WO2019237269A1 - Ensemble écran d'affichage, dispositif électronique et procédé de fabrication associé - Google Patents

Ensemble écran d'affichage, dispositif électronique et procédé de fabrication associé Download PDF

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Publication number
WO2019237269A1
WO2019237269A1 PCT/CN2018/091006 CN2018091006W WO2019237269A1 WO 2019237269 A1 WO2019237269 A1 WO 2019237269A1 CN 2018091006 W CN2018091006 W CN 2018091006W WO 2019237269 A1 WO2019237269 A1 WO 2019237269A1
Authority
WO
WIPO (PCT)
Prior art keywords
camera
hole
transparent cover
silicone ring
electronic device
Prior art date
Application number
PCT/CN2018/091006
Other languages
English (en)
Chinese (zh)
Inventor
唐义梅
成蛟
Original Assignee
Oppo广东移动通信有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Oppo广东移动通信有限公司 filed Critical Oppo广东移动通信有限公司
Priority to PCT/CN2018/091006 priority Critical patent/WO2019237269A1/fr
Priority to CN201880094493.6A priority patent/CN112272938A/zh
Publication of WO2019237269A1 publication Critical patent/WO2019237269A1/fr

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Classifications

    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09FDISPLAYING; ADVERTISING; SIGNS; LABELS OR NAME-PLATES; SEALS
    • G09F9/00Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements
    • 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 technical field of electronic devices, and in particular, to a display assembly, an electronic device, and a manufacturing method of an electronic device.
  • This application provides a display assembly including:
  • a display module the display module is disposed on one side of the transparent cover, and the display module is provided with a mounting hole;
  • a silicone ring which is located in the mounting hole
  • the camera is at least partially accommodated in the mounting hole, the camera abuts the silicone ring, so that the silicone ring is fixed between the camera and the transparent cover, and the silicone ring is used for To block the light leaked from the display module from entering the light incident surface of the camera.
  • the present application also provides an electronic device including a display screen assembly.
  • This application also provides a method for manufacturing an electronic device, including:
  • a backlight assembly is installed on a side of the liquid crystal panel facing away from the transparent cover plate, and the backlight assembly is provided with a second through hole facing the first through hole, and the aperture of the second through hole is smaller than the first through hole.
  • the silicone ring is fixed between the transparent cover and the camera, and the camera contacts the inner wall surface of the second through hole Therefore, the degree of freedom of the camera on the radial plane of the second through hole is limited.
  • a hole is placed in the lower part of the display module to place a camera, which reduces the space occupied by the camera in the display area of the display module, and increases the screen ratio of the electronic device.
  • the silicone ring is fixed to the transparent cover and the camera. At the same time, the transmission path of the light leaked from the display module at the mounting hole to the light incident surface of the camera is blocked, that is, the display module is prevented from channeling light to the camera, and the shooting effect of the camera is improved.
  • FIG. 1 is a schematic diagram of an electronic device according to an embodiment of the present application.
  • FIG. 2 is a front view of a display screen assembly provided in Embodiment 1 of the present application.
  • Fig. 3 is a schematic cross-sectional view taken along A-A in Fig. 2.
  • FIG. 4 is an enlarged schematic view of a position B in FIG. 3.
  • FIG. 5 is a schematic diagram of a working principle of a display screen component provided in Embodiment 1 of the present application.
  • FIG. 6 is a schematic diagram of an embodiment of a display assembly.
  • FIG. 7 is a schematic diagram of another embodiment of a display assembly.
  • FIG. 8 is a schematic diagram of another embodiment of a display assembly.
  • FIG. 9 is a schematic diagram of a display screen component provided in Embodiment 1 of the present application.
  • FIG. 10 is an enlarged schematic view of a position C in FIG. 9.
  • FIG. 11 is a schematic diagram of a display module provided in Embodiment 1 of the present application.
  • FIG. 12 is a schematic diagram of a display screen component provided in Embodiment 2 of the present application.
  • FIG. 13 is a schematic diagram of an electronic device according to an embodiment of the present application.
  • FIG. 14 is a schematic flowchart of a manufacturing method of an electronic device according to an embodiment of the present application.
  • a display screen assembly 100 provided in an embodiment of the present application is applied to an electronic device 200.
  • the electronic device 200 includes, but is not limited to, a mobile phone, a tablet computer, a notebook computer, and the like.
  • FIG. 2 is a front view of a display screen assembly 100 provided in Embodiment 1 of the present application
  • FIG. 3 is a schematic cross-sectional view taken along the direction A-A of FIG. 2.
  • the display screen assembly 100 provided in the first embodiment of the present application includes a transparent cover 10, a display module 20, a camera 30, and a silicone ring 40.
  • the transparent cover plate 10 is a rigid plate with a certain strength and high light transmittance.
  • the transparent cover plate 10 is used to protect the display module 20 and other devices under the transparent cover plate 10.
  • the transparent cover plate 10 is a glass cover plate.
  • the light transmittance of the glass cover plate is high and the cost is low.
  • the transparent cover plate 10 may also be a plastic cover plate.
  • the display module 20 is disposed on one side of the transparent cover plate 10.
  • the glass cover plate includes an outer surface 10 b and an inner surface 10 a opposite to each other.
  • the outer surface 10 b is a surface facing the outside of the electronic device 200.
  • the outer surface 10b of the glass cover is a surface facing the user
  • the inner surface 10a is the surface of the glass cover facing the inside of the electronic device 200.
  • the display module 20 is disposed on the inner surface 10a of the transparent cover plate 10.
  • the display module 20 is affixed to the transparent cover plate 10 by using an optically clear adhesive (OCA).
  • OCA optically clear adhesive
  • the adhesive has high bonding strength and high transparency, and has little influence on the display effect of the display module 20.
  • the display module 20 is provided with a mounting hole 201.
  • the mounting hole 201 is located in the display area of the display module 20, which is beneficial to reducing the effect of the mounting hole 201 on the screen ratio of the display module 100.
  • the mounting hole 201 is a through hole penetrating the display module 20.
  • the mounting hole 201 is a round hole.
  • FIG. 4 is a partially enlarged schematic diagram of FIG. 3.
  • the camera 30 is at least partially accommodated in the mounting hole 201.
  • the light incident surface 32 a of the camera 30 faces the transparent cover 10.
  • the external light passes through the transparent cover 10 and enters the light incident surface 32 a of the camera 30 for imaging.
  • the camera 30 is partially accommodated in the mounting hole 201, and the size of the mounting hole 201 can be reduced.
  • An opening is provided in the lower portion of the display screen assembly 100 to place the camera 30, which reduces the space occupied by the camera 30 in the display area of the display screen assembly 100, and increases the screen ratio of the electronic device 200.
  • the silicone ring 40 is received in the mounting hole 201, and the silicone ring 40 is at least partially located between the transparent cover 10 and the camera 30.
  • the silicone ring 40 is used to block the display module.
  • the leaked light enters the light incident surface 32a of the camera 30.
  • the silicone ring 40 is a ring made of a silicone material.
  • the silicone ring 40 has a certain elasticity, and has the characteristics of light weight, fast pressure-sensitive fixation, convenient use, free bending, ultra-thin volume, and reliable performance.
  • one side of the silicone ring 40 is located on the inner surface 10a of the transparent cover 10, and the other side abuts the camera 30, thereby compressing the silicone ring 40 between the transparent cover 10 and the camera 30.
  • a certain deformation occurs after compression, so that the sealing effect of the connection between the silicone ring 40 and the camera 30 is better.
  • the camera 30 includes a top surface 34 a facing the transparent cover 10, and the top surface 34 a contacts the silicone ring 40, so that the silicone ring 40 is at least partially compressed between the top surface 34 a and the inner surface 10 a.
  • the camera 30 includes a housing 34 and an optical element 32 accommodated in the housing 34.
  • the housing 34 is provided with an opening 36 to expose the optical element 32.
  • the housing 34 of the camera 30 abuts the silicone ring 40 and makes the silicone ring 40 is compressed between the transparent cover 10 and the camera 30.
  • the top end portion of the housing 34 is a cylindrical structure.
  • the optical element 32 is located inside the cylindrical shape and receives external light through the opening 36.
  • the first direction X that is, the radial direction of the mounting hole 201
  • the housing 34 The optical element 32 is isolated from the display module 20.
  • the light incident surface 32a of the camera 30 is the surface where the optical element 32 receives external light
  • the top surface 34a is the surface of the housing 34 contacting the silicone ring 40.
  • the light incident surface 32a of the camera 30 is recessed in the camera 30, in other words, In the second direction Y, that is, in the axial direction of the mounting hole 201, the height of the light incident surface 32a of the camera 30 is smaller than the height of the top surface 34a.
  • the display module 20 inevitably leaks light into the mounting hole 201, and the leaked light partially propagates toward the camera 30.
  • the housing 34 and the silicone ring 40 of the camera 30 block the light to the inside of the housing 34.
  • the propagation path of the optical element 32 prevents the display module 20 from channeling light to the camera 30, prevents the light incident surface 32a of the camera 30 from receiving light leaked from the display module 20, and improves the shooting effect of the camera 30.
  • the silicone ring 40 is a ring-shaped structure.
  • the outer shell 34 contacts the silicone ring 40.
  • An image is formed in the optical element 32.
  • the ring-shaped top surface 34 a of the housing 30 of the camera 30 abuts the ring-shaped silicone ring 40 and makes the other side of the silicon ring 40 abut on the transparent cover 10.
  • the optical element 32 is sealed on the transparent cover 10 and Between the housing 34 of the camera 30, in conjunction with FIG. 5, only the external light passing through the transparent cover 10 can pass through the central hole of the silicone ring 40, the opening 36, and then enter the optical element 32 for imaging. It is blocked by the case 34 and the silicone ring 40 and cannot enter the optical element 32.
  • the silicone ring 40 includes a side end surface 40 a facing the camera 30 side.
  • the side end surface 40 a is provided with a protrusion 46, and the housing 34 abuts the protrusion 46.
  • the silicone ring 40 is fixed between the camera 30 and the transparent cover 10.
  • the protruding portion 46 is located on the inner ring portion of the silicone ring 40.
  • the protruding portion 46 increases the thickness of the inner ring portion of the silicone ring 40.
  • the housing 34 of the camera 30 abuts against the inner ring portion, and the inner ring portion is compressed.
  • the gap is smaller, which improves the sealing effect on the optical element 32 inside the camera 30, further avoids light leakage, and improves the shooting effect of the camera 30.
  • a groove 340 is provided on the top surface 34 a of the casing 34, and the protrusion 46 is at least partially received in the groove 340 to fix the silicone ring 40 on the camera 30.
  • the groove 340 corresponds to the protrusion 46 of the silicone ring 40.
  • the groove 340 is recessed in the top surface 34a, and the protrusion 46 is received in the groove 340.
  • the housing 34 and the transparent cover of the camera 30 can be reduced.
  • the silicone ring 40 can be fixed on the housing 34 of the camera 30 to avoid the relative displacement between the silicone ring 40 and the camera 30, and the installation process is simplified.
  • the cooperation of the groove 340 and the protrusion 46 is beneficial for blocking the light leaked from the display module 20 from passing through the connection between the silicone ring 40 and the camera 30, and further improving the sealing of the optical element 32 inside the camera 30 Effect, avoiding channeling light, and improving the shooting effect of the camera 30.
  • the casing 34 further includes an outer peripheral surface 34 b, and the groove 340 penetrates the outer peripheral surface 34 b.
  • the outer peripheral surface 34b is the surface of the outer shell 34 facing the inner wall surface of the mounting hole 201, the groove 340 penetrates the outer peripheral surface 34b, and the convex portion 46 is filled in the groove 340, which is beneficial to the fixing effect of the silicone ring 40 and the outer shell 34.
  • the inner surface 10 a of the transparent cover plate 10 includes a transition region 102 a, the transition region 102 a is opposite to the mounting hole 201, and the transition region 102 a is located in the vertical projection and display mode of the inner surface 10 a of the casing 34
  • the silicone ring 40 covers the transition area 102a to block the light leaked from the display module 20 from entering the transparent cover 10 from the transition area 102a.
  • the transition area 102a corresponds to the area in the mounting hole 201 that does not contact the camera 30.
  • the silicone ring 40 covers the transition area 102a.
  • the silicone ring 40 blocks the path of the light leaked from the display module 20 into the transparent cover 10, avoiding this.
  • the light enters the transparent cover 10 and is reflected in the transparent cover 10, thereby preventing the light from being reflected from the transparent cover 10 multiple times and exiting through the opening 36 of the housing 34 to enter the optical element 32, further preventing the display module 20
  • the silicone ring 40 is adhered to the transparent cover 10 or the camera 30 through the double-sided adhesive 45.
  • the silicone ring 40 can be pasted on the transparent cover 10 through the double-sided adhesive 45, and then the camera 30 can be installed to facilitate the positioning of the silicone ring 40 and the fixing method is firm;
  • the double-sided adhesive 45 is attached to the camera 30, and the silicone ring 40 and the camera 30 are installed in the mounting hole 201 together.
  • FIG. 10 is a partially enlarged schematic diagram of FIG. 9.
  • the display module 20 includes a liquid crystal panel 22 and a backlight assembly 24 stacked on the transparent cover 10 in this order.
  • the liquid crystal panel 22 is provided with a first through-hole 221
  • the backlight assembly 24 is provided with a first through-hole facing the first through-hole.
  • the second through hole 241 of 221 is communicated with the second through hole 241 to form a mounting hole 201.
  • the first through hole 221 and the second through hole 241 are both circular holes.
  • the camera 30 passes through the second through hole 241 and the first through hole 221 in order and abuts the silicone ring 40.
  • the backlight assembly 24 is a direct-type backlight or an edge-type backlight, wherein the thickness of the edge-type backlight is smaller.
  • the backlight assembly 24 is used to provide a backlight source, and after the backlight source passes through the liquid crystal panel 22, the display module 20 displays an image.
  • the liquid crystal panel 22 may leak light from the inner wall surface of the first through hole 221, and the backlight assembly 24 may also leak light from the inner wall surface of the second through hole 241.
  • the liquid crystal panel 22 includes a first substrate 222, a second substrate 224, liquid crystal molecules 226, and a black matrix 228.
  • the first substrate 222 is disposed opposite to the second substrate 224, and the liquid crystal molecules 226 and the black matrix 228 are located on the first substrate. Between 222 and the second substrate 224.
  • the two opposite sides of the liquid crystal panel 22 are further provided with a first polarizing plate 262 and a second polarizing plate 264 that have perpendicular polarization directions.
  • the first substrate 222 may be a color filter substrate
  • the second substrate 224 may be an array substrate.
  • the driving circuit controls the voltage difference between the first substrate 222 and the second substrate 224 to control the rotation of the liquid crystal molecules 226, thereby controlling the light passing through the liquid crystal panel 22, that is, controlling the image displayed by the display module 20.
  • at least part of the black matrix 228 forms an inner wall of the first through hole 221 to prevent the liquid crystal molecules 226 from leaking out.
  • the black matrix 228 is not only used to support the distance between the first substrate 222 and the second substrate 224, but also used to close the liquid crystal panel 22 at the first through hole 221, and the liquid crystal molecules 226 are placed to flow out from the first through hole 221.
  • the aperture of the second through hole 241 is smaller than the aperture of the first through hole 221, and the camera 30 contacts the inner wall surface of the second through hole 241, so that the camera 30 is restricted in the mounting hole 201. Degrees of freedom in a radial plane.
  • the camera 30 is engaged with the inner wall surface of the second through hole 241, and the backlight assembly 24 is further used for positioning the camera 30.
  • the backlight assembly 24 is provided with a plastic ring, the plastic ring is located in the second through hole 241, and the camera 30 is fixed in the second through hole 241 through the plastic ring.
  • the plastic ring has a certain elasticity to prevent the backlight assembly 24 and the camera 30 from being scratched and damaged.
  • the display module 100 has a hole to place the camera 30, which reduces the space occupied by the camera 30 in the display area of the display module 100 and increases the screen ratio of the electronic device 200.
  • the silicone ring 40 is compressed between the transparent cover 10 and the camera 30. In this way, the propagation path of the light leaked from the display module 20 at the mounting hole 201 to the light incident surface 32a of the camera 30 is blocked, that is, the display module 20 is prevented from channeling light to the camera 30, and the shooting effect of the camera 30 is improved. .
  • the display screen assembly 100 provided in the second embodiment of the present application is substantially the same as the first embodiment, except that the silicone ring 40 includes a first portion 42 and a second portion 44 interconnected as a whole, and the first portion 42 is located on the transparent cover. Between the board 10 and the camera 30, the second portion 44 is located between the camera 30 and the inner wall surface of the mounting hole 201. Specifically, the first portion 42 and the second portion 44 are integrally formed, and the first portion 42 is compressed between the camera 30 and the transparent cover plate 10 so that the light leaked from the display panel cannot pass from the inner surface 10 a of the transparent cover plate 10 and the top of the camera 30.
  • the surface 34a enters the inside of the camera 30, and the second portion 44 covers a possible gap between the top surface 34a of the camera 30 and the first portion 42, further preventing the display module 20 from channeling light to the camera 30, and improving the camera 30 Shooting effect.
  • the second portion 44 is adhered to the outer peripheral surface 34b, thereby avoiding the gap between the second portion 44 and the outer peripheral surface 34b and allowing the light leaked from the display module 20 to enter, further preventing the display module. 20 channeling light to the camera 30 improves the shooting effect of the camera 30.
  • the silicone ring 40 can be fixed on the housing 34 of the camera 30, thereby avoiding the relative displacement between the silicone ring 40 and the camera 30, and simplifying the installation process.
  • an embodiment of the present application further provides an electronic device 200.
  • the electronic device 200 includes a display screen assembly 100 provided in the embodiment of the present application.
  • the electronic device 200 further includes a front case 50 and a circuit board 60.
  • the display assembly 100 and the circuit board 60 are located on opposite sides of the front case 50, and the front case 50 is provided with a mounting hole 201 opposite to the front case 50.
  • the camera 30 is disposed on the circuit board 60, and the camera 30 passes through the third through hole 501 and is partially located in the mounting hole 201.
  • the front case 50 is a plate-like structure made of a metal or alloy material
  • the front case 50 is a main supporting structure of the electronic device 200.
  • the circuit board 60 is fixed to the front case 50 by means of affixing or fixing, and the display screen assembly 100 is also fixed on the front case 50 by means of affixing or fixing.
  • the camera 30 is connected to the circuit board 60 by welding or the like, and is electrically connected to the circuit board 60.
  • the circuit board 60 is used to control the camera 30 to capture images.
  • the camera 30 contacts the inner wall surface of the third through hole 501, thereby limiting the degree of freedom of the camera 30 on a radial plane of the mounting hole 201. Specifically, the camera 30 is engaged with the inner wall surface of the third through hole 501, so that the camera 30 is positioned by the front case 50, and the camera 30 has a good fixing effect. In one embodiment, both the front case 50 and the backlight assembly 24 can play a role of positioning the camera 30.
  • a hole is provided in the lower portion of the display screen assembly 100 to place the camera 30, which reduces the space occupied by the camera 30 in the display area of the display screen assembly 100 and increases the screen ratio of the electronic device 200.
  • an embodiment of the present application further provides a method for manufacturing an electronic device, which is used for manufacturing the electronic device provided by the embodiment of the present application. Specific steps include:
  • the transparent cover plate is a rigid plate with a certain strength and high light transmittance.
  • the transparent cover plate is a glass cover plate.
  • the glass cover plate has high light transmittance and low cost.
  • the transparent cover can also be a plastic cover.
  • the liquid crystal panel is adhered to the inner surface of the transparent cover plate.
  • the liquid crystal panel is adhered to the transparent cover plate with optical adhesive (OCA), and the adhesive strength of the optical adhesive is high. , And has a high transparency, and has a small impact on the display effect of the liquid crystal panel.
  • OCA optical adhesive
  • the manufacturing process of the liquid crystal panel includes providing a first substrate, forming a black matrix layer on the first substrate, setting a second substrate on the black matrix, at least a part of the black matrix forming an inner wall of the first through hole, and filling the liquid crystal.
  • the molecules are between the first substrate and the second substrate to form a liquid crystal panel.
  • the first substrate may be a color filter substrate
  • the second substrate may be an array substrate.
  • the first polarizer and the second polarizer are attached to the two opposite sides of the liquid crystal panel, respectively, and the polarization directions of the first polarizer and the second polarizer are opposite.
  • the silicone ring is a ring-shaped piece made of a silicone material.
  • the silicone ring has a certain elasticity, and has the characteristics of light weight, fast pressure-sensitive fixing, convenient use, free bending, ultra-thin volume, and reliable performance.
  • the manufacturing method of the electronic device before the step of placing the silicone ring in the first through hole, the manufacturing method of the electronic device further includes attaching a double-sided adhesive on one side of the silicone ring, and attaching the silicone ring to the transparent cover through the double-sided adhesive. on.
  • the backlight assembly is provided with a second through hole facing the first through hole, and a diameter of the second through hole is smaller than that of the first through hole.
  • the plastic ring is fixed in the second through hole, so that subsequent cameras are fixed in the second through hole through the plastic ring.
  • the camera is inserted into the second through hole and the first through hole in sequence, the silicone ring is fixed between the transparent cover and the camera, and the camera contacts the inner wall surface of the second through hole, thereby limiting the camera to the radial plane of the second through hole Degrees of freedom.
  • the camera includes a housing and an optical component housed in the housing.
  • the housing is provided with an opening to expose the optical component.
  • the housing of the camera abuts the silicone ring and compresses the silicone ring between the transparent cover and the camera.
  • the top part of the housing is a cylindrical structure, and the optical element is located inside the cylindrical shape and receives external light through the opening.
  • the housing connects the optical element and the display module. Group isolated.
  • the light incident surface of the camera is the surface where the optical element receives external light
  • the top surface is the surface of the housing that contacts the silicone ring.
  • the light incident surface of the camera is recessed in the camera, in other words, in the second direction, that is, the mounting hole In the axial direction, the height of the light incident surface of the camera is smaller than the height of the top surface.
  • the display module inevitably leaks light into the mounting holes, and the leaked light partially propagates toward the camera.
  • the camera housing and silicone ring block the light's propagation path to the optical components inside the housing, which avoids the display module. Channeling light to the camera prevents the light incident surface of the camera from receiving light leaked from the display module, which improves the shooting effect of the camera.
  • the aperture of the second through hole is smaller than the aperture of the first through hole, and the camera contacts the inner wall surface of the second through hole, thereby limiting the degree of freedom of the camera on the radial plane of the mounting hole.
  • the camera is engaged on the inner wall surface of the second through hole, and the backlight assembly is further used for positioning the camera.
  • the backlight assembly is provided with a plastic ring, the plastic ring is located in the second through hole, and the camera is fixed in the second through hole through the plastic ring.
  • the plastic ring has a certain elasticity, which prevents the backlight assembly and the camera from being scratched and damaged.
  • the camera before the camera is sequentially inserted into the second through hole and the first through hole, the camera is mounted on a circuit board, and the circuit board is mounted on the front case.
  • the front case is provided with a third through hole, and the camera passes through Third through hole.
  • the front case is a plate-like structure made of a metal or alloy material, and the front case is a main supporting structure of an electronic device.
  • the circuit board is fixed to the front case by means of sticking or fixing of the fastener, and the display screen component is also fixed on the front case by means of sticking or fixing of the fastener.
  • the camera is connected to the circuit board by means of soldering or the like, and is electrically connected to the circuit board.
  • the circuit board is used to control the camera to capture images.
  • a hole is placed in the lower part of the display assembly to place a camera, which reduces the space occupied by the camera in the display area of the display assembly and increases the screen ratio of the electronic device.
  • the silicone ring is compressed between the transparent cover and the camera, blocking the display mode.
  • the propagation path of the light leaked from the mounting hole to the light incident surface of the camera is to prevent the display module from channeling light to the camera and improve the shooting effect of the camera.
  • 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 one or more of the features. In the description of the embodiments of the present application, the meaning of "a plurality" is two or more, unless specifically defined otherwise.
  • the terms “installation”, “connected”, and “connected” should be understood in a broad sense, unless explicitly stated and limited otherwise.
  • they may be fixed connections, or It is detachable or integrated; it can be mechanical, electrical, or can communicate with each other; it can be directly connected, or it can be indirectly connected through an intermediate medium, it can be the internal connection of two components or two components Interaction.
  • the specific meanings of the above terms in the embodiments of the present application can be understood according to specific situations.
  • the "upper” or “lower” of the first feature may include the first and second features in direct contact, or may include the first and second features.
  • the second feature is not a direct contact but a contact through another feature between them.
  • the first feature is “above”, “above”, and “above” the second feature, including that the first feature is directly above and obliquely above the second feature, or merely 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, including the fact that the first feature is directly above and obliquely above the second feature, or merely indicates that the first feature is less horizontal than the second feature.

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Theoretical Computer Science (AREA)
  • Signal Processing (AREA)
  • Devices For Indicating Variable Information By Combining Individual Elements (AREA)
  • Telephone Set Structure (AREA)

Abstract

L'invention concerne un ensemble écran d'affichage (100), comprenant : un couvercle transparent (10) ; un module d'affichage (20), le module d'affichage (20) étant agencé sur un côté du couvercle transparent (10) et étant pourvu d'un trou de montage (201) ; une bague de silicone (40), située dans le trou de montage (201) ; et une caméra (30), la caméra (30) étant au moins partiellement logée dans le trou de montage (201), et la caméra (30) venant en butée contre la bague de silicone (40), de sorte que la bague de silicone (40) soit fixée entre la caméra (30) et le couvercle transparent (10), et la bague de silicone (40) étant utilisée pour bloquer la lumière qui fuit du module d'affichage (20) afin qu'elle ne pénètre pas dans une surface d'incidence de la caméra (30). L'invention concerne également un dispositif électronique et un procédé de fabrication du dispositif électronique. La bague de silicone (40) est fixée entre le couvercle transparent (10) et la caméra (30) et empêche un chemin de propagation de lumière qui fuit du module d'affichage (20) au niveau du trou de montage (201) de pénétrer dans une surface d'incidence de la caméra (30), empêchant ainsi une interférence de lumière vers la caméra (30) par le module d'affichage (20), de sorte que l'effet de capture d'image de la caméra (30) soit amélioré.
PCT/CN2018/091006 2018-06-13 2018-06-13 Ensemble écran d'affichage, dispositif électronique et procédé de fabrication associé WO2019237269A1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
PCT/CN2018/091006 WO2019237269A1 (fr) 2018-06-13 2018-06-13 Ensemble écran d'affichage, dispositif électronique et procédé de fabrication associé
CN201880094493.6A CN112272938A (zh) 2018-06-13 2018-06-13 显示屏组件、电子设备及电子设备的制作方法

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Application Number Priority Date Filing Date Title
PCT/CN2018/091006 WO2019237269A1 (fr) 2018-06-13 2018-06-13 Ensemble écran d'affichage, dispositif électronique et procédé de fabrication associé

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WO2019237269A1 true WO2019237269A1 (fr) 2019-12-19

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CN (1) CN112272938A (fr)
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Cited By (2)

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