display screen is a liquid crystal display.
  • the case acts as a fixed position on the electronic display screen and the touch screen.
  • the smart watch provided by the present scheme is provided with a mechanical transmission structure composed of a watch shaft mounting member, a watch shaft and a hands, and the mechanical transmission structure and the electronic display screen can be used for the display output of the smart watch, realizing the intelligence.
  • the time information does not need to occupy the space of the electronic display screen as a mandatory item of the electronic display. It can be seen that the mutual cooperation of the two output modes can greatly improve the richness of the output information without changing the size of the output interface of the smart watch, and meets the application requirements of the smart watch.
  • FIG. 1 shows a cross-sectional view of a smart watch in accordance with one embodiment of the present invention
  • FIG. 2 shows a front view of a smart watch in accordance with one embodiment of the present invention.
  • FIG. 1 shows a cross-sectional view of a smart watch that is perpendicular to the dial of the smart watch, as shown in FIG. 1, the smart watch includes: an electronic display 1, a watch shaft, according to an embodiment of the present invention. 2.
  • the watch case 5 functions as a fixed position for the electronic display screen 1 and the touch screen 4, and a through hole is provided at a specified position of the electronic display screen 1, and the watch shaft 2 is installed in the watch case 5 and passes through the electronic display screen 1. hole.
  • the smart watch further includes a front axle mounting member, and the first end of the front axle 2 passing through the back of the electronic display screen 1 is coupled to the front axle mounting member, and when the front axle mounting member is rotated, the front axle 2 is mounted on the front axle mounting member.
  • the lower shaft pivot is driven; the second end of the front shaft 2 passing through the front surface of the electronic display screen 1 is equipped with a hands 3, and when the front shaft 2 rotates, the hands 3 are rotated about the axis by the display shaft 2.
  • the touch screen 4 has a preset transparency, which is fixed above the front side of the electronic display 1 (such as a liquid crystal display LCD) such that the hands 3 are between the touch screen 4 and the electronic display 1 and are not in contact with the two.
  • the second shows a front view of a smart watch in which the electronic display 1 and the touch screen 4 overlap each other according to an embodiment of the present invention.
  • the hands 3 include: an hour hand, a minute hand and a second hand, and an electronic display
  • a through hole is provided at a center position of the body 1, and the watch shaft 2 is installed in the case 5 and passes through a through hole at a center position of the electronic display 1.
  • the through hole provided at the center of the electronic display screen i.e., the dial
  • the through hole may be disposed at other positions of the electronic display.
  • one or more auxiliary through holes may be provided at positions different from the central position, for example, an auxiliary through hole is provided in an area around the central position, and the auxiliary through hole is adapted to the auxiliary through hole.
  • the auxiliary table shaft is equipped with a auxiliary needle, and the auxiliary table shaft is connected with the rotatable auxiliary table shaft mounting member. When the auxiliary table shaft mounting member rotates, the auxiliary table shaft rotates around the axis under the auxiliary table shaft mounting member.
  • the size of the auxiliary table shaft and the auxiliary hand is smaller than the table axis and the hands; the diameter of the auxiliary through hole is smaller than the diameter of the through hole.
  • This kind of processing can realize dual display (such as dual time zone display) or multi-function display (such as displaying air pressure, direction, etc. while displaying time) to meet the needs of various functions and scenes.
  • dual display such as dual time zone display
  • multi-function display such as displaying air pressure, direction, etc. while displaying time
  • the front axle mounting member is a gear member
  • the gear member includes a first gear, a second gear, and a third gear, wherein each of the first gear rotates
  • the first preset angle drives the second gear to rotate 1/60 of the first preset angle
  • the second gear rotates the first gear to rotate the third gear to rotate 1/60 of the first preset angle
  • the shaft 2 is formed by nesting three coaxial hollow hollow shafts, the three coaxial hollow hollow shafts are a first table axis, a second table axis and a third table axis respectively;
  • the hands 3 include an hour hand , minute hand and second hand.
  • the first end of the first watch shaft passing through the back of the electronic display 1 is connected to the first gear, and the second end of the first watch shaft is connected from the front end of the electronic display 1 to the second hand;
  • the second watch shaft a first end passing through the back of the electronic display 1 is connected to the second gear, and a second end of the second display shaft is connected from the front end of the electronic display 1 to the minute hand;
  • the third display is from the electronic display 1
  • the first end of the back surface is connected to the third gear, and the third end of the third watch shaft is connected to the hour hand from the front end of the electronic display 1.
  • the rotation of the first gear synchronously drives the first watch shaft to rotate about the axis
  • the rotation of the first watch shaft synchronously drives the second hand to rotate around the axis
  • the rotation of the second gear synchronously drives the second watch shaft around the axis
  • the rotation of the heart rotates
  • the rotation of the second watch shaft synchronously drives the minute hand to rotate around the axis
  • the rotation of the third gear synchronously drives the third watch shaft to rotate around the axis
  • the rotation of the third watch shaft synchronously drives the hour hand to rotate around the axis
  • Each rotation of the first predetermined angle of a gear drives the second gear to rotate 1/60 of the first preset angle
  • the second gear rotates the first predetermined angle to drive the third gear to rotate the first preset angle of 1 /60
  • the gear member can be rotated by the motor, and the input electrical energy is converted into mechanical energy by the motor and transmitted to the gear member to drive the gear member to rotate; or the gear member can be driven to rotate by the mechanical energy storage structure.
  • the mechanical energy storage structure directly transmits the input mechanical energy to the gear member to drive the gear member to rotate.
  • the smart watch further includes: a display screen driving circuit, a touch screen driving circuit and a micro control unit; wherein the electronic display screen 1 is connected to the display screen driving circuit, and the display screen driving circuit is connected to the micro control unit; the touch screen 4 Connected to the touch screen driving circuit, the touch screen driving circuit is connected with the micro control unit; the micro control unit controls the display output of the electronic display 1 through the display driving circuit according to the preset logic, and receives the input of the touch screen 4 through the touch screen driving circuit.
  • the signal responds to the input signal of the touch screen 4 according to preset logic to implement an electronic output and an electronic input mechanism of the smart watch.
  • the electronic display 1 of the smart watch provided by the present invention is a liquid crystal display (Liquid Crystal) Display, LCD).
  • the smart watch provided by the present invention further includes a GPS module, a wireless communication module, and the like, and is adapted to provide further functions in positioning, communication, and the like.
  • the smart watch provided by the present scheme is provided with a mechanical transmission structure composed of a watch shaft mounting member, a watch shaft and a hands.
  • the mechanical transmission structure and the electronic display can be used for the display output of the smart watch.
  • the time information does not need to occupy the space of the electronic display screen as a mandatory item of the electronic display. It can be seen that the mutual cooperation of the two output modes can greatly improve the richness of the output information without changing the size of the output interface of the smart watch, and meets the application requirements of the smart watch.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Electromechanical Clocks (AREA)

Abstract

一种智能手表,包括表壳(5)、表带、电子显示屏(1)、表轴(2)、表针(3)和可转动的表轴安装件,所述电子显示屏(1)的指定位置处设置有通孔,所述表轴(2)安装在表壳(5)内并穿过所述电子显示屏(1)上的通孔,所述表轴(2)从电子显示屏(1)的背面穿出的第一端与表轴安装件连接,所述表轴安装件转动时,表轴(2)在表轴安装件的带动下绕轴心旋转,所述表轴(2)从电子显示屏(1)的正面穿出的第二端上装配有所述表针(3),所述表针(3)在表轴(2)的带动下绕轴心旋转。该智能手表包括电子和机械两种输出方式,在不改变智能手表的输出界面的大小的情况下,能够大大提高输出信息的丰富程度,符合智能手表的应用需求。

Description

一种智能手表 技术领域
本发明涉及智能设备领域,尤其涉及一种智能手表。
背景技术
随着移动技术的不断进步,智能手表作为智能终端产业下的一个热点,其应用领域日益广阔。为应用场景所限,智能手表的屏幕一般情况下都较小,导致显示输出的信息是有限的,其中,时间信息作为智能手表的必须显示项目要始终占据智能手表屏幕的一部分空间,使得智能手表的屏幕上可显示其他信息的空间所剩无几,导致智能手表的输出信息不够丰富,不符合智能手表的应用发展趋势。
发明内容
鉴于上述问题,本发明提供了一种智能手表,以解决上述问题或者至少部分地解决上述问题。
依据本发明的一个方面,提供了一种智能手表,包括表壳和表带,其特征在于,该智能手表还包括:电子显示屏、表轴、表针和可转动的表轴安装件;
所述电子显示屏的指定位置处设置有通孔;
所述表轴安装在表壳内并穿过所述电子显示屏上的通孔,所述表轴从电子显示屏的背面穿出的第一端与表轴安装件连接,所述表轴安装件转动时,表轴在表轴安装件的带动下绕轴心旋转;
所述表轴从电子显示屏的正面穿出的第二端上装配有所述表针,所述表针在表轴的带动下绕轴心旋转。
可选地,所述表轴安装件为齿轮件。
可选地,所述通孔设置在电子显示屏的中心部分。
可选地,所述表轴是由三个共轴心的空心表轴相互嵌套而成,所述三个共轴心的空心表轴包括:第一表轴、第二表轴和第三表轴;
所述表针包括时针、分针和秒针;
所述齿轮件包括第一齿轮、第二齿轮和第三齿轮;其中,所述第一齿轮每转动第一预设角度则带动第二齿轮转动该第一预设角度的1/60,所述第二齿轮每转动第一预设角度则带动第三齿轮转动该第一预设角度的1/60;
所述第一表轴从电子显示屏的背面穿出的第一端与第一齿轮连接,所述第一表轴从电子显示屏的正面穿出的第二端与秒针连接;所述第二表轴从电子显示屏的背面穿出的第一端与第二齿轮连接,所述第二表轴从电子显示屏的正面穿出的第二端与分针连接;所述第三表轴从电子显示屏的背面穿出的第一端与第三齿轮连接,所述第三表轴从电子显示屏的正面穿出的第一端与时针连接。
可选地,该智能手表进一步包括:电机;所述电机驱动所述齿轮件转动。
可选地,该智能手表进一步包括:机械储能结构;所述机械储能结构驱动所述齿轮件转动。
可选地,该智能手表进一步包括:具有预设透明度的触摸屏;
所述触摸屏被固定于所述电子显示屏的正面的上方,使得所述表针处于所述触摸屏和所述电子显示屏之间且不与二者相接触。
可选地,该智能手表进一步包括:显示屏驱动电路、触摸屏驱动电路和微控制单元;
所述电子显示屏与所述显示屏驱动电路相连,所述显示屏驱动电路与所述微控制单元相连;
所述触摸屏与所述触摸屏驱动电路相连,所述触摸屏驱动电路与所述微控制单元相连。
可选地,所述电子显示屏为液晶显示屏。
可选地,所述表壳对所述电子显示屏和所述触摸屏起到固定位置的作用。
由上述可知,本方案提供的智能手表中设置有由表轴安装件、表轴和表针构成的机械传动结构,该机械传动结构与电子显示屏均可用于该智能手表的显示输出,实现了智能手表中电子输出与机械输出的结合;此方案下,由于智能手表可以通过所述机械传动结构向用户指示时间信息,因此智能手表可以根据实际需求在电子显示屏上显示其他非时间信息的信息,时间信息无需作为电子显示屏的必显项而占用电子显示屏的空间。可见,这两种输出方式的相互配合,在不改变智能手表的输出界面的大小的情况下,能够大大提高输出信息的丰富程度,符合智能手表的应用需求。
附图说明
图1示出了根据本发明一个实施例的一种智能手表的截面图;
图2示出了根据本发明一个实施例的一种智能手表的正视图。
具体实施例
为使本发明的目的、技术方案和优点更加清楚,下面将结合附图对本发明实施方式作进一步地详细描述。
图1示出了根据本发明一个实施例的一种智能手表的截面图,该截面方向垂直于所述智能手表的表盘,如图1所示,该智能手表包括:电子显示屏1、表轴2、表针3、触摸屏4、表壳5和表带(图中未示出)。
表壳5对电子显示屏1和触摸屏4起到固定位置的作用,电子显示屏1的指定位置处设置有通孔,表轴2安装在表壳5内并穿过电子显示屏1上的通孔。该智能手表进一步包括表轴安装件,表轴2从电子显示屏1的背面穿出的第一端与表轴安装件连接,当表轴安装件转动时,表轴2在表轴安装件的带动下绕轴心旋转;表轴2从电子显示屏1的正面穿出的第二端上装配有表针3,当表轴2转动时,表针3在表轴2的带动下绕轴心旋转。触摸屏4具有预设透明度,该触摸屏4固定于电子显示屏1(如液晶显示屏LCD)的正面的上方,使得表针3处于触摸屏4和电子显示屏1之间且不与二者相接触。
图2示出了根据本发明一个实施例的一种智能手表的正视图,在图2的视角下,电子显示屏1与触摸屏4相互重叠,表针3包括:时针、分针和秒针,电子显示屏1的中心位置处设置有通孔,表轴2安装在表壳5内并穿过位于电子显示屏1的中心位置的通孔。设置在电子显示屏(即表盘)中心位置的通孔仅是本发明优选的一个实施例,通孔也可以设置在电子显示屏的其他位置。除了中心位置,在与中心位置不相同的位置上还可以设置有一个或多个辅助通孔,例如,在中心位置四周的区域上设置一个辅助通孔,在该辅助通孔上通过相适配的辅表轴安装有辅表针,辅表轴与可转动的辅表轴安装件相连接,辅表轴安装件转动时,辅表轴在辅表轴安装件的带动下绕轴心旋转。
由于表盘的尺寸较小,一种设置方式下,辅表轴、辅表针的尺寸小于所述表轴、表针;辅助通孔的孔径小于所述通孔的孔径。
这种处理方式,可以实现双显示(如双时区显示)或多功能显示(如在显示时间的同时,显示气压、方向等),满足各种功能和场景的需求。
更为具体地,在图1-图2所示的智能手表中,上述表轴安装件为齿轮件,该齿轮件包括第一齿轮、第二齿轮和第三齿轮,其中,第一齿轮每转动第一预设角度则带动第二齿轮转动该第一预设角度的1/60,第二齿轮每转动第一预设角度则带动第三齿轮转动该第一预设角度的1/60;表轴2是由三个共轴心的空心表轴相互嵌套而成,该三个共轴心的空心表轴分别是第一表轴、第二表轴和第三表轴;表针3包括时针、分针和秒针。其中,第一表轴从电子显示屏1的背面穿出的第一端与第一齿轮连接,第一表轴从电子显示屏1的正面穿出的第二端与秒针连接;第二表轴从电子显示屏1的背面穿出的第一端与第二齿轮连接,第二表轴从电子显示屏1的正面穿出的第二端与分针连接;第三表轴从电子显示屏1的背面穿出的第一端与第三齿轮连接,第三表轴从电子显示屏1的正面穿出的第一端与时针连接。
则在本实施例中,第一齿轮的转动同步带动第一表轴绕轴心旋转,第一表轴的转动同步带动秒针绕轴心旋转;第二齿轮的转动同步带动第二表轴绕轴心旋转,第二表轴的转动同步带动分针绕轴心旋转;第三齿轮的转动同步带动第三表轴绕轴心旋转,第三表轴的转动同步带动时针绕轴心旋转;又根据第一齿轮每转动第一预设角度则带动第二齿轮转动该第一预设角度的1/60,第二齿轮每转动第一预设角度则带动第三齿轮转动该第一预设角度的1/60,可知,秒针每转动第一预设角度后分针转动该第一预设角度的1/60,分针每转动第一预设角度后时针转动该第一预设角度的1/60,实现了秒针、分针与时针的计时规则。
对于本发明所提供的智能手表来说,可以通过电机驱动齿轮件转动,由电机将输入的电能转换成机械能后传递给齿轮件带动齿轮件转动;也可以通过机械储能结构驱动齿轮件转动,如陀飞轮结构,由机械储能结构将输入的机械能直接传递给齿轮件带动齿轮件转动。
进一步地,本发明提供的智能手表进一步包括:显示屏驱动电路、触摸屏驱动电路和微控制单元;其中,电子显示屏1与显示屏驱动电路相连,显示屏驱动电路与微控制单元相连;触摸屏4与触摸屏驱动电路相连,触摸屏驱动电路与微控制单元相连;微控制单元一方面根据预设逻辑通过显示屏驱动电路控制电子显示屏1的显示输出,另一方面通过触摸屏驱动电路接收触摸屏4的输入信号,根据预设逻辑对触摸屏4的输入信号做出响应,以实现智能手表的电子输出和电子输入机制。
在本发明的一个实施例中,本发明提供的智能手表的电子显示屏1为液晶显示屏(Liquid Crystal Display,LCD)。
在本发明的一个实施例中,本发明提供的智能手表进一步包括GPS模块、无线通信模块等,适于提供进一步的定位、通信等方面的功能。
综上所述,本方案提供的智能手表中设置有由表轴安装件、表轴和表针构成的机械传动结构,该机械传动结构与电子显示屏均可用于该智能手表的显示输出,实现了智能手表中电子输出与机械输出的结合;此方案下,由于智能手表可以通过所述机械传动结构向用户指示时间信息,因此智能手表可以根据实际需求在电子显示屏上显示其他非时间信息的信息,时间信息无需作为电子显示屏的必显项而占用电子显示屏的空间。可见,这两种输出方式的相互配合,在不改变智能手表的输出界面的大小的情况下,能够大大提高输出信息的丰富程度,符合智能手表的应用需求。
以上所述仅为本发明的较佳实施例而已,并非用于限定本发明的保护范围。凡在本发明的精神和原则之内所作的任何修改、等同替换、改进等,均包含在本发明的保护范围内。

Claims (12)

  1.  一种智能手表,包括表壳和表带,其特征在于,该智能手表还包括:电子显示屏、表轴、表针和可转动的表轴安装件;
    所述电子显示屏的指定位置处设置有通孔;
    所述表轴安装在表壳内并穿过所述电子显示屏上的通孔,所述表轴从电子显示屏的背面穿出的第一端与表轴安装件连接,所述表轴安装件转动时,表轴在表轴安装件的带动下绕轴心旋转;
    所述表轴从电子显示屏的正面穿出的第二端上装配有所述表针,所述表针在表轴的带动下绕轴心旋转。
  2. 如权利要求1所述的智能手表,其特征在于,
    所述表轴安装件为齿轮件。
  3. 如权利要求1所述的智能手表,其特征在于,
    所述通孔设置在电子显示屏的中心部分。
  4. 如权利要求2所述的智能手表,其特征在于,
    所述表轴是由三个共轴心的空心表轴相互嵌套而成,所述三个共轴心的空心表轴包括:第一表轴、第二表轴和第三表轴;
    所述表针包括时针、分针和秒针;
    所述齿轮件包括第一齿轮、第二齿轮和第三齿轮;其中,所述第一齿轮每转动第一预设角度则带动第二齿轮转动该第一预设角度的1/60,所述第二齿轮每转动第一预设角度则带动第三齿轮转动该第一预设角度的1/60;
    所述第一表轴从电子显示屏的背面穿出的第一端与第一齿轮连接,所述第一表轴从电子显示屏的正面穿出的第二端与秒针连接;所述第二表轴从电子显示屏的背面穿出的第一端与第二齿轮连接,所述第二表轴从电子显示屏的正面穿出的第二端与分针连接;所述第三表轴从电子显示屏的背面穿出的第一端与第三齿轮连接,所述第三表轴从电子显示屏的正面穿出的第一端与时针连接。
  5. 如权利要求2所述的智能手表,其特征在于,该智能手表进一步包括:电机;所述电机驱动所述齿轮件转动。
  6. 如权利要求2所述的智能手表,其特征在于,该智能手表进一步包括:机械储能结构;所述机械储能结构驱动所述齿轮件转动。
  7. 如权利要求1所述的智能手表,其特征在于,该智能手表进一步包括:具有预设透明度的触摸屏;
    所述触摸屏被固定于所述电子显示屏的正面的上方,使得所述表针处于所述触摸屏和所述电子显示屏之间且不与二者相接触。
  8. 如权利要求7中任一项所述的智能手表,其特征在于,该智能手表进一步包括:显示屏驱动电路、触摸屏驱动电路和微控制单元;
    所述电子显示屏与所述显示屏驱动电路相连,所述显示屏驱动电路与所述微控制单元相连;
    所述触摸屏与所述触摸屏驱动电路相连,所述触摸屏驱动电路与所述微控制单元相连。
  9. 如权利要求1中任一项所述的智能手表,其特征在于,所述电子显示屏为液晶显示屏。
  10. 如权利要求1-9中任一项所述的智能手表,其特征在于,所述表壳对所述电子显示屏和所述触摸屏起到固定位置的作用。
  11. 如权利要求1-9中任一项所述的智能手表,其特征在于,
    所述电子显示屏上与指定位置不相同的位置上还设置有一个或多个辅助通孔;所述智能手表还包括与每个辅助通孔相适配的辅表轴、辅表针和可转动的辅表轴安装件。
  12. 如权利要求11中任一项所述的智能手表,其特征在于,
    所述辅表轴、辅表针的尺寸小于所述表轴、表针;
    所述辅助通孔的孔径小于所述通孔的孔径。
PCT/CN2016/072355 2015-10-27 2016-01-27 一种智能手表 WO2017071133A1 (zh)

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