WO2020048224A1 - 移动终端及其终端设备 - Google Patents

移动终端及其终端设备 Download PDF

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Publication number
WO2020048224A1
WO2020048224A1 PCT/CN2019/095730 CN2019095730W WO2020048224A1 WO 2020048224 A1 WO2020048224 A1 WO 2020048224A1 CN 2019095730 W CN2019095730 W CN 2019095730W WO 2020048224 A1 WO2020048224 A1 WO 2020048224A1
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WO
WIPO (PCT)
Prior art keywords
image acquisition
module
wall
acquisition device
main board
Prior art date
Application number
PCT/CN2019/095730
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English (en)
French (fr)
Inventor
李�杰
Original Assignee
Oppo广东移动通信有限公司
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Filing date
Publication date
Application filed by Oppo广东移动通信有限公司 filed Critical Oppo广东移动通信有限公司
Publication of WO2020048224A1 publication Critical patent/WO2020048224A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N23/00Cameras or camera modules comprising electronic image sensors; Control thereof

Definitions

  • the present invention relates to the technical field of mobile terminals, and in particular, to a mobile terminal and a terminal device thereof.
  • a general mobile terminal (mobile phone, tablet, etc.) is equipped with a camera, and the camera can be used to provide functions such as video calling and shooting.
  • the position of the camera is relatively fixed, and the shooting scene is more limited.
  • a mobile terminal includes:
  • the terminal device includes a display screen, a first power module, a device main board, and a first wireless communication module.
  • the first power module is capable of supplying power to the display screen, the device main board, and the first wireless communication module.
  • the first wireless communication module can communicate with the device main board; a side of the terminal device facing away from the displayable area of the display screen is provided with a mounting slot; the device main board is provided with a through hole, and the mounting slot The groove wall passes through the through hole; and
  • An image acquisition device includes a camera module, a second power module, and a second wireless communication module.
  • the second power module is capable of supplying power to the camera module and the second wireless communication module. Smooth surface; the image acquisition device can be installed in the installation slot so that the light incident surface is exposed on the side facing away from the displayable area, and when the image acquisition device is installed in the installation slot When the image acquisition device is disposed in the through hole; the image acquisition device can be detached from the installation slot, and after the image acquisition device is detached from the installation slot, the second wireless communication
  • the module can be communicatively connected with the first wireless communication module.
  • a terminal device includes a display screen, a first power module, and a device main board.
  • the first power module is capable of supplying power to the display screen and the device main board; a display of the terminal device facing away from the display screen is displayable.
  • a mounting groove is provided on one side of the area; a through hole is provided on the device main board, and a groove wall of the mounting groove passes through the through hole.
  • a mobile terminal includes:
  • the terminal device includes a display screen, a first power module, a device main board, and a first wireless communication module.
  • the first power module is capable of supplying power to the display screen, the device main board, and the first wireless communication module.
  • the first wireless communication module can be communicatively connected with the device main board; a side of the terminal device facing away from the displayable area of the display screen is provided with a mounting slot; the device main board includes a main body portion and the main body portion Two extension portions extending from both ends, the main body portion and the two extension portions defining a gap, and a groove wall of the mounting groove passing through the gap; and
  • An image acquisition device includes a camera module, a second power module, and a second wireless communication module.
  • the second power module is capable of supplying power to the camera module and the second wireless communication module. Smooth surface; the image acquisition device can be installed in the installation slot so that the light incident surface is exposed on the side facing away from the displayable area, and the image acquisition device is threaded through the gap; The image acquisition device can be detached from the installation slot, and after the image acquisition device is detached from the installation slot, the second wireless communication module can be communicatively connected with the first wireless communication module.
  • a terminal device includes a display screen, a first power module, and a device main board.
  • the first power module is capable of supplying power to the display screen and the device main board; a display of the terminal device facing away from the display screen is displayable.
  • a mounting groove is provided on one side of the zone; the device main board includes a main body portion and two extension portions extending from both ends of the main body portion, the main body portion and the two extension portions define a gap, and the installation The groove wall of the groove passes through the gap.
  • a mobile terminal includes:
  • the terminal device includes a display screen, a first power module, a device main board, and a first wireless communication module.
  • the first power module is capable of supplying power to the display screen, the device main board, and the first wireless communication module.
  • the first wireless communication module can be communicatively connected with the main board of the device; a side of the terminal device facing away from the displayable area of the display screen is provided with a mounting slot; the main board of the device defines a right-angle avoidance area, and the installation The groove wall of the groove passes through the right-angle shelter; and
  • An image acquisition device includes a camera module, a second power module, and a second wireless communication module.
  • the second power module is capable of supplying power to the camera module and the second wireless communication module. Smooth surface; the image acquisition device can be installed in the mounting slot so that the light incident surface is exposed on the side facing away from the displayable area, and the image acquisition device is installed at the right angle to avoid Empty area; the image acquisition device can be removed from the installation slot, and after the image acquisition device is removed from the installation slot, the second wireless communication module can be communicatively connected with the first wireless communication module .
  • a terminal device includes a display screen, a first power module, and a device main board.
  • the first power module is capable of supplying power to the display screen and the device main board; a display of the terminal device facing away from the display screen is displayable.
  • An installation slot for installing an image acquisition device is provided on one side of the area, and the image acquisition device can be detached from the installation slot; the main board of the device defines a right-angle avoidance area, and the wall of the installation slot passes through the slot. The right-angle avoidance zone is described.
  • FIG. 1 is a perspective view of an image capturing device of a mobile terminal installed in a mounting slot according to an embodiment
  • FIG. 2 is another perspective view of the image acquisition device of the mobile terminal shown in FIG. 1 installed in a mounting slot;
  • FIG. 3 is a perspective view of the image acquisition device of the mobile terminal shown in FIG. 2 after being removed from the installation slot;
  • FIG. 4 is a perspective view of a mobile terminal shown in FIG. 2 after removing some components;
  • FIG. 5 is a front view of the mobile terminal shown in FIG. 2 after removing some components
  • FIG. 6 is a schematic diagram of a connection between a module contact of the mobile terminal shown in FIG. 5 and a device main board;
  • FIG. 7 is a schematic diagram of a usage scenario of the image acquisition device of the mobile terminal shown in FIG. 3;
  • FIG. 8 is a perspective view after removing some components in another embodiment of the mobile terminal shown in FIG. 2;
  • FIG. 9 is a perspective view of a mobile terminal shown in FIG. 2 after removing some components
  • FIG. 10 is a perspective view of the mobile terminal shown in FIG. 2 after removing some components.
  • terminal device refers to a device capable of receiving and / or transmitting communication signals, including but not limited to being connected via any one or more of the following connection methods:
  • wired lines such as via Public Switched Telephone Networks (PSTN), Digital Subscriber Line (DSL), digital cable, and direct cable connection;
  • PSTN Public Switched Telephone Networks
  • DSL Digital Subscriber Line
  • DSL Digital Subscriber Line
  • a wireless interface method such as a cellular network, a Wireless Local Area Network (WLAN), a digital television network such as a DVB-H network, a satellite network, and an AM-FM broadcast transmitter.
  • WLAN Wireless Local Area Network
  • a terminal device configured to communicate through a wireless interface may be referred to as a “mobile terminal”.
  • mobile terminals include, but are not limited to, the following electronic devices:
  • Satellite phone or cellular phone (1) Satellite phone or cellular phone
  • PCS Personal Communication System
  • the mobile terminal 10 is a smart phone, and the mobile terminal 10 includes a terminal device 100 and an image acquisition device 200.
  • the terminal device 100 includes a display screen 120, a first power module 130, a device main board 140, and a first wireless communication module.
  • the first power module 130 can supply power to the display 120, the device main board 140, and the first wireless communication module.
  • the display 120 is available. It is used to display information and provide interactive interface for users.
  • a mounting slot 150 is defined on a side of the terminal device 100 facing away from the displayable area of the display screen 120. Referring to FIG.
  • the device main board 140 is provided with a through hole 141 so that the device main board 140 is substantially annular, and the groove wall of the mounting groove 150 passes through the through hole 141.
  • a variety of electronic components such as a processor, a power management module, a baseband module, and a storage module are integrated on the device main board 140.
  • the first wireless communication module can be communicatively connected to the device main board 140.
  • the image acquisition device 200 includes a camera module 210, a second power module 220, and a second wireless communication module.
  • the second power module 220 can supply power to the camera module 210 and the second wireless communication module.
  • the camera module 210 has a light incident surface 211, and ambient light can pass through the light incident surface 211 and be incident on a photosensitive element of the camera module 210.
  • the image acquisition device 200 can be installed in the installation groove 150 so that the light incident surface 211 is exposed on the side facing away from the displayable area, and the image acquisition device 200 is disposed in the through hole 141.
  • the image acquisition device 200 can be detached from the installation slot 150.
  • the second wireless communication module can be communicatively connected with the first wireless communication module.
  • the mobile terminal 10 may be a tablet or the like.
  • the first wireless communication module and the second communication module are used for data transmission between the terminal device 100 and the image acquisition device 200.
  • the first wireless communication module and the second wireless communication module may use short-range communication technology, and the first wireless communication module and the second wireless communication module use the same communication protocol.
  • the first wireless communication module and the second wireless communication module may both be Bluetooth communication modules, or both wireless local area network (Wi-Fi, Wireless Fidelity) communication modules, or both may be infrared data transmission (lrDA, Infrared Data Association) modules, either ZigBee communication modules, or Ultra Wide Band, or short-field communication (NFC) modules.
  • the terminal device 100 may include a third wireless communication module, and the third wireless communication module is configured to communicate with an external device such as a base station or other mobile terminal 10 to facilitate communication between multiple mobile terminals 10.
  • the image acquisition device 200 when the image acquisition device 200 is installed in the installation slot 150, the image acquisition device 200 can be communicatively connected to the first wireless communication module through the second wireless communication module. At this time, the camera module 210 can execute a rear camera. Functions. The user can perform operations such as distant shooting and video recording through the image acquisition device 200. After the image acquisition device 200 is removed from the installation slot 150, the second wireless communication module can communicate with the first wireless communication module. At this time, the user can perform multi-angle and multi-scene shooting through the image acquisition device 200.
  • the image acquisition device 200 can be installed in and detached from the installation slot 150. After the image acquisition device 200 is detached from the installation slot 150, the image acquisition device 200 communicates with the terminal through the second wireless communication module.
  • the first wireless communication module of the device 100 is communicatively connected, and a user can perform multi-angle and multi-scene shooting through the image acquisition device 200.
  • a user may hold the image acquisition device 200 with one hand and the terminal device 100 with the other hand.
  • images of various positions and angles may be captured. The image is viewed through the display screen 120 of the terminal device 100.
  • the user may place the image capture device 200 somewhere and view the image captured by the image capture device 200 through the terminal device 100 at another place.
  • the image capturing device 200 can be detached from the terminal device 100 and can be connected to the terminal device 100 after disassembly, the side where the display screen 120 of the terminal device 100 does not need to be provided with a front camera, so the camera
  • the screen ratio of the terminal device 100 may be more than 85%. Since the device main board 140 is provided with a through hole 141, and when the image acquisition device 200 is installed in the mounting slot 150, the image acquisition device 200 is penetrated through the through hole 141, the above structure avoids stacking the image acquisition device 200 on the device main board 140 In this way, it is beneficial to reduce the thickness of the terminal device 100 and further to reduce the thickness of the mobile terminal 10.
  • the mobile terminal 10 includes a terminal device 100 and an image acquisition device 200.
  • the terminal device 100 includes a display screen 120, a first power module 130, a device main board 140, and a first wireless communication module.
  • the first power module 130 can supply power to the display 120, the device main board 140, and the first wireless communication module.
  • the display 120 is available.
  • the first wireless communication module can be communicatively connected with the device main board 140.
  • a mounting slot 150 is defined on a side of the terminal device 100 facing away from the displayable area of the display screen 120.
  • the device main board 140 is U-shaped, and the device main board 140 includes a main body portion 142 and two extension portions 144 extending from both ends of the main body portion 142.
  • the main body portion 142 is located between the two extension portions 144, and the main body portion 142 and two Each extension 144 defines a notch 143, and the groove wall of the mounting groove 150 passes through the notch 143.
  • the image acquisition device 200 includes a camera module 210, a second power module 220, and a second wireless communication module.
  • the second power module 220 can supply power to the camera module 210 and the second wireless communication module.
  • the camera module 210 has a light incident surface 211, and ambient light can pass through the light incident surface 211 and be incident on a photosensitive element of the camera module 210.
  • the image acquisition device 200 can be installed in the installation groove 150 so that the light incident surface 211 is exposed on the side facing away from the displayable area, and the image acquisition device 200 is penetrated through the notch 143.
  • the image acquisition device 200 can be detached from the installation slot 150.
  • the second wireless communication module can be communicatively connected with the first wireless communication module.
  • the extending portion 144 is substantially parallel to the width direction of the terminal device 100.
  • the extending portion 144 is substantially parallel to the length direction of the terminal device 100.
  • the image acquisition device 200 can be installed in and detached from the installation slot 150. After the image acquisition device 200 is detached from the installation slot 150, the image acquisition device 200 is The communication module is communicatively connected to the first wireless communication module of the terminal device 100.
  • the user can perform multi-angle and multi-scenario shooting through the image acquisition device 200, which is beneficial to improving the user experience, and is not repeated here.
  • the structure in this embodiment can also increase the screen ratio of the terminal device 100, which is not repeated here. Since the device main board 140 is U-shaped and defines a notch 143, when the image acquisition device 200 is installed in the installation slot 150, the image acquisition device 200 is disposed in the notch 143. The above structure avoids stacking the image acquisition device 200 on the device main board 140 In this way, it is beneficial to reduce the thickness of the terminal device 100 and further to reduce the thickness of the mobile terminal 10.
  • the mobile terminal 10 includes a terminal device 100 and an image acquisition device 200.
  • the terminal device 100 includes a display screen 120, a first power module 130, a device main board 140, and a first wireless communication module.
  • the first power module 130 can supply power to the display 120, the device main board 140, and the first wireless communication module.
  • the display 120 is available.
  • the first wireless communication module can be communicatively connected with the device main board 140.
  • the side of the terminal device 100 facing away from the displayable area of the display screen 120 is provided with a mounting slot 150.
  • the device main board 140 is L-shaped and defines a right-angled avoidance area 145, and the wall of the installation slot 150 passes through the right-angled avoidance area 145. It can be understood that, in this embodiment, the device main board 140 is composed of two parts that are substantially vertical so that the device main board 140 is L-shaped and defines a right-angle avoidance area 145.
  • the image acquisition device 200 includes a camera module 210, a second power module 220, and a second wireless communication module.
  • the second power module 220 can supply power to the camera module 210 and the second wireless communication module.
  • the camera module 210 has a light incident surface 211, and ambient light can pass through the light incident surface 211 and be incident on a photosensitive element of the camera module 210.
  • the image acquisition device 200 can be installed in the installation groove 150 so that the light incident surface 211 is exposed on the side facing away from the displayable area, and the image acquisition device 200 is disposed in the right-angle sheltered area 145.
  • the image acquisition device 200 can be detached from the installation slot 150.
  • the second wireless communication module can be communicatively connected with the first wireless communication module.
  • the image acquisition device 200 can be installed in and detached from the installation slot 150. After the image acquisition device 200 is detached from the installation slot 150, the image acquisition device 200 is The communication module is communicatively connected to the first wireless communication module of the terminal device 100.
  • the user can perform multi-angle and multi-scenario shooting through the image acquisition device 200, which is beneficial to improving the user experience, and is not repeated here. It can be understood that the structure in this embodiment can also increase the screen ratio of the terminal device 100, which is not repeated here.
  • the device main board 140 is L-shaped and defines a right-angled avoidance area 145, when the image acquisition device 200 is installed in the installation groove 150, the image acquisition device 200 is disposed in the right-angled escape area 145, and the above structure avoids the image acquisition device 200 Overlaying on the device main board 140 is beneficial to reducing the thickness of the terminal device 100 and further reducing the thickness of the mobile terminal 10.
  • the terminal device 100 is substantially rectangular.
  • the terminal device 100 includes a rear wall 111 and a side wall connected to the outer periphery of the display screen 120.
  • the rear wall 111 is located on a side facing away from the displayable area and Connected to the side wall, the first power module 130 and the device main board 140 are located between the rear wall 111 and the display screen 120.
  • the side wall includes a left side wall 112 and a right side wall 114 opposite to each other, and a top side wall 116 and a bottom side wall 118 opposite to each other.
  • the left side wall 112 and the right side 114 are located on the top side wall 116 and the bottom side wall.
  • the top side wall 116 and the bottom side wall 118 are located between the left side wall 112 and the right side wall 114.
  • the mounting groove 150 penetrates the rear wall 111.
  • the mounting groove 150 is located between the left side wall 112 and the right side wall 114, and the mounting groove 150 is located between the top side wall 116 and the bottom side wall 118.
  • the image acquisition device 200 is substantially rectangular in shape.
  • the image acquisition device 200 includes a cover 230, and a camera module 210 and a second power module 220 are disposed in the cover 230.
  • the cover 230 includes a front end surface 231 and a rear end surface 233 disposed opposite to each other, and a side end surface connected between the front end surface 231 and the rear end surface 233.
  • the side end surface includes a left end surface 232, a right end surface 234, and opposite ends.
  • the top surface 236 and the bottom end surface 238 are provided, and the left end surface 232 and the right end surface 234 are located between the top surface 236 and the bottom end surface 238.
  • the top surface 236 and the bottom end surface 238 are located between the left end surface 232 and the right end surface 234.
  • the light incident surface 211 is exposed from the front end surface 231.
  • the front surface 231 can be flush with the outer surface of the rear wall 111.
  • the mobile terminal 10 can maintain a high overall appearance.
  • the light incident surface 211 protrudes from the front end surface 231.
  • the position of the light-incident surface 211 of the image acquisition device 200 can be made thicker, and other positions of the image acquisition device 200 can be made thinner. Therefore, it is advantageous for the lightness and thinness of the image acquisition device 200, and thus the mobile terminal 10 Thin and light.
  • the image acquisition device 200 includes a module main board 240 disposed in a cover 230, a second power module 220 is stacked on the module main board 240 and can supply power to the module main board 240.
  • the second wireless communication module is in communication connection.
  • the module main board 240 may include a circuit board and a plurality of electronic components connected to the circuit board.
  • the module main board 240 may process the image information collected by the camera module 210 and send it to the terminal device 100 through the second wireless communication module.
  • the module main board 240 is provided with a first through hole 241 so that the module main board 240 has a substantially annular shape.
  • the camera module 210 includes a lens barrel 213, and the lens barrel 213 is penetrated in the first through hole 241. The above arrangement can prevent the lens barrel 213 from being stacked on the module main board 240, so that the arrangement of the internal components of the image acquisition device 200 is more compact, which is beneficial to reducing the overall thickness of the image acquisition device 200.
  • the second power module 220 is provided with a second through hole 221 so that the second power module 220 is substantially annular.
  • the second through hole 221 communicates with the first through hole 241 and the lens barrel 213 is passed through.
  • the above arrangement can prevent the lens barrel 213 from being stacked on the second power module 220, so that the arrangement of the internal components of the image acquisition device 200 is more compact, which is beneficial to reducing the overall thickness of the image acquisition device 200.
  • the first power module 130 and the second power module 220 include a battery that can be repeatedly charged and discharged, such as a lithium battery.
  • the first power module 130 and the second power module 220 may also adopt a fuel cell or other batteries.
  • the second power module 220 may be connected to the module main board through a power FPC (Flexible Printed Circuit Board). 240, so that the second power module 220 can supply power to the module main board 240, which is not repeated here.
  • FPC Flexible Printed Circuit Board
  • the image acquisition device 200 may include a module contact 250, and the terminal device 100 includes a device contact 160.
  • the module contact 250 can contact the device contact 160. Connected to enable the terminal device 100 to charge the image capture device 200.
  • the above structure is beneficial for the terminal device 100 to charge the image acquisition device 200, and it is beneficial for the image acquisition device 200 to retain sufficient power for the convenience of the user.
  • the module contact 250 or the device contact 160 may be a metal contact, and the module contact 250 and the device contact 160 may have various structural forms.
  • a small hole can be opened in the image acquisition device 200 and a metal contact can be installed as the module contact 250, and a protruding metal contact can be provided as the device contact 160 in the terminal device 100.
  • a metal contact can be installed as the module contact 250, and a protruding metal contact can be provided as the device contact 160 in the terminal device 100.
  • the device contact 160 can be pulled out from the device main board 140 through the FPC. Since the first power module 130 can supply power to the device main board 140, the FPC and the device contact 160 can be used to charge the image capture device 200.

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  • Signal Processing (AREA)
  • Multimedia (AREA)
  • Telephone Set Structure (AREA)
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Abstract

一种移动终端(10),包括终端设备(100)和图像采集设备(200)。终端设备(100)包括显示屏(120)、第一电源模块(130)、设备主板(140)和第一无线通信模块,终端设备(100)开设有安装槽(150),设备主板(140)开设有通孔(141),安装槽(150)的槽壁穿过通孔(141)。图像采集设备(200)包括摄像头模组(210)、第二电源模块(220)和第二无线通信模块,摄像头模组(210)具有入光面(211),图像采集设备(200)能够安装于安装槽(150)内以使入光面(211)外露,且当图像采集设备(200)安装于安装槽(150)内时,图像采集设备(200)穿设于通孔(141)。图像采集设备(200)能够从安装槽(150)内拆卸,且拆卸后能够与第一无线通信模块通信连接。

Description

移动终端及其终端设备 技术领域
本发明涉及移动终端的技术领域,特别是涉及一种移动终端及其终端设备。
背景技术
一般的移动终端(手机、平板等)上配备有摄像头,摄像头可用于提供视频通话、拍摄等功能。摄像头的位置比较固定,拍摄场景较为受限。
发明内容
基于此,有必要提供一种移动终端及其终端设备。
一种移动终端,包括:
终端设备,包括显示屏、第一电源模块、设备主板和第一无线通信模块,所述第一电源模块能够为所述显示屏、所述设备主板和所述第一无线通信模块供电,所述第一无线通信模块能够与所述设备主板通信连接;所述终端设备的背向所述显示屏的可显示区的一侧开设有安装槽;所述设备主板开设有通孔,所述安装槽的槽壁穿过所述通孔;及
图像采集设备,包括摄像头模组、第二电源模块和第二无线通信模块,所述第二电源模块能够为所述摄像头模组和所述第二无线通信模块供电;所述摄像头模组具有入光面;所述图像采集设备能够安装于所述安装槽内以使所述入光面外露于背向所述可显示区的一侧,且当所述图像采集设备安装于所述安装槽内时,所述图像采集设备穿设于所述通孔;所述图像采集设备能够从所述安装槽内拆卸,在所述图像采集设备从所述安装槽内拆卸后,所述第二无线通信模块能够与所述第一无线通信模块通信连接。
一种终端设备,包括显示屏、第一电源模块和设备主板,所述第一电源模块能够为所述显示屏和所述设备主板供电;所述终端设备的背向所述显示屏的可显示区的一侧开设有安装槽;所述设备主板开设有通孔,且所述安装槽的槽壁穿过所述通孔。
一种移动终端,包括:
终端设备,包括显示屏、第一电源模块、设备主板和第一无线通信模块,所述第一电源模块能够为所述显示屏、所述设备主板和所述第一无线通信模块供电,所述第一无线通信模块能够与所述设备主板通信连接;所述终端设备的背向所述显示屏的可显示区的一侧开设有安装槽;所述设备主板包括主体部和由所述主体部两端延伸而出的两个延伸部,所述主体部与两个所述延伸部界定缺口,所述安装槽的槽壁穿过所述缺口;及
图像采集设备,包括摄像头模组、第二电源模块和第二无线通信模块,所述第二电源模块能够为所述摄像头模组和所述第二无线通信模块供电;所述摄像头模组具有入光面;所述图像采集设备能够安装于所述安装槽内以使所述入光面外露于背向所述可显示区的一侧,且使所述图像采集设备穿设于所述缺口;所述图像采集设备能够从所述安装槽内拆卸,在所述图像采集设备从所述安装槽内拆卸后,所述第二无线通信模块能够与所述第一无线通信模块通信连接。
一种终端设备,包括显示屏、第一电源模块和设备主板,所述第一电源模块能够为所述显示屏和所述设备主板供电;所述终端设备的背向所述显示屏的可显示区的一侧开设有安装槽;所述设备主板包括主体部和由所述主体部两端延伸而出的两个延伸部,所述主体部与两个所述延伸部界定缺口,所述安装槽的槽壁穿过所述缺口。
一种移动终端,包括:
终端设备,包括显示屏、第一电源模块、设备主板和第一无线通信模块,所述第一电源模块能够为所述显示屏、所述设备主板和所述第一无线通信模块供电,所述第一无线通 信模块能够与所述设备主板通信连接;所述终端设备的背向所述显示屏的可显示区的一侧开设有安装槽;所述设备主板界定直角避空区,所述安装槽的槽壁穿过所述直角避空区;及
图像采集设备,包括摄像头模组、第二电源模块和第二无线通信模块,所述第二电源模块能够为所述摄像头模组和所述第二无线通信模块供电;所述摄像头模组具有入光面;所述图像采集设备能够安装于所述安装槽内以使所述入光面外露于背向所述可显示区的一侧,且使所述图像采集设备穿设于所述直角避空区;所述图像采集设备能够从所述安装槽内拆卸,在所述图像采集设备从所述安装槽内拆卸后,所述第二无线通信模块能够与所述第一无线通信模块通信连接。
一种终端设备,包括显示屏、第一电源模块和设备主板,所述第一电源模块能够为所述显示屏和所述设备主板供电;所述终端设备的背向所述显示屏的可显示区的一侧开设有用于安装图像采集设备的安装槽,且所述图像采集设备能够从所述安装槽内拆卸;所述设备主板界定直角避空区,所述安装槽的槽壁穿过所述直角避空区。
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实施例的附图。
图1为一实施例中移动终端的图像采集设备安装于安装槽的一个视角的立体图;
图2为图1所示移动终端的图像采集设备安装于安装槽的另一个视角的立体图;
图3为图2所示移动终端的图像采集设备从安装槽内拆卸后的立体图;
图4为图2所示移动终端的一实施例中拆除部分元器件后的立体图;
图5为图2所示移动终端的一实施例中拆除部分元器件后的主视图;
图6为图5所示移动终端的模块触点与设备主板的连接示意图;
图7为图3所示移动终端的图像采集设备的一种使用场景的示意图;
图8为图2所示移动终端的另一实施例中拆除部分元器件后的立体图;
图9为图2所示移动终端的另一实施例中拆除部分元器件后的立体图;
图10为图2所示移动终端的又一实施例中拆除部分元器件后的立体图。
具体实施方式
为了便于理解本发明,下面将参照相关附图对本发明进行更全面的描述。附图中给出了本发明的较佳的实施例。但是,本发明可以以许多不同的形式来实现,并不限于本文所描述的实施例。相反地,提供这些实施例的目的是使对本发明的公开内容的理解更加透彻全面。
作为在此使用的“终端设备”指包括但不限于经由以下任意一种或者数种连接方式连接的能够接收和/或发送通信信号的装置:
(1)经由有线线路连接方式,如经由公共交换电话网络(Public Switched Telephone Networks,PSTN)、数字用户线路(Digital Subscriber Line,DSL)、数字电缆、直接电缆连接;
(2)经由无线接口方式,如蜂窝网络、无线局域网(Wireless Local Area Network,WLAN)、诸如DVB-H网络的数字电视网络、卫星网络、AM-FM广播发送器。
被设置成通过无线接口通信的终端设备可以被称为“移动终端”。移动终端的示例包括但不限于以下电子装置:
(1)卫星电话或蜂窝电话;
(2)可以组合蜂窝无线电电话与数据处理、传真以及数据通信能力的个人通信系统(Personal Communications System,PCS)终端;
(3)无线电电话、寻呼机、因特网/内联网接入、Web浏览器、记事簿、日历、配备有全球定位系统(Global Positioning System,GPS)接收器的个人数字助理(Personal Digital Assistant,PDA);
(4)常规膝上型和/或掌上型接收器;
(5)常规膝上型和/或掌上型无线电电话收发器等。
参考图1、图2和图3,在一种实施方式中,移动终端10为智能手机,移动终端10包括终端设备100和图像采集设备200。终端设备100包括显示屏120、第一电源模块130、设备主板140和第一无线通信模块,第一电源模块130能够为显示屏120、设备主板140和第一无线通信模块供电,显示屏120可用于显示信息并为用户提供交互界面。终端设备100的背向显示屏120的可显示区的一侧开设有安装槽150。同时参考图4,设备主板140开设有通孔141以使设备主板140大致呈环形,安装槽150的槽壁穿过通孔141。设备主板140上集成了多种电子元器件例如处理器、电源管理模块、基带模块,存储模块等,第一无线通信模块能够与设备主板140通信连接。同时参考图5和图6,图像采集设备200包括摄像头模组210、第二电源模块220和第二无线通信模块,第二电源模块220能够摄像头模组210和第二无线通信模块供电。摄像头模组210具有入光面211,环境光线能够穿过入光面211并入射至摄像头模组210的感光元件上。图像采集设备200能够安装于安装槽150内以使入光面211外露于背向可显示区的一侧,且图像采集设备200穿设于通孔141。图像采集设备200能够从安装槽150内拆卸,在图像采集设备200从安装槽150内拆卸后,第二无线通信模块能够与第一无线通信模块通信连接。在其他实施方式中,移动终端10可以为平板等。
第一无线通信模块和第二通信模块用于终端设备100与图像采集设备200之间的数据传输。第一无线通信模块和第二无线通信模块可以采用近距通信技术,且第一无线通信模块与第二无线通信模块采用相同的通信协议。例如,第一无线通信模块和第二无线通信模块可以均为蓝牙(Bluetooth)通信模块,或者均为无线局域网(Wi-Fi,Wireless Fidelity)通信模块,或者均为红外数据传输(lrDA,Infrared Data Association)模块,或均为ZigBee通信模块,或者均为超宽频(Ultra WideBand),或者均为短距通信(NFC,Near Field Communication)模块等。在一实施例中,终端设备100可以包括第三无线通信模块,第三无线通信模块用于与外部设备例如基站或者其他移动终端10通信连接,以方便多个移动终端10之间的通信。
可以理解的是,当图像采集设备200安装于安装槽150内时,图像采集设备200可以通过第二无线通信模块与第一无线通信模块通信连接,此时,摄像头模组210可以执行后置摄像头的功能。用户可以通过图像采集设备200进行远景拍摄、视频录制等操作。当图像采集设备200从安装槽150内拆卸后,第二无线通信模块能够与第一无线通信模块通信连接,此时,用户可以通过图像采集设备200进行多角度、多场景的拍摄。
上述移动终端10,图像采集设备200能够安装于安装槽150内且能够从安装槽150内拆卸,在图像采集设备200从安装槽150内拆卸后,图像采集设备200通过第二无线通信模块与终端设备100的第一无线通信模块通信连接,用户可以通过图像采集设备200进行多角度、多场景的拍摄。参考图7,在一种实施方式中,用户可以用一只手握持图像采集设备200,另一只手握持终端设备100,通过图像采集设备200,可以拍摄多种位置和角度的影像,并通过终端设备100的显示屏120查看影像。又如,用户可以将图像采集设备200放置在某处,在另一处通过终端设备100查看图像采集设备200拍摄的影像。可以理解的是,由于图像采集设备200能够从终端设备100上拆卸,且拆卸后能够与终端设备100通信连接,终端设备100的显示屏120所在的一侧可以无需设置前置摄像头,因此可 以提升终端设备100的屏占比。例如,采用上述结构的终端设备100的屏占比可以在85%以上。由于设备主板140开设有通孔141,且当图像采集设备200安装于安装槽150内时,图像采集设备200穿设于通孔141,上述结构避免了将图像采集设备200叠设于设备主板140上,有利于终端设备100的轻薄化,进而有利于移动终端10的轻薄化。
参考图8和图9,在另一实施例中,移动终端10包括终端设备100和图像采集设备200。终端设备100包括显示屏120、第一电源模块130、设备主板140和第一无线通信模块,第一电源模块130能够为显示屏120、设备主板140和第一无线通信模块供电,显示屏120可用于显示信息并为用户提供交互界面,第一无线通信模块能够与设备主板140通信连接。终端设备100的背向显示屏120的可显示区的一侧开设有安装槽150。设备主板140呈U形,且设备主板140包括主体部142和由主体部142的两端延伸而出的两个延伸部144,主体部142位于两个延伸部144之间,主体部142与两个延伸部144界定缺口143,安装槽150的槽壁穿过缺口143。图像采集设备200包括摄像头模组210、第二电源模块220和第二无线通信模块,第二电源模块220能够为摄像头模组210和第二无线通信模块供电。摄像头模组210具有入光面211,环境光线能够穿过入光面211并入射至摄像头模组210的感光元件上。图像采集设备200能够安装于安装槽150内以使入光面211外露于背向可显示区的一侧,且使图像采集设备200穿设于缺口143。图像采集设备200能够从安装槽150内拆卸,在图像采集设备200从安装槽150内拆卸后,第二无线通信模块能够与第一无线通信模块通信连接。参考图8,在一实施例中,延伸部144与终端设备100的宽度方向大致平行。参考图9,在另一实施例中,延伸部144与终端设备100的长度方向大致平行。
本实施方式中的移动终端10,图像采集设备200能够安装于安装槽150内且能够从安装槽150内拆卸,在图像采集设备200从安装槽150内拆卸后,图像采集设备200通过第二无线通信模块与终端设备100的第一无线通信模块通信连接,用户可以通过图像采集设备200进行多角度、多场景的拍摄,有利于提升用户体验,此处不再赘述。可以理解的是,本实施方式中的结构同样可以提升终端设备100的屏占比,此处不再赘述。由于设备主板140呈U形且界定缺口143,当图像采集设备200安装于安装槽150内时,图像采集设备200穿设于缺口143,上述结构避免了将图像采集设备200叠设于设备主板140上,有利于终端设备100的轻薄化,进而有利于移动终端10的轻薄化。
参考图10,在又一实施例中,移动终端10包括终端设备100和图像采集设备200。终端设备100包括显示屏120、第一电源模块130、设备主板140和第一无线通信模块,第一电源模块130能够为显示屏120、设备主板140和第一无线通信模块供电,显示屏120可用于显示信息并为用户提供交互界面,第一无线通信模块能够与设备主板140通信连接。终端设备100的背向显示屏120的可显示区的一侧开设有安装槽150,设备主板140呈L形且界定直角避空区145,安装槽150的槽壁穿过直角避空区145。可以理解的是,在本实施方式中,设备主板140由大致垂直的两部分组成以使设备主板140呈L形且界定直角避空区145。图像采集设备200包括摄像头模组210、第二电源模块220和第二无线通信模块,第二电源模块220能够为摄像头模组210和第二无线通信模块供电。摄像头模组210具有入光面211,环境光线能够穿过入光面211并入射至摄像头模组210的感光元件上。图像采集设备200能够安装于安装槽150内以使入光面211外露于背向可显示区的一侧,且使图像采集设备200穿设于直角避空区145。图像采集设备200能够从所述安装槽150内拆卸,在图像采集设备200从安装槽150内拆卸后,第二无线通信模块能够与第一无线通信模块通信连接。
本实施方式中的移动终端10,图像采集设备200能够安装于安装槽150内且能够从安装槽150内拆卸,在图像采集设备200从安装槽150内拆卸后,图像采集设备200通过第二无线通信模块与终端设备100的第一无线通信模块通信连接,用户可以通过图像采集 设备200进行多角度、多场景的拍摄,有利于提升用户体验,此处不再赘述。可以理解的是,本实施方式中的结构同样可以提升终端设备100的屏占比,此处不再赘述。由于设备主板140呈L形且界定直角避空区145,当图像采集设备200安装于安装槽150内时,图像采集设备200穿设于直角避空区145,上述结构避免了将图像采集设备200叠设于设备主板140上,有利于终端设备100的轻薄化,进而有利于移动终端10的轻薄化。
参考图3,在上述实施方式中,终端设备100大致呈矩形块状,终端设备100包括后壁111及连接于显示屏120外周的侧壁,后壁111位于背向可显示区的一侧且与侧壁连接,第一电源模块130、设备主板140位于后壁111和显示屏120之间。侧壁包括相背设置的左侧壁112、右侧壁114,及相背设置的顶侧壁116、底侧壁118,左侧壁112、右侧壁114位于顶侧壁116、底侧壁118之间,顶侧壁116、底侧壁118位于左侧壁112、右侧壁114之间。安装槽150贯穿后壁111。安装槽150位于左侧壁112、右侧壁114之间,且安装槽150位于顶侧壁116、底侧壁118之间。
参考图3,图像采集设备200大致呈矩形块状,图像采集设备200包括罩壳230,摄像头模组210、第二电源模块220设于罩壳230内。罩壳230包括相背设置的前端面231、后端面233,及连接于前端面231、后端面233之间的侧端面,侧端面包括相背设置的左端面232、右端面234,及相背设置的顶端面236、底端面238,左端面232、右端面234位于顶端面236、底端面238之间,顶端面236、底端面238位于左端面232、右端面234之间。入光面211外露于前端面231。在一实施例中,当图像采集设备200安装于安装槽150内时,前端面231能够与后壁111的外表面平齐。上述结构的图像采集设备200安装于安装槽150内后,移动终端10能够保持较高的外观整体性。在一实施例中,入光面211凸出于前端面231。上述结构,图像采集设备200的入光面211所在位置可以做得较厚,图像采集设备200的其他位置可以做得较薄,因此有利于图像采集设备200的轻薄化,进而有利于移动终端10的轻薄化。
参考图4,图像采集设备200包括设于罩壳230内的模块主板240,第二电源模块220叠设于模块主板240且能够为模块主板240供电,模块主板240能够分别与摄像头模组210和第二无线通信模块通信连接。模块主板240可以包括电路板及连接于电路板上的多个电子元器件,模块主板240可以对摄像头模组210采集的图像信息进行处理,并通过第二无线通信模块发送至终端设备100。模块主板240开设有第一贯通孔241以使模块主板240大致呈环形,摄像头模组210包括镜头筒213,镜头筒213穿设于第一贯通孔241。上述设置可以避免将镜头筒213叠设在模块主板240上,因此使得图像采集设备200的内部元器件的布置较为紧凑,有利于减小图像采集设备200的整体的厚度。
进一步,参考图5和图6,第二电源模块220开设有第二贯通孔221以使第二电源模块220大致呈环形,第二贯通孔221与第一贯通孔241连通,镜头筒213穿设于第一贯通孔241和第二贯通孔221。上述设置可以避免将镜头筒213叠设在第二电源模块220上,因此使得图像采集设备200的内部元器件的布置较为紧凑,有利于减小图像采集设备200的整体的厚度。可以理解的是,第一电源模块130、第二电源模块220包括可反复充放电的电池例如锂电池。在其他实施方式中,第一电源模块130、第二电源模块220也可以采用燃料电池或其他电池等,第二电源模块220可通过电源FPC(Flexible Printed Circuit board,柔性线路板)连接于模块主板240,以使第二电源模块220能够为模块主板240供电,此处不再赘述。
参考图5和图6,图像采集设备200可以包括模块触点250,终端设备100包括设备触点160,当图像采集设安装于安装槽150内时,模块触点250能够与设备触点160接触连接,以使终端设备100能够为图像采集设备200充电。上述结构有利于终端设备100为图像采集设备200的充电,有利于图像采集设备200保留充足的电量,以方便用户使用。可以理解的是,模块触点250或设备触点160可以为金属触点,模块触点250和设备触点 160可以具有多种结构形式。例如,可以在图像采集设备200开设小孔并安装金属触点作为模块触点250,在终端设备100设置凸出的金属触点作为设备触点160,通过模块触点250与设备触点160的配合实现终端设备100为终端设备100充电。进一步,设备触点160可以通过FPC从设备主板140上引出,由于第一电源模块130能够为设备主板140供电,因而可以进一步通过FPC和设备触点160为图像采集设备200充电。
以上所述实施例的各技术特征可以进行任意的组合,为使描述简洁,未对上述实施例中的各个技术特征所有可能的组合都进行描述,然而,只要这些技术特征的组合不存在矛盾,都应当认为是本说明书记载的范围。
以上所述实施例仅表达了本发明的几种实施方式,其描述较为具体和详细,但并不能因此而理解为对发明专利范围的限制。应当指出的是,对于本领域的普通技术人员来说,在不脱离本发明构思的前提下,还可以做出若干变形和改进,这些都属于本发明的保护范围。因此,本发明专利的保护范围应以所附权利要求为准。

Claims (27)

  1. 一种移动终端,包括:
    终端设备,包括显示屏、第一电源模块、设备主板和第一无线通信模块,所述第一电源模块能够为所述显示屏、所述设备主板和所述第一无线通信模块供电,所述第一无线通信模块能够与所述设备主板通信连接;所述终端设备的背向所述显示屏的可显示区的一侧开设有安装槽;所述设备主板开设有通孔,所述安装槽的槽壁穿过所述通孔;及
    图像采集设备,包括摄像头模组、第二电源模块和第二无线通信模块,所述第二电源模块能够为所述摄像头模组和所述第二无线通信模块供电;所述摄像头模组具有入光面;所述图像采集设备能够安装于所述安装槽内以使所述入光面外露于背向所述可显示区的一侧,且当所述图像采集设备安装于所述安装槽内时,所述图像采集设备穿设于所述通孔;所述图像采集设备能够从所述安装槽内拆卸,在所述图像采集设备从所述安装槽内拆卸后,所述第二无线通信模块能够与所述第一无线通信模块通信连接。
  2. 根据权利要求1所述的移动终端,其特征在于,所述终端设备包括后壁,及连接于所述显示屏外周的侧壁,所述后壁位于背向所述可显示区的一侧且与所述侧壁连接,所述第一电源模块、所述设备主板位于所述后壁和所述显示屏之间;所述侧壁包括相背设置的左侧壁、右侧壁,及相背设置的顶侧壁、底侧壁,所述左侧壁、所述右侧壁位于所述顶侧壁、所述底侧壁之间,所述顶侧壁、所述底侧壁位于所述左侧壁、所述右侧壁之间;所述安装槽贯穿所述后壁;所述安装槽位于所述左侧壁、所述右侧壁之间,且所述安装槽位于所述顶侧壁、所述底侧壁之间。
  3. 根据权利要求2所述的移动终端,其特征在于,所述图像采集设备包括罩壳,所述摄像头模组、所述第二电源模块设于所述罩壳内;所述罩壳包括相背设置的前端面、后端面,及连接于所述前端面、所述后端面之间的侧端面,所述侧端面包括相背设置的左端面、右端面,及相背设置的顶端面、底端面,所述左端面、所述右端面位于所述顶端面、所述底端面之间,所述顶端面、所述底端面位于所述左端面、所述右端面之间;所述入光面外露于所述前端面,当所述图像采集设备安装于所述安装槽内时,所述前端面与所述后壁的外表面平齐。
  4. 根据权利要求3所述的移动终端,其特征在于,所述图像采集设备包括设于所述罩壳内的模块主板;所述第二电源模块叠设于所述模块主板且能够为所述模块主板供电,所述模块主板能够分别与所述摄像头模组和所述第二无线通信模块通信连接;所述模块主板开设有第一贯通孔,所述摄像头模组包括镜头筒,所述镜头筒穿设于所述第一贯通孔。
  5. 根据权利要求4所述的移动终端,其特征在于,所述第二电源模块开设有第二贯通孔,所述第二贯通孔与所述第一贯通孔连通,所述镜头筒穿设于所述第二贯通孔。
  6. 根据权利要求1所述的移动终端,其特征在于,所述图像采集设备包括模块触点,所述终端设备包括设备触点,当所述图像采集设备安装于所述安装槽内时,所述模块触点与所述设备触点接触连接,以使所述终端设备能够为所述图像采集设备充电。
  7. 一种终端设备,包括显示屏、第一电源模块和设备主板,所述第一电源模块能够为所述显示屏和所述设备主板供电;所述终端设备的背向所述显示屏的可显示区的一侧开设有安装槽;所述设备主板开设有通孔,且所述安装槽的槽壁穿过所述通孔。
  8. 根据权利要求7所述的终端设备,其特征在于,包括后壁,及连接于所述显示屏外周的侧壁,所述后壁位于背向所述可显示区的一侧且与所述侧壁连接,所述第一电源模块、所述设备主板位于所述后壁和所述显示屏之间;所述侧壁包括相背设置的左侧壁、右侧壁,及相背设置的顶侧壁、底侧壁,所述左侧壁、所述右侧壁位于所述顶侧壁、所述底侧壁之间,所述顶侧壁、所述底侧壁位于所述左侧壁、所述右侧壁之间;所述安装槽贯穿所述后壁;所述安装槽位于所述左侧壁、所述右侧壁之间,且所述安装槽位于所述顶侧壁、所述底侧壁之间。
  9. 根据权利要求7所述的终端设备,其特征在于,所述安装槽用于安装图像采集设备,且当所述图像采集设备安装于所述安装槽内时,所述图像采集设备穿设于所述通孔;所述终端设备包括第一无线通信模块,所述第一无线通信模块能够与所述设备主板通信连接,且所述第一无线通信模块能够与所述图像采集设备通信连接。
  10. 一种移动终端,包括:
    终端设备,包括显示屏、第一电源模块、设备主板和第一无线通信模块,所述第一电源模块能够为所述显示屏、所述设备主板和所述第一无线通信模块供电,所述第一无线通信模块能够与所述设备主板通信连接;所述终端设备的背向所述显示屏的可显示区的一侧开设有安装槽;所述设备主板包括主体部和由所述主体部两端延伸而出的两个延伸部,所述主体部与两个所述延伸部界定缺口,所述安装槽的槽壁穿过所述缺口;及
    图像采集设备,包括摄像头模组、第二电源模块和第二无线通信模块,所述第二电源模块能够为所述摄像头模组和所述第二无线通信模块供电;所述摄像头模组具有入光面;所述图像采集设备能够安装于所述安装槽内以使所述入光面外露于背向所述可显示区的一侧,且使所述图像采集设备穿设于所述缺口;所述图像采集设备能够从所述安装槽内拆卸,在所述图像采集设备从所述安装槽内拆卸后,所述第二无线通信模块能够与所述第一无线通信模块通信连接。
  11. 根据权利要求10所述的移动终端,其特征在于,所述终端设备包括后壁,及连接于所述显示屏外周的侧壁,所述后壁位于背向所述可显示区的一侧且与所述侧壁连接,所述第一电源模块、所述设备主板位于所述后壁和所述显示屏之间;所述侧壁包括相背设置的左侧壁、右侧壁,及相背设置的顶侧壁、底侧壁,所述左侧壁、所述右侧壁位于所述顶侧壁、所述底侧壁之间,所述顶侧壁、所述底侧壁位于所述左侧壁、所述右侧壁之间;所述安装槽贯穿所述后壁;所述安装槽位于所述左侧壁、所述右侧壁之间,且所述安装槽位于所述顶侧壁、所述底侧壁之间。
  12. 根据权利要求11所述的移动终端,其特征在于,所述图像采集设备包括罩壳,所述摄像头模组、所述第二电源模块设于所述罩壳内;所述罩壳包括相背设置的前端面、后端面,及连接于所述前端面、所述后端面之间的侧端面,所述侧端面包括相背设置的左端面、右端面,及相背设置的顶端面、底端面,所述左端面、所述右端面位于所述顶端面、所述底端面之间,所述顶端面、所述底端面位于所述左端面、所述右端面之间;所述入光面外露于所述前端面,当所述图像采集设备安装于所述安装槽内时,所述前端面与所述后壁的外表面平齐。
  13. 根据权利要求12所述的移动终端,其特征在于,所述图像采集设备包括设于所述罩壳内的模块主板;所述第二电源模块叠设于所述模块主板且能够为所述模块主板供电,所述模块主板能够分别与所述摄像头模组和所述第二无线通信模块通信连接;所述模块主板开设有第一贯通孔,所述摄像头模组包括镜头筒,所述镜头筒穿设于所述第一贯通孔。
  14. 根据权利要求13所述的移动终端,其特征在于,所述第二电源模块开设有第二贯通孔,所述第二贯通孔与所述第一贯通孔连通,所述镜头筒穿设于所述第二贯通孔。
  15. 根据权利要求10所述的移动终端,其特征在于,所述图像采集设备包括模块触点,所述终端设备包括设备触点,当所述图像采集设备安装于所述安装槽内时,所述模块触点与所述设备触点接触连接,以使所述终端设备能够为所述图像采集设备充电。
  16. 一种终端设备,包括显示屏、第一电源模块和设备主板,所述第一电源模块能够为所述显示屏和所述设备主板供电;所述终端设备的背向所述显示屏的可显示区的一侧开设有安装槽;所述设备主板包括主体部和由所述主体部两端延伸而出的两个延伸部,所述主体部与两个所述延伸部界定缺口,所述安装槽的槽壁穿过所述缺口。
  17. 根据权利要求16所述的终端设备,其特征在于,包括后壁,及连接于所述显示 屏外周的侧壁,所述后壁位于背向所述可显示区的一侧且与所述侧壁连接,所述第一电源模块、所述设备主板位于所述后壁和所述显示屏之间;所述侧壁包括相背设置的左侧壁、右侧壁,及相背设置的顶侧壁、底侧壁,所述左侧壁、所述右侧壁位于所述顶侧壁、所述底侧壁之间,所述顶侧壁、所述底侧壁位于所述左侧壁、所述右侧壁之间;所述安装槽贯穿所述后壁;所述安装槽位于所述左侧壁、所述右侧壁之间,且所述安装槽位于所述顶侧壁、所述底侧壁之间。
  18. 根据权利要求16所述的终端设备,其特征在于,所述安装槽用于安装图像采集设备,且当所述图像采集设备安装于所述安装槽内时,所述图像采集设备穿设于所述缺口;所述终端设备包括第一无线通信模块,所述第一无线通信模块能够与所述设备主板通信连接,且所述第一无线通信模块能够与所述图像采集设备通信连接。
  19. 一种移动终端,包括:
    终端设备,包括显示屏、第一电源模块、设备主板和第一无线通信模块,所述第一电源模块能够为所述显示屏、所述设备主板和所述第一无线通信模块供电,所述第一无线通信模块能够与所述设备主板通信连接;所述终端设备的背向所述显示屏的可显示区的一侧开设有安装槽;所述设备主板界定直角避空区,所述安装槽的槽壁穿过所述直角避空区;及
    图像采集设备,包括摄像头模组、第二电源模块和第二无线通信模块,所述第二电源模块能够为所述摄像头模组和所述第二无线通信模块供电;所述摄像头模组具有入光面;所述图像采集设备能够安装于所述安装槽内以使所述入光面外露于背向所述可显示区的一侧,且使所述图像采集设备穿设于所述直角避空区;所述图像采集设备能够从所述安装槽内拆卸,在所述图像采集设备从所述安装槽内拆卸后,所述第二无线通信模块能够与所述第一无线通信模块通信连接。
  20. 根据权利要求19所述的移动终端,其特征在于,所述终端设备包括后壁,及连接于所述显示屏外周的侧壁,所述后壁位于背向所述可显示区的一侧且与所述侧壁连接,所述第一电源模块、所述设备主板位于所述后壁和所述显示屏之间;所述侧壁包括相背设置的左侧壁、右侧壁,及相背设置的顶侧壁、底侧壁,所述左侧壁、所述右侧壁位于所述顶侧壁、所述底侧壁之间,所述顶侧壁、所述底侧壁位于所述左侧壁、所述右侧壁之间;所述安装槽贯穿所述后壁;所述安装槽位于所述左侧壁、所述右侧壁之间,且所述安装槽位于所述顶侧壁、所述底侧壁之间。
  21. 根据权利要求20所述的移动终端,其特征在于,所述图像采集设备包括罩壳,所述摄像头模组、所述第二电源模块设于所述罩壳内;所述罩壳包括相背设置的前端面、后端面,及连接于所述前端面、所述后端面之间的侧端面,所述侧端面包括相背设置的左端面、右端面,及相背设置的顶端面、底端面,所述左端面、所述右端面位于所述顶端面、所述底端面之间,所述顶端面、所述底端面位于所述左端面、所述右端面之间;所述入光面外露于所述前端面,当所述图像采集设备安装于所述安装槽内时,所述前端面与所述后壁的外表面平齐。
  22. 根据权利要求21所述的移动终端,其特征在于,所述图像采集设备包括设于所述罩壳内的模块主板;所述第二电源模块叠设于所述模块主板且能够为所述模块主板供电,所述模块主板能够分别与所述摄像头模组和所述第二无线通信模块通信连接;所述模块主板开设有第一贯通孔,所述摄像头模组包括镜头筒,所述镜头筒穿设于所述第一贯通孔。
  23. 根据权利要求22所述的移动终端,其特征在于,所述第二电源模块开设有第二贯通孔,所述第二贯通孔与所述第一贯通孔连通,所述镜头筒穿设于所述第二贯通孔。
  24. 根据权利要求19所述的移动终端,其特征在于,所述图像采集设备包括模块触点,所述终端设备包括设备触点,当所述图像采集设备安装于所述安装槽内时,所述模块 触点与所述设备触点接触连接,以使所述终端设备能够为所述图像采集设备充电。
  25. 一种终端设备,包括显示屏、第一电源模块和设备主板,所述第一电源模块能够为所述显示屏和所述设备主板供电;所述终端设备的背向所述显示屏的可显示区的一侧开设有用于安装图像采集设备的安装槽,且所述图像采集设备能够从所述安装槽内拆卸;所述设备主板界定直角避空区,所述安装槽的槽壁穿过所述直角避空区。
  26. 根据权利要求25所述的终端设备,其特征在于,包括后壁,及连接于所述显示屏外周的侧壁,所述后壁位于背向所述可显示区的一侧且与所述侧壁连接,所述第一电源模块、所述设备主板位于所述后壁和所述显示屏之间;所述侧壁包括相背设置的左侧壁、右侧壁,及相背设置的顶侧壁、底侧壁,所述左侧壁、所述右侧壁位于所述顶侧壁、所述底侧壁之间,所述顶侧壁、所述底侧壁位于所述左侧壁、所述右侧壁之间;所述安装槽贯穿所述后壁;所述安装槽位于所述左侧壁、所述右侧壁之间,且所述安装槽位于所述顶侧壁、所述底侧壁之间。
  27. 根据权利要求25所述的终端设备,其特征在于,所述安装槽用于安装图像采集设备,且当所述图像采集设备安装于所述安装槽内时,所述图像采集设备穿设于所述直角避空区;所述终端设备包括第一无线通信模块,所述第一无线通信模块能够与所述设备主板通信连接,且所述第一无线通信模块能够与所述图像采集设备通信连接。
PCT/CN2019/095730 2018-09-06 2019-07-12 移动终端及其终端设备 WO2020048224A1 (zh)

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Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN201233502Y (zh) * 2008-06-30 2009-05-06 宇龙计算机通信科技(深圳)有限公司 一种可拆卸摄像头的电子产品
CN102984308A (zh) * 2012-11-03 2013-03-20 河南锐骑文化传播有限公司 一种用于手机上的摄像头
CN203313292U (zh) * 2013-07-10 2013-11-27 上海海事大学 摄像头及带有该摄像头的移动设备
CN203951503U (zh) * 2014-02-18 2014-11-19 光碁科技股份有限公司 听筒可分离式手机
CN204669493U (zh) * 2015-06-08 2015-09-23 展开科技(深圳)有限公司 一种可拆卸手机摄像头
CN106161679A (zh) * 2015-03-30 2016-11-23 南昌欧菲光学技术有限公司 便携终端后盖电池及便携终端后盖电池的制备方法
CN206077540U (zh) * 2016-08-31 2017-04-05 深圳市至壹科技开发有限公司 一种用于移动终端的分离式摄像头
CN107707792A (zh) * 2017-09-19 2018-02-16 维沃移动通信有限公司 一种摄像头模组、终端设备及拍摄控制方法

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN201233502Y (zh) * 2008-06-30 2009-05-06 宇龙计算机通信科技(深圳)有限公司 一种可拆卸摄像头的电子产品
CN102984308A (zh) * 2012-11-03 2013-03-20 河南锐骑文化传播有限公司 一种用于手机上的摄像头
CN203313292U (zh) * 2013-07-10 2013-11-27 上海海事大学 摄像头及带有该摄像头的移动设备
CN203951503U (zh) * 2014-02-18 2014-11-19 光碁科技股份有限公司 听筒可分离式手机
CN106161679A (zh) * 2015-03-30 2016-11-23 南昌欧菲光学技术有限公司 便携终端后盖电池及便携终端后盖电池的制备方法
CN204669493U (zh) * 2015-06-08 2015-09-23 展开科技(深圳)有限公司 一种可拆卸手机摄像头
CN206077540U (zh) * 2016-08-31 2017-04-05 深圳市至壹科技开发有限公司 一种用于移动终端的分离式摄像头
CN107707792A (zh) * 2017-09-19 2018-02-16 维沃移动通信有限公司 一种摄像头模组、终端设备及拍摄控制方法

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