WO2018126586A1 - 一种屏幕显示处理方法及装置 - Google Patents

一种屏幕显示处理方法及装置 Download PDF

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Publication number
WO2018126586A1
WO2018126586A1 PCT/CN2017/084554 CN2017084554W WO2018126586A1 WO 2018126586 A1 WO2018126586 A1 WO 2018126586A1 CN 2017084554 W CN2017084554 W CN 2017084554W WO 2018126586 A1 WO2018126586 A1 WO 2018126586A1
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WIPO (PCT)
Prior art keywords
display screen
display
angle
screen
detecting unit
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Application number
PCT/CN2017/084554
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English (en)
French (fr)
Inventor
曾宪铮
马彦青
赵战克
Original Assignee
中兴通讯股份有限公司
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Publication of WO2018126586A1 publication Critical patent/WO2018126586A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0481Interaction techniques based on graphical user interfaces [GUI] based on specific properties of the displayed interaction object or a metaphor-based environment, e.g. interaction with desktop elements like windows or icons, or assisted by a cursor's changing behaviour or appearance
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/14Digital output to display device ; Cooperation and interconnection of the display device with other functional units
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/14Digital output to display device ; Cooperation and interconnection of the display device with other functional units
    • G06F3/1423Digital output to display device ; Cooperation and interconnection of the display device with other functional units controlling a plurality of local displays, e.g. CRT and flat panel display
    • G06F3/1446Digital output to display device ; Cooperation and interconnection of the display device with other functional units controlling a plurality of local displays, e.g. CRT and flat panel display display composed of modules, e.g. video walls
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F9/00Arrangements for program control, e.g. control units
    • G06F9/06Arrangements for program control, e.g. control units using stored programs, i.e. using an internal store of processing equipment to receive or retain programs
    • G06F9/44Arrangements for executing specific programs
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F9/00Arrangements for program control, e.g. control units
    • G06F9/06Arrangements for program control, e.g. control units using stored programs, i.e. using an internal store of processing equipment to receive or retain programs
    • G06F9/44Arrangements for executing specific programs
    • G06F9/451Execution arrangements for user interfaces

Definitions

  • the present disclosure relates to, but is not limited to, the field of communication technologies, and in particular, to a screen display processing method and apparatus.
  • Embodiments of the present disclosure provide a screen display processing method and apparatus to simplify a manner in which a dual-screen mobile terminal controls information display.
  • An embodiment of the present disclosure provides a screen display processing method, including:
  • the display states of the first display screen and the second display screen are adjusted according to the determined display mode.
  • the embodiment of the present disclosure further provides a screen display processing apparatus, including:
  • a detecting module configured to detect that the second display screen is open relative to the first display screen angle
  • Determining a module configured to determine a display mode of the first display screen and the second display screen according to a preset angular range at which the angle is located;
  • an adjustment module configured to adjust display states of the first display screen and the second display screen according to the determined display mode.
  • the embodiment of the present disclosure further provides a mobile terminal, including a first display screen and a second display screen, wherein the first display screen and the second display screen are rotatably connected by a rotating shaft, and the mobile terminal further includes:
  • a detecting module configured to detect an angle at which the second display screen is opened relative to the first display screen
  • a processor configured to determine a display mode of the first display screen and the second display screen according to a preset angular range at which the angle is set, and adjust the first display screen and the first display screen according to the determined display mode The display state of the second display.
  • Embodiments of the present disclosure also provide a computer storage medium having stored therein one or more programs executable by a computer, the one or more programs being executed by the computer to cause the computer to perform as described above
  • a screen display processing method is provided.
  • detecting an angle at which the second display screen is opened relative to the first display screen determining the first display screen and the second display screen according to a preset angular range at which the angle is Display mode; adjusting display states of the first display screen and the second display screen according to the determined display mode.
  • FIG. 1 is a flowchart of a screen display processing method according to a first embodiment of the present disclosure
  • FIG. 1 is a schematic diagram of a mobile terminal according to a first embodiment of the present disclosure
  • FIG. 1 is a schematic diagram of a display mode of a mobile terminal according to a first embodiment of the present disclosure
  • FIG. 1-c is a diagram showing an angle range and a corresponding display mode according to the first embodiment of the present disclosure
  • FIG. 2 is a flowchart of another screen display processing method according to a second embodiment of the present disclosure.
  • FIG. 2-a is a schematic diagram of an angle detecting apparatus according to a second embodiment of the present disclosure.
  • FIG. 2 is a schematic diagram of another angle detecting apparatus according to a second embodiment of the present disclosure.
  • FIG. 3 is a diagram of a screen display processing apparatus according to a third embodiment of the present disclosure.
  • FIG. 4 is a diagram of another screen display processing apparatus according to a third embodiment of the present disclosure.
  • FIG. 1 is a flowchart of a screen display processing method according to an embodiment of the present disclosure, including the following steps:
  • Step S101 Detect an angle at which the second display screen is opened relative to the first display screen.
  • the first display screen and the second display screen may be two display screens of the mobile terminal, and the first display screen and the second display screen may be connected by a rotating shaft.
  • FIG. 1-a is a schematic diagram of a mobile terminal according to an embodiment of the present disclosure.
  • the first display screen 202 and the second display screen 203 pass through the first rotating shaft 201 and the second rotating shaft 204 and 205. connection.
  • the angle at which the second display screen is opened relative to the first display screen is 0°.
  • the two display screens of the mobile terminal can be opened to make two displays.
  • the screen is at a certain angle.
  • the angle at which the second display screen is opened relative to the first display screen may be an angle at which the second display screen rotates relative to the first display screen about the rotation axis when the state is from the closed state to the state to be detected.
  • the rotation angle of the second display screen relative to the first display screen about the rotation axis is 30°, and the second display screen is opened relative to the first display screen.
  • the angle is 30°.
  • Step S102 Determine a display mode of the first display screen and the second display screen according to a preset angular range in which the angle is located.
  • the angle range may be that the second display of the mobile terminal is relative to the first display. a plurality of angular intervals divided by an openable angle of the display screen, wherein the display mode may be a plurality of modes for displaying content of the first display screen and the second display screen, for example, the first display screen and the second display screen display different screens;
  • the first display screen and the second display screen display the same frame picture; the first display screen and the second display screen are combined to display the same frame picture and the like.
  • a plurality of angle ranges may be set, and the plurality of display modes may be respectively corresponding to the plurality of angle ranges, so that the mobile terminal determines the display mode of the screen according to the range of the angles.
  • the setting angle range is 30° to 120°
  • the corresponding display mode is that the first display screen and the second display screen display the same frame picture. If the relative angles of the two screens of the mobile terminal currently open are 50°, it may be determined that the angle is in the range of angles between 30° and 120°, so that the display mode of the mobile terminal may be determined to be the first display screen and the second display. The screen displays the same frame.
  • the range of angles includes a first angular range, a second angular range, a third angular range, and a fourth angular range;
  • the display mode corresponding to the first angle range is: the first display screen displays one frame of the screen, and the second display screen does not display the screen;
  • the display mode corresponding to the second angle range is: the first display screen and the second display screen respectively display the same frame picture;
  • the display mode corresponding to the third angular range is: the first display screen and the second display screen respectively display different frame images;
  • the display mode corresponding to the fourth angle range is: the first display screen and the second display screen are combined to display one frame of picture.
  • the angle range may be a plurality of angular intervals that divide the second display screen of the mobile terminal relative to the first display screen
  • the display mode may be the first display screen and the second display screen display content.
  • the display mode may include the following four modes, as shown in FIG. 1-b, which is a schematic diagram of a display mode of the mobile terminal according to an embodiment of the present disclosure:
  • the first display mode the first display screen displays one frame of picture, and the second display screen does not display the picture.
  • the first display screen may be a main screen, and the second display screen may be a sub screen, A display screen displays the content normally, and the screen of the second display screen is in a closed state, and the screen information is not displayed.
  • the information A is sent to the first display screen, so that the first display screen outputs the information A, and the second display screen is controlled to be in the off-screen state.
  • the second display mode the first display screen and the second display screen respectively display the same frame picture.
  • the same frame screen can be simultaneously output through the first display screen and the second display screen, so that the first display screen and the second display screen simultaneously display the screen.
  • one frame of picture A of the application is simultaneously sent to the first display screen and the second display screen, so that the first display screen and the second display screen simultaneously output the picture A, when the first screen receives the user's application to the application.
  • the screen A jumps to the screen B, and the mobile terminal transmits the screen B to the first display screen and the second display screen at the same time, so that the first display screen and the second display screen simultaneously display the screen B.
  • the third display mode the first display screen and the second display screen respectively display different frame pictures.
  • different frame pictures can be sent to the first display screen and the second display screen respectively, so that the first display screen and the second display screen output different frame pictures.
  • one frame picture A is sent to the first display screen
  • one frame picture B is sent to the second display screen, so that the first display screen outputs the picture A
  • the second display screen outputs the picture B.
  • the mobile terminal transmits screen a to the first display screen, controls the first display screen to output screen a, and the second display screen still outputs screen B.
  • the fourth display mode the first display and the second display are combined to display one frame.
  • the first display screen and the second display screen are combined into one screen, so that one frame of the screen is displayed on the screen that is put together.
  • one frame of picture A is divided into picture a and picture b, and picture a is output to the first display, and picture b is output to the second display, so that picture A is displayed together on the first display and the second display.
  • Four angle ranges can be set, and the above four display modes can be respectively corresponding to the four angle ranges, so that the mobile terminal determines the display mode of the corresponding screen according to the range of angles.
  • the setting angle range is 30° to 120°
  • the corresponding display mode is that the first display screen and the second display screen display the same frame picture. If the relative angle of the two screens of the mobile terminal currently open is 50°, it can be determined that the angle is in the range of the above 30° to 120°, so that Determining the display mode of the mobile terminal is that the first display screen and the second display screen display the same frame picture.
  • a plurality of display modes are set, which respectively correspond to different angular ranges, and the user can select different screen display modes by adjusting the relative angles of the two display screens of the mobile terminal, and the operation mode is simple, and the user experience is improved.
  • the interval of the first angular range is [0°, 30°);
  • the interval of the second angular range is [30°, 120°);
  • the interval of the third angular range is [120°, 150°);
  • the interval of the fourth angular range is [150°, 180°].
  • the angle range may include the above four angle ranges, and the four angle ranges respectively correspond to the above four screen display modes, as shown in FIG. 1-c, and FIG. 1-c is provided in the embodiment of the present disclosure.
  • An angle range and a corresponding display mode map When the angle at which the two display screens of the mobile terminal are turned on is detected, the range of angles at which the angle is located is determined, and the display mode of the display screen is determined according to the angle range, thereby adjusting the display states of the two display screens according to the display mode.
  • the two display screens of the mobile terminal are opened, so that the opening angle of the second display screen relative to the first display screen is 20°.
  • the angle is in the first angular range, and the first display screen is controlled to display the screen content.
  • the second display is off, and the screen content is not displayed.
  • Step S103 Adjust display states of the first display screen and the second display screen according to the determined display mode.
  • the mobile terminal can send the information that needs to be displayed to the two display screens, and can adjust the display state according to the display mode determined in step S102.
  • the first display screen and the second display screen are controlled to display the same frame picture.
  • the screen display processing method of the embodiment of the present disclosure can be applied to a mobile terminal, such as a mobile phone, a tablet personal computer, a laptop computer, a personal digital assistant (PDA), and a wearable device.
  • a mobile terminal such as a mobile phone, a tablet personal computer, a laptop computer, a personal digital assistant (PDA), and a wearable device.
  • PDA personal digital assistant
  • Wearable Device Equipment (Wearable Device), etc.
  • detecting an angle at which the second display screen is opened relative to the first display screen determining the first display screen and the second according to a preset angular range at which the angle is a display mode of the display screen; adjusting display states of the first display screen and the second display screen according to the determined display mode.
  • FIG. 2 is a flowchart of another screen display processing method according to an embodiment of the present disclosure. Includes the following steps:
  • Step S201 Determine an angle at which the second display screen is opened relative to the first display screen according to a status signal output by each first detecting unit.
  • the first display screen 202 is fixedly connected to the first rotating shaft 201
  • the second display screen 203 is fixedly connected to the second rotating shafts 204 and 205.
  • the first rotating shaft 201 can be connected to the first rotating shaft 201.
  • the two rotating shafts 204 and 205 are rotatably coupled.
  • At least two first objects to be tested are disposed on the first rotating shaft, and the at least two first objects to be tested are sequentially arranged along the axial direction of the rotating shaft to form a spiral shape, and the second display screen corresponds to each a first detecting unit is provided with a first detecting unit, and when the first detecting unit detects the docking with the corresponding first object to be tested, the first state signal is output; when the first detecting unit does not detect the When the corresponding first object to be tested is docked, the second state signal is output.
  • the docking of the detecting unit with the object to be tested can be understood as the detection value of the detecting unit is in a preset range, or the detected value reaches a preset threshold value.
  • the magnetic detecting element detects the magnetic field, it may be set that when the magnitude of the magnetic field detected by the magnetic detecting element is within a preset magnetic field range, it indicates that the magnetic detecting element and the magnet are docked, and the magnetic field detected by the magnetic detecting element may also be set.
  • the size When the size reaches the preset threshold, it indicates that the magnetic detecting component and the magnet are docked; when the optical detecting device detects the optical signal, it can be set to indicate that the light detecting power detected by the light detecting device is within a preset range, indicating light detecting
  • the device is connected to the illuminating device, and the light detecting device can be connected to the illuminating device when the power of the optical signal detected by the photo detecting device reaches a preset threshold.
  • the magnetic detecting element When the magnetic detecting element is detected, if the magnetic detecting element and the magnet are docked when the magnetic detecting element is in the preset magnetic field range, when the magnetic detecting element and the magnet are docked, the mobile terminal can be displayed.
  • the angle range of the screen When the angle range of the screen is opened, that is, when the opening angle of the display screen of the mobile terminal is within the range of angles, the magnetic detecting element and the magnet are in a docking state.
  • Each of the magnetic detecting elements and the corresponding magnets may correspond to a plurality of angular ranges, and each angular range may be To form a continuous range of angles, or a range of angles that are not continuous.
  • the magnetic detecting element A and the magnetic detecting element B are adjacent detecting elements.
  • the opening angle of the corresponding mobile terminal display screen is [10°, 15°]
  • the range of angles at which the display screen of the mobile terminal is located may be determined based on different signals output by the detecting element in the docked state and the non-docked state.
  • the opening angle of the corresponding mobile terminal display screen is [10°, 15°)
  • the opening angle range of the corresponding mobile terminal display screen It is [15°, 20°]
  • the range of angles at which the display screen of the mobile terminal is located can be determined based on the signal outputted by the magnetic detecting element in the docked state.
  • the angle A of the display screen of the mobile terminal can be correspondingly moved.
  • the opening angle of the terminal display is A
  • the magnetic detecting element is docked with the magnet.
  • each of the magnetic detecting elements is docked with the corresponding magnet, it may correspond to a plurality of angles at which the display screen of the mobile terminal is opened.
  • the opening angle of the display screen of the mobile terminal or the range of angles of the mobile terminal may be determined according to different signals outputted by the magnetic detecting element and the magnet in the docked state and the non-docked state.
  • the following is an example of detecting an angle by detecting a magnetic field and an optical signal.
  • a to l are magnets to be detected disposed on the first rotating shaft
  • a to L are magnetic detecting elements provided on the second display screen
  • the magnetic detection unit can be used to detect the size of the magnetic field.
  • the magnets a to l are sequentially arranged in a spiral shape along the axial direction of the rotating shaft, and the magnetic detecting elements A to L may be linearly distributed as shown, such that when the two display screens of the mobile terminal rotate about the rotating shaft, the magnet When a to l rotates with the rotating shaft, the magnets a to l can be brought closer to the magnetic detecting elements A to L in order to interface the magnetic detecting elements with the magnets.
  • an effective logic level may be output, indicating that the magnetic detecting component is docked with the magnet, and when the magnetic field exceeds the preset magnetic field range, an invalid logic level may be output, indicating that the magnetic detecting component and the magnet are not Docking.
  • the opening angle range of the two display screens of the mobile terminal may be corresponding, that is, the opening of the display screen of the mobile terminal
  • the magnetic detecting element is docked with the magnet.
  • the magnetic detecting elements A to L are sequentially docked with the magnets a to 1, the magnetic detecting elements A to L can sequentially output effective logic levels.
  • the second display screen may be determined according to the number of the magnetic detecting component that outputs the effective logic level at present, and according to the preset angle of the display screen corresponding to the magnetic detecting component number.
  • the angle at which the first display is open For example, when the angle of the display screen of the mobile terminal increases, the magnetic detecting elements A, B, and C sequentially output an effective logic level, and if the magnetic detecting element C outputs an effective logic level, the opening angles of the two display screens corresponding to the mobile terminal The range is [30°, 35°].
  • the opening angle range of the current two display screens of the mobile terminal can be obtained as [30°, 35°].
  • the opening angles of the two screens of the mobile terminal continue to increase.
  • the magnetic detecting elements A, B, and C sequentially output the effective logic levels
  • the invalid levels are sequentially output
  • the magnetic detecting elements D output the invalid logic levels.
  • the rotation can be determined according to the order of the magnetic detecting component numbers of the output effective logic levels.
  • the direction of rotation of the shaft, so that the angle of the opening angle of the current two display screens of the mobile terminal can be determined to be (35°, 40°).
  • a to l in FIG. 2-a may also be light-emitting devices, and A to L may be light detecting devices for detecting light signals, when the light signal power detected by the light detecting devices A to L is within a preset range, The light detecting device outputs an optical signal indicating that the light detecting device is in communication with the light emitting device.
  • the light-emitting devices a to 1 rotate with the rotation axis, so that the light-emitting devices a to 1 can be sequentially brought closer to the light detecting devices A to L, so that the light-emitting device and the light detecting device are docked.
  • the light detecting device detects that the power of the optical signal is within a preset range, the optical signal may be output, indicating that the light emitting device is docked with the light detecting device.
  • the light detecting devices A to L can sequentially output the light signals.
  • the second display screen may be determined according to the number of the light detecting device that outputs the light signal, and according to the preset angle of the display screen corresponding to the light detecting device number. The angle at which a display opens.
  • the light detecting devices A, B, and C sequentially output optical signals. If the light detecting device C outputs the light signal, the opening angle range of the two display screens corresponding to the mobile terminal is [30°, 35°], then when the light detecting device C outputs the light signal, this When the current display of the mobile terminal can be obtained, the opening angle range is [30°, 35°].
  • the relative rotation direction of the display screen of the mobile terminal may be determined according to the number of the light detecting device of the optical signal sequentially outputted, thereby obtaining the angular range of the display screen of the mobile terminal.
  • the above-mentioned device for detecting an angle can also be realized by converting various rotations of the two display screens and the rotating shaft into linear displacements by mechanically transmitting various rotary encoders mounted in the rotating shaft, and then detecting the displacement distance.
  • the encoder may be an angle detecting element such as a photoelectric rotary encoder or a gyroscope.
  • the angle detection device can also convert the opening angles of the two display screens of the mobile terminal into analog voltage, analog current or digital signals, so that the mobile terminal can recognize the data and use it to read the angle information.
  • the first display screen is provided with a second object to be tested and a third object to be tested
  • the second display screen is provided with a second detecting unit for detecting the second object to be tested.
  • a third detecting unit for detecting the third object to be tested
  • the second detecting unit When the second detecting unit detects the docking with the second object to be tested, the second detecting unit outputs a third state signal, where the third state signal is used to indicate that the angle is 0°. When the second detecting unit does not detect the docking with the second object to be tested, the second detecting unit outputs a fourth state signal;
  • the third detecting unit When the third detecting unit detects the docking with the third object to be tested, the third detecting unit outputs a fifth state signal, where the fifth state signal is used to indicate that the angle is 180°. When the third detecting unit does not detect the docking with the third object to be tested, the third detecting unit outputs a sixth state signal;
  • the detecting the angle at which the second display screen is opened relative to the first display screen comprises:
  • the angle is determined according to a state signal output by each of the first detecting units.
  • the detecting unit is connected to the object to be tested, and when the detecting unit detects the object to be tested, the detected value reaches a preset threshold.
  • the second detection unit may output a third status signal when the angle is 0°, and may set the third detection unit and The position of the third object to be tested and the threshold value of the third detecting unit cause the third detecting unit to output the fifth state signal when the angle is 180°.
  • the first display screen is provided with a magnet 2a and a magnet 2c, the magnet 2a is located away from the rotating shaft, and the magnet 2c is located close to the rotating shaft;
  • the second display screen is provided with magnetic detecting elements 2b and 2d, magnetic The position of the detecting element 2b corresponds to the magnet 2a, away from the rotating shaft, and the position of the magnetic detecting element 2d corresponds to the magnet 2c, close to the rotating shaft, so that when the opening angle of the second display screen relative to the first display screen is 0°, the magnetic The detecting element 2b and the magnet 2a are located close to each other, and the magnetic detecting element 2b detects that the magnetic field reaches a preset threshold value, and outputs an effective logic level to indicate that the second display screen is opened at an angle of 0° with respect to the first display screen.
  • the magnetic detecting element 2d outputs an invalid logic level; when the opening angle of the second display screen relative to the first display screen is 180°, the magnetic detecting element 2d and the magnet 2c are in close proximity, and the magnetic detecting element 2d detects that the magnetic field reaches the preset gate
  • the limit value outputs an effective logic level to indicate that the angle of the second display screen relative to the first display screen is 180°, at which time the magnetic detecting element 2b outputs an invalid logic level.
  • the angle at which the second display screen is opened with respect to the first display screen is 0°; when the output of the magnetic detecting element 2d is detected
  • the effective logic level, when the magnetic detecting element 2b outputs an invalid logic level, the angle at which the second display screen is opened relative to the first display screen is 180°.
  • both the detecting element 2b and the detecting element 2d output an invalid logic level, it is necessary to determine an angle at which the second display screen is opened with respect to the first display screen according to the status signal output by each of the first detecting units.
  • the first display screen and the second display screen may be controlled according to the information display mode corresponding to the angle. Adjust the display status, the operation mode is simple, and improve the user experience.
  • Step S202 Determine a display mode of the first display screen and the second display screen according to a preset angular range in which the angle is located;
  • the angle range may be a plurality of angular intervals divided by an angle at which the second display screen of the mobile terminal is openable relative to the first display screen, where the display mode may be the content of the first display screen and the second display screen.
  • a plurality of modes for example, the first display screen and the second display screen display different screens; the first display screen and the second display screen display the same frame picture; the first display screen and the second display screen are combined to display the same frame picture, etc. .
  • a plurality of angle ranges may be set, and the plurality of display modes may be respectively corresponding to the plurality of angle ranges, so that the mobile terminal determines the display mode of the screen according to the range of the angles.
  • the setting angle range is 30° to 120°
  • the corresponding display mode is that the first display screen and the second display screen display the same frame picture. If the relative angles of the two screens of the mobile terminal currently open are 50°, it may be determined that the angle is in the range of angles between 30° and 120°, so that the display mode of the mobile terminal may be determined to be the first display screen and the second display. The screen displays the same frame.
  • the range of angles includes a first angular range, a second angular range, a third angular range, and a fourth angular range;
  • the display mode corresponding to the first angle range is: the first display screen displays one frame of the screen, and the second display screen does not display the screen;
  • the display mode corresponding to the second angle range is: the first display screen and the second display screen respectively display the same frame picture;
  • the display mode corresponding to the third angular range is: the first display screen and the second display screen respectively display different frame images;
  • the display mode corresponding to the fourth angle range is: the first display screen and the second display screen are combined to display one frame of picture.
  • the angle range may be a plurality of angular intervals that divide the second display screen of the mobile terminal relative to the first display screen
  • the display mode may be the first display screen and the second display screen display content.
  • the multiple modes, the display mode can include the following four modes, as shown in Figure 1-b:
  • the first display mode the first display screen displays one frame of picture, and the second display screen does not display the picture.
  • the first display screen may be a main screen, and the second display screen may be a sub screen, A display screen displays the content normally, and the screen of the second display screen is in a closed state, and the screen information is not displayed.
  • the information A is output to the first display screen, the first display screen is displayed to display the information A, and the second display screen is controlled to be in the off-screen state.
  • the second display mode the first display screen and the second display screen respectively display the same frame picture.
  • the same frame screen can be simultaneously output through the first display screen and the second display screen, so that the first display screen and the second display screen simultaneously display the screen.
  • one frame of picture A of the application is simultaneously sent to the first display screen and the second display screen, so that the first display screen and the second display screen simultaneously output the picture A, when the first screen receives the user's application to the application.
  • the screen A jumps to the screen B, and the mobile terminal transmits the screen B to the first display screen and the second display screen at the same time, so that the first display screen and the second display screen simultaneously display the screen B.
  • the third display mode the first display screen and the second display screen respectively display different frame pictures.
  • different frame pictures can be sent to the first display screen and the second display screen respectively, so that the first display screen and the second display screen output different frame pictures.
  • one frame picture A is sent to the first display screen
  • one frame picture B is sent to the second display screen, so that the first display screen outputs the picture A
  • the second display screen outputs the picture B.
  • the mobile terminal transmits screen a to the first display screen, controls the first display screen to output screen a, and the second display screen still outputs screen B.
  • the fourth display mode the first display and the second display are combined to display one frame.
  • the first display screen and the second display screen are combined into one screen, so that one frame of the screen is displayed on the screen that is put together.
  • one frame of picture A is divided into picture a and picture b, and picture a is output to the first display, and picture b is output to the second display, so that picture A is displayed together on the first display and the second display.
  • Four angle ranges can be set, and the above four display modes can be respectively corresponding to the four angle ranges, so that the mobile terminal determines the display mode of the corresponding screen according to the range of angles.
  • the setting angle range is 30° to 120°
  • the corresponding display mode is that the first display screen and the second display screen display the same frame picture. If the relative angle of the two screens of the mobile terminal currently open is 50°, it can be determined that the angle is in the range of the above 30° to 120°, so that Determining the display mode of the mobile terminal is that the first display screen and the second display screen display the same frame picture.
  • multiple display modes are set, which respectively correspond to different angular ranges, and the user can select different screen display modes by adjusting the relative angles of the two display screens of the mobile terminal, without manually switching the display mode of the screen.
  • the operation mode is simple and the user experience is improved.
  • the interval of the first angular range is [0°, 30°);
  • the interval of the second angular range is [30°, 120°);
  • the interval of the third angular range is [120°, 150°);
  • the interval of the fourth angular range is [150°, 180°].
  • the range of angles may include the above four range of angles, so that the four ranges of angles respectively correspond to the above four screen display modes, as shown in FIG. 1-c.
  • the range of angles at which the angle is located is determined, and the display mode of the display screen is determined according to the angle range, thereby adjusting the display states of the two display screens according to the display mode.
  • the two display screens of the mobile terminal are opened, so that the opening angle of the second display screen relative to the first display screen is 20°.
  • the angle is in the first angular range, and the first display screen is controlled to display the screen content.
  • the second display is off, and the screen content is not displayed.
  • Step S203 adjusting display states of the first display screen and the second display screen according to the determined display mode.
  • the mobile terminal can send the information that needs to be displayed to the two display screens, and can adjust the display state according to the display mode determined in step S202.
  • the first display screen and the second display screen are controlled to display the same frame picture.
  • the mode is simple, and the user's operation is simple, which can improve the user experience.
  • FIG. 3 is a screen display processing device according to an embodiment of the present disclosure.
  • the screen display processing device 300 includes a detecting module 301, a determining module 302, and an adjusting module 303, where:
  • the detecting module 301 is configured to detect an angle at which the second display screen is opened relative to the first display screen;
  • the determining module 302 is configured to determine a display mode of the first display screen and the second display screen according to a preset angular range in which the angle is located;
  • the adjusting module 303 is configured to adjust display states of the first display screen and the second display screen according to the determined display mode.
  • the range of angles includes a first angular range, a second angular range, a third angular range, and a fourth angular range;
  • the display mode corresponding to the first angle range is: the first display screen displays one frame of the screen, and the second display screen does not display the screen;
  • the display mode corresponding to the second angle range is: the first display screen and the second display screen respectively display the same frame picture;
  • the display mode corresponding to the third angular range is: the first display screen and the second display screen respectively display different frame images;
  • the display mode corresponding to the fourth angle range is: the first display screen and the second display screen are combined to display one frame of picture.
  • the interval of the first angular range is [0°, 30°);
  • the interval of the second angular range is [30°, 120°);
  • the interval of the third angular range is [120°, 150°);
  • the interval of the fourth angular range is [150°, 180°].
  • the rotating shaft includes a first rotating shaft fixedly coupled to the first display screen and a second rotating shaft fixedly coupled to the second display screen, the first rotating shaft and the a second rotating shaft is rotatably connected;
  • the first rotating shaft is provided with at least two first objects to be tested, and the at least two first objects to be tested are sequentially arranged along the axial direction of the rotating shaft to form a spiral shape on the second display screen.
  • a first detecting unit is provided, and when the first detecting unit detects the docking with the corresponding first object to be tested, the first state signal is output; when the first detecting unit is not detected Outputting a second state signal when docked with the corresponding first object to be tested;
  • the detecting module 301 is configured to determine an angle at which the second display screen is opened relative to the first display screen according to a status signal output by each of the first detecting units.
  • the first display screen is provided with a second object to be tested and a third object to be tested, and the second display screen is provided for detecting the second object to be tested.
  • the second detecting unit When the second detecting unit detects the docking with the second object to be tested, the second detecting unit outputs a third state signal, where the third state signal is used to indicate that the angle is 0°. When the second detecting unit does not detect the docking with the second object to be tested, the second detecting unit outputs a fourth state signal;
  • the third detecting unit When the third detecting unit detects the docking with the third object to be tested, the third detecting unit outputs a fifth state signal, where the fifth state signal is used to indicate that the angle is 180°. When the third detecting unit does not detect the docking with the third object to be tested, the third detecting unit outputs a sixth state signal;
  • the detecting module 301 includes:
  • the first determining unit 3011 is configured to determine that the angle is 0° when detecting that the second detecting unit outputs the third state signal;
  • the second determining unit 3012 is configured to determine that the angle is 180° when detecting that the third detecting unit outputs the fifth state signal
  • the third determining unit 3013 is configured to determine the angle according to the state signal output by each of the first detecting units when the fourth state signal and the sixth state signal are detected.
  • the screen display processing device 300 can be applied to a mobile terminal, such as a mobile phone, a tablet personal computer, a laptop computer, a personal digital assistant (PDA), or a personal digital assistant (PDA). wearable Equipment (Wearable Device), etc.
  • a mobile terminal such as a mobile phone, a tablet personal computer, a laptop computer, a personal digital assistant (PDA), or a personal digital assistant (PDA). wearable Equipment (Wearable Device), etc.
  • the screen display processing device 300 can be applied to each process implemented by the mobile terminal in the method embodiment corresponding to FIG. 1 to FIG. 2, and achieve the same beneficial effects. To avoid repetition, details are not described herein again.
  • the embodiment of the present disclosure further provides a mobile terminal, including a first display screen and a second display screen, wherein the first display screen and the second display screen are rotationally connected by a rotating shaft, and the mobile terminal further includes a processor and As described above, the detecting module 301 is configured to implement the functions of the determining module 302 and the adjusting module 303; wherein
  • the detecting module 301 is configured to detect an angle at which the second display screen is opened relative to the first display screen;
  • the processor is configured to determine a display mode of the first display screen and the second display screen according to a preset angle range in which the angle is preset, and adjust the first display screen according to the determined display mode and The display state of the second display screen.
  • the display states of the first display screen and the second display screen are adjusted according to the determined display mode.
  • the range of angles includes a first angular range, a second angular range, a third angular range, and a fourth angular range;
  • the display mode corresponding to the first angle range is: the first display screen displays one frame of the screen, and the second display screen does not display the screen;
  • the display mode corresponding to the second angle range is: the first display screen and the second display screen respectively display the same frame picture;
  • the display mode corresponding to the third angular range is: the first display screen and the second display
  • the display screens respectively display different frame pictures
  • the display mode corresponding to the fourth angle range is: the first display screen and the second display screen are combined to display one frame of picture.
  • the interval of the first angular range is [0°, 30°);
  • the interval of the second angular range is [30°, 120°);
  • the interval of the third angular range is [120°, 150°);
  • the interval of the fourth angular range is [150°, 180°].
  • the rotating shaft includes a first rotating shaft fixedly coupled to the first display screen and a second rotating shaft fixedly coupled to the second display screen, the first rotating shaft and the a second rotating shaft is rotatably connected;
  • the first rotating shaft is provided with at least two first objects to be tested, and the at least two first objects to be tested are sequentially arranged along the axial direction of the rotating shaft to form a spiral shape on the second display screen.
  • a first detecting unit is provided, and when the first detecting unit detects the docking with the corresponding first object to be tested, the first state signal is output; when the first detecting unit is not detected Outputting a second state signal when docked with the corresponding first object to be tested;
  • the detecting the angle at which the second display screen is opened relative to the first display screen comprises:
  • the first display screen is provided with a second object to be tested and a third object to be tested
  • the second display screen is provided with a second detecting unit for detecting the second object to be tested.
  • a third detecting unit for detecting the third object to be tested
  • the second detecting unit When the second detecting unit detects the docking with the second object to be tested, the second detecting unit outputs a third state signal, where the third state signal is used to indicate that the angle is 0°. When the second detecting unit does not detect the docking with the second object to be tested, the second detecting unit outputs a fourth state signal;
  • the third detecting unit When the third detecting unit detects the docking with the third object to be tested, the third detecting unit outputs a fifth state signal, where the fifth state signal is used to indicate that the angle is 180°. When the third detecting unit does not detect the docking with the third object to be tested, the third detecting unit outputs a sixth state signal;
  • the determining, according to the status signal output by each first detecting unit, the angle at which the second display screen is opened relative to the first display screen comprises:
  • the angle is determined according to a state signal output by each of the first detecting units.
  • the storage medium is, for example, a read-only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disk.
  • the display mode of the display screen can be adjusted by adjusting the relative angles of the first display screen and the second display screen, and the user operation is simple, and the user experience can be improved.

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Abstract

本文公布一种屏幕显示处理方法及装置,该方法可包括:检测所述第二显示屏相对于所述第一显示屏打开的角度;根据所述角度所处预设的角度范围,确定所述第一显示屏和所述第二显示屏的显示模式;根据确定的显示模式调整所述第一显示屏和所述第二显示屏的显示状态。

Description

一种屏幕显示处理方法及装置 技术领域
本公开涉及但不限于通信技术领域,尤指一种屏幕显示处理方法及装置。
背景技术
随着移动终端的快速发展,移动终端逐渐呈现多样化。近来,双屏移动终端逐渐兴起,当双屏移动终端展开使两个显示屏呈180°时,可以使两个显示屏拼合起来显示屏幕内容,可以给用户带来较好的视觉效果。但是,当用户需要使用移动终端的两个显示屏上显示不同的内容时,用户需要通过移动终端界面进行手动设置,从而使两个显示屏显示不同的内容。
可见,当前的双屏移动终端控制信息显示的方式繁琐。
发明概述
以下是对本文详细描述的主题的概述。本概述并非是为了限制权利要求的保护范围。
本公开实施例提供一种屏幕显示处理方法及装置,以简化双屏移动终端控制信息显示的方式。
本公开实施例提供一种屏幕显示处理方法,包括:
检测所述第二显示屏相对于所述第一显示屏打开的角度;
根据所述角度所处预设的角度范围,确定所述第一显示屏和所述第二显示屏的显示模式;
根据确定的显示模式调整所述第一显示屏和所述第二显示屏的显示状态。
本公开实施例还提供一种屏幕显示处理装置,包括:
检测模块,设置为检测所述第二显示屏相对于所述第一显示屏打开的 角度;
确定模块,设置为根据所述角度所处预设的角度范围,确定所述第一显示屏和所述第二显示屏的显示模式;
调整模块,设置为根据确定的显示模式调整所述第一显示屏和所述第二显示屏的显示状态。
本公开实施例还提供一种移动终端,包括第一显示屏和第二显示屏,所述第一显示屏和所述第二显示屏通过旋转轴转动连接,所述移动终端还包括:
检测模块,设置为检测所述第二显示屏相对于所述第一显示屏打开的角度;
处理器,设置为根据所述角度所处预设的角度范围,确定所述第一显示屏和所述第二显示屏的显示模式,根据确定的显示模式调整所述第一显示屏和所述第二显示屏的显示状态。
本公开实施例还提供一种计算机存储介质,所述计算机存储介质中存储有计算机可执行的一个或多个程序,所述一个或多个程序被所述计算机执行时使所述计算机执行如上述提供的一种屏幕显示处理方法。
本公开实施例,检测所述第二显示屏相对于所述第一显示屏打开的角度;根据所述角度所处预设的角度范围,确定所述第一显示屏和所述第二显示屏的显示模式;根据确定的显示模式调整所述第一显示屏和所述第二显示屏的显示状态。这样,当用户需要调整显示屏的显示模式时,可以通过调整第一显示屏和第二显示屏的相对角度来调整显示屏的显示模式,用户操作简单,可以提高用户体验感。
在阅读并理解了附图和详细描述后,可以明白其他方面。
附图概述
图1为本公开第一实施例提供的一种屏幕显示处理方法流程图;
图1-a为本公开第一实施例提供的一种移动终端示意图;
图1-b为本公开第一实施例提供的一种移动终端显示模式示意图;
图1-c为本公开第一实施例提供的一种角度范围与对应显示模式图;
图2为本公开第二实施例提供的另一种屏幕显示处理方法流程图;
图2-a为本公开第二实施例提供的一种角度检测装置示意图;
图2-b为本公开第二实施例提供的另一种角度检测装置示意图;
图3为本公开第三实施例提供的一种屏幕显示处理装置图;
图4为本公开第三实施例提供的另一种屏幕显示处理装置图。
详述
下面将结合附图及实施例进行详细描述。
如图1所示,图1为本公开实施例提供的一种屏幕显示处理方法流程图,包括以下步骤:
步骤S101、检测所述第二显示屏相对于所述第一显示屏打开的角度。
该步骤中,上述第一显示屏和第二显示屏可以是移动终端的两个显示屏,第一显示屏和第二显示屏可以通过旋转轴连接。如图1-a所示,图1-a为本公开实施例提供的一种移动终端示意图,第一显示屏202与第二显示屏203通过第一旋转轴201、第二旋转轴204和205连接。
当移动终端的两个显示屏处于闭合状态时,可以理解为第二显示屏相对于第一显示屏打开的角度为0°,此时,可以将移动终端两个显示屏打开,使两个显示屏呈一定的角度。第二显示屏相对第一显示屏打开的角度可以是由闭合状态到待检测角度的状态时,第二显示屏相对第一显示屏绕旋转轴旋转的角度。
例如,在将移动终端的两个显示屏由闭合状态打开过程中,第二显示屏相对第一显示屏绕旋转轴的旋转角度为30°,此时第二显示屏相对于第一显示屏打开的角度为30°。
步骤S102、根据所述角度所处预设的角度范围,确定所述第一显示屏和所述第二显示屏的显示模式。
该步骤中,上述角度范围可以是将移动终端第二显示屏相对于第一显 示屏可打开的角度划分的多个角度区间,上述显示模式可以是第一显示屏和第二显示屏显示内容的多种模式,例如,第一显示屏和第二显示屏显示不同的画面;第一显示屏和第二显示屏显示同一帧画面;第一显示屏和第二显示屏拼合显示同一帧画面等等。
可以设置多个角度范围,可以将多种显示模式分别与多个角度范围对应,使移动终端根据所处角度范围来确定屏幕的显示模式。
例如,设置角度区间为30°至120°对应显示模式为第一显示屏和第二显示屏显示同一帧画面。若移动终端的两个屏幕当前打开的相对角度为50°,可以确定该角度处于上述30°至120°之间的角度范围,从而可以确定移动终端的显示模式为第一显示屏和第二显示屏显示同一帧画面。
在一实施方式中,所述角度范围包括第一角度范围、第二角度范围、第三角度范围和第四角度范围;
所述第一角度范围对应的显示模式为:所述第一显示屏显示一帧画面,所述第二显示屏不显示画面;
所述第二角度范围对应的显示模式为:所述第一显示屏和所述第二显示屏分别显示同一帧画面;
所述第三角度范围对应的显示模式为:所述第一显示屏和所述第二显示屏分别显示不同帧画面;
所述第四角度范围对应的显示模式为:所述第一显示屏和所述第二显示屏拼合显示一帧画面。
该实施方式中,上述角度范围可以是将移动终端第二显示屏相对于第一显示屏可打开的角度划分的多个角度区间,上述显示模式可以是第一显示屏和第二显示屏显示内容的多种模式,显示模式可以包括以下四种模式,如图1-b所示,图1-b为本公开实施例提供的一种移动终端显示模式示意图:
第一种显示模式:第一显示屏显示一帧画面,第二显示屏不显示画面。
该显示模式中,第一显示屏可以是主屏,第二显示屏可以是副屏,第 一显示屏正常显示内容,第二显示屏的屏幕处于关闭的状态,不显示画面信息。例如,向第一显示屏发送信息A,使第一显示屏输出信息A,控制第二显示屏处于熄屏状态。
第二种显示模式:第一显示屏和所述第二显示屏分别显示同一帧画面。
该显示模式中,可以将同一帧画面同时通过第一显示屏和第二显示屏输出,使第一显示屏和第二显示屏同时显示该画面。例如,将应用程序的一帧画面A同时向第一显示屏和第二显示屏发送,使第一显示屏和第二显示屏同时输出该画面A,当第一屏幕接收到用户对应用程序的操作时,画面A跳转至画面B,移动终端将画面B同时向第一显示屏和第二显示屏发送,使第一显示屏和第二显示屏同时显示画面B。
第三种显示模式:第一显示屏和第二显示屏分别显示不同帧画面。
该显示模式中,可以分别向第一显示屏和第二显示屏发送不同的帧画面,使第一显示屏和第二显示屏输出不同的帧画面。例如,向第一显示屏发送一帧画面A,向第二显示屏发送一帧画面B,使第一显示屏输出画面A,第二显示屏输出画面B,此时,若第一显示屏接收到用户的操作,画面A跳转至画面a,移动终端向第一显示屏发送画面a,控制第一显示屏输出画面a,第二显示屏仍然输出画面B。
第四种显示模式:第一显示屏和第二显示屏拼合显示一帧画面。
该显示模式中,将第一显示屏和第二显示屏拼合为一个屏幕,使一帧画面在拼合起来的屏幕上进行显示。例如,将一帧画面A分割为画面a和画面b,并分别向第一显示屏输出画面a,向第二显示屏输出画面b,使第一显示屏和第二显示屏上共同显示画面A。
可以设置四个角度范围,可以将上述四种显示模式分别与四个角度范围对应,使移动终端根据所处角度范围来确定对应的屏幕的显示模式。
例如,设置角度区间为30°至120°对应显示模式为第一显示屏和第二显示屏显示同一帧画面。若移动终端的两个屏幕当前打开的相对角度为50°,可以确定该角度处于上述30°至120°之间的角度范围,从而可以 确定移动终端的显示模式为第一显示屏和第二显示屏显示同一帧画面。
在该实施方式中,设置多种显示模式,分别对应不同的角度范围,用户可以通过调整移动终端的两个显示屏的相对角度来选择不同的屏幕显示模式,且操作方式简单,提高用户体验。
在一实施方式中,所述第一角度范围的区间为[0°,30°);
所述第二角度范围的区间为[30°,120°);
所述第三角度范围的区间为[120°,150°);
所述第四角度范围的区间为[150°,180°]。
该实施方式中,上述角度范围可以包括上述四个角度范围,使上述四个角度范围分别对应上述四种屏幕显示模式,如图1-c所示,图1-c为本公开实施例提供的一种角度范围与对应显示模式图。当检测到移动终端的两个显示屏打开的角度时,确定该角度所处角度范围,根据角度范围确定显示屏的显示模式,从而根据显示模式调整两个显示屏的显示状态。
例如,将移动终端的两个显示屏打开,使第二显示屏相对于第一显示屏的打开角度为20°,此时,可以确定角度处于第一角度范围,控制第一显示屏显示画面内容,而第二显示屏处于关闭状态,不显示画面内容。
步骤S103、根据确定的显示模式调整所述第一显示屏和所述第二显示屏的显示状态。
该步骤中,移动终端可以将需要显示的信息发送给两个显示屏,并可以根据步骤S102中确定的显示模式,调整显示状态。
例如,确定移动终端的显示模式为第一显示屏和第二显示屏显示同一帧画面后,控制第一显示屏和第二显示屏显示同帧画面。
本公开实施例的屏幕显示处理方法可以应用于移动终端,例如:手机、平板电脑(Tablet Personal Computer)、膝上型电脑(Laptop Computer)、个人数字助理(personal digital assistant,简称PDA)、可穿戴式设备(Wearable Device)等。
本公开实施例,检测所述第二显示屏相对于所述第一显示屏打开的角度;根据所述角度所处预设的角度范围,确定所述第一显示屏和所述第二 显示屏的显示模式;根据确定的显示模式调整所述第一显示屏和所述第二显示屏的显示状态。这样,当用户需要调整显示屏的显示模式时,可以通过调整第一显示屏和第二显示屏的相对角度来调整显示屏的显示模式,用户操作简单,可以提高用户体验感。
如图2所示,图2为本公开实施例提供的另一种屏幕显示处理方法流程图。包括以下步骤:
步骤S201、根据每个第一检测单元输出的状态信号确定所述第二显示屏相对于所述第一显示屏打开的角度。
在该步骤中,如图1-a中,第一显示屏202与第一旋转轴201固定连接,第二显示屏203与第二旋转轴204和205固定连接,第一旋转轴201可以与第二旋转轴204和205转动连接。
第一旋转轴上设有至少两个第一待测物,所述至少两个第一待测物沿所述旋转轴的轴向依次排列,形成螺旋状,所述第二显示屏上对应每一第一待测物设有一第一检测单元,当所述第一检测单元检测到与对应的第一待测物对接时,输出第一状态信号;当所述第一检测单元未检测到与对应的第一待测物对接时,输出第二状态信号。
上述检测单元与待测物对接可以理解为检测单元的检测值处于预设的范围,或者检测值达到预设的门限值。例如,在磁检测元件对磁场进行检测时,可以设置当磁检测元件检测到的磁场大小处于预设的磁场范围时,表示磁检测元件和磁体对接,也可以设置当磁检测元件检测到的磁场大小达到预设门限值时,表示磁检测元件和磁体对接;在光检测装置对光信号进行检测时,可以设置当光检测装置检测到的光信号功率处于预设的范围时,表示光检测装置与发光装置对接,也可以设置当光检测装置检测到的光信号功率大小达到预设的门限值时,表示光检测装置与发光装置对接。
当采用磁检测元件检测时,若当磁检测元件检测到的磁场大小处于预设的磁场范围时,表示磁检测元件和磁体对接,那么,当磁检测元件和磁体对接时,可以对应移动终端显示屏打开的角度范围,即移动终端显示屏的打开角度处在该角度范围时,磁检测元件和磁体都处于对接状态。每个磁检测元件和对应的磁体对接时可以对应多个角度范围,每个角度范围可 以形成连续的角度范围,或者不连续的角度范围。例如,磁检测元件A和磁检测元件B为相邻的检测元件,若磁检测元件A和磁体a对接时,对应的移动终端显示屏的打开角度范围为[10°,15°],磁检测元件B和磁体b对接时对应的移动终端显示屏的打开角度范围为[20°,25°],这样,形成的角度范围为不连续的角度范围。当形成不连续的角度范围时,可以根据检测元件在与磁体对接状态和非对接状态下输出的不同信号确定移动终端显示屏所处的角度范围。
若磁检测元件A和磁体a对接时,对应的移动终端显示屏的打开角度范围为[10°,15°),磁检测元件B和磁体b对接时,对应的移动终端显示屏的打开角度范围为[15°,20°],这样,形成的角度范围为连续的角度范围。可以根据磁检测元件与磁体对接状态下输出的信号确定移动终端显示屏所处的角度范围。
若当磁检测元件检测到的磁场大小达到预设的门限值时,表示磁检测元件和磁体对接,那么,当磁检测元件和磁体对接时,可以对应移动终端显示屏的角度A,即移动终端显示屏的打开角度为A时,磁检测元件与磁体对接。每个磁检测元件与对应的磁体对接时,可以对应移动终端显示屏打开的多个角度。可以根据磁检测元件与磁体处于对接状态和非对接状态下输出的不同信号确定移动终端显示屏的打开角度或所处的角度范围。
以下通过检测磁场和光信号的方式检测角度来举例说明。
如图2-a所示,a至l为第一旋转轴上设置的待检测磁体,A至L为第二显示屏上设置的磁检测元件,磁检测元件A至L分别与磁体a至l一一对应,磁检测单元可以用于检测磁场大小。磁体a至l沿着旋转轴的轴向依次排列形成螺旋状,磁检测元件A至L可以呈直线分布,如图所示,这样,当移动终端的两个显示屏绕旋转轴转动时,磁体a至l随着旋转轴转动,可以使磁体a至l依次向磁检测元件A至L靠近,使磁检测元件与磁体对接。当检测到磁场处于预设磁场范围时,可以输出有效逻辑电平,表示磁检测元件与磁体对接,当磁场超出上述预设磁场范围时,可以输出无效逻辑电平,表示磁检测元件与磁体不对接。在磁检测元件与磁体对接的过程中,可以对应移动终端两个显示屏的打开角度范围,即移动终端显示屏的打开 角度在该角度范围时,磁检测元件与磁体对接。当磁检测元件A至L依次与磁体a至l对接时,磁检测元件A至L可以依次输出有效逻辑电平。
当移动终端的两个屏幕打开一定角度时,可以根据当前输出有效逻辑电平的磁检测元件的编号,并根据预设的与磁检测元件编号对应的显示屏打开的角度,确定第二显示屏相对第一显示屏打开的角度。例如,当移动终端显示屏的角度增大时,磁检测元件A、B和C依次输出有效逻辑电平,若磁检测元件C输出有效逻辑电平时,对应移动终端的两个显示屏的打开角度范围为[30°,35°]。那么,当磁检测元件C输出有效逻辑电平时,此时,可以获取移动终端当前的两个显示屏的打开角度范围为[30°,35°]。在该实施例中,移动终端两个屏幕的打开角度继续增大,当磁检测元件A、B和C依次输出有效逻辑电平后,依次输出无效电平,磁检测元件D输出无效逻辑电平,若磁检测元件D输出有效逻辑电平时对应移动终端的两个显示屏的打开角度范围为[40°,45°],此时,可以根据输出有效逻辑电平的磁检测元件编号顺序确定旋转轴的旋转方向,从而可以确定移动终端当前的两个显示屏的打开角度所处的角度区间为(35°,40°)。
图2-a中的a至l还可以是发光装置,A至L可以是用于检测光信号的光检测装置,当光检测装置A至L检测到的光信号功率处于预设的范围时,光检测装置输出光信号,表示光检测装置与发光装置对接。
当移动终端的两个显示屏绕旋转轴转动时,发光装置a至l随着旋转轴转动,可以使发光装置a至l依次向光检测装置A至L靠近,使发光装置与光检测装置对接。当光检测装置检测到光信号功率处于预设范围时,可以输出光信号,表示发光装置与光检测装置对接。当发光装置a至l依次与光检测装置A至L对接时,光检测装置A至L可以依次输出光信号。
当移动终端的两个屏幕打开一定角度时,可以根据当前输出光信号的光检测装置的编号,并根据预设的与光检测装置编号对应的显示屏打开的角度,确定第二显示屏相对第一显示屏打开的角度。
例如,当移动终端显示屏的角度增大时,光检测装置A、B和C依次输出光信号。若光检测装置C输出光信号时,对应移动终端的两个显示屏的打开角度范围为[30°,35°],那么,当光检测装置C输出光信号时,此 时,可以获取移动终端当前的两个显示屏的打开角度范围为[30°,35°]。当移动终端显示屏的的初始打开角度不为0°时,可以根据依次输出的光信号的光检测装置的编号确定移动终端显示屏的相对旋转方向,从而获取移动终端显示屏的角度范围。
另外,上述检测角度的装置还可以通过安装到转轴内的各种的旋转编码器、通过机械传动方式将两个显示屏以及转轴的相对旋转变换为直线位移,然后检测位移距离来实现,上述旋转编码器可以是光电式旋转编码器或陀螺仪等角度检测元件。另外,还可以通过角度检测装置把移动终端两个显示屏的打开角度转换为模拟电压量、模拟电流量或者数字信号等数据,使移动终端可以识别该数据并加以利用,从而读取角度信息。
在一实施方式中,所述第一显示屏上设有第二待测物和第三待测物,所述第二显示屏上设有用于检测所述第二待测物的第二检测单元,以及用于检测所述第三待测物的第三检测单元;
当所述第二检测单元检测到与所述第二待测物对接时,所述第二检测单元输出第三状态信号,所述第三状态信号用于指示所述角度为0°,当所述第二检测单元未检测到与所述第二待测物对接时,所述第二检测单元输出第四状态信号;
当所述第三检测单元检测到与所述第三待测物对接时,所述第三检测单元输出第五状态信号,所述第五状态信号用于指示所述角度为180°,当所述第三检测单元未检测到与所述第三待测物对接时,所述第三检测单元输出第六状态信号;
所述检测所述第二显示屏相对于所述第一显示屏打开的角度,包括:
当检测到所述第二检测单元输出所述第三状态信号时,确定所述角度为0°;
当检测到所述第三检测单元输出所述第五状态信号时,确定所述角度为180°;
当检测到所述第四状态信号和所述第六状态信号时,根据每个第一检测单元输出的状态信号确定所述角度。
上述检测单元与待测物对接可以是检测单元检测待测物时,检测值达到预设门限值。可以设置第二检测单元和第二待测物的位置以及第二检测单元的门限值,使第二检测单元在上述角度为0°时,输出第三状态信号;可以设置第三检测单元和第三待测物的位置以及第三检测单元的门限值,使第三检测单元在上述角度为180°时,输出第五状态信号。
为了更清楚地说明上述检测方式,以下进行举例说明。
如图2-b所示,第一显示屏上设置磁体2a和磁体2c,磁体2a的位置远离旋转轴,磁体2c的位置靠近旋转轴;第二显示屏上设置磁检测元件2b和2d,磁检测元件2b的位置与磁体2a对应,远离旋转轴,磁检测元件2d的位置与磁体2c对应,靠近旋转轴,这样,当第二显示屏相对第一显示屏的打开角度为0°时,磁检测元件2b和磁体2a位置靠近,磁检测元件2b检测到磁场达到预设门限值,输出有效逻辑电平,以指示第二显示屏相对于第一显示屏打开的角度为0°,此时,磁检测元件2d输出无效逻辑电平;当第二显示屏相对第一显示屏的打开角度为180°时,磁检测元件2d和磁体2c位置靠近,磁检测元件2d检测到磁场达到预设门限值,输出有效逻辑电平,以指示第二显示屏相对于第一显示屏打开的角度为180°,此时,磁检测元件2b输出无效逻辑电平。
因此,当检测到磁检测元件2b输出有效逻辑电平,磁检测元件2d输出无效逻辑电平时,第二显示屏相对于第一显示屏打开的角度为0°;当检测到磁检测元件2d输出有效逻辑电平,磁检测元件2b输出无效逻辑电平时,第二显示屏相对于第一显示屏打开的角度为180°。
当检测元件2b和检测元件2d均输出无效逻辑电平时,需要根据每个第一检测单元输出的状态信号确定第二显示屏相对于第一显示屏打开的角度。
在该实施方式中,可以对第二显示屏相对于第一显示屏的打开角度为0°和180°时进行检测,从而根据上述角度对应的信息显示模式控制第一显示屏和第二显示屏调整显示状态,操作方式简单,提高用户体验感。
步骤S202、根据所述角度所处预设的角度范围,确定所述第一显示屏和所述第二显示屏的显示模式;
该步骤中,上述角度范围可以是将移动终端第二显示屏相对于第一显示屏可打开的角度划分的多个角度区间,上述显示模式可以是第一显示屏和第二显示屏显示内容的多种模式,例如,第一显示屏和第二显示屏显示不同的画面;第一显示屏和第二显示屏显示同一帧画面;第一显示屏和第二显示屏拼合显示同一帧画面等等。
可以设置多个角度范围,可以将多种显示模式分别与多个角度范围对应,使移动终端根据所处角度范围来确定屏幕的显示模式。
例如,设置角度区间为30°至120°对应显示模式为第一显示屏和第二显示屏显示同一帧画面。若移动终端的两个屏幕当前打开的相对角度为50°,可以确定该角度处于上述30°至120°之间的角度范围,从而可以确定移动终端的显示模式为第一显示屏和第二显示屏显示同一帧画面。
在一实施方式中,所述角度范围包括第一角度范围、第二角度范围、第三角度范围和第四角度范围;
所述第一角度范围对应的显示模式为:所述第一显示屏显示一帧画面,所述第二显示屏不显示画面;
所述第二角度范围对应的显示模式为:所述第一显示屏和所述第二显示屏分别显示同一帧画面;
所述第三角度范围对应的显示模式为:所述第一显示屏和所述第二显示屏分别显示不同帧画面;
所述第四角度范围对应的显示模式为:所述第一显示屏和所述第二显示屏拼合显示一帧画面。
该实施方式中,上述角度范围可以是将移动终端第二显示屏相对于第一显示屏可打开的角度划分的多个角度区间,上述显示模式可以是第一显示屏和第二显示屏显示内容的多种模式,显示模式可以包括以下四种模式,如图1-b所示:
第一种显示模式:第一显示屏显示一帧画面,第二显示屏不显示画面。
该显示模式中,第一显示屏可以是主屏,第二显示屏可以是副屏,第 一显示屏正常显示内容,第二显示屏的屏幕处于关闭的状态,不显示画面信息。例如,向第一显示屏输出信息A,控制第一显示屏显示信息A,控制第二显示屏处于熄屏状态。
第二种显示模式:第一显示屏和所述第二显示屏分别显示同一帧画面。
该显示模式中,可以将同一帧画面同时通过第一显示屏和第二显示屏输出,使第一显示屏和第二显示屏同时显示该画面。例如,将应用程序的一帧画面A同时向第一显示屏和第二显示屏发送,使第一显示屏和第二显示屏同时输出该画面A,当第一屏幕接收到用户对应用程序的操作时,画面A跳转至画面B,移动终端将画面B同时向第一显示屏和第二显示屏发送,使第一显示屏和第二显示屏同时显示画面B。
第三种显示模式:第一显示屏和第二显示屏分别显示不同帧画面。
该显示模式中,可以分别向第一显示屏和第二显示屏发送不同的帧画面,使第一显示屏和第二显示屏输出不同的帧画面。例如,向第一显示屏发送一帧画面A,向第二显示屏发送一帧画面B,使第一显示屏输出画面A,第二显示屏输出画面B,此时,若第一显示屏接收到用户的操作,画面A跳转至画面a,移动终端向第一显示屏发送画面a,控制第一显示屏输出画面a,第二显示屏仍然输出画面B。
第四种显示模式:第一显示屏和第二显示屏拼合显示一帧画面。
该显示模式中,将第一显示屏和第二显示屏拼合为一个屏幕,使一帧画面在拼合起来的屏幕上进行显示。例如,将一帧画面A分割为画面a和画面b,并分别向第一显示屏输出画面a,向第二显示屏输出画面b,使第一显示屏和第二显示屏上共同显示画面A。
可以设置四个角度范围,可以将上述四种显示模式分别与四个角度范围对应,使移动终端根据所处角度范围来确定对应的屏幕的显示模式。
例如,设置角度区间为30°至120°对应显示模式为第一显示屏和第二显示屏显示同一帧画面。若移动终端的两个屏幕当前打开的相对角度为50°,可以确定该角度处于上述30°至120°之间的角度范围,从而可以 确定移动终端的显示模式为第一显示屏和第二显示屏显示同一帧画面。
在该实施方式中,设置多种显示模式,分别对应不同的角度范围,用户可以通过调整移动终端的两个显示屏的相对角度来选择不同的屏幕显示模式,而不需要手动切换屏幕的显示模式,操作方式简单,提高用户体验。
在一实施方式中,所述第一角度范围的区间为[0°,30°);
所述第二角度范围的区间为[30°,120°);
所述第三角度范围的区间为[120°,150°);
所述第四角度范围的区间为[150°,180°]。
该实施方式中,上述角度范围可以包括上述四个角度范围,使上述四个角度范围分别对应上述四种屏幕显示模式,如图1-c所示。当检测到移动终端的两个显示屏打开的角度时,确定该角度所处角度范围,根据角度范围确定显示屏的显示模式,从而根据显示模式调整两个显示屏的显示状态。
例如,将移动终端的两个显示屏打开,使第二显示屏相对于第一显示屏的打开角度为20°,此时,可以确定角度处于第一角度范围,控制第一显示屏显示画面内容,而第二显示屏处于关闭状态,不显示画面内容。
步骤S203、根据确定的显示模式调整所述第一显示屏和所述第二显示屏的显示状态。
该步骤中,移动终端可以将需要显示的信息发送给两个显示屏,并可以根据步骤S202中确定的显示模式,调整显示状态。
例如,确定移动终端的显示模式为第一显示屏和第二显示屏显示同一帧画面后,控制第一显示屏和第二显示屏显示同帧画面。
本公开实施例,根据每个第一检测单元输出的状态信号确定所述第二显示屏相对于所述第一显示屏打开的角度,从而根据上述角度所处的角度范围确定第一屏幕和第二屏幕的显示模式,并根据确定的显示模式调整第一屏幕和第二屏幕的显示状态,这样,当用户需要调整显示屏的显示模式时,可以通过调整第一显示屏和第二显示屏的相对角度来调整显示屏的显 示模式,用户操作简单,可以提高用户体验感。
如图3所示,图3为本公开实施例提供的一种屏幕显示处理装置,屏幕显示处理装置300包括:检测模块301、确定模块302和调整模块303,其中:
检测模块301,设置为检测所述第二显示屏相对于所述第一显示屏打开的角度;
确定模块302,设置为根据所述角度所处预设的角度范围,确定所述第一显示屏和所述第二显示屏的显示模式;
调整模块303,设置为根据确定的显示模式调整所述第一显示屏和所述第二显示屏的显示状态。
在一实施方式中,所述角度范围包括第一角度范围、第二角度范围、第三角度范围和第四角度范围;
所述第一角度范围对应的显示模式为:所述第一显示屏显示一帧画面,所述第二显示屏不显示画面;
所述第二角度范围对应的显示模式为:所述第一显示屏和所述第二显示屏分别显示同一帧画面;
所述第三角度范围对应的显示模式为:所述第一显示屏和所述第二显示屏分别显示不同帧画面;
所述第四角度范围对应的显示模式为:所述第一显示屏和所述第二显示屏拼合显示一帧画面。
在一实施方式中,所述第一角度范围的区间为[0°,30°);
所述第二角度范围的区间为[30°,120°);
所述第三角度范围的区间为[120°,150°);
所述第四角度范围的区间为[150°,180°]。
在一实施方式中,所述旋转轴包括与所述第一显示屏固定连接的第一旋转轴以及与所述第二显示屏固定连接的第二旋转轴,所述第一旋转轴和所述第二旋转轴转动连接;
所述第一旋转轴上设有至少两个第一待测物,所述至少两个第一待测物沿所述旋转轴的轴向依次排列,形成螺旋状,所述第二显示屏上对应每一第一待测物设有一第一检测单元,当所述第一检测单元检测到与对应的第一待测物对接时,输出第一状态信号;当所述第一检测单元未检测到与对应的第一待测物对接时,输出第二状态信号;
所述检测模块301设置为根据每个第一检测单元输出的状态信号确定所述第二显示屏相对于所述第一显示屏打开的角度。
在一实施方式中,如图4所示,所述第一显示屏上设有第二待测物和第三待测物,所述第二显示屏上设有用于检测所述第二待测物的第二检测单元,以及用于检测所述第三待测物的第三检测单元;
当所述第二检测单元检测到与所述第二待测物对接时,所述第二检测单元输出第三状态信号,所述第三状态信号用于指示所述角度为0°,当所述第二检测单元未检测到与所述第二待测物对接时,所述第二检测单元输出第四状态信号;
当所述第三检测单元检测到与所述第三待测物对接时,所述第三检测单元输出第五状态信号,所述第五状态信号用于指示所述角度为180°,当所述第三检测单元未检测到与所述第三待测物对接时,所述第三检测单元输出第六状态信号;
所述检测模块301包括:
第一确定单元3011,设置为当检测到所述第二检测单元输出所述第三状态信号时,确定所述角度为0°;
第二确定单元3012,设置为当检测到所述第三检测单元输出所述第五状态信号时,确定所述角度为180°;
第三确定单元3013,设置为当检测到所述第四状态信号和所述第六状态信号时,根据每个第一检测单元输出的状态信号确定所述角度。
本实施例中,上述屏幕显示处理装置300可以应用于移动终端,例如:手机、平板电脑(Tablet Personal Computer)、膝上型电脑(Laptop Computer)、个人数字助理(personal digital assistant,简称PDA)、可穿戴 式设备(Wearable Device)等。
屏幕显示处理装置300可以应用于图1至图2对应的方法实施例中移动终端实现的每个过程,以及达到相同的有益效果,为避免重复,这里不再赘述。
本公开实施例还提供一种移动终端,包括第一显示屏和第二显示屏,所述第一显示屏和所述第二显示屏通过旋转轴转动连接,所述移动终端还包括处理器和如上所述的检测模块301,所述处理器设置为实现上述确定模块302和调整模块303的功能;其中,
所述检测模块301,设置为检测所述第二显示屏相对于所述第一显示屏打开的角度;
所述处理器,设置为根据所述角度所处预设的角度范围,确定所述第一显示屏和所述第二显示屏的显示模式,根据确定的显示模式调整所述第一显示屏和所述第二显示屏的显示状态。
本领域普通技术人员可以理解实现上述实施例方法的全部或者部分步骤是可以通过程序指令相关的硬件来完成,所述的程序可以存储于一计算机可读取介质中,该程序在执行时,包括以下步骤:
检测所述第二显示屏相对于所述第一显示屏打开的角度;
根据所述角度所处预设的角度范围,确定所述第一显示屏和所述第二显示屏的显示模式;
根据确定的显示模式调整所述第一显示屏和所述第二显示屏的显示状态。
在一实施方式中,所述角度范围包括第一角度范围、第二角度范围、第三角度范围和第四角度范围;
所述第一角度范围对应的显示模式为:所述第一显示屏显示一帧画面,所述第二显示屏不显示画面;
所述第二角度范围对应的显示模式为:所述第一显示屏和所述第二显示屏分别显示同一帧画面;
所述第三角度范围对应的显示模式为:所述第一显示屏和所述第二显 示屏分别显示不同帧画面;
所述第四角度范围对应的显示模式为:所述第一显示屏和所述第二显示屏拼合显示一帧画面。
在一实施方式中,所述第一角度范围的区间为[0°,30°);
所述第二角度范围的区间为[30°,120°);
所述第三角度范围的区间为[120°,150°);
所述第四角度范围的区间为[150°,180°]。
在一实施方式中,所述旋转轴包括与所述第一显示屏固定连接的第一旋转轴以及与所述第二显示屏固定连接的第二旋转轴,所述第一旋转轴和所述第二旋转轴转动连接;
所述第一旋转轴上设有至少两个第一待测物,所述至少两个第一待测物沿所述旋转轴的轴向依次排列,形成螺旋状,所述第二显示屏上对应每一第一待测物设有一第一检测单元,当所述第一检测单元检测到与对应的第一待测物对接时,输出第一状态信号;当所述第一检测单元未检测到与对应的第一待测物对接时,输出第二状态信号;
该程序在执行时,所述检测所述第二显示屏相对于所述第一显示屏打开的角度,包括:
根据每个第一检测单元输出的状态信号确定所述第二显示屏相对于所述第一显示屏打开的角度。
在一实施方式中,所述第一显示屏上设有第二待测物和第三待测物,所述第二显示屏上设有用于检测所述第二待测物的第二检测单元,以及用于检测所述第三待测物的第三检测单元;
当所述第二检测单元检测到与所述第二待测物对接时,所述第二检测单元输出第三状态信号,所述第三状态信号用于指示所述角度为0°,当所述第二检测单元未检测到与所述第二待测物对接时,所述第二检测单元输出第四状态信号;
当所述第三检测单元检测到与所述第三待测物对接时,所述第三检测单元输出第五状态信号,所述第五状态信号用于指示所述角度为180°,当 所述第三检测单元未检测到与所述第三待测物对接时,所述第三检测单元输出第六状态信号;
该程序在执行时,所述根据每个第一检测单元输出的状态信号确定所述第二显示屏相对于所述第一显示屏打开的角度,包括:
当检测到所述第二检测单元输出所述第三状态信号时,确定所述角度为0°;
当检测到所述第三检测单元输出所述第五状态信号时,确定所述角度为180°;
当检测到所述第四状态信号和所述第六状态信号时,根据每个第一检测单元输出的状态信号确定所述角度。
所述的存储介质,如只读存储器(Read-Only Memory,简称ROM)、随机存取存储器(Random Access Memory,简称RAM)、磁碟或者光盘等。
以上所述是本公开的实施方式,应当指出,对于本技术领域的普通技术人员来说,在不脱离本公开所述原理的前提下,还可以作出若干改进和润饰,这些改进和润饰也应视为本公开的保护范围。
工业实用性
通过本公开实施例,当用户需要调整显示屏的显示模式时,可以通过调整第一显示屏和第二显示屏的相对角度来调整显示屏的显示模式,用户操作简单,可以提高用户体验感。

Claims (12)

  1. 一种屏幕显示处理方法,应用于移动终端,所述移动终端包括第一显示屏和第二显示屏,所述第一显示屏和所述第二显示屏通过旋转轴转动连接,所述方法包括:
    检测所述第二显示屏相对于所述第一显示屏打开的角度;
    根据所述角度所处预设的角度范围,确定所述第一显示屏和所述第二显示屏的显示模式;
    根据确定的显示模式调整所述第一显示屏和所述第二显示屏的显示状态。
  2. 如权利要求1所述的方法,其中,所述角度范围包括第一角度范围、第二角度范围、第三角度范围和第四角度范围;
    所述第一角度范围对应的显示模式为:所述第一显示屏显示一帧画面,所述第二显示屏不显示画面;
    所述第二角度范围对应的显示模式为:所述第一显示屏和所述第二显示屏分别显示同一帧画面;
    所述第三角度范围对应的显示模式为:所述第一显示屏和所述第二显示屏分别显示不同帧画面;
    所述第四角度范围对应的显示模式为:所述第一显示屏和所述第二显示屏拼合显示一帧画面。
  3. 如权利要求2所述的方法,其中,
    所述第一角度范围的区间为[0°,30°);
    所述第二角度范围的区间为[30°,120°);
    所述第三角度范围的区间为[120°,150°);
    所述第四角度范围的区间为[150°,180°]。
  4. 如权利要求1至3任一项所述的方法,其中,所述旋转轴包括与所述第一显示屏固定连接的第一旋转轴以及与所述第二显示屏固定连接的第二旋转轴,所述第一旋转轴和所述第二旋转轴转动连接;所述第一旋转轴上设有 至少两个第一待测物,所述至少两个第一待测物沿所述旋转轴的轴向依次排列,形成螺旋状,所述第二显示屏上对应每一第一待测物设有一第一检测单元,当所述第一检测单元检测到与对应的第一待测物对接时,输出第一状态信号;当所述第一检测单元未检测到与对应的第一待测物对接时,输出第二状态信号;
    所述检测所述第二显示屏相对于所述第一显示屏打开的角度,包括:
    根据每个第一检测单元输出的状态信号确定所述第二显示屏相对于所述第一显示屏打开的角度。
  5. 如权利要求4所述的方法,其中,
    所述第一显示屏上设有第二待测物和第三待测物,所述第二显示屏上设有用于检测所述第二待测物的第二检测单元,以及用于检测所述第三待测物的第三检测单元;
    当所述第二检测单元检测到与所述第二待测物对接时,所述第二检测单元输出第三状态信号,所述第三状态信号用于指示所述角度为0°,当所述第二检测单元未检测到与所述第二待测物对接时,所述第二检测单元输出第四状态信号;
    当所述第三检测单元检测到与所述第三待测物对接时,所述第三检测单元输出第五状态信号,所述第五状态信号用于指示所述角度为180°,当所述第三检测单元未检测到与所述第三待测物对接时,所述第三检测单元输出第六状态信号;
    所述检测所述第二显示屏相对于所述第一显示屏打开的角度,包括:
    当检测到所述第二检测单元输出所述第三状态信号时,确定所述角度为0°;
    当检测到所述第三检测单元输出所述第五状态信号时,确定所述角度为180°;
    当检测到所述第四状态信号和所述第六状态信号时,根据每个第一检测单元输出的状态信号确定所述角度。
  6. 一种屏幕显示处理装置,应用于移动终端,所述移动终端包括第一显 示屏和第二显示屏,所述第一显示屏和所述第二显示屏通过旋转轴转动连接,包括:
    检测模块,设置为检测所述第二显示屏相对于所述第一显示屏打开的角度;
    确定模块,设置为根据所述角度所处预设的角度范围,确定所述第一显示屏和所述第二显示屏的显示模式;
    调整模块,设置为根据确定的显示模式调整所述第一显示屏和所述第二显示屏的显示状态。
  7. 如权利要求6所述的装置,其中,所述角度范围包括第一角度范围、第二角度范围、第三角度范围和第四角度范围;
    所述第一角度范围对应的显示模式为:所述第一显示屏显示一帧画面,所述第二显示屏不显示画面;
    所述第二角度范围对应的显示模式为:所述第一显示屏和所述第二显示屏分别显示同一帧画面;
    所述第三角度范围对应的显示模式为:所述第一显示屏和所述第二显示屏分别显示不同帧画面;
    所述第四角度范围对应的显示模式为:所述第一显示屏和所述第二显示屏拼合显示一帧画面。
  8. 如权利要求7所述的装置,其中,
    所述第一角度范围的区间为[0°,30°);
    所述第二角度范围的区间为[30°,120°);
    所述第三角度范围的区间为[120°,150°);
    所述第四角度范围的区间为[150°,180°]。
  9. 如权利要求6至8任一项所述的装置,其中,所述旋转轴包括与所述第一显示屏固定连接的第一旋转轴以及与所述第二显示屏固定连接的第二旋转轴,所述第一旋转轴和所述第二旋转轴转动连接;
    所述第一旋转轴上设有至少两个第一待测物,所述至少两个第一待测物 沿所述旋转轴的轴向依次排列,形成螺旋状,所述第二显示屏上对应每一第一待测物设有一第一检测单元,当所述第一检测单元检测到与对应的第一待测物对接时,输出第一状态信号;当所述第一检测单元未检测到与对应的第一待测物对接时,输出第二状态信号;
    所述检测模块设置为根据每个第一检测单元输出的状态信号确定所述第二显示屏相对于所述第一显示屏打开的角度。
  10. 如权利要求9所述的装置,其中,所述第一显示屏上设有第二待测物和第三待测物,所述第二显示屏上设有用于检测所述第二待测物的第二检测单元,以及用于检测所述第三待测物的第三检测单元;
    当所述第二检测单元检测到与所述第二待测物对接时,所述第二检测单元输出第三状态信号,所述第三状态信号用于指示所述角度为0°,当所述第二检测单元未检测到与所述第二待测物对接时,所述第二检测单元输出第四状态信号;
    当所述第三检测单元检测到与所述第三待测物对接时,所述第三检测单元输出第五状态信号,所述第五状态信号用于指示所述角度为180°,当所述第三检测单元未检测到与所述第三待测物对接时,所述第三检测单元输出第六状态信号;
    所述检测模块包括:
    第一确定单元,设置为当检测到所述第二检测单元输出所述第三状态信号时,确定所述角度为0°;
    第二确定单元,设置为当检测到所述第三检测单元输出所述第五状态信号时,确定所述角度为180°;
    第三确定单元,设置为当检测到所述第四状态信号和所述第六状态信号时,根据每个第一检测单元输出的状态信号确定所述角度。
  11. 一种移动终端,包括第一显示屏和第二显示屏,所述第一显示屏和所述第二显示屏通过旋转轴转动连接,其特征在于,还包括:
    检测模块,设置为检测所述第二显示屏相对于所述第一显示屏打开的角度;
    处理器,设置为根据所述角度所处预设的角度范围,确定所述第一显示屏和所述第二显示屏的显示模式,根据确定的显示模式调整所述第一显示屏和所述第二显示屏的显示状态。
  12. 一种计算机存储介质,所述计算机存储介质中存储有计算机可执行的一个或多个程序,所述一个或多个程序被所述计算机执行时使所述计算机执行如权利要求1-5任一项的屏幕显示处理方法。
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