WO2017201659A1 - 智能手表 - Google Patents

智能手表 Download PDF

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Publication number
WO2017201659A1
WO2017201659A1 PCT/CN2016/083046 CN2016083046W WO2017201659A1 WO 2017201659 A1 WO2017201659 A1 WO 2017201659A1 CN 2016083046 W CN2016083046 W CN 2016083046W WO 2017201659 A1 WO2017201659 A1 WO 2017201659A1
Authority
WO
WIPO (PCT)
Prior art keywords
housing
processor
smart watch
camera assembly
boss
Prior art date
Application number
PCT/CN2016/083046
Other languages
English (en)
French (fr)
Inventor
杨子江
Original Assignee
深圳市蔚蓝滨海产业投资有限公司
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 深圳市蔚蓝滨海产业投资有限公司 filed Critical 深圳市蔚蓝滨海产业投资有限公司
Priority to PCT/CN2016/083046 priority Critical patent/WO2017201659A1/zh
Publication of WO2017201659A1 publication Critical patent/WO2017201659A1/zh

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Classifications

    • 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

Definitions

  • the present invention relates to the field of watches, and more particularly to a smart watch.
  • the technical problem to be solved by the present invention is to provide a camera-capable smart watch for the above-mentioned drawbacks in the prior art.
  • the technical solution adopted by the present invention to solve the technical problem is: constructing a smart watch, comprising a main body mounted in a first casing, the first casing comprising a base and a circular boss disposed on the front surface of the base; The front surface of the boss is provided with a time display surface; the smart watch further comprises an annular second casing which is rotatably sleeved around the boss on the boss, and the side of the second casing is provided with a camera assembly.
  • the camera assembly is rotatably disposed on the second housing, and the rotation direction of the camera assembly is perpendicular to the rotation direction of the second housing.
  • a second sealing element is disposed between the camera assembly and the second housing.
  • the host includes a first processor, a first electrode connected to the first processor exposed from the first housing to the second housing, a first power source connected to the first processor, and a first The first of a power connection a second charging module, wherein the second housing is connected to the camera assembly, and the second electrode is exposed from the second housing and is in contact with the first electrode, so as to achieve the first contact between the first electrode and the second electrode.
  • a wired connection between a processor and a camera assembly
  • a first sealing element is disposed between the first housing and the second housing of the main body, and the first electrode and the second electrode are within a sealing range of the first sealing element.
  • the host comprises a first processor and a first wireless transmission transceiver connected to the first processor
  • the second housing is provided with a second processor connected to the camera component and connected to the first processor a first power source, a first wireless charging module coupled to the first power source, and a second wireless transmission transceiver coupled to the second processor to transmit signals between the first wireless transmission transceiver and the second wireless transmission transceiver
  • a wireless connection between the first processor and the second processor is implemented.
  • the second housing is further provided with a second memory connected to the second processor, a second power source, and a second wireless charging connected to the second power source. Module.
  • the first housing is a sealed waterproof structure
  • the second housing and the camera assembly form a sealed waterproof structure
  • the second housing and the boss are engaged by a guiding mechanism disposed around the boss to effect rotation of the second housing.
  • the camera assembly includes a camera body and a link, and both ends of the link are rotatably coupled to the second housing and the camera body, respectively, and the rotating shafts at both ends are parallel to each other.
  • the smart watch includes a second shooting button for controlling shooting of the camera assembly, the shooting button is disposed on the first housing and is connected to the first processor or disposed on the second housing and coupled to the second processor Or; or, the display surface of the day is a display screen and can display a virtual first shooting button that controls shooting of the camera assembly.
  • the first housing is provided with a GPS module connected to the first processor, a wireless transmission module, an oxygen detection module, a human blood oxygen content detection module, a water pressure detection module, a gyroscope and/or a positioning An alarm signal device for transmitting signals by a base station.
  • a GPS module connected to the first processor, a wireless transmission module, an oxygen detection module, a human blood oxygen content detection module, a water pressure detection module, a gyroscope and/or a positioning An alarm signal device for transmitting signals by a base station.
  • the smart watch includes a watch strap attached to the first housing.
  • the technical solution of the present invention has at least the following beneficial effects:
  • the smart watch is provided with a camera component, which has the function of displaying the time of the watch and can be photographed, can be carried and photographed at any time, is very convenient, and greatly increases the record. The opportunity for a beautiful situation.
  • FIG. 1 is a top plan view of a smart watch in a preferred embodiment of the present invention.
  • FIG. 2 is a left side view of the smart watch of FIG. 2.
  • FIG. 3 is a left side view of the smart watch of FIG. 2 (the second housing is omitted).
  • FIG. 4 is a top plan view of the smart watch of FIG. 1 (the first housing and the strap are omitted).
  • FIG. 5 is a partial exploded view of a camera assembly and a first housing of a smart watch in a preferred embodiment of the present invention.
  • FIG. 6 is a partial exploded view of a camera assembly and a first housing of a smart watch in another preferred embodiment of the present invention.
  • FIG. 7 is a schematic structural view of a smart watch in a preferred embodiment of the present invention.
  • FIG. 8 is a schematic structural view of a smart watch in another preferred embodiment of the present invention.
  • first housing 11. base, 12. boss, 12a. time display surface, 13. guiding mechanism, 2. second housing, 21. second processor, 22. second Power supply, 23. second memory, 24. second wireless transmission transceiver, 25. second wireless charging module, 26. second electrode, 3. camera assembly, 31. camera body, 32. connecting rod, 33. rotating shaft 4. Second shooting button, 5. Strap, 61. First processor, 62. First power, 63. First memory, 64. First wireless transceiver, 65. First wireless charging module, 66 . The first electrode.
  • a smart watch in a preferred embodiment of the present invention includes a main body mounted in a first housing 1, and the first housing 1 includes a base 11 and a circle provided on the front surface of the base 11.
  • the boss 12 is provided with a time display surface 12a on the front surface of the boss 12.
  • the smart watch further includes an annular second casing 2 that is rotatably sleeved around the boss 12 on the boss 12, and a side of the second casing 2 is provided with a camera assembly 3. Therefore, the smart watch not only has the function of displaying the time of the watch but also can be photographed, and can be carried around and taken with the camera, which is very convenient, greatly increasing the chance of recording a beautiful scene. And the camera assembly 3 can be rotated with the second housing 2 to change the imaging direction, making the shooting mode more free.
  • the camera assembly 3 is rotatably disposed on the second housing 2, and the rotation direction of the camera assembly 3 is perpendicular to the rotation direction of the second housing 2, thereby passing
  • the rotation of the second housing 2 and the rotation of the camera assembly 3 can adjust the imaging angle of the camera assembly 3 to a greater extent.
  • the specific structure may be as follows, the side of the second casing 2 is provided with a concave position, and the camera assembly 3 is disposed in the concave position to form a ring body with the second casing 2, and the two ends of the camera assembly 3 can be rotated to the second The two housings 2 are connected.
  • the specific structure may also be as follows, the second housing 2 is curved, and the two ends of the camera assembly 3 are respectively connected with the curved ends of the second housing 2, and the two form a ring body, and the two camera assemblies 3 The end is rotatably coupled to the second housing 2.
  • a second sealing element is disposed between the camera assembly 3 and the second casing 2 to form a seal between the camera assembly 3 and the second casing 2, and moisture is prevented from the camera assembly 3 when it is in contact with water. It enters between the second housing 2 and the second housing 2.
  • the second sealing member is not limited here as long as it can satisfy the seal between the camera assembly 3 and the second housing 2, for example, it can be various sealing jaws.
  • the host and the camera assembly 3 are connected by a wired connection, as follows.
  • the host includes a first processor 61, a first memory 63 connected to the first processor 61, a first electrode 66 connected from the first housing 1 to the second housing 2 and connected to the first processor 61, and a first power source 62 connected to the first processor 61 and a first wireless charging module 65 connected to the first power source 62, and the second housing 2 is provided with a camera unit 3 connected to the second housing 2
  • the second electrode 26 in contact with the first electrode 66 to achieve a wired connection between the first processor 61 and the camera assembly 3 by the contact between the first electrode 66 and the second electrode 26, and may pass the first
  • the power source 62 supplies power to the camera assembly 3 without having to provide an independent power source in the second housing 2.
  • the first memory 63 is used to store information from other electronic devices, such as captured photos and videos, and the like, and the first power source 62 can be charged by sensing with the first wireless charging module 65 by an external charging device. Further, a first sealing element is disposed between the first housing 1 and the second housing 2 of the main body, and the first electrode 66 and the second electrode 26 are within the sealing range of the first sealing element. Therefore, the smart watch is sealed and waterproof as a whole, and can be used underwater to view the daytime and shooting. [0036] As shown in FIG. 8, in some embodiments, the host and camera assembly 3 are connected by wireless connection, as follows.
  • the host includes a first processor 61, a first memory 63 connected to the first processor 61, a first power source 62 connected to the first processor 61, a first wireless charging module 65 connected to the first power source 62, and a first wireless transmission transceiver 64 connected to a processor 61.
  • the second housing 2 is provided with a second processor 21 connected to the camera assembly 3, a second memory 23 connected to the second processor 21, and a second The second wireless transmission transceiver 24 connected by the processor 21 implements between the first processor 61 and the second processor 21 by signal transmission between the first wireless transmission transceiver 64 and the second wireless transmission transceiver 24.
  • the second housing 2 is further provided with a second memory 23 connected to the second processor 21, a second power source 22, and a second wireless charging module 25 connected to the second power source 22.
  • the first memory 63 is configured to store information from the first processor 61;
  • the smart watch includes two charging modules, that is, a first wireless charging module 65 and a second wireless charging module 25, and the first charging device and the first wireless charging device respectively
  • the wireless charging module 65 and the second wireless charging module 25 sense that the first power source 62 and the second power source 22 can be paired and charged respectively;
  • the second memory 23 is configured to store information from the second processor 21, such as a photograph taken. And videos, etc.
  • the first housing 1 is a sealed waterproof structure
  • the second housing 2 and the camera assembly 3 constitute a sealed waterproof structure.
  • the smart watch is sealed and waterproof as a whole, and can be used for underwater time and shooting.
  • the first wireless transmission transceiver 64 and the second wireless transmission transceiver 24 can be implemented by using the prior art, and details are not described herein; the first wireless charging module 65 and the second wireless charging module 25 can be configured to be externally charged.
  • the induction coil of the device is implemented by the prior art and will not be described here.
  • the second housing 2 and the boss 12 are engaged by a guide mechanism 13 provided around the boss 12 to effect the rotation of the second housing 2.
  • the guiding mechanism 13 can be specifically disposed between the second housing 2 and the base portion 11.
  • the base portion 11 is provided with a guide rail or a guiding groove disposed around the boss 12, and the second housing 2 cooperates with the guiding rail or the guiding slot to realize the first The rotation of the two housings 2.
  • the guiding mechanism 13 may be specifically disposed between the second housing 2 and the boss 12.
  • the side wall of the boss 12 is provided with a rail or a guiding groove surrounding the boss 12, and the second housing 2 and the rail Or the guide groove cooperates to effect the rotation of the second housing 2. As shown in FIG.
  • the guiding mechanism 13 includes an arcuately recessed guiding groove provided on the side wall of the boss 12, and the inner ring of the ring body formed by the second casing 2 and the camera assembly 3.
  • the side wall is arranged in cooperation with the guiding groove.
  • the camera assembly 3 includes a rotating shaft 33 that links the camera and the second housing 2 through the wires.
  • the rotating shaft 33 can complete the rotation of 90 degrees, or can be folded by the rotating shaft 33 to achieve the purpose of folding and extending.
  • the shaft 33 can wrap the sealing material to achieve a waterproof effect.
  • the structure of the camera assembly 3 and the second housing 2 can be as shown in FIG. 6.
  • the camera assembly 3 includes a camera body 31 and a connecting rod 32. Both ends of the connecting rod 32 are respectively connected to the second housing 2 and the camera body.
  • the camera body 31 and the connecting rod 32 may specifically be as follows.
  • the number of the connecting rods 32 is two, and two ends of one of the connecting rods 32 are respectively rotatably connected with one end of the camera body 31 and the first housing 1 , and the other connecting rod
  • the two ends of the camera 32 are respectively rotatably connected to the other end of the camera body 31 and the first housing 1; and a third sealing member is disposed between the camera body 31 and the link 32 to realize the camera body 31 and the link 32.
  • the seal is sealed to prevent moisture from entering between the two when in contact with water.
  • the electronic components in the camera body 31 and the second casing 2 may be connected by wires, and the wires protrude from the second casing 2 and pass through the links 32 to be connected to the camera body 31.
  • the smart watch further includes a second shooting button 4 for controlling the shooting of the camera assembly 3.
  • the shooting button is disposed on the first housing 1 and is connected to the first processor 61 or disposed on the second housing 2. And connected to the second processor 21, wherein the host can include a timing component, and the inter-turn display surface 12a is transparent to observe the timing component through the inter-turn display surface 12a, thereby displaying the time; or, the time display surface 12a It is a display screen connected to the first processor 61 and can display a virtual first photographing button that controls the photographing of the camera assembly 3. Thereby, the camera unit 3 is controlled to shoot by triggering the second shooting button 4 or the first shooting button.
  • the first housing 1 is provided with a GPS module connected to the first processor 61, a wireless transmission module, an oxygen detection module, a human blood oxygen content detection module, and a water pressure.
  • the GPS module can be used to locate the smart watch outdoors; the wireless transmission module is used for wireless connection with an external device to transmit data between the smart watch and the external device, such as wirelessly transmitting photos or videos captured by the smart watch to the external device.
  • the oxygen detection module is used for detecting the oxygen content in the water in the water; the human blood oxygen content detecting module is used for detecting the blood oxygen content in the human body, so that when the user uses the smart watch to dive, the human blood oxygen content can be used to reflect the human body.
  • the gyroscope determines whether the user is suitable to continue to stay in the water. If it is not suitable, it needs to leave the water as soon as possible; when the user wears the smart watch to move, the gyroscope can judge the direction of the user and pass the first A processor 61 determines the motion state of the user. For example, when the user runs the smart watch, the gyroscope and the first processor 61 can determine the number of running steps of the user; when the user is outdoors, the GPS can be used.
  • the module is positioned to: when the user swims in the scene in which the positioning base station is installed, the first processor 61 comprehensively determines whether the user is through information from the oxygen detecting module, the human blood oxygen content detecting module, and/or the water pressure detecting module. It is suitable to stay in the water. If it is not suitable, the alarm signal device can send an alarm signal to the positioning base station to remind the safety management personnel to pay attention to the safety of the user. From the perspective of safety management of the swimming place, this ensures the safety of the swimmer. .
  • the GPS module, the wireless transmission module, the oxygen detection module, the human blood oxygen content detection module, the water pressure detection module, the gyroscope, and the alarm signal device for transmitting signals with the positioning base station can be implemented by using the prior art, and details are not described herein.
  • the smart watch further includes a watch band 5 attached to the first casing 1 for being worn on the hand by the watch band 5.
  • the smart watch of the present invention is provided with a camera assembly 3, which has the function of displaying the daytime display of the watch and can be photographed, can be carried around and photographed at any time, is very convenient, and greatly increases the chance of recording beautiful scenes.
  • the camera assembly 3 can be rotated with the second housing 2 to change the imaging direction, making the shooting mode more free. Further, the camera assembly 3 is rotatably disposed on the second casing 2, and the camera angle of the camera assembly 3 can be adjusted in a wider range; the smart watch is sealed and waterproof as a whole, and can be used underwater to view the daytime and shooting. Wait.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
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Abstract

一种智能手表,包括装在第一壳体(1)内的主机,第一壳体(1)包括基部(11)以及设在基部(11)正面的圆形凸台(12),凸台(12)的正面设有时间显示面(12a);该智能手表还包括可围绕凸台(12)转动地套设在凸台(12)上的环状的第二壳体(2),第二壳体(2)的侧部装有摄像头组件(3),摄像头组件(3)包括连接摄像头组件(3)和第二壳体(2)的可以通过导线的转动轴(33),转动轴(33)部可以包裹密封材料达到防水效果。该智能手表设有摄像头组件(3),既具有手表的显示时间的功能又能拍摄,可随身携带并随时拍摄,十分方便,大大增加了记录美好情景的机会。

Description

发明名称:智能手表
技术领域
[0001] 本发明涉及手表领域, 尤其是涉及一种智能手表。
背景技术
[0002] 现有的很多手表虽然可随身随时佩戴, 正面临被智能手机取代。 由于不具备摄 像头, 遇到想要记录的情景却又无法记录, 无法在需要吋拍照。
[0003] 有智能眼镜带有摄像头, 可以随吋随身携带, 但由于对周边人员的影响负面, 不适合在公众场所佩戴。
[0004] 此外, 很多小型摄像设备不防水, 不能满足有水环境拍摄的需求。
[0005] 现有的摄像设备中虽然有防水的, 但多不便随身随吋携带, 需要事先准备, 预 先知道为了去拍摄才携带或佩戴, 无法做到在没有事先预备的情况下随身携带 技术问题
[0006] 本发明要解决的技术问题在于, 针对现有技术中的上述缺陷, 提供一种可摄像 的智能手表。
问题的解决方案
技术解决方案
[0007] 本发明解决其技术问题所釆用的技术方案是: 构造一种智能手表, 包括装在第 一壳体内的主机, 第一壳体包括基部以及设在基部正面的圆形凸台, 凸台的正 面设有时间显示面; 该智能手表还包括可围绕凸台转动地套设在凸台上的环形 的第二壳体, 第二壳体的侧部装有摄像头组件。
[0008] 优选地, 摄像头组件可转地设在第二壳体上, 摄像头组件的转动方向垂直于第 二壳体的转动方向。
[0009] 优选地, 摄像头组件与第二壳体之间设有第二密封元件。
[0010] 优选地, 主机包括第一处理器、 从第一壳体中向第二壳体露出的与第一处理器 连接的第一电极、 与第一处理器连接的第一电源以及与第一电源连接的第一无 线充电模块, 第二壳体中设有与摄像头组件连接的从第二壳体中向外露出的与 第一电极接触的第二电极, 以通过第一电极与第二电极的接触来实现第一处理 器与摄像头组件之间的有线连接;
[0011] 主机第一壳体与第二壳体之间设有第一密封元件, 第一电极与第二电极在第一 密封元件的密封范围内。
[0012] 优选地, 主机包括第一处理器以及与第一处理器连接的第一无线传输收发器, 第二壳体中设有与摄像头组件连接的第二处理器、 与第一处理器连接的第一电 源、 与第一电源连接的第一无线充电模块以及与第二处理器连接的第二无线传 输收发器以通过第一无线传输收发器与第二无线传输收发器之间的信号传输来 实现第一处理器与第二处理器之间的无线连接; 第二壳体中还设有与第二处理 器连接的第二存储器、 第二电源以及与第二电源连接的第二无线充电模块。
[0013] 第一壳体是密封防水结构的, 第二壳体与摄像头组件构成密封防水结构。
[0014] 优选地, 第二壳体与凸台之间通过围绕凸台设置的导向机构来配合以实现第二 壳体的转动。
[0015] 优选地, 摄像头组件包括摄像头主体和连杆, 连杆的两端分别与第二壳体和摄 像头主体可转地连接并且两端的转轴相互平行。
[0016] 优选地, 该智能手表包括控制摄像头组件拍摄的第二拍摄按键,拍摄按键设在第 一壳体上并与第一处理器连接或设在第二壳体上并与第二处理器连接; 或者, 吋间显示面为显示屏并且可显示控制摄像头组件拍摄的虚拟的第一拍摄按键。
[0017] 优选地, 第一壳体中设有与第一处理器连接的 GPS模块、 无线传输模块、 氧气 检测模块、 人体血氧含量检测模块、 水压检测模块、 陀螺仪和 /或与定位基站传 输信号的报警信号装置。
[0018] 优选地, 该智能手表包括连接在第一壳体上的表带。
发明的有益效果
有益效果
[0019] 实施本发明的技术方案, 至少具有以下的有益效果: 智能手表设有摄像头组件 , 既具有手表的显示时间的功能又能拍摄, 可随身携带并随时拍摄, 十分方便 , 大大增加了记录美好情景的机会。 对附图的简要说明
附图说明
[0020] 下面将结合附图及实施例对本发明作进一步说明, 附图中:
[0021] 图 1是本发明一优选实施例中的智能手表的俯视示意图。
[0022] 图 2是图 2中的智能手表的左视示意图。
[0023] 图 3是图 2中的智能手表的左视示意图 (省略第二壳体) 。
[0024] 图 4是图 1中的智能手表的俯视示意图 (省略第一壳体和表带) 。
[0025] 图 5是本发明一优选实施例中的智能手表的摄像头组件和第一壳体的局部*** 示意图。
[0026] 图 6是本发明另一优选实施例中的智能手表的摄像头组件和第一壳体的局部爆 炸示意图。
[0027] 图 7是本发明一优选实施例中的智能手表的结构示意图。
[0028] 图 8是本发明另一优选实施例中的智能手表的结构示意图。
[0029] 其中, 1.第一壳体, 11.基部, 12.凸台, 12a.时间显示面, 13.导向机构, 2.第二 壳体, 21.第二处理器, 22.第二电源, 23.第二存储器, 24.第二无线传输收发器 , 25.第二无线充电模块, 26.第二电极, 3.摄像头组件, 31.摄像头主体, 32.连杆 , 33.转动轴, 4.第二拍摄按键, 5.表带, 61.第一处理器, 62.第一电源, 63.第一 存储器, 64.第一无线传输收发器, 65.第一无线充电模块, 66.第一电极。
发明实施例
本发明的实施方式
[0030] 为了对本发明的技术特征、 目的和效果有更加清楚的理解, 现对照附图详细说 明本发明的具体实施方式。 在本发明的智能手表的描述中, 需要理解的是, "前" 、 "后"、 "上"、 "下"、 "正面"、 "背面"等术语仅是为了便于描述本发明的技术方 案, 而不是指示所指的装置或元件必须具有特定的方位, 因此不能理解为对本 发明的限制。
[0031] 如图 1-6所示, 本发明一个优选实施方式中的智能手表, 包括装在第一壳体 1内 的主机, 第一壳体 1包括基部 11以及设在基部 11正面的圆形凸台 12, 凸台 12的正 面设有时间显示面 12a。 [0032] 该智能手表还包括可围绕凸台 12转动地套设在凸台 12上的环形的第二壳体 2, 第二壳体 2的侧部装有摄像头组件 3。 所以该智能手表既具有手表的显示时间的 功能又能拍摄, 可随身携带并随吋拍摄, 十分方便, 大大增加了记录美好情景 的机会。 并且摄像头组件 3可随第二壳体 2转动以改变摄像方向, 使得拍摄方式 更自由。
[0033] 如图 1、 4、 5所示, 优选地, 摄像头组件 3可转地设在第二壳体 2上, 摄像头组 件 3的转动方向垂直于第二壳体 2的转动方向, 从而通过第二壳体 2的转动和摄像 头组件 3的转动, 可以更大范围地调整摄像头组件 3的摄像角度。 具体结构可如 下, 第二壳体 2的侧部设有凹位, 摄像头组件 3设在该凹位中以与第二壳体 2组成 一个环体, 摄像头组件 3的两端可转地与第二壳体 2连接。 此外, 具体结构也可 如下, 第二壳体 2呈弧形, 摄像头组件 3的两端分别与第二壳体 2的弧形的两端连 接, 两者组成一个环体, 摄像头组件 3的两端可转地与第二壳体 2连接。
[0034] 优选地, 摄像头组件 3与第二壳体 2之间设有第二密封元件, 以在摄像头组件 3 与第二壳体 2之间形成密封, 在遇水吋防止水分从摄像头组件 3与第二壳体 2之间 进入其中。 在此不对第二密封元件做限定, 只要能满足摄像头组件 3与第二壳体 2之间的密封即可, 例如其可为各种密封圏。
[0035] 如图 7所示, 在一些实施例中, 主机与摄像头组件 3通过有线连接方式连接, 具 体如下。 主机包括第一处理器 61、 与第一处理器 61连接的第一存储器 63、 从第 一壳体 1中向第二壳体 2露出的与第一处理器 61连接的第一电极 66、 与第一处理 器 61连接的第一电源 62以及与第一电源 62连接的第一无线充电模块 65, 第二壳 体 2中设有与摄像头组件 3连接的从第二壳体 2中向外露出的与第一电极 66接触的 第二电极 26, 以通过第一电极 66与第二电极 26之间的接触来实现第一处理器 61 与摄像头组件 3之间的有线连接, 并可通过第一电源 62给摄像头组件 3供电, 不 必在第二壳体 2中再设独立的电源。 第一存储器 63用于存储来自其它电子器件的 信息, 例如拍摄到的相片和视频等; 而通过外部充电设备与第一无线充电模块 6 5进行感应, 可向第一电源 62充电。 进一步地, 主机第一壳体 1与第二壳体 2之间 设有第一密封元件, 第一电极 66与第二电极 26在第一密封元件的密封范围内。 从而该智能手表整体都密封防水, 可在水下用来看吋间和拍摄等。 [0036] 如图 8所示, 在一些实施例中, 主机与摄像头组件 3通过无线连接方式连接, 具 体如下。 主机包括第一处理器 61、 与第一处理器 61连接的第一存储器 63、 与第 一处理器 61连接的第一电源 62、 与第一电源 62连接的第一无线充电模块 65以及 与第一处理器 61连接的第一无线传输收发器 64, 第二壳体 2中设有与摄像头组件 3连接的第二处理器 21、 与第二处理器 21连接的第二存储器 23以及与第二处理器 21连接的第二无线传输收发器 24以通过第一无线传输收发器 64与第二无线传输 收发器 24之间的信号传输来实现第一处理器 61与第二处理器 21之间的无线连接 ; 第二壳体 2中还设有与第二处理器 21连接的第二存储器 23、 第二电源 22以及与 第二电源 22连接的第二无线充电模块 25。 第一存储器 63用于存储来自第一处理 器 61的信息; 该智能手表包括两个充电模块, 即是第一无线充电模块 65和第二 无线充电模块 25, 而通过外部充电设备分别与第一无线充电模块 65和第二无线 充电模块 25进行感应, 可分别向第一电源 62和第二电源 22配对充电; 第二存储 器 23用于存储来自第二处理器 21的信息, 例如拍摄到的相片和视频等。 进一步 地, 第一壳体 1是密封防水结构的, 第二壳体 2与摄像头组件 3构成密封防水结构 。 从而该智能手表整体都密封防水, 可在水下用来看时间和拍摄等。 其中, 第 一无线传输收发器 64和第二无线传输收发器 24可通过现有技术实现, 在此不再 赘述; 第一无线充电模块 65和第二无线充电模块 25可包括用于与外部充电设备 感应的感应线圈, 此可通过现有技术实现, 在此不再赘述。
[0037] 如图 3所示, 优选地, 第二壳体 2与凸台 12之间通过围绕凸台 12设置的导向机构 13来配合以实现第二壳体 2的转动。 导向机构 13具体可设在第二壳体 2与基部 11 之间, 例如基部 11上设有围绕凸台 12设置的导轨或导向槽, 第二壳体 2与该导轨 或导向槽配合来实现第二壳体 2的转动。 此外, 导向机构 13具体也可设在第二壳 体 2与凸台 12之间, 例如凸台 12的侧壁上设有围绕凸台 12的导轨或导向槽, 第二 壳体 2与该导轨或导向槽配合来实现第二壳体 2的转动。 如图 3所示, 在本实施例 中, 导向机构 13包括设在凸台 12侧壁上的呈弧形凹陷的导向槽, 第二壳体 2和摄 像头组件 3所构成的环体的内圈侧壁与导向槽配合设置。
[0038] 优选地, 摄像头组件 3包括链接摄像头和第二壳体 2的可以通过导线的转动轴 33 。 转动轴 33可以完成 90度转动, 或由转动轴 33组串接达到折叠延伸目的, 转动 轴 33可以包裹密封材料达到防水效果。 具体而言, 摄像头组件 3和第二壳体 2的 结构可如图 6所示, 摄像头组件 3包括摄像头主体 31和连杆 32, 连杆 32的两端分 别与第二壳体 2和摄像头主体 31可转地连接并且两端的转轴相互平行, 从而通过 翻转连杆 32和摄像头主体 31可实现更灵活地调整摄像角度, 并可实现摄像头组 件 3的伸出和收起。 摄像头主体 31和连杆 32具体可如下, 连杆 32的数量为两个, 其中一个连杆 32的两端分别与摄像头主体 31的一端和第一壳体 1可转地连接, 另 一个连杆 32的两端分别与摄像头主体 31的另一端和第一壳体 1可转地连接; 并且 摄像头主体 31与连杆 32之间设有第三密封元件, 以实现摄像头主体 31与连杆 32 之间的密封, 防止遇水时水分从两者之间进入其中。 此外, 摄像头主体 31与第 二壳体 2中的电子元件可通过导线连接, 导线从第二壳体 2中伸出并穿过连杆 32 以实现与摄像头主体 31连接。
[0039] 优选地, 该智能手表还包括控制摄像头组件 3拍摄的第二拍摄按键 4,拍摄按键设 在第一壳体 1上并与第一处理器 61连接或设在第二壳体 2上并与第二处理器 21连 接, 其中, 主机可包括计时组件, 而吋间显示面 12a为透明的以透过吋间显示面 1 2a观察到计时组件, 从而显示时间; 或者, 时间显示面 12a为与第一处理器 61连 接的显示屏并且可显示控制摄像头组件 3拍摄的虚拟的第一拍摄按键。 从而通过 触发第二拍摄按键 4或第一拍摄按键来控制摄像头组件 3拍摄。
[0040] 如图 7、 8所示, 优选地, 第一壳体 1中设有与第一处理器 61连接的 GPS模块、 无线传输模块、 氧气检测模块、 人体血氧含量检测模块、 水压检测模块、 陀螺 仪和 /或与定位基站传输信号的报警信号装置。 GPS模块可用于在户外对智能手 表定位; 无线传输模块用于与外部设备进行无线连接, 以在智能手表与外部设 备之间传输数据, 例如将智能手表拍摄到的相片或视频无线传输到外部设备; 氧气检测模块用于在水中吋检测水中含氧量; 人体血氧含量检测模块用于检测 人体内血氧含量, 从而当使用者潜水使用该智能手表时可通过人体血氧含量来 反映人体的身体状态, 进而判断是否适合继续潜水; 水压检测模块可用于在水 下时检测水压; 陀螺仪用于判断佩戴该智能手表的使用者的运动方向; 报警信 号装置用于与定位基站传输智能手机的各种信息。 具体而言, 当使用者在水中 使用该智能手表时, 通过结合氧气检测模块、 人体血氧含量检测模块和 /或水压 检测模块检测到的信息综合来判断使用者是否适合继续待在水中, 若是不适合 则需尽快离水; 当使用者戴着该智能手表运动时, 陀螺仪可判断使用者的运动 方向进而通过第一处理器 61判断使用者的运动状态, 例如使用者戴着该智能手 表跑步时, 通过陀螺仪和第一处理器 61可判断使用者的跑步步数; 当使用者在 户外时, 可通过 GPS模块来定位; 当使用者在周围安装有定位基站的场景中游泳 吋, 第一处理器 61通过来自氧气检测模块、 人体血氧含量检测模块和 /或水压检 测模块的信息综合判断使用者是否适合继续待在水中, 若是不适合, 则报警信 号装置可向定位基站发送报警信号, 以提醒安全管理人员注意使用者的安全, 从游泳场所的安全管理角度来说, 这样保障了泳客的安全。 其中, GPS模块、 无 线传输模块、 氧气检测模块、 人体血氧含量检测模块、 水压检测模块、 陀螺仪 以及与定位基站传输信号的报警信号装置可通过现有技术实现, 在此不再赘述
[0041] 优选地, 该智能手表还包括连接在第一壳体 1上的表带 5 , 以通过表带 5戴在手 上。
[0042] 综上所述, 本发明的智能手表设有摄像头组件 3, 既具有手表的显示吋间的功 能又能拍摄, 可随身携带并随时拍摄, 十分方便, 大大增加了记录美好情景的 机会, 并且摄像头组件 3可随第二壳体 2转动以改变摄像方向, 使得拍摄方式更 自由。 进一步地, 摄像头组件 3可转地设在第二壳体 2上, 可以更大范围地调整 摄像头组件 3的摄像角度; 该智能手表整体都密封防水, 可在水下用来看吋间和 拍摄等。
[0043] 以上所述仅为本发明的优选实施例而已, 并不用于限制本发明, 对于本领域的 技术人员来说, 本发明可以有各种更改、 组合和变化。 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, 均应包含在本发明的权利要求 范围之内。

Claims

一种智能手表, 包括装在第一壳体 (1) 内的主机, 其特征在于, 所 述第一壳体 (1) 包括基部 (11) 以及设在所述基部 (11) 正面的圆 形凸台 (12) , 所述凸台 (12) 的正面设有吋间显示面 (12a) ; 还包括可围绕所述凸台 (12) 转动地套设在所述凸台 (12) 上的环形 的第二壳体 (2) , 所述第二壳体 (2) 的侧部装有摄像头组件 (3) 根据权利要求 1所述的智能手表, 其特征在于, 所述摄像头组件 (3) 可转地设在所述第二壳体 (2) 上, 所述摄像头组件 (3) 的转动方向 垂直于所述第二壳体 (2) 的转动方向。
根据权利要求 2所述的智能手表, 其特征在于, 所述摄像头组件 (3) 与所述第二壳体 (2) 之间设有第二密封元件。
根据权利要求 3所述的智能手表, 其特征在于, 所述主机包括第一处 理器 (61) 、 从所述第一壳体 (1) 中向所述第二壳体 (2) 露出的与 所述第一处理器 (61 ) 连接的第一电极 (66) 、 与所述第一处理器 ( 61 ) 连接的第一电源 (62) 以及与所述第一电源 (62) 连接的第一无 线充电模块 (65) , 所述第二壳体 (2) 中设有与所述摄像头组件 (3 ) 连接的从所述第二壳体 (2) 中向外露出的与所述第一电极 (66) 接触的第二电极 (26) , 以通过所述第一电极 (66) 与所述第二电极
(26) 的接触来实现所述第一处理器 (61) 与所述摄像头组件 (3) 之间的有线连接;
所述主机第一壳体 (1 ) 与所述第二壳体 (2) 之间设有第一密封元件 , 所述第一电极 (66) 与所述第二电极 (26) 在所述第一密封元件的 密封范围内。
根据权利要求 3所述的智能手表, 其特征在于, 所述主机包括第一处 理器 (61) 以及与所述第一处理器 (61 ) 连接的第一无线传输收发器 (64) , 所述第二壳体 (2) 中设有与所述摄像头组件 (3) 连接的第 二处理器 (21) 、 与所述第一处理器 (61) 连接的第一电源 (62) 、 与所述第一电源 (62) 连接的第一无线充电模块 (65) 以及与所述第 二处理器 (21) 连接的第二无线传输收发器 (24) 以通过所述第一无 线传输收发器 (64) 与所述第二无线传输收发器 (24) 之间的信号传 输来实现所述第一处理器 (61) 与所述第二处理器 (21) 之间的无线 连接;
所述第二壳体 (2) 中还设有与所述第二处理器 (21) 连接的第二存 储器 (23) 、 第二电源 (22) 以及与所述第二电源 (22) 连接的第二 无线充电模块 (25) 。
所述第一壳体 (1) 是密封防水结构的, 所述第二壳体 (2) 与所述摄 像头组件 (3) 构成密封防水结构。
根据权利要求 4或 5所述的智能手表, 其特征在于, 所述第二壳体 (2 ) 与所述凸台 (12) 之间通过围绕所述凸台 (12) 设置的导向机构 ( 13) 来配合以实现所述第二壳体 (2) 的所述转动。
根据权利要求 4或 5所述的智能手表, 其特征在于, 所述摄像头组件 ( 3) 包括摄像头主体 (31) 和连杆 (32) , 所述连杆 (32) 的两端分 别与所述第二壳体 (2) 和所述摄像头主体 (31) 可转地连接并且两 端的转轴相互平行。
根据权利要求 4或 5所述的智能手表, 其特征在于, 包括控制所述摄像 头组件 (3) 拍摄的第二拍摄按键 (4) ,所述拍摄按键设在所述第一 壳体 (1 ) 上并与所述第一处理器 (61) 连接或设在所述第二壳体 (2 ) 上并与所述第二处理器 (21) 连接;
或者, 所述吋间显示面 (12a) 为显示屏并且可显示控制所述摄像头 组件 (3) 拍摄的虚拟的第一拍摄按键。
根据权利要求 4或 5所述的智能手表, 其特征在于, 所述第一壳体 (1 ) 中设有与所述第一处理器 (61) 连接的 GPS模块、 无线传输模块、 氧气检测模块、 人体血氧含量检测模块、 水压检测模块、 陀螺仪和 / 或与定位基站传输信号的报警信号装置。
根据权利要求 4或 5所述的智能手表, 其特征在于, 包括连接在第一壳
mm (I) t
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CN205080369U (zh) * 2015-10-27 2016-03-09 郑州锐达信息技术有限公司 一种智能手表

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