WO2023102976A1 - 一种拍照系统及智能穿戴设备 - Google Patents

一种拍照系统及智能穿戴设备 Download PDF

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Publication number
WO2023102976A1
WO2023102976A1 PCT/CN2021/138376 CN2021138376W WO2023102976A1 WO 2023102976 A1 WO2023102976 A1 WO 2023102976A1 CN 2021138376 W CN2021138376 W CN 2021138376W WO 2023102976 A1 WO2023102976 A1 WO 2023102976A1
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WIPO (PCT)
Prior art keywords
cover
photographing
main body
rotating shaft
device main
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PCT/CN2021/138376
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English (en)
French (fr)
Inventor
葛力源
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歌尔股份有限公司
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Publication of WO2023102976A1 publication Critical patent/WO2023102976A1/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
    • G04G17/00Structural details; Housings
    • G04G17/02Component assemblies
    • G04G17/04Mounting of electronic components
    • G04G17/045Mounting of the display

Definitions

  • the invention relates to the technical field of wearable devices, in particular to a camera system.
  • the invention also relates to a smart wearable device.
  • high-end smart watches can realize voice calls and caller ID in terms of calls, but because there is no camera, video calls cannot be realized, and video calls still need communication devices such as mobile phones.
  • the mobile phone has a front camera and a rear camera, the smart watch obviously cannot directly refer to the design of the camera on the mobile phone due to the limitation of wrist-worn design, volume, installation space and other factors.
  • a smart watch can only be connected to a mobile phone via Bluetooth, thereby indirectly realizing functions such as taking pictures, video recording, and video calling through the mobile phone.
  • the image captured by the camera of the mobile phone is displayed on the screen of the smart watch, and then the start and stop of operations such as taking pictures or recording videos of the mobile phone are controlled through the buttons on the smart watch.
  • the user needs to adjust the position and angle of the mobile phone while operating the smart watch, which makes the process of taking pictures and videos too cumbersome, and it is very inconvenient to operate the smart watch and mobile phone at the same time in actual use. The user experience is poor.
  • the purpose of the present invention is to provide a camera system, which can enable smart wearable devices to independently realize the camera and video function without the help of a mobile phone, simplify the camera and video operations, and improve user experience.
  • Another object of the present invention is to provide a smart wearable device.
  • the present invention provides a photographing system, which includes a front photographing part arranged on the upper surface of the device main body, rotatably arranged on the upper surface of the device main body, and used to expose the The cover body of the front camera component, and the display screen arranged on the upper surface of the cover body and connected with the signal signal of the front camera component for displaying its real-time shooting content.
  • the front camera component is embedded in the upper surface of the device body, and the outer end surface of the front camera component does not protrude from the upper surface of the device body.
  • the bottom surface of the cover covers the upper surface of the device main body in a horizontally rotatable manner
  • an eccentrically distributed rotating shaft is connected to the bottom surface of the cover, and the rotating shaft is rotatably inserted vertically into the upper surface of the device main body.
  • a through hole is opened at the corresponding position between the upper surface of the device main body and the rotating shaft, a bearing sleeve is installed in the through hole, and the rotating shaft is rotatably inserted in the bearing sleeve.
  • the inner ring of the bearing sleeve is provided with a lubricating sleeve for being sleeved on the outer ring of the rotating shaft for reducing friction.
  • the top end of the shaft is provided with a collar, and the collar is arranged in the installation groove opened on the bottom surface of the cover; the bottom end surface of the collar abuts against the top end surface of the bearing sleeve, And the bottom end of the rotating shaft is covered with a shaft end cover for pressing the bottom end surface of the bearing sleeve.
  • the bottom end surface of the bearing sleeve is embedded with a lubricating ring for reducing friction with the shaft end cover.
  • the cover is provided with an upper main board signal-connected to the display screen
  • the device main body is provided with a lower main board signal-connected to the front camera component
  • the rotating shaft is a hollow shaft
  • the A signal connection is formed between the upper main board and the lower main board through a data connection piece passing through the rotating shaft.
  • a ring-shaped brush is arranged on the surface of the lower main board, and the bottom end of the data connector extends into the ring-shaped brush.
  • a moving magnet is provided in the cover, and a first device that cooperates with the moving magnet and is used to fix the cover at its current position by magnetic force when it is in a non-rotating state is provided in the main body of the device. Locate the magnet.
  • a second positioning magnet for cooperating with the moving magnet and for stabilizing the cover at its current position by magnetic force when it is in a fully rotated state is provided in the main body of the device.
  • an in-position sensor connected to the front-facing photographing component for detecting the in-position state of the cover is further provided in the main body of the device, so that when the cover is not in the initial in-position state Keeping the front camera running.
  • the presence sensor is a Hall element, and a Hall magnet is arranged in the cover to cooperate with the Hall element for detection.
  • it also includes several side-mounted shooting components arranged on the side wall of the device main body, and each of the side-mounted shooting components is signal-connected to the display screen.
  • the side wall of the cover body is provided with a baffle plate extending downwards for covering each of the side-mounted shooting components in a non-rotated state.
  • the present invention also provides a smart wearable device, including a device body and a camera system arranged on the device body, wherein the camera system is specifically the camera system described in any one of the above.
  • the camera system provided by the present invention mainly includes a front camera component, a cover body and a display screen.
  • the front camera part is arranged on the upper surface of the device body, that is, the surface away from the wearing part, and is mainly used to obtain the shooting content directly in front of the device body to realize functions such as taking pictures or recording videos.
  • the cover body is arranged on the upper surface of the device main body, and can rotate on the device main body, and is mainly used to cover the upper surface of the device main body in a natural state (without rotation), so as to realize the airtightness of the device main body.
  • the display screen is set on the upper surface of the cover body, generally covers the upper surface of the cover body, and maintains a signal connection with the front-facing shooting part. It is mainly used to display basic information related to the main body of the device and realize functions such as human-computer interaction. , and when the cover is rotated in place, the display screen is mainly used to display the real-time shooting content of the front shooting part, which is convenient for users to view and adjust operations.
  • the photographing system provided by the present invention mainly realizes the photographing and video recording function of the smart wearable device through the front photographing part.
  • the display screen checks the shooting content of the front shooting part in real time.
  • the present invention enables the smart wearable device to independently realize the camera and video recording function without the use of other electronic products such as mobile phones, and at the same time greatly simplifies the camera and video recording operation and improves user experience.
  • Fig. 1 is a schematic diagram of the overall structure of a specific embodiment provided by the present invention.
  • Fig. 2 is a schematic structural view of the cover in a state of being rotated into place.
  • Fig. 3 is a longitudinal sectional view of Fig. 1 .
  • Fig. 4 is a cross-sectional view of the main body of the device.
  • Fig. 5 is a cross-sectional view of the cover.
  • FIG. 1 is a schematic diagram of the overall structure of a specific embodiment provided by the present invention.
  • the camera system mainly includes a front camera component 2 , a cover body 3 and a display screen 4 .
  • the front camera part 2 is arranged on the upper surface of the device body 1, that is, the surface away from the wearing part, and is mainly used to obtain the shooting content directly in front of the device body 1, and realize functions such as taking pictures or recording videos.
  • the cover body 3 is arranged on the upper surface of the device main body 1, and can rotate on the device main body 1, and is mainly used to cover the upper surface of the device main body 1 in a natural state (without rotation), so as to realize During the rotation of the cover body 3, the upper surface of the device body 1 will be gradually exposed, and when it is rotated to a specific position, the cover body 3 will also fully expose the front camera part 2.
  • the display screen 4 is arranged on the upper surface of the cover body 3, generally covers the upper surface of the cover body 3, and maintains a signal connection with the front camera part 2, and is mainly used to display basic information related to the device main body 1 at ordinary times, to realize Human-computer interaction and other functions, and when the cover body 3 is rotated in place, the display screen 4 is mainly used to display the real-time shooting content of the front shooting part 2, such as images, video screens, etc., to facilitate users to view and adjust operations.
  • the camera system provided in this embodiment mainly uses the front camera part 2 to realize the photo and video recording function of the smart wearable device.
  • the user When taking pictures and videos, the user only needs to rotate the cover 3 to expose the front camera part 2 , and at the same time, the shooting content of the front shooting part 2 can be checked in real time through the display screen 4 .
  • the smart wearable device can independently realize the camera and video recording function without using other electronic products such as mobile phones, and at the same time greatly simplifies the camera and video recording operation to improve user experience.
  • FIG. 2 is a schematic structural view of the cover body 3 in a state of being rotated into place.
  • the front camera part 2 in order to facilitate the installation of the front camera part 2 on the device body 1, the front camera part 2 is embedded in the upper surface of the device body 1, Correspondingly, a through hole or a groove is opened on the upper surface of the device main body 1 to place the front camera component 2 therein.
  • the front camera component 2 mainly adopts a camera or the like.
  • the cover body 3 rotates, its bottom surface will perform sliding friction on the upper surface of the device main body 1, in order to avoid hindering the rotation movement of the cover body 3, in this embodiment, the outer end surface of the front camera part 2
  • the upper surface of the device main body 1 is not protruded, for example, the outer end surface of the front camera part 2 is kept flush with the upper surface of the device main body 1 .
  • a transparent head cover is also arranged on the front end surface (shooting port) of the front camera part 2, and the side wall of the head cover can be
  • the waterproof design is realized by pressing the sealing ring on the inner wall of the through hole or groove.
  • the cover body 3 rotates in a horizontal direction on the device body 1 , that is, the rotation axis of the cover body 3 is perpendicular to the upper surface of the device body 1 .
  • the bottom surface of the cover body 3 always covers the upper surface of the device main body 1, forming sliding friction between the two, and the covering area changes with the rotation angle.
  • the opening method of the cover 3 is simple and convenient , easy to operate with one hand, and does not need to occupy additional space in the height direction of the device main body 1; in addition, since the display screen 4 is arranged on the cover body 3, when the user watches the display screen 4 during the process of taking pictures and video recordings, its viewing angle is different from that of the cover body. The viewing angle of the body 3 is the same when it is not opened, and the user experience is better.
  • FIG. 3 is a longitudinal sectional view of FIG. 1 .
  • a rotating shaft 5 is connected to the bottom surface of the cover body 3 in this embodiment.
  • the top is eccentrically distributed, that is, the rotational axis of the cover 3 is not its center of circle (or geometric center).
  • the front camera part 2 can be fully exposed during the position.
  • a through hole is provided on the upper surface of the device main body 1 at a position corresponding to the rotating shaft 5, and a bearing sleeve 6 is installed in the through hole at the same time, and the rotating shaft 5 is inserted in the
  • the bearing sleeve 6 forms a rotational fit with it.
  • the function of the bearing sleeve 6 is similar to that of a bearing, both of which are used to support the rotating shaft 5 and ensure its degree of freedom of rotational movement.
  • the top end of the rotating shaft 5 can be connected to the bottom surface of the cover body 3 through fasteners such as bolts and screws.
  • the top end of the bearing sleeve 6 can also be connected to the inner top wall of the main body 1 of the device through fasteners such as bolts and screws.
  • a lubricating sleeve 7 is provided on the inner ring of the bearing sleeve 6 in this embodiment, and the rotating shaft 5 is specifically inserted into the lubricating sleeve 7 to form a joint with the lubricating sleeve 7.
  • the lubricating sleeve 7 has a smooth and wear-resistant surface, such as graphite resin composite material.
  • a collar 51 is provided on the top of the rotating shaft 5 in this embodiment.
  • a mounting groove 31 is added to the bottom surface of the cover body 3 , and a shaft end cover 8 is also added.
  • the opening position of the mounting groove 31 on the bottom surface of the cover body 3 is the setting position of the rotating shaft 5, and the collar 51 is located at the top of the rotating shaft 5, and is installed in the mounting groove 31 to form a close fit with it.
  • it can also be used with screws. , bolts and other fasteners for connection reinforcement.
  • the shaft end cover 8 is sleeved on the bottom of the rotating shaft 5, and generally can form a threaded connection with the outer surface of the rotating shaft 5, so as to be screwed to achieve a deeper fit, and is mainly used to compress the bottom end surface of the bearing sleeve 6 from bottom to top.
  • the bottom end surface of the collar 51 abuts against the top end surface of the bearing sleeve 6 from top to bottom.
  • the abutment of the shaft end cover 8 against the bottom end surface of the bearing sleeve 6 can also prevent the rotating shaft 5 from coming out of the bearing sleeve 6 directly along its axial direction, thereby preventing the cover body 3 from accidentally detaching from the device main body 1 .
  • a lubricating ring 9 is embedded on the bottom end surface of the bearing sleeve 6 in this embodiment. Specifically, the function of the lubricating ring 9 is the same as that of the aforementioned lubricating sleeve 7, which will not be repeated here.
  • this embodiment in addition to the sealing ring provided at the aforementioned front-facing camera part 2, this embodiment also provides a gap between the top end surface of the collar 51 and the bottom surface of the installation groove 31, the collar 51 Between the bottom end face of the bearing sleeve 6 and the top end face of the bearing sleeve 6, between the top end face of the bearing sleeve 6 and the inner top wall of the equipment main body 1, seal rings are arranged to prevent external liquid from entering the equipment main body 1.
  • the image data acquired in real time needs to be transmitted to the display screen 4 for display after the front camera part 2 is in operation, and the display screen 4 is arranged on the cover body 3, and the front camera part 2 It is arranged on the main body 1 of the device, and in order to facilitate the signal transmission between the front camera part 2 and the display screen 4 , an upper main board 10 , a lower main board 11 and a data connector 12 are added in this embodiment.
  • the upper main board 10 is arranged in the cavity in the cover body 3, and since the display screen 4 is also arranged on the cover body 3, the display screen 4 can be easily formed with the upper main board 10 through components such as cables, FPC, and connectors. signal connection.
  • the lower main board 11 is arranged in the cavity in the device body 1, and since the front camera part 2 is also arranged on the device body 1, the front camera part 2 can be conveniently passed through components such as cables, FPCs, and connectors.
  • a signal connection is formed with the lower main board 11 .
  • the data connector 12 is obviously connected between the upper main board 10 and the lower main board 11 to realize the signal interaction between the two.
  • the rotating shaft 5 It is a hollow shaft, and the data connector 12 penetrates through the hollow hole of the inner ring of the rotating shaft 5, so that its two ends are connected with the upper main board 10 of the upper layer and the lower main board 11 of the lower layer respectively.
  • the image data acquired by the front camera part 2 in real time can be transferred to the display screen 4 through the lower main board 11 , the data connector 12 , and the upper main board 10 in sequence.
  • the data connector 12 can specifically be a wire, a conductor post, an FPC, and the like.
  • the front camera part 2 can also be signal-connected with the display screen 4 through wireless communication.
  • an annular brush 13 is added in the present embodiment.
  • the ring brush 13 is arranged on the surface of the lower main board 11, specifically at the bottom end area of the rotating shaft 5, and the ring brush 13 is ring-shaped, and the bottom end of the data connector 12 protrudes from the bottom end of the rotating shaft 5 After that, it extends into the ring brush 13 and abuts against the inner wall of the ring brush 13 . In this way, when the data connector 12 rotates synchronously with the cover 3, the bottom end of the data connector 12 will always be in contact with the inner wall of the ring brush 13, thereby maintaining the signal connection throughout the entire process and preventing signal interruption.
  • FIG. 4 is a cross-sectional view of the device main body 1
  • FIG. 5 is a cross-sectional view of the cover body 3 .
  • a moving magnet 14 and a second magnet are added in this embodiment.
  • the moving magnet 14 is arranged in the inner cavity of the cover body 3 , and rotates synchronously with the rotation movement of the cover body 3 , changing its relative position with the device main body 1 .
  • the first positioning magnet 15 is arranged in the inner cavity of the device main body 1 and remains stationary. Its specific setting position corresponds to the setting position of the moving magnet 14 in the natural state, that is, it is vertically facing up and down.
  • the magnetic poles on the opposite surfaces of the moving magnet 14 and the first positioning magnet 15 are opposite, and a magnetic attraction force will be generated when the two are close to each other.
  • the cover body 3 is in a natural state.
  • the positions of the moving magnet 14 and the first positioning magnet 15 are facing each other in the vertical direction, and the magnetic attraction force between the two reaches the maximum value. Therefore, the cover body 3 can be stabilized at the current position by using the magnetic attraction force, and the cover body 3 can be prevented from being touched or rotated by mistake.
  • a second positioning magnet 16 is added. Specifically, similar to the aforementioned first positioning magnet 15, the second positioning magnet 16 is also arranged in the inner cavity of the device main body 1 and remains stationary. The setting positions of the moving magnets 14 correspond to each other, that is, they are vertically facing up and down. At the same time, the magnetic poles on the opposite surfaces of the moving magnet 14 and the second positioning magnet 16 are opposite, and a magnetic attraction force will be generated when the two are close to each other.
  • the cover body 3 when the cover body 3 is rotated in place by the user, the cover body 3 is in a fully open state, at this time, the positions of the moving magnet 14 and the second positioning magnet 16 are facing each other in the vertical direction, and the magnetic attraction force between them reaches the maximum value , so that the cover body 3 can be stabilized at the current position by using the magnetic attraction force, so as to ensure that the front camera part 2 can run for a long time, and prevent the cover body 3 from being touched by mistake and cover the front camera part 2 during the photographing process.
  • the cover body 3 is rotated 180° from the initial state (unrotated natural state) to reach the maximum opening. At this time, the front camera part 2 is fully exposed, and is arranged in the same radial two sides of the device body 1 as the cover body 3 .
  • the first positioning magnet 15 and the second positioning magnet 16 can form a diameter arrangement with the front camera part 2 and be distributed in a certain radial direction of the device main body 1, and the first positioning magnet 15 and the second positioning magnet 16 respectively Located on both radial sides of the rotating shaft 5 .
  • the moving magnet 14 is in order to cooperate with the first positioning magnet 15 and the second positioning magnet 16 respectively, and its setting position in the cover body 3 is the same as the setting position of the first positioning magnet 15 or the second positioning magnet 16 in the device main body 1.
  • the radial distance from the first positioning magnet 15 to the rotating shaft 5 is equal to the radial distance from the second positioning magnet 16 to the rotating shaft 5 .
  • the cover body 3 does not need to be completely rotated to an angle of 180° before stopping. Generally, when the cover body 3 is rotated to more than 90°, the front camera part 2 can be fully exposed. 2 for specific size and position adjustments.
  • an presence sensor 17 is added in this embodiment in order to facilitate the automatic start and operation of the front camera component 2 .
  • the presence sensor 17 is arranged in the device main body 1, generally can be embedded in the upper surface of the device main body 1, and maintains a signal connection with the front camera part 2, and its detection port faces the bottom surface of the cover body 3, mainly It is used to detect the in-position state of the cover body 3 to determine whether the cover body 3 has a rotational movement or whether it is in the initial in-position state (unrotated natural state), and then when the cover body 3 produces a rotational movement or is not in the initial position When in the bit state, an activation signal is sent to the front camera part 2, so that the front camera part 2 is turned on and keeps running.
  • the in-position sensor 17 is specifically a Hall element. Cooperating with it, this embodiment is also provided with a Hall magnet 18 in the cover body 3 to communicate with the Hall element.
  • the Hall element cooperates to realize the detection by using the Hall effect. In this way, since the Hall element can detect precise magnetic field changes, when the cover 3 rotates, the relative position of the Hall magnet 18 and the Hall element changes, and the Hall element can sense the change in magnetic induction intensity. It is judged that the in-position state of the cover body 3 has changed.
  • the Hall element when the cover body 3 is not rotated by the user, since the Hall element does not perceive the change in the magnetic field of the Hall magnet 18, the Hall element will not send an activation signal to the front-facing shooting part 2, so that the front-facing shooting Component 2 remains in a silent state to prevent accidental opening of the front camera component 2.
  • the presence sensor 17 is not limited to the Hall element, and others such as motion sensors and photoelectric sensors can also be used.
  • the photographing system mainly includes the front photographing part 2 , the cover body 3 and the display screen 4 , and also includes a side photographing part 19 .
  • the side camera components 19 are arranged on the side wall of the device main body 1 , generally a plurality are provided at the same time, and each side camera component 19 maintains a signal connection with the display screen 4 .
  • a built-in algorithm can be used to combine multiple images, thereby improving the imaging quality.
  • the shooting port of the front camera part 2 is mainly perpendicular to the device body.
  • the upper surface of 1 faces outwards
  • the shooting port of side-mounted shooting part 19 is mainly perpendicular to the side wall of device main body 1 and faces outwards, and the shooting angles of the two are perpendicular to each other.
  • the front camera part 2 can facilitate the user to take selfies and videos
  • the side camera part 19 can facilitate the user to take pictures and videos of others.
  • the image data acquired by the front camera unit 2 and the side camera unit 19 can be displayed in real time through the display screen 4 .
  • the user can perform human-computer interaction determination on the operation interface of the display screen 4 .
  • each side camera unit 19 is the same as the front camera unit 2.
  • the side wall of the cover body 3 is provided with a baffle plate 20 extending downward (towards the device main body 1) in this embodiment, so as to pass through the The baffle plate 20 covers each side camera component 19 when the cover body 3 is in a natural state.
  • This embodiment also provides a smart wearable device, which mainly includes a device body 1 and a camera system installed on the device body 1, wherein the specific content of the camera system is the same as the above-mentioned related content, and will not be repeated here.

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Abstract

本发明公开一种拍照系统,包括设置于设备主体的上表面的前置拍摄部件、可旋转地设置于设备主体的上表面上并用于在旋转到位时露出前置拍摄部件的盖体,以及设置于盖体的上表面并与前置拍摄部件信号连接、用于显示其实时拍摄内容的显示屏。如此,本发明所提供的拍照系统,主要通过前置拍摄部件实现智能穿戴设备的拍照录像功能,在需要拍照录像时,用户只需旋转盖体,将前置拍摄部件露出即可,同时能够通过显示屏实时查看前置拍摄部件获取的图像。相比于现有技术,本发明无需借助手机等其余电子产品,即可使智能穿戴设备独自实现拍照录像功能,同时大幅简化拍照录像操作,提高用户体验。本发明还公开一种智能穿戴设备,其有益效果如上所述。

Description

一种拍照系统及智能穿戴设备
本申请要求于2021年12月09日提交中国专利局、申请号为202111502031.3、发明名称为“一种拍照系统及智能穿戴设备”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本发明涉及可穿戴设备技术领域,特别涉及一种拍照系统。本发明还涉及一种智能穿戴设备。
背景技术
可穿戴设备的种类很多,比如手表、手环等,通常由设备主体和表带两大部分组成。以智能手表为例,为了使智能手表外形美观,大量智能手表产品采用传统手表表盘加按键的ID外观。
目前,高端智能手表在通话方面可以实现语音通话和来电显示,但由于没有摄像头,无法实现视频通话功能,视频通话还需要借助手机等通信设备。手机虽然具有前置摄像头和后置摄像头,但智能手表由于手腕佩戴设计、体积、安装空间等因素的限制,显然无法直接参考手机上的摄像头的设计。
在现有技术中,智能手表仅可以通过蓝牙连接手机,从而通过手机间接实现拍照、录像、视频通话等功能。通常,在智能手表的屏幕上显示手机摄像头拍到的影像,再通过智能手表上的按键控制手机拍照或录像等操作的启停。然而,由于智能手表借助手机进行拍照录像时,用户在操作智能手表的同时,还需要调整手机的位置角度,导致拍照录像过程过于繁琐,同时操作智能手表和手机在实际使用过程中非常不方便,用户体验较差。
因此,如何使智能穿戴设备在不借助手机的情况下独自实现拍照录像功能,简化拍照录像操作,提高用户体验,是本领域技术人员面临的技术问题。
发明内容
本发明的目的是提供一种拍照系统,能够使智能穿戴设备在不借助手机的情况下独自实现拍照录像功能,简化拍照录像操作,提高用户体验。本发明的另一目的是提供一种智能穿戴设备。
为解决上述技术问题,本发明提供一种拍照系统,包括设置于设备主体 的上表面的前置拍摄部件、可旋转地设置于所述设备主体的上表面上并用于在旋转到位时露出所述前置拍摄部件的盖体,以及设置于所述盖体的上表面并与所述前置拍摄部件信号连接、用于显示其实时拍摄内容的显示屏。
优选地,所述前置拍摄部件嵌设于所述设备主体的上表面内,且所述前置拍摄部件的外端面不凸出所述设备主体的上表面。
优选地,所述盖体的底面可水平旋转地覆盖于所述设备主体的上表面
优选地,所述盖体的底面连接有偏心分布的转轴,且所述转轴可旋转地垂直插设于所述设备主体的上表面内。
优选地,所述设备主体的上表面与所述转轴的对应位置处开设有通孔,所述通孔内安装有轴承套,所述转轴可旋转地插设于所述轴承套内。
优选地,所述轴承套的内圈设置有用于套设于所述转轴的外圈上、用于减小摩擦的润滑套。
优选地,所述转轴的顶端设置有轴环,且所述轴环设置于所述盖体底面开设的安装槽内;所述轴环的底端端面与所述轴承套的顶端端面抵接,且所述转轴的底端套设有用于压紧所述轴承套的底端端面的轴端盖。
优选地,所述轴承套的底端端面嵌设有用于减小与所述轴端盖之间的摩擦的润滑圈。
优选地,所述盖体内设置有与所述显示屏信号连接的上主板,所述设备主体内设置有与所述前置拍摄部件信号连接的下主板,所述转轴为空心轴,且所述上主板与所述下主板之间通过贯穿所述转轴的数据连接件形成信号连接。
优选地,所述下主板的表面上设置有环形电刷,且所述数据连接件的底端延伸至所述环形电刷内。
优选地,所述盖体内设置有动磁铁,所述设备主体内设置有与所述动磁铁配合、用于在所述盖体处于未旋转状态时通过磁吸力将其稳固在当前位置的第一定位磁铁。
优选地,所述设备主体内还设置有用于与所述动磁铁配合、用于在所述盖体处于旋转到位状态时通过磁吸力将其稳固在当前位置的第二定位磁铁。
优选地,所述设备主体内还设置有与所述前置拍摄部件信号连接、用于检测所述盖体的在位状态的在位传感器,以在所述盖体未处于初始在位状态 时使所述前置拍摄部件保持运行。
优选地,所述在位传感器为霍尔元件,且所述盖体内设置有与所述霍尔元件配合检测的霍尔磁铁。
优选地,还包括设置于所述设备主体的侧壁面的若干个侧置拍摄部件,且各所述侧置拍摄部件均与所述显示屏信号连接。
优选地,所述盖体的侧壁设置有朝下延伸、用于在未旋转状态时遮盖各所述侧置拍摄部件的挡板。
本发明还提供一种智能穿戴设备,包括设备主体和设置于所述设备主体上的拍照系统,其中,所述拍照系统具体为上述任一项所述的拍照系统。
本发明所提供的拍照系统,主要包括前置拍摄部件、盖体和显示屏。其中,前置拍摄部件设置在设备主体的上表面,即远离佩戴部位的表面,主要用于获取设备主体正前方的拍摄内容,实现拍照或录像等功能。盖体设置在设备主体的上表面上,并且可以在设备主体上进行旋转运动,主要用于在自然状态(未产生旋转)下遮盖住设备主体的上表面,实现对设备主体的密闭,而在盖体的旋转过程中,设备主体的上表面将逐渐露出,当其旋转到特定位置时,盖体将前置拍摄部件也完全露出。显示屏设置在盖体的上表面,一般覆盖在盖体的上表面上,并与前置拍摄部件保持信号连接,在平时主要用于显示跟设备主体相关的基本信息,实现人机交互等功能,而在盖体旋转到位时,显示屏主要用于显示前置拍摄部件的实时拍摄内容,方便用户进行查看和调整等操作。如此,本发明所提供的拍照系统,主要通过前置拍摄部件实现智能穿戴设备的拍照录像功能,在需要拍照录像时,用户只需旋转盖体,将前置拍摄部件露出即可,同时能够通过显示屏实时查看前置拍摄部件的拍摄内容。相比于现有技术,本发明无需借助手机等其余电子产品,即可使智能穿戴设备独自实现拍照录像功能,同时大幅简化拍照录像操作,提高用户体验。
附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例或现有技术描述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,还可以根据提供的附图获得其他的附图。
图1为本发明所提供的一种具体实施方式的整体结构示意图。
图2为盖体处于旋转到位状态的结构示意图。
图3为图1的纵剖视图。
图4为设备主体的横剖视图。
图5为盖体的横剖视图。
其中,图1—图5中:
设备主体—1,前置拍摄部件—2,盖体—3,显示屏—4,转轴—5,轴承套—6,润滑套—7,轴端盖—8,润滑圈—9,上主板—10,下主板—11,数据连接件—12,环形电刷—13,动磁铁—14,第一定位磁铁—15,第二定位磁铁—16,在位传感器—17,霍尔磁铁—18,侧置拍摄部件—19,挡板—20;
安装槽—31,轴环—51。
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。
请参考图1,图1为本发明所提供的一种具体实施方式的整体结构示意图。
在本发明所提供的一种具体实施方式中,拍照系统主要包括前置拍摄部件2、盖体3和显示屏4。
其中,前置拍摄部件2设置在设备主体1的上表面,即远离佩戴部位的表面,主要用于获取设备主体1正前方的拍摄内容,实现拍照或录像等功能。
盖体3设置在设备主体1的上表面上,并且可以在设备主体1上进行旋转运动,主要用于在自然状态(未产生旋转)下遮盖住设备主体1的上表面,实现对设备主体1的密闭,而在盖体3的旋转过程中,设备主体1的上表面将逐渐露出,当其旋转到特定位置时,盖体3将前置拍摄部件2也完全露出。
显示屏4设置在盖体3的上表面,一般覆盖在盖体3的上表面上,并与前置拍摄部件2保持信号连接,在平时主要用于显示跟设备主体1相关的基本信息,实现人机交互等功能,而在盖体3旋转到位时,显示屏4主要用于显示前置拍摄部件2的实时拍摄内容,比如图像、视屏等,方便用户进行查 看和调整等操作。
如此,本实施例所提供的拍照系统,主要通过前置拍摄部件2实现智能穿戴设备的拍照录像功能,在需要拍照录像时,用户只需旋转盖体3,将前置拍摄部件2露出即可,同时能够通过显示屏4实时查看前置拍摄部件2的拍摄内容。相比于现有技术,本实施例无需借助手机等其余电子产品,即可使智能穿戴设备独自实现拍照录像功能,同时大幅简化拍照录像操作,提高用户体验。
如图2所示,图2为盖体3处于旋转到位状态的结构示意图。
在关于前置拍摄部件2的一种可选实施例中,为便于该前置拍摄部件2在设备主体1上的安装,该前置拍摄部件2具体嵌设在设备主体1的上表面内,相应的,在设备主体1的上表面上开设有通孔或槽,以将该前置拍摄部件2置于其中。一般的,该前置拍摄部件2主要采用摄像头等。
同时,考虑到盖体3在旋转时,其底面将在设备主体1的上表面上进行滑动摩擦,为避免阻碍盖体3的旋转运动,在本实施例中,前置拍摄部件2的外端面不凸出设备主体1的上表面,比如前置拍摄部件2的外端面与设备主体1的上表面保持齐平等。
进一步的,为实现对前置拍摄部件2的防护和密封,本实施例中,该前置拍摄部件2的前端面(拍摄口)上还设置有透明的头盖,同时头盖的侧壁可通过密封圈压紧在通孔或槽的内壁上,实现防水设计。
在关于盖体3的一种可选实施例中,该盖体3在设备主体1上进行水平面方向的旋转运动,即盖体3的旋转轴线垂直于设备主体1的上表面。在盖体3的水平旋转过程中,盖体3的底面始终覆盖在设备主体1的上表面上,两者间形成滑动摩擦,并随着旋转角度而改变覆盖区域。如此设置,用户在需要拍照录像时,只需水平转动盖体3,使得盖体3转动到特定角度后(达到打开状态)露出前置拍摄部件2即可,盖体3的打开方式简单、方便,易于单手操作,且不需要额外占用设备主体1的高度方向空间;此外,由于显示屏4设置在盖体3上,因此用户在拍照录像过程中观看显示屏4时,其观看视角与盖体3未打开时的观看视角相同,用户使用体验更好。
如图3所示,图3为图1的纵剖视图。
为便于实现盖体3的旋转运动,本实施例在盖体3的底面连接有转轴5, 该转轴5可旋转地垂直插设在设备主体1的上表面内,并且,转轴5在盖体3上呈偏心分布,即盖体3的旋转运动轴心并不是其圆心(或几何中心),这是为了确保盖体3在旋转时能够逐渐露出设备主体1的上表面,进而确保在旋转到特定位置时能够完全露出前置拍摄部件2。
为便于转轴5的安装,本实施例在设备主体1的上表面上与转轴5所对应的位置处开设有通孔,同时在该通孔内安装有轴承套6,而转轴5就插设在该轴承套6内,与其形成旋转配合。一般的,该轴承套6的作用与轴承类似,均用于支承转轴5并保证其旋转运动自由度。同时,为保证转轴5的安装稳定性,在本实施例中,转轴5的顶端具体可通过螺栓、螺钉等紧固件与盖体3的底面相连。同理,为保证轴承套6的安装稳定性,在本实施例中,轴承套6的顶端也可通过螺栓、螺钉等紧固件与设备主体1的内顶壁相连。
此外,为保证转轴5的旋转运动顺畅,降低其旋转阻力,本实施例在轴承套6的内圈设置有润滑套7,而转轴5具体插设在该润滑套7内,与润滑套7形成转动配合。具体的,该润滑套7的表面光滑且耐磨,比如石墨树脂复合材料等。
进一步的,为提高转轴5与轴承套6之间的连接稳定性,防止转轴5在旋转过程中与轴承套6松脱等情况,本实施例在转轴5的顶端设置了轴环51,同时在盖体3的底面增设了安装槽31,此外还增设了轴端盖8。具体的,安装槽31在盖体3底面的开设位置即转轴5的设置位置,而轴环51位于转轴5的顶端,并安装在安装槽31内与其形成紧密配合,当然,同时还可搭配螺丝、螺栓等紧固件进行连接加固。轴端盖8套设在转轴5的底端,一般可与转轴5的外圆面形成螺纹连接,以便旋拧实现配合加深,主要用于从下至上压紧轴承套6的底端端面。同时,轴环51的底端端面从上至下与轴承套6的顶端端面形成抵接。如此设置,当轴端盖8逐渐加深与转轴5之间的配合深度时,轴端盖8将逐渐增大对轴承套6底端的压紧力,进而使得轴承套6压紧轴环51、轴环51压紧安装槽31,加强了整个盖体3与设备主体1之间的连接紧密程度。
此外,利用轴端盖8对轴承套6的底端端面的抵接,还能够防止转轴5从轴承套6中直接沿其轴向向上脱出,进而防止盖体3意外脱离设备主体1。
进一步的,由于轴端盖8套设在转轴5的底端,因此当转轴5旋转时, 轴端盖8与其同步旋转,进而导致轴端盖8的上表面与轴承套6的底端端面形成滑动摩擦,为减小两者之间的摩擦,减轻磨损,本实施例在轴承套6的底端端面嵌设有润滑圈9。具体的,该润滑圈9的作用与前述润滑套7相同,此处不再赘述。
另外,为提高智能穿戴设备的防水密封性能,除了前述前置拍摄部件2处设置的密封圈以外,本实施例还在轴环51的顶端端面与安装槽31的槽底面之间、轴环51的底端端面与轴承套6的顶端端面之间、轴承套6的顶端端面与设备主体1的内顶壁之间等位置设置有密封圈,以防止外界液体进入到设备主体1内。
考虑到当盖体3旋转到位时,前置拍摄部件2运行后,其实时获取的图像数据需要传递至显示屏4上进行显示,而显示屏4设置在盖体3上,前置拍摄部件2设置在设备主体1上,为便于实现前置拍摄部件2与显示屏4之间的信号传递,本实施例中增设了上主板10、下主板11和数据连接件12。
其中,上主板10设置在盖体3内的空腔中,由于显示屏4也设置在盖体3上,因此显示屏4能够方便地通过排线、FPC、连接器等部件与上主板10形成信号连接。同理,下主板11设置在设备主体1内的空腔中,由于前置拍摄部件2也设置在设备主体1上,因此前置拍摄部件2能够方便地通过排线、FPC、连接器等部件与下主板11形成信号连接。而数据连接件12显然连接在上主板10与下主板11之间,实现两者之间的信号交互,为方便数据连接件12与两者之间的连接,在本实施例中,转轴5具体为空心轴,而数据连接件12即从转轴5的内圈空心孔中贯穿,使其两端分别与上层的上主板10和下层的下主板11相连。如此设置,前置拍摄部件2实时获取的图像数据,即可依次通过下主板11、数据连接件12、上主板10传递到显示屏4中。一般的,该数据连接件12具体可为导线、导体柱、FPC等。
当然,前置拍摄部件2也可以通过无线通信方式与显示屏4信号连接。
进一步的,考虑到由于数据连接件12的顶端(上端)连接在上主板10的底面,因此当盖体3旋转时,上主板10与数据连接件12将同步旋转,而数据连接件12将在转轴5的内圈空心孔中产生回转,为保证数据连接件12的底端与下主板11之间的稳定信号连接,防止数据连接件12的底端因旋转运动而与下主板11脱离连接或被扯断,本实施例中增设了环形电刷13。具 体的,该环形电刷13设置在下主板11的表面上,具体位于转轴5的底端区域,并且该环形电刷13呈环形,而数据连接件12的底端从转轴5的底端伸出后,一直延伸至环形电刷13内,并与环形电刷13的内壁抵接。如此设置,当数据连接件12与盖体3同步旋转时,数据连接件12的底端将始终与环形电刷13的内壁保持抵接,进而保持全程信号连接,防止信号中断。
如图4、图5所示,图4为设备主体1的横剖视图,图5为盖体3的横剖视图。
考虑到用户在使用智能穿戴设备的过程中,有可能会出现对盖体3的误触,导致前置拍摄部件2的误启动等情况,针对此,本实施例中增设了动磁铁14和第一定位磁铁15。其中,动磁铁14设置在盖体3的内腔中,随着盖体3的旋转运动而同步旋转,改变与设备主体1之间的相对位置。第一定位磁铁15设置在设备主体1的内腔中,保持静止不动,其具体设置位置与自然状态下的动磁铁14的设置位置互相对应,即在垂向上呈上下正对关系。同时,动磁铁14与第一定位磁铁15相对表面的磁极相反,当两者接近时将产生磁吸力。如此设置,当盖体3未被用户旋转时,盖体3处于自然状态,此时动磁铁14与第一定位磁铁15的位置在垂向上互相正对,两者间的磁吸力达到最大值,从而能够利用磁吸力将盖体3稳固在当前位置,防止盖体3被误触或误旋转。
进一步的,考虑到用户在将盖体3旋转到位时,为便于后续通过前置拍摄部件2进行拍照摄像等操作,可能需要将盖体3长时间停留在旋转后的特定位置处,针对此,本实施例中增设了第二定位磁铁16。具体的,与前述第一定位磁铁15类似,该第二定位磁铁16也设置在设备主体1的内腔中,保持静止不动,区别在于,第二定位磁铁16的具体设置位置与旋转到位后的动磁铁14的设置位置互相对应,即在垂向上呈上下正对关系。同时,动磁铁14与第二定位磁铁16相对表面的磁极相反,当两者接近时将产生磁吸力。如此设置,当盖体3被用户旋转到位时,盖体3处于完全打开状态,此时动磁铁14与第二定位磁铁16的位置在垂向上互相正对,两者间的磁吸力达到最大值,从而能够利用磁吸力将盖体3稳固在当前位置,保证前置拍摄部件2能够长时间运行,防止在拍照摄像过程中盖体3被误触而遮住前置拍摄部件2。
一般的,为保证前置拍摄部件2能够被完全露出,且为了方便用户查看显示屏4,在本实施例中,盖体3从初始状态(未旋转的自然状态)旋转180°即达到最大打开状态,此时前置拍摄部件2被完全露出,且与盖体3分列在设备主体1的同一径向两侧区域。相应的,第一定位磁铁15与第二定位磁铁16可与前置拍摄部件2形成直径排列,并分布在设备主体1的某一径向上,且第一定位磁铁15与第二定位磁铁16分别位于转轴5的径向两侧。而动磁铁14为了能够分别与第一定位磁铁15和第二定位磁铁16配合,其在盖体3内的设置位置与第一定位磁铁15或第二定位磁铁16在设备主体1内的设置位置对应,并且,第一定位磁铁15至转轴5的径向距离,与第二定位磁铁16至转轴5的径向距离相等。
当然,盖体3也并不需要完全旋转到180°角时才停止,一般的,当盖体3旋转至90°以上时即可将前置拍摄部件2完全露出,具体需要根据前置拍摄部件2的具体尺寸和位置进行调整。
此外,当盖体3旋转到位时,为便于自动实现前置拍摄部件2的启动和运行,本实施例中增设了在位传感器17。具体的,该在位传感器17设置在设备主体1内,一般可嵌设在设备主体1的上表面内,并与前置拍摄部件2保持信号连接,其检测口朝向盖体3的底面,主要用于检测盖体3的在位状态,以判断盖体3是否产生旋转运动或者是否处于初始在位状态(未旋转的自然状态),进而在盖体3产生旋转运动时或当前未处于初始在位状态时,对前置拍摄部件2发送激活信号,使得前置拍摄部件2开启并保持运行。
在关于在位传感器17的一种可选实施例中,该在位传感器17具体为霍尔元件,与之配合的,本实施例还在盖体3内设置有霍尔磁铁18,以与霍尔元件配合利用霍尔效应实现检测。如此设置,由于霍尔元件能够检测精密的磁场变化,因此当盖体3产生旋转运动时,霍尔磁铁18与霍尔元件的相对位置产生变化,霍尔元件即可通过感知到的磁感应强度变化判断出盖体3的在位状态产生变化。反过来说,当盖体3未被用户旋转时,由于霍尔元件未感知到霍尔磁铁18的磁场变化,因此霍尔元件并不会对前置拍摄部件2发送激活信号,使得前置拍摄部件2保持静默状态,避免前置拍摄部件2意外开启。
当然,在位传感器17并不仅限于霍尔元件,其余比如运动传感器、光电传感器等也同样可以采用。
在本发明所提供的另一种具体实施方式中,拍照系统除了主要包括前置拍摄部件2、盖体3和显示屏4之外,还包括侧置拍摄部件19。具体的,侧置拍摄部件19设置在设备主体1的侧壁面上,一般同时设置有多个,且各个侧置拍摄部件19均与显示屏4保持信号连接。当多个侧置拍摄部件19同时对同一区域进行拍摄时,能够利用内置算法合并多张图像,从而提高成像质量。
一般的,由于前置拍摄部件2设置在设备主体1的上表面上,而侧置拍摄部件19设置在设备主体1的侧壁面上,因此,前置拍摄部件2的拍摄口主要垂直于设备主体1的上表面朝外,而侧置拍摄部件19的拍摄口主要垂直于设备主体1的侧壁面朝外,两者的拍摄角度互相垂直。如此设置,在智能穿戴设备处于佩戴状态下,前置拍摄部件2能够方便用户进行自拍录像,而侧置拍摄部件19能够方便用户对他人进行拍照录像。并且,前置拍摄部件2与侧置拍摄部件19所获取的图像数据均能够通过显示屏4进行实时显示。
为便于用户选择使用前置拍摄部件2还是侧置拍摄部件19进行拍照录像,用户可在显示屏4的操作界面上进行人机交互确定。
进一步的,各个侧置拍摄部件19与前置拍摄部件2相同,在盖体3未旋转到位时,均保持静默状态,只有在盖体3旋转到位时,侧置拍摄部件19才开启运行。针对此,为实现在自然状态下对各个侧置拍摄部件19的遮盖和防护,本实施例在盖体3的侧壁设置有朝下(朝向设备主体1)延伸的挡板20,以通过该挡板20在盖体3处于自然状态下时遮盖住各个侧置拍摄部件19。
本实施例还提供一种智能穿戴设备,主要包括设备主体1和设置于设备主体1上的拍照系统,其中,该拍照系统的具体内容与上述相关内容相同,此处不再赘述。
对所公开的实施例的上述说明,使本领域专业技术人员能够实现或使用本发明。对这些实施例的多种修改对本领域的专业技术人员来说将是显而易见的,本文中所定义的一般原理可以在不脱离本发明的精神或范围的情况下,在其它实施例中实现。因此,本发明将不会被限制于本文所示的这些实施例,而是要符合与本文所公开的原理和新颖特点相一致的最宽的范围。

Claims (17)

  1. 一种拍照系统,其特征在于,包括设置于设备主体(1)的上表面的前置拍摄部件(2)、可旋转地设置于所述设备主体(1)的上表面上并用于在旋转到位时露出所述前置拍摄部件(2)的盖体(3),以及设置于所述盖体(3)的上表面并与所述前置拍摄部件(2)信号连接、用于显示其实时拍摄内容的显示屏(4)。
  2. 根据权利要求1所述的拍照系统,其特征在于,所述前置拍摄部件(2)嵌设于所述设备主体(1)的上表面内,且所述前置拍摄部件(2)的外端面不凸出所述设备主体(1)的上表面。
  3. 根据权利要求1所述的拍照系统,其特征在于,所述盖体(3)的底面可水平旋转地覆盖于所述设备主体(1)的上表面。
  4. 根据权利要求3所述的拍照系统,其特征在于,所述盖体(3)的底面连接有偏心分布的转轴(5),且所述转轴(5)可旋转地垂直插设于所述设备主体(1)的上表面内。
  5. 根据权利要求4所述的拍照系统,其特征在于,所述设备主体(1)的上表面与所述转轴(5)的对应位置处开设有通孔,所述通孔内安装有轴承套(6),所述转轴(5)可旋转地插设于所述轴承套(6)内。
  6. 根据权利要求5所述的拍照系统,其特征在于,所述轴承套(6)的内圈设置有用于套设于所述转轴(5)的外圈上、用于减小摩擦的润滑套(7)。
  7. 根据权利要求5所述的拍照系统,其特征在于,所述转轴(5)的顶端设置有轴环(51),且所述轴环(51)设置于所述盖体(3)底面开设的安装槽(31)内;所述轴环(51)的底端端面与所述轴承套(6)的顶端端面抵接,且所述转轴(5)的底端套设有用于压紧所述轴承套(6)的底端端面的轴端盖(8)。
  8. 根据权利要求7所述的拍照系统,其特征在于,所述轴承套(6)的底端端面嵌设有用于减小与所述轴端盖(8)之间的摩擦的润滑圈(9)。
  9. 根据权利要求4所述的拍照系统,其特征在于,所述盖体(3)内设置有与所述显示屏(4)信号连接的上主板(10),所述设备主体(1)内设置有与所述前置拍摄部件(2)信号连接的下主板(11),所述转轴(5)为空心轴,且所述上主板(10)与所述下主板(11)之间通过贯穿所述转轴(5)的数据连接件(12)形成信号连接。
  10. 根据权利要求9所述的拍照系统,其特征在于,所述下主板(11)的表面上设置有环形电刷(13),且所述数据连接件(12)的底端延伸至所述环形电刷(13)内。
  11. 根据权利要求1所述的拍照系统,其特征在于,所述盖体(3)内设置有动磁铁(14),所述设备主体(1)内设置有与所述动磁铁(14)配合、用于在所述盖体(3)处于未旋转状态时通过磁吸力将其稳固在当前位置的第一定位磁铁(15)。
  12. 根据权利要求11所述的拍照系统,其特征在于,所述设备主体(1)内还设置有用于与所述动磁铁(14)配合、用于在所述盖体(3)处于旋转到位状态时通过磁吸力将其稳固在当前位置的第二定位磁铁(16)。
  13. 根据权利要求1所述的拍照系统,其特征在于,所述设备主体(1)内还设置有与所述前置拍摄部件(2)信号连接、用于检测所述盖体(3)的在位状态的在位传感器(17),以在所述盖体(3)未处于初始在位状态时使所述前置拍摄部件(2)保持运行。
  14. 根据权利要求13所述的拍照系统,其特征在于,所述在位传感器(17)为霍尔元件,且所述盖体(3)内设置有与所述霍尔元件配合检测的霍尔磁铁(18)。
  15. 根据权利要求1-14任一项所述的拍照系统,其特征在于,还包括设置于所述设备主体(1)的侧壁面的若干个侧置拍摄部件(19),且各所述侧置拍摄部件(19)均与所述显示屏(4)信号连接。
  16. 根据权利要求15所述的拍照系统,其特征在于,所述盖体(3)的侧壁设置有朝下延伸、用于在未旋转状态时遮盖各所述侧置拍摄部件(19) 的挡板(20)。
  17. 一种智能穿戴设备,包括设备主体(1)和设置于所述设备主体(1)上的拍照系统,其特征在于,所述拍照系统具体为权利要求1-16任一项所述的拍照系统。
PCT/CN2021/138376 2021-12-09 2021-12-15 一种拍照系统及智能穿戴设备 WO2023102976A1 (zh)

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