WO2020088137A1 - Terminal mobile pliable - Google Patents

Terminal mobile pliable Download PDF

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Publication number
WO2020088137A1
WO2020088137A1 PCT/CN2019/106647 CN2019106647W WO2020088137A1 WO 2020088137 A1 WO2020088137 A1 WO 2020088137A1 CN 2019106647 W CN2019106647 W CN 2019106647W WO 2020088137 A1 WO2020088137 A1 WO 2020088137A1
Authority
WO
WIPO (PCT)
Prior art keywords
mobile terminal
shell
assembly
flexible screen
case
Prior art date
Application number
PCT/CN2019/106647
Other languages
English (en)
Chinese (zh)
Inventor
龚关
李彪
Original Assignee
Oppo广东移动通信有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Oppo广东移动通信有限公司 filed Critical Oppo广东移动通信有限公司
Publication of WO2020088137A1 publication Critical patent/WO2020088137A1/fr

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Classifications

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

Definitions

  • the invention relates to the technical field of mobile terminals, in particular to a folding mobile terminal.
  • a general solution is to set a retractable camera on the foldable mobile terminal to perform the function of a front camera.
  • the retractable camera In the thickness direction of the folding mobile terminal, the retractable camera needs to occupy a larger space, which is not conducive to the thinning and thinning of the folding mobile terminal.
  • a folding mobile terminal including:
  • the housing includes a first shell component and a second shell component, the first shell component is provided with a protrusion, and the protrusion is provided with a mounting groove, the mounting groove penetrates the first shell component and is located in the first A shell component forms a gap;
  • a flexible screen connected to the first shell component and the second shell component
  • a folding mechanism is connected between the first shell assembly and the second shell assembly.
  • the first shell assembly can rotate relative to the second shell assembly through the folding mechanism to drive the flexible screen to fold and Unfolding; when the folding mobile terminal is folded, the flexible screen is exposed to the casing; and
  • a mounting seat is provided in the mounting groove and protrudes from the notch out of the side of the first shell component facing away from the flexible screen; the mounting seat is provided with a first camera module, the first The camera module has a first light incident surface; the mounting base can be moved to a first position and a second position within the mounting slot, wherein the first light incident surface is hidden in the first position when in the first position A shell component, the first light incident surface is exposed to the first shell component in the second position.
  • a folding mobile terminal including:
  • a case including a first case assembly and a second case assembly
  • the first case assembly includes a first front case and a first rear case covering the first front case
  • the second case assembly includes a second front case And a second rear shell covering the second front shell
  • the first front shell is provided with a protrusion
  • the protrusion is provided with a mounting groove, the mounting groove penetrates the first rear shell and is located in the first A gap is formed in the rear shell;
  • a flexible screen connected to the first front shell and the second front shell;
  • a folding mechanism is connected between the first shell assembly and the second shell assembly.
  • the first shell assembly can rotate relative to the second shell assembly through the folding mechanism to drive the flexible screen to fold and Unfolded; in the unfolded state, the first rear shell is located on the side of the first front shell facing away from the flexible screen, and the second rear shell is located on the side of the second front shell facing away from the flexible screen One side; in the folded state, the flexible screen is exposed to the casing; and
  • a mounting base is provided in the mounting groove and is exposed from the gap; the mounting base is provided with a first camera module, the first camera module has a first light incident surface; The installation slot moves to hide or expose the first light incident surface.
  • FIG. 1 is a perspective view of a folding mobile terminal in an embodiment when unfolded
  • FIG. 2 is a perspective view of the folding mobile terminal shown in FIG. 1 when folded;
  • FIG. 3 is an exploded view of the folding mobile terminal shown in FIG. 1;
  • FIG. 4 is a top view of the folding mobile terminal shown in FIG. 1;
  • FIG. 5 is a front view when the mounting base of the folding mobile terminal shown in FIG. 1 is in the second position;
  • FIG. 6 is a rear view of the folding mobile terminal shown in FIG. 5 when the mounting base is in the second position;
  • FIG. 7 is a front view of the foldable mobile terminal shown in FIG. 1 when the mounting base is in the first position;
  • FIG. 8 is a rear view of the folding mobile terminal shown in FIG. 7 when the mounting base is in the first position;
  • FIG. 9 is a perspective view of a folding mechanism in the folding mobile terminal shown in FIG. 3;
  • FIG. 10 is an exploded view of the folding mechanism of the folding mobile terminal shown in FIG. 9;
  • FIG. 11 is a cross-sectional view of the folding mobile terminal shown in FIG. 6 along A-A;
  • FIG. 12 is an enlarged schematic view at C of the folding mobile terminal shown in FIG. 11;
  • FIG. 13 is a cross-sectional view of the folding mobile terminal shown in FIG. 8 along B-B;
  • FIG. 14 is an enlarged schematic view of the folding mobile terminal D shown in FIG. 13;
  • 15 is a front view of the mounting base of the folding mobile terminal in the second position in another embodiment
  • FIG. 16 is a rear view of the mounting base of the folding mobile terminal shown in FIG. 15 in a second position;
  • FIG. 17 is a partial cross-sectional view of an embodiment of the folding mobile terminal shown in FIG. 1;
  • FIG. 18 is an enlarged schematic view at point D in another embodiment of the folding mobile terminal shown in FIG. 13.
  • terminal device refers to a device that includes but is not limited to a device capable of receiving and / or transmitting communication signals connected via any one or several of the following connection methods:
  • connection via wired line such as via Public Switched Telephone Networks (PSTN), Digital Subscriber Line (DSL), digital cable, direct cable connection;
  • PSTN Public Switched Telephone Networks
  • DSL Digital Subscriber Line
  • DSL Digital Subscriber Line
  • wireless interface such as cellular network, wireless local area network (Wireless Local Area Network, WLAN), digital TV network such as DVB-H network, satellite network, AM-FM broadcast transmitter.
  • wireless local area network Wireless Local Area Network, WLAN
  • digital TV network such as DVB-H network
  • satellite network AM-FM broadcast transmitter.
  • 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 communication system
  • PDA Personal Digital Assistant
  • GPS Global Positioning System
  • the folding mobile terminal 10 is a smartphone.
  • the foldable mobile terminal 10 includes a housing 100, a flexible screen 200, a folding mechanism 300, and a mount 400.
  • the case 100 includes a first case assembly 110 and a second case assembly 120.
  • the first case assembly 110 and the second case assembly 120 are provided with an installation space for installing the battery of the folding mobile terminal 10 , Motherboards, processors and other electronic components.
  • the first case assembly 110 and the second case assembly 120 can also support the flexible screen 200, the folding mechanism 300 and the mounting base 400, and other electronic components of the folding mobile terminal 10.
  • the first shell component 110 is provided with a protrusion 130, and the protrusion 130 is located in the first housing 100 component, and the protrusion 130 is provided with a mounting groove 131 which penetrates the first shell component 110 and forms a gap in the first shell component 110 133.
  • the flexible screen 200 is connected to the first shell component 110 and the second shell component 120.
  • the flexible screen 200 has a bendable display feature, which can be used to display information and provide an interactive interface for the user.
  • the folding mechanism 300 is connected between the first shell assembly 110 and the second shell assembly 120.
  • the first shell assembly 110 can rotate relative to the second shell assembly 120 through the folding mechanism 300 to drive the flexible screen 200 to fold and unfold. Referring to FIG. 2, when the foldable mobile terminal 10 is folded, the flexible screen 200 is exposed to the casing 100.
  • the foldable mobile terminal 10 is in an expanded state, and the foldable mobile terminal 10 has the effect of displaying on a large screen.
  • the foldable mobile terminal 10 is in a folded state, the flexible screen 200 is folded, and the flexible screen 200 is exposed to the casing 100, and the user can also use the foldable mobile terminal 10 normally in the folded state. It can be understood that, as another embodiment, when the folding mobile terminal 10 is folded, the flexible screen 200 may be hidden in the housing 100 so that the flexible screen 200 is not exposed.
  • the mounting base 400 is disposed in the mounting groove 131 and protrudes from the notch 133 on the side of the first shell assembly 110 facing away from the flexible screen 200. 5 and 6 at the same time, the mount 400 is provided with a first camera module 410, the first camera module 410 has a first light incident surface 411, ambient light can pass through the first light incident surface 411 and enter the first On the photosensitive element of the camera module 410.
  • the mounting base 400 can move to the first position and the second position within the mounting groove 131. 5 and 6, in the second position, the first light incident surface 411 is exposed from the first housing assembly 110.
  • the foldable mobile terminal 10 is in the unfolded state, and the first light incident surface 411 is exposed on the side where the flexible screen 200 is located in the second position, and the user can pass the first camera
  • the module 410 performs operations such as self-timer and video call. It can be understood that when the foldable mobile terminal 10 is folded, the first light incident surface 411 may be set to be exposed to the flexible screen 200 on the side where the first case assembly 110 is in the second position, or may be set to be exposed to the second case On the flexible screen 200 on the side where the component 120 is located, the user can also perform self-timer, video call and other operations through the first camera module 410. Referring to FIGS. 7 and 8, the first light incident surface 411 is hidden in the first housing assembly 110 in the first position. In other embodiments, the folding mobile terminal 10 may be a tablet or the like.
  • the first light incident surface 411 is hidden in the first housing 100 assembly in the first position, and the first light incident surface 411 is exposed on the side where the flexible screen 200 is located in the second position
  • the user can perform the function of a front camera through the first camera module 410.
  • the first camera module 410 does not need to occupy the area of the side where the flexible screen 200 is located, which is beneficial to increase the screen ratio of the folding mobile terminal 10.
  • its screen-to-body ratio may be more than 85%.
  • the mounting base 400 protrudes the first housing assembly 110 from the notch 133, other parts of the foldable mobile terminal 10 can be made thinner, which is beneficial to the thinning and thinning of the foldable mobile terminal 10.
  • the first shell assembly 110 is provided with the protrusion 130
  • the mounting groove 131 is provided in the protrusion 130
  • the mounting base 400 is movably provided in the installation groove 131
  • the above structure can enhance the structural strength of the protrusion 130.
  • the mounting groove 131 of the above structure is conducive to the stable movement of the mounting base 400, and can play a better role in protecting the mounting base 400 and the first camera module 410 inside.
  • the first case assembly 110 includes a first front case 111 and a first rear case 113
  • the second case assembly 120 includes a second front case 121 and a second rear case 123
  • the first front case 111 is located in the first rear case
  • the second front case 121 is located between the second rear case 123 and the flexible screen 200
  • the flexible screen 200 is connected to the first front case 111 and the second front case 121.
  • the flexible screen 200 may be connected to the first front case 111 and the second front case 121 by means of dispensing, so as to achieve a reliable connection between the flexible screen 200 and the housing 100.
  • the folding mechanism 300 is connected to the first front case 111 and the second front case 121.
  • the protrusion 130 is connected to the first front case 111, and the mounting groove 131 penetrates the first rear case 113.
  • the protrusion 130 may be connected to the first rear case 113, or the protrusion 130 may be connected to the first front case 111 and the first rear case 113.
  • An installation space for installing electronic components such as a battery and a main board is formed between the first front case 111 and the first rear case 113, and between the second front case 121 and the second rear case 123, respectively.
  • the mounting base 400 protrudes from the notch 133 toward the side of the first shell assembly 110 facing away from the flexible screen 200 as follows:
  • the first rear shell 113 includes the adjacent rear surface 1131 and side peripheral surface 1133, the side peripheral surface 1133 is located on the outer periphery of the rear surface 1131.
  • the rear surface 1131 is located on the side facing away from the flexible screen 200.
  • the mounting groove 131 penetrates the rear surface 1131 to form two oppositely disposed cross-sections.
  • the two cross-sections intersect the rear surface 1131 to form two intersecting lines 1135, which are perpendicular to the thickness direction of the folding mobile terminal 10 and make the geometric plane It is tangent to two intersecting lines, and using this tangent plane as a reference plane, a part of the structure of the mounting base 400 is located on the side of the reference plane facing away from the first front case 111.
  • the folding mechanism 300 includes a folding assembly 310 and a sliding assembly 320
  • the sliding assembly 320 includes a first slider 321, a second slider 323, a first bracket 325 and a second bracket 327
  • the folding assembly 310 includes a sleeve 311, a first rotating shaft 312, a second rotating shaft 313, a first adapter block 314, a second adapter block 315, a first link 316 and a second link 317.
  • the first rotating shaft 312 is connected to the first slider 321, the second rotating shaft 313 is connected to the second slider 323, and the sleeve 311 is sleeved on the first rotating shaft 312 and the second rotating shaft 313.
  • the first link 316 is connected to the first adapter block 314 and the first front case 111
  • the second link 317 is connected to the second adapter block 315 and the second front case 121
  • the first adapter block 314 is sleeved on the first rotating shaft 312
  • the second adapter block 315 is sleeved on the second rotating shaft 313.
  • the first bracket 325 is connected to the first slider 321 and covers the first link 316
  • the second bracket 327 is connected to the second slider 323 and covers the second link 317.
  • the first slider 321 is at least partially accommodated between the first front case 111 and the first rear case 113
  • the second slider 323 is at least partially accommodated between the second front case 121 and the second rear case 123.
  • a coordinate system is established with the longitudinal direction of the foldable mobile terminal 10 as the x axis, the width direction as the y axis, and the thickness direction as the z axis.
  • the first housing assembly 110 drives the first adapter block 314 to rotate relative to the first rotation shaft 312 through the first link 316 and the first slider 321, and the first adapter block 314 is relatively
  • a rotating shaft 312 slides to shorten the projection length of the first link 316 in the longitudinal direction (x-axis direction) of the folding mobile terminal 10, and the first slider 321 slides on the first rear case 113 and slides into the first case assembly 110;
  • the second shell assembly 120 drives the second adapter block 315 to rotate relative to the second rotating shaft 313 through the second link 317 and the second slider 323, and the second adapter block 315 slides relative to the second rotating shaft 313 to make the second
  • the projected length of the connecting rod 317 in the longitudinal direction of the folding mobile terminal 10 is shortened, and the second slider 323 slides on
  • the first housing assembly 110 drives the first adapter block 314 to rotate relative to the first rotation shaft 312 through the first link 316 and the first slider 321, and the first adapter block 314 rotates relative to the first A rotating shaft 312 slides to increase the projection length of the first link 316 in the longitudinal direction (x-axis direction) of the foldable mobile terminal 10, and the first slider 321 slides on the first rear case 113 and from the first case assembly 110 Slide out;
  • the second shell assembly 120 drives the second adapter block 315 to rotate relative to the second rotation shaft 313 through the second link 317 and the second slider 323, and the second adapter block 315 slides relative to the second rotation shaft 313 to make the first
  • the projected length of the two links 317 in the longitudinal direction of the folding mobile terminal 10 increases, and the second slider 323 slides on the second rear case 123 and
  • first rear case 113 and the second rear case 123 increases, and the folding mobile terminal 10 can be smoothly deployed.
  • first case assembly 110 and the second case assembly 120 are axially symmetrically distributed on both sides of the central axis of the folding mechanism 300 in appearance, so that the folding mobile terminal 10 can be unfolded or folded in half to The aesthetics and practicality of the folding mobile terminal 10 are enhanced.
  • the protrusion 130 includes two groove walls 135 disposed opposite to each other, and the two groove walls 135 are respectively connected to the first front case 111 and are located on the first front case 111 facing away from the flexible screen 200 Side.
  • the two groove walls 135 extend from the notch 133 to the inside of the folding mobile terminal 10 to form a mounting groove 131.
  • the two groove walls 135 extend along the length direction (x-axis direction) of the folding mobile terminal 10.
  • the first front case 111 may include a middle plate 112 and other structural parts connected to the middle plate 112, the first rear case 113, the folding mechanism 300 and the flexible screen 200 are respectively connected to the middle plate 112, and the groove wall 135 is integrated with the middle plate 112 forming.
  • the second rear shell 123 defines an accommodating groove 125.
  • a portion of the mounting base 400 protruding out of the first housing assembly 110 is accommodated in the accommodating groove 125.
  • the arrangement of the accommodating groove 125 can make the foldable mobile terminal 10 thinner when folded, thereby facilitating the portability of the foldable mobile terminal 10 and facilitating the user to hold and use it.
  • the folding mobile terminal 10 may include an image acquisition module 500.
  • the image acquisition module 500 includes a base 510, a decoration 520 and a functional device 530.
  • the decoration 520 is connected to the base 510 and the functional device 530 respectively, and the decoration 520 passes through the notch 133.
  • the base 510 is provided with a second camera module 540.
  • the second camera module 540 has a second light incident surface 541.
  • the second light incident surface 541 is located on the decoration member 520 and exposed from the side facing away from the flexible screen 200, ambient light It can pass through the second light incident surface 541 and be incident on the photosensitive element of the second camera module 540.
  • the second camera module 540 can perform the function of a rear camera.
  • a user can perform operations such as video recording and distant shooting through the second camera module 540.
  • the second camera module 540 may include two or more cameras.
  • the second camera module 540 may include one, two, or more of a wide-angle lens, a telephoto lens, and a black-and-white lens.
  • the decoration member 520 may include a metal ring and a protective glass embedded in the metal ring.
  • the protective glass can be made of tempered glass or sapphire glass.
  • the decoration piece 520 can cover the end of the mounting base 400. It can be understood that the blocked end of the mounting base 400 is located between the top of the first housing assembly 110 and the second camera module 540.
  • the end of the mounting base 400 can always be blocked by the decoration member 520, which can prevent the internal structure of the folding mobile terminal 10 from being exposed after the end of the mounting base 400 moves. It is beneficial to waterproof and dustproof of the foldable mobile terminal 10.
  • the functional device 530 may be a flash lamp or a fingerprint recognition module.
  • the thickness of the flash lamp or the fingerprint recognition module is relatively thin.
  • the seat body 510 protrudes from the decoration member 520 and forms a first recessed region 140 on the side facing away from the second light incident surface 541.
  • a part of the structure of the mounting base 400 is accommodated in the first recessed area 140 in the first position.
  • the decoration member 520 may be stacked on the mounting base 400, which is beneficial to the reduction of the overall thickness of the foldable mobile terminal 10, and thus to the foldable movement
  • the terminal 10 is thinner and lighter.
  • the first camera module 410 may include a flexible circuit board (not shown), one end of the flexible circuit board is connected to the circuit board inside the first camera module 410, and the other end is connected to the motherboard in the folding mobile terminal 10 to connect The data of the first camera module 410 is transmitted to the processor, and the processor performs further processing.
  • the mounting base 400 moves between the first position and the second position, part of the structure of the flexible circuit board can be accommodated in the first recessed area 140.
  • the flexible circuit board is bent and folded and part of the structure of the flexible circuit board is accommodated in the first recessed area 140.
  • the flexible circuit is stretched.
  • the first recessed region 140 may provide a receiving space for the flexible circuit board, thereby facilitating a compact arrangement of electronic components inside the folding mobile terminal 10.
  • the mounting base 400 may include a front end face 421 and a rear end face 423 disposed opposite to each other, and a top end face 425 and a bottom end face 427 connected between the front end face 421 and the rear end face 423, and the top end face 425 and the bottom end face 427 Back setting.
  • the rear surface 423 includes a convex surface 422 and a concave surface 424 connected to the convex surface 422, the convex surface 422 protrudes from the notch 133 out of the first shell assembly 110, the concave surface 424 defines a second recessed area 150, when the mounting base 400 is in When moving between the position and the second position, part of the structure of the decoration member 520 is accommodated in the second recessed area 150.
  • the second recessed area 150 can accommodate a part of the structure of the decorative member 520.
  • the decorative member 520 is stacked on the mounting base 400, thereby facilitating the folding movement
  • the thinning of the overall thickness of the terminal 10 is beneficial to the thinning and thinning of the folding mobile terminal 10.
  • the concave surface 424 is a curved surface.
  • the concave surface 424 includes multiple planes, and the multiple planes are spliced to form the concave surface 424. The above structure facilitates the processing of the concave surface 424.
  • the cross section of the portion where the convex surface 422 of the mounting base 400 is located is elliptical.
  • the cross section of the portion where the convex surface 422 of the mounting base 400 is located is a racetrack shape.
  • the racetrack shape includes two parallel and equal line segments, and semicircular arcs respectively connected to both ends of the line segment.
  • the oval or racetrack-shaped structure is beneficial to beautify the appearance of the mounting base 400.
  • the intersection of the convex surface 422 and the concave surface 424 is an arc, and the shape of the arc is similar to the contour shape of the end of the decorative member 520 near the mounting base 400.
  • the center angle and radius of the intersection of the convex surface 422 and the concave surface 424 correspond to the center angle and radius of the top of the foldable mobile terminal 10 of the decoration member 520, when the mounting base 400 is located at the first position At this time, the intersection of the convex surface 422 and the concave surface 424 is engaged with the contour of the end of the decoration member 520 near the mounting base 400, so that the appearance integrity of the folding mobile terminal 10 can be improved.
  • the mounting base 400 includes a 3D glass cover plate.
  • the 3D glass cover plate is disposed on the first camera module 410, and the first light incident surface 411 is exposed from the 3D glass cover plate.
  • ambient light can pass through the 3D glass cover plate and enter the first light incident surface 411.
  • the image acquisition module 500 protrudes from the side of the first shell assembly 110 facing away from the flexible screen 200.
  • the first camera module 410 may include two or more cameras. When the folding mobile terminal 10 is unfolded, the first light incident surface 411 is located on the side where the flexible screen 200 is located. Alternatively, when the folding mobile terminal 10 is unfolded, the first light incident surface 411 is located on the side facing away from the flexible screen 200. In an embodiment where the first camera module 410 includes two or more cameras, the first camera module 410 may include one of a conventional lens, a wide-angle lens, a telephoto lens, an ultra-wide-angle lens, a black-and-white lens, and a depth lens Or more.
  • the folding mobile terminal 10 When the folding mobile terminal 10 is in the folded state, the following functions can be realized through software control: when the user needs to take a selfie or video call, the camera with a lower pixel can be enabled to take a selfie or video call; when the user needs to take a distant shot or video recording At the time, you can enable the camera with higher pixels to operate, thereby improving the experience of taking pictures or photography.
  • the first camera module 410 may include one or more of a flash light and a fill light to enhance the shooting quality of the first camera module 410.
  • the folding mobile terminal 10 may include a driving mechanism 600 including a motor 610, a first gear 620, a second gear 630, a screw 640, a connecting rod 650, and a rolling member 660 ,
  • the motor 610 is connected to the first housing assembly 110, the first gear 620 is connected to the motor 610, the second gear 630 is meshed with the first gear 620, the screw 640 is connected to the second gear 630, the screw 640 is provided with a spiral groove, rolling
  • the member 660 is rotatably connected to the connecting rod 650, and the rolling member 660 is rollably disposed in the spiral groove, the connecting rod 650 is fixedly connected to the mounting base 400, the motor 610 can drive the first gear 620 to rotate, and the first gear 620 can pass the second
  • the gear 630 drives the screw 640 to rotate, and the screw 640 can drive the connecting rod 650 to move so that the mounting base 400 switches between the first position and the second position.
  • the setting of the driving mechanism 600 is conducive to the electrification of the movement of the mounting base 400 to improve the convenience of users.
  • a physical button may be provided on the foldable mobile terminal 10, and the power on and off of the motor 610 may be controlled by the physical button, thereby realizing the electrification of the movement of the mounting base 400.
  • a virtual key can be provided on the folding mobile terminal 10, and the power of the motor 610 can be controlled by the virtual key, so as to realize the electrification of the movement of the mounting base 400, which will not be repeated here.
  • the foldable mobile terminal 10 may include an electromagnetic eject mechanism 700 including a first magnet assembly 710 and a second magnet assembly 720, the first magnet assembly 710 and the mount 400 Connection, the second magnet assembly 720 is connected to the first shell assembly 110, and when at least one of the first magnet assembly 710 and the second magnet assembly 720 is energized, the electromagnetic eject mechanism 700 can drive the mounting base 400 in the first position and the second position Switch between.
  • the first magnet assembly 710 is a permanent magnet
  • the first magnet assembly 710 has an N pole and an S pole.
  • the second magnet assembly 720 is an electromagnet, and the second magnet assembly 720 generates magnetism when energized.
  • the N pole of the first magnet assembly 710 faces the second magnet assembly 720, and the S pole of the first magnet assembly 710 faces away from the second magnet assembly 720.
  • the second magnet assembly 720 When the mounting base 400 is in the first position, the second magnet assembly 720 generates magnetism when energized.
  • the N pole of the second magnet assembly 720 can be oriented toward the first magnet assembly 710.
  • a mutually repelling force can be generated between the magnet assembly 710 and the second magnet assembly 720, so that the mounting base 400 can be pushed out of the mounting slot 131.
  • the first magnet assembly 710 can also be an electromagnet.
  • the first magnet assembly 710 generates magnetism when energized
  • the second magnet assembly 720 generates magnetism when energized.
  • the first magnet assembly 710 and the second magnet assembly 720 can be controlled
  • the direction of the medium current makes the magnetic poles of the first magnet assembly 710 and the second magnet assembly 720 facing each other the same.
  • the end of the first magnet assembly 710 facing the second magnet assembly 720 is the N pole
  • the end of the second magnet assembly 720 facing the first magnet assembly 710 is the N pole, that is, the first magnet assembly 710 and the second magnet
  • a repulsive force is generated between the components 720, pushing the mounting base 400 out of the mounting groove 131.
  • the end of the first magnet assembly 710 facing the second magnet assembly 720 is the S pole
  • the end of the second magnet assembly 720 facing the first magnet assembly 710 is the S pole.
  • a repulsive force is generated between the magnet assemblies 720, pushing the mounting base 400 out of the mounting groove 131.
  • the second magnet assembly 720 may also be a permanent magnet, and the first magnet assembly 710 is energized to generate magnetism, so that the first magnet assembly 710 and the second magnet assembly Mutually repulsive forces are generated between 720 to push the mounting base 400 out of the mounting groove 131. It can be understood that the first magnet assembly 710 or the second magnet assembly 720 can also be controlled to generate an attractive force between the first magnet assembly 710 and the second magnet assembly 720 to move the mounting base 400 into the mounting slot 131 , To further improve the convenience of use, no more details here.

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

Abstract

L'invention concerne un terminal mobile pliable (10), comprenant un boîtier (100), un écran flexible (200), un mécanisme de pliage (300) et une base d'installation (400). Le boîtier (100) comprend un premier ensemble boîtier (110) et un second ensemble boîtier (120), le premier ensemble boîtier (110) étant pourvu d'une saillie (130); et une rainure d'installation (131) est disposée dans la saillie (130), et la rainure d'installation (131) s'étend à travers le premier ensemble boîtier (110) pour former une encoche (133). L'écran flexible (200) est relié au premier ensemble boîtier (110) et au second ensemble boîtier (120), et le premier ensemble boîtier (110) peut tourner par rapport au second ensemble boîtier (120) par l'intermédiaire du mécanisme de pliage (300), de manière à entraîner l'écran souple (200) à se plier et à se déplier. La base d'installation (400) est disposée au niveau de la rainure d'installation (131), et fait saillie, à travers l'encoche (133), d'un côté du premier ensemble boîtier (110) opposé à l'écran souple (200). La base d'installation (400) est pourvue d'un premier module de caméra (410). La base d'installation (400) peut se déplacer à l'intérieur de la rainure d'installation (131), de manière à cacher ou à exposer une première face d'incidence de lumière (411).
PCT/CN2019/106647 2018-10-31 2019-09-19 Terminal mobile pliable WO2020088137A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201821792258.X 2018-10-31
CN201821792258.XU CN209105229U (zh) 2018-10-31 2018-10-31 折叠式移动终端

Publications (1)

Publication Number Publication Date
WO2020088137A1 true WO2020088137A1 (fr) 2020-05-07

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Application Number Title Priority Date Filing Date
PCT/CN2019/106647 WO2020088137A1 (fr) 2018-10-31 2019-09-19 Terminal mobile pliable

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CN (1) CN209105229U (fr)
WO (1) WO2020088137A1 (fr)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114189577A (zh) * 2021-11-23 2022-03-15 维沃移动通信有限公司 电子设备
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