WO2020199809A1 - Module de montage de caméra, ensemble caméra, et terminal mobile - Google Patents

Module de montage de caméra, ensemble caméra, et terminal mobile Download PDF

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Publication number
WO2020199809A1
WO2020199809A1 PCT/CN2020/077134 CN2020077134W WO2020199809A1 WO 2020199809 A1 WO2020199809 A1 WO 2020199809A1 CN 2020077134 W CN2020077134 W CN 2020077134W WO 2020199809 A1 WO2020199809 A1 WO 2020199809A1
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WO
WIPO (PCT)
Prior art keywords
mounting
gear
camera
mobile terminal
mounting seat
Prior art date
Application number
PCT/CN2020/077134
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English (en)
Chinese (zh)
Inventor
包小明
Original Assignee
Oppo广东移动通信有限公司
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Filing date
Publication date
Application filed by Oppo广东移动通信有限公司 filed Critical Oppo广东移动通信有限公司
Publication of WO2020199809A1 publication Critical patent/WO2020199809A1/fr

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets

Definitions

  • the invention relates to the technical field of mobile terminals, in particular to a camera mounting module, a camera assembly and a mobile terminal.
  • mobile terminals such as smart phones are equipped with a front camera on one side of the display screen. Because the front camera needs to occupy the space on the side of the display screen, the coverage rate of the display screen on the front of the mobile phone is small, which is not conducive to mobile terminals.
  • the realization of high screen-to-body ratio; mobile terminals such as smart phones are generally equipped with a rear camera on one side of the back cover. Because the rear camera destroys the integrity of the back cover, it is not conducive to the improvement of the appearance of the mobile phone.
  • a mobile terminal including:
  • the main body includes a display screen, and the main body is provided with a receiving groove;
  • the camera mounting assembly includes a mounting seat and a camera arranged on the mounting seat, the mounting seat being arranged in the receiving groove and capable of rotating in the receiving groove;
  • the first gear is connected to the mounting base
  • the drive mechanism assembly includes a second gear and an internal gear, the first gear is arranged between the second gear and the internal gear, and the first gear is connected to the second gear and the internal gear, respectively Gear meshing; the mounting seat can be driven by the first gear, the second gear and the internal gear to rotate from the first position to the second position, when the mounting seat is in the first position
  • the camera is accommodated in the accommodating groove, and when the mounting seat is in the second position, the light incident surface of the camera is exposed to the body.
  • a camera installation module includes:
  • the camera mounting assembly includes a mounting seat and a camera arranged on the mounting seat;
  • the first gear is connected to the mounting base
  • the gear transmission structure includes a second gear and an internal gear.
  • the first gear is arranged between the second gear and the internal gear, and the first gear is connected to the second gear and the internal gear respectively. Gear meshing; the gear transmission structure can drive the mounting seat to rotate through the first gear.
  • a camera assembly including:
  • the second gear is connected to the output end of the driver.
  • a camera assembly including:
  • the internal gear is connected with the output end of the driver.
  • FIG. 1 is a schematic structural diagram when a mounting seat in a mobile terminal is in a first position according to an embodiment of the present invention
  • FIG. 2 is a schematic structural diagram of the mobile terminal when the mounting base is in the second position in the embodiment in FIG. 1;
  • FIG. 3 is a schematic structural diagram of the mobile terminal in FIG. 2 from another perspective;
  • FIG. 4 is a schematic diagram of the structure of the camera assembly connected to the middle frame in the embodiment of FIG. 1;
  • FIG. 5 is a schematic structural diagram of the middle frame of FIG. 4 from another perspective
  • Figure 6 is a front view of the camera assembly in Figure 4.
  • Figure 7 is a schematic diagram of another embodiment of a camera assembly
  • Fig. 8 is an exploded schematic diagram of the camera assembly in the embodiment of Fig. 6;
  • Figure 9 is a cross-sectional view of an embodiment along the section line II-II in Figure 6;
  • Fig. 10 is a schematic diagram of the assembly structure of the first gear, the second gear, the internal gear and the fixing seat in the embodiment of Fig. 8.
  • terminal equipment refers to, but is not limited to, devices that can receive and/or send communication signals connected via any one or several of the following connection methods:
  • connection via wired lines such as via public switched telephone networks (PSTN), digital subscriber line (Digital Subscriber Line, DSL), digital cable, direct cable connection;
  • PSTN public switched telephone networks
  • DSL Digital Subscriber Line
  • DSL Digital Subscriber Line
  • DSL Digital Subscriber Line
  • a terminal device set 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 Communications System
  • a mobile phone is taken as an example to describe the mobile terminal 10
  • the mobile terminal 10 includes a body 100, a camera mounting assembly 300, and a driving mechanism assembly 400 (refer to FIGS. 8, 9 ).
  • the body 100 includes a front surface 110, a rear surface 120, and a side surface 130 connecting the front surface 110 and the rear surface 120 opposite to each other.
  • the side surface 130 includes a first side surface 131 and a second side surface 132 disposed opposite to each other, and a third side surface 133 and a fourth side surface 134 disposed opposite to each other.
  • the opposite arrangement can be understood as follows: For example, in the thickness direction of the side surface 130 (the Y-axis direction in FIG.
  • the first side surface 131 is connected to one end of the third side surface 133 and the fourth side surface 134
  • the second side surface 132 is connected to the other end of the third side surface 133 and the fourth side surface 134.
  • the first side 131, the third side 133, the second side 132, and the fourth side 134 are sequentially enclosed to form a closed rectangular frame.
  • the length value of the third side surface 133 is greater than the length value of the first side surface 131, and the first side surface 131 is located on the top of the mobile terminal 10.
  • the connection between the first side surface 131 and the third side surface 133 and the fourth side surface 134 and the connection mode between the second side surface 132 and the third side surface 133 and the fourth side surface 134 may adopt a rounded transition. It can be understood that, in other embodiments, the first side surface 131, the third side surface 133, the fourth side surface 134, and the second side surface 132, the third side surface 133, and the fourth side surface 134 may also adopt a right angle transition.
  • the body 100 includes a display screen 200.
  • the display screen 200 includes a displayable area, and the displayable area includes a flat area.
  • the body 100 includes a cover glass covering the display screen 200, and a side of the cover glass facing away from the displayable area of the display screen 200 constitutes all or part of the front surface 110.
  • the rear surface 120 of the body 100 can be used to install the camera mounting assembly 300 and the driving mechanism assembly 400.
  • the main body 100 may include a middle frame 101. The two opposite end surfaces of the middle frame 101 are the front surface 110 and the rear surface 120 of the main body 100.
  • the outer wall surface of the frame 101 is the side 130 of the main body 100, and the display screen 200 is fixed on the front surface 110 of the middle frame 101.
  • the rear surface 120 of the middle frame 101 can carry other components of the mobile terminal 10, such as the camera mounting assembly 300 and the driving mechanism assembly 400.
  • the rear surface 120 of the middle frame 101 may also carry control components (including a motherboard and circuits), power components, and the like.
  • the body 100 may further include a back cover 102 that is combined with the back surface 120 of the middle frame 101 to seal the above-mentioned various components installed on the back surface 120 of the middle frame 101.
  • the display screen 200 is used to display information.
  • the display screen 200 may be a liquid crystal display (Liquid Crystal Display, LCD) or an organic light-emitting diode (Organic Light-Emitting Diode, OLED) display.
  • the display screen 200 is a touch display screen, and the user can perform touch operations on the information displayed on the display screen 200 by means of touch operations.
  • the display screen 200 may also be a non-touch display screen, which is only used for information display.
  • the camera mounting assembly 300 includes a mounting base 310 and a camera 320 disposed on the mounting base 310.
  • the camera 320 can provide video calls for the mobile terminal 10. Photography and other functions.
  • the mounting base 310 is provided with a receiving groove 310a for accommodating the camera 320
  • the bottom of the receiving groove 310a is provided with a light incident hole 311a, and the light incident surface of the camera 320 Towards the light incident hole 311a.
  • the camera mounting assembly 300 includes a dustproof glass 330, which is connected to the mounting base 310 and covers the light incident hole 311a to block dust.
  • the camera mounting assembly 300 includes a decorative member 340, which is connected to the mounting base 310 and covers the receiving groove 310a, thereby achieving the purpose of sealing the notch of the receiving groove 310a.
  • the camera mounting assembly 300 may also include a light sensor, a flashlight and other devices provided on the mounting base 310 to assist the camera 320 in shooting, or other functional devices independent of the shooting function of the camera 320 (for example: iris recognition Module, face recognition module, proximity sensor, ambient light sensor, microphone, receiver, fingerprint module, etc.).
  • the material of the mounting seat 310 can be, but is not limited to, metal, plastic or stainless steel.
  • the mobile terminal 10 is provided with a receiving slot 1311.
  • the receiving slot 1311 is opened in the main body 100.
  • the receiving groove 1311 is opened on the first side surface 131 of the main body 100.
  • the receiving groove 1311 may be opened in the middle of the first side surface 131, that is, the receiving groove 1311 is located between the front surface 110 and the rear surface 120.
  • the receiving groove 1311 can also be opened on the edge of the first side surface 131 close to the rear surface 120.
  • the mounting seat 310 can carry the camera 320 from the first position (shown in Figure 1) to the second position (shown in Figures 2 and 3).
  • the mounting seat 310 When the mounting seat 310 is in the first position, the mounting seat 310 and the camera 320 are housed in In the receiving groove 1311, when the mounting seat 310 is in the second position, the light incident surface of the camera 320 is outside the receiving groove 1311, that is, the light incident surface of the camera 320 is exposed outside the body 100. In this way, when the camera 320 needs to be used for shooting, the mounting base 310 carries the camera 320 and moves out of the receiving slot 1311 to perform shooting. When the shooting is completed, the mounting base 310 carries the camera 320 to move into the receiving slot 1311, thereby eliminating the camera. 320 occupies the space on the side of the display screen 200, increases the coverage of the display screen 200 on the front surface 110, and increases the screen-to-body ratio of the display screen 200.
  • the mounting base 310 is disposed in the receiving groove 1311 and can rotate relative to the main body 100, and the mounting base 310 can carry the camera 320 to rotate outside the receiving groove 1311, thereby realizing the shooting function of the camera 320.
  • the rotation axis of the mounting base 310 is perpendicular to the reference plane, which is the plane where the planar area of the display screen 200 is located, and can also be understood as a plane perpendicular to the thickness direction of the mobile terminal 10 (that is, perpendicular to the figure). 1 shows the plane of the Y axis, such as the XZ plane).
  • the rotation axis of the mounting base 310 passes through the center of the reference line
  • the reference line is a line connecting the maximum width of the orthographic projection of the mounting base 310 on the reference plane
  • the reference plane is a plane perpendicular to the optical axis of the camera 320 , That is, the rotation axis of the mounting base 310 is parallel to the optical axis of the camera 320.
  • each embodiment is described below with reference planes.
  • the rotation axis of the mounting base 310 passes through the center of the circumcircle of the orthographic projection of the mounting base 310 on the reference plane.
  • the rotation axis of the mounting base 310 passes through the center of the reference line
  • the reference line is a line connecting the maximum width of the orthographic projection of the mounting base 310 on the reference plane.
  • the line with the largest width is the diameter of the circumscribed circle of the major arc.
  • the orthographic projection of the mounting seat 310 on the reference plane may also include a rounded rectangle, and the line connecting the maximum width of the rounded rectangle is the reference line.
  • the image collection surface (that is, the light incident surface) of the aforementioned camera 320 faces the front surface 110, that is, faces the side where the display screen 200 is located, and is used as a front camera.
  • the light incident surface of the camera 320 may also face away from the side where the display screen 200 is located, and be used as a rear camera.
  • the mounting base 310 can also be provided with two cameras 320 at the same time.
  • the image acquisition surfaces of the two cameras 320 are respectively facing the side of the display screen 200 and the side facing away from the side of the display screen 200, that is, as a front camera and a rear camera. At this time, when shooting is not required, both the front camera and the rear camera of the mobile terminal 10 can be hidden in the receiving slot 1311.
  • the mounting seat 310 When the front camera or the rear camera needs to be used for shooting, the mounting seat 310 is rotated to In the second position, the light-incident surfaces of the two cameras 320 are respectively exposed on the side where the display screen 200 is located and exposed on the side facing away from the display screen 200.
  • the body includes a first UHF communication chip (not shown), and the camera mounting assembly 300 includes a second UHF communication chip 350, and a second UHF communication chip 350 Set in the mounting base 310, the camera 320 can communicate with the second UHF communication chip 350.
  • the second UHF communication chip 350 is paired with the first UHF communication chip to The first UHF communication chip can be communicatively connected with the second UHF communication chip 330.
  • the first UHF communication chip and the second UHF communication chip 350 are both UHF communication chips.
  • the extremely high frequency communication chip is an IC (Integrated Circuit) chip with an EHF (extremely high frequency) antenna encapsulated inside. Only when the two extremely high frequency communication chips are close enough can they be paired for wireless Communication.
  • An example of an extremely high frequency communication chip is an EHF common link chip.
  • the terms "common link chip”, “common link chip package” and “EHF communication link chip package” are used to refer to the EHF antenna embedded in the IC package. Examples of the UHF communication chip can refer to the information described in the US Patent Application Publication Nos. 2012/0263244 and 2012/0307932, and also refer to the information disclosed in the Chinese patent documents with publication numbers CN103563166A and CN104145380A.
  • UHF communication chips can be found in the Chinese authorized patent document with the authorized announcement number CN105264785B.
  • the UHF communication chip is packaged with the UHF antenna, and the image collector of the camera equipped with the UHF communication chip (the second UHF communication chip 350) can be based on the high carrier frequency (for example, 60GHz) and the configuration
  • the main board of the mobile terminal 10 of the high-frequency communication chip (the first extremely high-frequency communication chip) realizes high-speed wireless transmission of data (for example, a transmission speed of up to 6GB/s).
  • short-range wireless communication based on high carrier frequency has the advantages of low power consumption, small size, fast transmission rate, and non-contact transmission. It can also realize the function of plug-and-play module and greatly improve signal integrity. , Support more flexible system implementation, reduce standby power consumption, increase bandwidth range and data transmission security, compatible with high-speed video signal support and other features.
  • the high carrier frequency may be a carrier frequency capable of realizing high-speed wireless data transmission.
  • the high carrier frequency may be a specific carrier frequency or a carrier frequency band, for example, 30 GHz-300 GHz, which is not specifically limited in the embodiment of the present invention.
  • the high carrier frequency is 60 GHz.
  • the driving mechanism assembly 400 is disposed in the main body 100 and is used to drive the mounting base 310 to rotate relative to the main body 100 in the receiving slot 1311.
  • the driving mechanism assembly 400 includes a driver 410 and a gear transmission structure 420.
  • the driver 410 can drive the mounting base 310 to rotate from the first position to the second position through the gear transmission structure 420.
  • the mounting base 310 is in the first position
  • the mounting base 310 and the camera 320 are contained in the receiving groove 1311
  • the mounting base 310 is in the second position, the light incident surface of the camera 320 is exposed to the body 100.
  • the mounting base 310 when the mounting base 310 carries the camera 320 and rotates to the second position, the mounting base 310 can be automatically retracted into the container 1311 under the action of the driving mechanism assembly 400, and the mounting base 310 can also be manually retracted.
  • the camera mounting assembly 300 and the gear transmission structure 420 can form a camera mounting module, and the camera mounting module can be assembled and produced separately and used for installation on the mobile terminal 10.
  • the camera mounting module and the driver 410 can form a camera assembly, and the camera assembly can also be assembled and produced separately and used for installation on the mobile terminal 10.
  • the driver 410 includes a motor.
  • the motor includes a base 411 and an output shaft 412 connected to the base 411.
  • the gear transmission structure 420 includes a first gear 421 and a second gear. 422, and internal gear 423.
  • the first gear 421 is arranged between the second gear 422 and the internal gear 423; when the number of the first gear 421 is multiple (for example, when the number of the first gear 421 is at least three), the multiple first gears 421 They are arranged at equal intervals along the circumferential direction of the second gear 422; the first gear 421 meshes with the second gear 422 and the internal gear 423, respectively.
  • the output end of the driver 410 (that is, the output shaft 412 of the motor) is connected to the second gear 422, and the driver 410 can drive the mounting base 310 by the first gear 421, the second gear 422, and the internal gear 423. Rotate one position to the second position. It can be understood that, in other embodiments, the output end of the driver 410 may also be connected to the internal gear 423 to drive the mounting base 310 to rotate from the first position to the second position.
  • the driver 410 In order to realize the function that the driver 410 can drive the mounting base 310 to rotate relative to the main body 100 in the receiving slot 1311 through the gear transmission structure 420, the driver 410 is fixedly connected to the main body 100, and the first gear 421 is fixedly connected to the mounting base 310.
  • the driver 410 may be fixed to the main body 100 by means of, for example, screw connection, riveting, welding or bonding.
  • the driver 410 is fixed to the middle frame, back cover, or front case of the mobile terminal 10. In one embodiment, as shown in FIG.
  • the driving mechanism assembly 400 includes a fixing base 430 fixedly connected to the main body 100, the fixing base 430 is provided with a first mounting groove 431, and the driver 410 is disposed in the first mounting groove 431 and Connect with the groove wall of the first installation groove 431.
  • the output shaft 412 of the driver 410 passes through the bottom of the first mounting groove 431 and is connected to the second gear 422.
  • the output shaft 412 of the driver 410 may also pass through the bottom of the first mounting groove 431 and be connected with the internal gear 423.
  • the mounting seat 310 is provided with a second mounting groove 310b, and the fixing seat 430 is fully accommodated in the second mounting groove 310b in the extending direction of the rotation axis of the mounting seat 310.
  • the fixing base 430 may also be partially accommodated in the second mounting groove 310b in the extending direction of the rotation axis of the mounting base 310.
  • the first gear 421 and the mounting base 310 may be integrally formed.
  • the gear teeth of the first gear 421 can be regarded as being directly formed on the mounting base 310.
  • the first gear 421 can be regarded as a component independent of the gear transmission structure 420.
  • the first gear 421 and the mounting base 310 may also be detachably connected.
  • the gear transmission structure 420 includes a gear mounting frame 424, and the gear mounting frame 424 is connected to the first gear 421.
  • One of the first gear 421 and the gear mounting frame 424 is provided with a positioning hole 4211, the other is provided with a positioning shaft 4241, and the positioning shaft 4241 passes through the positioning hole 4211.
  • the positioning hole 4211 is opened in the first gear 421, and the positioning shaft 4241 is provided in the gear mounting frame 424.
  • the gear mounting frame 424 can be integrally formed with the mounting base 310. At this time, the gear mounting frame 424 can be regarded as a component independent of the gear transmission structure 420.
  • the gear mounting frame 424 can also be detachably connected to the mounting base 310.
  • the mounting base 310 is provided with a first mounting hole 310c
  • the gear mounting frame 424 is provided with a protrusion 4242 penetrating the first mounting hole 310c
  • the protrusion 4242 is provided with a second mounting hole 4243.
  • the camera mounting mold The set includes a first fastener 500. The first fastener 500 passes through the second mounting hole 4243 to fix the mounting base 310 and the gear mounting frame 424.
  • the gear mounting frame 424 can rotate with the rotation of the first gear 421 Therefore, the rotation of the gear mounting frame 424 can drive the mounting base 310 to rotate.
  • the second mounting hole 4243 can also be directly opened in the gear mounting frame 424, and the first fastener 500 penetrates through the first mounting hole 310c and the second mounting hole 4243, thereby mounting the mounting base 310 and the gear The frame 424 is fixed.
  • the fixing base 430 in order to fix the fixing base 430 to the main body 100, in one embodiment, as shown in FIGS. 5 and 9, the fixing base 430 is provided with a third mounting hole 432.
  • the main body 100 is provided with a fourth mounting hole (not shown).
  • the mobile terminal 10 includes a second fastener 700. The second fastener 700 penetrates through the third mounting hole 432 and the fourth mounting hole, thereby fixing the fixing seat 430 Fixed to the body 100.
  • the specific form of the driver 410 driving the mounting base 310 to rotate through the gear transmission structure 420 is as follows: Driven by the driver 410, the output shaft 412 of the driver 410 drives the second gear 422 to rotate, and the second gear 422 drives the internal gear 423 to mesh. The first gear 421 between and the second gear 422 rotates. Since the gear mounting frame 424 is connected to the first gear 421, and the gear mounting frame 424 is connected to the mounting base 310, the first gear 421 can drive the mounting base through the gear mounting frame 424 310 rotates to realize the rotation of the mounting base 310 from the first position to the second position.
  • the driver 410 may also be fixedly connected to the mounting base 310.
  • the first gear 421 and The body is fixedly connected.
  • the first gear 421 is integrally formed with the body 100.
  • the gear teeth of the first gear 421 can be regarded as being directly formed on the body 100.
  • the first gear 421 may also be detachably connected to the body 100.
  • the specific manner in which the first gear 421 is detachably connected to the main body 100 includes, but is not limited to, the specific manner in which the first gear 421 is detachably connected to the mounting base 310, which will not be repeated here.
  • the specific form of the above-mentioned driver 410 driving the mounting base 310 to rotate through the gear transmission structure 420 is as follows: the first gear 421 meshed between the internal gear 423 and the second gear 422 is fixed to the body 100, and the driver 410 is fixed to the mounting base 310 (That is, the seat body 411 of the driver 410 is fixed to the mounting seat 310), so that under the drive of the driver 410, the output shaft 412 of the driver 410 drives the seat body 411 of the driver 410 to rotate, and then the seat body 411 of the driver 410 drives the mounting seat 310 rotates to realize the rotation of the mounting base 310 from the first position to the second position.
  • the driver 410 can drive the mounting base 310 to rotate the camera 320 with respect to the main body 100 through the gear transmission structure 420, and rotate from the first position to the second position.
  • the camera 320 is accommodated in the accommodating slot 1311.
  • the light-incident surface of the camera 320 is exposed on the body 100, so that the camera 320 can be selected according to the needs of shooting. Hidden and exposed. Therefore, the camera 320 does not need to occupy the space on the side of the display screen 200 or the back cover, and the screen-to-body ratio of the mobile terminal 10 or the integrity of the back cover is effectively improved.
  • the gear transmission structure 420 can be used to divert the output power of the driver 410, reduce the starting inertia of the driver 410, and obtain greater output torque.
  • the driver 410 and the gear transmission structure 420 share an output shaft, and the gear transmission structure 420 has a compact structure. There is no need to occupy too much space in the main body 100, and more installation space can be reserved for other components, which is beneficial to the development of the light and thin mobile terminal 10.
  • the orthographic projection of the mounting base 310 on the reference plane includes an area with a shape of a superior arc bow. Further, in this embodiment, the center of the circumscribed circle of the orthographic projection of the receiving slot 1311 on the reference plane coincides with the center of the circumscribed circle of the orthographic projection of the mounting base 310 on the reference plane. In this way, the space of the receiving slot 1311 can be utilized to the greatest extent, and the structure is more compact. It can be understood that in other embodiments, as shown in FIG. 7, the orthographic projection of the mounting seat 310 on the reference plane includes a rectangular area. In some embodiments, the rectangle may be a rounded rectangle.
  • the mounting base 310 includes a first outer circumferential surface 312 and a second outer circumferential surface 313, the orthographic projection of the first outer circumferential surface 312 on the reference plane is a straight line, The orthographic projection of the second outer peripheral surface 313 on the reference plane is a circular arc.
  • the first outer peripheral surface 312 is flush with the first side surface 131.
  • the mounting seat 310 is in the second position, the first The outer peripheral surface 312 is misaligned with the first side surface 131.
  • the misalignment of the first outer peripheral surface 312 and the first side surface 131 includes the following two situations: the first outer peripheral surface 312 and the first side surface 131 intersect or are parallel.
  • the first outer peripheral surface 312 is parallel to the first side surface 110.
  • the mounting seat rotates 180 degrees, the orthographic projection of the mounting seat 310 on the reference plane when the mounting seat 310 is in the first position, and the orthographic projection of the mounting seat 310 on the reference plane when the mounting seat 310 is in the second position, with respect to the rotation axis of the mounting seat 310
  • the center of the orthographic projection on the datum plane is symmetrical.
  • the first outer peripheral surface 312 crosses the first side surface 110.
  • the rotation angle of the mounting base 310 is less than 180 degrees. It should be noted that the angle of rotation required for the mounting base 310 to move from the first position to the second position can be selected according to actual needs, and there is no limitation here, as long as the mounting base 310 can be rotated through a certain angle to make the camera 320 It is enough to be exposed to the body 100.
  • a trigger key may be provided on the side 130 of the main body 100.
  • the trigger key is connected to the main board in the mobile terminal 10.
  • the trigger key sends a trigger signal to the processor on the motherboard, and the processor controls the driving mechanism assembly 400 so that the mounting seat 310 rotates out of the receiving slot 1311 or under the control of the driving mechanism assembly 400 Return to the receiving slot 1311.
  • pressing the trigger key when the user needs to use the camera 320 to shoot, pressing the trigger key once can make the mounting base 310 rotate to a designated position (for example, the second position) outside the receiving slot 1311 under the control of the driving mechanism assembly 400, At this time, the driving mechanism assembly 400 stops working, and the user can use the camera 320 to perform operations such as video chat or Selfie.
  • pressing the trigger key once again can cause the mounting base 310 to retract into the receiving slot 1311 under the control of the driving mechanism assembly 400.
  • the number of trigger keys can be set to two.
  • One trigger key is used to rotate the mounting base 310 to a designated position (for example, the second position) outside the receiving slot 1311 under the control of the driving mechanism assembly 400, and the other trigger key
  • the mounting seat 310 is used to retract into the receiving slot 1311 under the control of the driving mechanism assembly 400.
  • the trigger key may also be a touch icon set on the display screen 200. Clicking the touch icon can send related touch signals to the processor on the motherboard.
  • the processor receives the touch signals and controls The signal executes the corresponding command, so that the driving mechanism assembly 400 drives the mounting base 310 to rotate out of the receiving slot 1311 or retract into the receiving slot 1311.
  • the trigger key may be a start shooting icon and an end shooting icon set in the display screen 200.
  • the start shooting icon sends a first trigger signal to the processor of the motherboard.
  • the processor receives the first trigger signal and controls the driving mechanism assembly 400 to drive the mounting base 310 to rotate to the designated position outside the receiving slot 1311 ( For example, the second position), so that the camera 320 can shoot under the shooting signal.
  • the shooting end icon sends a second trigger signal to the processor of the mainboard.
  • the processor receives the second trigger signal and controls the driving mechanism assembly 400 to drive the mounting seat 310 back into the receiving slot 1311.

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  • Engineering & Computer Science (AREA)
  • Signal Processing (AREA)
  • Telephone Set Structure (AREA)
  • Studio Devices (AREA)

Abstract

La présente invention concerne un terminal mobile (10), comprenant : un corps (100) comprenant un écran d'affichage (200), une fente de réception (1311) étant disposée dans le corps (100); un ensemble de montage de caméra (300) comprenant une base de montage (310) et une caméra (320) disposée sur la base de montage (310), la base de montage (310) étant apte à tourner dans la fente de réception (1311); un premier engrenage (421) relié à la base de montage (310); et un ensemble mécanisme d'entraînement (400) comprenant un second engrenage (422) et un engrenage interne (423), le premier engrenage (421) étant agencé entre le second engrenage (422) et l'engrenage interne (423); la base de montage (310) étant apte à tourner d'une première position à une seconde position sous l'entraînement du premier engrenage (421), du second engrenage (422), et de l'engrenage interne (423); lorsque la base de montage (310) est dans la première position, la caméra (320) étant logée dans la fente de réception (1311); lorsque la base de montage (310) est dans la seconde position, la surface d'incidence de lumière de la caméra (320) étant exposée hors du corps (100).
PCT/CN2020/077134 2019-03-29 2020-02-28 Module de montage de caméra, ensemble caméra, et terminal mobile WO2020199809A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201920413851.7U CN210807348U (zh) 2019-03-29 2019-03-29 摄像头安装模组、摄像头组合件及移动终端
CN201920413851.7 2019-03-29

Publications (1)

Publication Number Publication Date
WO2020199809A1 true WO2020199809A1 (fr) 2020-10-08

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PCT/CN2020/077134 WO2020199809A1 (fr) 2019-03-29 2020-02-28 Module de montage de caméra, ensemble caméra, et terminal mobile

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CN (1) CN210807348U (fr)
WO (1) WO2020199809A1 (fr)

Cited By (2)

* Cited by examiner, † Cited by third party
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