WO2020010948A1 - Dispositif électronique - Google Patents

Dispositif électronique Download PDF

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Publication number
WO2020010948A1
WO2020010948A1 PCT/CN2019/088897 CN2019088897W WO2020010948A1 WO 2020010948 A1 WO2020010948 A1 WO 2020010948A1 CN 2019088897 W CN2019088897 W CN 2019088897W WO 2020010948 A1 WO2020010948 A1 WO 2020010948A1
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WO
WIPO (PCT)
Prior art keywords
image acquisition
acquisition device
hole
bracket
terminal device
Prior art date
Application number
PCT/CN2019/088897
Other languages
English (en)
Chinese (zh)
Inventor
杨自美
Original Assignee
Oppo广东移动通信有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 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 WO2020010948A1 publication Critical patent/WO2020010948A1/fr

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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

Definitions

  • the present invention relates to the technical field of electronic devices, and in particular, to an electronic device.
  • the image acquisition module of an electronic device such as a traditional mobile phone is fixed on the electronic device. It is difficult to reuse the rear camera as the front camera, which limits the shooting scene of the electronic device.
  • An electronic device includes an image acquisition device, a rotating bracket, and a terminal device.
  • the image acquisition device includes a camera assembly, a battery, and a motherboard.
  • the battery can supply power to the motherboard.
  • the camera assembly is connected to the motherboard.
  • the image acquisition device is capable of wirelessly communicating with the terminal device;
  • the rotation bracket is provided with a light entrance hole, and the image acquisition device is detachably connected to the rotation bracket.
  • the image acquisition device is detachably connected to the rotation bracket.
  • the terminal device includes a display surface and a back surface disposed opposite to each other, a receiving groove is provided on the back surface of the terminal device, and the rotating bracket is rotatably connected to the terminal device for driving the image acquisition device into or Out of the accommodating slot; when the image acquisition device is turned into the accommodating slot with the rotating support, the rotating support is tiled on the slot of the accommodating slot.
  • An electronic device includes:
  • the terminal device includes a display surface and a back surface disposed opposite to each other, and the back surface is provided with an accommodation slot;
  • a rotating bracket is provided in the receiving slot and can be rotated relative to the terminal device in the receiving slot; the rotating bracket is provided with a light entrance hole;
  • An image acquisition device includes a camera assembly, a main board, and a battery, the camera assembly is connected to the main board, and the battery can supply power to the camera assembly and the main board; the image acquisition apparatus can be installed on the rotating bracket to enable The light incident surface of the camera assembly is exposed from the light incident hole, and the rotating bracket can drive the image acquisition device into and out of the accommodation slot; the image acquisition device can also be detached from the rotation bracket, And after being detached, the image acquisition device can be wirelessly connected to the terminal device.
  • FIG. 1 is a schematic front view of an electronic device according to an embodiment
  • FIG. 2 is a schematic rear view of the electronic device shown in FIG. 1 in an initial state
  • FIG. 3 is a schematic diagram of taking the image acquisition device out of the accommodation slot when the rotating bracket in the electronic device shown in FIG. 1 rotates a certain angle relative to the terminal device;
  • FIG. 4 is a schematic side view of the electronic device shown in FIG. 1 when the rotating bracket is rotated relative to the terminal device to bring the image acquisition device out of the accommodation slot;
  • FIG. 5 is a schematic diagram of the image acquisition device shown in FIG. 3 after being removed from the rotating bracket;
  • FIG. 6 is an exploded view of the electronic device shown in FIG. 3;
  • FIG. 7 is a schematic diagram of a separate setting of the rotating bracket and the image acquisition device shown in FIG. 6; FIG.
  • FIG. 8 is a schematic view of the rotating bracket shown in FIG. 7 at another angle;
  • FIG. 9 is a schematic diagram of another embodiment of the rotating bracket shown in FIG. 7; FIG.
  • FIG. 10 is a schematic diagram of the rotating bracket shown in FIG. 1 driving the image acquisition device to a first position
  • FIG. 11 is an image acquisition device of the electronic device shown in FIG. 1, wherein the casing is removed;
  • FIG. 12 is an exploded schematic diagram of an image acquisition device of the electronic device shown in FIG. 1; FIG.
  • FIG. 13 is a schematic diagram of a split application scenario of the electronic device shown in FIG. 1.
  • terminal device refers to a device capable of receiving and / or transmitting communication signals including, but not limited to, connection 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, or 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
  • DVB-H digital television network
  • satellite network a satellite network
  • AM-FM broadcast transmitter an AM-FM broadcast transmitter
  • 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 present invention provides an electronic device 10.
  • the electronic device 10 includes an image acquisition device 100, a rotating support 200, and a terminal device 300.
  • the image acquisition device 100 includes a camera assembly 110, a battery 120, and a main board 130.
  • the battery 120 can supply power to the main board 130
  • the camera assembly 110 is connected to the main board 130
  • the image acquisition apparatus 100 can be wirelessly connected to the terminal device 300.
  • a light incident hole 213 is provided on the rotating bracket 200.
  • the image capturing device 100 is detachably connected to the light incident hole 213 of the rotating bracket 200. When the camera assembly 110 is fixed on the rotating bracket 200, the light incident surface 112 of the camera assembly 110 It is exposed through the light incident hole 213.
  • the terminal device 300 includes a display surface 310 and a rear surface 320 (refer to FIGS. 1 and 2) which are disposed facing away.
  • the rear surface 320 of the terminal device 300 is provided with a receiving slot 330.
  • the rotating bracket 200 is rotatably connected to the terminal device 300 for driving an image.
  • the collection device 100 is turned into or out of the accommodation slot 330.
  • the rotating bracket 200 is tiled on the notch of the receiving groove 330.
  • the terminal device 300 includes a back surface 320 and a display surface 310, and a peripheral side surface connecting the back surface 320 and the display surface 310.
  • the surface facing the bottom wall 331 of the receiving groove 330 is the back surface 222 of the rotating bracket 200 (as shown in FIG. 7 and FIG. 8, including the back surface 212 and the back surface 222);
  • the surface facing the accommodation groove 330 is the front surface 221 of the rotating bracket 200 (including the front surface 211 and the front surface 221 as shown in FIGS. 7 and 8), that is, the surface facing the outside of the accommodation groove 330.
  • the image capturing device 100 is connected to the back surface 222 of the rotating bracket 200.
  • the image capturing device 100 can be driven to rotate.
  • the image acquisition device 100 is fixed on the rotation bracket 200, and at this time, the image acquisition device 100 is located in the accommodation groove 330, and the rotation bracket 200 tiles the groove of the accommodation groove 330.
  • the image acquisition device 100 can capture an external image through the light entrance hole 213, and can be used as a rear camera of the middle terminal device 300.
  • the image acquisition device 100 can be connected to the terminal device 300 wirelessly to transmit data; it can also be wired to the terminal device 300 through the PIN point abutment for transmitting data or transmitting current at the same time .
  • the rotation support 200 when the rotation support 200 is rotated counterclockwise, the rotation support 200 brings the image acquisition device 100 out of the accommodation slot 330. At this time, the image acquisition device 100 can be continuously connected to the rotating support 200.
  • the image acquisition device 100 can have more orientations for shooting at different angles.
  • the rotation bracket 200 and the terminal device 300 may be 30 ° or 45 °. In these two cases, the manner between the image acquisition device 100 and the terminal device 300 is different, and the angle taken by the image acquisition device 100 is different. It is definitely different, that is, the image acquisition device 100 can perform shooting in multiple directions and different angles.
  • the wireless communication connection between the terminal device 300 and the image acquisition device 100 may be a WIFI connection, a Bluetooth connection, or a mobile network connection, which is not specifically limited herein.
  • the image acquisition device 100 can also be removed from the rotating support 200 and separated from the terminal device 300.
  • the image acquisition device 100 can be used alone, and it is also wirelessly connected to the terminal device 300 at the same time. Together, they can realize multi-scenario shooting of users. For example, when multiple people take a group photo, the image acquisition device 100 can be placed in front of the group to be photographed, and the image being captured by the image acquisition device 100 can be viewed through a mobile phone. After obtaining a satisfactory image effect, then take a picture with the mobile phone control.
  • the electronic device 10 In a crowded state, when a user needs to shoot a distant scene, if an electronic device 10 such as a mobile phone that cannot be separated is used, the electronic device 10 needs to be lifted up so as not to be blocked by the flow of people. However, when raising the height, the user cannot observe whether the captured scene is the scene that he needs to shoot. When the electronic device 10 is placed in front of the user, the user can observe the scene shot by the electronic device 10, but because the flow of people is blocked, the user cannot shoot the scene in the distance. As shown in FIG. 13, using the separable electronic device 10 of the present application, the image acquisition device 100 is detached from the terminal device 300, and the user can hold the image acquisition device 100 in one hand and raise it to capture the scene to be shot. A handheld terminal device 300 is placed in front of the eyes to observe whether the captured scene is correct, and the angle of the image acquisition device 100 is adjusted according to the screen displayed by the terminal device 300 to complete the shooting of the distant scene.
  • the rotating bracket 200 is flatly laid on the slot of the accommodating slot 330, that is, the rotating bracket 200 is located in the accommodating slot 330, and is approximately flush with the back surface 320 of the terminal device 300, and Fill up the notch of the accommodation groove 300.
  • the accommodating slot 330 cannot be viewed from the back 320 side of the terminal device 300, and the image acquisition device 100 is hidden in the accommodating slot 330 and covered by the rotating bracket 200.
  • the back surface 320 of the terminal device 300 presents an integrated visual effect.
  • the front surface of the bracket 200 (including the front surface 211 and the front surface 221) is rotated, that is, the surface of the rotating bracket 200 facing the receiving slot 330 and the rear surface 320 of the terminal device 300 Smooth docking.
  • the accommodating slot 330 is not only used for accommodating the image acquisition device 100 but also used for accommodating the rotating support 200. In this way, after the image acquisition device 100 is transferred into the accommodation slot 330, the visual effect of integration at the back 320 of the terminal device 300 can be greatly improved by smoothly docking the front surface of the rotating support 200 with the back 320 of the terminal device 300.
  • the electronic device 10 is made more beautiful.
  • the accommodating slot 330 extends to the edge of the top 340 of the terminal device 300, so that a notch 350 is formed on the edge of the top 340 of the terminal device 300.
  • the rotating bracket 200 has a first position.
  • the rotating bracket 200 drives the image acquisition device 100 to rotate out of the receiving groove 330 to the first position.
  • the rotating bracket 200 protrudes from the notch 350 at the edge of the top 340 to the receiving groove 330 and enters the light.
  • the hole 213 is located outside the accommodation groove 330. That is, when the rotation bracket 200 is rotated from the position in the initial state (the position shown in FIG. 2) to the first position (the position shown in FIG.
  • the light incident of the camera assembly 110 in the image acquisition device 100 The surface 112 faces the side where the display surface 310 of the terminal device 300 is located, so that the image acquisition device 100 can capture an image on the display surface 310 side of the terminal device 300, that is, the image acquisition device 100 is used as a front camera of the terminal device 300 at this time.
  • the bracket 200 to drive the image acquisition device 100 to rotate the image acquisition device 100 can be used both as a rear camera of the terminal device 300 and as a front camera of the terminal device 300, so that the display on the terminal device 300 can be avoided
  • Components such as a camera are arranged on the surface 310 to increase the screen ratio at the display surface 310.
  • the accommodating slot 330 is provided with a PIN point, and the image acquisition device 100 is provided with a PIN point.
  • the PIN point in the accommodating slot 330 can be connected to the PIN on the image acquisition device 100.
  • Point-to-point contact for transmitting data or current.
  • the terminal device 300 and the image acquisition device 100 are connected through a PIN point between the two, so that data and current can be transmitted between the two.
  • the terminal device 300 can charge the battery 120 in the image acquisition device 100.
  • the rotating bracket 200 is electrically connected to the terminal device 300 for transmitting data or current.
  • the image capturing device 100 can be electrically connected to the rotating bracket 200 for transmitting data or current and make an image.
  • the collection device 100 and the terminal device 300 are electrically connected to transmit data and current. In this way, as long as the image acquisition device 100 is fixed on the rotating support 200, the image acquisition device 100 can be electrically connected to the terminal device 300 for transmitting data or current, regardless of whether the image acquisition device 100 is not located in the accommodation slot 330.
  • the rotating bracket 200 includes a rotating block 220 and a cover plate 210.
  • the cover plate 210 is located at an edge of one side of the rotating block 220 so that the rotating bracket 200 is L-shaped.
  • the rotating block 220 is rotatably connected to the terminal device 300, the light incident hole 213 is located on the cover plate 210, and the image acquisition device 100 is detachably connected to the cover plate 210.
  • the surface of the turning block 220 facing the accommodation groove 330 is the back surface 222, and the surface facing away from the accommodation groove 330 is the front surface 221; the surface of the cover plate 210 facing the accommodation groove 330 is the back surface. 212.
  • the surface facing away from the receiving groove 330 is a front surface 211.
  • the back surface 222 of the rotating block 220 and the back surface 212 of the cover plate 210 are arranged stepwise.
  • the front surface 221 of the rotation block 220 and the front surface 211 of the cover plate 210 are flush with each other.
  • the image acquisition device 100 is detachably connected to the back surface 212 of the cover plate 210. on.
  • the back surface of the rotation bracket 200 includes a back surface 222 of the rotation block 220 and the back surface 212 of the cover plate 210.
  • the front surface of the rotation bracket 200 includes a front surface 221 of the rotation block 220 and a front surface 211 of the cover plate 210.
  • the receiving groove 330 is provided with two first shaft holes 333 opposite to each other.
  • the rotation bracket 200 is protruded with a first shaft 224 corresponding to the first shaft hole 333.
  • the first shaft 224 can be inserted into the first shaft hole. 333.
  • a PIN point is provided in the first shaft hole 333, a PIN point is provided on the first shaft 224, and the PIN point on the first shaft 224 is in contact with the PIN point in the first shaft hole 333 for transmitting data or current.
  • the receiving groove 330 includes a groove bottom wall 332 and a groove side wall 331.
  • the first rotating shaft 224 provided on the bracket is located on the rotating block 220, and the electrical connection between the rotating bracket 200 and the terminal device 300 will not be disconnected when the rotating bracket 200 is rotated.
  • the image capturing device 100 is detachably connected to the rotating bracket 200
  • the image capturing device 100 and the rotating bracket 200 are provided with PIN points that can abut each other at the abutting point, so that the two are electrically connected.
  • the first rotating shaft 224 and the first shaft hole 333 are in interference fit. In this way, a tight coupling between the first rotating shaft 224 and the first shaft hole 333 can be achieved.
  • the first rotating shaft 224 can overcome the problem of the distance between the first rotating shaft 224 and the first shaft hole 333.
  • the rotating support 200 can be fixed relative to the terminal device 300 to any position.
  • the rotation support 200 can be rotated 30 ° from the position of the rotation state, and can be fixed relative to the terminal device 300 at the position of 30 °; the rotation support 200 can be rotated 60 ° from the position of the rotation state, and can also be relative to the terminal at the position of 60 °
  • the device 300 is fixed, which makes it easier to take pictures of the electronic device 10.
  • the rotating bracket 200 is automatically driven to rotate by using a motor, so that the rotating bracket 200 is prevented from being rotated manually.
  • the terminal device 300 is provided with a motor, and the rotation bracket 200 is provided with a second shaft hole, and the second rotation shaft of the motor can be inserted into the second shaft hole, so that the motor drives the rotation bracket 200 to rotate.
  • the rotating bracket 200 is provided with a first magnetic body, and the image capturing device 100 is provided with a second magnetic body.
  • the first magnetic body and the second magnetic body can be magnetically adsorbed to each other, so that the image capturing device 100 can pass through the magnetic body. It is detachably connected to the rotating bracket 200.
  • Both the first magnet portion and the second magnet portion may be formed of a magnet, or one of them may be formed of a magnet, and the other may be formed of a metal (such as iron, nickel) that can be adsorbed by the magnet.
  • the first magnet portion is located on the cover plate 210, so that the image capture device 100 can be attracted to the cover plate 210 by means of magnetic attraction.
  • the first magnet can also be located on the rotating block 220, and the image capturing device 100 is fixed on the side 223 of the side of the rotating block 220 facing the cover plate 210, and the image capturing device 100 and the rotating bracket 200 can also be detached. connection.
  • a mounting bracket 214 is provided on the rotating bracket 200.
  • the image capture device 100 is at least partially located in the mounting slot 214, and the image capture device 100 and the mounting slot 214 are interference fit.
  • the mounting groove 214 is disposed on the back surface 212 of the cover plate 210.
  • the image capturing device 100 can be inserted into and pulled out from the mounting groove 214, so that the image capturing device 100 and the rotating bracket 200 can be detachably connected.
  • the mounting groove 214 can also be located on the side surface 223 of the side of the rotating block 220 facing the cover plate 210, and the image capturing device 100 and the rotating bracket 200 can be detachably connected.
  • the image capture device 100 includes a housing 140, and the camera assembly 110 extends out of the housing 140, and when the image capture device 100 is fixed on the rotating support 200, the camera component of the part protruding from the housing 140 is the smallest part. It is located in the light incident hole 213.
  • the housing 140 is provided with a third through hole 142, and the camera assembly 140 protrudes from the third through hole 142.
  • the part of the camera assembly 110 protruding from the third through hole 142 may protrude into the light hole 213, that is, protrude from the front surface 211 of the cover plate 210; Front 211.
  • the thickness of the image acquisition device 100 can be relatively reduced, and the depth of the accommodating groove 330 can also be reduced, and the thickness of the terminal device 300 can be correspondingly made to make the terminal device 300 thinner.
  • the camera device 100 includes a camera assembly 110, a battery 120, a motherboard 130, and a housing 140.
  • the battery 120 is a power source of the image acquisition device 100 and can support the image acquisition device 100 to continue to work in a certain period of time.
  • the motherboard 130 is located between the battery 120 and the camera assembly 110. One side of the motherboard 130 is attached to the battery 120 and the other side is attached to the camera assembly 110.
  • the casing 140 houses a battery 120, a motherboard 130, and a camera assembly 110.
  • the battery 120 is a power source of the image capture device 100, so that the image capture device 100 can continue to work when it is not connected to the terminal device 300.
  • the battery 120 includes a first surface 121 and a second surface disposed opposite to each other, and a sidewall connecting the first surface 121 and the second surface.
  • the first surface 121, the second surface, and the sidewall form the battery 120.
  • the battery 120 is provided with a first through hole 123 penetrating the first surface 121 and the second surface.
  • One or more of the first through holes 123 may be opened to make the battery 120 into a ring shape, a round shape, or other structures.
  • the first through hole 123 can allow the camera assembly 110 to be installed therein, avoid overlapping the camera assembly 110 and the battery 120, and reduce the thickness of the image acquisition device 100.
  • the main board 130 is provided with a second through hole 131 at a corresponding position of the first through hole 123, so that the main board 130 has a ring-like or round-like structure similar to the battery 120.
  • the camera module 110 passes through the second through hole 131 and the first through hole 123 in order, so that the entire structure of the camera module 110 is located in the first through hole 123, or a part of the structure of the camera module 110 is located in the first through hole 123, and the other part
  • the structure is located in the second through hole 131.
  • the light incident surface 112 of the camera assembly 110 is flush with the first surface 121 of the battery 120 or does not protrude from the plane, or protrudes slightly from the plane.
  • the light incident surface 112 of the camera assembly 110 is exposed from the first through hole 123 and is not blocked.
  • the arrangement of the first through hole 123 and the second through hole 131 allows the entire structure or a part of the structure of the camera assembly 110 to be accommodated therein, thereby reducing the thickness of the image acquisition device 100.
  • the camera assembly 110 includes a light incident surface 112, a decorative ring 113, a frame 114, and a flexible circuit board 111.
  • the decorative ring 113 is connected between the light incident surface 112 and the frame 114 for fixing the light incident surface 112.
  • the light incident surface 112, the decorative ring 113, and the frame 114 form a housing of the camera assembly 110.
  • Inside the camera assembly 110 are components such as a camera and a flash.
  • the camera may be one, two or more.
  • the flexible circuit board 111 is connected to a camera, a flash, and other components inside the camera assembly 110 and extends out of the frame 114. A portion of the flexible circuit board 111 outside the frame 114 is bent into a U-shaped structure, and is clamped on two opposite sides of the main board 130.
  • a first board-to-board connector is provided between the flexible circuit board 111 and the main board 130.
  • the first board-to-board connector includes a first male connector 115 and a first female connector 134.
  • the first male connector 115 is located at an end of the flexible circuit board 111
  • the first female connector 134 is located on the motherboard 130.
  • the motherboard 130 is provided with a sink 133 at the position of the first female connector 134, and the first female connector 134 is located on the sink 133 so that the first female connector 134 does not protrude from the surface of the motherboard 130.
  • the flexible circuit board 111 protrudes slightly or does not protrude from the surface of the motherboard 130, so that when the second surface of the battery 120 is attached to the motherboard 130, the battery 120
  • the interval from the main board 130 is small or no interval.
  • the positions of the first male connector 115 and the first female connector 134 can also be reversed, that is, the first male connector 115 is located on the sink 133, and the first female connector 134 It is located on the flexible circuit board 111, and can also achieve the purpose of electrical connection and communication connection between the camera assembly 110 and the main board 130 through the first board-to-board connector.
  • a second board-to-board connector is provided between the battery 120 and the main board 130.
  • the second board-to-board connector includes a second male connector 135 and a second female connector 122.
  • the second male connector 135 is located on the edge of the motherboard 130
  • the second female connector 122 is located on the side wall of the battery 120.
  • the second male connector 135 may be disposed on the side wall of the battery 120, and the second female connector 122 may be disposed on the edge of the motherboard 130, and the same can be achieved between the battery 120 and the motherboard 130. Purpose of electrical and communication connections.
  • the main board 130 is provided with a metal shield on a surface in contact with the battery 120. Because the metal shield plays a role of absorbing energy, reflecting energy, and canceling energy to external interference electromagnetic waves and internal electromagnetic waves from wires, cables, components, circuits, or systems, the metal shield has a function of reducing interference.
  • the metal shield is an alloy metal cover that isolates the metal between the two space regions of the battery 120 and the motherboard 130 to control the electric field and the induction and radiation of electromagnetic waves from one region to another.
  • the metal shield can reduce the interference of the electromagnetic waves of the battery 120 on the normal operation of the motherboard 130, thereby improving the quality, stability, and working life.
  • the metal shield can reduce the electromagnetic radiation generated during the operation of the motherboard 130, thereby reducing its harm to the human body and the environment.
  • the main board 130 is provided with an antenna dome 132 and a wireless communication module, and the wireless communication module shown is a WIFI module.
  • the antenna spring sheet 132 is used for a signal transmission and a tactile feedback medium, and belongs to a type of connector.
  • the wireless communication module can implement a wireless connection between the image acquisition device 100 and the terminal device 300.
  • the terminal device 300 can control the image acquisition device 100 through a wireless communication module, so that when the image acquisition device 100 is separated from the terminal device 300, the terminal device 300 is the same
  • the image acquisition apparatus 100 can be controlled to work.
  • the housing 140 is further included.
  • the casing 140 may be made of plastic or a combination of metal and plastic.
  • the casing 140 is provided with a shaft hole 141 and a third through hole 142.
  • the housing 140 can be opened and closed for receiving the camera assembly 110, the battery 120, and the motherboard 130.
  • the housing 140 is provided with a third through hole 142 at a corresponding position of the first through hole 123, and the light incident surface 112 of the camera assembly 110 is exposed from the third through hole 142 and is not blocked.

Abstract

L'invention concerne un dispositif électronique (10), comprenant un dispositif d'acquisition d'image (100) , un support rotatif (200) et un dispositif terminal (300). Le dispositif d'acquisition d'image (100) comprend un ensemble caméra (110), une batterie (120) et une carte mère (130), et peut être en connexion de communication sans fil avec le dispositif terminal (300). Le support rotatif (200) est pourvu d'un trou d'entrée de lumière (213). Le dispositif d'acquisition d'image (100) est connecté de manière amovible au trou d'entrée de lumière (213) du support rotatif (200), et une surface d'entrée de lumière de l'ensemble caméra (110) est exposée à partir du trou d'entrée de lumière (213). Le côté arrière (320) du dispositif terminal (300) est pourvu d'une fente de réception (330). Le support rotatif (200) est connecté de manière rotative au dispositif terminal (300) pour amener le dispositif d'acquisition d'image (100) dans ou hors de la fente de réception (330) par rotation. Lorsque le dispositif d'acquisition d'image (100) tourne conjointement avec le support rotatif (200) dans la fente de réception (330), le support rotatif (200) est disposé de manière affleurante au niveau de l'ouverture de la fente de réception (330).
PCT/CN2019/088897 2018-07-12 2019-05-28 Dispositif électronique WO2020010948A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201821103855.7 2018-07-12
CN201821103855.7U CN209390108U (zh) 2018-07-12 2018-07-12 电子装置

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Publication Number Publication Date
WO2020010948A1 true WO2020010948A1 (fr) 2020-01-16

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