CN107835277B - Leading camera mounting structure and mobile terminal of mobile terminal - Google Patents

Leading camera mounting structure and mobile terminal of mobile terminal Download PDF

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Publication number
CN107835277B
CN107835277B CN201711318796.5A CN201711318796A CN107835277B CN 107835277 B CN107835277 B CN 107835277B CN 201711318796 A CN201711318796 A CN 201711318796A CN 107835277 B CN107835277 B CN 107835277B
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display
display area
screen
mobile terminal
mounting structure
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CN107835277A (en
Inventor
成蛟
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Guangdong Oppo Mobile Telecommunications Corp Ltd
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Guangdong Oppo Mobile Telecommunications Corp Ltd
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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

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

Abstract

The invention discloses a front camera mounting structure of a mobile terminal, which comprises a display component and a camera module which is overlapped with the display component, wherein a lens of the camera module is arranged towards the direction of the display component, a light hole which can enable light to pass through is arranged at a position on the display component corresponding to the lens, the display component comprises a display screen which consists of a display area and a non-display area, and the light hole is arranged at the edge position of the display area. The camera module and the display assembly are arranged in a stacked mode, so that the space occupation of the camera module on the display surface of the terminal is effectively reduced, the occupation ratio of the terminal screen is improved, the non-display area of the display screen is arranged on the back of the display area, the outline of the display surface of the display area can be the outline of the display screen, no other structures occupy the display space, and the whole surface of the display screen can display images; the mobile phone adopting the display assembly can realize full-screen display of the front side of the mobile phone, realize ultra-narrow frames and even no frames, and improve the expressive force of products.

Description

Leading camera mounting structure and mobile terminal of mobile terminal
The present application is a divisional application of patent application No. 201611026574.1, application date 2016, 11, and 16, entitled "front camera mounting structure of mobile terminal and mobile terminal".
Technical Field
The invention relates to the technical field of mobile communication equipment, in particular to a front camera mounting structure of a mobile terminal and the mobile terminal applying the mounting structure.
Background
Electronic products such as smart phones occupy a great share of the mobile phone market by virtue of strong functions of the electronic products, and the display screen is used as an indispensable human-computer interaction tool of the smart phones, so that the performance quality and the attractiveness directly influence the actual experience of users. In terms of visual effect, although the current smart phone display screen can realize large screen display, due to the limitation of the mobile phone manufacturing technology, the peripheral frame area of the mobile phone screen cannot be full-screen together with the mobile phone screen, and thus the best visual effect and appearance effect can not be achieved in terms of visual effect.
In most of mobile phones in the market at present, a high-definition camera is a main selling point, and the requirements of users on the camera are higher and higher. The mobile phone is used for carrying out self-shooting, which becomes the conventional use habit of a plurality of mobile phone users, the front camera is widely applied in scenes, and the mobile phone camera must have a light-passing path, so the traditional camera and the display screen cannot be overlapped, the display screen can block light to enter the camera, the camera has a certain volume, the camera occupies a certain space under the condition that the camera and the display screen are arranged in a staggered way, the area where the camera is located cannot provide display, and the camera is also an important reason of having a larger black edge on the conventional mobile phone.
Disclosure of Invention
One object of the present invention is: the utility model provides a leading camera mounting structure of mobile terminal, reduces the occupation space of leading camera on the screen, increases the display area.
Another object of the invention is: a mobile terminal is provided, which has a high screen occupation ratio and can reduce black edges on a mobile phone frame while adopting a front camera.
In order to achieve the purpose, the invention adopts the following technical scheme:
on the one hand, the utility model provides a leading camera mounting structure of mobile terminal, including display module and with the display module overlaps the camera module that sets up, the camera lens orientation of camera module the display module direction sets up, on the display module with the corresponding position of camera lens is provided with the light trap that can make light pass, the display module includes the display screen of constituteing by display area and non-display area, the light trap sets up the border position of display area.
As an optimal technical scheme of the front camera mounting structure of the mobile terminal, one side, far away from the camera module, of the display assembly is provided with cover plate glass, a circle of silk-screen printing ink is arranged on the cover plate glass corresponding to the periphery of the lens, and the silk-screen printing ink shields the edge of the light hole.
As a preferred technical scheme of the front camera mounting structure of the mobile terminal, the silk-screen printing ink forms a glass silk-screen hole on the cover plate glass, and the lens is exposed at the center of the glass silk-screen hole.
As a preferred technical solution of the front camera mounting structure of the mobile terminal, the display area is used for displaying an image, the non-display area is used for connecting a control circuit, a surface of the display area displaying the image is a front surface, a surface opposite to the front surface is a back surface, and the non-display area is located on one side of the back surface of the display area and overlaps with the display area, so that a display surface contour of the display area is used as an outline of the display module.
As a preferred technical solution of the front camera mounting structure of the mobile terminal, the display area is a triangular structure, a rectangular structure or a pentagonal structure, and an arc chamfer is formed between two adjacent sides.
As a preferable technical solution of the front camera mounting structure of the mobile terminal, the display area has a circular structure.
As a leading camera mounting structure of mobile terminal's a preferred technical scheme, the display screen is flexible OLED screen, the non-display area is in through turning over the setting display area's the back, under the expansion state display module has towards user's first surface and the second surface that deviates from the user, under fold condition second surface on the display area with first surface on the non-display area is laminated each other.
As a preferred technical solution of the front camera mounting structure of the mobile terminal, a display screen enhancing element is disposed at a position where the display area is connected to the non-display area, and the display screen enhancing element is disposed in the display area and located on the second surface, or the display screen enhancing element is disposed in the non-display area and located on the first surface.
As a preferable technical solution of the front camera mounting structure of the mobile terminal, the display screen reinforcing element is a reinforcing strip attached to the display screen, and a length direction of the reinforcing strip is arranged along a boundary line direction between the display area and the non-display area.
As a preferred technical solution of the front camera mounting structure of the mobile terminal, the cover glass is closely attached to the display area, and an outer contour of the cover glass corresponds to a contour of a display surface of the display area.
In another aspect, a mobile terminal is provided, in which the front camera is mounted by using the front camera mounting structure of the mobile terminal.
The invention has the beneficial effects that: according to the scheme, the camera module and the display assembly are arranged in a stacked mode, so that the space occupation of the camera module on the display surface of the terminal can be effectively reduced, the occupation ratio of the terminal screen is improved, the non-display area of the display screen is arranged on the back of the display area, the display surface outline of the display area is the outline of the display screen, the display space is not occupied by other structures, and the whole surface of the display screen can display images; the mobile phone adopting the display component can realize full screen display on the front side of the mobile phone, eliminate black edges on the front side of the traditional mobile phone, greatly improve screen occupation ratio, realize ultra-narrow frames and even no frames, and improve product expressive force.
Drawings
The invention is explained in more detail below with reference to the figures and examples.
Fig. 1 is a schematic plane structure diagram of an unfolded state of the display module according to the embodiment.
Fig. 2 is a schematic perspective view of the display module according to the embodiment in an unfolded state.
Fig. 3 is a schematic view of a folded state of the display assembly according to the embodiment.
Fig. 4 is a perspective view of a folded state of the display assembly according to the embodiment.
Fig. 5 is an enlarged view at I in fig. 4.
FIG. 6 is a schematic view of an exploded state of the cover glass, the display module, the camera module and the housing according to the embodiment.
Fig. 7 is a schematic view of another perspective structure of the cover glass, the display module, the camera module, and the housing according to the embodiment in an exploded state.
Fig. 8 is a front effect diagram of a terminal after a front camera is mounted on a camera mounting structure adopted in the prior art.
Fig. 9 is a terminal front effect diagram after the front camera is installed on the front camera installation structure of the mobile terminal according to the scheme.
In the figure:
1. a display area; 2. a non-display area; 3. FPC; 4. an integrated circuit; 5. a reinforcing element; 6. a first side edge; 7. a second side edge; 8. a third side; 9. a fourth side; 10. displaying the connecting edge; 11. cover plate glass; 12. a housing; 13. a light-transmitting hole; 14. a camera module; 15. glass silk-screen printing holes; 16. black edge.
Detailed Description
The technical scheme of the invention is further explained by the specific implementation mode in combination with the attached drawings.
The first embodiment is as follows:
as shown in fig. 1 to 7, in this embodiment, the front camera mounting structure of a mobile terminal according to the present invention includes a display module and a camera module 14 overlapped with the display module, a lens of the camera module 14 is disposed toward the display module, and a light hole 13 capable of allowing light to pass through is disposed on the display module at a position corresponding to the lens.
Because the size of the camera lens in the camera module 14 is less than the size of the electrical components thereon, the display module and the camera module 14 are overlapped in the scheme, and the light transmission hole 13 is formed only in the display module at the position corresponding to the camera lens, so that the occupation of the camera module 14 exceeding the size of the lens part to the space can be reduced, the space occupied by the display module is increased, and the screen occupation ratio is improved. Through the design of this scheme, the juncture position of display screen and camera lens among the display module is for traditional structure more being close to the camera lens, and the display screen accounts for bigger proportion in whole equipment, can bring better visual sensation and user experience for the user.
In this embodiment, the display module includes a display screen composed of a display area 1 and a non-display area 12, the display area 1 is used for displaying an image, the non-display area 12 is used for connecting a control circuit, a surface of the display area 1 displaying the image is a front surface, a surface opposite to the front surface is a back surface, the non-display area 12 is located on one side of the back surface of the display area 1 and is overlapped with the display area 1, so that a display surface contour of the display area 1 is used as a display contour of the display module, and the light hole 13 is disposed at a position of the display area 1 near an edge.
In the embodiment, the non-display area 12 is arranged on the back of the display area 1, so that the whole display outline corresponds to the display area 1, the frame width of the non-display area 2 around the screen is reduced in the terminal using the display assembly, and the terminal can be ensured to have a larger screen occupation ratio.
The area occupied by the display area 1 is increased by folding the non-display area 1, the display assembly and the camera module 14 are arranged in a stacked mode, the occupied space of the camera module 14 is reduced, and the screen occupation ratio of the display area 1 is increased from multiple aspects while the front-end image pickup function is achieved.
Fig. 8 is a front view of a terminal with a front camera mounted thereon according to a camera mounting structure of the prior art; fig. 9 is a terminal front effect diagram after the front camera is installed on the front camera installation structure of the mobile terminal according to the present scheme, and it can be seen from the comparison between fig. 8 and fig. 9 that the ratio of the black border 16 to the display area 1 in fig. 8 is obviously greater than the ratio of the black border 16 to the display area 1 in fig. 9, that is, the occupation ratio of the front camera installation structure installation front camera screen of the mobile terminal according to the present scheme is greatly increased compared with that of the conventional installation structure screen.
Example two:
as shown in fig. 1 to 7, in this embodiment, the front camera mounting structure of a mobile terminal according to the present invention includes a display module and a camera module 14 overlapped with the display module, a lens of the camera module 14 is disposed toward the display module, and a light hole 13 capable of allowing light to pass through is disposed on the display module at a position corresponding to the lens.
Because the size of the camera lens in the camera module 14 is less than the size of the electrical components thereon, the display module and the camera module 14 are overlapped in the scheme, and the light transmission hole 13 is formed only in the display module at the position corresponding to the camera lens, so that the occupation of the camera module 14 exceeding the size of the lens part to the space can be reduced, the space occupied by the display module is increased, and the screen occupation ratio is improved. Through the design of this scheme, the juncture position of display screen and camera lens among the display module is for traditional structure more being close to the camera lens, and the display screen accounts for bigger proportion in whole equipment, can bring better visual sensation and user experience for the user.
In this embodiment, the display module includes a display screen composed of a display area 1 and a non-display area 2, the display area 1 is used for displaying an image, the non-display area 2 is used for connecting a control circuit, a surface of the display area 1 displaying the image is a front surface, a surface opposite to the front surface is a back surface, the non-display area 2 is located on one side of the back surface of the display area 1 and is overlapped with the display area 1, so that a display surface contour of the display area 1 is used as a display contour of the display module, and the light hole 13 is disposed at a position of the display area 1 near an edge.
In this embodiment, the non-display area 2 is arranged on the back of the display area 1, so that the whole display outline corresponds to the display area 1, the frame width of the display area 1 around the screen is reduced in the terminal using the display assembly, and the terminal can be ensured to have a larger screen occupation ratio.
In this embodiment, a cover glass is disposed on a side of the display module away from the camera module 14, and a circle of silk-screen printing ink is disposed on the cover glass corresponding to the periphery of the lens to form a glass silk-screen printing hole 15. As the display assembly is processed to form the light holes 13, the edges of the light holes 13 can be displayed on one side of the cover plate glass, in the scheme, the edges of the light holes 13 are shielded by a circle of silk-screen printing ink on the periphery of the cover plate glass corresponding to the lens, and the lens is exposed only in the center position, so that the best visual effect is achieved. In this embodiment, the light-transmitting hole 13, the glass screen printing hole 15 and the center of the lens are on the same axis.
Specifically, in order to better implement the technical scheme of the present invention, in this embodiment, the display screen is a flexible OLED screen, and the non-display area 2 is arranged on the back of the display area 1 by being folded.
Organic Light-Emitting diodes (OLEDs) are also called Organic electroluminescent displays (OLEDs) and Organic Light-Emitting Semiconductors (OEDs). Different types of lighting principles are known from Liquid Crystal Displays (LCDs). The Flexible OLED (FOLED) display screen is a display device manufactured on flexible plastic or metal thin film by utilizing OLED technology, and the basic structure of the Flexible OLED (FOLED) display screen is 'flexible substrate/ITO anode/organic functional layer, metal cathode', and the light-emitting mechanism is similar to that of OLED with common glass substrate. The flexible OLED screen has the characteristic of being bendable and capable of being cut at will, and therefore the non-display area 2 can be turned to the back of the display area 1 by the flexible OLED screen.
Example three:
as shown in fig. 1 to 7, in this embodiment, the front camera mounting structure of a mobile terminal according to the present invention includes a display module and a camera module 14 overlapped with the display module, a lens of the camera module 14 is disposed toward the display module, and a light hole 13 capable of allowing light to pass through is disposed on the display module at a position corresponding to the lens.
In this embodiment, the display module includes a display screen composed of a display area 1 and a non-display area 2, the display area 1 is used for displaying an image, the non-display area 2 is used for connecting a control circuit, a surface of the display area 1 displaying the image is a front surface, a surface opposite to the front surface is a back surface, the non-display area 2 is located on one side of the back surface of the display area 1 and is overlapped with the display area 1, so that a display surface contour of the display area 1 is used as a display contour of the display module, and the light hole 13 is disposed at a position of the display area 1 near an edge.
In this embodiment, the non-display area 2 is arranged on the back of the display area 1, so that the whole display outline corresponds to the display area 1, the frame width of the display area 1 around the screen is reduced in the terminal using the display assembly, and the terminal can be ensured to have a larger screen occupation ratio. The display screen is a flexible OLED screen, and the non-display area 2 is arranged on the back of the display area 1 in a turnover mode.
In the unfolded state, the screen assembly has a first surface facing the user and a second surface facing away from the user, and in the folded state, the second surface on the display area 1 and the first surface on the non-display area 2 are attached to each other.
The folding is to attach the non-display area 2 and the display area 1 on the back of the display area 1, that is, most of the main parts of the non-display area 2 and the display area 1 are parallel to each other.
Example four:
as shown in fig. 1 to 7, in this embodiment, the front camera mounting structure of a mobile terminal according to the present invention includes a display module and a camera module 14 overlapped with the display module, a lens of the camera module 14 is disposed toward the display module, and a light hole 13 capable of allowing light to pass through is disposed on the display module at a position corresponding to the lens.
In this embodiment, the display module includes a display screen composed of a display area 1 and a non-display area 2, the display area 1 is used for displaying an image, the non-display area 2 is used for connecting a control circuit, a surface of the display area 1 displaying the image is a front surface, a surface opposite to the front surface is a back surface, the non-display area 2 is located on one side of the back surface of the display area 1 and is overlapped with the display area 1, so that a display surface contour of the display area 1 is used as a display contour of the display module, and the light hole 13 is disposed at a position of the display area 1 near an edge. The display screen is a flexible OLED screen, and the non-display area 2 is arranged on the back of the display area 1 through folding.
Specifically, in this embodiment, the display area 1 has a rectangular structure, and an arc chamfer is formed between two adjacent edges.
The outline of the display surface of the display area 1 may vary according to the structure of the terminal in which the display module is used, and the display area 1 may have a rectangular structure when applied to a rectangular terminal, or may have other shapes when applied to a terminal having a circular, triangular, pentagonal, or other number of sides. In this embodiment, a rectangular terminal is taken as an example, the display area 1 is a rectangular structure, and in order to match the display surface profile of the terminal, an arc chamfer structure is arranged at four vertices of the rectangle in this embodiment.
Preferably, in order to improve the operability of mounting the display module in the terminal, the non-display region 2 is connected to the control circuit through an FPC3 in the present embodiment. An integrated circuit 4 (IC) is provided on the FPC3 to implement the display module specific electrical functions.
The FPC3 is also called a flexible printed circuit board, which is a highly reliable and excellent flexible printed circuit board made of polyimide or polyester film as a base material. The cable has the characteristics of high wiring density, light weight, thin thickness and good bending property. The FPC3 is adopted in the display assembly to connect the display screen and the control circuit, so that the display surface outline deformable performance of the display assembly can be improved, the FPC3 can be controlled to change according to different sizes of installation spaces in the installation process, the installation spaces are effectively utilized, and the thickness and the size of a terminal are reduced.
Example five:
as shown in fig. 1 to 7, in this embodiment, the front camera mounting structure of a mobile terminal according to the present invention includes a display module and a camera module 14 overlapped with the display module, a lens of the camera module 14 is disposed toward the display module, and a light hole 13 capable of allowing light to pass through is disposed on the display module at a position corresponding to the lens.
In this embodiment, the display module includes a display screen composed of a display area 1 and a non-display area 2 in an integrated structure, where the display area 1 is used for displaying an image, the non-display area 2 is used for connecting a control circuit, the non-display area 2 is located on the back of the display area 1, so that the display surface contour of the display area 1 is used as the display contour of the display module, and the light hole 13 is disposed at a position where the display area 1 is close to the edge. The display screen is a flexible OLED screen, and the non-display area 2 is arranged on the back of the display area 1 through turning over.
In the unfolded state, the screen assembly has a first surface facing the user and a second surface facing away from the user, and in the folded state, the second surface on the display area 1 and the first surface on the non-display area 2 are attached to each other. The folding is to attach the non-display area 2 and the display area 1 on the back of the display area 1, that is, most of the main parts of the non-display area 2 and the display area 1 are parallel to each other.
In this embodiment, the display area 1 has a rectangular structure, and an arc chamfer is formed between two adjacent edges.
The outline of the display surface of the display area 1 may vary according to the structure of the terminal in which the display module is used, and the display area 1 may have a rectangular structure when applied to a rectangular terminal, or may have other shapes when applied to a terminal having a circular, triangular, pentagonal, or other number of sides. In this embodiment, a rectangular terminal is taken as an example, the display area 1 is a rectangular structure, and in order to match the front profile of the terminal, an arc chamfer structure is arranged at four vertices of the rectangle in this embodiment.
In order to improve the operability of installing the display module in the terminal, in the embodiment, the non-display area 2 is connected with the control circuit through an FPC3, an integrated circuit 4 is disposed on the FPC3, and the integrated circuit 4 and the non-display area 2 are folded together to the back of the display area 1. A display screen enhancing element 5 is provided at a position where the display area 1 is connected to the non-display area 2.
By arranging the reinforcing element 5, the display area 1 can be prevented from being unnecessarily deformed due to stress generated by folding in the folding process, so that the subsequent installation and the display effect of the display screen are prevented from being influenced.
Specifically, the reinforcing element 5 is a reinforcing strip attached to the display screen, and the length direction of the reinforcing strip is arranged along the direction of the boundary between the display area 1 and the non-display area 2.
The display enhancement element 5 is in this embodiment arranged in the display area 1 and on the second surface. The display area 1 is provided with a first side edge 6, a second side edge 7, a third side edge 8 and a fourth side edge 9, the non-display area 2 is provided with a display connecting side edge 10, the first side edge 6 is connected with the display connecting side edge 10, and the display screen reinforcing element 5 is arranged on the first side edge 6 and positioned on one side of the second surface.
It should be noted that the position of the display screen enhancement element 5 in the present embodiment is not limited to the situation described in the present embodiment, and in other embodiments, the display screen enhancement element 5 may also be disposed in the non-display area 2 and located on the first surface.
The display assembly of this embodiment further includes a cover glass 11, the cover glass 11 is disposed on a side of the display assembly close to the operator and closely attached to the display area 1, and an outer contour of the cover glass 11 corresponds to a contour of a display surface of the display area 1.
Example six:
as shown in fig. 6 to 9, the present embodiment discloses a mobile terminal, which uses the front camera mounting structure described in any of the above embodiments to perform front camera mounting, and the mobile terminal has a housing 12 whose front contour corresponds to the contour of the display surface of the display area 1, the display screen assembly is fixedly mounted in the housing 12, the camera module 14 is disposed between the display assembly and the housing, and the periphery of the display area 1 contacts with the inner frame of the housing 12. The mobile phone adopting the display component can realize full-screen display on the front side of the mobile phone, eliminate the black edge 16 on the front side of the traditional mobile phone, greatly improve the screen occupation ratio, realize ultra-narrow frames and even no frames, and improve the product expressive force.
The present invention has been described above with reference to specific examples, but the present invention is not limited to these specific examples. It will be apparent to those skilled in the art that various modifications, equivalents, variations, and the like can be made to the present invention. However, such variations are within the scope of the invention as long as they do not depart from the spirit of the invention. In addition, some terms used in the specification and claims of the present application are not limiting, but are merely for convenience of description. Note that "first embodiment", "second embodiment", and the like described in the plural points above represent different embodiments, and it is needless to say that all or part of them may be combined in one embodiment.

Claims (8)

1. A front camera mounting structure of a mobile terminal is characterized by comprising a display component and a camera module overlapped with the display component, the lens of the camera module is arranged towards the display component, a light hole which can lead light to pass through is arranged at the position on the display component corresponding to the lens, the display assembly includes a display screen composed of a display area for displaying an image and a non-display area, the non-display area is used for connecting a control circuit, the surface of the display area displaying images is a front surface, the surface opposite to the front surface is a back surface, the non-display area is positioned on one side of the back surface of the display area and is overlapped with the display area, the outline of the display surface of the display area is used as the outline of the display assembly, and the light-transmitting holes are arranged at the edge positions of the display area;
a cover plate glass is arranged on one side, away from the camera module, of the display assembly, a circle of silk-screen printing ink is arranged on the cover plate glass corresponding to the periphery of the lens, and the silk-screen printing ink shields the edge of the light hole;
and the silk-screen printing ink forms a glass silk-screen hole on the cover plate glass, and the lens is exposed at the center of the glass silk-screen hole.
2. The front camera mounting structure of a mobile terminal according to claim 1, wherein the display area has a triangular structure, a rectangular structure or a pentagonal structure, and a circular arc chamfer is formed between two adjacent sides.
3. The front camera mounting structure of a mobile terminal according to claim 1, wherein the display area has a circular structure.
4. The front camera mounting structure of claim 1, wherein the display screen is a flexible OLED screen, the non-display area is disposed on a back surface of the display area by being folded, the display assembly has a first surface facing a user and a second surface facing away from the user in an unfolded state, and the second surface on the display area and the first surface on the non-display area are attached to each other in a folded state.
5. The front camera mounting structure of claim 4, wherein a display screen enhancing member is disposed at a position where the display area is connected to the non-display area, the display screen enhancing member being disposed in the display area and located on the second surface, or the display screen enhancing member being disposed in the non-display area and located on the first surface.
6. The front camera mounting structure of claim 5, wherein the display screen reinforcing member is a reinforcing strip attached to the display screen, and a length direction of the reinforcing strip is arranged along a boundary line direction between the display area and the non-display area.
7. The front camera mounting structure of a mobile terminal according to claim 1, wherein the cover glass is closely attached to the display area, and an outer contour of the cover glass corresponds to a display surface contour of the display area.
8. A mobile terminal characterized in that a front camera is mounted using the front camera mounting structure of the mobile terminal according to any one of claims 1 to 7.
CN201711318796.5A 2016-11-16 2016-11-16 Leading camera mounting structure and mobile terminal of mobile terminal Active CN107835277B (en)

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CN201611026574.1A CN106506742B (en) 2016-11-16 2016-11-16 Leading camera mounting structure and mobile terminal of mobile terminal

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