WO2019228479A1 - 拍摄装置及电子设备 - Google Patents

拍摄装置及电子设备 Download PDF

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Publication number
WO2019228479A1
WO2019228479A1 PCT/CN2019/089375 CN2019089375W WO2019228479A1 WO 2019228479 A1 WO2019228479 A1 WO 2019228479A1 CN 2019089375 W CN2019089375 W CN 2019089375W WO 2019228479 A1 WO2019228479 A1 WO 2019228479A1
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WO
WIPO (PCT)
Prior art keywords
branch
module
camera
port
terminal
Prior art date
Application number
PCT/CN2019/089375
Other languages
English (en)
French (fr)
Inventor
曾赞坚
周国安
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
Priority claimed from CN201820849673.8U external-priority patent/CN208489915U/zh
Priority claimed from CN201810560024.0A external-priority patent/CN108495015B/zh
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 WO2019228479A1 publication Critical patent/WO2019228479A1/zh

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Classifications

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

Definitions

  • the present application relates to the field of electronic devices, and in particular, to a photographing device and an electronic device.
  • the mobile phone can be equipped with multiple camera modules and receivers, and each camera module and receiver needs to obtain electrical signals through a circuit board.
  • each camera module and receiver needs to obtain electrical signals through a circuit board.
  • the arrangement structure of multiple camera modules and receivers is limited, resulting in a complex circuit board structure that provides electrical signals for multiple camera modules and receivers, affecting the internal arrangement structure of mobile phones.
  • the present application provides a photographing device and electronic equipment.
  • This application provides a photographing device, wherein the photographing device includes a camera module, a structured light module, a receiver, and a circuit board, and the circuit board includes a first branch line end, a second branch line end, and a third branch line.
  • a line end and a bus end, the first branch end, the second branch end, and the third branch end are electrically connected to the structured light module, the camera module, and the receiver, respectively, and the bus end is connected to all
  • the first branch terminal, the second branch terminal, and the third branch terminal are electrically connected, and the bus terminal is disposed opposite to the first branch terminal, the second branch terminal, and the third branch terminal.
  • the bus terminal can slide relative to the branch terminal, the second branch terminal, and the third branch terminal to realize that the camera module, structured light module, and receiver can slide relative to the bus terminal and communicate with the bus terminal. Transmission of electrical signals.
  • the present application also provides an electronic device, wherein the electronic device includes a photographing device, a device body, and a slider slidingly connected to the device body, and the photographing device includes a structured light module, a camera module, a receiver, and a circuit. Board, the camera module, structured light module, and receiver are fixed to the slider, and the circuit board includes a first branch end, a second branch end, a third branch end, and a bus end.
  • a branch line end, a second branch line end, and the third branch line end are electrically connected to the structured light module, a camera module, and a receiver, respectively, and the bus end is connected to the first branch line end, the first The two branch line end and the third branch line end are electrically connected, and transmit electrical signals to the structured light module, the camera module, and the receiver via the first branch line end, the second branch line end, and the third branch line end,
  • the bus terminal is also electrically connected to the device body.
  • the present application also provides an electronic device, wherein the electronic device includes a photographing device, a device body, and a slider.
  • the photographing device includes a structured light module, a camera module, a receiver, and a circuit board.
  • the device body, the structured light module, the camera module, and the receiver are connected to perform electrical signal transmission between the device body and the structured light module, the camera module, and the receiver, and the slider carries the structure
  • An optical module, a camera module and a receiver are used to drive the structured light module, the camera module and the receiver to extend or contract with respect to the device body.
  • the photographing device and the electronic equipment include the circuit board including a first branch line end, a second branch line end, a third branch line end, and a bus end, and the first branch line end and the second branch line.
  • the third branch terminal are electrically connected to the structured light module, the camera module, and the receiver, respectively, and the bus terminal is connected to the first branch terminal, the second branch terminal, and the third branch terminal. Electrically connected, and transmitting electrical signals to the structured light module, camera module, and receiver via the first branch line terminal, second branch line terminal, and third branch line terminal, so that the structured light module and camera module
  • the group and the receiver only transmit electric signals through the bus end, which simplifies the circuit board structure and optimizes the arrangement structure of the shooting device.
  • FIG. 1 is a schematic diagram of an electronic device according to an embodiment of the present application.
  • FIG 2 is another schematic diagram of an electronic device according to an embodiment of the present application.
  • FIG 3 is another schematic diagram of an electronic device according to an embodiment of the present application.
  • FIG. 4 is another schematic diagram of an electronic device according to an embodiment of the present application.
  • FIG 5 is another schematic diagram of an electronic device according to an embodiment of the present application.
  • FIG. 6 is an enlarged schematic view of a portion V of the electronic device of FIG. 5;
  • FIG. 7 is an infrared supplementary light circuit board for an electronic device according to an embodiment of the present application.
  • FIG. 8 is a schematic diagram of a photographing apparatus of an electronic device according to an embodiment of the present application.
  • FIG. 9 is another schematic diagram of a photographing apparatus of an electronic device according to an embodiment of the present application.
  • FIG. 10 is an enlarged schematic view of a VI portion of the photographing apparatus of FIG. 9;
  • FIG. 11 is another schematic diagram of a photographing apparatus of an electronic device according to an embodiment of the present application.
  • FIG. 12 is another schematic diagram of a photographing apparatus of an electronic device according to an embodiment of the present application.
  • FIG. 13 is a schematic perspective view of a photographing device of an electronic device according to an embodiment of the present application.
  • FIG. 14 is an exploded view of a photographing apparatus of an electronic device according to an embodiment of the present application.
  • 15 is another schematic diagram of an electronic device according to an embodiment of the present application.
  • FIG. 16 is an exploded view of an electronic device according to an embodiment of the present application.
  • the first feature "on” or “down” of the second feature may be the first and second features in direct contact, or the first and second features indirectly through an intermediate medium. contact.
  • the first feature is “above”, “above”, and “above” the second feature.
  • the first feature is directly above or obliquely above the second feature, or it only indicates that the first feature is higher in level than the second feature.
  • the first feature is “below”, “below”, and “below” of the second feature.
  • the first feature may be directly below or obliquely below the second feature, or it may simply indicate that the first feature is less horizontal than the second feature.
  • an electronic device 1000 includes a photographing device 100, a device body 200, and a slider 300 slidably connected to the device body 200.
  • the photographing device 100 includes a structured light module 10, a camera module 20, a receiver 30, and a circuit board 40.
  • the structured light module 10, the camera module 20 and the receiver 30 are fixed to the slider 300.
  • the circuit board 40 includes a first branch terminal 41, a second branch terminal 42, a third branch terminal 43, and a bus terminal 44.
  • the first branch line end 41, the second branch line end 42, and the third branch line end 43 are electrically connected to the structured light module 10, the camera module 20, and the receiver 30, respectively.
  • the bus terminal 44 is electrically connected to the first branch terminal 41, the second branch terminal 42 and the third branch terminal 43, and via the first branch terminal 41, the second branch terminal 42 and the third branch terminal
  • the branch terminal 43 transmits electrical signals to the structured light module 10, the camera module 20, and the receiver 30, and the bus terminal 44 is also electrically connected to the device body 200.
  • the slider 300 slides and retracts relative to the device body 200 to drive the structured light module 10, the camera module 20, and the receiver 30 to extend or contract with respect to the device body 200.
  • the circuit board 40 communicates the device body 200 with the structured light module 10, the camera module 20, and the receiver 30, so as to realize the structured light module 10, the camera module 20, and the receiver 30 and the
  • the apparatus body 200 transmits electrical signals.
  • the electronic device 1000 may be a mobile phone, a notebook computer, or a tablet computer.
  • the photographing device 100 can photograph a human face through the structured light module 10 to have a human face recognition function.
  • the photographing device 100 can also implement conventional photographing of portraits or scenes through the camera module 20 to have a photographing function.
  • the photographing apparatus 100 may also implement a voice call receiving function through the receiver 30, so as to achieve multi-purpose use of photographing communication.
  • the circuit board 40 includes a first branch terminal 41, a second branch terminal 42, a third branch terminal 43, and a bus terminal 44.
  • the first branch terminal 41, the second branch terminal 42, and the bus terminal 44 The third branch terminal 43 is electrically connected to the structured light module 10, the camera module 20 and the receiver 30, respectively, and the bus terminal 44 is connected to the first branch terminal 41, the second branch terminal 42 and the third
  • the branch line terminal 43 is electrically connected, and transmits electrical signals to the structured light module 10, the camera module 20, and the receiver 30 through the first branch line terminal 41, the second branch line terminal 42, and the third branch line terminal 43,
  • the structured light module 10, the camera module 20, and the receiver 30 transmit electrical signals only through the bus terminal 44, simplifying the structure of the circuit board 40, and optimizing the arrangement structure of the photographing device 100.
  • the structured light module 10, the camera module 20, and the receiver 30 are side by side on the slider 300.
  • the structured light module 10, the camera module 20, and the receiver 30 are fixed to the slider 300 away from the device body 200, so as to facilitate the protrusion of the slider 300 relative to the device body 200.
  • the sliding stroke of the slider 300 is small.
  • the circuit board 40 is located at the slider 300 near the device body 200 to facilitate electrical connection with the device body 200.
  • the circuit board 40 is side by side with the structured light module 10, the camera module 20 and the receiver 30.
  • the bus terminal 44 is adjacent to the device body 200.
  • the first branch line end 41, the second branch line end 42 and the third branch line end 43 are respectively adjacent to the structured light module 10, the camera module 20 and the receiver 30, so that the circuit board 40 and the The structured light module 10, the camera module 20, and the receiver 30 are arranged more densely, and the arrangement structure of the electronic device 1000 is optimized.
  • the first branch line end 41, the second branch line end 42 and the third branch line end 43 are close to each other, and are located at a side of the circuit board 40 away from the device body 200.
  • the bus terminal 44 is located on a side of the circuit board 40 near the device body 200.
  • the bus terminal 44 is opposite to the first branch terminal 41, the second branch terminal 42 and the third branch terminal 43 to avoid the conductive line of the bus terminal 44 and the first branch terminal 41, The second branch line terminal 42 and the third branch line terminal 43 crosstalk.
  • the circuit board 40 includes a main circuit section 50, a main circuit section 60, a first branch circuit section 70 and a second branch circuit section 80.
  • the main line portion 50 includes a first edge 51 and a second edge 52 opposite to the first edge 51.
  • the main line portion 60 and the first branch line portion 70 extend from the first edge 51 and the second edge 52, respectively.
  • the second branch line portion 80 extends from the second edge 52.
  • the bus terminal 44 is disposed on the main line portion 60.
  • the first branch line end 41 is disposed on the first branch line portion 70.
  • the second branch line end 42 is disposed on the main line portion 50.
  • the third branch line end 43 is disposed on the second branch line portion 80.
  • the main line portion 50 further includes a third edge 53 connected between the first edge 51 and the second edge 52, and a fourth edge 54 opposite to the third edge 53.
  • the first edge 51 and the second edge 52 are oppositely disposed in a sliding direction of the slider 300 relative to the device body 200.
  • the first edge 51 and the second edge 52 are substantially perpendicular to the sliding direction of the slider 300.
  • the third edge 53 and the fourth edge 54 are substantially parallel to the sliding direction of the slider 300 relative to the device body 200.
  • a distance from the third edge 53 to the fourth edge 54 is substantially equal to a width of the slider 300 in a substantially vertical sliding direction.
  • the main line portion 60 extends in a direction substantially perpendicular to the first edge 51.
  • the first branch line portion 70 extends in a direction substantially perpendicular to the second edge 52.
  • the second branch line portion 80 extends in a direction substantially perpendicular to the second edge 52.
  • the first branch line section 70 and the second branch line section 80 are isolated from each other.
  • the bus terminal 44 is disposed at an end of the main line portion 60 away from the main line portion 50.
  • the first branch line end 41 is disposed at an end of the first branch line part 70 away from the main line part 50. The distance between the bus terminal 44 and the main line portion 50 is increased, so that the bus terminal 44 is electrically connected to the device body 200.
  • the distance from the first branch line end 41 to the main line portion 50 is increased, which facilitates the structured light module 10 to approach the edge of the slider 300 and facilitates the structured light module 10 to extend out of the device ⁇ 200 ⁇ The body 200.
  • the second branch line end 42 is disposed at the main line portion 50 adjacent to the second edge 52.
  • the camera module 20 is adjacent to the second edge 52 of the main circuit portion 50, which is convenient to be side-by-side with the first sub-circuit portion 70, and is convenient to be side-by-side with the structured light module 10, so that the electronic device 1000
  • the structure arrangement is compact, and the arrangement structure of the electronic device 1000 is optimized.
  • the third branch line end 43 is disposed at an end of the second branch line part 80 away from the main line part 50, so that the receiver 30 is juxtaposed with the camera module 20.
  • the first branch line section 70 includes a first branch section 71 and a second branch section 72 opposite to the first branch section 71.
  • the first sub-section 71 and the second sub-section 72 both extend from the second edge 52.
  • the first branch line end 41 includes an infrared end 411 and an imaging line end 412, and the infrared end 411 and the imaging line end 412 are respectively disposed in the first sub-section 71 and the second sub-section 72.
  • the structured light module 10 includes an infrared module 11 and an imaging module 12 that is relatively fixed to the infrared module 11.
  • the infrared module 11 is electrically connected to the infrared terminal 411
  • the imaging module 12 is electrically connected to the imaging line terminal 412.
  • the extending direction of the first sub-portion 71 and the extending direction of the second sub-portion 72 are parallel.
  • the extending direction of the first sub-section 71 is substantially perpendicular to the second edge 52.
  • the first sub-section 71 and the second sub-section 72 are respectively located at opposite ends of the second edge 52. That is, the first sub-section 71 and the second sub-section 72 are adjacent to the third edge 53 and the fourth edge 54 respectively, so that between the first sub-section 71 and the second sub-section 72 A larger pitch can be obtained.
  • the large distance between the first sub-section 71 and the second sub-section 72 allows the camera
  • the module 20 and the receiver 30 are arranged between the first sub-section 71 and the second sub-section 72.
  • the camera module 20 and the receiver 30 extend parallel to the first sub-section 71.
  • the direction arrangement makes the camera module 20 and the receiver 30 more compact in structure.
  • the infrared module 11 and the imaging module 12 are respectively located on two sides of the receiver 30.
  • the infrared module 11 and the imaging module 12 are made independent from each other, and an avoidance space is formed between the infrared module 11 and the imaging module 12, and the avoidance space is provided for the camera module 20 and the receiver.
  • the camera module 20 is located approximately in the middle of the electronic device 1000, so that the distance between the camera module 20 and two edges in the width direction of the electronic device 1000 is equal, which is convenient for the camera module 20 to shoot and improve the user experience.
  • the infrared end 411 is disposed at an end of the first sub-portion 71 away from the main line portion 50.
  • the infrared terminal 411 is a driving electric signal for transmitting infrared rays and a sensing signal for detecting infrared rays transmitted by the infrared module 11.
  • the imaging line end 412 is disposed at an end of the second sub-portion 72 away from the main line portion 50.
  • the imaging line end 412 transmits a driving signal for the captured image and a sensing signal for receiving the captured image for the imaging module 12.
  • the infrared end 411 and the imaging line end 412 are located on the same side of the first sub-section 71 and the second sub-section 72, respectively, so that the infrared module 11 and the imaging module 12 can pass through
  • a flexible circuit board is electrically connected to the infrared end 411 and the imaging line end 412.
  • the first branch 71 includes a first branch 711 extending from the second edge 52 and a second branch extending from the first branch 711. 712.
  • the infrared terminal 411 includes a first port 413 and a second port 414.
  • the first port 413 and the second port 414 are respectively disposed on the first branch 711 and the second branch 712.
  • the infrared module 11 includes an infrared camera 111 and an infrared fill light 112 fixed to the infrared camera 111.
  • the infrared camera 111 and the infrared fill light 112 are electrically connected to the first port 413 and the second port 414, respectively.
  • the infrared camera 111 and the infrared fill light 112 extend in a direction parallel to the second edge 52. That is, the infrared camera 111 and the infrared fill light 112 are side by side in the width direction of the electronic device 1000.
  • the infrared camera 111 and the infrared supplementary light 112 are close together, so that the first port 413 and the second port 414 are relatively close to each other, and the infrared terminal 411 is convenient for wiring.
  • the first port 413 and the second port 414 are respectively disposed on the first branch 711 and the second branch 712, which facilitates the wiring of the first branch 71 and avoids the line of the first port 413 Crosstalk with the line of the second port 414.
  • the first branch 711 has an end edge 7111 parallel to the second edge 52, and a first side edge 7112 and a second side edge 7113 connecting the two ends of the end edge 7111.
  • the first side edge 7112 is closer to the second sub-portion 72 than the second side edge 7113.
  • the second branch 712 extends from the first branch 7111 in a direction away from the second branch 72. That is, the second branch 712 extends from the second side edge 7112.
  • the first port 413 is located at the first branch 711 near the end edge 7111.
  • the end edge 7111 is close to the side wall of the infrared camera 111.
  • the second branch 712 includes a first extension portion 7121 and a second extension portion 7122.
  • the first extension portion 7121 extends from the second side edge 7113, and the second extension portion 7122 extends from the first extension portion 7121.
  • the extending direction of the first extending portion 7121 is substantially perpendicular to the second side edge 7112, and the extending direction of the second extending portion 7122 is substantially parallel to the second side edge 7112.
  • the second port 414 is disposed on the second extension portion 7122 to facilitate the infrared camera 111 and the infrared fill light 112 to be moved side by side.
  • the second port 414 is close to the third edge 53.
  • the infrared fill light 112 is located on a side of the infrared camera 111 away from the imaging module 12.
  • the infrared supplementary light 112 is relatively close to the infrared camera 111, which is convenient for the infrared supplementary light 112 to provide light for the infrared camera 111.
  • the distance between the infrared camera 111 and the imaging module 12 is reduced, which facilitates a large area overlap between the infrared light image captured by the infrared camera 111 and the screen image captured by the imaging module 12, and thus the Faces or other objects that are closer to the electronic device 1000 are identified.
  • the first port 413 and the second port 414 are both connection bases of a board-to-board connector.
  • a first flexible circuit board 113 extends from the bottom of the infrared camera 111.
  • the first flexible circuit board 113 is parallel to the first branch 711.
  • An end of the first flexible circuit board 113 is bent relative to the bottom of the infrared camera 111 and is plugged into the first port 413 to realize the electrical connection between the infrared camera 111 and the first port 413.
  • the direction of the infrared camera 111 is perpendicular to the first branch 711, that is, the direction of the infrared camera 111 is substantially perpendicular to the main line portion 50.
  • a supplemental light circuit board 114 extends from the bottom of the infrared fill light 112.
  • the fill light circuit board 114 is a flexible circuit board.
  • the fill light circuit board 114 is parallel to the second branch 712.
  • the end of the fill light circuit board 114 is bent relative to the bottom of the infrared fill light 112, and is plugged into the second port 414, so that the infrared fill light 112 and the second port 414 are electrically connected. connection.
  • the direction of the infrared supplementary light 112 is perpendicular to the second branch 712, that is, the direction of the infrared supplementary light 112 is substantially perpendicular to the main line portion 50.
  • the photographing device 100 further includes an ambient light sensor 110 and a proximity light distance sensor 120.
  • the extension plate 115 includes a first extension portion 1151 protruding from an edge of the fill light circuit board 114 and a second extension portion 1152 spaced from the first extension portion 1151.
  • the first extension portion 1151 is bent and extended along a side wall of the infrared fill light 112.
  • the second extension portion 1152 is bent and extended in a direction parallel to the infrared fill light 112.
  • the ambient light sensor 110 is fixed on the first extension portion 1151 and is electrically connected to the second port 414 via the fill light circuit board 114.
  • the ambient light sensor 110 faces parallel to the sliding direction of the slider 300 relative to the device body 200.
  • the ambient light sensor 110 receives ambient light toward the outside of the end of the slider 300, and the ambient light sensor 110 As the slider 300 contracts with respect to the device body 200, the ambient light sensor 110 can still detect the brightness of the ambient light of the electronic device 1000 to adjust the brightness of the display screen of the electronic device 1000.
  • the ambient light sensor 110 faces parallel to the second branch 712, so that the ambient light sensor 110 senses ambient light on the top end surface of the electronic device 1000, thereby avoiding the front or back of the electronic device 1000. Light is sensed to avoid damaging the front and back structures of the electronic device 1000.
  • the proximity light distance sensor 120 is composed of an infrared transmitter, an infrared sensor, and a flood sensor.
  • the proximity light distance sensor 120 is fixed on the second extension portion 1152 and is electrically connected to the second port 414 via the fill light circuit board 114.
  • the direction of the proximity light distance sensor 120 is substantially parallel to the direction of the infrared fill light.
  • the expansion board 115 is integrated with the fill light circuit board 114 to facilitate the electrical connection of the infrared fill light 112, the ambient light sensor 110, and the proximity light distance sensor 120 through the second port 414 to achieve all
  • the second port 414 is electrically connected to multiple functional devices, optimizes the arrangement structure of the photographing device 100, and simplifies the structure of the electronic device 1000.
  • the photographing device 100 includes a first antenna module 101, the second branch 712 is further provided with a first antenna port 102, and the first antenna module 101 is electrically connected to the first antenna module 101.
  • Antenna port 102 is provided.
  • the second port 414 is located at an end of the second extension portion 7121 far from the infrared fill light 112.
  • the first antenna port 102 is located on a side of the second port 414 near the infrared fill light 112.
  • An end of the fill light circuit board 114 far from the infrared fill light 112 is connected to the second port 414, so that the fill light circuit board 114 covers the first antenna port 102.
  • the first antenna module 101 includes a first antenna feeding board 103 and a first antenna circuit board 104 electrically connected to the first antenna feeding board 103.
  • the first antenna feeding plate 103 is provided with a first feeding elastic piece 1031 and a first radio frequency port 1032.
  • the first feeding elastic sheet 1031 is configured to provide a feeding signal for antenna radiation.
  • the first radio frequency port 1032 is used for plugging into the first radio frequency signal line 105.
  • An end of the first radio frequency signal 105 far from the first antenna feeding plate 103 is connected to the apparatus body 200 and is electrically connected to the apparatus body 200 for transmitting radio frequency signals.
  • the first antenna circuit board 104 is electrically connected to the first antenna port 102.
  • the first antenna port 102 is a connection base for board-to-board connection. An end portion of the first antenna circuit board member 104 is inserted into the first antenna port 102.
  • the fill light circuit board 114 covers an end of the first antenna circuit board component 104 and the first antenna port 102, so that the first antenna circuit board component 104 can be easily inserted into the first antenna port 102.
  • the connection is stable, so that the structure of the photographing device 100 is compact, the structure is firm, and the safety is high.
  • the second branch 72 includes a third branch 721 extending from the first edge 51 and a fourth branch 722 extending from the third branch 721.
  • the imaging line end 412 includes a third port 415 and a fourth port 416.
  • the third port 415 and the fourth port 416 are respectively disposed on the third branch 721 and the fourth branch 422.
  • the imaging module 12 includes an imaging camera 121 and a laser dot matrix 122 fixed to the imaging camera 121.
  • the imaging camera 121 and the laser dot matrix device 122 are electrically connected to the third port 415 and the fourth port 416, respectively.
  • the imaging camera 121 and the laser lattice device 122 extend in a direction parallel to the second edge 52. That is, the imaging camera 121 and the laser dot matrix 122 are side by side in the width direction of the electronic device 1000.
  • the imaging camera 121 and the laser dot matrix device 122 are close together, so that the third port 415 and the fourth port 416 are relatively close, and the imaging line end 412 is convenient for routing.
  • the third port 415 and the fourth port 416 are respectively disposed on the third branch 721 and the fourth branch 722, which is convenient for the second branch 72 to be wired and avoid the line of the third port 415 Crosstalk with the fourth port 416.
  • the third branch 721 has an end edge 7211 parallel to the second edge 52, and a third side edge 7212 and a fourth side edge 7213 connecting two ends of the end edge 7211.
  • the third side edge 7212 is closer to the first sub-section 71 than the fourth side edge 7213.
  • the fourth branch 722 extends from the third branch 7211 in a direction away from the second branch 72. That is, the fourth branch 722 extends from the fourth side edge 7213.
  • the third port 415 is located at the third branch 721 near the end edge 7211.
  • the end edge 7211 is close to the side wall of the imaging camera 121.
  • the fourth branch 722 includes a third extension portion 7221 and a fourth extension portion 7222.
  • the third extension portion 7221 extends from the fourth side edge 7213, and the fourth extension portion 7222 extends from the third extension portion 7221.
  • the extension direction of the third extension portion 7221 is substantially perpendicular to the fourth side edge 7213, and the extension direction of the fourth extension portion 7222 is substantially parallel to the fourth side edge 7213.
  • the fourth port 416 is disposed on the fourth extension portion 7222 to facilitate the imaging camera 121 and the laser dot matrix device 122 to be moved side by side.
  • the fourth port 416 is close to the fourth edge 54.
  • the laser dot matrix device 122 is located on a side of the imaging camera 121 away from the infrared camera 111.
  • the laser dot matrix device 122 is relatively close to the imaging camera 121 so that the laser dot matrix device 122 can provide light to the imaging camera 121.
  • the distance between the imaging camera 121 and the infrared camera 111 is reduced, which facilitates a large area overlap between the infrared light image captured by the imaging camera 121 and the screen image captured by the imaging camera 121.
  • the electronic device 1000 recognizes a face or other object that is closer.
  • the third port 415 and the fourth port 416 are both connection bases of a board-to-board connector.
  • a second flexible circuit board 123 extends from the bottom of the imaging camera 121.
  • the second flexible circuit board 123 is parallel to the third branch 721.
  • An end portion of the second flexible circuit board 123 is bent relative to the bottom of the imaging camera 121 and is plugged into the third port 415 to achieve electrical connection between the imaging camera 121 and the third port 415.
  • the orientation of the imaging camera 121 is perpendicular to the third branch 721, that is, the orientation of the imaging camera 121 is substantially perpendicular to the main line portion 50.
  • the orientation of the imaging camera 121 is substantially the same as that of the infrared camera 111, so that the imaging camera 121 and the infrared camera 111 can shoot the same target.
  • a laser circuit board 124 extends from the bottom of the laser dot matrix device 122.
  • the laser circuit board 124 is a flexible circuit board.
  • the laser circuit board 124 is parallel to the fourth branch 722.
  • An end portion of the laser circuit board 124 is bent relative to the bottom of the laser dot matrix device 122, and is inserted into the fourth port 416, so that the laser dot matrix device 122 is electrically connected to the fourth port 416.
  • the orientation of the laser dot matrix 122 is perpendicular to the fourth branch 722, that is, the laser dot matrix 122 faces substantially perpendicular to the main line portion 50.
  • the third port 415 and the fourth port 416 provide electrical signals to the imaging camera 121 and the laser dot matrix 122, simplify the structure of the circuit board 40, and optimize the structural arrangement of the photographing device 100 .
  • the photographing device 100 further includes a second antenna module 90, the fourth branch 722 is further provided with a second antenna port 91, and the second antenna module 90 is electrically connected to the first antenna module 90.
  • Two antenna port 91 Two antenna port 91.
  • the fourth port 416 is located at an end of the fourth extension portion 7222 away from the laser dot matrix device 122.
  • the second antenna port 91 is located on a side of the fourth port 416 near the laser dot matrix device 122.
  • An end of the laser circuit board 124 far from the laser dot matrix device 122 is connected to the fourth port 416, so that the laser circuit board 124 can cover the second antenna port 91.
  • the second antenna module 90 includes a second antenna feeding board 92 and a second antenna circuit board 93 electrically connected to the second antenna feeding board 92.
  • the second antenna feeding plate 92 is provided with a second feeding elastic piece 921 and a second radio frequency port 922.
  • the second feeding elastic sheet 921 is configured to provide a feeding signal for antenna radiation.
  • the second radio frequency port 922 is configured to be connected to a second radio frequency signal line 923. An end of the second radio frequency signal 923 far from the second antenna feeding plate 92 is connected to the apparatus body 200 and is electrically connected to the apparatus body 200 for transmitting radio frequency signals.
  • the second antenna circuit board component 93 is electrically connected to the second antenna port 91.
  • the second antenna port 91 is a connection base for board-to-board connection. An end of the second antenna circuit board component 93 is connected to the second antenna port 91.
  • the laser circuit board 114 covers the end portion of the second antenna circuit board component 93 and the second antenna port 91, so that the second antenna circuit board component 93 and the second antenna port 91 are firmly connected. Therefore, the structure of the photographing device 100 is compact, the structure is firm, and the security is high.
  • the camera module 20 includes a first camera 21 and a second camera 22 fixed side by side with the first camera 21.
  • the second branch line end 42 includes a first camera line end 421 and a second camera line end 422 that is parallel to the first camera line end 421.
  • the first camera line terminal 421 and the second camera line terminal 422 are electrically connected to the first camera 21 and the second camera 22, respectively.
  • the first camera 21 is a main camera.
  • the second camera 22 is a secondary camera.
  • the orientations of the first camera 21 and the second camera 22 are substantially the same.
  • the orientation of the first camera 21 is opposite to that of the imaging camera 121.
  • the first camera 21 and the second camera 22 may be rear cameras.
  • the imaging camera 121 is a front camera.
  • the first camera 21 and the second camera 22 are juxtaposed between the first branch 711 and the third branch 721.
  • the first camera 21 and the second camera 22 are adjacent to the first side edge 7112 and the third side edge 7212, respectively.
  • the first camera line end 421 and the second camera line end 422 are adjacent to the second edge 52 and are arranged side by side in a direction parallel to the second edge 52.
  • the first camera line end 421 and the second camera line end 422 face the distance between the first branch 711 and the third branch 721 on the main line portion 50 to facilitate the first
  • the camera 21 and the second camera 22 are located within a distance between the first sub-section 71 and the second sub-section 72, so that the structure of the photographing device 100 is compact.
  • the first camera line end 421 and the second camera line end 422 are both sockets of a board-to-board connector.
  • a first camera circuit board 211 and a second camera circuit board 221 extend from the bottom of the first camera 21 and the bottom of the second camera 22, respectively.
  • the first camera circuit board 211 and the second camera circuit board 221 are both flexible circuit boards.
  • the first camera circuit board 211 remote from the first camera 21 is connected to the first camera line end 421, so that the first camera 21 is electrically connected to the first camera line end 421, and is convenient.
  • the first camera 21 is detachable from the circuit board 40.
  • An end of the second camera circuit board 221 far from the second camera 22 is connected to the second camera line end 422, so that the second camera 22 is electrically connected to the second camera line end 421, and is convenient.
  • the second camera 22 can be detached from the circuit board 40.
  • the first camera 21 is partially close to the infrared camera 111.
  • the second camera 22 is partially close to the imaging camera 121, and the arrangement structure of the photographing device 100 is optimized.
  • the receiver 30 is located on the side of the second camera 22 away from the main line portion 50.
  • the receiver 30 is close to the second camera 22.
  • the length and width dimensions of the second camera 22 are smaller than the length and width dimensions of the first camera 21, so that the receiver 30 and the second camera 22 can be moved closer together.
  • the proximity light distance sensor 120 is opposite to the first camera 21 and side by side with the receiver 30, making full use of the arrangement space between the first camera 21 and the edge of the slider 300.
  • the second branch line portion 80 includes an extension connection portion 81 extending from the second edge 52 and a receiver connection end 82 remote from the main line portion 50.
  • the third branch line end 43 is disposed at the receiver connection end 82.
  • the gap between the extension connection portion 81 and the first camera 21 and the second camera 22 is oppositely disposed, so as to prevent the extension connection portion 81 from interfering with the shooting of the first camera 21 and the second camera 22.
  • the extension connection portion 81 is substantially close to the bottom of the camera module 20.
  • the third split line end 43 is provided with an elastic sheet contact point, and the third split line end 43 is in contact with the elastic sheet of the receiver 30 so as to provide an electrical signal to the receiver 30 conveniently.
  • a rigid reinforcing plate is provided on a side of the receiver connecting end 82 away from the receiver 30 to provide rigid support to the receiver 30.
  • the photographing apparatus 100 further includes a device holder 140.
  • the device holder 140 is fixed on the slider 300.
  • the structured light module 10, the camera module 20 and the receiver 30 are all fixed on the device bracket 140.
  • the device holder 140 is fixed at an edge of the slider 300 away from the device body 200. Two ends of the device holder 140 are substantially aligned with two edges in the width direction of the slider 300.
  • the device holder 140 is arranged in parallel with the fill light receiving groove 141, the infrared receiving groove 142, the light receiving groove 143, the receiver receiving groove 144, the imaging receiving groove 145, and the laser receiving container in the order of parallel to the width direction of the slider 300.
  • Slot 146 is provided in parallel with the fill light receiving groove 141, the infrared receiving groove 142, the light receiving groove 143, the receiver receiving groove 144, the imaging receiving groove 145, and the laser receiving container in the order of parallel to the width direction of the slider 300.
  • the fill light storage tank 141, the infrared storage tank 142, the light sensor storage tank 143, the receiver storage tank 144, the imaging storage tank 145, and the laser storage tank 146 respectively hold and fix the infrared fill light 112, the infrared camera 111, The proximity optical distance sensor 120, the receiver 30, the imaging camera 121, and the laser dot matrix device 122.
  • the device holder 140 faces the infrared fill light 112, the infrared camera 111, the proximity light distance sensor 120, the receiver 30, the imaging camera 121, and the laser dot matrix device 122. Position it.
  • the device holder 140 is further provided with an avoidance notch 147 substantially facing the light receiving groove 143 and the receiver receiving groove 144.
  • the avoidance gap 147 partially accommodates the first camera 21 and the second camera 22, so that the camera module 20 and the device holder 140 are closely matched, so that the photographing device 100 has a compact structure.
  • the main line portion 60 is bent relative to the main line portion 50 as the slider 300 slides relative to the device body 200.
  • the device body 200 includes a middle frame 210 and a main board 220 fixed to the middle frame 210.
  • the slider 300 is slidably connected to the middle frame 210.
  • the main line portion 60 includes a main board connection portion 61 remote from the main line portion 50 and a bent and stretched portion 62 connected to the main plate connection portion 61 and the main line portion 50.
  • the motherboard connection portion 61 is fixedly connected to the motherboard 220.
  • the bent and stretched portion 62 is located on a side of the motherboard 220 opposite to the motherboard connection portion 61, and the bus terminal 44 is disposed on the motherboard connection portion 61.
  • the circuit board 40 is a flexible circuit board.
  • the circuit board 40 is provided with a first reinforcing plate, a second reinforcing plate, and a third reinforcing plate on the side of the main line portion 50 facing away from the second branch line end 42.
  • the first reinforcing plate is directly opposite the first camera line end 421 and the second camera line end 422.
  • the second reinforcing plate and the third reinforcing plate are located on both sides of the first reinforcing plate, respectively.
  • the second reinforcing plate, the first reinforcing plate and the third reinforcing plate are arranged along a direction parallel to the second edge 52.
  • the second reinforcing plate and the third reinforcing plate are opposite to the first branch 711 and the third branch 721, respectively.
  • the main circuit portion 50 is provided with a first electronic device group 59 and a second electronic device group 58 on the other side opposite to the second and third reinforcing plates.
  • the second reinforcing plate supports the first electronic device group 59
  • the third reinforcing plate supports the second electronic device group 58.
  • the first electronic device group 59 and the second electronic device group 58 can process electrical signals of the structured light module 10, the camera module 20, and the receiver 30. Arranging the first electronic device assembly 59 and the second electronic device group 59 on the main circuit portion 50 makes full use of the arrangement space of the circuit board 40 and makes the circuit board 40 structure stable.
  • the circuit board 40 is provided with a fourth reinforcing plate on the side of the first sub-section 71 facing away from the infrared end 411, and the fourth reinforcing plate supports the infrared end 411.
  • the circuit board 40 is provided with a fifth reinforcing plate on the side of the second sub-section 72 facing away from the imaging line end 412, and the fifth reinforcing plate supports the imaging line end 412 to improve the circuit board 40 stability.
  • the main board connection portion 61 is fixed to the device body 200, and the main circuit portion 50 is fixed to the slider 300. When the slider 300 is extended or contracted relative to the device body 200, the main line portion 60 is deformed, so that the bending and stretching portion 62 is bent.
  • the bent and stretched portion 62 is housed on a side of the main board 220 facing the middle frame 210.
  • the motherboard connection portion 61 is detachably connected to a side of the motherboard 220 facing away from the middle frame 210.
  • the bus terminal 44 is a connection seat of a board-to-board connector.
  • the bus terminal 44 is connected to the motherboard 220 to facilitate the disassembly of the circuit board 40 from the motherboard 220.
  • the circuit board 40 may also be a rigid-soft board.
  • the main circuit portion 50 may constitute a hard board portion of the circuit board 40
  • the main circuit portion 60 may constitute a soft board portion of the circuit board 40.
  • the main line portion 60 includes a first total branch 63 extending from the main line portion 50 and a second total branch 64 extending from the main line portion 50.
  • the bus terminal 44 includes a first connection port 441 and a second connection port 442.
  • the first connection port 441 is disposed at an end of the first general branch 63 away from the main line portion 50 and is fixed relative to the device body 100.
  • the second connection port 442 is disposed at the second general branch 64. An end away from the main line portion 50 and fixed to the apparatus body 200.
  • the first total branch 63 and the second total branch 64 extend from the first edge 51 of the main line portion 50.
  • the extending direction of the first general branch 63 and the extending direction of the second general branch 64 are substantially parallel to the sliding direction of the slider 300 relative to the device body 200.
  • the first general branch 63 and the second general branch 64 are respectively located at two ends of the first edge 51.
  • Both the first connection port 441 and the second connection port 442 are board-to-board connector sockets.
  • the first connection port 441 and the second connection port 442 are plugged into the main board 220 to realize the detachable connection between the main line portion 50 and the main board 220.
  • a receiving space 65 exists between the first general branch 63 and the second general branch 64.
  • the electronic device 1000 further includes a driving mechanism 230 fixed to the middle frame 210, and the driving mechanism 230 is located in the receiving space.
  • the driving mechanism 230 includes a motor, a screw, and a nut.
  • the motor is fixed to the device body 200 and drives the screw rod to rotate, and the screw rod drives the nut to slide relative to the device book 200.
  • the slider 300 is fixedly connected to the nut, and slides with the nut relative to the device body 200. By using the nut, a sliding force is applied to a position where the slider 200 is facing the camera module 20, which facilitates sliding the slider 200 and makes the slider 200 slide smoothly.
  • the first general branch 63 and the second general branch 64 avoid the driving mechanism 230, and optimize the structural arrangement of the electronic device 1000.
  • the electronic device 1000 further includes a display 240 fixed to the device body 200.
  • the display 240 has a display area 241, the camera module 20, and the structured light module 10.
  • the earphone 30 is contracted with the slider 300 on the device body 200, and the display area 241 covers at least part of the structured light module 10.
  • the display area 241 can cover the structured light module 10 and the receiver 30, and avoid the display screen 240 from opening a signal port in the display area 241 for the structured light module 10 and the receiver 30 to transmit signals.
  • a full-screen display structure is implemented.
  • the display screen 240 is covered on the side of the middle frame 210 facing away from the main board 220.
  • the electronic device 1000 further includes a back case 250.
  • the back shell 250 covers a side of the middle frame 210 facing away from the display screen 240.
  • the main board 220 is located between the back case 250 and the middle frame 210.
  • An edge of the back case 250 is substantially aligned with an edge of the display screen 240.
  • the slider 300 drives the structured light module 10, the receiver 30, the ambient light sensor 110, and the proximity light distance sensor 120 to extend.
  • the structured light module 10, the receiver 30, the ambient light sensor 110, and the proximity light distance sensor 120 are expanded relative to the display screen 240; the infrared fill light 112 can be avoided
  • the display screen 240 emits infrared light to a human face to detect the distance between the human face and the electronic device 1000; the laser dot matrix device 122 may emit a dot structure infrared light toward the human face to detect the characteristic structure of the human face.
  • the infrared camera 111 captures a laser lattice structure emitted by the laser lattice device 122.
  • the imaging camera 121 can capture a face image frame, which is used to synthesize with the laser lattice structure collected by the infrared camera 111, and can also be used for conventional shooting.
  • the receiver 30 can provide the user with voice without the display screen 240;
  • the proximity light distance sensor 120 can be composed of an ambient light sensor, an infrared distance sensor, and an infrared light transmitter.
  • the proximity light distance sensor 120 can realize the functions of detecting the brightness of ambient light and using infrared light to determine whether external components are close to the electronic device.
  • the proximity light distance sensor 120 After the proximity light distance sensor 120 is expanded relative to the display screen 240, it can detect the brightness of the external environment light to control the display screen brightness to assist the self-timer function of the imaging camera 121. In a state where a call voice is provided, it is detected whether the user's face is close to the display screen 240 to control the display screen 240 to light up or to stop. In a state where the ambient light sensor 110 is extended with the slider 300 relative to the device body 200, the ambient light sensor 110 may stop working, and the proximity light distance sensor 110 detects the brightness of the ambient light.
  • the photographing device and the electronic equipment include the circuit board including a first branch line end, a second branch line end, a third branch line end, and a bus end, and the first branch line end and the second branch line.
  • the third branch terminal are electrically connected to the structured light module, the camera module, and the receiver, respectively, and the bus terminal is connected to the first branch terminal, the second branch terminal, and the third branch terminal. Electrically connected, and transmitting electrical signals to the structured light module, camera module, and receiver via the first branch line terminal, second branch line terminal, and third branch line terminal, so that the structured light module and camera module
  • the group and the receiver only transmit electric signals through the bus end, which simplifies the circuit board structure and optimizes the arrangement structure of the shooting device.
  • first and second are used for descriptive purposes only and cannot be understood as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Therefore, the features defined as “first” and “second” may explicitly or implicitly include at least one of the features. In the description of the present invention, the meaning of "plurality” is at least two, for example, two, three, unless it is specifically and specifically defined otherwise.

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Abstract

本申请公开了一种拍摄装置及电子设备,所述拍摄装置包括摄像头模组、结构光模组、受话器和电路板,所述电路板包括第一分线端、第二分线端、第三分线端和总线端,所述第一分线端、第二分线端和所述第三分线端分别与所述结构光模组、摄像头模组和受话器电连接,所述总线端与所述第一分线端、第二分线端和第三分线端电连接,经所述第一分线端、第二分线端和第三分线端与所述结构光模组、摄像头模组和受话器传输电信号。所述结构光模组、摄像头模组和受话器仅通过所述总线端传输电信号,简化了所述电路板结构,优化了所述拍摄装置的排布结构。

Description

拍摄装置及电子设备 技术领域
本申请涉及电子设备领域,尤其涉及一种拍摄装置及电子设备。
背景技术
手机可以配置有多个摄像模组和受话器,每一摄像模组和受话器均需要通过电路板获取电信号。随着摄像模组的数量增多,多个摄像模组与受话器的排布结构受限制,导致为多个摄像模组和受话器提供电信号的电路板结构复杂,影响手机内部排布结构。
发明内容
本申请提供一种拍摄装置及电子设备。
本申请提供了一种拍摄装置,其中,所述拍摄装置包括摄像头模组、结构光模组、受话器和电路板,所述电路板包括第一分线端、第二分线端、第三分线端和总线端,所述第一分线端、第二分线端和所述第三分线端分别与所述结构光模组、摄像头模组和受话器电连接,所述总线端与所述第一分线端、第二分线端和第三分线端电连接,所述总线端与所述第一分线端、第二分线端和第三分线端相对设置,所述总线端可相对所述分线端、第二分线端和第三分线端滑动,以实现所述摄像头模组、结构光模组和受话器可相对所述总线端滑动并与所述总线端传输电信号。
本申请还提供了一种电子设备,其中,所述电子设备包括拍摄装置、装置本体和滑动连接所述装置本体的滑块,所述拍摄装置包括结构光模组、摄像头模组、受话器和电路板,所述摄像头模组、结构光模组和受话器固定于所述滑块,所述电路板包括第一分线端、第二分线端、第三分线端和总线端,所述第一分线端、第二分线端和所述第三分线端分别与所述结构光模组、摄像头模组和受话器传输电连接,所述总线端与所述第一分线端、第二分线端和第三分线端电连接,经所述第一分线端、第二分线端和第三分线端与所述结构光模组、摄像头模组和受话器传输电信号,所述总线端还电连接所述装置本体。
本申请还提供了一种电子设备,其中,所述电子设备包括拍摄装置、装置本体和滑块,所述拍摄装置包括结构光模组、摄像头模组、受话器和电路板,所述电路板电连接所述装置本体、结构光模组、摄像头模组和受话器,用以对所述装置本体与所述结构光模组、摄像头模组和受话器进行电信号传输,所述滑块承载所述结构光模组、摄像头模组和受话器,用以带动所述结构光模组、摄像头模组和受话器相对所述装置本体伸出或收缩。
本申请实施方式的拍摄装置及电子设备,通过所述电路板包括第一分线端、第二分线端、第三分线端和总线端,所述第一分线端、第二分线端和所述第三分线端分别与所述结构光模组、摄像头模组和受话器电连接,所述总线端与所述第一分线端、第二分线端和第三分线端电连接,经所述第一分线端、第二分线端和第三分线端与所述结构光模组、摄像头模组和受话器传输电信号,使得所述结构光模组、摄像头模组和受话器仅通过所述总线端传输电信号,简化了所述电路板结构,优化了所述拍摄装置的排布结构。
本发明的实施方式的附加方面和优点将在下面的描述中部分给出,部分将从下面的描述中变得明显,或通过本发明的实施方式的实践了解到。
附图说明
为了更清楚地说明本申请实施例的技术方案,下面将对实施方式中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图是本申请一些实施方式,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是本申请提供实施例的电子设备的示意图;
图2是本申请提供实施例的电子设备的另一示意图;
图3是本申请提供实施例的电子设备的另一示意图;
图4是本申请提供实施例的电子设备的另一示意;
图5是本申请提供实施例的电子设备的另一示意;
图6是图5的电子设备的V部分放大示意图;
图7是本申请提供实施例的电子设备的红外补光灯电路板;
图8是本申请提供实施例的电子设备的拍摄装置的示意图;
图9是本申请提供实施例的电子设备的拍摄装置的另一示意图;
图10是图9的拍摄装置的VI部分放大示意图;
图11是本申请提供实施例的电子设备的拍摄装置的另一示意图;
图12是本申请提供实施例的电子设备的拍摄装置的另一示意图;
图13是本申请提供实施例的电子设备的拍摄装置的立体示意图;
图14是本申请提供实施例的电子设备的拍摄装置的分解示意图;
图15是本申请提供实施例的电子设备的另一示意图;
图16是本申请提供实施例的电子设备的分解示意图。
具体实施方式
以下结合附图对本发明的实施方式作进一步说明。附图中相同或类似的标号自始至终表示相同或类似的元件或具有相同或类似功能的元件。
另外,下面结合附图描述的本发明的实施方式是示例性的,仅用于解释本发明的实施方式,而不能理解为对本发明的限制。
在本发明中,除非另有明确的规定和限定,第一特征在第二特征“上”或“下”可以是第一和第二特征直接接触,或第一和第二特征通过中间媒介间接接触。而且,第一特征在第二特征“之上”、“上方”和“上面”可是第一特征在第二特征正上方或斜上方,或仅仅表示第一特征水平高度高于第二特征。第一特征在第二特征“之下”、“下方”和“下面”可以是第一特征在第二特征正下方或斜下方,或仅仅表示第一特征水平高度小于第二特征。
请参阅图1和图2,本申请实施方式的电子设备1000包括拍摄装置100、装置本体200和滑动连接所述装置本体200的滑块300。所述拍摄装置100包括结构光模组10、摄像头模组20、受话器30和电路板40。所述结构光模组10、摄像头模组20和受话器30固定于所述滑块300。所述电路板40包括第一分线端41、第二分线端42、第三分线端43和总线端44。所述第一分线端41、第二分线端42和所述第三分线端43分别与所述结构光模组10、摄像头模组20和受话器30电连接。所述总线端44与所述第一分线端41、第二分线端42和第三分线端43电连接,经所述第一分线端41、第二分线端42和第三分线端43与所述结构光模组10、摄像头模组20和受话器30传输电信号,所述总线端44还电连接所述装置本体200。
可以理解的是,所述滑块300相对所述装置本体200滑动伸缩,以带动所述结构光模组10、摄像头模组20和受话器30相对所述装置本体200伸出或收缩。所述电路板40将所述装置本体200与所述结构光模组10、摄像头模组20和受话器30导通,以实现所述结构光模组10、摄像头模组20和受话器30与所述装置本体200传输电信号。所述电子设备1000可以是手机、笔记本电脑或平板电脑等。所述拍摄装置100可以通过所述结构光模组10拍摄人脸,以具备识别人脸功能。所述拍摄装置100还可以通过所述摄像头模组20可以实现常规人像或景物拍照,以具备拍照功能。所述拍摄装置100还可以通过所述受话器30实现接收语音通话功能,以实现拍摄通讯多功能用途。
通过所述电路板40包括第一分线端41、第二分线端42、第三分线端43和总线端44,所述第一分线端41、第二分线端42和所述第三分线端43分别与所述结构光模组10、摄像头模组20和受话器30电连接,所述总线端44与所述第一分线端41、第二分线端42和第三分线端43电连接,经所述第一分线端41、第二分线端42和第三分线端43与所述结构光模组10、摄像头模组20和受话器30传输电信号,使得所述结构光模组10、摄像头模组20和受话器30仅通过所述总线端44传输电信号,简化了所述电路板40结构,优化了所述拍摄装置100的排布结构。
本实施方式中,所述结构光模组10、摄像头模组20和所述受话器30在所述滑块300上相互并排。所述结构光模组10、摄像头模组20和所述受话器30固定于所述滑块300远离所述装置本体200处,以方便随所述滑块300相对所述装置本体200伸出,减小所述滑块300的滑动行程。所述电路板40位于所述滑块300靠近所述装置本体200处,以方便电连接所述装置本体200。所述电路板40与所述结构光模组10、摄像头模组20和所述受话器30并排。所述总线端44邻近所述装置本体200。所述第一分线端41、第二分线端端42和第三分线端43分别邻近所述结构光模组10、摄像头模组20和受话器30,使得所述电路板40与所述结构光模组10、摄像头模组20和所述受话器30排布更密集,优化所述电子设备1000的排布结构。所述第一分线端41、第二分线端42和所述第三分线端43相互靠拢,并位于所述电路板40远离所述装置本体200一侧边处。所述总线端44位于所述电路板40靠近所述装置本体200的一侧边处。所述总线端44与所述第一分线端41、第二分线端42和第三分线端43相对,以避免所述总线端44的导电线路与所述第一分线端41、第二分线端42和所述第三分线端43串扰。
进一步地,请参阅图3,所述电路板40包括主线路部50、总线路部60、第一分线路部70和第二分线路部80。所述主线路部50具有第一边缘51和与所述第一边缘51相对设置的第二边缘52。所述总 线路部60和所述第一分线路部70分别由所述第一边缘51和所述第二边缘52延伸出。所述第二分线路部80由所述第二边缘52延伸出。所述总线端44设置于所述总线路部60。所述第一分线端41设置于所述第一分线路部70。所述第二分线端42设置于所述主线路部50。所述第三分线端43设置于所述第二分线路部80。
本实施方式中,所述主线路部50还包括连接于所述第一边缘51和所述第二边缘52之间的第三边缘53,以及相对所述第三边缘53的第四边缘54。所述第一边缘51和所述第二边缘52在所述滑块300相对所述装置本体200滑动方向上相对设置。所述第一边缘51和所述第二边缘52大致垂直所述滑块300的滑动方向。所述第三边缘53和所述第四边缘54大致平行所述滑块300相对所述装置本体200的滑动方向。所述第三边缘53至所述第四边缘54的距离大致等于所述滑块300在大致垂直滑动方向上的宽度。所述总线路部60沿大致垂直所述第一边缘51方向延伸。所述第一分线路部70沿大致垂直所述第二边缘52方向延伸。所述第二分线路部80沿大致垂直所述第二边缘52方向延伸。所述第一分线路部70与所述第二分线路部80相互隔离。所述总线端44设置于所述总线路部60远离所述主线路部50的一端。所述第一分线端41设置于所述第一分线路部70远离所述主线路部50的一端。所述总线端44至所述主线路部50的距离增大,方便所述总线端44电连接所述装置本体200。所述第一分线端41至所述主线路部50的距离增大,方便所述结构光模组10靠近所述滑块300的边缘,方便所述结构光模组10伸出所述装置本体200。所述第二分线端42设置于所述主线路部50邻近所述第二边缘52处。所述摄像头模组20邻近所述主线路部50的第二边缘52,方便与所述第一分线路部70并排,以及方便与所述结构光模组10并排,使得所述电子设备1000的结构排布紧凑,优化了所述电子设备1000的排布结构。所述第三分线端43设置于所述第二分线路部80远离所述主线路部50的端部,方便所述受话器30与所述摄像头模组20并列。
进一步地,请参阅图4,所述第一分线路部70包括第一分部71和与所述第一分部71相对的第二分部72。所述第一分部71和所述第二分部72均由所述第二边缘52延伸出。所述第一分线端41包括红外线端411和成像线端412,所述红外线端411和所述成像线端412分别设置于所述第一分部71和所述第二分部72。所述结构光模组10包括红外模组11和与所述红外模组11相对固定的成像模组12。所述红外模组11电连接所述红外线端411,所述成像模组12电连接所述成像线端412。
本实施方式中,所述第一分部71的延伸方向和所述第二分部72的延伸方向相平行。所述第一分部71的延伸方向大致垂直所述第二边缘52。所述第一分部71和所述第二分部72分别位于所述第二边缘52相对的两端。即所述第一分部71与所述第二分部72分别邻近所述第三边缘53和所述第四边缘54,使得所述第一分部71与所述第二分部72之间可以获得较大的间距。由于所述摄像头模组20的尺寸较大于所述结构光模组10的尺寸,利用所述第一分部71与所述第二分部72之间存在较大的间距,可以将所述摄像头模组20和所述受话器30排布于所述第一分部71与所述第二分部72之间,所述摄像头模组20和所述受话器30沿平行所述第一分部71延伸方向排列,使得所述摄像头模组20与所述受话器30结构更紧凑。所述红外模组11与所述成像模组12分别位于所述受话器30的两侧。使得所述红外模组11与所述成像模组12相互独立,所述红外模组11与所述成像模组12之间形成避让空间,该避让空间供所述摄像头模组20和所述受话器30放置,充分利用所述电子设备1000的内部排布空间。所述摄像头模组20大致位于所述电子设备1000中间的位置,使得所述摄像头模组20距离所述电子设备1000宽度方向的两边缘距离相等,方便所述摄像头模组20拍摄,提高用户体验。所述红外线端411设置于所述第一分部71远离所述主线路部50的端部。所述红外线端411为所述红外模组11传输发射红外光线的驱动电信号和检测红外光线的感应信号。所述成像线端412设置于所述第二分部72远离所述主线路部50的端部。所述成像线端412为所述成像模组12传输拍摄图像的驱动信号和接收拍摄图像的感应信号。所述红外线端411和所述成像线端412分别位于所述第一分部71和所述第二分部72同一朝向侧,以方便所述红外模组11和所述成像模组12分别经柔性电路板电连接于所述红外线端411和所述成像线端412。
进一步地,请参阅图5、图6和图7,所述第一分部71包括由所述第二边缘52延伸出的第一分支711和由所述第一分支711伸出的第二分支712。所述红外线端411包括第一端口413和第二端口414。所述第一端口413和所述第二端口414分别设置于所述第一分支711和所述第二分支712。所述红外模组11包括红外摄像头111和相对所述红外摄像头111固定的红外补光灯112。所述红外摄像头111和所述红外补光灯112分别电连接所述第一端口413和所述第二端口414。
本实施方式中,所述红外摄像头111和所述红外补光灯112沿平行所述第二边缘52方向延伸。即所述红外摄像头111和所述红外补光灯112在所述电子设备1000的宽度方向并排。所述红外摄像头111与所述红外补光灯112相并靠拢,使得所述第一端口413与所述第二端口414距离较近,方便所述红外线端411走线。所述第一端口413和所述第二端口414分别设置于所述第一分支711和所述第二分支 712,方便所述第一分部71排线,避免所述第一端口413的线路与所述第二端口414的线路串扰。将所述第二分支712由所述第一分支711延伸出,以减少所述第一端口413至所述主线路部50的走线距离,以及减少所述第二端口414至所述主线路部50的走线距离。所述第一分支711具有平行所述第二边缘52的端部边缘7111和连接所述端部边缘7111两端的第一侧边缘7112及第二侧边缘7113。所述第一侧边缘7112较所述第二侧边缘7113靠近所述第二分部72。所述第二分支712由所述第一分支7111朝远离所述第二分部72方向延伸出。即所述第二分支712由所述第二侧边缘7112延伸出。所述第一端口413位于所述第一分支711靠近所述端部边缘7111处。所述端部边缘7111与所述红外摄像头111的侧壁相靠拢。所述第二分支712包括第一延伸部7121和第二延伸部7122。所述第一延伸部7121由所述第二侧边缘7113延伸出,所述第二延伸部7122由所述第一延伸部7121延伸出。所述第一延伸部7121延伸方向大致垂直所述第二侧边缘7112,所述第二延伸部7122的延伸方向大致平行所述第二侧边缘7112。所述第二端口414设置于所述第二延伸部7122上,以方便所述红外摄像头111与所述红外补光灯112相并排靠拢。所述第二端口414靠近所述第三边缘53。所述红外补光灯112位于所述红外摄像头111远离所述成像模组12一侧。所述红外补光灯112与所述红外摄像头111距离较近,方便所述红外补光灯112为所述红外摄像头111提供光线。而且所述红外摄像头111至所述成像模组12的距离减小,方便所述红外摄像头111拍摄的红外光线图像与所述成像模组12所拍摄的画面图像存在较大区域重叠,进而可以对距离所述电子设备1000较近的脸部或其他物体进行识别。
本实施方式中,所述第一端口413和所述第二端口414均为板对板连接器的连接座。所述红外摄像头111底部延伸出第一柔性电路板113。所述第一柔性电路板113平行所述第一分支711。所述第一柔性电路板113端部相对所述红外摄像头111底部折弯,并与所述第一端口413插接,以实现所述红外摄像头111与所述第一端口413电连接。所述红外摄像头111的朝向垂直所述第一分支711,即所述红外摄像头111朝向大致垂直所述主线路部50。所述红外补光灯112底部延伸出补光灯电路板114。所述补光灯电路板114为柔性电路板。所述补光灯电路板114平行所述第二分支712。所述补光灯电路板114端部相对所述红外补光灯112底部折弯,并与所述第二端口414插接,以实现所述红外补光灯112与所述第二端口414电连接。所述红外补光灯112的朝向垂直所述第二分支712,即所述红外补光灯112朝向大致垂直所述主线路部50。所述补光灯电路板114远离所述第二分支712的边缘还延伸出扩展板件115。所述拍摄装置100还包括环境光传感器110和接近光距离传感器120。所述扩展板件115包括由所述补光灯电路板114边缘伸出的第一扩展部1151和与所述第一扩展部1151相隔的第二扩展部1152。所述第一扩展部1151沿所述红外补光灯112的侧壁折弯延伸。所述第二扩展部1152沿平行所述红外补光灯112方向折弯延伸。所述环境光传感器110固定于所述第一扩展部1151上,经所述补光灯电路板114电连接所述第二端口414。所述环境光传感器110朝向平行所述滑块300相对所述装置本体200的滑动方向,所述环境光传感器110朝向所述滑块300端部的外侧接收环境光线,在所述环境光传感器110随所述滑块300相对所述装置本体200收缩时,所述环境光传感器110仍然可以检测所述电子设备1000外界环境光线亮度,以调节所述电子设备1000的显示屏亮度。所述环境光传感器110朝向平行所述第二分支712,以使得所述环境光传感器110在所述电子设备1000的顶端端面上感应环境光光线,进而避免在所述电子设备1000的正面或背面感应光线,以避免破坏所述电子设备1000的正面和背面结构。所述接近光距离传感器120由红外发射器、红外感应器和泛光感应器构成。所述接近光距离传感器120固定于所述第二扩展部1152上,经所述补光灯电路板114电连接所述第二端口414。所述接近光距离传感器120朝向与所述红外补光灯朝向大致相平行。利用所述扩展板件115与所述补光灯电路板114一体设置,方便经所述第二端口414电连接所述红外补光灯112、环境光传感器110和接近光距离传感器120,实现所述第二端口414电连接多个功能器件,优化所述拍摄装置100的排布结构,简化所述电子设备1000结构。
进一步地,请参阅图8,所述拍摄装置100包括第一天线模组101,所述第二分支712还设有第一天线端口102,所述第一天线模组101电连接所述第一天线端口102。
本实施方式中,所述第二端口414位于所述第二延伸部7121远离所述红外补光灯112的端部。所述第一天线端口102位于所述第二端口414靠近所述红外补光灯112的一侧。所述补光灯电路板114远离所述红外补光灯112的一端与所述第二端口414插接,方便所述补光灯电路板114压盖所述第一天线端口102。所述第一天线模组101包括第一天线馈电板件103和电连接所述第一天线馈电板件103的第一天线线路板件104。所述第一天线馈电板件103设置设有第一馈电弹片1031和第一射频端口1032。所述第一馈电弹片1031用于对天线辐射提提供馈电信号。所述第一射频端口1032用于与第一射频信号线105插接。所述第一射频信号105远离所述第一天线馈电板件103一端插接于所述装置本体200,并与所述装置本体200电连接,用于传输射频信号。所述第一天线线路板件104与所述第一天线端口102电连接。所述第一天线端口102为板对板连接的连接座。所述第一天线线路板件104的端部与所述第一 天线端口102相插接。所述补光灯电路板114压盖所述第一天线线路板件104的端部和所述第一天线端口102,方便所述第一天线线路板件104与所述第一天线端口102插接稳固,使得所述拍摄装置100的结构排布紧凑并且结构牢固,安全性高。
进一步地,请参阅图9和图10,所述第二分部72包括由所述第一边缘51延伸出的第三分支721和由所述第三分支721延伸出的第四分支722。所述成像线端412包括第三端口415和第四端口416。所述第三端口415和所述第四端口416分别设置于所述第三分支721和所述第四分支422。所述成像模组12包括成像摄像头121和相对所述成像摄像头121固定的激光点阵器122。所述成像摄像头121和所述激光点阵器122分别电连接所述第三端口415和所述第四端口416。
本实施方式中,所述成像摄像头121和所述激光点阵器122沿平行所述第二边缘52方向延伸。即所述成像摄像头121和所述激光点阵器122在所述电子设备1000的宽度方向并排。所述成像摄像头121与所述激光点阵器122相并靠拢,使得所述第三端口415与所述第四端口416距离较近,方便所述成像线端412走线。所述第三端口415和所述第四端口416分别设置于所述第三分支721和所述第四分支722,方便所述第二分部72排线,避免所述第三端口415的线路与所述第四端口416的线路串扰。将所述第四分支722由所述第三分支721延伸出,以减少所述第三端口415至所述主线路部50的走线距离,以及减少所述第四端口416至所述主线路部50的走线距离。所述第三分支721具有平行所述第二边缘52的端部边缘7211和连接所述端部边缘7211两端的第三侧边缘7212及第四侧边缘7213。所述第三侧边缘7212较所述第四侧边缘7213靠近所述第一分部71。所述第四分支722由所述第三分支7211朝远离所述第二分部72方向延伸出。即所述第四分支722由所述第四侧边缘7213延伸出。所述第三端口415位于所述第三分支721靠近所述端部边缘7211处。所述端部边缘7211与所述成像摄像头121的侧壁相靠拢。所述第四分支722包括第三延伸部7221和第四延伸部7222。所述第三延伸部7221由所述第四侧边缘7213延伸出,所述第四延伸部7222由所述第三延伸部7221延伸出。所述第三延伸部7221延伸方向大致垂直所述第四侧边缘7213,所述第四延伸部7222的延伸方向大致平行所述第四侧边缘7213。所述第四端口416设置于所述第四延伸部7222上,以方便所述成像摄像头121与所述激光点阵器122相并排靠拢。所述第四端口416靠近所述第四边缘54。所述激光点阵器122位于所述成像摄像头121远离所述红外摄像头111一侧。所述激光点阵器122与所述成像摄像头121距离较近,方便所述激光点阵器122为所述成像摄像头121提供光线。而且所述成像摄像头121至所述红外摄像头111的距离减小,方便所述成像摄像头121拍摄的红外光线图像与所述成像摄像头121所拍摄的画面图像存在较大区域重叠,进而可以对距离所述电子设备1000较近的脸部或其他物体进行识别。
本实施方式中,所述第三端口415和所述第四端口416均为板对板连接器的连接座。所述成像摄像头121底部延伸出第二柔性电路板123。所述第二柔性电路板123平行所述第三分支721。所述第二柔性电路板123端部相对所述成像摄像头121底部折弯,并与所述第三端口415插接,以实现所述成像摄像头121与所述第三端口415电连接。所述成像摄像头121的朝向垂直所述第三分支721,即所述成像摄像头121朝向大致垂直所述主线路部50。所述成像摄像头121的朝向与所述红外摄像头111的朝向大致相同,以方便所述成像摄像头121与所述红外摄像头111拍摄同一目标。所述激光点阵器122底部延伸出激光电路板124。所述激光电路板124为柔性电路板。所述激光电路板124平行所述第四分支722。所述激光电路板124端部相对所述激光点阵器122底部折弯,并与所述第四端口416插接,以实现所述激光点阵器122与所述第四端口416电连接。所述激光点阵器122的朝向垂直所述第四分支722,即所述激光点阵器122朝向大致垂直所述主线路部50。所述第三端口415和所述第四端口416为所述成像摄像头121和所述激光点阵器122提供电信号,简化所述电路板40结构,优化了所述拍摄装置100的结构排布。
进一步地,请参阅图11,所述拍摄装置100还包括第二天线模组90,所述第四分支722还设有第二天线端口91,所述第二天线模组90电连接所述第二天线端口91。
本实施方式中,所述第四端口416位于所述第四延伸部7222远离所述激光点阵器122的端部。所述第二天线端口91位于所述第四端口416靠近所述激光点阵器122的一侧。所述激光电路板124远离所述激光点阵器122的一端与所述第四端口416插接,方便所述激光电路板124压盖所述第二天线端口91。所述第二天线模组90包括第二天线馈电板件92和电连接所述第二天线馈电板件92的第二天线线路板件93。所述第二天线馈电板件92设置设有第二馈电弹片921和第二射频端口922。所述第二馈电弹片921用于对天线辐射提提供馈电信号。所述第二射频端口922用于与第二射频信号线923插接。所述第二射频信号923远离所述第二天线馈电板件92一端插接于所述装置本体200,并与所述装置本体200电连接,用于传输射频信号。所述第二天线线路板件93与所述第二天线端口91电连接。所述第二天线端口91为板对板连接的连接座。所述第二天线线路板件93的端部与所述第二天线端口91相插接。所述激光电路板114压盖所述第二天线线路板件93的端部和所述第二天线端口91,方便所述第二天线 线路板件93与所述第二天线端口91插接稳固,使得所述拍摄装置100的结构排布紧凑并且结构牢固,安全性高。
进一步地,请参阅图12、图13和图14,所述摄像头模组20包括第一摄像头21和与所述第一摄像头21并排固定的第二摄像头22。所述第二分线端42包括第一摄像线端421和与所述第一摄像线端421并排的第二摄像线端422。所述第一摄像线端421和所述第二摄像线端422分别电连接所述第一摄像头21和所述第二摄像头22。
本实施方式中,所述第一摄像头21为主摄像头。所述第二摄像头22为副摄像头。所述第一摄像头21和所述第二摄像头22的朝向大致相同。所述第一摄像头21的朝向与所述成像摄像头121的朝向相反。所述第一摄像头21和所述第二摄像头22可以为后置摄像头。所述成像摄像头121为前置摄像头。所述第一摄像头21和所述第二摄像头22在所述第一分支711和所述第三分支721之间并排。所述第一摄像头21和所述第二摄像头22分别邻近所述第一侧边缘7112和所述第三侧边缘7212。所述第一摄像线端421和所述第二摄像线端422邻近所述第二边缘52,并沿平行所述第二边缘52方向并排。所述第一摄像线端421和所述第二摄像线端422在所述主线路部50上正对所述第一分支711和所述第三分支721之间的间距,方便所述第一摄像头21和所述第二摄像头22位于所述第一分部71和所述第二分部72之间的间距内,使得所述拍摄装置100的结构紧凑。所述第一摄像线端421和所述第二摄像线端422均为板对板连接器的插座。所述第一摄像头21的底部和所述第二摄像头22的底部分别延伸出第一摄像电路板211和第二摄像电路板221。所述第一摄像电路板211和所述第二摄像电路板221均为柔性电路板。所述第一摄像电路板211远离所述第一摄像头21的端部与所述第一摄像线端421插接,实现所述第一摄像头21电连接所述第一摄像线端421,以及方便所述第一摄像头21相对所述电路板40可以拆卸。所述第二摄像电路板221远离所述第二摄像头22的端部与所述第二摄像线端422插接,实现所述第二摄像头22电连接所述第二摄像线端421,以及方便所述第二摄像头22可以相对所述电路板40拆卸。所述第一摄像头21部分与所述红外摄像头111相并靠拢。所述第二摄像头22部分与所述成像摄像头121相并靠拢,优化了所述拍摄装置100的排布结构。
本实施方式,所述受话器30位于所述第二摄像头22远离所述主线路部50一侧。所述受话器30与所述第二摄像头22相靠拢。利用所述第二摄像头22的长宽尺寸小于所述第一摄像头21的长宽尺寸,方便所述受话器30与所述第二摄像头22相靠拢。所述接近光距离传感器120与所述第一摄像头21相对,并与所述受话器30相并排,充分利用所述第一摄像头21与所述滑块300的边缘之间的排布空间。所述第二分线路部80包括由所述第二边缘52延伸的延伸连接部81和远离所述主线路部50的受话器连接端82。所述第三分线端43设置于所述受话器连接端82。所述延伸连接部81与所述第一摄像头21和所述第二摄像头22之间的间隙相对设置,避免所述延伸连接部81干涉所述第一摄像头21和所述第二摄像头22拍摄。所述延伸连接部81大致靠近所述摄像头模组20的底部。第三分线端43设置弹片接触点,所述第三分线端43与所述受话器30的弹片相抵触,以方便向所述受话器30提供电信号。所述受话器连接端82远离所述受话器30一侧设置刚性补强板,以对所述受话器30提供刚性支撑。
本实施方式中,所述拍摄装置100还包括器件支架140。所述器件支架140固定于所述滑块300上。所述结构光模组10、摄像头模组20和所述受话器30均固定于所述器件支架140上。所述器件支架140固定于所述滑块300远离所述装置本体200的边缘处。所述器件支架140的两端大致与所述滑块300宽度方向两边缘对齐。所述器件支架140在大致平行所述滑块300宽度方向上依次排列有补光灯收容槽141、红外收容槽142、光感收容槽143、受话收容槽144、成像收容槽145和激光收容槽146。所述补光灯收容槽141、红外收容槽142、光感收容槽143、受话收容槽144、成像收容槽145和激光收容槽146分别收容固定所述红外补光灯112、红外摄像头111、接近光距离传感器120、受话器30、成像摄像头121和激光点阵器122。所述器件支架140对所述红外补光灯112、红外摄像头111、接近光距离传感器120、受话器30、成像摄像头121和激光点阵器122。进行定位。所述器件支架140还设有一个大致正对所述光感收容槽143和所述受话收容槽144的避让缺口147。所述避让缺口147部分***述第一摄像头21和所述第二摄像头22,使得所述摄像头模组20与所述器件支架140紧密配合,使得所述拍摄装置100结构紧凑。
进一步地,请参阅图14和图15,所述总线路部60随所述滑块300相对所述装置本体200滑动而相对所述主线路部50折弯。所述装置本体200包括中框210和固定于所述中框210的主板220,所述滑块300滑动连接所述中框210。所述总线路部60包括远离所述主线路部50的主板连接部61和连接于所述主板连接部61与所述主线路部50的折弯舒展部62。所述主板连接部61固定连接所述主板220。所述折弯舒展部62位于所述主板220与所述主板连接部61相背的一侧,所述总线端44设置于所述主板连接部61。
本实施方式中,所述电路板40为柔性电路板。所述电路板40在所述主线路部50背离所述第二分 线端42一侧设置第一补强板、第二补强板和第三补强板。所述第一补强板与所述第一摄像线端421及所述第二摄像线端422正对。所述第二补强板和所述第三补强板分别位于所述第一补强板两侧。所述第二补强板、第一补强板和第三补强板沿平行所述第二边缘52方向排列。所述第二补强板和所述第三补强板分别与所述第一分支711和所述第三分支721相对。所述主线路部50在与所述第二补强板和所述第三补强板相对的另一侧设置第一电子器件组59和第二电子器件组58。所述第二补强板对所述第一电子器件组59进行支撑,所述第三补强板对所述第二电子器件组58进行支撑。所述第一电子器件组59和所述第二电子器件组58可以对所述结构光模组10、摄像头模组20和所述受话器30的电信号进行处理。在所述主线路部50上排布所述第一电子器件组件59和所述第二电子器件组59充分利用所述电路板40的排布空间,并且使得所述电路板40结构稳固。所所述电路板40在所述第一分部71背离所述红外线端411一侧设置第四补强板,所述第四补强板对所述红外线端411支撑。所述电路板40在所述第二分部72背离所述成像线端412一侧设置第五补强板,所述第五补强板对所述成像线端412支撑,提高所述电路板40稳固性。由于所述主板连接部61固定于所述装置本体200,而所述主线路部50固定于所述滑块300。当所述滑块300相对所述装置本体200伸出或收缩,带动所述总线路部60产生形变,使得所述折弯舒展部62折弯。为了方便所述折弯舒展部62折弯,并减少所述折弯舒展部62的应力损失,所述主板220与所述中框210之间存在收容槽。所述折弯舒展部62收容于所述主板220朝向所述中框210一侧。所述主板连接部61可拆卸连接于所述主板220背离所述中框210一侧。所述总线端44为板对板连接器的连接座。所述总线端44与所述主板220插接,方便所述电路板40与所述主板220拆卸。当然,在其他试试方式中,所述电路板40也可以是软硬结合板。所述主线路部50可以构成所述电路板40的硬板部分,所述总线路部60可以构成所述电路板40的软板部分。
进一步地,所述总线路部60包括由所述主线路部50延伸出的第一总支63和由所述主线路部50延伸出的第二总支64。所述总线端44包括第一连接端口441和第二连接端口442。所述第一连接端口441设置于所述第一总支63远离所述主线路部50一端,并相对所述装置本体100固定,所述第二连接端口442设置于所述第二总支64远离所述主线路部50一端,并相对所述装置本体200固定。
本实施方式中,所述第一总支63和所述第二总支64由所述主线路部50的第一边缘51延伸出。所述第一总支63的延伸方向和所述第二总支64的延伸方向均大致平行所述滑块300相对所述装置本体200的滑动方向。所述第一总支63和所述第二总支64分别位于所述第一边缘51两端。所述第一连接端口441和所述第二连接端口442均为板对板连接器插座。所述第一连接端口441和所述第二连接端口442与所述主板220插接,以实现所述总线路部50与所述主板220可拆卸连接。所述第一总支63和所述第二总支64之间存在收容空间65,所述电子设备1000还包括固定于所述中框210的驱动机构230,所述驱动机构230位于所述收容空间65内,驱动所述滑块200滑动。所述驱动机构230包括电机、丝杆和螺母。所述电机固定于所述装置本体200,驱动所述丝杆转动,所述丝杆带动所述螺母相对所述装置本200滑动。所述滑块300固定连接所述螺母,随所述螺母相对所述装置本体200滑动。利用所述螺母对所述滑块200正对所述摄像头模组20的位置施加滑动力,方便带动所述滑块200滑动,使得所述滑块200滑动顺畅。所述第一总支63和所述第二总支64对所述驱动机构230避让,优化了所述电子设备1000的结构排布。
进一步地,请参阅图15和图16,所述电子设备1000还包括固定于所述装置本体200的显示器240,所述显示器240具有显示区241,所述摄像头模组20、结构光模组10和受话器30随所述滑块300收缩于所述装置本体200,所述显示区241至少覆盖部分所述结构光模组10。利用所述显示区241可以覆盖结构光模组10和所述受话器30,避免所述显示屏240在所述显示区241开设供所述结构光模组10和所述受话器30传输信号的信号端口,以增大所述显示区241在所述显示屏240的占比,实现全面屏显示结构。所述显示屏240盖合于所述中框210背离所述主板220一侧。所述电子设备1000还包括背壳250。所述背壳250盖合于所述中框210背离所述显示屏240一侧。所述主板220位于所述背壳250和所述中框210之间。所述背壳250的边缘与所述显示屏240的边缘大致对齐。在所述滑块300相对所述装置本体200收缩状态下,所述背壳250完全覆盖所述滑块300和所述拍摄装置100,以及所述装置本体200。所述显示屏240完全覆盖所述滑块300和所述拍摄装置100。
可以理解的是,当所述滑块300相对所述装置本体200完全伸出时,所述滑块300带动所述结构光模组10、受话器30、环境光传感器110和接近光距离传感器120伸出所述装置本体200,所述结构光模组10、受话器30、环境光传感器110和所述接近光距离传感器120相对所述显示屏240展开时;所述红外补光灯112可以避开所述显示屏240对人脸发射红外光线,以检测人脸与所述电子设备1000的距离;所述激光点阵器122可以朝人脸发射点阵结构红外光线,以检测人脸特征结构。所述红外摄像头111采集所述激光点阵器122发射的激光点阵结构。所述成像摄像头121可以拍摄人脸图像画面,用以与所述红外摄像头111采集的激光点阵结构进行合成,还可以用于常规拍摄等。所述受话器30可以避 开所述显示屏240向用户提供通话语音;所述接近光距离传感器120可以是由环境光传感器、红外距离传感器和红外光发射器构成。所述接近光距离传感器120可以实现检测环境光线亮度、利用红外光线判断外界部件是否接近所述电子设备的功能。所述接近光距离传感器120在相对所述显示屏240展开后,可以检测外界环境光线亮度,以控制显示屏亮度,以辅助所述成像摄像头121的自拍功能,还可以在所述受话器30向用户提供通话语音状态下,检测用户脸部是否靠近所述显示屏240,以控制所述显示屏240亮屏或者息屏。在所述环境光传感器110随所述滑块300相对所述装置本体200伸出状态下,所述环境光传感器110可以停止工作,由所述接近光距离传感器110检测环境光线亮度。
本申请实施方式的拍摄装置及电子设备,通过所述电路板包括第一分线端、第二分线端、第三分线端和总线端,所述第一分线端、第二分线端和所述第三分线端分别与所述结构光模组、摄像头模组和受话器电连接,所述总线端与所述第一分线端、第二分线端和第三分线端电连接,经所述第一分线端、第二分线端和第三分线端与所述结构光模组、摄像头模组和受话器传输电信号,使得所述结构光模组、摄像头模组和受话器仅通过所述总线端传输电信号,简化了所述电路板结构,优化了所述拍摄装置的排布结构。
在本说明书的描述中,参考术语“某些实施方式”、“一个实施方式”、“一些实施方式”、“示意性实施方式”、“示例”、“具体示例”、或“一些示例”的描述意指结合所述实施方式或示例描述的具体特征、结构、材料或者特点包含于本发明的至少一个实施方式或示例中。在本说明书中,对上述术语的示意性表述不一定指的是相同的实施方式或示例。而且,描述的具体特征、结构、材料或者特点可以在任何的一个或多个实施方式或示例中以合适的方式结合。
此外,术语“第一”、“第二”仅用于描述目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括至少一个所述特征。在本发明的描述中,“多个”的含义是至少两个,例如两个,三个,除非另有明确具体的限定。
尽管上面已经示出和描述了本发明的实施例,可以理解的是,上述实施例是示例性的,不能理解为对本发明的限制,本领域的普通技术人员在本发明的范围内可以对上述实施例进行变化、修改、替换和变型,本发明的范围由权利要求及其等同物限定。

Claims (20)

  1. 一种拍摄装置,其特征在于,所述拍摄装置包括摄像头模组、结构光模组、受话器和电路板,所述电路板包括第一分线端、第二分线端、第三分线端和总线端,所述第一分线端、第二分线端和所述第三分线端分别与所述结构光模组、摄像头模组和受话器电连接,所述总线端与所述第一分线端、第二分线端和第三分线端电连接,所述总线端与所述第一分线端、第二分线端和第三分线端相对设置,所述总线端可相对所述分线端、第二分线端和第三分线端滑动,以实现所述摄像头模组、结构光模组和受话器可相对所述总线端滑动并与所述总线端传输电信号。
  2. 根据权利要求1所述的拍摄装置,其特征在于,所述电路板包括主线路部、总线路部、第一分线路部和第二分线路部,所述主线路部具有第一边缘和与所述第一边缘相对设置的第二边缘,所述总线路部由所述第一边缘延伸出,所述第一分线路部和所述第二分线路部由所述第二边缘延伸出,所述总线端设置于所述总线路部,所述第一分线端设置于所述第一分线路部,所述第二分线端设置于所述主线路部,所述第三分线端设置于所述第二分线路部。
  3. 根据权利要求2所述的拍摄装置,其特征在于,所述第一分线路部包括第一分部和与所述第一分部相对的第二分部,所述第一分部和所述第二分部均由所述第二边缘延伸出,所述第一分线端包括红外线端和成像线端,所述红外线端和所述成像线端分别设置于所述第一分部和所述第二分部,所述结构光模组包括红外模组和与所述红外模组相对固定的成像模组,所述红外模组电连接所述红外线端,所述成像模组电连接所述成像线端。
  4. 根据权利要求3所述的拍摄装置,其特征在于,所述第一分部和所述第二分部之间存在间距,所述第二分线端和所述第三分线端设置于所述主线路部与所述间距相对处。
  5. 根据权利要求3所述的拍摄装置,其特征在于,所述第一分部包括由所述第二边缘延伸出的第一分支和由所述第一分支伸出的第二分支,所述红外线端包括第一端口和第二端口,所述第一端口和所述第二端口分别设置于所述第一分支和所述第二分支,所述红外模组包括红外摄像头和相对所述红外摄像头固定的红外补光灯,所述红外摄像头和所述红外补光灯分别电连接所述第一端口和所述第二端口。
  6. 根据权利要求5所述的拍摄装置,其特征在于,所述第二分支由所述第一分支朝远离所述第二分部方向延伸出。
  7. 根据权利要求5所述的拍摄装置,其特征在于,所述拍摄装置还包括第一天线模组,所述第二分支还设有第一天线端口,所述第一天线模组电连接所述第一天线端口。
  8. 根据权利要求7所述的拍摄装置,其特征在于,所述拍摄装置还包括补光灯电路板,所述补光灯电路板电连接所述第二端口和所述红外补光灯并压盖所述第一天线端口。
  9. 根据权利要求3所述的拍摄装置,其特征在于,所述第二分部包括由所述第二边缘延伸出的第三分支和由所述第三分支延伸出的第四分支,所述成像线路端包括第三端口和第四端口,所述第三端口和所述第四端口分别设置于所述第三分支和所述第四分支,所述成像模组包括成像摄像头和相对所述成像摄像头固定的激光点阵器,所述成像摄像头和所述激光点阵器分别电连接所述第三端口和所述第四端口。
  10. 根据权利要求9所述的拍摄装置,其特征在于,所述第四分支由于所述第三分支朝远离所述第一分部方向延伸出。
  11. 根据权利要求9所述的拍摄装置,其特征在于,所述拍摄装置还包括第二天线模组,所述第四分支还设有第二天线端口,所述第二天线模组电连接所述第二天线端口。
  12. 根据权利要求11所述的拍摄装置,其特征在于,所述拍摄装置还包括激光灯电路板,所述激光灯电路板电连接所述第四端口和所述激光点阵器,并压盖所述第二天线端口。
  13. 一种电子设备,其特征在于,所述电子设备包括拍摄装置、装置本体和滑动连接所述装置本体的滑块,所述拍摄装置包括结构光模组、摄像头模组、受话器和电路板,所述摄像头模组、结构光模组和受话器固定于所述滑块,所述电路板包括第一分线端、第二分线端、第三分线端和总线端,所述第一分线端、第二分线端和所述第三分线端分别与所述结构光模组、摄像头模组和受话器传输电连接,所述总线端与所述第一分线端、第二分线端和第三分线端电连接,经所述第一分线端、第二分线端和第三分线端与所述结构光模组、摄像头模组和受话器传输电信号,所述总线端还电连接所述装置本体。
  14. 根据权利要求13所述的电子设备,其特征在于,所述电路板包括主线路部、总线路部、第一分线路部和第二分线路部,所述总线路部由主线路部延伸出,所述总线路部远离所述主线路部一端固定于所述装置本体,所述总线路部随所述滑块相对所述装置本体滑动而相对所述主线路部折弯,所述总线端设置于所述总线路部远离所述主线路部一端,所述第一分线路部和所述第二分线路部由所述主线路部延伸出,所述第一分线端设置于所述第一分线路部,所述第二分线端设置于所述主线路部,所述第三分线端设置于所述第二分线路部。
  15. 根据权利要求14所述的电子设备,其特征在于,所述总线路部包括由所述主线路部延伸出的第一总支和由所述主线路部延伸出的第二总支,所述总线端包括第一连接端口和第二连接端口,所述第一连接端口设置于所述第一总支远离所述主线路部一端,并相对所述装置本体固定,所述第二连接端口设置于所述第二总支远离所述主线路部一端,并相对所述装置本体固定。
  16. 根据权利要求14所述的电子设备,其特征在于,所述装置本体包括中框和固定于所述中框的主板,所述滑块滑动连接所述中框,所述总线路部包括远离所述主线路部的主板连接部和连接于所述主板连接部与所述主线路部的折弯舒展部,所述主板连接部固定连接所述主板,所述折弯舒展部位于所述主板与所述主板连接部相背的一侧,所述总线端设置于所述主板连接部。
  17. 根据权利要求13所述的电子设备,其特征在于,所述电子设备还包括固定于所述装置本体的显示器,所述显示器具有显示区,所述摄像头模组、结构光模组和受话器随所述滑块收缩于所述装置本体,所述显示区至少覆盖部分所述结构光模组。
  18. 一种电子设备,其特征在于,所述电子设备包括拍摄装置、装置本体和滑块,所述拍摄装置包括结构光模组、摄像头模组、受话器和电路板,所述电路板电连接所述装置本体、结构光模组、摄像头模组和受话器,用以对所述装置本体与所述结构光模组、摄像头模组和受话器进行电信号传输,所述滑块承载所述结构光模组、摄像头模组和受话器,用以带动所述结构光模组、摄像头模组和受话器相对所述装置本体伸出或收缩。
  19. 根据权利要求18所述的电子设备,其特征在于,所述装置本体设有主板,所述电路板电连接所述主板,所述主板经所述电路板与所述结构光模组、摄像头模组和受话器传输电信号。
  20. 根据权利要求18所述的电子设备,其特征在于,所述电子设备还包括显示器,所述显示器安装于所述装置本体,当所述结构光模组、摄像头模组和受话器相对所述装置本体伸出时,所述结构光模组、摄像头模组和受话器与所述显示器呈相展开状态;当所述结构光模组、摄像头模组和受话器相对所述装置本体收缩时,所述结构光模组、摄像头模组和受话器与所述显示器呈相叠合状态。
PCT/CN2019/089375 2018-06-02 2019-05-30 拍摄装置及电子设备 WO2019228479A1 (zh)

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