WO2021114512A1 - 带旋转屏的全面屏、控制方法、移动终端及可读存储介质 - Google Patents

带旋转屏的全面屏、控制方法、移动终端及可读存储介质 Download PDF

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Publication number
WO2021114512A1
WO2021114512A1 PCT/CN2020/081756 CN2020081756W WO2021114512A1 WO 2021114512 A1 WO2021114512 A1 WO 2021114512A1 CN 2020081756 W CN2020081756 W CN 2020081756W WO 2021114512 A1 WO2021114512 A1 WO 2021114512A1
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WIPO (PCT)
Prior art keywords
screen
display area
rotating
main
full
Prior art date
Application number
PCT/CN2020/081756
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English (en)
French (fr)
Inventor
袁鹏
Original Assignee
上海传英信息技术有限公司
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Publication date
Application filed by 上海传英信息技术有限公司 filed Critical 上海传英信息技术有限公司
Priority to CN202080085846.3A priority Critical patent/CN114868373A/zh
Publication of WO2021114512A1 publication Critical patent/WO2021114512A1/zh

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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
    • H04M1/0266Details of the structure or mounting of specific components for a display 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
    • H04M1/0264Details of the structure or mounting of specific components for a camera module assembly
    • 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

Definitions

  • This application relates to the technical field of mobile terminals, and in particular to a full screen with a rotating screen, a control method, a mobile terminal and a readable storage medium.
  • the dual-screen solution is to cancel the front camera on the front, add a secondary screen on the back cover, use the rear camera to replace the front camera function, and use the secondary screen to realize the Selfie function when taking a selfie.
  • the dual-screen solution adds an extra screen to the back cover of the whole machine, the cost of the whole machine will increase, and the thickness of the whole machine will increase by about 0.8-1.2mm, and the switching of the front and rear screens during selfies gives users a poorer experience.
  • the front camera is hidden behind the screen, and when taking a selfie, the screen slides down to expose the front camera to realize the Selfie function.
  • the sliding cover solution puts the camera behind the screen, increasing the thickness of the whole machine, and the biggest problem with the sliding cover design is the poor dustproof design.
  • the front camera In the lifting front camera solution, the front camera is also hidden behind the screen, and the front camera will automatically rise when taking a selfie to realize the Selfie function.
  • the lift-type front camera solution puts the camera behind the screen, increasing the thickness of the whole machine.
  • the main purpose of this application is to propose a full screen with a rotating screen, a control method, a mobile terminal, and a readable storage medium, aiming to solve the technical problem of the high screen ratio of the full screen front camera in the prior art.
  • this application proposes a full screen with a rotating screen, including a main screen and a secondary screen.
  • the front of the main screen is provided with a main display area
  • the front of the secondary screen is provided with a main display area suitable for the main display. Equipped with a secondary display area, and a camera module is provided on the back of the secondary screen;
  • the main display area and the secondary display area are spliced and displayed as a whole; when the secondary screen is set at the second position, the camera module performs proactive shooting.
  • the main screen is fixedly connected to the rotating mechanism, and the rotating mechanism is linked to the secondary screen;
  • the first position is a position where the angle between the secondary display area and the front display area is 0 degrees
  • the second position is a position where the angle between the secondary display area and the front display area is 180 degrees;
  • the secondary screen Upon receiving the rotation instruction, the secondary screen is rotated by 180 degrees under the drive of the rotating mechanism, so that the secondary display area is set at the first position, so that the primary display area and the secondary display area can be separated from each other.
  • the overall display is spliced, or the secondary display area is set at the second position, so that the camera module and the main display area are on the same plane.
  • the rotating mechanism includes a first screw and a motor, the motor is arranged in the main screen, the motor is drivingly connected to the first screw, and the first screw is connected to the auxiliary Screen linkage connection.
  • the secondary screen is raised from the main screen by the first screw, and after the first screw drives the secondary screen to rotate 180 degrees, the first screw shrinks so that the The secondary screen and the main screen are spliced together.
  • the rotating mechanism is a second screw, and the secondary screen can be rotated and fixed on the main screen by the second screw.
  • the full screen with a rotating screen further includes a splicing frame, the secondary screen is spliced with the main screen through the splicing frame, and the splicing frame is a transparent frame.
  • the shape of the secondary screen is a symmetrical polygon.
  • the present application also provides a method for controlling a full screen with a rotating screen, which is applied to a full screen with a rotating screen.
  • the full screen includes a main screen and a sub-screen.
  • the front of the main screen is provided with a main display area, and the sub-screen is On the front side of the device is provided with a secondary display area adapted to the main display area, and on the back of the secondary screen is provided with a camera module, including the following steps:
  • the camera module of the secondary screen is activated.
  • the first position is a position where the angle between the sub display area and the front display area is 0 degrees
  • the second position is a position where the angle between the sub display area and the front display area is 180 degrees
  • the step of judging whether the secondary screen is set at the first position includes:
  • the full screen with a rotating screen further includes a rotating mechanism, the rotating mechanism includes a first screw and a motor, and the step of controlling the secondary screen to rotate from the first position to the second position includes :
  • the driving motor drives the first screw rod to raise the secondary screen and rotate it 180 degrees to drive the secondary screen to rotate 180 degrees from the first position to the second position.
  • the method before the step of judging whether the secondary screen is set at the first position when the pre-photographing instruction is received, the method further includes:
  • the method further includes:
  • the present application also provides a mobile terminal.
  • the mobile terminal includes a memory, a processor, and computer-readable instructions stored on the memory and running on the processor, and the computer-readable instructions are When the processor executes, the steps of the method for controlling a full screen with a rotating screen as described in any one of the above are implemented.
  • the present application also provides a readable storage medium having computer readable instructions stored on the readable storage medium, and when the computer readable instructions are executed by a processor, the device with a rotating screen as described in any one of the above Steps of the full-screen control method.
  • FIG. 1 is a schematic diagram of the device structure of the hardware operating environment involved in the solution of the embodiment of the present application;
  • Figure 2 is a front view of an embodiment of a full screen with a rotating screen according to the present application
  • FIG. 3 is a back view of an embodiment of a full screen with a rotating screen according to this application;
  • Figure 4 is a structural flow chart of the automatic rotation of a full screen with a rotating screen in this application;
  • Figure 5 is a structural flow chart of manual rotation of a full screen with a rotating screen in this application.
  • Fig. 6 is a schematic flow chart of a method for controlling a full screen with a rotating screen according to the present application.
  • FIG. 1 is a schematic diagram of the device structure of the hardware operating environment involved in the solution of the embodiment of the present application.
  • the mobile terminal may include: a processor 1001, such as a CPU, a network interface 1004, a user interface 1003, a memory 1005, and a communication bus 1002.
  • the communication bus 1002 is used to implement connection and communication between these components.
  • the user interface 1003 may include a display screen (Display) and an input unit such as a keyboard (Keyboard), and the optional user interface 1003 may also include a standard wired interface and a wireless interface.
  • the network interface 1004 may optionally include a standard wired interface and a wireless interface (such as a WI-FI interface).
  • the memory 1005 may be a high-speed RAM memory, or a non-volatile memory (non-volatile memory), such as a magnetic disk memory.
  • the memory 1005 may also be a storage device independent of the aforementioned processor 1001.
  • terminal structure shown in FIG. 1 does not constitute a limitation on the terminal, and may include more or less components than shown in the figure, or combine some components, or arrange different components.
  • a memory 1005 as a computer-readable storage medium may include an operating system, a network communication module, a user interface module, and computer-readable instructions.
  • the network interface 1004 is mainly used to connect to a back-end server and perform data communication with the back-end server; the user interface 1003 is mainly used to connect to a client and perform data communication with the client; and the processor 1001 can be used to
  • the computer-readable instructions stored in the memory 1005 are called, and the operations in the following embodiments of the full-screen control method with a rotating screen are executed.
  • This application proposes a full screen with a rotating screen.
  • Figure 2 is a front view of an embodiment of a full screen with a rotating screen in this application;
  • Figure 3 is the back of an embodiment of a full screen with a rotating screen in this application Figure.
  • the full screen with rotating screen includes:
  • the main screen 10 and the sub screen 20 the front of the main screen 10 is provided with a main display area 100, the front of the sub screen 20 is provided with a sub display area 200 adapted to the main display area 100, and the back of the sub screen 20 is provided with a camera module 201;
  • the main display area 100 and the secondary display area 200 can be spliced and displayed as a whole; when the secondary screen 20 is set at the second position, the camera module 201 can perform proactive shooting.
  • the first position may be a position where the angle between the sub display area 200 and the front display area 100 is 0 degrees
  • the second position may be a position where the angle between the sub display area 200 and the front display area 100 is 180 degrees.
  • the secondary screen 20 can rotate 180 degrees around the rotating mechanism, so that the secondary display area 200 and the main display area 100 are on the same plane, realizing the splicing of the main display area 100 and the secondary display area 200 as a whole Display or make the camera module 201 and the main display area 100 on the same plane.
  • the front of the main screen 10 is provided with a main display area 100
  • the front of the sub-screen 20 is provided with a sub-display area 200.
  • the main display area 100 and the sub-display area 200 can cooperate with each other to display a full-screen display interface. Through the cooperation of the main display area 100 and the sub display area 200, the screen-to-body ratio is effectively increased, and the problem of a high screen-to-body ratio caused by a camera set on the front of the full screen is avoided.
  • the camera module 201 on the back of the secondary screen 20 can be rotated 180 degrees from the back, the camera module 201 and the main display area 100 on the front of the main screen 10 are on the same plane, thereby realizing the camera module 201 Front, and then realize the front shooting function.
  • the camera module 201 includes a camera and a flash, and the number of cameras is not limited.
  • the full screen with rotating screen of the present application through the cooperation of the main screen 10 and the auxiliary screen 20, when the auxiliary screen 20 is set in the first position, the main display area 100 and the auxiliary display area 200 can be spliced and displayed as a whole; the auxiliary screen 20 is set in the first position.
  • the camera module 201 can be used for forward shooting; when front shooting is required, if the secondary screen 20 is in the first position, the secondary screen 20 can be rotated from the first position to the second position, so that the secondary screen
  • the camera module 201 on the back of the 20 is on the same plane as the front of the main screen 10, so as to realize the front shooting function of the rear camera.
  • This application realizes a full screen and increases the screen-to-body ratio; the shared rear camera realizes the front shooting function, which saves the cost of the whole machine; it does not increase the superimposing mechanism and does not increase the thickness of the whole machine.
  • the secondary screen 20 directly triggers the camera function, which simplifies the operation process; the separate secondary screen 20 can implement multiple information prompt functions and achieve power saving effects.
  • the full screen with a rotating screen also includes a rotating mechanism, the main screen 10 is fixedly connected to the rotating mechanism, and the rotating mechanism is linked to the secondary screen 20;
  • the first position is the clamp between the secondary display area 200 and the front display area 100 The angle is a position of 0 degrees, and the second position is a position where the angle between the secondary display area 200 and the front display area 100 is 180 degrees;
  • the secondary screen 20 Upon receiving the rotation command, the secondary screen 20 is driven by the rotating mechanism to rotate 180 degrees so that the secondary display area 200 is set at the first position to realize the spliced overall display of the primary display area 100 and the secondary display area 200, or The secondary display area 200 is set at the second position, so that the camera module 201 and the main display area 100 are on the same plane.
  • the rotating mechanism is fixed in the main screen 10, the rotating mechanism is controlled manually or automatically, and the rotating mechanism is linked to the auxiliary screen 20, so that the rotating mechanism drives the auxiliary screen 20 to rotate on the main screen 10.
  • the camera module 201 on the back of the secondary screen 20 can be rotated 180 degrees from the back, and the camera module 201 is on the same plane as the main display area 100 on the front of the main screen 10, thereby realizing the camera module 201 front, and then realize the front shooting function.
  • the rotating mechanism includes a first screw 300 and a motor 301, the motor 301 is arranged in the main screen 10, the motor 301 is drivingly connected to the first screw 300, and the first screw 300 is linked to the auxiliary screen 20.
  • the rotating mechanism can be automatically controlled.
  • the rotating mechanism includes a first screw 300 and a motor 301.
  • the motor 301 is used to drive the first screw 300 to rotate.
  • the motor 301 drives the first screw 300 to rotate, and the first screw 300 drives the secondary screen 20 to rotate, which can be clockwise or It can be rotated counterclockwise.
  • the secondary screen 20 rotates to the same plane as the camera module 201 and the main display area 100, it means that the terminal is in the front-shooting mode at this time, and the camera module 201 can be activated.
  • the secondary screen 20 is raised on the main screen 10 by the first screw 300. After the secondary screen 20 rotates 180 degrees around the first screw 300, the first screw 300 shrinks, so that the secondary screen 20 and the main screen 10 are realized Splicing.
  • the motor 301 pushes the first screw 300 to rise while driving the first screw 300 to rotate, thereby driving the secondary screen 20 to rise and rotate at the same time.
  • the camera module When 201 rotates to the same plane as the main display area 100 it means that the camera module 201 has been rotated from the rear camera to the front camera.
  • the motor 301 drives the first screw 300 to contract, so that the secondary screen 20 and the main screen 10 are seamlessly spliced , To achieve the integrity of the full screen.
  • the rotating mechanism is a second screw rod 302, and the secondary screen 20 can be rotated and fixed on the main screen 10 through the second screw rod 302.
  • the rotating mechanism can also be manually controlled, and the motor 301 is not required to be electrically controlled. Therefore, the rotating mechanism may also be the second screw rod 302.
  • the secondary screen 20 is manually rotated, so that the camera module 201 rotates to be in line with the main display area 100. On the same plane, at this time, the camera module 201 is activated to realize the photographing function.
  • the full screen with a rotating screen further includes a splicing frame (not shown), the secondary screen 20 is spliced with the main screen 10 through the splicing frame, and the splicing frame is a transparent frame.
  • the splicing frame between the secondary screen 20 and the main screen 10 can be made into a transparent design, and the width can be at least less than 1mm, so that no obvious splicing black borders will be seen during normal display, making the front screen The visual effect is a complete screen.
  • the shape of the secondary screen 20 is a symmetrical polygon.
  • the shape of the secondary screen 20 may be a symmetrical polygon, such as an isosceles right-angled triangle.
  • the shape of the main screen 10 is a polygon that matches the secondary screen 20, that is, the hypotenuse of the isosceles right-angled triangle and the main screen The long sides of the splicing are equal.
  • the full screen is rectangular.
  • the shape of the secondary screen 20 is an isosceles right triangle, the secondary screen 20 can be set in the upper left corner, the lower left corner, the upper right corner or the lower right corner of the full screen. Behind the secondary screen 20 of waist triangle, the shape of the main screen 10 is formed.
  • the shape of the secondary screen 20 is not limited to the isosceles triangle as shown in the figure, but can also be other symmetrical polygons such as a square, such as a rectangle, as long as the secondary screen 20 and the main screen 10 can be spliced into a full-screen shape in the prior art.
  • the method is a simple modification and transformation of this case, and falls within the scope of protection of this case.
  • This application also provides a method for controlling a full screen with a rotating screen, which is applied to the full screen with a rotating screen as described above.
  • a method for controlling a full screen with a rotating screen includes:
  • Step S10 When receiving the front shooting instruction, it is judged whether the secondary screen is set in the first position;
  • the mobile terminal includes the aforementioned full screen with a rotating screen, including a main screen, a sub-screen and a rotating mechanism.
  • the front of the main screen is provided with a main display area
  • the front of the sub-screen is provided with a A secondary display area adapted to the main display area
  • a camera module is provided on the back of the secondary screen; when the secondary screen is set at the first position, the main display area and the secondary display area can be spliced and displayed as a whole; When the secondary screen is set at the second position, the camera module can perform proactive shooting.
  • the first position can be the position where the angle between the secondary display area 200 and the front display area 100 is 0 degrees
  • the second position can be the secondary display
  • the angle between the area 200 and the front display area 100 is 180 degrees. Since the front of the sub-screen is the sub-display area, it is used for splicing the overall display with the main display area; the back of the sub-screen is the camera module. When the back of the main screen is on the same plane as the back of the main screen, the camera module can be used as a rear camera for daily photography; when the back of the secondary screen is rotated to the same plane as the front of the main screen, the camera module is used as a front camera.
  • the secondary screen by detecting whether the secondary screen is set in the first position, it can be detected whether the secondary display area of the secondary screen and the main display area of the primary screen are on the same plane, and it can be determined whether the secondary screen needs to be rotated.
  • Step S20 If yes, control the secondary screen to rotate from the first position to the second position;
  • the secondary screen when it is determined that the secondary screen is set at the first position, that is, it is determined that the secondary display area of the secondary screen is on the same plane as the main display area of the primary screen, indicating that the camera module on the back of the secondary screen is in the rear camera setting. Therefore, The camera module needs to be rotated.
  • the secondary screen can be rotated by 180 degrees through the rotating mechanism, and the camera module can be rotated to the same plane as the main display area.
  • the rotating mechanism can be controlled automatically or manually.
  • the automatic control method is that the rotating mechanism includes a first screw and a motor, the motor is arranged in the main screen, the motor is drivingly connected to the first screw, and the first screw is connected to the auxiliary screen. Linkage connection.
  • the motor drives the first screw to rotate, and the first screw drives the secondary screen to rotate. It can be clockwise or counterclockwise.
  • the secondary screen rotates to the same plane as the camera module and the main display area, it means this
  • the camera module can be started.
  • the rotating mechanism is a second screw rod, and the secondary screen can be rotated and fixed on the main screen through the second screw rod.
  • the secondary screen When the user needs to take a front shot, under the action of the second screw, the secondary screen is manually rotated so that the camera module rotates to the same plane as the main display area. At this time, the camera module is activated to realize the photographing function. Specifically: the secondary screen and the main screen are linked by the second screw.
  • the secondary screen and the main screen are linked by the second screw.
  • Step S30 When it is detected that the secondary screen is at the second position, start the camera module of the secondary screen based on the pre-shooting instruction.
  • the camera module of the secondary screen is activated based on the front shooting instruction.
  • the camera module and the main display area are on the same plane, which means that the camera module is in a proactive setting, and then pre-shooting can be performed.
  • the main display area and the secondary display area can be spliced and displayed as a whole;
  • the camera module can be used for front-shooting shooting; when front-facing shooting is required, if the second screen is in the first position, the second screen can be rotated from the first position to the second position.
  • the camera module on the back of the secondary screen is in the same plane as the front of the main screen, so that the front camera function of the rear camera is realized.
  • This application realizes a full screen and increases the screen-to-body ratio; the shared rear camera realizes the front shooting function, which saves the cost of the whole machine; it does not increase the superimposing mechanism and does not increase the thickness of the whole machine.
  • the secondary screen directly triggers the camera function, which simplifies the operation process; a separate secondary screen can realize a variety of information prompt functions to save power.
  • step S10 includes:
  • the first position may be a position where the angle between the sub display area 200 and the front display area 100 is 0 degrees
  • the second position may be a position where the angle between the sub display area 200 and the front display area 100 is 180 degrees.
  • the sub-screen 20 receives a rotation command
  • the sub-screen 20 can rotate 180 degrees around the rotation mechanism so that the sub-display area 200 and the main display area 100 are on the same plane, so that the main display area 100 and the sub-display area 200 can be separated
  • the whole display is spliced, that is, the secondary screen is set at the first position, or the camera module 201 and the main display area 100 are on the same plane, that is, the secondary screen is set at the second position.
  • Step S20 includes:
  • the driving motor drives the first screw rod to raise the secondary screen and rotate it 180 degrees to drive the secondary screen to rotate 180 degrees from the first position to the second position.
  • the secondary screen when the front camera instruction is received, it is determined whether the secondary screen is set to the first position. If so, it means that the camera module of the secondary screen is at a position opposite to the main display area of the main screen and needs to be rotated.
  • automatic control can be used. Specifically:
  • the sub-screen In the front shooting mode, touch the switch camera button, the sub-screen is driven by the motor, and rotates 180° while rising, turning the camera module to the front to take pictures; you can directly press the function button on the standby interface, and the front panel is triggered while rotating the module Set shooting function, directly enter the front shooting mode to complete the front shooting.
  • the rotation of the secondary screen can adopt manual control mode, and the rotating mechanism can also be a second screw.
  • the secondary screen can be manually rotated to make the camera model The group rotates to the same plane as the main display area. At this time, the camera module is activated to realize the photographing function.
  • the method for controlling the full screen with rotating screen may further include:
  • the rotation mechanism controls the secondary screen to be set to the first position, that is, the rotation mechanism controls the secondary display area and the main display area to be on the same plane
  • the secondary display area can be controlled to display the first screen corresponding to the first display instruction.
  • the sub-display area can display the same picture as the main display area of the main screen, which can be spliced into a complete picture, or it can separately display information such as weather, time, caller ID or playing music to save power.
  • the method for controlling the full screen with rotating screen may further include:
  • the secondary screen when the second display instruction is received, the secondary screen is controlled to be set to the second position through the rotating mechanism; that is, when the camera module and the main display area are on the same plane, the display of the secondary display area is controlled to be on the same plane as the main display area.
  • the second screen corresponding to the second display instruction.
  • the camera module After the camera module is rotated to the front by the rotating mechanism, it forms a complete full screen with the polygonal main screen, which is the second form of the overall appearance.
  • Simple prompt messages can also be displayed in the auxiliary display area on the front of the auxiliary screen. Or display the same pattern as the back of the terminal device to form a complete whole machine effect.
  • the present application also provides a computer-readable storage medium, and the computer-readable storage medium may be a non-volatile readable storage medium.
  • the computer-readable storage medium of the present application stores computer-readable instructions, and when the computer-readable instructions are executed by a processor, the steps of the above-mentioned method for controlling a full-screen with a rotating screen are realized.

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Abstract

本申请公开一种带旋转屏的全面屏、控制方法、移动终端及可读存储介质。带旋转屏的全面屏包括:主屏及副屏,主屏的正面设有主显示区域,副屏的正面设有与主显示区域相适配的副显示区域,且副屏的背面设有摄像头模组;所述副屏设置于第一位置时,所述主显示区域与副显示区域拼接整体显示;所述副屏设置于第二位置时,所述摄像头模组进行前摄拍摄。本申请实现全面屏,提高屏占比;共用后摄像头实现前置拍摄功能,节约整机成本;不增加叠加机构,不会额外增加整机厚度。副屏直接触发拍照功能,简化操作流程;单独的副屏可以实现多种信息提示功能,达到省电效果。

Description

带旋转屏的全面屏、控制方法、移动终端及可读存储介质
本申请要求于2019年12月11日提交中国专利局、申请号为201911288440.0、发明名称为“带旋转屏的全面屏、控制方法、移动终端及可读存储介质”的中国专利申请的优先权,其全部内容通过引用结合在申请中。
技术领域
本申请涉及移动终端技术领域,特别涉及一种带旋转屏的全面屏、控制方法、移动终端及可读存储介质。
背景技术
现有技术中,移动终端都采用全面屏模式,为了提高屏占比,关键要解决的问题是前摄像头的摆放位置,目前的技术方案有双屏方案,滑盖式方案及升降式前摄方案。
具体地,双屏方案,是正面取消前摄像头,在后盖上增加一个副屏,用后摄像头代替前摄像头功能,在自拍时利用副屏来实现自拍功能。然而,双屏方案在整机后盖上多增加一块屏幕,整机成本会上升,整机厚度也会增加0.8-1.2mm左右,且自拍时前后屏幕的切换,给用户的体验较差。
滑盖式方案中,将前摄像头隐藏在屏幕后面,在自拍的时候,将屏幕下滑,露出前摄像头实现自拍功能。然而,滑盖式方案,将摄像头放在屏幕后面,增加了整机厚度,且滑盖设计最大的问题就是防尘设计较差。
升降式前摄方案中,同样是将前摄像头隐藏在屏幕后面,在自拍的时候前摄像头会自动升起,实现自拍功能。然而,升降式前摄方案,将摄像头放在屏幕后面,增加了整机厚度。
发明概述
技术问题
问题的解决方案
技术解决方案
本申请的主要目的是提出一种带旋转屏的全面屏、控制方法、移动终端及可读存储介质,旨在解决现有技术中全面屏的前置摄像头占屏比高的技术问题。
为实现上述目的,本申请提出一种带旋转屏的全面屏,包括主屏及副屏,所述主屏的正面设有主显示区域,所述副屏的正面设有与所述主显示区域相适配的副显示区域,且所述副屏的背面设有摄像头模组;
所述副屏设置于第一位置时,所述主显示区域与副显示区域拼接整体显示;所述副屏设置于第二位置时,所述摄像头模组进行前摄拍摄。
可选地,所述主屏与所述旋转机构固定连接,且所述旋转机构与所述副屏联动连接;所述第一位置为副显示区域与正显示区域之间的夹角为0度位置,所述第二位置为副显示区域与正显示区域之间的夹角为180度位置;
在接收到旋转指令时,所述副屏在所述旋转机构的带动下,旋转180度,以使所述副显示区域设置于所述第一位置,实现所述主显示区域与副显示区域的拼接整体显示,或以使所述副显示区域设置于所述第二位置,实现所述摄像头模组与所述主显示区域处于同一平面。
可选地,所述旋转机构包括第一丝杆和马达,所述马达设置于所述主屏内,所述马达与所述第一丝杆驱动连接,且所述第一丝杆与所述副屏联动连接。
可选地,所述副屏通过所述第一丝杆升起于所述主屏,所述第一丝杆带动所述副屏旋转180度后,所述第一丝杆收缩,以使所述副屏与所述主屏实现拼接。
可选地,所述旋转机构为第二丝杆,所述副屏通过所述第二丝杆可旋转并固定于所述主屏上。
可选地,所述带旋转屏的全面屏还包括拼接框架,所述副屏通过所述拼接框架与所述主屏拼接,且所述拼接框架为透明边框。
可选地,所述副屏的形状为对称多边形。
本申请还提供一种带旋转屏的全面屏的控制方法,应用于带旋转屏的全面屏,所述全面屏包括主屏及副屏,所述主屏的正面设有主显示区域,所述副屏的正面设有与所述主显示区域相适配的副显示区域,且所述副屏的背面设有摄像头模组,包括以下步骤:
在接收到前置拍摄指令时,判断副屏是否设置于第一位置;
若是,则控制所述副屏由所述第一位置旋转至第二位置;
在检测到所述副屏处于所述第二位置时,基于所述前置拍摄指令,启动所述副屏的摄像头模组。
可选地,所述第一位置为副显示区域与正显示区域之间的夹角为0度位置,所述第二位置为副显示区域与正显示区域之间的夹角为180度位置;所述判断副屏是否设置于第一位置的步骤包括:
判断副屏的副显示区域与主屏的主显示区域之间的夹角是否为0度;
若是,则判定所述副屏设置于所述第一位置;
若否,则判定所述副屏设置于所述第二位置。
可选地,所述带旋转屏的全面屏还包括旋转机构,所述旋转机构包括第一丝杆和马达,所述控制所述副屏由所述第一位置旋转至第二位置的步骤包括:
驱动马达带动第一丝杆将副屏升起,且旋转180度,以带动所述副屏由第一位置旋转180度至第二位置。
可选地,所述在接收到前置拍摄指令时,判断副屏是否设置于第一位置的步骤之前,所述方法还包括:
在接收到第一显示指令时,通过所述旋转机构控制所述副屏设置于所述第一位置;
控制所述副显示区域显示与所述第一显示指令对应的第一画面。
可选地,所述基于所述前置拍摄指令,启动所述摄像头模组的步骤之后,所述方法还包括:
在接收到第二显示指令时,通过所述旋转机构控制所述副屏设置于所述第二位置;
控制所述副显示区域显示与所述第二显示指令对应的第二画面。
本申请还提供一种移动终端,所述移动终端包括:存储器、处理器及存储在所述存储器上并可在所述处理器上运行的计算机可读指令,所述计算机可读指令被所述处理器执行时实现如上述中任一项所述的带旋转屏的全面屏的控制方法的步骤。
本申请还提供一种可读存储介质,所述可读存储介质上存储有计算机可读指令,所述计算机可读指令被处理器执行时实现如上述中任一项所述的带旋转屏的全面屏的控制方法的步骤。
发明的有益效果
对附图的简要说明
附图说明
图1是本申请实施例方案涉及的硬件运行环境的设备结构示意图;
图2为本申请带旋转屏的全面屏一实施例的正面图;
图3为本申请带旋转屏的全面屏一实施例的背面图;
图4为本申请带旋转屏的全面屏的自动旋转的结构流程图;
图5为本申请带旋转屏的全面屏的手动旋转的结构流程图;
图6为本申请的带旋转屏的全面屏的控制方法的流程示意图。
附图标号说明:
[Table 1]
标号 名称 标号 名称
10 主屏 20 副屏
100 主显示区域 200 副显示区域
201 摄像头模组 300 第一丝杆
301 马达 302 第二丝杆
本申请目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
发明实施例
本发明的实施方式
应当理解,此处所描述的具体实施例仅用以解释本申请,并不用于限定本申请。
如图1所示,图1是本申请实施例方案涉及的硬件运行环境的设备结构示意图。
如图1所示,该移动终端可以包括:处理器1001,例如CPU,网络接口1004, 用户接口1003,存储器1005,通信总线1002。其中,通信总线1002用于实现这些组件之间的连接通信。用户接口1003可以包括显示屏(Display)、输入单元比如键盘(Keyboard),可选用户接口1003还可以包括标准的有线接口、无线接口。网络接口1004可选的可以包括标准的有线接口、无线接口(如WI-FI接口)。存储器1005可以是高速RAM存储器,也可以是稳定的存储器(non-volatile memory),例如磁盘存储器。存储器1005可选的还可以是独立于前述处理器1001的存储装置。
本领域技术人员可以理解,图1中示出的终端结构并不构成对终端的限定,可以包括比图示更多或更少的部件,或者组合某些部件,或者不同的部件布置。
如图1所示,作为一种计算机可读存储介质的存储器1005中可以包括操作***、网络通信模块、用户接口模块以及计算机可读指令。
在图1所示的设备中,网络接口1004主要用于连接后台服务器,与后台服务器进行数据通信;用户接口1003主要用于连接客户端,与客户端进行数据通信;而处理器1001可以用于调用存储器1005中存储的计算机可读指令,并执行下述带旋转屏的全面屏的控制方法各个实施例中的操作。
本申请提出一种带旋转屏的全面屏。
在本申请一实施例中,如图2-3所示,图2为本申请带旋转屏的全面屏一实施例的正面图;图3为本申请带旋转屏的全面屏一实施例的背面图。
带旋转屏的全面屏包括:
主屏10及副屏20,主屏10的正面设有主显示区域100,副屏20的正面设有与主显示区域100相适配的副显示区域200,且副屏20的背面设有摄像头模组201;
副屏20设置于第一位置时,以实现主显示区域100与副显示区域200拼接整体显示;副屏20设置于第二位置时,以实现摄像头模组201进行前摄拍摄。
本案中,第一位置可以为副显示区域200与正显示区域100之间的夹角为0度位置,第二位置可以为副显示区域200与正显示区域100之间的夹角为180度位置,副屏20在接收到旋转指令时,副屏20可绕旋转机构旋转180度,以使副显示区域200与主显示区域100处于同一平面,实现主显示区域100与副显示区域200的拼接整体显示,或使得摄像头模组201与主显示区域100处于同一平面。
本案中,主屏10的正面设有主显示区域100,且副屏20的正面设有副显示区域200,主显示区域100与副显示区域200可以相互配合显示为全面屏的显示界面。通过主显示区域100与副显示区域200的配合,有效提高屏占比,避免全面屏的正面设置摄像头而导致占屏比高的问题。
当用户需要进行前置拍摄时,副屏20背面的摄像头模组201可以从背面旋转180度后,摄像头模组201与主屏10的正面的主显示区域100处于同一平面,从而实现摄像头模组201前置,进而实现前置拍摄功能。
需要说明的是,摄像头模组201包括摄像头及闪光灯,摄像头的数量不局限。
本申请带旋转屏的全面屏,通过主屏10及副屏20的配合,副屏20设置于第一位置时,能够实现主显示区域100与副显示区域200拼接整体显示;副屏20设置于第二位置时,能够实现摄像头模组201进行前摄拍摄;当需要前置拍摄时,若副屏20处于第一位置时,可将副屏20由第一位置旋转至第二位置,使得副屏20的背面的摄像头模组201与主屏10的正面处于同一平面,实现后摄像头的前置拍摄功能。本申请实现全面屏,提高屏占比;共用后摄像头实现前置拍摄功能,节约整机成本;不增加叠加机构,不会额外增加整机厚度。副屏20直接触发拍照功能,简化操作流程;单独的副屏20可以实现多种信息提示功能,达到省电效果。
可选地,带旋转屏的全面屏还包括旋转机构,主屏10与旋转机构固定连接,且旋转机构与副屏20联动连接;第一位置为副显示区域200与正显示区域100之间的夹角为0度位置,第二位置为副显示区域200与正显示区域100之间的夹角为180度位置;
在接收到旋转指令时,副屏20在旋转机构的带动下,旋转180度,以使副显示区域200设置于第一位置,实现主显示区域100与副显示区域200的拼接整体显示,或以使副显示区域200设置于第二位置,实现摄像头模组201与主显示区域100处于同一平面。
本实施例中,旋转机构固定于主屏10内,旋转机构通过手动控制,或者自动控制,且旋转机构与副屏20联动连接,实现旋转机构带动副屏20在主屏10上旋转。当用户需要进行前置拍摄时,副屏20背面的摄像头模组201可以从背面旋转18 0度后,摄像头模组201与主屏10的正面的主显示区域100处于同一平面,从而实现摄像头模组201前置,进而实现前置拍摄功能。
可选地,旋转机构包括第一丝杆300和马达301,马达301设置于主屏10内,马达301与第一丝杆300驱动连接,且第一丝杆300与副屏20联动连接。
本实施例中,请参阅图4,旋转机构可以采用自动控制的方式,旋转机构包括第一丝杆300和马达301,马达301用于驱动第一丝杆300旋转,比如,当副屏20的正面的副显示区域200与主屏10的正面的主显示区域100处于同一平面上时,接收到用户的前置拍摄指令,根据前置拍摄指令判断当前摄像头模组201是否与主显示区域100是否处于同一平面,若否,则说明副屏20需要进行旋转,生成旋转指令,此时,马达301驱动第一丝杆300转动,第一丝杆300带动副屏20旋转,可以是顺时针旋转,也可以是逆时针旋转,当副屏20旋转至摄像头模组201与主显示区域100处于同一平面时,则说明此时终端处于前置拍摄模式,可启动摄像头模组201。
可选地,副屏20通过第一丝杆300升起于主屏10,在副屏20环绕第一丝杆300旋转180度后,第一丝杆300收缩,以使副屏20与主屏10实现拼接。
本实施例中,在接收到旋转指令时,马达301一边推动第一丝杆300升起,一边驱动第一丝杆300旋转,从而带动副屏20一边升起,且一边旋转,当摄像头模组201旋转至与主显示区域100处于同一平面时,说明摄像头模组201已由后摄旋转为前摄,此时,马达301驱动第一丝杆300收缩,使得副屏20与主屏10无缝拼接,实现全面屏的完整性。
可选地,旋转机构为第二丝杆302,副屏20通过第二丝杆302可旋转并固定于主屏10上。
本实施例中,请参阅图5,旋转机构也可以手动控制,不需要马达301进行电动控制。因此,旋转机构也可以是第二丝杆302,当用户需要前置拍摄时,在第二丝杆302的作用下,手动旋转副屏20,使得摄像头模组201旋转至与主显示区域100处于同一平面上,此时,启动摄像头模组201,从而实现拍照功能。
可选地,带旋转屏的全面屏还包括拼接框架(图未示),副屏20通过拼接框架与主屏10拼接,且拼接框架为透明边框。
本实施例中,可以将副屏20和主屏10之间的拼接框架做成透明设计,宽度可以做到至少小于1mm以内,这样在正常显示时不会看到明显的拼接黑边,使正面屏幕视觉效果上是一个完整的屏幕。
可选地,副屏20的形状为对称多边形。
本实施例中,副屏20的形状可以为对称多边形,如,等腰直角三角形,相应的,主屏10的形状为与副屏20相适配的多边形,即等腰直角三角形的斜边与主屏拼接的长边相等。比如现有技术中,全面屏为长方形,那么,当副屏20的形状为等腰直角三角形时,副屏20可以设置于全面屏的左上角、左下角、右上角或右下角,在除去等腰三角形的副屏20后,形成主屏10的形状。
当然,副屏20的形状不局限于如图所示的等腰三角形,也可以是方形等其他对称的多边形,如长方形,只要副屏20能够与主屏10拼接成一个现有技术的全面屏形状的方式,均为本案的简单变形和变换,落入本案保护的范围内。
本申请还提供了一种带旋转屏的全面屏的控制方法,应用于如上述所述的带旋转屏的全面屏。
如图6所示,一种带旋转屏的全面屏的控制方法包括:
步骤S10、在接收到前置拍摄指令时,判断副屏是否设置于第一位置;
本实施例中,移动终端包括上述所述的带旋转屏的全面屏,包括主屏、副屏及旋转机构,所述主屏的正面设有主显示区域,所述副屏的正面设有与所述主显示区域相适配的副显示区域,且所述副屏的背面设有摄像头模组;所述副屏设置于第一位置时,以实现所述主显示区域与副显示区域拼接整体显示;所述副屏设置于第二位置时,以实现所述摄像头模组进行前摄拍摄。
在接收到前置拍摄指令时,判断副屏是否设置于第一位置,第一位置可以为副显示区域200与正显示区域100之间的夹角为0度位置,第二位置可以为副显示区域200与正显示区域100之间的夹角为180度位置,由于副屏的正面为副显示区域,用于与主显示区域拼接整体显示;副屏的背面为摄像头模组,当副屏的背面与主屏的背面处于同一平面时,摄像头模组可以作为后摄使用,进行日常拍照;当副屏的背面旋转至与主屏的正面处于同一平面时,摄像头模组作为前摄使用。
因此,检测副屏是否设置于第一位置,即可检测副屏的副显示区域与主屏的主显示区域是否处于同一平面上,可以判断是否需要对副屏进行旋转。
步骤S20、若是,则控制所述副屏由所述第一位置旋转至第二位置;
该步骤中,当判定副屏设置于第一位置时,即判定副屏的副显示区域与主屏的主显示区域处于同一平面上,说明副屏的背面的摄像头模组处于后摄设置,因此,需要把摄像头模组旋转过来,此时,可以通过旋转机构,控制副屏旋转180度,就能把摄像头模组旋转至与主显示区域处于同一平面上。
具体地,旋转机构可以自动控制,也可以手动控制。
自动控制方式为,旋转机构包括第一丝杆和马达,所述马达设置于所述主屏内,所述马达与所述第一丝杆驱动连接,且所述第一丝杆与所述副屏联动连接。
马达驱动第一丝杆转动,第一丝杆带动副屏旋转,可以是顺时针旋转,也可以是逆时针旋转,当副屏旋转至摄像头模组与主显示区域处于同一平面时,则说明此时终端处于前置拍摄模式,可启动摄像头模组。
手动方式为,旋转机构为第二丝杆,所述副屏通过所述第二丝杆可旋转并固定于所述主屏上。
当用户需要前置拍摄时,在第二丝杆的作用下,手动旋转副屏,使得摄像头模组旋转至与主显示区域处于同一平面上,此时,启动摄像头模组,从而实现拍照功能。具体为:副屏和主屏通过第二丝杆链接,当要前置拍摄时,在前置拍摄模式下手动旋转副屏,将摄像头模组转到正面实现拍照;可以在待机界面直接旋转屏模块,触发前置拍摄功能,直接进入前置拍摄模式完成前置拍摄。
步骤S30、在检测到所述副屏处于所述第二位置时,基于所述前置拍摄指令,启动所述副屏的摄像头模组。
该步骤中,在检测到所述副屏处于所述第二位置时,基于所述前置拍摄指令,启动所述副屏的摄像头模组。
在检测到所述副屏处于所述第二位置时,说明摄像头模组与主显示区域处于同一平面上,则说明摄像头模组处于前摄设置,则可进行前置拍摄。
本申请的带旋转屏的全面屏的控制方法,通过主屏、副屏的配合,所述副屏设置于第一位置时,能够实现所述主显示区域与副显示区域拼接整体显示;所述 副屏设置于第二位置时,能够实现所述摄像头模组进行前摄拍摄;当需要前置拍摄时,若副屏处于第一位置时,可将副屏由第一位置旋转至第二位置,使得副屏的背面的摄像头模组与主屏的正面处于同一平面,实现后摄像头的前置拍摄功能。本申请实现全面屏,提高屏占比;共用后摄像头实现前置拍摄功能,节约整机成本;不增加叠加机构,不会额外增加整机厚度。副屏直接触发拍照功能,简化操作流程;单独的副屏可以实现多种信息提示功能,达到省电效果。
进一步地,所述第一位置为副显示区域与正显示区域之间的夹角为0度位置,所述第二位置为副显示区域与正显示区域之间的夹角为180度位置;步骤S10包括:
判断副屏的副显示区域与主屏的主显示区域之间的夹角是否为0度;
若是,则判定所述副屏设置于所述第一位置;
若否,则判定所述副屏设置于所述第二位置。
本实施例中,第一位置可以为副显示区域200与正显示区域100之间的夹角为0度位置,第二位置可以为副显示区域200与正显示区域100之间的夹角为180度位置,副屏20在接收到旋转指令时,副屏20可绕旋转机构旋转180度,以使副显示区域200与主显示区域100处于同一平面,实现主显示区域100与副显示区域200的拼接整体显示,即副屏设置于所述第一位置,或使得摄像头模组201与主显示区域100处于同一平面,即副屏设置于所述第二位置。
进一步地,所述带旋转屏的全面屏还包括旋转机构,所述旋转机构包括第一丝杆和马达,步骤S20包括:
驱动马达带动第一丝杆将副屏升起,且旋转180度,以带动所述副屏由第一位置旋转180度至第二位置。
本实施例中,当接收到前置拍摄指令时,判断副屏是否设置于第一位置,若是,则说明副屏的摄像头模组处于与主屏的主显示区域相背的位置,需要旋转,此时,可以采用自动控制方式。具体为:
在前置拍摄模式下触摸转换摄像头按键,副屏通过马达推动,一边升起一边旋转180°,将摄像头模组转到正面实现拍照;可以再待机界面直接按功能按键,旋 转模块的同时触发前置拍摄功能,直接进入前置拍摄模式完成前置拍摄。
需要说明的是,副屏的旋转可以采用手动控制模式,旋转机构也可以是第二丝杆,当用户需要前置拍摄时,在第二丝杆的作用下,手动旋转副屏,使得摄像头模组旋转至与主显示区域处于同一平面上,此时,启动摄像头模组,从而实现拍照功能。
进一步地,步骤S10之前,所述带旋转屏的全面屏的控制方法还可以包括:
在接收到第一显示指令时,通过所述旋转机构控制所述副屏设置于所述第一位置;
控制所述副显示区域显示与所述第一显示指令对应的第一画面。
本实施例中,在该移动终端处于后置拍摄模式下,通过所述旋转机构控制所述副屏设置于所述第一位置,即通过旋转机构控制副显示区域与主显示区域处于同一平面上,可以控制所述副显示区域显示与所述第一显示指令对应的第一画面。副显示区域,可以和主屏的主显示区域显示相同的图片,拼接成一幅完整的图片,也可以单独显示如天气,时间,来电显示或是播放音乐的信息等,达到省电功能。
进一步地,步骤S30之后,所述带旋转屏的全面屏的控制方法还可以包括:
在接收到第二显示指令时,通过所述旋转机构控制所述副屏设置于所述第二位置;
控制所述副显示区域显示与所述第二显示指令对应的第二画面。
本实施例中,在接收到第二显示指令时,通过旋转机构控制副屏设置于第二位置;即当摄像头模组与主显示区域处于同一平面上时,控制所述副显示区域显示与所述第二显示指令对应的第二画面。在旋转机构将摄像头模组旋转到前面来以后,和多边形主屏组成一个完整的全面屏,是第二种形态的整机外形,在副屏的正面的副显示区域也可以显示简单的提示信息,或是显示和终端设备背面一样的图案,形成完整的整机效果。
本申请还提供一种计算机可读存储介质,所述计算机可读存储介质可以为非易失性可读存储介质。
本申请计算机可读存储介质上存储有计算机可读指令,所述计算机可读指令被 处理器执行时实现如上所述的带旋转屏的全面屏的控制方法的步骤。
其中,在所述处理器上运行的计算机可读指令被执行时所实现的方法可参照本申请带旋转屏的全面屏的控制方法各个实施例,此处不再赘述。
需要说明的是,在本文中,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者***不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者***所固有的要素。在没有更多限制的情况下,由语句“包括一个......”限定的要素,并不排除在包括该要素的过程、方法、物品或者***中还存在另外的相同要素。
上述本申请实施例序号仅为了描述,不代表实施例的优劣。
通过以上的实施方式的描述,本领域的技术人员可以清楚地了解到上述实施例方法可借助软件加必需的通用硬件平台的方式来实现,当然也可以通过硬件,但很多情况下前者是更佳的实施方式。基于这样的理解,本申请的技术方案本质上或者说对现有技术做出贡献的部分可以以软件产品的形式体现出来,该计算机软件产品存储在如上所述的一个可读存储介质(如ROM/RAM、磁碟、光盘)中,包括若干指令用以使得一台购物车的管理设备(可以是手机,计算机,服务器,空调器,或者网络设备等)执行本申请各个实施例所述的方法。
以上仅为本申请的优选实施例,并非因此限制本申请的专利范围,凡是利用本申请说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本申请的专利保护范围内。

Claims (15)

  1. 一种带旋转屏的全面屏,其中,包括主屏及副屏,所述主屏的正面设有主显示区域,所述副屏的正面设有与所述主显示区域相适配的副显示区域,且所述副屏的背面设有摄像头模组;
    所述副屏设置于第一位置时,所述主显示区域与副显示区域拼接整体显示;所述副屏设置于第二位置时,所述摄像头模组进行前置拍摄。
  2. 如权利要求1所述的带旋转屏的全面屏,其中,还包括旋转机构,所述主屏与所述旋转机构固定连接,且所述旋转机构与所述副屏联动连接;所述第一位置为副显示区域与正显示区域之间的夹角为0度位置,所述第二位置为副显示区域与正显示区域之间的夹角为180度位置;
    在接收到旋转指令时,所述副屏在所述旋转机构的带动下,旋转180度,使所述副显示区域设置于所述第一位置,实现所述主显示区域与副显示区域的拼接整体显示,或使所述副显示区域设置于所述第二位置,实现所述摄像头模组与所述主显示区域处于同一平面。
  3. 如权利要求2所述的带旋转屏的全面屏,其中,所述旋转机构包括第一丝杆和马达,所述马达设置于所述主屏内,所述马达与所述第一丝杆驱动连接,且所述第一丝杆与所述副屏联动连接。
  4. 如权利要求3所述的带旋转屏的全面屏,其中,所述副屏通过所述第一丝杆升起于所述主屏,所述第一丝杆带动所述副屏旋转180度后,所述第一丝杆收缩,以使所述副屏与所述主屏实现拼接。
  5. 如权利要求2所述的带旋转屏的全面屏,其中,所述旋转机构为第二丝杆,所述副屏通过所述第二丝杆可旋转并固定于所述主屏上。
  6. 如权利要求1所述的带旋转屏的全面屏,其中,所述带旋转屏的全面屏还包括拼接框架,所述副屏通过所述拼接框架与所述主屏拼 接,且所述拼接框架为透明边框。
  7. 如权利要求1所述的带旋转屏的全面屏,其中,所述副屏的形状为对称多边形。
  8. 一种带旋转屏的全面屏的控制方法,应用于带旋转屏的全面屏,所述全面屏包括主屏及副屏,所述主屏的正面设有主显示区域,所述副屏的正面设有与所述主显示区域相适配的副显示区域,且所述副屏的背面设有摄像头模组,其中,包括以下步骤:
    在接收到前置拍摄指令时,判断副屏是否设置于第一位置;
    若是,则控制所述副屏由第一位置旋转至第二位置;
    在检测到所述副屏处于所述第二位置时,基于所述前置拍摄指令,启动所述副屏的摄像头模组。
  9. 如权利要求8所述的带旋转屏的全面屏的控制方法,其中,所述第一位置为副显示区域与正显示区域之间的夹角为0度位置,所述第二位置为副显示区域与正显示区域之间的夹角为180度位置;所述判断副屏是否设置于第一位置的步骤包括:
    判断副屏的副显示区域与主屏的主显示区域之间的夹角是否为0度;
    若是,则判定所述副屏设置于所述第一位置;
    若否,则判定所述副屏设置于所述第二位置。
  10. 如权利要求9所述的带旋转屏的全面屏的控制方法,其中,所述带旋转屏的全面屏还包括旋转机构,所述旋转机构包括第一丝杆和马达,所述控制所述副屏由所述第一位置旋转至第二位置的步骤包括:
    驱动马达带动第一丝杆将副屏升起,且旋转180度,以带动所述副屏由第一位置旋转180度至第二位置。
  11. 如权利要求8所述的带旋转屏的全面屏的控制方法,其中,所述在接收到前置拍摄指令时,判断副屏是否设置于第一位置的步骤之前,所述方法还包括:
    在接收到第一显示指令时,通过所述旋转机构控制所述副屏设置于所述第一位置;
    控制所述副显示区域显示与所述第一显示指令对应的第一画面。
  12. 如权利要求8所述的带旋转屏的全面屏的控制方法,其中,所述基于所述前置拍摄指令,启动所述摄像头模组的步骤之后,所述方法还包括:
    在接收到第二显示指令时,通过所述旋转机构控制所述副屏设置于所述第二位置;
    控制所述副显示区域显示与所述第二显示指令对应的第二画面。
  13. 一种移动终端,其中,所述移动终端包括:存储器、处理器及存储在所述存储器上并可在所述处理器上运行的计算机可读指令,
    所述计算机可读指令被所述处理器执行时,实现如下步骤:
    在接收到前置拍摄指令时,判断副屏是否设置于第一位置;
    若是,则控制所述副屏由第一位置旋转至第二位置;
    在检测到所述副屏处于所述第二位置时,基于所述前置拍摄指令,启动所述副屏的摄像头模组。
  14. 如权利要求13所述的移动终端,其中,所述在接收到前置拍摄指令时,判断副屏是否设置于第一位置的步骤之前,所述方法还包括:
    在接收到第一显示指令时,通过所述旋转机构控制所述副屏设置于所述第一位置;
    控制所述副显示区域显示与所述第一显示指令对应的第一画面。
  15. 如权利要求13所述的移动终端,其中,所述基于所述前置拍摄指令,启动所述摄像头模组的步骤之后,所述方法还包括:
    在接收到第二显示指令时,通过所述旋转机构控制所述副屏设置于所述第二位置;
    控制所述副显示区域显示与所述第二显示指令对应的第二画面。
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CN114442981B (zh) * 2022-01-26 2024-02-13 杭州联吉技术有限公司 一种显示管理方法、显示管理装置及管理设备

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