WO2019242468A1 - Appareil électronique - Google Patents

Appareil électronique Download PDF

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Publication number
WO2019242468A1
WO2019242468A1 PCT/CN2019/088902 CN2019088902W WO2019242468A1 WO 2019242468 A1 WO2019242468 A1 WO 2019242468A1 CN 2019088902 W CN2019088902 W CN 2019088902W WO 2019242468 A1 WO2019242468 A1 WO 2019242468A1
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WO
WIPO (PCT)
Prior art keywords
image acquisition
acquisition device
electronic device
terminal device
lifting mechanism
Prior art date
Application number
PCT/CN2019/088902
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English (en)
Chinese (zh)
Inventor
黄茂昭
杨自美
李彪
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
Priority to CN201980006908.4A priority Critical patent/CN111527738B/zh
Publication of WO2019242468A1 publication Critical patent/WO2019242468A1/fr

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    • 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 electronic equipment, and in particular, to an electronic device.
  • the image acquisition equipment 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 includes a camera assembly, a battery, and a main board, and the battery can be connected to the main board and the camera assembly separately, and the main board is provided with a wireless communication module;
  • a terminal device includes a display surface and a back surface disposed opposite to each other, and a side peripheral surface connecting the display surface and the back surface.
  • the terminal device is provided with a receiving groove, and the receiving groove runs through the side peripheral surface.
  • the terminal device is provided with a lifting mechanism, which can be raised or lowered in the terminal device.
  • the lifting mechanism can be detachably connected to the image acquisition device, and after the image acquisition device is removed from the lifting mechanism, it can Communicate with the terminal equipment, the image acquisition device can be moved to the first position and the second position through the lifting mechanism, and in the first position, the image acquisition device is located in the accommodation slot, and the light-incident surface of the image acquisition device When it is hidden, in the second position, the image acquisition device is located outside the accommodation slot, and the light incident surface of the camera assembly is not blocked by the terminal device.
  • An electronic device includes:
  • Image acquisition equipment including camera components
  • the terminal device includes a display screen, the terminal device is provided with a receiving slot; the terminal device is provided with a lifting mechanism, and the image acquisition device can be installed on the lifting mechanism to be driven by the lifting mechanism and be mounted on the lifting mechanism.
  • the accommodating slot is moved to a first position and a second position. In the first position, the image acquisition device is accommodated in the accommodating slot. In the second position, the image acquisition device is located outside the accommodating slot. Ambient light can be incident into the camera assembly; the image acquisition device can also be detached from the lifting mechanism, and can be communicatively connected with the terminal device after being detached.
  • FIG. 1 is a three-dimensional schematic diagram of an electronic device according to an embodiment, in which an image acquisition device is located at a first position;
  • FIG. 2 is a schematic rear view of the electronic device shown in FIG. 1, wherein the image acquisition device is located at a first position;
  • FIG. 3 is a three-dimensional schematic diagram of the electronic device shown in FIG. 1, wherein the image acquisition device is located at a second position and can be front-facing camera;
  • FIG. 4 is a three-dimensional schematic diagram of a part of the structure of the electronic device shown in FIG. 1, wherein the image acquisition device is separated from the terminal device;
  • FIG. 5 is a three-dimensional schematic diagram of the electronic device shown in FIG. 1, wherein the image acquisition device is located at a second position between the front and rear positions;
  • FIG. 6 is a three-dimensional schematic diagram of a part of the structure of the electronic device shown in FIG. 1, wherein the image acquisition device is separated from the terminal device;
  • FIG. 7 is a three-dimensional schematic diagram of a part of the structure of the electronic device shown in FIG. 1, wherein the image acquisition device is separated from the terminal device;
  • FIG. 8 is a three-dimensional schematic diagram of an electronic device according to another embodiment, in which an image acquisition device is located at a first position and can be rear-mounted for recording;
  • FIG. 9 is a three-dimensional schematic view of the electronic device shown in FIG. 8 at another angle;
  • FIG. 10 is a schematic rear view of the electronic device shown in FIG. 8, wherein the image acquisition device is located at a second position and can be rear-mounted for recording;
  • FIG. 11 is a three-dimensional schematic diagram of the electronic device shown in FIG. 8, wherein the image acquisition device is located at the second position and can be front-facing camera;
  • FIG. 12 is a three-dimensional schematic diagram of the electronic device shown in FIG. 10, wherein the image acquisition device is located at a second position between the front and rear positions;
  • FIG. 13 is a three-dimensional schematic diagram of the electronic device shown in FIG. 8, wherein a light incident surface is located on an end surface of the image acquisition device;
  • FIG. 14 is a three-dimensional schematic diagram of an electronic device according to another embodiment, in which an image acquisition device is located at a first position;
  • FIG. 15 is a three-dimensional schematic diagram of the electronic device shown in FIG. 14, where the image acquisition device is located at the second position and can be front-facing camera;
  • FIG. 16 is a three-dimensional schematic diagram of the electronic device shown in FIG. 14, wherein the image acquisition device is located at a second position between the front and rear positions;
  • FIG. 17 is a three-dimensional schematic diagram of a partial structure of the electronic device shown in FIG. 16, where the image acquisition device is separated from the terminal device;
  • FIG. 18 is a three-dimensional schematic diagram of the electronic device shown in FIG. 14, wherein a light incident surface is located on an end surface of the image acquisition device;
  • 19 is a three-dimensional schematic diagram of an image acquisition device, in which a casing is removed;
  • 20 is a schematic diagram of a three-dimensional explosion of an image acquisition device
  • FIG. 21 is a schematic diagram of the use of the separated state of the image acquisition device and the terminal device.
  • 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 electronic device 10 is a mobile phone, and includes an image acquisition device 100, a terminal device 200, and a lifting mechanism 300.
  • the lifting mechanism 300 is located in the terminal device 200 and can move relative to the terminal device 200.
  • the image acquisition device 100 can be detachably connected to the terminal device 200 and can be used as a camera of the terminal device 200. It can be understood that the image acquisition device 100 can be detachably connected to the lifting mechanism 300 and moves with the movement of the lifting mechanism 300.
  • the terminal device 200 can control the image acquisition device 100 to perform corresponding tasks such as charging, shooting, or data transmission.
  • the image acquisition device 100 after the image acquisition device 100 is detached from the terminal device 200, it can be used as a camera alone.
  • the image acquisition device 100 is provided with a wireless communication module.
  • the image acquisition device 100 can wirelessly connect with the terminal device 200 through the wireless communication module and receive control instructions from the terminal device 200.
  • the image capture device 100 In a state where the image capture device 100 and the terminal device 200 are separated, the image capture device 100 can perform shooting at multiple angles and multiple scenes, including front shooting and rear shooting.
  • the electronic device In a crowded state, when users need to shoot distant scenes, if an electronic device such as a mobile phone that cannot be separated is used, the electronic device 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.
  • the electronic device When the electronic device is placed in front of the user, the user can observe the scene shot by the electronic device, but because the flow of people is blocked, the user cannot shoot the scene in the distance.
  • the image acquisition device 100 is detached from the terminal device 200. 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 200 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 200 to complete the shooting of the distant scene.
  • an electronic device 10 includes a terminal device 200, a lifting mechanism 300, and an image acquisition device 100.
  • the terminal device 200 includes a display surface 210 and a back surface 220 disposed opposite to each other, and a side peripheral surface 230 connecting the display surface 210 and the back surface 220.
  • the display surface 210 can be understood as a surface on one side of the display screen.
  • the display surface 210 is substantially parallel to the back surface 220.
  • the terminal device 200 is a rectangular parallelepiped, and the side peripheral surface 230 surrounds edges around the display surface 210 and the back surface 220. To define the normal use state, that is, the display surface 210 faces the user and the font and screen of the electronic device 10 are upright.
  • the upward side peripheral surface 230 is the top and the downward side peripheral surface 230 is the bottom.
  • the right-side side peripheral surface 230 is the right end
  • the left-side side peripheral surface 230 is the left end
  • the top and bottom ends are longitudinal
  • the left and right ends are lateral.
  • a receiving slot 240 is defined in the terminal device 200, and the receiving slot 240 passes through a side peripheral surface 230 at the top end of the terminal device 200.
  • the image acquisition device 100 can be accommodated in the accommodation slot 240.
  • a lifting mechanism 300 is provided in the terminal device 200, and the lifting mechanism 300 can be raised or lowered in the terminal device 200.
  • the rise can be understood as Moving in the longitudinal direction toward the top end of the terminal device 200, and the descent can be understood as moving toward the bottom end of the terminal device 200 in the longitudinal direction of the terminal device 200.
  • the lifting mechanism 300 includes a support base 310, a rail 320, and a driving member 330.
  • the support base 310 is located in the accommodating slot 240 together with the image acquisition device, and can be detachably connected to the image acquisition device 100, and in a connected state, the current and data can be transmitted.
  • the track 320 is a straight track and is longitudinally disposed inside the terminal device 200.
  • the top end of the track 320 is fixed to the bottom end of the support base 310.
  • the driving member 330 is located in the terminal device 200. The output end of the driving member 330 is engaged with the track 320, and the driving track 320 moves in the longitudinal direction, so that the support base 310 drives the image acquisition device 100 to move in the longitudinal direction.
  • data and current can be transmitted between the support base 310 and the terminal device 200.
  • a data transmission chip is provided on a surface of the support base 310, and a data transmission chip is provided at a corresponding position on a groove wall of the accommodation groove 240.
  • the area where the data transmission chip is arranged on the groove wall of the accommodation groove 240 is large. No matter how the support base 310 moves in the longitudinal direction, there is a data transmission chip on the groove wall of the accommodation groove 240 and data transmission on the support base 310. Chip docking. It can be understood that as long as a part of the support base 310 is located in the accommodating slot 240, the purpose of transmitting data and current between the support base 310 and the terminal device 200 can be achieved.
  • the image acquisition device 100 has a first position and a second position relative to the terminal device 200.
  • the image acquisition device 100 In the first position, the image acquisition device 100 is located in the accommodation slot 240 together with the support base 310, which can prevent the image acquisition device 100 from being damaged.
  • the image acquisition device 100 and the support base 310 are in a connected state.
  • the image acquisition device 100 can transmit data and current between the support base 310 and the terminal device 200. In this state, the terminal device 200 automatically charges the image acquisition device 200 until it is fully charged.
  • the image acquisition device 100 and the terminal device 200 are also in a state of wireless communication connection, and the two can also be wirelessly connected.
  • the driving member 330 causes the track 320 to rise through the rotation of the output end, driving the support base 310 to push the image capture device 100 up until the image capture device 100 It is completely outside the accommodation slot 240 and reaches the second position.
  • the image acquisition device 100 is located at the second position, the image acquisition device 100 is located outside the accommodating slot 240, and the light incident surface 112 of the image acquisition device 100 is not blocked, and can perform recording and other tasks.
  • the support base 310 is located in the accommodating groove 240, and the support base 310 may or may not protrude from the top side peripheral surface 230.
  • the image acquisition device 100 and the support base 310 are in a connected state.
  • the image acquisition device 100 can transmit data and current between the support base 310 and the terminal device 200.
  • the terminal device 200 automatically charges the image acquisition device 200 until it is fully charged. It can be understood that when the image capture device 100 is located at the second position, the image capture device 100 and the terminal device 200 are also in a wireless communication connection state, and the two can also be wirelessly connected.
  • a Type-C connector is provided between the support base 310 and the image acquisition device 100.
  • the top of the support base 310 is provided with a Type-C connector male 311
  • the bottom of the image acquisition device 100 is provided with a Type-C connector female seat that cooperates with the Type-C connector male 311, Type-C
  • the connector male 311 and the Type-C connector female of the image capture device 100 can be plugged in the forward or reverse direction, and both can realize the transmission of data and current between the image capture device 100 and the support base 310.
  • the Type-C connector male 311 can be set at the bottom of the image capture device 100, and the Type-C connector female mating with the Type-C connector male 311 can be set on the support base.
  • the top of 310 can also achieve the purpose of transmitting data and current between the image acquisition device 100 and the support base 310. Therefore, when the image capture device 100 is located in the second position, the image capture device can be made by plugging the Type-C connector male 311 and the Type-C connector female of the image capture device 100 forward or backward.
  • 100 is used as a front camera or the latter camera.
  • the front camera is a camera with the same light incident surface 112 and the display surface 210
  • the rear camera is a camera with the same light incident surface 112 and the back 220 oriented.
  • the image capture device 100 when the image capture device 100 is located at the second position, the image capture device 100 may be manually rotated to change the orientation of the light incident surface 112 of the image capture device 100.
  • the connection between the support base 310 and the image capture device 100 is similar to a headphone plug and a jack.
  • the top cylinder 312 of the support base 310 may be a stepped cylinder as shown in FIG. 6, or may be provided as a cylinder with the same diameter on the top and bottom, which is not specifically limited herein.
  • the bottom end of the image acquisition device 100 is provided with a circular hole that cooperates with the cylinder 312, and a PIN point for transmitting data and current is set between the cylinder 312 and the circular hole of the image acquisition device 100, and regardless of the The circular holes are rotated as shown in the figure, and do not affect the transmission of data and current between the image acquisition device 100 and the support base 310.
  • the cylinder 312 can be set at the bottom end of the image capture device 100, and the circular hole matching the Type-C connector male 311 can be opened at the top of the support base 310.
  • the image capture device can also be implemented The purpose of transmitting data and current between 100 and support base 310.
  • the image acquisition device 100 when the image acquisition device 100 is located at the second position, by manually rotating the image acquisition device 100 and rotating the cylinder 312 in a circular hole, the direction in which the light incident surface 112 of the image acquisition device 100 is directed can be changed to achieve more scenes. Shooting.
  • the orientation of the light incident surface 112 of the image capture device 100 may be changed by automatic rotation of the image capture device 100.
  • a transmission mechanism is provided in the support base 310, and an output end of the transmission mechanism is a square pillar 313, and at least part of the structure of the square pillar 313 protrudes from the top of the support base 310.
  • the bottom end of the image acquisition device 100 is provided with a blind hole that cooperates with the square column 313.
  • a PIN point for transmitting data and current is provided between the square column 313 and the blind hole of the image acquisition device 100.
  • the rotation of the square column 313 is driven by the transmission mechanism to realize the automatic rotation of the image acquisition device 100 relative to the terminal device 200.
  • a square column 313 can be set at the bottom end of the image acquisition device 100, the output end of the transmission mechanism is located in the support base 310, and a blind hole that cooperates with the square column 313 can also be used for image acquisition.
  • the purpose of transmitting data and current between the device 100 and the support base 310 Therefore, when the image capture device 100 is located at the second position, the direction of the light-incident surface 112 of the image capture device 100 can be changed by the automatic rotation of the image capture device 100 to achieve more scene shooting.
  • the accommodation groove 240 is located between the display surface 210 and the back surface 220, and the accommodation groove 240 penetrates only the side peripheral surface 230 located at the top end. It can be understood that the groove wall of the accommodating groove 240 has a certain distance from the display surface 210 and the back surface 220, and the opening of the accommodating groove 240 faces upward and penetrates the top of the terminal device 200.
  • the receiving groove 240 penetrates the back surface 220 and the side peripheral surface 230 at the top end. It can be understood that there is a certain distance between the groove wall of the accommodating groove 240 and the display surface 210 and penetrates the back surface 220 and the top of the terminal device 200.
  • the image capture device 100 is located at the first position, and the light incident surface 112 of the image capture device 100 faces the side where the back surface 220 is located, which can be used as a rear camera of the electronic device 10.
  • the image acquisition device 100 reaches the second position by the driving of the lifting mechanism 200.
  • the image acquisition device 100 is reversely plugged into the terminal device after disassembly, and becomes the front camera of the electronic device 10 (shown in FIG. 11). Alternatively, the image acquisition device 100 can realize shooting of more scenes through automatic or manual rotation as shown in FIG. 12.
  • the light incident surface 112 of the image acquisition device 100 may be located on the rear surface of the image acquisition device 100 as shown in FIG. 9 or on the end surface as shown in FIG. 13, which is not specifically limited herein.
  • the receiving groove 240 is located between the display surface 210 and the back surface 220, and the receiving groove 240 penetrates the side peripheral surface 230 at the top, left, and right ends.
  • the groove wall of the accommodating groove 240 has a certain distance from the display surface 210 and the back surface 220, and the accommodating groove 240 runs through the top and both ends of the terminal device 200 at some positions.
  • the accommodating slot 240 includes two parts. The first part is used for accommodating the image acquisition device 100 and penetrates the top and both ends of the terminal device 200. The second part is used for receiving the support base 310 and is located inside the terminal device 200. As shown in FIG.
  • the image acquisition device 100 is located at the first position, the top end of the image acquisition device 100 is flush with the top end of the terminal device 200, and the left and right ends of the image acquisition device 100 are flush with the left and right ends of the terminal device 200, respectively.
  • the image capture device 100 can be manually or electrically lifted to the state shown in FIG. 15, that is, the second position of the image capture device 100, and the image capture device 100 can be used as a front camera.
  • FIG. 16 by rotating the image acquisition device 100, the orientation of the light incident surface 112 of the image acquisition device 100 can be changed, so that the image acquisition device 100 can perform rear-side recording or scene recording at more angles.
  • FIG. 16 by rotating the image acquisition device 100, the orientation of the light incident surface 112 of the image acquisition device 100 can be changed, so that the image acquisition device 100 can perform rear-side recording or scene recording at more angles.
  • the orientation of the light incident surface 112 of the image acquisition device 100 can also be changed. After disassembly, the image acquisition device 100 and the terminal device 200 are connected through wireless communication.
  • the connection method of the cylinder 312 in FIG. 17 can also be changed to the connection method of the Type-C connector shown in FIG. 4 or the connection method of the square column 313 shown in FIG. 7.
  • the light incident surface 112 of the image acquisition device 100 may be located on the front and rear surfaces of the image acquisition device 100, or may be located on an end surface as shown in FIG. 18, and the position of the light incident surface 112 is not specifically limited herein.
  • the image capture 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 for a certain period of time.
  • the main board 130 is located between the battery 120 and the camera assembly 110. One side of the main board 130 is attached to the battery 120 and the other side is attached to the camera assembly 110.
  • the casing 140 houses the battery 120, the motherboard 130, and the 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 200.
  • 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 side wall form an outer surface of 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 may 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 becomes a ring or a loop similar to the battery 120.
  • the camera assembly 110 passes through the second through hole 131 and the first through hole 123 in this order, so that the entire structure of the camera assembly 110 is located in the first through hole 123, or a part of the structure of the camera assembly 110 is located in the first through hole 123. Another part of 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 decoration 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 and is used for fixing the light incident surface 112.
  • the light incident surface 112, the decorative ring 113, and the frame 114 constitute a housing of the camera assembly 110, and a camera, a flash, and other components are provided in the housing.
  • 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 motherboard 130 s surface.
  • the flexible circuit board 111 When the first male connector 115 is engaged with the first female connector 134, the flexible circuit board 111 slightly protrudes 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 interval between the battery 120 and the motherboard 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 an edge of the motherboard 130
  • the second female connector 122 is located on a side wall of the battery 120.
  • the main board 130 and the second surface of the battery 120 are bonded, and the second male connector 135 and the second female connector 122 are fastened to each other, such as the function of transmitting current between the battery 120 and the main board 130.
  • the second male connector 135 may be disposed on a side wall of the battery 120, and the second female connector 122 may be disposed on an edge of the motherboard 130, and the battery 120 and the motherboard may also be implemented. Purpose of electrical connection and communication connection between 130.
  • a Type-C connector male 311 is provided at the bottom end of the motherboard 130, and is located between two adjacent first female connectors 134. When the main board 130 and the camera assembly 110 are assembled, there is no interference between the Type-C connector male 311 and the U-shaped flexible circuit board 111.
  • the Type-C connector male 311 is used to connect with the Type-C connector female on the support base 310, so that the image acquisition device 100 and the terminal device 200 can transmit data and current.
  • the bottom end of the motherboard 130 is provided with a Type-C connector female seat, and the Type-C connector male head 311 is disposed on the support base 310, which can also realize the transmission of data and current between the image acquisition device 100 and the terminal device 200.
  • the Type-C connector male 311 may be replaced with a cylindrical 312 or a square post 313.
  • 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, which isolates the metal between the two spatial 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 main board 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 piece 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 communication connection between the image acquisition device 100 and the terminal device 200.
  • the terminal device 200 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 200, the terminal device 200 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 can be opened and closed for receiving the camera assembly 110, the battery 120, and the motherboard 130.
  • the casing 140 includes a front surface 141, a rear surface, a left end surface, a right end surface 142, a top surface, and a bottom end surface.
  • the front surface 141 is located on the side where the display surface 210 is located, the rear surface is located on the side where the back surface 220 is located, the left end surface is located on the side where the left end of the side peripheral surface 230 is located, and the right end surface is located on the side peripheral surface.
  • the right end of 230 is on the side.
  • a third through hole 143 is formed on the front surface 141 or the rear surface to match the light incident surface 112.
  • the third through hole 143 corresponds to the position of the first through hole 123.
  • the light incident of the camera assembly 110 The surface 112 is exposed from the third through hole 143 and is not blocked.
  • a third through hole may be opened on the left end face or the right end face 142.
  • a fourth through hole is opened on the bottom end surface of the casing 140 so that the image capture device 100 and the terminal device are connected through a Type-C connector male 311 or a cylinder 312 or a square column 313.
  • the image acquisition device 100 can be used in connection with the terminal device 200. By disassembling or rotating the image acquisition device 100, the direction of the light incident surface of the camera assembly 110 can be changed to realize front-side shooting, rear-side shooting, or peripheral scene shooting.
  • the image acquisition device 100 can also be used alone.
  • the image acquisition device 100 is separated from the terminal device 200, and the terminal device 200 controls the operation of the image acquisition device 100 through a wireless communication module. As shown in FIG. 21, in some cases, shooting with more angles and more scenes can be achieved.

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Abstract

L'invention concerne un appareil électronique (10), comprenant un dispositif d'acquisition d'image (100) et un dispositif terminal (200). Le dispositif d'acquisition d'image (100) comprend un ensemble caméra (110), une batterie (120) et une carte principale (130). La batterie (120) peut fournir respectivement de l'énergie à la carte principale (130) et à l'ensemble caméra (110). Le dispositif terminal (200) est pourvu d'une rainure de réception (240), et le dispositif terminal (200) est pourvu d'un mécanisme de levage (300) pouvant monter ou descendre. Le mécanisme de levage (300) est relié de manière amovible au dispositif d'acquisition d'image (100), et après avoir été détaché du mécanisme de levage (300), le dispositif d'acquisition d'image (100) peut être en liaison de communication avec le dispositif terminal (200). Le dispositif d'acquisition d'image (100) peut se déplacer vers un premier emplacement et un second emplacement au moyen du mécanisme de levage (300). Lorsqu'au niveau du premier emplacement, le dispositif d'acquisition d'image (100) est situé à l'intérieur de la rainure de réception (240), et lorsqu'au niveau du second emplacement, le dispositif d'acquisition d'image (100) est situé à l'extérieur de la rainure de réception (240), de telle sorte qu'une face d'incidence de lumière de l'ensemble caméra (110) n'est pas bloquée par le dispositif terminal (200).
PCT/CN2019/088902 2018-06-17 2019-05-28 Appareil électronique WO2019242468A1 (fr)

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CN201820938176 2018-06-17

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WO2019242468A1 true WO2019242468A1 (fr) 2019-12-26

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PCT/CN2019/088902 WO2019242468A1 (fr) 2018-06-17 2019-05-28 Appareil électronique

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CN (1) CN111527738B (fr)
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