WO2018041144A1 - Display screen assembly and mobile terminal - Google Patents

Display screen assembly and mobile terminal Download PDF

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Publication number
WO2018041144A1
WO2018041144A1 PCT/CN2017/099695 CN2017099695W WO2018041144A1 WO 2018041144 A1 WO2018041144 A1 WO 2018041144A1 CN 2017099695 W CN2017099695 W CN 2017099695W WO 2018041144 A1 WO2018041144 A1 WO 2018041144A1
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WO
WIPO (PCT)
Prior art keywords
display screen
inclined surface
abutting wall
mobile terminal
top surface
Prior art date
Legal status (The legal status 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 status listed.)
Ceased
Application number
PCT/CN2017/099695
Other languages
French (fr)
Inventor
Xiangkun XIE
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Guangdong Oppo Mobile Telecommunications Corp Ltd
Original Assignee
Guangdong Oppo Mobile Telecommunications Corp Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from CN201610794607.0A external-priority patent/CN106210205B/en
Priority claimed from CN201621027986.2U external-priority patent/CN206135994U/en
Application filed by Guangdong Oppo Mobile Telecommunications Corp Ltd filed Critical Guangdong Oppo Mobile Telecommunications Corp Ltd
Publication of WO2018041144A1 publication Critical patent/WO2018041144A1/en
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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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
    • H04M1/0202Portable telephone sets, e.g. cordless phones, mobile phones or bar type handsets
    • H04M1/026Details of the structure or mounting of specific components
    • H04M1/0264Details of the structure or mounting of specific components for a camera module assembly
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • H04M1/0202Portable telephone sets, e.g. cordless phones, mobile phones or bar type handsets
    • H04M1/026Details of the structure or mounting of specific components
    • H04M1/0266Details of the structure or mounting of specific components for a display module assembly
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N23/00Cameras or camera modules comprising electronic image sensors; Control thereof
    • H04N23/50Constructional details
    • H04N23/54Mounting of pick-up tubes, electronic image sensors, deviation or focusing coils
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N23/00Cameras or camera modules comprising electronic image sensors; Control thereof
    • H04N23/57Mechanical or electrical details of cameras or camera modules specially adapted for being embedded in other devices

Definitions

  • the present disclosure relates to the field of communication technology, and in particular, to a display screen assembly and a mobile terminal.
  • the present invention provides a display screen assembly and a mobile terminal which utilize the space occupied by the display screen assembly to reduce the size in a length direction occupied by a camera module, to further reduce the external length of the mobile terminal.
  • the display screen assembly of the present disclosure comprises a display screen module and an installation bracket, wherein the display screen module comprises a body portion and a top portion; the top portion comprises a top surface and an inclined surface connected to a side of the top surface; the inclined surface extends obliquely in a direction towards the body portion; the installation bracket comprises an abutting wall; an installation groove is defined in the installation bracket; the abutting wall comprises a supporting surface facing the installation groove; wherein a thickness of the abutting wall gradually decreases along the inclined surface in a direction towards the top surface to form an installed inclined surface, and wherein the installed inclined surface is opposite to the supporting surface and abuts against the inclined surface.
  • the abutting wall extends to the top surface.
  • the abutting wall is provided with an opening, and the opening is connected with the installation groove.
  • the abutting wall is spaced from the top surface by the opening.
  • an included angle between the inclined surface and the top surface ranges from 3 degrees to 3.2 degrees.
  • the supporting surface is parallel with the top surface.
  • the supporting surface and the top surface are disposed in the same plane.
  • the mobile terminal of the present disclosure includes a camera module and the foregoing display screen assembly; the camera module is installed in the installation groove and is spaced from the display screen module by the abutting wall.
  • the installation bracket further includes a top wall and two opposite sidewalls extending from two ends of the top wall; the top wall, the sidewalls and the abutting wall surround and form the installation groove; the camera module is mounted to the supporting surface of the abutting wall.
  • the mobile terminal further includes a front housing, and the front housing includes a protective panel and a frame mounted to a periphery of the protective panel; the display screen assembly is fixed to an inner surface of the front housing; the installation bracket is mounted to the frame.
  • the installation bracket is disposed in the region with a height difference formed by the inclined surface and the top surface, which is able to not only fully utilize the space but also save the overall length for the mobile terminal, thereby reducing the size of the mobile terminal along its length direction.
  • FIG. 1 is a partially cross-sectional view of a display screen assembly according to an embodiment of the present disclosure.
  • FIG. 2 a partially cross-sectional view of the display screen assembly according to another embodiment of the present disclosure.
  • FIG. 3 is a partially cross-sectional view of a mobile terminal according to an embodiment of the present disclosure.
  • the present disclosure provides a display screen assembly 100 and a mobile terminal 200 having the display screen assembly 100.
  • the mobile terminal 200 further includes a terminal body 210, a front housing 230, and a camera module 220 mounted to an inner surface of the front housing 230.
  • the display screen assembly 100 is mounted between the terminal body 210 and the front housing 230.
  • the camera module 220 is disposed on a top of the display screen assembly 100.
  • the display screen assembly 100 includes a display screen module 10 and an installation bracket 13.
  • the display screen module 10 has a top portion 11.
  • the top portion 111 includes a top surface 111 and an inclined surface 112 connected to a side of the top surface 111.
  • the installation bracket 13 includes an abutting wall 133.
  • An installation groove 131 is defined in the installation bracket 13.
  • the camera module 220 is mounted in the installation groove 131, and is spaced from the display screen module 220 by the abutting wall 133.
  • the abutting wall 133 has a supporting surface 1311 facing the installation groove 131, and thickness of the abutting wall 131 gradually decreases along the inclined surface 112 in a direction towards the top surface 111 to form an installed inclined surface 1333.
  • the supporting surface 1311 is parallel with the top surface 111.
  • the supporting surface 1311 and the top surface 111 are disposed on the same plane.
  • the supporting surface 1311 is lower than the top surface 111 to save more space occupied by height of the installation bracket.
  • the installed inclined surface 1333 is opposite to the supporting surface 1311 and abuts the inclined surface 112.
  • the supporting surface 1311 is a horizontal surface for supporting the camera module 220.
  • the front housing 230 includes a protective panel 232 and a frame 233 mounted to a periphery of the protective panel 232.
  • the display screen module 10 is fixedly connected to the front housing 230. As shown in FIG. 1, the display screen module 10 has a screen region 101 and a housing 102. The housing 102 is fixed to the frame 233. The top portion 11 is a top potion of the housing 102. The top surface 111 and the inclined surface 112 are outer surfaces of the housing 102.
  • the inclined surface 112 is inclined towards a body portion of the display screen module 10.
  • An included angle between the inclined surface 112 and the top surface 111 ranges from 3 degrees to 3.2 degrees, and a smallest height difference therebetween is 0.3 mm, so as to save as much space as possible in the front housing.
  • a relative height relationship between the inclined surface 112 and the top surface 111 is that the height of the top surface 111 is higher than height of the inclined surface 112.
  • One side or two sides of the top surface 111 are provided with said inclined surface 112, which can save inner space of the mobile terminal.
  • the installation bracket 13 is substantially a square frame body which is mounted to the frame 233 and forms a groove shape with the inner surface of the frame 233.
  • the installation bracket 13 includes a top wall 132, two opposite sidewalls 135 and the abutting wall 133 which is opposite to the top wall 132.
  • the two sidewalls 135 are connected to the top wall 132 and the abutting wall 133 to further form the installation groove 131.
  • the abutting wall 133 extends to the top surface 111.
  • the abutting wall 133 extends to a position where the top surface is connected to the inclined surface 112.
  • the installation bracket 13 is mounted to the front housing 230 and supported by the inclined surface 12.
  • the camera module 220 is mounted in the installation groove 131 and supported by the supporting surface 1311.
  • the installed inclined surface 1333 abuts against the inclined surface 112.
  • the abutting wall 133 of the installation bracket 13 is adaptedly mounted against the inclined surface 112 via the installed inclined surface 1333 without influencing the inner space of the installation groove 131, which as a whole, reduces the height of the installation bracket 13 on the top portion and thus further reduces the size of the mobile terminal along its length direction.
  • the camera module 220 is mounted in the installation groove 131.
  • the terminal body and the display screen assembly 10 are fixedly stacked up and assembled together.
  • the installation bracket 13 is disposed in the region with a height difference formed by the inclined surface 112 and the top surface 111, which is able to not only fully utilize the space but also save the overall length for the mobile terminal. It can be appreciated that the installation bracket 13 may also be used to accommodate at least one functional component of the mobile terminal such as a speaker, a vibrator, etc..
  • FIG. 2 illustrates an embodiment different from the foregoing embodiment in that the abutting wall 133 is provided with an opening 1332.
  • the opening 1332 is connected with the installation groove 131.
  • the abutting wall 133 is spaced from the top surface 111 by the opening 1332.
  • the opening 1332 is formed on the installed inclined surface 1334 at a position corresponding to a portion of the abutting wall 133 with the smallest thickness.
  • At least one of the sidewalls 135 has a horizontal abutting surface 1331.
  • the horizontal abutting surface 1331 abuts against the top surface 111.
  • the horizontal abutting surface 1331 is spaced from the installed inclined surface 1334 by the opening 1332.
  • the opening 1332 communicates with the installation groove 131.
  • the opening 1332 is defined by the abutting wall 133 and located adjacent to one of the sidewalls 135.
  • the horizontal abutting surface 1331 is an end surface of the sidewall 135 beside the opening 1332.
  • the installed inclined surface 1334 is an outer surface of the abutting wall 133, and the installed inclined surface 1334 of the second embodiment is equivalent to the installed inclined surface 1333 of the first embodiment minus the opening 1332.
  • a relative height relationship between the horizontal abutting surface 1331 and the installed inclined surface 1334 is that the height of the horizontal abutting surface 1331 is higher than that of the installed inclined surface 1334.
  • the installation bracket 13 is supported by the inclined surface 12.
  • the horizontal abutting surface 1331 abuts against the top surface 111.
  • the installed inclined surface 1334 abuts against the inclined surface 112.
  • the opening 1332 is located at a positon corresponding to a junction of the top surface 111 and the inclined surface 112. In a length direction of the mobile terminal, the opening 1332 of the installation bracket reduces the height of the stack of the installation bracket and the top portion, thereby reducing the height of the stack of the display screen module 10 and the camera module 220 to achieve size reduction along the length direction of the mobile terminal.

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

Abstract

A display screen assembly is provided and includes a display screen module and an installation bracket. The display screen module includes a body portion and a top portion. The top portion includes a top surface and an inclined surface connected with one side of the top surface. The inclined surface extends obliquely towards a direction of facing the body portion. The installation bracket includes an abutting wall. An installation groove is defined in the installation bracket. The abutting wall includes a supporting surface facing the installation groove. A thickness of the abutting wall gradually decreases along the inclined surface in a direction towards the top surface to form an installed inclined surface. The installed inclined surface is opposite to the supporting surface and abuts against the inclined surface. A mobile terminal is further provided.

Description

DISPLAY SCREEN ASSEMBLY AND MOBILE TERMINAL
CROSS REFERENCE TO RELATED APPLICATIONS
This application claims priority to Chinese Application No. 201610794607.0, filed on August 31, 2016 and Chinese Application No. 201621027986.2, filed on August 31, 2016. The entire disclosure of each of the above applications is incorporated herein by reference.
BACKGROUND
1. Field
The present disclosure relates to the field of communication technology, and in particular, to a display screen assembly and a mobile terminal.
2. Description of Related Art
In the pursuit of light and thin appearance, if overall size of existing mobile terminals, such as mobile phones, is reduced, layout in an internal space thereof would inevitably be compact. Camera modules, as an important feature of mobile phones, are generally mounted to tops of the mobile phones. Due to limited space inside the cases of the mobile phones, installation of the camera modules may easily lead to increase of overall size of the mobile phones.
SUMMARY OF THE DISCLOSURE
In view of the foregoing, the present invention provides a display screen assembly and a mobile terminal which utilize the space occupied by the display screen assembly to reduce the size in a length direction occupied by a camera module, to further reduce the external length of the mobile terminal.
The display screen assembly of the present disclosure comprises a  display screen module and an installation bracket, wherein the display screen module comprises a body portion and a top portion; the top portion comprises a top surface and an inclined surface connected to a side of the top surface; the inclined surface extends obliquely in a direction towards the body portion; the installation bracket comprises an abutting wall; an installation groove is defined in the installation bracket; the abutting wall comprises a supporting surface facing the installation groove; wherein a thickness of the abutting wall gradually decreases along the inclined surface in a direction towards the top surface to form an installed inclined surface, and wherein the installed inclined surface is opposite to the supporting surface and abuts against the inclined surface.
In one embodiment, the abutting wall extends to the top surface.
In one embodiment, the abutting wall is provided with an opening, and the opening is connected with the installation groove.
In one embodiment, the abutting wall is spaced from the top surface by the opening.
In one embodiment, an included angle between the inclined surface and the top surface ranges from 3 degrees to 3.2 degrees.
In one embodiment, the supporting surface is parallel with the top surface.
In one embodiment, the supporting surface and the top surface are disposed in the same plane.
The mobile terminal of the present disclosure includes a camera module and the foregoing display screen assembly; the camera module is installed in the installation groove and is spaced from the display screen module  by the abutting wall.
In one embodiment, the installation bracket further includes a top wall and two opposite sidewalls extending from two ends of the top wall; the top wall, the sidewalls and the abutting wall surround and form the installation groove; the camera module is mounted to the supporting surface of the abutting wall.
In one embodiment, the mobile terminal further includes a front housing, and the front housing includes a protective panel and a frame mounted to a periphery of the protective panel; the display screen assembly is fixed to an inner surface of the front housing; the installation bracket is mounted to the frame.
In the display screen assembly of the present invention, with the mounting and matching of the installed inclined surface and the inclined surface, the installation bracket is disposed in the region with a height difference formed by the inclined surface and the top surface, which is able to not only fully utilize the space but also save the overall length for the mobile terminal, thereby reducing the size of the mobile terminal along its length direction.
BRIEF DESCRIPTION OF THE DRAWINGS
To describe the structural features and technical effects of the present disclosure more clearly, the following introduces the accompanying drawings required for describing the embodiments of the present disclosure.
FIG. 1 is a partially cross-sectional view of a display screen assembly according to an embodiment of the present disclosure.
FIG. 2 a partially cross-sectional view of the display screen assembly according to another embodiment of the present disclosure.
FIG. 3 is a partially cross-sectional view of a mobile terminal according to an embodiment of the present disclosure.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
The following clearly and completely describes the technical solutions in the embodiments of the present disclosure with reference to the accompanying drawings in the embodiments of the present disclosure.
Please refer to FIG. 1 and FIG. 3, the present disclosure provides a display screen assembly 100 and a mobile terminal 200 having the display screen assembly 100. The mobile terminal 200 further includes a terminal body 210, a front housing 230, and a camera module 220 mounted to an inner surface of the front housing 230. As shown in FIG. 3, the display screen assembly 100 is mounted between the terminal body 210 and the front housing 230. The camera module 220 is disposed on a top of the display screen assembly 100.
As shown in FIG. 1, the display screen assembly 100 includes a display screen module 10 and an installation bracket 13. The display screen module 10 has a top portion 11. The top portion 111 includes a top surface 111 and an inclined surface 112 connected to a side of the top surface 111. The installation bracket 13 includes an abutting wall 133. An installation groove 131 is defined in the installation bracket 13. The camera module 220 is mounted in the installation groove 131, and is spaced from the display screen module 220 by the abutting wall 133.
In this embodiment, the abutting wall 133 has a supporting surface 1311 facing the installation groove 131, and thickness of the abutting wall 131  gradually decreases along the inclined surface 112 in a direction towards the top surface 111 to form an installed inclined surface 1333. The supporting surface 1311 is parallel with the top surface 111. In this embodiment, the supporting surface 1311 and the top surface 111 are disposed on the same plane. In other embodiments, the supporting surface 1311 is lower than the top surface 111 to save more space occupied by height of the installation bracket. The installed inclined surface 1333 is opposite to the supporting surface 1311 and abuts the inclined surface 112. The supporting surface 1311 is a horizontal surface for supporting the camera module 220.
In this embodiment, the front housing 230 includes a protective panel 232 and a frame 233 mounted to a periphery of the protective panel 232. The display screen module 10 is fixedly connected to the front housing 230. As shown in FIG. 1, the display screen module 10 has a screen region 101 and a housing 102. The housing 102 is fixed to the frame 233. The top portion 11 is a top potion of the housing 102. The top surface 111 and the inclined surface 112 are outer surfaces of the housing 102.
The inclined surface 112 is inclined towards a body portion of the display screen module 10. An included angle between the inclined surface 112 and the top surface 111 ranges from 3 degrees to 3.2 degrees, and a smallest height difference therebetween is 0.3 mm, so as to save as much space as possible in the front housing. A relative height relationship between the inclined surface 112 and the top surface 111 is that the height of the top surface 111 is higher than height of the inclined surface 112. One side or two sides of the top surface 111 are provided with said inclined surface 112, which can save inner  space of the mobile terminal.
In this embodiment, the installation bracket 13 is substantially a square frame body which is mounted to the frame 233 and forms a groove shape with the inner surface of the frame 233. Specifically, the installation bracket 13 includes a top wall 132, two opposite sidewalls 135 and the abutting wall 133 which is opposite to the top wall 132. The two sidewalls 135 are connected to the top wall 132 and the abutting wall 133 to further form the installation groove 131. The abutting wall 133 extends to the top surface 111. In this embodiment, the abutting wall 133 extends to a position where the top surface is connected to the inclined surface 112.
In this embodiment, the installation bracket 13 is mounted to the front housing 230 and supported by the inclined surface 12. The camera module 220 is mounted in the installation groove 131 and supported by the supporting surface 1311. The installed inclined surface 1333 abuts against the inclined surface 112. Under the premise that the install angle and size of the camera module 220 do not changed, by using the inclined region provided by the inclined surface 112 relative to the top surface 111, a portion of the volume of the installation bracket 13 is disposed within the inclined region; and the abutting wall 133 of the installation bracket 13 is adaptedly mounted against the inclined surface 112 via the installed inclined surface 1333 without influencing the inner space of the installation groove 131, which as a whole, reduces the height of the installation bracket 13 on the top portion and thus further reduces the size of the mobile terminal along its length direction. The camera module 220 is mounted in the installation groove 131. The terminal body and the display screen assembly 10  are fixedly stacked up and assembled together.
In the display screen assembly of the present disclosure, with the mounting and matching of the installed inclined surface 1333 and the inclined surface 112, the installation bracket 13 is disposed in the region with a height difference formed by the inclined surface 112 and the top surface 111, which is able to not only fully utilize the space but also save the overall length for the mobile terminal. It can be appreciated that the installation bracket 13 may also be used to accommodate at least one functional component of the mobile terminal such as a speaker, a vibrator, etc..
Please refer to FIG. 2 which illustrates an embodiment different from the foregoing embodiment in that the abutting wall 133 is provided with an opening 1332. The opening 1332 is connected with the installation groove 131. The abutting wall 133 is spaced from the top surface 111 by the opening 1332. Specifically, the opening 1332 is formed on the installed inclined surface 1334 at a position corresponding to a portion of the abutting wall 133 with the smallest thickness.
At least one of the sidewalls 135 has a horizontal abutting surface 1331. In one implementation manner, the horizontal abutting surface 1331 abuts against the top surface 111. The horizontal abutting surface 1331 is spaced from the installed inclined surface 1334 by the opening 1332. The opening 1332 communicates with the installation groove 131.
In this embodiment, the opening 1332 is defined by the abutting wall 133 and located adjacent to one of the sidewalls 135. The horizontal abutting surface 1331 is an end surface of the sidewall 135 beside the opening 1332. The  installed inclined surface 1334 is an outer surface of the abutting wall 133, and the installed inclined surface 1334 of the second embodiment is equivalent to the installed inclined surface 1333 of the first embodiment minus the opening 1332.
In one embodiment, a relative height relationship between the horizontal abutting surface 1331 and the installed inclined surface 1334 is that the height of the horizontal abutting surface 1331 is higher than that of the installed inclined surface 1334.
In this embodiment, the installation bracket 13 is supported by the inclined surface 12. The horizontal abutting surface 1331 abuts against the top surface 111. The installed inclined surface 1334 abuts against the inclined surface 112. The opening 1332 is located at a positon corresponding to a junction of the top surface 111 and the inclined surface 112. In a length direction of the mobile terminal, the opening 1332 of the installation bracket reduces the height of the stack of the installation bracket and the top portion, thereby reducing the height of the stack of the display screen module 10 and the camera module 220 to achieve size reduction along the length direction of the mobile terminal.
The foregoing descriptions are merely embodiments of the present disclosure, and it should be noted that, for a person skilled in the related art, changes and modifications to the described embodiments can be carried out without departing from the principle of the present disclosure. These changes and modifications shall fall within the protection scope of the present disclosure.

Claims (15)

  1. A display screen assembly (100) , comprising:
    a display screen module (10) and an installation bracket (13) , wherein the display screen module (10) comprises a body portion and a top portion (11) ; the top portion (11) comprises a top surface (111) and an inclined surface (112) connected to a side of the top surface (111) ; the inclined surface (112) extends obliquely in a direction towards the body portion; the installation bracket (13) comprises an abutting wall (133) ; an installation groove (131) is defined in the installation bracket (13) ; the abutting wall (133) comprises a supporting surface (1311) facing the installation groove (131) ;
    wherein a thickness of the abutting wall (133) gradually decreases along the inclined surface (112) in a direction towards the top surface (111) to form an installed inclined surface (1333, 1334) , and wherein the installed inclined surface (1333, 1334) is opposite to the supporting surface (1311) and abuts against the inclined surface (112) .
  2. The display screen assembly (100) as claimed in claim 1, wherein the abutting wall (133) extends to the top surface (111) .
  3. The display screen assembly (100) as claimed in claim 1, wherein the abutting wall (133) is provided with an opening (1332) , and the opening (1332) is connected with the installation groove (131) .
  4. The display screen assembly (100) as claimed in claim 3, wherein the abutting wall (133) is spaced from the top surface (111) by the opening (1332) .
  5. The display screen assembly (100) as claimed in any one of claims 1 to 4, wherein an included angle between the inclined surface (112) and the top  surface (111) ranges from 3 degrees to 3.2 degrees.
  6. The display screen assembly (100) as claimed in any one of claims 1 to 4, wherein the supporting surface (1311) is parallel with the top surface (111) .
  7. The display screen assembly (100) as claimed in any one of claims 1 to 4, wherein the supporting surface (1311) and the top surface (111) are disposed in the same plane.
  8. A mobile terminal (200) , comprising:
    a camera module (220) and a display screen assembly (100) ;
    wherein the display screen assembly (100) comprises a display screen module (10) and an installation bracket (13) ; the display screen module (10) comprises a body portion and a top portion (11) ; the top portion (11) comprises a top surface (111) and an inclined surface (112) connected to a side of the top surface (111) ; the inclined surface (112) extends obliquely in a direction towards the body portion; the installation bracket (13) comprises an abutting wall (133) ; an installation groove (131) is defined in the installation bracket (13) ; the abutting wall (133) comprises a supporting surface (1311) facing the installation groove (131) ;
    wherein thickness of the abutting wall (133) gradually decreases along the inclined surface (112) in a direction towards the top surface (111) to form an installed inclined surface (1333, 1334) , and wherein the installed inclined surface (1333, 1334) is opposite to the supporting surface (1311) and abuts against the inclined surface (112) ; and
    wherein the camera module (220) is mounted in the installation groove (131) , and is spaced from the display screen module (10) by the abutting wall  (133) .
  9. The mobile terminal (200) as claimed in claim 8, wherein the installation bracket (13) further comprises a top wall (132) and two opposite sidewalls (135) extending from two ends of the top wall (132) ; the top wall (132) , the sidewalls (135) and the abutting wall (133) surround and form the installation groove (131) ; the camera module (220) is mounted to the supporting surface (1311) of the abutting wall (133) .
  10. The mobile terminal (200) as claimed in claim 8, wherein the mobile terminal (200) further comprises a front housing (230) , and the front housing (230) comprises a protective panel (232) and a frame (233) mounted to a periphery of the protective panel (232) ; the display screen assembly (100) is fixed to an inner surface of the front housing (230) ; the installation bracket (13) is mounted to the frame (233) .
  11. The mobile terminal (200) as claimed in claim 8, wherein the abutting wall (133) extends to the top surface (111) .
  12. The mobile terminal (200) as claimed in claim 8, wherein the abutting wall (133) is provided with an opening (1332) , and the opening (1332) is connected with the installation groove (131) .
  13. The mobile terminal (200) as claimed in claim 12, wherein the abutting wall (133) is spaced from the top surface (111) by the opening (1332) .
  14. The mobile terminal as claimed in any one of claims 8 to 13, wherein the supporting surface (1311) is parallel with the top surface (111) .
  15. The mobile terminal as claimed in any one of claims 8 to 13, wherein the supporting surface (1311) and the top surface (111) are disposed in the same  plane.
PCT/CN2017/099695 2016-08-31 2017-08-30 Display screen assembly and mobile terminal Ceased WO2018041144A1 (en)

Applications Claiming Priority (4)

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CN201610794607.0A CN106210205B (en) 2016-08-31 2016-08-31 Display screen assembly and mobile terminal
CN201610794607.0 2016-08-31
CN201621027986.2U CN206135994U (en) 2016-08-31 2016-08-31 Display components and mobile terminals
CN201621027986.2 2016-08-31

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EP3291517B1 (en) 2020-10-07
US20180063305A1 (en) 2018-03-01
ES2830426T3 (en) 2021-06-03
US10200517B2 (en) 2019-02-05

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