WO2020063026A1 - 一种具有摄像功能的智能穿戴设备 - Google Patents

一种具有摄像功能的智能穿戴设备 Download PDF

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Publication number
WO2020063026A1
WO2020063026A1 PCT/CN2019/095278 CN2019095278W WO2020063026A1 WO 2020063026 A1 WO2020063026 A1 WO 2020063026A1 CN 2019095278 W CN2019095278 W CN 2019095278W WO 2020063026 A1 WO2020063026 A1 WO 2020063026A1
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WIPO (PCT)
Prior art keywords
bracket
smart wearable
wearable device
main body
camera
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Application number
PCT/CN2019/095278
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English (en)
French (fr)
Inventor
胥干
齐磊
金祖涛
Original Assignee
广东小天才科技有限公司
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Family has litigation
First worldwide family litigation filed litigation Critical https://patents.darts-ip.com/?family=67118184&utm_source=google_patent&utm_medium=platform_link&utm_campaign=public_patent_search&patent=WO2020063026(A1) "Global patent litigation dataset” by Darts-ip is licensed under a Creative Commons Attribution 4.0 International License.
Application filed by 广东小天才科技有限公司 filed Critical 广东小天才科技有限公司
Publication of WO2020063026A1 publication Critical patent/WO2020063026A1/zh

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    • GPHYSICS
    • G04HOROLOGY
    • G04GELECTRONIC TIME-PIECES
    • G04G17/00Structural details; Housings
    • G04G17/02Component assemblies
    • G04G17/04Mounting of electronic components
    • GPHYSICS
    • G04HOROLOGY
    • G04GELECTRONIC TIME-PIECES
    • G04G21/00Input or output devices integrated in time-pieces

Definitions

  • the present invention relates to the technical field of smart devices, and in particular, to a smart wearable device with a camera function.
  • the existing smart watch usually sets a camera on the upper surface of the host, so that the smart watch can realize shooting.
  • a setting method there are many inconveniences when shooting with a smart watch.
  • the camera needs to be placed on the smart watch to capture the position of the human face in order to shoot.
  • This operation is more troublesome; for example, because The camera and display of the smart watch are usually set on the upper surface of the host, so when the user is shooting the scene in front, he can only point the camera at the front scene. At this time, the user can only see the host of the smart watch. And you ca n’t view the scenes shot in real time from the monitor, so you ca n’t accurately shoot the scenes you want.
  • the embodiment of the invention discloses a smart wearable device with a camera function.
  • the device body of the smart wearable device has a reversible function, which can enable the camera device of the smart wearable device to obtain different shooting angles, and greatly improve the smart wearable device. Ease of use.
  • the present invention provides a smart wearable device with a camera function.
  • the smart wearable device includes
  • a stent comprising a first end and a second end opposite to each other;
  • connection structure including a fixing member and a rotating member rotatably connected to the fixing member, the fixing member is fixed at the first end of the bracket;
  • a device main body the device main body is provided with a camera device, and the device main body is fixedly connected to the rotating member, so that the device body can rotate relative to the bracket, so that the camera device obtains different shooting angles; as well as
  • a wearing component two ends of which are respectively connected to the first end of the bracket and the second end of the bracket.
  • the camera device includes a front camera device and / or a rear camera device.
  • the device main body includes a connection end and a free end opposite to each other, the connection end is fixedly connected to the rotating member, and the free end is provided with the Camera.
  • an end of the free end is provided with a hollow fixing structure, and the camera device is provided in the fixing structure.
  • the device main body includes an upper surface and a lower surface opposite to each other, and the fixing structure has a first opening with an opening direction facing the upper surface and an opening direction facing The second opening of the lower surface
  • the camera device includes the front camera device and the rear camera device, the front camera device realizes framing through the first opening, and the rear camera device passes The second opening realizes framing.
  • the first opening and the second opening are respectively provided with a first lens and a second lens, and an upper surface of the first lens is flush or lower than The upper surface of the device body and the upper surface of the second lens are flush or lower than the lower surface of the device body.
  • the device main body includes a main casing having a receiving cavity and a face cover embedded with a display screen and connected to the main casing, and the display The screen covers the opening of the accommodating cavity of the main casing, and the fixing structure is provided on an outer periphery of the display screen.
  • the smart wearable device further includes a damping structure provided on the rotating member, and the damping structure is configured to provide rotation of the device body relative to the bracket. Force to any angle.
  • the bracket is a flat plate structure or a wire frame structure.
  • the bracket is a wire frame structure, and the wire frame structure includes two spaced-apart bending rods, and the bending rods include a first abutting portion. And a second abutting portion, the first abutting portions of the two bent rods are correspondingly connected to form the first end of the bracket; the second abutting portions of the two bent rods Correspondingly connected to form the second end of the bracket.
  • the smart wearable device further includes a first wearable connection portion and a second wearable connection portion, and the first abutting portions of the two bending rods are both Connected to the first wearing connecting portion to form the first end of the bracket, the fixing member is fixed on the first wearing connecting portion, and the second of the two bent rod members
  • the docking portion is connected to the second wearing connection portion to form the second end of the bracket, and two ends of the wearing component are respectively connected to the first wearing connection portion and the second wearing connection portion.
  • An embodiment of the present invention provides a smart wearable device with a camera function.
  • the device body of the smart wearable device can be rotated at any angle relative to the bracket through the connection structure, so that the camera device on the device body can obtain different shooting angles, which greatly facilitates users to use the smart wearable device to shoot at different angles.
  • the smart wearable device is provided with a front camera device and a rear camera device respectively on the upper surface and the lower surface of the device body, so that the user can select different camera devices in different scenarios (such as: taking a selfie or shooting a scene in front) Shooting, and can accurately view the picture to be shot by rotating the main body of the device, which greatly improves the camera convenience of the smart wearable device.
  • Embodiment 1 is a schematic structural diagram of a smart wearable device disclosed in Embodiment 1 of the present invention in a flipped state;
  • Embodiment 2 is a schematic structural diagram of the smart wearable device disclosed in Embodiment 1 of the present invention from another perspective in a flipped state;
  • FIG. 3 is a schematic structural diagram of a smart wearable device disclosed in Embodiment 1 of the present invention in a non-reversed state;
  • FIG. 4 is a schematic structural diagram of a device body of a smart wearable device according to an embodiment of the present invention.
  • FIG. 5 is a schematic structural diagram of a connection structure of a smart wearable device disclosed in Embodiment 1 of the present invention.
  • FIG. 6 is a schematic structural diagram of a damping structure of a smart wearable device disclosed in Embodiment 1 of the present invention.
  • connection structure (omitting a fixing member) of a smart wearable device disclosed in Embodiment 1 of the present invention
  • FIG. 8 is a schematic structural diagram of a smart wearable device disclosed in Embodiment 2 of the present invention.
  • installation should be interpreted in a broad sense.
  • it can be a fixed connection, a detachable connection, or a monolithic structure; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, or it can be two devices, components, or components. Internal connectivity.
  • the specific meanings of the above terms in the present invention can be understood according to specific situations.
  • first means two or more.
  • An embodiment of the present invention provides a smart wearable device with a camera function, which includes a stand 1, a connection structure 2, a device main body 3, and a wearing component 4.
  • the bracket 1 includes a first end 10 a and a second end 10 b opposite to each other.
  • the connection structure 2 includes a fixing member 21 and a rotating member rotatably connected to the fixing member 21.
  • the fixing member 21 is fixed to the first end of the bracket 1. 10a.
  • the device main body 3 is provided with an imaging device, and the device main body 3 is fixedly connected to the rotating member, so that the device main body 3 can rotate relative to the bracket 1, so that the camera device obtains different shooting angles.
  • the two ends of the wearing component 4 are respectively connected to the first end 10 a of the bracket 1 and the second end 10 b of the bracket 1.
  • the device main body 3 can be rotated at any angle with respect to the bracket 1, and the angle can be any angle within 0 to 180 °, for example: 0 ° (that is, the state where the device main body 3 is placed in the bracket 1), 15 °, 30 °, 45 °, 60 °, 90 °, 120 °, 145 °, 150 °, 160 °, 165 °, 170 °, 175 ° or 180 °.
  • the bracket 1 plays a role of supporting the device main body 3, connecting the device main body 3, and the wearing component 4.
  • the bracket 1 may be a wire frame structure, which is beneficial to saving materials.
  • the bracket 1 includes two bent rod members 11 spaced apart, and the bent rod member 11 includes a first butting portion 111 and a second butting portion 112.
  • the two first butting portions 111 are correspondingly connected to form the bracket 1. ⁇ ⁇ ⁇ 10a ⁇ The first end 10a.
  • the two abutting portions 112 are correspondingly connected to form a second end 10 b of the bracket 1.
  • the bent rod member 11 may include a rod holding portion 113, and two ends of the rod holding portion 113 are respectively connected to the first butting portion 111 and the second butting portion 112, and the rod holding portion 113 113 is used for clamping the device main body 3 when the device main body 3 is not rotated relative to the bracket 1 to fix the device main body 3 on the bracket 1.
  • the rod holding portion 113 can be formed by bending the rod 11 and the device main body 3 is not rotated relative to the bracket 1, it means that when the device main body 3 is placed on the bracket 1, the device main body is not included 3 When holding the current state after rotating an arbitrary angle with respect to the bracket 1.
  • the smart wearable device further includes a first wearable connection portion 7 and a second wearable connection portion 8.
  • the two first docking portions 111 are both connected to the first wearable connection portion 7 to form a first end 10 a of the bracket 1.
  • the two second docking portions 112 are both connected to the second wearing connecting portion 8 to form the second end 10 b of the bracket 1.
  • the first wearing connecting portion 7 includes a first surface 71 and a second surface (not shown) opposite to each other.
  • the fixing member 21 is fixed on the first surface 71.
  • One end of the wearing component 4 is connected to the second surface.
  • the other end of the wearing component 4 is connected to the second wearing connecting portion 8.
  • the two ends of the wearable component 4 are rotatably connected with the first wearable connection portion 7 and the second wearable connection portion 8 through the second rotating shaft 41, that is, the wearable component 4
  • the two ends can be rotated relative to the first wearing connecting portion 7 and the second wearing connecting portion 8 respectively, so as to rotate relative to the bracket 1.
  • the device main body 3 and the wearing part 4 are non-coaxial design, so that when the device main body 3 or the wearing part 4 rotates relative to the stand 1, the two are independent of each other and do not interfere with each other, which is convenient for users to wear or disassemble the device.
  • the smart wearable device is also convenient for the user to keep the wearable part 4 and the stand 1 stationary when the user rotates the device main body 3, so as to prevent the wearable part 4 from following the rotation and affecting the wearing effect or wearing comfort.
  • the smart wearable device is a smart watch
  • the wearable component 4 is a watchband.
  • the smart wearable device can be worn on the hand and has a variety of smart functions.
  • the device body can be used as the host of the smart watch.
  • the device main body 3 may include a motherboard component, a display component, a plurality of sensors, and an identification module, and the display component, the plurality of sensors, and the identification module are all electrically connected to the motherboard.
  • the sensor includes a plurality of sensors such as a distance sensor, a gravity sensor, a heart rate sensor, a temperature and humidity sensor, and a pressure sensor, so that the smart wearable device can implement distance detection, gesture detection, heart rate monitoring, temperature and humidity detection, and pressure detection.
  • the recognition module includes a face recognition module and a fingerprint recognition module.
  • the main board controls the display interface of the smart wearable device to unlock and certain function settings or operations through the face recognition module and the fingerprint recognition module, which greatly improves the security of the smart wearable device.
  • the device main body 3 can implement various intelligent functions of the smart watch and can perform various intelligent operations. Therefore, the device main body 3 of the present invention is different from the traditional watch and can only realize a single time display, Timed dial structure.
  • the device main body 3 can be rotated relative to the bracket 1, that is, the user can adjust the angle of the device main body 3 toward himself according to the actual use needs, so that the user can view the display screen 34 on the device main body 3 or use the
  • the camera device on the device main body 3 performs shooting and code scanning, and also facilitates when a user uses the smart wearable device for a video call, because the device main body 3 is turned away from the hand skin, the heat of the device main body 3 is not transmitted to the hand skin , And reduce the impact of the arm on the communication signal.
  • the device main body 3 includes a main casing 37 and a cover 38 connected to the main casing 37, and the main casing 37 has a receiving cavity (not shown), a main board component, a sensor, and an identification module. All are set in the accommodation cavity.
  • a display screen 34 is embedded in the cover 38, and the display screen 34 covers an opening of the receiving cavity of the main casing 37.
  • the apparatus main body 3 further includes an upper surface 32 and a lower surface 33 which are oppositely disposed.
  • the upper surface 32 of the device body may be a side facing the display screen 34, and the lower surface 33 may be a side facing away from the display screen 34.
  • the face cover 38 can protect the display screen 34, and the upper surface of the face cover 38 can be a part of the upper surface 32 of the device body 3, and the device body 3
  • the lower surface 33 is disposed toward the bracket 1.
  • the device main body 3 further includes a connection end 35 and a free end 36 opposite to each other, and the connection end 35 is fixedly connected to the rotating member, and the free end 36 is provided with a camera device.
  • a hollow fixing structure 39 is provided at an end of the free end 36.
  • the fixing structure 39 is provided on an outer periphery of the display screen 34.
  • the camera device is provided in the fixing structure 39.
  • the number of the camera devices may be one or two.
  • the camera devices are two, and may include a front camera device and a rear camera device.
  • the fixing structure 39 has a first opening 39a and a second opening 39b.
  • the opening direction of the first opening 39a is toward the upper surface 32
  • the opening direction of the second opening 39b is toward the lower surface 39b
  • the camera of the front camera device It is arranged near the first opening 39a, so that the front camera can view through the first opening 39a
  • the camera of the rear camera is arranged near the second opening 39b, so that the rear camera can view through the second opening 39b.
  • the front camera device can be used for shooting. Specifically, the user turns the device body 3 until the camera of the front camera device is aligned. The user's face; when the user needs to capture the front scene, the rear camera can be used to shoot. Specifically, the user can turn the device body 3 to align the camera of the rear camera to the front scene.
  • the camera of the front camera is disposed toward the upper surface 32 of the device body 3, and the upper surface of the display screen 34 is a part of the upper surface of the device body 3, that is, the direction of the camera of the front camera and the display screen It is consistent, thereby ensuring that when the upper surface 32 of the device main body 3 faces the user, whether the user turns the device main body 3 to an arbitrary angle or adopts a front camera device or a rear camera device, the user can view the camera picture through the display screen 34.
  • the first opening 39a and the second opening 39b are respectively provided with a first The lens 61 and the second lens 62.
  • the upper surface of the first lens 61 is flush or lower than the upper surface 32 of the device main body 3.
  • the upper surface of the second lens 62 is flush or lower than the device main body 3. ⁇ ⁇ ⁇ 33 ⁇ The lower surface 33.
  • a gasket (not shown) is provided on the second wearing connection portion 8, and the gasket is provided on the wearing component 4.
  • the side facing the device body 3, and the size of the spacer matches the second lens 62, so that when the device body 3 is placed on the bracket 1, the spacer can fill the upper surface of the second lens 62 lower than the device body 3
  • the lower surface 33 is provided as a recessed portion, and the gasket can be attached to the second lens 62.
  • the smart wearable device can interact with the camera device by flipping the device body 3.
  • the flip of the device body 3 can control the activation of the camera device.
  • a sensor provided inside the device body 3 senses The device main body 3 is turned over. At this time, the sensor sends an electric signal to the main board assembly, so that the main board assembly controls the camera device to start.
  • the fixing member 21 includes a bracket fixing portion 211 and a shaft connecting portion 212 fixedly connected to the bracket fixing portion 211.
  • the fixing member 21 is fixed to the bracket 1.
  • the shaft connecting portion 212 is a hollow columnar structure.
  • the shaft connecting portion 212 is provided with a through slot penetrating from the top end to the bottom end, and the through groove forms a hollow portion of the shaft connecting portion 212.
  • the rotating member 212 includes a first rotating shaft 221, and the first rotating shaft 221 passes through the hollow portion of the rotating shaft connecting portion 212, so that the rotating member is provided on the first end 10 a of the bracket 1 through the fixing member 21, and realizes the rotating member and
  • the fixing member 21 is rotatably connected, so that when the device main body 3 is fixed to both ends of the first rotating shaft 221, the device main body 3 can rotate relative to the bracket 1 due to the rotation of the rotating member relative to the fixing member 21.
  • a first rotation portion 222 and a second rotation portion 223 are respectively provided at both ends of the first rotation shaft 221. It is fixedly connected to the device body 3.
  • the first rotating portion 222 and the second rotating portion 223 each include a first connection portion 222a and a second connection portion 222b fixedly connected to the first connection portion 222a. Both the first connection portions 222a are used to communicate with the device.
  • the main body 3 is fixedly connected, the two second connecting portions 222b are both ring-shaped structures, and both ends of the first rotating shaft 221 are respectively fixed to the hollow portions of the second connecting portion 222b.
  • a hollow portion of the second connecting portion 222b of the first rotating portion 222 is provided with a fixing groove (not shown), One end of the first rotating shaft 221 is located in a hollow portion of the second connecting portion 222b and is engaged with the fixing groove.
  • the other end of the first rotating shaft 221 passes through the hollow portion of the second connecting portion 222b of the second rotating portion 223, and the smart wearable device further includes a fastener 224, which is sleeved on another of the first rotating shaft 221.
  • the fastener 224 and the second connecting portion 222b of the second rotating portion 223 are affixed to a side away from the first rotating portion 222.
  • the device main body 3 is provided with a groove 31 (as shown in FIG. 5) at a position corresponding to the first end 10a of the bracket 1.
  • the above bracket is fixed
  • the portion 211, the first rotation portion 222, the second connection portion 222b of the second rotation portion 223, and the fastener 224 are all located in the groove.
  • the smart wearable device further includes a damping structure 5 provided on the first rotating shaft 221, and the damping structure 5 is used to provide a force for keeping the device main body 3 relative to the bracket 1 to an arbitrary angle.
  • the device main body 3 Adopting the design of the damping structure, the device main body 3 can stop rotating when it is rotated to an arbitrary angle with respect to the bracket 1, and always maintain the angle relative to the bracket 1, so that the user does not need to manually swing his arm to adjust the placement position of the entire smart wearable device, so that The user checks the display screen of the device main body 3 or accurately aligns and shoots a scene, which greatly improves the convenience of the smart wearable device.
  • the damping structure 5 includes two elastic washers, which are respectively disposed on two ends of the first rotating shaft 221, and the hollow portions of the above-mentioned rotating shaft fixing portion 212 The inner wall surface is in contact with two elastic washers.
  • the damping structure 5 is provided with an elastic washer between the first rotating shaft 221 and the rotating shaft fixing portion 212 to increase the friction between the first rotating shaft 221 and the rotating shaft fixing portion 212, thereby enabling The device body 3 can be rotated relative to the bracket 1 by an arbitrary angle.
  • the damping structure 5 includes an elastic member 51, a first concave-convex wheel 52 and a second concave-convex wheel 53.
  • the elastic member 51 is threaded through the first rotating shaft 221, and one end of the elastic member 51 is connected to the first rotating portion 222.
  • the first concave-convex wheel 52 is slidably disposed on the first rotating shaft 221, and the first concave-convex wheel 52 is connected to the other end of the elastic member 51.
  • the second concave-convex wheel 53 is fixed on the first rotating shaft 221 and is in contact with the first concave-convex wheel 52 so that the elastic member 51 is pressed between the first concave-convex wheel 52 and the first rotating portion 222.
  • the elastic member 51 is used to keep the device main body 3 rotated to an arbitrary angle relative to the bracket 1 when the device main body 3 rotates relative to the bracket 1 and drives the second concave and convex wheel 53 to separate from the first concave and convex wheel 52. force.
  • the first concave-convex wheel 52 is slidably disposed on the first rotating shaft 221, the first concave-convex wheel 52 is slidable relative to the first rotating shaft 221, and because the first rotating shaft 221 is inserted into the hollow portion of the rotating shaft fixing portion 212 That is, the first concave-convex wheel 52 slides on the hollow portion of the rotating shaft fixing portion 212.
  • the shape of the first concave-convex wheel 52 matches the cross-sectional shape of the hollow portion of the rotating shaft fixing portion 212 so that the outer surface of the first concave-convex wheel 52 can fit the inner wall surface of the hollow portion of the rotating shaft fixing portion 212. 52 can slide relative to the rotating shaft fixing portion 212, so that the rotating shaft fixing portion 212 can guide the first concave-convex wheel 52.
  • the first concave-convex wheel 52 includes an inclined surface 52a
  • the second concave-convex wheel 53 abuts on the inclined surface 52a or is rotatably separated from the inclined surface 52a.
  • the initial state that is, when the device body is not rotated relative to the bracket, as shown in FIG. 2
  • the second concave-convex wheel 53 abuts on the inclined surface 52 a.
  • the elastic member 51 is compressed on the first concave-convex wheel 51.
  • the first rotating portion 222 that is, the elastic member 51 is in a compressed state.
  • the first rotating shaft 221 rotates and the second concave-convex wheel 53 fixed on the first rotating shaft 221 rotates under the driving of the device main body 3.
  • the second concave-convex wheel 53 is rotated in a direction away from the inclined surface 52 a until it is separated from the inclined surface 52 a, the inclined surface 52 a of the first concave-convex wheel 52 is not subject to the force of the second concave-convex wheel 53, so that it acts on the elastic member 51.
  • the pressing force on the surface disappears, and the elastic member 51 can be extended toward the second concave-convex wheel 53 under its own elastic force and cause the first concave-convex wheel 52 to slide along the first rotation axis 221 toward the second concave-convex wheel 53.
  • the inclined surface 52a of the first concave-convex wheel contacts the second concave-convex wheel 53 again, and the balance between the elastic member 51, the first concave-convex wheel 52 and the second concave-convex wheel 53 is reached.
  • the second concave-convex wheel 53 The rotation is stopped, so that the first rotating shaft 221 stops rotating, and then the device main body 3 stops rotating, and the current rotation angle of the device main body 3 relative to the bracket 1 remains unchanged.
  • An embodiment of the present invention provides a smart wearable device with a camera function.
  • the device body of the smart wearable device can be rotated at any angle relative to the bracket through the connection structure, so that the camera device on the device body can obtain different shooting angles, which greatly facilitates users to use the smart wearable device to shoot at different angles.
  • the smart wearable device is provided with a front camera device and a rear camera device respectively on the upper surface and the lower surface of the device body, so that the user can select different camera devices in different scenarios (such as: taking a selfie or shooting a scene in front). Shooting, and can accurately view the picture to be shot by rotating the main body of the device, which greatly improves the camera convenience of the smart wearable device.
  • a smart wearable device with a camera function is different from the smart wearable device provided in the first embodiment in that the bracket 1 of this embodiment adopts a flat plate structure, that is, the structure of the bracket 1 For a complete plate-like structure.
  • the other structures of this embodiment are the same as those described in the first embodiment, and will not be repeated here.
  • a smart wearable device with a camera function provided by this embodiment adopts a flat plate structure as a bracket structure.
  • the contact area between the bottom surface of the device main body and the upper surface of the bracket is large, which is conducive to enhancement. Carrying capacity of the bracket.

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Abstract

一种具有摄像功能的智能穿戴设备,包括支架(1)、连接结构(2)、设备主体(3)以及穿戴部件(4)。支架(1)包括相对设置的第一端(10a)以及第二端(10b)。该连接结构(2)包括固定件(21)以及与固定件(21)转动连接的转动件,固定件(21)固设于支架(1)的第一端(10a)。该设备主体(3)设有摄像装置,且设备主体(3)与转动件固接,以使设备主体(3)能够相对支架(1)转动,进而使得摄像装置获得不同的拍摄角度。该穿戴部件(4)的两端分别与支架(1)的第一端(10a)以及支架(1)的第二端(10b)连接。该智能穿戴设备具有设备主体(3)可翻转的功能,能够使得该智能穿戴设备的摄像装置获得不同的拍摄角度,极大提高该智能穿戴设备的使用便捷性。

Description

一种具有摄像功能的智能穿戴设备 技术领域
本发明涉及智能设备技术领域,具体涉及一种具有摄像功能的智能穿戴设备。
背景技术
近年来,随着智能穿戴设备(如智能手表、智能手环、智能眼镜等)越来越被广泛应用于人们的日常生活中,智能穿戴设备的功能也越来越多样化,如:通话、拍摄等功能。其中,拍摄功能尤其受到人们的关注。
以智能手表为例,现有的智能手表通常将摄像头设在主机的上表面,以使智能手表能够实现拍摄。但是,采用这样的设置方式,在利用智能手表进行拍摄时,存在诸多不便。例如,当用户需要自拍时,由于智能手表佩戴在手上,所以,需要将手臂摆放至智能手表上的摄像头能够捕捉到人脸的位置才能进行拍摄,这样的操作较麻烦;又如,由于智能手表的摄像头及显示屏通常都设置在主机的上表面上,所以,当用户在拍摄前方的场景时,只能将摄像头对准前方的场景,此时,用户只能看到智能手表的主机的背面,而无法从显示屏中查看实时拍摄的场景,从而无法准确地拍摄所需的场景。
发明内容
本发明实施例公开一种具有摄像功能的智能穿戴设备,该智能穿戴设备的设备主体具有可翻转的功能,能够使得该智能穿戴设备的摄像装置获得不同的拍摄角度,极大提高该智能穿戴设备的使用便捷性。
为了达到上述目的,本发明提供了一种具有摄像功能的智能穿戴设备,所述智能穿戴设备包括
支架,所述支架包括相对设置的第一端以及第二端;
连接结构,所述连接结构包括固定件以及与所述固定件转动连接的转动件,所述固定件固设于所述支架的所述第一端;
设备主体,所述设备主体设有摄像装置,且所述设备主体与所述转动件固接,以使所述设备主体能够相对所述支架转动,进而使得所述摄像装置获得不同的拍摄角度;以及
穿戴部件,所述穿戴部件的两端分别与所述支架的所述第一端以及所述支架的所述第二端连接。
作为一种可选的实施方式,在本发明实施例中,所述摄像装置包括前置摄像装置和/或后置摄像装置。
作为一种可选的实施方式,在本发明实施例中,所述设备主体包括相对设置的连接端以及自由端,所述连接端与所述转动件固接,所述自由端设有所述摄像装置。
作为一种可选的实施方式,在本发明实施例中,所述自由端的端部设有中空的固定结构,所述摄像装置设于所述固定结构内。
作为一种可选的实施方式,在本发明实施例中,所述设备主体包括相对设置的上表面和下表面,所述固定结构具有开口方向朝向所述上表面的第一开口和开口方向朝向所述下表面的第二开口,所述摄像装置包括所述前置摄像装置和所述后置摄像装置,所述前置摄像装置通过所述第一开口实现取景,所述后置摄像装置通过所述第二开口实现取景。
作为一种可选的实施方式,在本发明实施例中,所述第一开口和所述第二开口分设有第一镜片和第二镜片,所述第一镜片的上表面齐平或低于所述设备主体的所述上表面,所述第二镜片的上表面齐平或低于所述设备主体的所述下表面。
作为一种可选的实施方式,在本发明实施例中,所述设备主体包括具有容置腔的主壳体及嵌设有显示屏并与所述主壳体连接的面盖,所述显示屏封盖所述主壳体的所述容置腔的开口,所述固定结构设于所述显示屏的外周。
作为一种可选的实施方式,在本发明实施例中,所述智能穿戴设备还包括设于所述转动件的阻尼结构,所述阻尼结构用于提供保持所述设备主体相对所述支架转动至任意角度的作用力。
作为一种可选的实施方式,在本发明实施例中,所述支架为平板结构或者线框结构。
作为一种可选的实施方式,在本发明实施例中,所述支架为线框结构,所述线框结构包括两间隔设置的弯折杆件,所述弯折杆件包括第一对接部以及第二对接部,两所述弯折杆件的所述第一对接部对应配合连接,以形成所述支架的所述第一端;两所述弯折杆件的所述第二对接部对应配合连接,以形成所述支架的所述第二端。
作为一种可选的实施方式,在本发明实施例中,所述智能穿戴设备还包括第一穿戴连接部以及第二穿戴连接部,两所述弯折杆件的所述第一对接部均连接于所述第一穿戴连接部,以形成所述支架的所述第一端,所述固定件固设于所述第一穿戴连接部上,两所述弯折杆件的所述第二对接部均连接于所述第二穿戴连接部,以形成所述支架的所述第二端,所述穿戴部件的两端分别与所述第一穿戴连接部以及所述第二穿戴连接部连接。
与现有技术相比,本发明实施例具有以下有益效果:
本发明实施例提供的一种具有摄像功能的智能穿戴设备。该智能穿戴设备的设备主体能够通过连接结构相对支架转动任意角度,从而使得该设备主体上的摄像装置能够获得不同的拍摄角度,极大便于用户采用智能穿戴设备进行不同角度的拍摄。
此外,该智能穿戴设备在设备主体的上表面及下表面分别设置有前置摄像装置及后置摄像装置,使得用户在不同情景下(如:自拍或者拍前方景物)可以选择不同的摄像装置进行拍摄,并能够通过转动设备主体对所需拍摄的画面进行准确取景,极大提高智能穿戴设备的摄像便捷性。
附图说明
为了更清楚地说明本发明实施例中的技术方案,下面将对实施例中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是本发明实施例一公开的智能穿戴设备在翻转状态下的结构示意图;
图2是本发明实施例一公开的智能穿戴设备在翻转状态下的另一视角的结构示意图;
图3是本发明实施例一公开的智能穿戴设备在非翻转状态下的结构示意图;
图4是本发明实施例公开的智能穿戴设备的设备主体的结构示意图;
图5是本发明实施例一公开的智能穿戴设备的连接结构的结构示意图;
图6是本发明实施例一公开的智能穿戴设备的一种阻尼结构的结构示意图;
图7是本发明实施例一公开的智能穿戴设备的连接结构(省略固定件)的结构示意图;
图8是本发明实施例二公开的智能穿戴设备的结构示意图。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
在本发明中,术语“上”、“下”、“左”、“右”、“前”、“后”、“顶”、“底”、“内”、“外”、“中”、“竖直”、“水平”、“横向”、“纵向”等指示的方位或位置关系为基于附图所示的方位或位置关系。这些术语主要是为了更好地描述本发明及其实施例,并非用于限定所指示的装置、元件或组成部分必须具有特定方位,或以特定方位进行构造和操作。
并且,上述部分术语除了可以用于表示方位或位置关系以外,还可能用于表示其他含义,例如术语“上”在某些情况下也可能用于表示某种依附关系或连接关系。对于本领域普通技术人员而言,可以根据具体情况理解这些术语在本发明中的具体含义。
此外,术语“安装”、“设置”、“设有”、“连接”、“相连”应做广义理解。例如,可以是固定连接,可拆卸连接,或整体式构造;可以是机械连接,或电连接;可以是直接相连,或者是通过中间媒介间接相连,又或者是两个装置、元件或组成部分之间内部的连通。对于本领域普通技术人员而言,可以根据具体情况理解上述术语在本发明中的具体含义。
此外,术语“第一”、“第二”等主要是用于区分不同的装置、元件或组成部分(具体的种类和构造可能相同也可能不同),并非用于表明或暗示所指示装置、元件或组成部分的相对重要性和数量。除非另有说明,“多个”的含义为两个或两个以上。
实施例一
请一并参阅图1至图3,本发明实施例提供的一种具有摄像功能的智能穿戴设备,包括支架1、连接结构2、设备主体3以及穿戴部件4。该支架1包括相对设置的第一端10a以及第二端10b,该连接结构2包括固定件21以及与固定件21转动连接的转动件,该固定件21固设于该支架1的第一端10a。该设备主体3设有摄像装置,且设备主体3与转动件固接,以使该设备主体3能够相对支架1转动,进而使得摄像装置获得不同的拍摄角度。该穿戴部件4的两端分别与支架1的第一端10a以及支架1的第二端10b连接。
其中,设备主体3能够相对支架1转动任意角度,该角度可为0~180°内的任意角度,例如:0°(即,设备主体3置于支架1的状态)、15°、30°、45°、60°、90°、120°、145°、150°、160°、165°、170°、175°或180°。
在本实施例中,该支架1起到支撑设备主体3、连接设备主体3及穿戴部件4的作用。具体地,该支架1可为线框结构,有利于节省材料。该支架1包括两间隔设置的弯折杆件11,且该弯折杆件11包括第一对接部111以及第二对接部112,两该第一对接部111对应配合连接,以形成该支架1的第一端10a。同理,两该第二对接部112对应配合连接,以形成该支架1的第二端10b。为了增强支架的承载能力,弯折杆件11可包括杆件固持部113,该杆件固持部113的两端分别与第一对接部111以及第二对接部112连接,且该杆件固持部113用于在该设备主体3未相对该支架1转动时卡接该设备主体3,以将该设备主体3固定于支架1上。其中,该杆件固持部113可通过弯折杆件11弯折形成,且该设备主体3未相对该支架1转动时,指的是设备主体3置于支架1上的时候,不包括设备主体3相对支架1转动任意角度后保持当前状态的时候。
进一步地,该智能穿戴设备还包括第一穿戴连接部7以及第二穿戴连接部8,该两第一对接部111均连接于第一穿戴连接部7,以形成该支架1的第一端10a,且该两第二对接部112均连接于第二穿戴连接部8,以形成该支架1的第二端10b。该第一穿戴连接部7包括相对设置的第一表面71以及第二表面(未图示),该固定件21固设于该第一表面71上,该穿戴部件4的一端连接于第二表面上,该穿戴部件4的另一端连接于第二穿戴连接部8。采用上述设计,通过设置第一穿戴连接部7及第二穿戴连接部8,增强弯折杆件11对设备主体3的承载能力。
更进一步地,为了便于使用者佩戴该智能穿戴设备,该穿戴部件4的两端分别与第一穿戴连接部7及第二穿戴连接部8通过第二转轴41转动连接,即,穿戴部件4的两端可分别相对第一穿戴连接部7及第二穿戴连接部8发生转动,即可相对支架1发生转动。采用上述设置方式,设备主体3与穿戴部件4为非共轴设计,以使设备主体3或者穿戴部件4在相对支架1转动时,两者相互独立,互不干扰,便于使用者佩戴或者拆卸该智能穿戴设备,也便于使用者转动设备主体3时,穿戴部件4与支架1均保持静止状态,避免穿戴部件4也跟随转动而影响佩戴的效果或者佩戴的舒适度。
在本实施例中,该智能穿戴设备为智能手表,且该穿戴部件4为表带。该智能穿戴设备可佩戴在手上,其具有多种智能功能。且当智能穿戴设备为智能手表 时,设备主体可作为智能手表的主机使用。具体地,该设备主体3可包括主板组件、显示屏组件、多个传感器以及识别模块,且显示屏组件、多个传感器以及识别模块均与主板电连接。其中,传感器包括有距离传感器、重力传感器、心率传感器、温湿度传感器及压力传感器等多个传感器,以使该智能穿戴设备能够实现距离检测、手势检测、心率监测、温湿度检测及压力检测等多个智能功能。识别模块包括面部识别模块以及指纹识别模块,主板通过面部识别模块及指纹识别模块控制该智能穿戴设备的显示界面解锁及某些功能设置或操作,大大提高了该智能穿戴设备的安全性。
由此可知,该设备主体3可实现该智能手表的多种智能功能,且能够执行多种智能操作,因此,本发明的设备主体3是有别于传统的手表仅能够实现单一的时间显示、定时的表盘结构的。
在本实施例中,该设备主体3能够相对支架1转动,即,使用者可根据实际使用需求调节设备主体3朝向自己的角度,便于使用者查看设备主体3上的显示屏34或者利用设置在设备主体3上的摄像装置进行拍摄、扫码,还便于当用户采用该智能穿戴设备进行视频通话时,由于设备主体3翻转远离手部皮肤,所以设备主体3的热量不会传递至手部皮肤,且减少了手臂对通信信号的影响。
在本实施例中,该设备主体3包括主壳体37以及与主壳体37连接的面盖38,且该主壳体37具有容置腔(未图示),主板组件、传感器以及识别模块均设于该容置腔内。该面盖38上嵌设有显示屏34,该显示屏34封盖主壳体37的容置腔的开口。该设备主体3还包括相对设置的上表面32和下表面33。该设备主体的上表面32可为朝向该显示屏34的一面,而下表面33则为背离显示屏34的一面。
具体地,由于显示屏34嵌设于面盖38,面盖38可对显示屏34起到保护作用,且面盖38的上表面可作为设备主体3的上表面32的一部分,且设备主体3的下表面33朝向该支架1设置。
进一步地,该设备主体3还包括相对设置的连接端35以及自由端36,且该连接端35与转动件固接,该自由端36设有摄像装置。该自由端36的端部设有中空的固定结构39,且该固定结构39设于显示屏34的外周,该摄像装置设于固定结构39内。
更进一步地,请参阅图1及图4,该摄像装置的数量可为一个或者两个,优选地,摄像装置为两个,可包括前置摄像装置以及后置摄像装置。且该固定结构39具有第一开口39a以及第二开口39b,该第一开口39a的开口方向朝向上表面 32,该第二开口39b的开口方向朝向下表面39b,且该前置摄像装置的摄像头靠近第一开口39a设置,以使前置摄像装置能够通过第一开口39a实现取景,该后置摄像装置的摄像头靠近第二开口39b设置,以使后置摄像装置能够通过第二开口39b实现取景。
采用上述设计,便于用户在不同情况下使用摄像装置进行拍摄,如:在自拍情况下,可采用前置摄像装置进行拍摄,具体地,用户翻转设备主体3,直至前置摄像装置的摄像头对准用户的脸部;当用户需要拍摄前方的场景时,可采用后置摄像装置进行拍摄,具体地,用户可翻转设备主体3,以使后置摄像装置的摄像头对准前方场景。
此外,由于前置摄像装置的摄像头朝向设备主体3的上表面32设置,且显示屏34的上表面为设备主体3的上表面的一部分,即,前置摄像装置的摄像头与显示屏的朝向方向一致,从而保证了当设备主体3的上表面32朝向用户时,无论用户将设备主体3翻转至任意角度或者采用前置摄像装置还是后置摄像装置,用户均能通过显示屏34查看摄像画面。
在本实施例中,为了防止灰尘从第一开口39a以及第二开口39b进入设备主体3的容置腔内,同时也是为了保护摄像头,该第一开口39a及第二开口39b分别设有第一镜片61以及第二镜片62,该第一镜片61的上表面齐平或者低于该设备主体3的上表面32,同理,该第二镜片62的上表面齐平或者低于该设备主体3的下表面33。
具体地,当第二镜片62的上表面低于该设备主体3的下表面33设置时,在第二穿戴连接部8上设有垫片(未图示),该垫片设于穿戴部件4朝向设备主体3的一面上,且该垫片的大小与第二镜片62相匹配,以使设备主体3置于支架1上时,垫片能够填补第二镜片62的上表面低于设备主体3的下表面33设置而形成的凹陷部,且垫片能够与第二镜片62贴合。
在本实施例中,该智能穿戴设备可通过翻转设备主体3与摄像装置实现交互,例如:设备主体3的翻转可控制摄像装置的启动,具体地,当设备主体3内部设有的传感器感应到设备主体3被翻转,此时,传感器发送电信号至主板组件,以使主板组件控制摄像装置启动。
在本实施例中,请参阅2及图5,该固定件21包括支架固定部211以及与支架固定部211固接的转轴连接部212,该支架固定部211与该支架1的第一端10a固接,以使该固定件21固定于该支架1上。而该转轴连接部212为中空的柱状 结构,该转轴连接部212自其顶端开设有贯穿至其底端的通槽,该通槽形成转轴连接部212的中空部。该转动件212包括第一转轴221,该第一转轴221穿设于该转轴连接部212的中空部,使得转动件通过固定件21设在支架1的第一端10a上,并实现转动件与固定件21转动连接,从而当设备主体3固接于第一转轴221的两端时,设备主体3可通过由于转动件相对固定件21的转动而实现相对支架1转动。
请参阅图7,为了便于设备主体3相对支架1转动,该第一转轴221的两端分别设有第一转动部222以及第二转动部223,第一转动部222以及第二转动部223均与该设备主体3固接。具体地,该第一转动部222与第二转动部223均包括第一连接部222a以及与该第一连接部222a固接的第二连接部222b,两第一连接部222a均用于与设备主体3固接,两第二连接部222b均为环状结构,且第一转轴221的两端分别固定于第二连接部222b的中空部。当设备主体3在外力的作用下转动时,带动第一转动部222及第二转动部223转动,从而带动第一转轴221转动,以使设备主体3能够顺利地相对支架1转动。
更进一步地,为了使得该第一转动部222及第二转动部223与第一转轴221固定,该第一转动部222的第二连接部222b的中空部设有固定槽(未图示),第一转轴221的一端位于该第二连接部222b的中空部并与该固定槽卡接。第一转轴221的另一端穿过第二转动部223的第二连接部222b的中空部,且该智能穿戴设备还包括紧固件224,该紧固件224套设于第一转轴221的另一端上,紧固件224与第二转动部223的第二连接部222b远离第一转动部222的一面贴合。
在本实施例中,为了使得该智能穿戴设备的整体结构更紧凑,该设备主体3对应该支架1的第一端10a的位置设有凹槽31(如图5所示),上述的支架固定部211、第一转动部222及第二转动部223的第二连接部222b、紧固件224均位于该凹槽内。
在本实施例中,该智能穿戴设备还包括设于第一转轴221的阻尼结构5,该阻尼结构5用于提供保持该设备主体3相对支架1转动至任意角度的作用力。采用阻尼结构的设计,设备主体3可相对支架1转动至任意角度时停止继续转动,一直保持与支架1相对该角度,从而无需使用者手动摆动手臂调整整个智能穿戴设备的摆放位置,以便于使用者查看设备主体3的显示屏或者对某场景进行准确对准并拍摄,极大提高该智能穿戴设备的使用便捷性。
作为一种可选的实施方式,请参阅图6,该阻尼结构5包括两弹性垫圈,该 两弹性垫圈分别穿设于第一转轴221的两端,且上述的转轴固定部212的中空部的内壁面与两弹性垫圈抵接,该阻尼结构5通过在第一转轴221与转轴固定部212之间设置弹性垫圈,增加第一转轴221与转轴固定部212之间的摩擦力,从而起到能够使得设备主体3能够相对支架1转动任意角度的作用。
作为另一种可选的实施方式,请参阅图7,该阻尼结构5包括弹性件51、第一凹凸轮52以及第二凹凸轮53。该弹性件51穿设于第一转轴221,且该弹性件51的一端连接该第一转动部222。该第一凹凸轮52滑动穿设于第一转轴221,且该第一凹凸轮52连接于弹性件51的另一端。第二凹凸轮53固定穿设于第一转轴221并与第一凹凸轮52抵接,以使弹性件51压紧于第一凹凸轮52及第一转动部222之间。其中,该弹性件51用于在该设备主体3相对支架1转动并带动第二凹凸轮53转动至与第一凹凸轮52分离时,提供保持该设备主体3相对支架1转动至任意角度的作用力。
进一步地,由于第一凹凸轮52滑动穿设于第一转轴221,因此,该第一凹凸轮52可相对第一转轴221滑动,且由于第一转轴221穿设于转轴固定部212的中空部内,即,第一凹凸轮52在转轴固定部212的中空部滑动。第一凹凸轮52的形状与转轴固定部212的中空部的截面形状匹配,以使第一凹凸轮52的外表面能够贴合转轴固定部212的中空部的内壁面的同时,第一凹凸轮52又能相对转轴固定部212滑动,使得转轴固定部212对第一凹凸轮52起到导向的作用。
更进一步地,该第一凹凸轮52包括倾斜面52a,该第二凹凸轮53抵接于该倾斜面52a或者可转动与该倾斜面52a分离。具体地,初始状态下(即设备主体未相对支架转动时,如图2所示),第二凹凸轮53抵接于倾斜面52a上,此时,弹性件51被压缩于第一凹凸轮51和第一转动部222之间,即,弹性件51处于压缩状态。当设备主体3相对支架1转动时,在设备主体3的带动下,第一转轴221转动并带动固设于第一转轴221上的第二凹凸轮53转动。当第二凹凸轮53沿远离倾斜面52a的方向转动直至与倾斜面52a分离时,第一凹凸轮52的倾斜面52a上不受到第二凹凸轮53的作用力,从而使得作用在弹性件51上的挤压力消失,弹性件51可在其自身弹性作用力下往第二凹凸轮53的方向伸长并使得第一凹凸轮52沿着第一转轴221朝向第二凹凸轮53的方向滑动,直至第一凹凸轮的倾斜面52a再次与第二凹凸轮53抵接,弹性件51、第一凹凸轮52及第二凹凸轮53三者之间达到平衡,此时,第二凹凸轮53停止转动,从而使得第一转轴221停止转动,进而使得设备主体3停止转动,设备主体3相对支架1保持当前的转 动角度不变。
与现有技术相比,本发明实施例具有以下有益效果:
本发明实施例提供的一种具有摄像功能的智能穿戴设备。该智能穿戴设备的设备主体能够通过连接结构相对支架转动任意角度,从而使得该设备主体上的摄像装置能够获得不同的拍摄角度,极大便于用户采用智能穿戴设备进行不同角度的拍摄。
此外,该智能穿戴设备在设备主体的上表面及下表面分别设置有前置摄像装置及后置摄像装置,使得用户在不同情景下(如:自拍或者拍前方景物)可以选择不同的摄像装置进行拍摄,并能够通过转动设备主体对所需拍摄的画面进行准确取景,极大提高智能穿戴设备的摄像便捷性。
实施例二
请参阅图8,本发明实施例提供的一种具有摄像功能的智能穿戴设备,与实施例一提供的智能穿戴设备,区别在于:本实施例的支架1采用平板结构,即,支架1的结构为一块完整的板状结构。本实施例的其他结构与实施例一中描述的结构相同,在此不再赘述。
本实施例提供的一种具有摄像功能的智能穿戴设备,采用平板结构作为支架的结构,当设备主体置于支架上时,设备主体的底面与支架的上表面的接触面积较大,有利于增强支架的承载能力。
以上对本发明实施例公开的一种具有摄像功能的智能穿戴设备进行了详细介绍,本文中应用了具体个例对本发明的原理及实施方式进行了阐述,以上实施例的说明只是用于帮助理解本发明的一种具有摄像功能的智能穿戴设备及其核心思想;同时,对于本领域的一般技术人员,依据本发明的思想,在具体实施方式及应用范围上均会有改变之处,综上所述,本说明书内容不应理解为对本发明的限制。

Claims (11)

  1. 一种具有摄像功能的智能穿戴设备,其特征在于,所述智能穿戴设备包括
    支架,所述支架包括相对设置的第一端以及第二端;
    连接结构,所述连接结构包括固定件以及与所述固定件转动连接的转动件,所述固定件固设于所述支架的所述第一端;
    设备主体,所述设备主体设有摄像装置,且所述设备主体与所述转动件固接,以使所述设备主体能够相对所述支架转动,进而使得所述摄像装置获得不同的拍摄角度;以及
    穿戴部件,所述穿戴部件的两端分别与所述支架的所述第一端以及所述支架的所述第二端连接。
  2. 根据权利要求1所述的智能穿戴设备,其特征在于,所述摄像装置包括前置摄像装置和/或后置摄像装置。
  3. 根据权利要求2所述的智能穿戴设备,其特征在于,所述设备主体包括相对设置的连接端以及自由端,所述连接端与所述转动件固接,所述自由端设有所述摄像装置。
  4. 根据权利要求3所述的智能穿戴设备,其特征在于,所述自由端的端部设有中空的固定结构,所述摄像装置设于所述固定结构内。
  5. 根据权利要求4所述的智能穿戴设备,其特征在于,所述设备主体包括相对设置的上表面和下表面,所述固定结构具有开口方向朝向所述上表面的第一开口和开口方向朝向所述下表面的第二开口,所述摄像装置包括所述前置摄像装置和所述后置摄像装置,所述前置摄像装置通过所述第一开口实现取景,所述后置摄像装置通过所述第二开口实现取景。
  6. 根据权利要求5所述的智能穿戴设备,其特征在于,所述第一开口和所述第二开口分设有第一镜片和第二镜片,所述第一镜片的上表面齐平或低于所述设备主体的所述上表面,所述第二镜片的上表面齐平或低于所述设备主体的所述下表面。
  7. 根据权利要求1至6任一项所述的智能穿戴设备,其特征在于,所述设备主体包括具有容置腔的主壳体及嵌设有显示屏并与所述主壳体连接的面盖,所述显示屏封盖所述主壳体的所述容置腔的开口,所述固定结构设于所述显示屏的外周。
  8. 根据权利要求1所述的智能穿戴设备,其特征在于,所述智能穿戴设备还包括设于所述转动件的阻尼结构,所述阻尼结构用于提供保持所述设备主体相对所述支架转动至任意角度的作用力。
  9. 根据权利要求1至7任一项所述的智能穿戴设备,其特征在于,所述支架为平板结构或者线框结构。
  10. 根据权利要求9所述的智能穿戴设备,其特征在于,所述支架为线框结构,所述线框结构包括两间隔设置的弯折杆件,所述弯折杆件包括第一对接部以及第二对接部,两所述弯折杆件的所述第一对接部对应配合连接,以形成所述支架的所述第一端;两所述弯折杆件的所述第二对接部对应配合连接,以形成所述支架的所述第二端。
  11. 根据权利要求10所述的智能穿戴设备,其特征在于,所述智能穿戴设备还包括第一穿戴连接部以及第二穿戴连接部,两所述弯折杆件的所述第一对接部均连接于所述第一穿戴连接部,以形成所述支架的所述第一端,所述固定件固设于所述第一穿戴连接部上,两所述弯折杆件的所述第二对接部均连接于所述第二穿戴连接部,以形成所述支架的所述第二端,所述穿戴部件的两端分别与所述第一穿戴连接部以及所述第二穿戴连接部连接。
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