CN112135011B - Mobile communication terminal - Google Patents

Mobile communication terminal Download PDF

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Publication number
CN112135011B
CN112135011B CN201910553675.1A CN201910553675A CN112135011B CN 112135011 B CN112135011 B CN 112135011B CN 201910553675 A CN201910553675 A CN 201910553675A CN 112135011 B CN112135011 B CN 112135011B
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CN
China
Prior art keywords
display panel
module
front side
magnets
shooting
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Active
Application number
CN201910553675.1A
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Chinese (zh)
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CN112135011A (en
Inventor
朱赫名
韩高才
秦俊杰
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Beijing Xiaomi Mobile Software Co Ltd
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Beijing Xiaomi Mobile Software Co Ltd
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Priority to CN201910553675.1A priority Critical patent/CN112135011B/en
Publication of CN112135011A publication Critical patent/CN112135011A/en
Application granted granted Critical
Publication of CN112135011B publication Critical patent/CN112135011B/en
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N23/00Cameras or camera modules comprising electronic image sensors; Control thereof
    • H04N23/50Constructional details
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N23/00Cameras or camera modules comprising electronic image sensors; Control thereof
    • H04N23/56Cameras or camera modules comprising electronic image sensors; Control thereof provided with illuminating means
    • 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
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N23/00Cameras or camera modules comprising electronic image sensors; Control thereof
    • H04N23/60Control of cameras or camera modules

Abstract

The present disclosure relates to an electronic device, including: the body is provided with a shooting module and a first wireless transmission module, and the shooting module is arranged on the front side of the body; the display panel is detachably arranged on the front side or the rear side of the body and is provided with a second wireless transmission module matched with the first wireless transmission module; when the display panel is arranged on the front side of the body and is not in normal phase opposition to the body, at least one fixed state exists between the display panel and the body so that the shooting module is in a non-covering state. The display panel and the body are arranged separately, and data transmission and interaction are carried out through the corresponding wireless transmission module. Under the normal use state under the non-shooting state, display panel sets up in the front side of body and just is relative with the body, and display panel falls on the body front side at the orthographic projection of body front side completely, and at this moment, display panel covers the body front side, and the electronic equipment complete machine outward appearance does not have the shooting module.

Description

Mobile communication terminal
Technical Field
The present disclosure relates to the field of electronic technologies, and in particular, to an electronic device.
Background
In many electronic devices, such as mobile communication terminals (e.g., mobile phones), PDAs (Personal Digital assistants), mobile computers, and tablet computers, a front camera is usually disposed on the front of the electronic device to realize the functions of self-photographing and video call. However, most of the devices have a front camera that has a light hole on a front TP Panel (Touch Panel), and then the front camera is built in the front Panel, so that the front camera can work normally through the light hole.
However, such an approach generally causes two problems: first, set up the light trap on the front panel of equipment, can show out a black dot on the front panel, influence the outward appearance visual effect of equipment. Second, when the equipment will realize the design of comprehensive screen, because need set up the light trap on the front panel, can reduce the screen of front panel and account for than.
Disclosure of Invention
The present disclosure provides an electronic device including:
the body is provided with a shooting module and a first wireless transmission module, and the shooting module is arranged on the front side of the body;
the display panel is detachably arranged on the front side or the rear side of the body and is provided with a second wireless transmission module matched with the first wireless transmission module;
when the display panel is arranged on the front side of the body and is not in normal opposition to the body, at least one fixed state exists between the display panel and the body so that the shooting module is in a non-covering state.
Optionally, the body is further provided with a first adsorption module, the display panel is provided with a second adsorption module matched with the first adsorption module, and the second adsorption module is in adsorption fit with the first adsorption module, so that the display panel is adsorbed on the body.
Optionally, the first adsorption module comprises a plurality of first magnets, and the plurality of first magnets are arranged at intervals along the length direction of the body; the second adsorption module comprises a plurality of second magnets, and the plurality of second magnets are arranged at intervals along the length direction of the display panel.
Optionally, a spacing distance between two adjacent first magnets is a first spacing, a spacing distance between two adjacent second magnets is a second spacing, and the first spacing is the same as the second spacing.
Optionally, the first adsorption module further comprises a plurality of third magnets, wherein the plurality of first magnets are disposed on the front side of the body, and the plurality of third magnets are disposed on the rear side of the body.
Optionally, a recessed portion is formed in the front side of the body in a recessed manner, and the shooting module, the first wireless transmission module and the plurality of first magnets are arranged in the recessed portion at intervals along the length direction of the body.
Optionally, the first wireless transmission module and the second wireless transmission module are adapted millimeter wave communication modules.
Optionally, the body is provided with a guide groove, and the display panel is provided with a sliding part in sliding fit with the guide groove.
Optionally, the guide grooves are arranged on two sides of the body along the length direction of the body, and the sliding parts are arranged on two sides of the display panel.
The technical scheme provided by the embodiment of the disclosure can have the following beneficial effects:
according to the embodiment, the shooting module is arranged on the front side of the body, the display panel and the body can be separately arranged, and data transmission and interaction are carried out through the corresponding wireless transmission module. In a normal use state under a non-shooting state, the display panel is arranged on the front side of the body and is right opposite to the body, the orthographic projection of the display panel on the front side of the body completely falls on the front side of the body, at the moment, the display panel covers the front side of the body, and no shooting module is arranged on the outer surface of the whole electronic equipment; when needs carry out leading shooting, through removing display panel for it can to shoot the module and be in the non-state of covering, when needs rearmounted shooting, sets up display panel in the rear side of body, shoots the dorsal part that the module is in display panel this moment, can realize rearmounted shooting. Meanwhile, the light holes can be prevented from being formed in the display panel, the display panel is completely avoided, the space of the display panel is not occupied, the integrity of a screen of the display panel is not affected, the front-mounted camera shooting problem of the comprehensive screen electronic equipment is solved, and therefore the effect of full-screen display can be achieved.
It is to be understood that both the foregoing general description and the following detailed description are exemplary and explanatory only and are not restrictive of the disclosure.
Drawings
The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the present disclosure and together with the description, serve to explain the principles of the disclosure.
Fig. 1 is a perspective schematic view of an electronic device shown in accordance with an exemplary embodiment of the present disclosure.
Fig. 2 is a perspective view illustrating a body and a display panel of an electronic device according to an exemplary embodiment of the present disclosure separated from each other.
Fig. 3 is a schematic structural diagram illustrating a body and a display panel of an electronic device according to an exemplary embodiment of the present disclosure.
Fig. 4 is a schematic structural diagram illustrating a body and a display panel of an electronic device in one state according to an exemplary embodiment of the present disclosure.
Fig. 5 is a schematic structural diagram illustrating a body and a display panel of an electronic device in another state according to an exemplary embodiment of the present disclosure.
Fig. 6 is a schematic structural diagram of a body and a display panel of an electronic device in yet another state shown in the present disclosure according to an exemplary embodiment.
Detailed Description
Reference will now be made in detail to the exemplary embodiments, examples of which are illustrated in the accompanying drawings. The following description refers to the accompanying drawings in which the same numbers in different drawings represent the same or similar elements unless otherwise indicated. The implementations described in the exemplary embodiments below are not intended to represent all implementations consistent with the present disclosure. Rather, they are merely examples of apparatus and methods consistent with certain aspects of the present disclosure, as detailed in the appended claims.
The disclosure provides an electronic device to solve the problem that a front camera of the electronic device in the prior art occupies a space of a display panel. The electronic device of the present disclosure is described in detail below with reference to the accompanying drawings. The features of the following examples and embodiments may be combined with each other without conflict.
Referring to fig. 1 to 3, an embodiment of the present disclosure provides an electronic device including a body 10 and a display panel 20. The body 10 is provided with a shooting module 30 and a first wireless transmission module 40, and the shooting module 30 is arranged on the front side of the body 10. The display panel 20 is detachably disposed at the front side or the rear side of the body 10, and the display panel 20 is provided with a second wireless transmission module 50 matched with the first wireless transmission module 40. When the display panel 20 is disposed at the front side of the main body 10 and is not opposite to the main body 10, at least one fixed state exists between the display panel 20 and the main body 10, so that the camera module 30 is in a non-covering state, which will be described in detail later. Alternatively, the photographing module 30 may include a single camera or dual cameras.
It is understood that when the display panel 20 is disposed at the front side of the body 10, the electronic apparatus may include a photographing mode and a non-photographing mode. When the electronic device is in the shooting mode, the position of the display panel 20 on the front side of the body 10 can be changed by moving up and down or rotating, as long as the shooting module 30 can be ensured to be exposed out of the body 10, so that the display panel 20 and the body 10 are not in positive opposition. When the electronic device is in the non-shooting mode, the position of the display panel 20 arranged on the front side of the body 10 can be changed in a vertical moving or rotating mode, so that the display panel 20 is right opposite to the body 10, the orthographic projection of the display panel 20 on the front side of the body 10 completely falls on the front side of the body 10, at the moment, the display panel 20 covers the front side of the body 10, the shooting module 30 can be hidden in the body 10, and no shooting module is arranged on the outer surface of the whole electronic device. It should be noted that the size of the display panel 20 may be set to exactly match the size of the body 10. The position of the display panel 20 provided on the surface of the body 10 can be adjusted and changed, such as sliding, rotating, separating, etc., by moving the display panel 20. The display panel 20 may be provided at any position where the camera module 30 can be exposed from the main body 10, and the detailed description will be given below. The display panel 20 is arranged at a position where the shooting module 30 is hidden in the body 10, which means that the display panel 20 is completely attached to the body 10, so as to cover the shooting module 30, and no shooting module 30 is exposed outside the whole device, thereby forming a complete electronic device in appearance.
As can be seen from the above embodiments, in the electronic device of the present disclosure, the photographing module 30 is disposed at the front side of the main body 10, the display panel 20 is disposed separately from the main body 10, and the main body 10 and the display panel 20 cooperate with each other through the first wireless transmission module 40 and the second wireless transmission module 50 to implement data transmission and interaction. When the front shooting is needed, the display panel 20 is moved, so that the shooting module 30 is in a non-covering state, when the rear shooting is needed, the display panel 20 is arranged on the rear side of the body 10, and the shooting module 30 is located on the back side of the display panel 20 at the moment, so that the rear shooting can be realized. When the shooting function is not needed, in a normal use state in a non-shooting state, the display panel 20 is disposed at the front side of the body 10 and is right opposite to the body 10, and an orthographic projection of the display panel 20 on the front side of the body 10 completely falls on the front side of the body 10, at this time, the display panel 20 covers the front side of the body 10, and no shooting module is disposed on the external surface of the whole electronic device, as shown in fig. 1. Neither influence electronic equipment's outward appearance, also can avoid seting up the light trap on display panel 20 moreover, dodge completely and do not occupy display panel 20's space, can not influence the integrality of display panel 20 screen, solved comprehensive screen electronic equipment's leading problem of making a video recording to realize the effect that full face screen shows.
In an alternative embodiment, the electronic device of the present disclosure may be a mobile communication terminal (e.g., a mobile phone), a PDA (Personal Digital Assistant), a mobile computer, a tablet computer, or the like. The first wireless transmission module 40 and the second wireless transmission module 50 may use a short-range wireless transmission technology, and may realize data transmission between the main body 10 and the display panel 20 even if the display panel 20 is separated from the main body 10. For example, the first wireless transmission module 40 and the second wireless transmission module 50 may be adaptive millimeter wave communication modules, which are suitable for short-distance transmission and have the advantages of low power consumption, high transmission speed, and the like. The millimeter wave communication technology can effectively solve many problems faced by high-speed broadband wireless access due to its short wavelength and wide frequency band, and thus has a wide application prospect in short-distance communication. The first wireless transmission module 40 and the second wireless transmission module 50 may utilize millimeter wave communication technology to realize data transmission therebetween.
A controller may be disposed in the body 10, and the controller is electrically connected to the first wireless transmission module 40. The display panel 20 may be a touch panel, and when the display panel 20 receives a touch instruction of a user, the second wireless transmission module 50 transmits the touch instruction to the first wireless transmission module 40, the first wireless transmission module 40 transmits the touch instruction to the controller, the controller processes the touch instruction to obtain corresponding feedback information, and the second wireless transmission module 50 and the first wireless transmission module 40 cooperate with each other to transmit the feedback information to the display panel 20 for displaying and responding.
The body 10 can be provided with a power supply module, the first wireless transmission module 40 and the second wireless transmission module 50 can further integrate wireless charging modules matched with each other, and the electric energy of the power supply module can be transmitted to the display panel 20 to supply power to the display panel 20 through the mutual matching between the respective wireless charging modules of the first wireless transmission module 40 and the second wireless transmission module 50. Of course, a separate voltage module may be disposed inside the display panel 20 to realize separate charging.
In an alternative embodiment, the body 10 is further provided with a first adsorption module 60, the display panel 20 is provided with a second adsorption module 70 matched with the first adsorption module 60, and the second adsorption module 70 is matched with the first adsorption module 60 in an adsorption mode, so that the display panel 20 is adsorbed on the body 10. Through the mutual adsorption cooperation between first adsorption module 60 and the second adsorption module 70, can realize adsorbing display panel 20 on the body, and then realize that the detachable absorption of display panel 20 sets up in the surface of body 10.
Referring to fig. 4, when the electronic device needs to use the shooting function, the display panel 20 is disposed on the front side of the body 10 and is not directly opposite to the body 10, which may mean that the display panel 20 is moved to a position where the shooting module 30 is exposed from the body 10, for example, the display panel 20 is slid downward to a position where the shooting module 30 is exposed, and if the shooting module 30 is disposed on the front side of the body 10, the shooting module 30 is exposed from the body 10, so that the normal front shooting requirement can be met. If the photographing module 30 is provided on the back of the body 10, the normal rear photographing requirement can be realized. When the shooting function is not needed, the display panel 20 can be moved to a position where the shooting module 30 is hidden in the body 10, so that the shooting module 30 can be completely covered, as shown in fig. 1.
In order to more conveniently slide the display panel 20 relative to the body 10, the body 10 may be provided with a guide groove, and the display panel 20 may be provided with a sliding member slidably engaged with the guide groove. The display panel 20 slides along the guide groove of the body 10 through the sliding member, so that the display panel 20 can slide along a fixed sliding direction, and the display panel 20 and the body 10 can be fixed more stably by matching with the mutual adsorption matching between the first adsorption module 60 and the second adsorption module 70.
Optionally, the guide grooves are disposed on two sides of the body 10 along the length direction of the body 10, and the sliding members are disposed on two sides of the display panel 20. When the user pushes the display panel 20 to slide relative to the main body 10, the display panel can slide along the length direction of the main body 10, so that the sliding direction of the display panel 20 is prevented from deviating, and the operation is simpler and more convenient.
Referring to fig. 5, when the electronic device needs to use the shooting function, the display panel 20 is disposed on the front side of the body 10 and is not directly opposite to the body 10, which may mean that the display panel 20 is moved to a position where the shooting module 30 is exposed from the body 10, for example, the display panel 20 is rotated to a position where the shooting module 30 is exposed from the body 10, so that the shooting module 30 is exposed from the body 10, and if the shooting module 30 is disposed on the front side of the body 10, the normal front shooting requirement can be met. If the photographing module 30 is disposed on the back of the main body 10, the requirement of normal rear photographing can be achieved. When the shooting function is not needed, the display panel 20 can be moved to a position where the shooting module 30 is hidden in the body 10, so that the shooting module 30 can be completely covered, as shown in fig. 1.
In order to more conveniently realize the rotation of the display panel 20 relative to the body 10, the body 10 may be provided with a pivot hole, and the display panel 20 may be provided with a pivot piece pivotally engaged with the pivot hole. The display panel 20 rotates relative to the pivot hole of the body 10 through the pivot member, so that the display panel 20 can rotate along a fixed rotation direction, and the display panel 20 and the body 10 can be fixed more stably by the mutual absorption and matching between the first absorption module 60 and the second absorption module 70.
Optionally, the pivot hole may be disposed at a middle position of the body 10, and the pivot member is disposed at a corresponding position on the display panel 20, so that the display panel 20 is stressed more uniformly when rotating relative to the body 10, and the display panel 20 is prevented from being separated from the body 10 due to uneven stress when rotating, which is safer and more convenient to operate.
In an alternative embodiment, the first adsorption module 60 includes a plurality of first magnets 61, and the plurality of first magnets 61 are spaced apart along the length direction of the body 10. The second adsorption module 70 includes a plurality of second magnets disposed at intervals along a length direction of the display panel 20.
The plurality of first magnets 61 and the plurality of second magnets 71 are respectively arranged along the length direction of the body 10 and the display panel 20 at intervals, and can maximally cover the whole surfaces of the body 10 and the display panel 20, so as to ensure that when the display panel 20 moves relative to the body 10 to any position where the photographing module 30 can be exposed out of the body 10, the first adsorption module 60 and the second adsorption module 70 can be firmly adsorbed to each other through the adsorption fit between the first magnets 61 and the second magnets 71, and further ensure that the body 10 and the display panel 20 are more stably fixed to each other.
Optionally, the number of the first magnets 61 is the same as the number of the second magnets, a distance between two adjacent first magnets 61 is a first interval, a distance between two adjacent second magnets is a second interval, and the first interval is the same as the second interval. Thus, when the display panel 20 moves to the position where the camera module 30 is hidden in the body 10, each first magnet 61 can be attracted to the corresponding second magnet 71, so as to provide a greater attraction force to the display panel 20 and the body 10, and the display panel 20 and the body 10 can be fixed together more stably. In this embodiment, the first magnets 61 are disposed at equal intervals, so that the body 10 and the display panel 20 are attracted to each other more uniformly.
Referring to fig. 6, when the electronic device needs to use the shooting function, the display panel 20 can be detached from the front side of the main body 10 (which can be understood as the front side of the main body 10) and attached to the rear side of the main body 10 (which can be understood as the back side of the main body 10), in which case the shooting module 30 can achieve the normal rear shooting requirement. When the shooting function is not needed, the display panel 20 can be moved to a position where the shooting module 30 is hidden in the body 10, so that the shooting module 30 can be completely covered, as shown in fig. 1.
In order to ensure that the display panel 20 can be attached to the main body 10 with sufficient attaching force even after being attached to the rear side of the main body 10, the first attaching module 60 may further include a plurality of third magnets disposed on the rear side of the main body 10, and a plurality of first magnets disposed on the front side of the main body 10. The plurality of third magnets may be arranged in the same manner as the plurality of first magnets. Thus, when the display panel 20 is attached to the rear side of the main body 10, the display panel can be firmly connected to the main body 10. No matter which side surface of the body 10 the display panel 20 is attached to, the second magnet of the second adsorption module 70 may generate sufficient adsorption force with the first magnet or the third magnet of the first adsorption module 60 located close to each other to ensure the stability of the mutual fixation between the display panel 20 and the body 10.
Of course, the display panel 20 is not limited to the three cases shown in fig. 4 to 6 when the display panel 20 is disposed on the front side of the body 10 and is not opposite to the body 10 when the display panel 20 is moved to the position where the camera module 30 can be exposed from the body 10 and the camera module 30 is exposed from the body 10, and may be disposed according to actual situations, which is not limited by the present disclosure. Therefore, the display panel 20 can be put in multiple positions and multiple purposes relative to the main body 10, and the heating technological feeling and user experience of the product can be greatly improved.
In an alternative embodiment, the photographing mode includes a first photographing mode and a second photographing mode.
When the electronic device is in the first photographing mode, the display panel 20 may be attached to the front side of the main body 10, and the display panel is movably disposed at the front side of the main body 10 so that the photographing module 30 is exposed from the main body 10, which may be understood as a scene in which the photographing module 30 is used as a front-view photographing, as shown in fig. 4 and 5. When the electronic device is in the second shooting mode, the display panel 20 may be taken down from the front side of the main body 10 and then attached to the rear side of the main body 10, so that the shooting module 30 may be exposed from the main body 10, which may be understood as a scene in which the shooting module 30 is used for rear-view shooting, as shown in fig. 6.
Further, a recessed portion 11 is formed by inwardly recessing the front side of the body 10, and the photographing module 30 and the plurality of first magnets 61 are disposed in the recessed portion 11 at intervals along the length direction of the body 10. The photographing module 30 is disposed in the recess 11, so as to ensure the flatness of the surface of the body 10, and prevent the photographing module 30 from protruding out of the body 10 to damage the flatness, so that the display panel 20 cannot be sufficiently fixed to the body 10 by mutual adsorption.
In an alternative embodiment, the first wireless transmission module 40 may also be disposed in the recess 11, and the photographing module 30, the first wireless transmission module 40 and the plurality of first magnets 61 are disposed in the recess 11 at intervals along the length direction of the body 10. The plurality of first magnets 61 of the first wireless transmission module 40 and the first adsorption module 60 are disposed in the recess 11, so as to ensure the flatness of the surface of the body 10, and prevent the surface of the camera module 30 protruding from the body 10 from damaging the flatness, and thus the display panel 20 cannot be sufficiently adsorbed and fixed to the body 10.
After the display panel 20 and the main body 10 are fixed to each other by the attraction, there is no barrier between the first magnets 61 of the first wireless transmission module 40 and the first attraction module 60 and the second magnets 71 of the second wireless transmission module 50 and the second attraction module 70 disposed on the display panel 20, so that the transmission performance and the attraction effect between them are better. Of course, in other examples, the plurality of first magnets 61 of the first wireless transmission module 40 and the first adsorption module 60 may be provided inside the body 10.
Accordingly, the display panel 20 may also be provided with a recess structure like the recess 11 for accommodating the second magnet 71 of the second wireless transmission module 50 and the second adsorption module 70. The second magnets 71 of the second wireless transmission module 50 and the second adsorption module 70 may be disposed inside the display panel 20, and may be disposed according to actual requirements.
According to the electronic device, the shooting module 30 is arranged on the body 10, the display panel 20 and the body 10 are arranged in a separable mode, and data transmission is achieved between the body 10 and the display panel 20 through the mutual matching of the first wireless transmission module 40 and the second wireless transmission module 50. When the shooting function is needed, the display panel 20 is moved to the position where the shooting module 30 is exposed out of the body 10, so that the shooting module 30 is exposed out of the body 10, and the normal front-end and rear-end shooting requirements can be met. When the photographing function is not required, the display panel 20 is moved to a position where the photographing module 30 is hidden in the main body 10, so that the photographing module 30 can be covered. Only one shooting module 30 is needed to satisfy the functions of front and rear shooting at the same time. The first adsorption module 60 and the second adsorption module 70 are mutually adsorbed and matched, so that the body 10 and the display panel 20 are adsorbed and fixed. The display panel 20 can be put in multiple positions and multiple purposes relative to the main body 10, and the heating technological feeling and the user experience of the product can be greatly improved.
In an alternative embodiment, the body 10 may be further provided with a flash lamp, and the flash lamp may be provided at a position close to the photographing module 30. When the electronic device needs to use the shooting function, the flash lamp can assist the shooting module 30 in lighting, and then the shooting effect is improved.
Other embodiments of the disclosure will be apparent to those skilled in the art from consideration of the specification and practice of the disclosure disclosed herein. This disclosure is intended to cover any variations, uses, or adaptations of the disclosure following, in general, the principles of the disclosure and including such departures from the present disclosure as come within known or customary practice in the art to which the disclosure pertains. It is intended that the specification and examples be considered as exemplary only, with a true scope and spirit of the disclosure being indicated by the following claims.
It will be understood that the present disclosure is not limited to the precise arrangements described above and shown in the drawings and that various modifications and changes may be made without departing from the scope thereof. The scope of the present disclosure is limited only by the appended claims.

Claims (7)

1. A mobile communication terminal, comprising:
the camera comprises a body, a camera module and a first wireless transmission module, wherein the camera module is arranged on the front side of the body;
the display panel is detachably arranged on the front side or the rear side of the body, the position of the display panel arranged on the front side of the body can be changed in a vertical moving or rotating mode, and the display panel is provided with a second wireless transmission module matched with the first wireless transmission module;
when the display panel is arranged on the front side of the body and is not in normal opposition to the body, at least one fixed state exists between the display panel and the body so that the shooting module is in a non-covering state;
in a first state, the display panel is arranged on the front side of the body and moves to a position for hiding the shooting module in the body, so that the shooting module is completely covered;
in a second state, the display panel is arranged on the front side of the body and is not opposite to the body, and the shooting module is exposed out of the position of the body;
in a third state, the shooting module is arranged on the back of the body;
the body is further provided with a first adsorption module, the display panel is provided with a second adsorption module matched with the first adsorption module, and the second adsorption module is in adsorption fit with the first adsorption module so that the display panel is adsorbed on the surface of the body;
the first adsorption module comprises a plurality of first magnets which are arranged at intervals along the length direction of the body; the second adsorption module comprises a plurality of second magnets, and the plurality of second magnets are arranged at intervals along the length direction of the display panel.
2. The mobile communication terminal of claim 1, wherein the number of the first magnets is the same as the number of the second magnets, a distance between two adjacent first magnets is a first interval, a distance between two adjacent second magnets is a second interval, and the first interval is the same as the second interval.
3. The mobile communication terminal of claim 1, wherein the first adsorption module further comprises a plurality of third magnets, wherein the plurality of first magnets are disposed at a front side of the body, and the plurality of third magnets are disposed at a rear side of the body.
4. The mobile communication terminal according to claim 3, wherein a recess is formed by inwardly recessing the front side of the body, and the photographing module, the first wireless transmission module and the plurality of first magnets are disposed in the recess at intervals along a length direction of the body.
5. The mobile communication terminal of claim 1, wherein the first wireless transmission module and the second wireless transmission module are adapted millimeter wave communication modules.
6. The mobile communication terminal according to claim 1, wherein the body is provided with a guide groove, and the display panel is provided with a sliding member slidably engaged with the guide groove.
7. The mobile communication terminal according to claim 6, wherein the number of the guide grooves is two, the guide grooves are disposed on both sides of the body along a length direction of the body, and the sliding member is disposed on both sides of the display panel.
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CN112135011B true CN112135011B (en) 2023-02-17

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