WO2020237435A1 - 显示屏的控制方法、电子设备及可读存储介质 - Google Patents
显示屏的控制方法、电子设备及可读存储介质 Download PDFInfo
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- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input 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
- G06F3/14—Digital output to display device ; Cooperation and interconnection of the display device with other functional units
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- This application relates to the field of communications, and in particular to a method for controlling a display screen, an electronic device, and a readable storage medium.
- the display screen is divided into two sub-display screens.
- the electronic device usually controls one of the sub-displays to light up and control to turn off the other sub-display.
- the sub-display screen that is currently in the bright screen display state will switch between the two sub-display screens as the state of the electronic device changes. Sometimes, this kind of automatic switching is not necessary, but it causes inconvenience to users.
- the present invention provides a method for controlling a display screen, an electronic device and a readable storage medium to solve the above-mentioned problems.
- the present application provides a method for controlling a display screen, which is applied to an electronic device with a display screen.
- the display screen includes a first sub-display and a second sub-display that is foldable relative to the first sub-display.
- Display screen; the control method includes:
- the present application provides an electronic device including a processor and a display screen electrically connected to the processor, the display screen including a first sub-display screen and a foldable The second sub-display, the processor controls one of the first sub-display and the second sub-display to be in a bright-screen display state when the electronic device is in a preset folding state, and determines whether to receive To the bright screen lock operation, and when the bright screen lock operation is received, control to lock the sub display screen currently in the bright screen display state as the target sub display screen for the bright screen display.
- the present application provides a readable storage medium with an interactive program stored on the readable storage medium, and the interactive program executes the above-mentioned display screen control method when the interactive program is run by a processor.
- the method for controlling the display screen, the electronic device, and the readable storage medium of the present application are based on controlling one of the first sub-display screen and the second sub-display screen to be in a preset folding state when the electronic device is Bright screen display state; judge whether the bright screen lock operation is received; and when the bright screen lock operation is received, control to lock the sub display currently in the bright screen display state as the target sub display for bright screen display
- the screen can meet the specific needs of users and improve user experience.
- FIG. 1 is a schematic diagram of the structure of a program module of an electronic device in an embodiment of the application.
- FIG. 2 is a schematic diagram of the electronic device in a folded state in an embodiment of the application.
- Fig. 3 is a schematic diagram of the electronic device in Fig. 2 in an unfolded state.
- Fig. 4 is a flowchart of a method for controlling a display screen in the first embodiment of the application.
- Fig. 5 is a flowchart of a method for controlling a display screen in a second embodiment of the application.
- Fig. 6 is a flowchart of a method for controlling a display screen in a third embodiment of the application.
- FIG. 1 shows a schematic diagram of a program module of an electronic device 100 provided by an embodiment of the application
- FIG. 2 shows a folded state of the electronic device 100 provided by the first embodiment of the application.
- the electronic device 100 includes a processor 10 and a display screen 20 electrically connected to the processor 10.
- the display screen 20 includes a first sub display screen 21 and a second sub display screen 23 foldable relative to the first sub display screen 21.
- the display screen 20 is a flexible display screen.
- the first sub-display 21 and the second sub-display 21 are separate display screens.
- the processor 10 controls one of the first sub-display 21 and the second sub-display 23 to be in the bright screen display state, determines whether the bright screen lock operation is received, and when it receives During the bright-screen lock operation, the sub-display screen currently in the bright-screen display state is controlled to lock as the target sub-display for bright-screen display.
- the display area corresponding to the target sub-display does not follow the electronic device 100 is turned over and changes, that is, the display area corresponding to the target sub-display screen does not change between the first sub-display screen 21 and the second sub-display screen 23 as the spatial orientation of the electronic device 100 changes. Switch between them, so as to meet the specific needs of users and improve user experience.
- the electronic device 100 is a foldable electronic product, including but not limited to electronic products such as smart phones, tablet computers, and displays.
- the display screen 20 is a flexible display screen.
- the flexible display screen may be an Organic Light-Emitting Diode (OLED) flexible display screen, which has the characteristics of bendable, twistable, and foldable, and has better color and contrast, and ultra-thin characteristics.
- OLED Organic Light-Emitting Diode
- the shape of the electronic device 100 can be adapted to its current use requirements.
- the user when the user does not need to use the electronic device 100, the user can also bend it to reduce the space occupied by the electronic device 100 and improve its portability.
- the display screen 20 is a flexible display screen. As shown in FIG. 2, the display screen 20 also includes a third sub display screen 25 connected to the first sub display screen 21 and the second sub display screen 23. The third sub-display screen 25 corresponds to the foldable area of the flexible display screen.
- the electronic device 100 further includes an angle sensor 30 electrically connected to the processor 10.
- the angle sensor 30 is arranged on the third sub-display 25.
- the angle sensor 30 is used to sense the angle value ⁇ between the first sub-display 21 and the second sub-display 23.
- the display screen 20 includes a display surface and a non-display surface opposite to the display surface.
- the angle value ⁇ between the first sub-display 21 and the second sub-display 23 refers to the first sub-display of the electronic device 100.
- the angle value ⁇ may also be obtained by a curvature sensor or a distance sensor (not shown) provided on the electronic device 100, which is not limited here.
- the electronic device 100 when the angle ⁇ between the first sub-display 21 and the second sub-display 23 is greater than or equal to the first preset threshold and less than or equal to the second preset threshold, the electronic device 100 is The preset folding state. Wherein, the first preset threshold is less than the second preset threshold. When the angle value ⁇ between the first sub-display 21 and the second sub-display 23 is greater than the second preset threshold, the electronic device 100 is in the preset unfolded state.
- the first preset threshold is -10 degrees
- the second preset threshold is 30 degrees.
- the first angle value ⁇ 1 and the second angle value ⁇ 2 can also be set according to specific design requirements.
- both of the first sub-display 21 and the second sub-display 23 of the electronic device 100 may be in a bright screen state.
- the display screen 20 of the electronic device 100 is divided into a first sub display screen 21 and a second sub display screen 23 by the third sub display screen 25.
- the first sub-display 21 and the second sub-display 23 have opposite directions.
- the first sub-display 21, the second sub-display 23, and the third sub-display 25 form a continuous plane.
- the folded state means that the angle between the two parts of the electronic device 100 divided by the third sub-display 25 is less than 180 degrees. When the angle between the two parts is 180 degrees, the electronic device 100 is in an unfolded state.
- the electronic device 100 defines a fold line 101 corresponding to the foldable area of the display screen 20.
- the third sub-display screen 25 is divided into a first side screen 251 and a second side screen 252 by the folding line 101.
- the first sub-display 21 is connected to the first side screen 251, and the second sub-display 23 is connected to the second side screen 252.
- the first side screen 251 and the second side screen 252 of the third sub-display 25 form a continuous arc.
- the first side screen 251 and the second side screen 252 of the third sub-display 25 form a continuous plane.
- the resolution of the first sub-display screen 21 is the same as the resolution of the second sub-display screen 23. In other embodiments, the resolution of the first sub-display 21 is different from the resolution of the second sub-display 23 and the third sub-display 25.
- the processor 10 controls to turn on or turn off the third sub-display screen 25 in response to a preset input operation received by the target sub-display screen.
- the input operation includes, but is not limited to, a pressing or clicking operation, or a voice operation applied to the currently displayed sub-display screen.
- the processor 10 is further configured to control one of the first side screen 251 and the second side screen 252 to perform bright screen display.
- the processor 10 is further configured to control to turn on or off the side screen adjacent to the sub-display screen currently in the bright-screen display state, for example, the first side screen 251 and the first sub-display screen 21 are simultaneously brightened.
- the processor 10 is further configured to control the first side screen 251 and the second side screen 252 to simultaneously perform bright screen display.
- the application interface displayed on the first side screen 251 is different from the application interface displayed on the first sub-display 21; or the application interface displayed on the second side screen 252 is different from the second sub-display 23 shows the application interface.
- the first side screen 251 and the second side screen 252 may separately display an application interface, for example, a weather forecast interface, a current affairs news interface, or a short message interface, etc.
- the first sub-display 21 and the second sub-display 23 One of them can display a video interface or a music playback interface, etc.
- the first side screen 251 and the first sub-display 21 jointly display the same application interface
- the second side screen 252 and the second sub-display 23 jointly display the same application interface.
- the entire display area of the display screen 20 is divided into two sub-display areas 102 by the folding line 101.
- the two sub-display areas 102 are located on opposite sides of the folding line 101. That is, the first sub display screen 21 and the first side screen 251 connected to it form one sub display area 102, and the second sub display screen 23 and the second side screen 252 connected to it form another sub display area 102.
- the two sub-display areas 102 can display the same application interface, that is, the content information displayed by the electronic device 100 occupies the first sub-display 21 and the second sub-display 23, and the user can use the large-screen display 20, which improves the vision effect.
- the electronic device 100 further includes a housing 1.
- the display screen 20 is arranged on the casing 1, and the casing 1 and the display screen 20 enclose a space to accommodate electronic components (such as a circuit board).
- the electronic device 100 further includes a gravity sensor 40 electrically connected to the processor 10.
- the gravity sensor 40 is disposed in the electronic device 100, that is, the gravity sensor 40 is disposed in the space enclosed by the housing 1 and the display screen 20.
- the gravity sensor 40 can be arranged on a circuit board (not shown), for example, soldered on the circuit board, and can be electrically connected with other electronic components and the main control chip on the circuit board.
- the gravity sensor 40 includes a first gravity sensor 41 and a second gravity sensor 42.
- the first gravity sensor 41 is arranged on the first sub-display 21.
- the second gravity sensor 42 is arranged on the second sub-display 23.
- the first gravity sensor 41 is used to sense the first Z-axis data of the first sub-display 21, and transmit the sensed first Z-axis data to the processor 10, so that the processor 10 can recognize the first sub-display 21's orientation.
- the second gravity sensor 42 is used to sense the second Z-axis data of the second sub-display 23, and transmit the sensed second Z-axis data to the processor 10, so that the processor 10 can identify the second sub-display 23 orientation.
- a first preset direction and a second preset direction are defined, and the first preset direction is different from the second preset direction.
- the first preset direction is a direction facing the user
- the second preset direction is a direction facing away from the user.
- the processor 10 determines that the orientation of the first sub-display 21 is the first preset direction, and the second sub-display The orientation of the display screen 23 is the second preset direction; or when the first Z-axis data is negative and the second Z-axis data is positive, it is determined that the orientation of the first sub-display 21 is the first Two preset directions, the orientation of the second sub-display 23 is the first preset direction.
- the first gravity sensor 41 is configured to detect the first Z-axis data as a positive value when the first sub-display 21 is placed on a supporting object 200 (see FIG. 2, such as a desktop) facing upwards.
- the detected first Z-axis data is negative; the second gravity sensor 42 is set to be positioned when the second sub-display 23 is placed on the supporting object 200 facing upwards
- the detected second Z-axis data is a positive value, and the detected second Z-axis data is a negative value when the second sub-display 23 is placed downward on the carrier 200.
- the orientation of the first sub-display 21 and the second sub-display 23 can also be determined by sensing data generated by other sensing devices, such as an acceleration sensor, an electronic compass, or a direction sensor.
- other sensing devices such as an acceleration sensor, an electronic compass, or a direction sensor.
- any two or more of the gravity sensor, direction sensor, electronic compass, or acceleration sensor can also be obtained at the same time. Sensor data.
- the processor 10 is also when the first Z-axis data is the same as the second Z-axis data, for example, the first Z-axis data and the second Z-axis data are both Is a positive or negative value to acquire the first X-axis data and the first Y-axis data sensed by the first gravity sensor 41 and the second X-axis data and the second Y-axis data sensed by the second gravity sensor 42, Determine the current orientation of the first sub-display screen and the second sub-display screen according to the acquired first X-axis data, first Y-axis data, second X-axis data, and second Y-axis data.
- first X-axis data and the first Y-axis data represent the spatial orientation of the first sub-display
- the second X-axis data and the second Y-axis data represent the space of the second sub-display Towards.
- the electronic device 100 further includes a memory 50 and a communication bus 60 electrically connected to the processor 10. Specifically, the processor 10, the display screen 20, the gravity sensor 40, and the memory 50 may be coupled through the communication bus 60.
- FIG. 1 is only an example of the electronic device 100 and does not constitute a limitation on the electronic device 100.
- the electronic device 100 may include more or less components than those shown in FIG. 1, or a combination. Certain components, or different components, for example, the electronic device 100 may also include input/output devices, network access devices, and so on.
- the processor 10 may be a central processing unit (Central Processing Unit, CPU), other general-purpose processors, digital signal processors (Digital Signal Processor, DSP), application specific integrated circuits (Application Specific Integrated Circuit, ASIC), on-site Field-Programmable Gate Array (FPGA) or other programmable logic devices, discrete gates or transistor logic devices, discrete hardware components, etc.
- the general-purpose processor may be a microprocessor or the processor may also be any conventional processor, etc.
- the processor 10 is the control center of the electronic device 100, and connects various parts of the entire electronic device 100 through various interfaces and lines.
- the processor 50 is also used to execute all the steps in the control method of the display screen 20 described below.
- the memory 50 may be used to store program codes 501.
- the processor 10 implements various functions of the electronic device 100 by running or executing the program codes 501 stored in the memory 50 and calling data stored in the memory 50.
- FIG. 4 is a flowchart of a method for controlling a display screen according to an embodiment of the application.
- the control method of the display screen is applied to the above-mentioned electronic device 100.
- the control method of the display screen in the embodiment of the present application will be described in detail below.
- Step S401 When the electronic device 100 is in a preset folding state, control one of the first sub-display 21 and the second sub-display 23 to be in a bright screen display state.
- step S403 it is judged whether a bright screen lock operation is received. If yes, go to step S405; if no, go back to step S403.
- a lock screen key is displayed on the sub display screen currently in the bright screen display state, and the lock screen key generates the bright screen lock operation in response to the first click operation received.
- the sub-display screen currently in the bright screen display state displays the lock screen key in response to the received interactive operation.
- the interactive operation includes, but is not limited to, a sliding operation or a long press operation.
- the bright screen lock operation is a first touch operation applied to the sub-display screen currently in the bright screen display state, and the touch parameter value corresponding to the first touch operation is in the first preset state. Set the parameter value range.
- step S403 specifically includes the following steps:
- the sub-display screen currently in a bright screen display state generates a first touch parameter value in response to the received first touch operation
- the electronic device 100 includes a touch sensor for acquiring the first touch parameter value.
- the first touch parameter value includes, but is not limited to, pressing time, pressing force, touch area, and the number of touch points (for example, different fingers of the user touch on the designated area of the currently bright screen sub-display screen can produce different Touch point), or touch track.
- the value of the first preset parameter may be customized by the user or preset in the factory default of the electronic device 100.
- Step S405 controlling to lock the sub-display screen currently in the bright screen display state as a target sub-display screen for bright screen display.
- control method provided by the present application applies a lock screen operation to the first sub-screen or the second sub-screen that is in the lit state, and the lit sub-screen is always in the bright-screen display state, even if the electronic device When the use state or the placement state is changed, the lit sub-display is still in the bright screen display state.
- control method further includes the following steps after step S405:
- Step S407 It is judged whether a bright screen unlock operation is received. If not, execute step S405; if yes, execute step S409.
- Step S409 controlling to unlock the target sub-display for bright screen display.
- a lock screen key is displayed on the sub display screen currently in a bright screen display state, and the lock screen key generates the bright screen unlock operation in response to the received second click operation.
- the sub-display screen currently in the on-screen display state displays the lock screen key in response to the received interactive operation.
- the interactive operation includes, but is not limited to, a sliding operation or a long press operation.
- the bright screen unlocking operation is a second touch operation applied to the sub-display screen currently in a bright screen display state, and a touch parameter value corresponding to the second touch operation is within a second preset parameter value range.
- step S409 specifically includes the following steps:
- the sub-display screen currently in a bright screen display state generates a second touch parameter value in response to the received second touch operation
- the parameter category of the second parameter value is the same as the parameter category of the first parameter value.
- the second preset parameter value may be customized by the user or preset in the factory default of the electronic device 100.
- control method further includes: after locking, that is, when the target sub-display screen is in a bright-screen locked state, determining whether the spatial orientation of the electronic device 100 has changed; and when the When the spatial orientation changes, the sub-display screen currently in the bright screen display state is still controlled to be the target sub-display screen in the bright screen display state.
- the spatial orientation of the electronic device 100 includes the orientation of the electronic device 100 in the placed state or the orientation of the electronic device 100 in the holding state.
- the placement state of the electronic device 100 refers to the state when the electronic device 100 is placed on a supporting object 200 (such as a desktop).
- the placement state of the electronic device 100 includes a horizontal placement state or a vertical placement state.
- the electronic device 100 is placed horizontally; when the first sub-display 21 and the second sub-display 23 are placed on the supporting object 200, or the first sub-display
- the electronic device 100 is placed in a vertical state.
- the holding state of the electronic device 100 refers to the state of the electronic device 100 when the user holds the electronic device 100 or the electronic device 100 is clamped instead of being placed on a carrier 200.
- the method for controlling the display screen 20 provided by an embodiment of the present application is based on the fact that when the currently on-screen display state is locked as the target sub-display screen for bright-screen display, the target sub-display screen corresponds to The display area does not change with the flip of the electronic device 100, that is, the display area corresponding to the target sub-display screen does not change in the first sub-display screen 21 and the first sub-display screen as the spatial orientation of the electronic device 100 changes. Switching between the second sub-display screens 23 can meet the specific use requirements of the user and improve the user experience.
- the method for controlling the display screen further includes the following steps:
- Step S501 Obtain an angle value between the first sub-display 21 and the second sub-display 23.
- Step S502 Determine whether the angle value is greater than or equal to a first preset threshold and less than or equal to a second preset threshold. If yes, go to step S503; if not, go to step S504.
- the first preset threshold is less than the second preset threshold, and a more specific description of the angle value can refer to the aforementioned related content of the electronic device 100.
- Step S503 Determine that the electronic device is in the preset folded state.
- Step S504 Determine that the electronic device is not in the preset folded state.
- step S401 specifically includes the following steps.
- Step S4011 Determine whether the spatial orientation of the electronic device 100 has changed within a preset time. If yes, execute step S4012; if no, then the process ends.
- Step S4012 Obtain the orientations of the first sub-display 21 and the second sub-display 23.
- the orientation includes a first preset direction and a second preset direction, and the first preset direction is different from the second preset direction.
- Step S4012 specifically includes the following steps: acquiring first Z-axis data sensed by the first gravity sensor 41 in the first sub-display screen 21 and sensing by the second gravity sensor 42 in the second sub-display screen 23 The second Z-axis data reached;
- the orientation of the first sub-display 21 is the first preset direction
- the second sub-display 23 Is the second preset direction
- the orientation of the first sub-display 21 is the second preset direction
- the second sub-display 23 The orientation is the first preset direction
- the first preset direction is a direction facing the user
- the second preset direction is a direction facing away from the user.
- control method of the display screen 20 further includes the following steps:
- the first Z-axis data is the same as the second Z-axis data
- the first X-axis data and the first Y-axis data sensed by the first gravity sensor 41 and the second gravity sensor 42 are acquired.
- the sensed second X-axis data and the second Y-axis data determine the first X-axis data, the first Y-axis data, the second X-axis data, and the second Y-axis data acquired.
- the current orientation of a sub-display 21 and the second sub-display 23 wherein the first X-axis data and the first Y-axis data represent the spatial orientation of the first sub-display 21, and the second The X-axis data and the second Y-axis data represent the spatial orientation of the second sub-display screen 23.
- the orientation of the first sub-display 21 and the second sub-display 23 may also be determined by sensing data generated by other sensing devices, such as acceleration sensors or Direction sensor.
- other sensing devices such as acceleration sensors or Direction sensor.
- any two or more of a gravity sensor, a direction sensor, or an acceleration sensor may also be used at the same time.
- Step S4013 according to the orientation of the first sub-display screen and the second sub-display screen, determine the sub-display screen that needs to be lit currently among the first sub-display screen and the second sub-display screen.
- Step S4013 specifically includes the following steps: when the orientation of one of the first sub-display 21 and the second sub-display 23 is the first preset direction, and the first sub-display 21 and the second sub-display When the other orientation of the second sub-display 23 is the second preset direction, it is determined that the sub-display whose current orientation is the first preset direction is the sub-display to be lit.
- the method for controlling the display screen further includes the following steps:
- the third sub-display screen 25 is controlled to turn on or off.
- the preset input operation includes, but is not limited to, a pressing or clicking operation or a voice operation applied to the sub-display screen currently in a bright screen display state.
- a pressing or clicking operation or a voice operation applied to the sub-display screen currently in a bright screen display state.
- a voice operation applied to the sub-display screen currently in a bright screen display state.
- the embodiment of the present invention further provides a computer storage medium, wherein the computer storage medium may store a program, and the program execution includes part or all of the steps of any one of the display screen control methods recorded in the above method embodiments .
- the disclosed device may be implemented in other ways.
- the device embodiments described above are only illustrative.
- the above control method is implemented in the form of a software functional unit and sold or used as an independent product, it can be stored in a computer readable storage medium.
- the technical solution of the present invention essentially or the part that contributes to the prior art or all or part of the technical solution can be embodied in the form of a software product, and the computer software product is stored in a storage
- the medium includes several instructions to make a computer device (which may be a personal computer, a server, or a network device, etc., specifically a processor in a computer device) execute all or part of the steps of the above-mentioned control method of each embodiment of the present invention.
- the aforementioned storage medium may include: U disk, mobile hard disk, magnetic disk, optical disk, read-only memory (English: Read-Only Memory, abbreviation: ROM) or random access memory (English: Random Access Memory, abbreviation: RAM) and other media that can store program codes.
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Abstract
本申请提供了一种显示屏的控制方法、电子设备及可读存储介质。所述显示屏的控制方法应用于具有显示屏的电子设备。所述显示屏包括第一子显示屏和相对所述第一子显示屏可折叠的第二子显示屏。所述控制方法包括:在所述电子设备处于预设折叠状态时,控制所述第一子显示屏及所述第二子显示屏其中之一处于亮屏显示状态(S401);判断是否接收到亮屏锁定操作(S403);以及当接收到所述亮屏锁定操作时,控制锁定所述当前处于亮屏显示状态的子显示屏为用于亮屏显示的目标子显示屏(S405)。本申请提供的显示屏的控制方法、电子设备及可读存储介质,不仅使用方便,且提升了用户体验。
Description
本申请涉及通信领域,尤其涉及一种显示屏的控制方法、电子设备及可读存储介质。
现有的具有柔性显示屏的电子设备,当其处于折叠状态时,显示屏会划分为两个子显示屏。为了节约能耗,电子设备通常控制其中一个子显示屏进行点亮显示,并控制关闭另一子显示屏。然而,当前处于亮屏显示状态的子显示屏会随电子设备的状态改变而在两子显示屏之间进行切换。有时,这种自动切换并不是必须的,反倒给用户造成使用不便。
发明内容
有鉴于此,本发明提供一种显示屏的控制方法、电子设备及可读存储介质,以解决上述问题。
第一方面,本申请提供了一种显示屏的控制方法,应用于具有显示屏的电子设备,所述显示屏包括第一子显示屏和相对所述第一子显示屏可折叠的第二子显示屏;所述控制方法包括:
在所述电子设备处于预设折叠状态时,控制所述第一子显示屏及所述第二子显示屏其中之一处于亮屏显示状态;
判断是否接收到亮屏锁定操作;以及
当接收到所述亮屏锁定操作时,控制锁定所述当前处于亮屏显示状态的子显示屏为用于亮屏显示的目标子显示屏。
第二方面,本申请提供了一种电子设备,包括处理器及电连接于所述处理器的显示屏,所述显示屏包括第一子显示屏和相对所述第一子显示屏可折叠的第二子显示屏,所述处理器在所述电子设备处于预设折叠状态时,控制所述第一子显示屏及所述第二子显示屏其中之一处于亮屏显示状态,判断是否接收到亮屏锁定操作,以及当接收到所述亮屏锁定操作时,控制锁定所述当前处于亮屏 显示状态的子显示屏为用于亮屏显示的目标子显示屏。
第二方面,本申请提供了一种可读存储介质,所述可读存储介质上存储有交互程序,所述交互程序被处理器运行时执行如上所述的显示屏的控制方法。
本申请的显示屏的控制方法、电子设备及可读存储介质,基于在所述电子设备处于预设折叠状态时,控制所述第一子显示屏及所述第二子显示屏其中之一处于亮屏显示状态;判断是否接收到亮屏锁定操作;以及当接收到所述亮屏锁定操作时,控制锁定所述当前处于亮屏显示状态的子显示屏为用于亮屏显示的目标子显示屏,可满足用户特定的使用需求,提升用户体验。
为了更清楚地说明本申请实施方式或现有技术中的技术方案,下面将对实施方式或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施方式,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1为本申请一实施例中的电子设备的程序模块的结构示意图。
图2为本申请一实施例中的电子设备处于折叠状态下的示意图。
图3为图2中的电子设备处于展开状态下的示意图。
图4为本申请第一实施例中的显示屏的控制方法的流程图。
图5为本申请第二实施例中的显示屏的控制方法的流程图。
图6为本申请第三实施例中的显示屏的控制方法的流程图。
下面将结合本申请实施方式中的附图,对本申请实施方式中的技术方案进行清楚、完整地描述,显然,所描述的实施方式仅仅是本申请一部分实施方式,而不是全部的实施方式。基于本申请中的实施方式,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施方式,都属于本申请保护的范围。
请一并参阅图1和图2,图1所示为本申请一实施方式提供的电子设备100的程序模块示意图,图2所示为本申请第一实施方式提供的电子设备100处于折叠状态的结构示意图。电子设备100包括处理器10及电连接于处理器10的 显示屏20。显示屏20包括第一子显示屏21和相对第一子显示屏21可折叠的第二子显示屏23。在本实施方式中,所述显示屏20为柔性显示屏。在其他实施方式种,第一子显示21和第二子显示屏21为彼此分离的显示屏。处理器10在电子设备100处于预设折叠状态时,控制第一子显示屏21及第二子显示屏23其中之一处于亮屏显示状态,判断是否接收到亮屏锁定操作,以及当接收到所述亮屏锁定操作时,控制锁定所述当前处于亮屏显示状态的子显示屏为用于亮屏显示的目标子显示屏。如此,在本申请中,基于在锁定所述当前处于亮屏显示状态的子显示屏为用于亮屏显示的目标子显示屏时,所述目标子显示屏对应的显示区域不随所述电子设备100的翻转而发生变化,也即所述目标子显示屏对应的显示区域不随所述电子设备100的空间朝向的改变而在所述第一子显示屏21和所述第二子显示屏23之间进行切换,从而可满足用户特定的使用需求,且提升用户体验。
需要说明的是,在电子设备100处于所述预设折叠状态时,第一子显示屏21及第二子显示屏23中只有一个子显示屏处于亮屏状态。
可以理解的,在本实施例中,电子设备100为可折叠的电子产品,包括但不限于智能手机、平板电脑、显示器等电子产品。显示屏20为柔性显示屏。所述柔性显示屏可以是有机发光二极管(Organic Light-Emitting Diode,OLED)柔性显示屏,具有可弯曲、可扭转和可折叠的特性,同时具有更好的色彩及对比度,以及超薄等特点。当显示屏20进行不同程度的折叠后,可让电子设备100的形态契合自己当前的使用需求。另一方面,当用户不需要使用电子设备100的时候也可以通过弯折来减小其所占用的空间,提升其便携性。
在本实施方式中,显示屏20为柔性显示屏。如图2所示,显示屏20还包括连接第一子显示屏21和第二子显示屏23的第三子显示屏25。第三子显示屏25对应于所述柔性显示屏的可折叠区域。
请再次参阅图1和图2,电子设备100还包括电连接于处理器10的角度传感器30。角度传感器30设置于第三子显示屏25上。角度传感器30用于感测第一子显示屏21和第二子显示屏23之间的角度值θ。需要说明的是,显示屏20包括显示面及与所述显示面相对的非显示面,第一子显示屏21和第二子显示屏23之间的角度值θ是指被电子设备100的第三子显示屏25所划分的两个非显示 面之间的角度值。在一些实施例中,所述角度值θ还可以由设置在电子设备100上的曲率传感器或距离传感器(图未示)获得,此处不作限定。
具体的,当第一子显示屏21和第二子显示屏23之间的角度值θ大于或等于第一预设阈值,且小于或等于第二预设阈值时,所述电子设备100处于所述预设折叠状态。其中,所述第一预设阈值小于所述第二预设阈值。当第一子显示屏21和第二子显示屏23之间的角度值θ大于所述第二预设阈值时,所述电子设备100处于所述预设展开状态。
在一个优选的实施例中,为了使得电子设备100的第一子显示屏21及第二子显示屏23中只有一个子显示屏处于亮屏状态。所述第一预设阈值为-10度,所述第二预设阈值为30度。在其他实施例中,所述第一角度值θ1和所述第二角度值θ2还可以根据具体的设计需求而进行设定。当所述电子设备100处于所述预设展开状态,电子设备100的第一子显示屏21及第二子显示屏23中的两个子显示屏均可以处于亮屏状态。
在一实施方式中,请参阅图3,当电子设备100处于折叠状态时,电子设备100的显示屏20被第三子显示屏25划分为第一子显示屏21和第二子显示屏23,且第一子显示屏21和第二子显示屏23的朝向相反。当电子设备100处于展开状态时,第一子显示屏21、第二子显示屏23和第三子显示屏25形成连续的平面。其中,所述折叠状态是指电子设备100被第三子显示屏25所划分的两个部分之间的夹角小于180度。当所述两个部分的夹角为180度时,电子设备100处于展开状态。
请一并参阅图2和图3,在一些实施方式中,电子设备100对应于显示屏20的可折叠区域定义一折叠线101。第三子显示屏25被折叠线101划分为第一侧屏251和第二侧屏252。第一子显示屏21连接第一侧屏251,第二子显示屏23连接第二侧屏252。当电子设备100处于折叠状态时,第三子显示屏25的第一侧屏251及第二侧屏252形成连续的弧面。当电子设备100处于展开状态时,第三子显示屏25的第一侧屏251及第二侧屏252形成连续的平面。
可选的,在一实施方式中,第一子显示屏21的分辨率与第二子显示屏23的分辨率相同。在其他实施例中,所述第一子显示屏21的分辨率不同于第二子显示屏23及第三子显示屏25的分辨率。
进一步的,处理器10响应所述目标子显示屏接收到的预设的输入操作,控制点亮或关闭第三子显示屏25。其中,所述输入操作包括,但不局限于施加于所述当前显示的子显示屏的按压或点击操作、或语音操作。在一实施方式中,处理器10还用于控制第一侧屏251和第二侧屏252其中之一进行亮屏显示。具体的,处理器10还用于控制点亮或关闭与所述当前处于亮屏显示状态的子显示屏相邻的侧屏,例如第一侧屏251与第一子显示屏21同时进行亮屏显示,或第二侧屏252与第二子显示屏23同时进行亮屏显示,以增大所述当前处于亮屏显示状态的子显示屏的显示面积,从而增强用户的视觉体验。在其他实施方式中,处理器10还用于控制第一侧屏251和第二侧屏252同时进行亮屏显示。
可以理解的是,在一实施方式中,第一侧屏251显示的应用界面不同于第一子显示屏21显示的应用界面;或第二侧屏252显示的应用界面不同于第二子显示屏23显示的应用界面。例如,第一侧屏251和第二侧屏252其中至少之一可以单独显示应用界面,例如显示天气预报界面、时事新闻界面或短信界面等等,第一子显示屏21和第二子显示屏23其中之一可以显示视频界面或音乐播放界面等等。在其他实施方式中,第一侧屏251与第一子显示屏21共同显示同一应用界面,或第二侧屏252与第二子显示屏23共同显示同一应用界面。
在一些实施方式中,当显示屏20处于展开状态时,显示屏20的整个显示区域被所述折叠线101划分为两个子显示区域102。其中,所述两个子显示区域102位于所述折叠线101的正对的两侧。即,第一子显示屏21和与其连接的第一侧屏251组成一个子显示区域102,且第二子显示屏23和与其连接第二侧屏252组成另一个子显示区域102。两个子显示区域102可显示同一应用界面,也即所述电子设备100显示的内容信息占据第一子显示屏21及第二子显示屏23,用户可以使用大屏的显示屏20,提升了视觉效果。
可以理解的是,请再次参阅图1和图2,电子设备100还包括壳体1。显示屏20设置在壳体1上,壳体1和显示屏20围成一个空间以容纳电子元件(如电路板)。电子设备100还包括电连接于处理器10的重力传感器40。重力传感器40设置于电子设备100内,也即重力传感器40设置于壳体1和显示屏20所围成的空间内。具体地,重力传感器40可以设置于电路板上(图未示),例如,焊接于所述电路板上,进而可以与电路板上的其他电子元件及主控芯片 实现电性连接。
如图3所示,重力传感器40包括第一重力传感器41和第二重力传感器42。第一重力传感器41设置于第一子显示屏21上。第二重力传感器42设置于第二子显示屏23上。第一重力传感器41用于感测第一子显示屏21的第一Z轴数据,并将所感测到的第一Z轴数据传输至处理器10,从而实现处理器10识别第一子显示屏21的朝向。第二重力传感器42用于感测第二子显示屏23的第二Z轴数据,并将所感测到的第二Z轴数据传输至处理器10,从而实现处理器10识别第二子显示屏23的朝向。定义第一预设方向和第二预设方向,且所述第一预设方向不同于所述第二预设方向。具体的,在本实施方式中,所述第一预设方向为面向用户的方向,所述第二预设方向为背向用户的方向。
具体的,处理器10还在所述第一Z轴数据为正值且第二Z轴数据为负值时,确定第一子显示屏21的朝向为所述第一预设方向,第二子显示屏23的朝向为所述第二预设方向;或者在所述第一Z轴数据为负值且第二Z轴数据为正值时,确定第一子显示屏21的朝向为所述第二预设方向,第二子显示屏23的朝向为所述第一预设方向。其中,第一重力传感器41设置为当第一子显示屏21朝上放置于一承载物200(参看图2,例如桌面)上时所侦测的第一Z轴数据为正值,当第一子显示屏21朝下放置于承载物200上时,侦测的第一Z轴数据为负值;第二重力传感器42设置为当第二子显示屏23朝上放置于承载物200上时所侦测的第二Z轴数据为正值,当第二子显示屏23朝下放置放置于承载物200上时所侦测的第二Z轴数据为负值。
可以理解的是,所述第一子显示屏21及所述第二子显示屏23的朝向还可通过其他感测装置产生的感测数据来确定,例如,加速度传感器、电子罗盘或方向传感器。此外,为了判断所述第一子显示屏21及所述第二子显示屏23的朝向的准确性,还可以同时获取重力传感器、方向传感器、电子罗盘或者加速度传感器中的任意两种或以上产生的感测数据。
可选的,在一些实施方式中,处理器10还在所述第一Z轴数据与所述第二Z轴数据相同时,例如所述第一Z轴数据及所述第二Z轴数据均为正值或负值,获取第一重力传感器41所感测到的第一X轴数据和第一Y轴数据及第二重力传感器42所感测到的第二X轴数据和第二Y轴数据,根据所获取到的 第一X轴数据、第一Y轴数据、第二X轴数据、和第二Y轴数据确定所述第一子显示屏及所述第二子显示屏的当前朝向。其中,所述第一X轴数据和第一Y轴数据表征所述第一子显示屏的空间朝向,所述第二X轴数据和第二Y轴数据表征所述第二子显示屏的空间朝向。
电子设备100还包括电连接于处理器10的存储器50及通信总线60。具体地,处理器10、显示屏20、重力传感器40及存储器50可以通过通信总线60耦合。本领技术人员应当理解的是,所述图1仅是电子设备100的示例,并不构成对电子设备100的限定,电子设备100可以包括比图1所示更多或更少的部件,或者组合某些部件,或者不同的部件,例如电子设备100还可以包括输入输出设备、网络接入设备等。
处理器10可以是中央处理单元(Central Processing Unit,CPU),还可以是其他通用处理器、数字信号处理器(Digital Signal Processor,DSP)、专用集成电路(Application Specific Integrated Circuit,ASIC)、现场可编程门阵列(Field-Programmable Gate Array,FPGA)或者其他可编程逻辑器件、分立门或者晶体管逻辑器件、分立硬件组件等。通用处理器可以是微处理器或者该处理器也可以是任何常规的处理器等,处理器10是电子设备100的控制中心,利用各种接口和线路连接整个电子设备100的各个部分。所述处理器50还用于执行下述显示屏20的控制方法中的所有步骤。存储器50可用于存储程序代码501,处理器10通过运行或执行存储在存储器50内的程序代码501,以及调用存储在存储器50内的数据,实现电子设备100的各种功能。
请参阅图4,图4为本申请一实施方式提供的显示屏的控制方法的流程图。所述显示屏的控制方法应用于上述电子设备100中,下面对本申请实施例中的显示屏的控制方法进行详细的介绍。
步骤S401,在所述电子设备100处于预设折叠状态时,控制所述第一子显示屏21及所述第二子显示屏23其中之一处于亮屏显示状态。
其中,在电子设备100处于所述预设折叠状态时,第一子显示屏21及第二子显示屏23中只有一个子显示屏处于亮屏状态。
步骤S403,判断是否接收到亮屏锁定操作。若是,则执行步骤S405;若否,则返回步骤S403。
在一些实施例中,所述当前处于亮屏显示状态的子显示屏上显示有锁屏键,所述锁屏键响应接收到的第一点击操作生成所述亮屏锁定操作。
具体的,所述当前处于亮屏显示状态的子显示屏响应接收到的交互操作而显示所述锁屏键。其中,所述交互操作包括,但不局限于滑动操作或长按操作。
在另一些实施方式中,所述亮屏锁定操作为施加于所述当前处于亮屏显示状态的子显示屏的第一触摸操作,且所述第一触摸操作对应的触摸参数值在第一预设参数值范围内。
具体的,所述步骤S403具体包括如下步骤:
所述当前处于亮屏显示状态的子显示屏响应接收到的第一触摸操作而生成第一触摸参数值;
当所述第一触摸参数值在所述第一预设参数值范围内时,确定接收到所述亮屏锁定操作。
其中,所述电子设备100包括触摸传感器,用于获取所述第一触摸参数值。所述第一触摸参数值包括,但不局限于按压时间、按压力度、触摸面积、触摸点个数(例如,用户不同的手指在当前亮屏的子显示屏的指定区域上进行触摸可产生不同的触摸点)、或者是触摸轨迹。所述第一预设参数数值可以根据用户自定义或在电子设备100出厂默认预设。
步骤S405,控制锁定所述当前处于亮屏显示状态的子显示屏为用于亮屏显示的目标子显示屏。
如此,本申请所提供的控制方法通过对处于点亮状态的第一子屏幕或第二子屏幕施加锁屏操作,而控制该点亮的子显示屏一直处于亮屏显示状态,即使电子设备的使用状态或放置状态发生改变时,仍然是该点亮的子显示屏处于亮屏显示状态。
在另一实施方式种,该控制方法在步骤S405之后还继续包括以下步骤:
步骤S407,判断是否接收到亮屏解锁操作。若否,则执行步骤S405;若是,则执行步骤S409。
步骤S409,控制解除用于亮屏显示的目标子显示屏的锁定。
在一些实施例中,所述当前处于亮屏显示状态的子显示屏上显示有锁屏键,所述锁屏键响应接收到的第二点击操作生成所述亮屏解锁操作。具体的,所述当 前处于亮屏显示状态的子显示屏响应接收到的交互操作而显示所述锁屏键。其中,所述交互操作包括,但不局限于滑动操作或长按操作。
所述亮屏解锁操作为施加于所述当前处于亮屏显示状态的子显示屏的第二触摸操作,且所述第二触摸操作对应的触摸参数值在第二预设参数值范围内。
具体的,所述步骤S409具体包括如下步骤:
所述当前处于亮屏显示状态的子显示屏响应接收到的第二触摸操作而生成第二触摸参数值;
当所述第二触摸参数值在所述第二预设参数值范围内时,确定接收到所述亮屏解锁操作。
在一优选实施例中,为了降低所述电子设备100的管理复杂度,所述第二参数值的参数类别与所述第一参数值的参数类别相同。所述第二预设参数数值可以根据用户自定义或在电子设备100出厂默认预设。
在一些实施例中,所述控制方法还包括:在锁定之后,也即在所述目标子显示屏处于亮屏锁定状态时,判断所述电子设备100的空间朝向是否发生改变;以及当所述空间朝向发生改变时,仍控制所述当前处于亮屏显示状态的子显示屏为处于亮屏显示状态的目标子显示屏。
其中,所述电子设备100的空间朝向包括所述电子设备100在放置状态下的朝向或所述电子设备100在握持状态下的朝向。具体的,所述电子设备100的放置状态是指所述电子设备100放置于一承载物200(如桌面上)时的状态。所述电子设备100的放置状态包括水平放置状态或竖直放置状态。当所述第一子显示屏21或所述第二子显示屏23朝上放置于承载物200上时,例如所述第一子显示屏21朝上放置于所述承载物200上,而所述第二子显示屏23贴附于所述承载物200上;或者是所述第二子显示屏23朝上放置于所述承载物200上,而所述第一子显示屏21贴附于所述承载物200上,所述电子设备100处于水平放置状态;当第一子显示屏21和第二子显示屏23正对的两边放置于所述承载物200上,或者是第一子显示屏21和第二子显示屏23相交于折叠线101的两边放置于承载物200上时,所述电子设备100处于竖直放置状态。具体的,所述电子设备100的握持状态是指所述电子设备100在用户握持电子设备100时或电子设备100被夹持住而非放置于一承载物200上的状态。
本申请一实施例提供的显示屏20的控制方法,基于在锁定所述当前处于亮屏显示状态的子显示屏为用于亮屏显示的目标子显示屏时,所述目标子显示屏对应的显示区域不随所述电子设备100的翻转而发生变化,也即所述目标子显示屏对应的显示区域不随所述电子设备100的空间朝向的改变而在所述第一子显示屏21和所述第二子显示屏23之间进行切换,从而可满足用户特定的使用需求,且提升用户体验。
如图5所示,在一些实施方式中,在步骤S401之前,所述显示屏的控制方法还包括如下步骤:
步骤S501,获取所述第一子显示屏21和所述第二子显示屏23之间的角度值。
步骤S502,判断所述角度值是否大于或等于第一预设阈值且小于或等于第二预设阈值。若是,则执行步骤S503;若否,则执行步骤S504。
其中,所述第一预设阈值小于所述第二预设阈值,所述角度值更具体的描述可参考前述的电子设备100的相关内容。
步骤S503,确定所述电子设备处于所述预设折叠状态。
步骤S504,确定所述电子设备未处于所述预设折叠状态。
如图6所示,在一些实施方式中,步骤S401具体包括如下步骤。
步骤S4011,判断所述电子设备100的空间朝向在预设时间内是否发生改变。若是,则执行步骤S4012;若否,则流程结束。
步骤S4012,获取所述第一子显示屏21及所述第二子显示屏23的朝向。
其中,所述朝向包括第一预设方向和第二预设方向,且所述第一预设方向不同于所述第二预设方向。
步骤S4012具体包括如下步骤:获取所述第一子显示屏21中的第一重力传感器41感测到的第一Z轴数据及所述第二子显示屏23中的第二重力传感器42感测到的第二Z轴数据;
当所述第一Z轴数据为正值且第二Z轴数据为负值时,确定所述第一子显示屏21的朝向为所述第一预设方向,所述第二子显示屏23的朝向为所述第二预设方向;或
当所述第一Z轴数据为负值且第二Z轴数据为正值时,确定所述第一子 显示屏21的朝向为所述第二预设方向,所述第二子显示屏23的朝向为所述第一预设方向。
其中,所述第一预设方向为面向用户的方向,所述第二预设方向为背向用户的方向。
在一些实施例中,所述显示屏20的控制方法还包括如下步骤:
当所述第一Z轴数据与所述第二Z轴数据相同时,获取所述第一重力传感器41感测到的第一X轴数据和第一Y轴数据及所述第二重力传感器42感测到的第二X轴数据和和第二Y轴数据,根据所获取到的第一X轴数据、第一Y轴数据、第二X轴数据、和第二Y轴数据确定所述第一子显示屏21及所述第二子显示屏23的当前朝向,其中,所述第一X轴数据和第一Y轴数据表征所述第一子显示屏21的空间朝向,所述第二X轴数据和第二Y轴数据表征所述第二子显示屏23的空间朝向。
可以理解的是,在一些实施例中,所述第一子显示屏21及所述第二子显示屏23的朝向还可通过其他感测装置产生的感测数据来确定,例如,加速度传感器或方向传感器。此外,为了判断所述第一子显示屏21及所述第二子显示屏23的朝向的准确性,还可以同时采用重力传感器、方向传感器或者加速度传感器中的任意两种或以上。
步骤S4013,根据所述第一子显示屏及所述第二子显示屏的朝向,确定所述第一子显示屏及所述第二子显示屏中当前所需点亮的子显示屏。
步骤S4013具体包括如下步骤:当所述第一子显示屏21及所述第二子显示屏23其中之一的朝向为所述第一预设方向,且所述第一子显示屏21及所述第二子显示屏23其中另一的朝向为所述第二预设方向时,确定当前朝向为所述第一预设方向的子显示屏为所需点亮的子显示屏。
在一些实施方式中,所述显示屏的控制方法还包括如下步骤:
响应所述目标子显示屏接收到的预设的输入操作,控制点亮或关闭所述第三子显示屏25。
其中,所述预设的输入操作包括,但不局限于施加于所述当前处于亮屏显示状态的子显示屏的按压或点击操作、或语音操作。更具体的描述可参考前述的电子设备100的相关内容。
本发明实施例还提供一种计算机存储介质,其中,所述计算机存储介质可存储有程序,所述程序执行时包括上述方法实施例中记载的任意一种显示屏的控制方法的部分或全部步骤。
在上述实施例中,对各个实施例的描述都各有侧重,某个实施例中没有详述的部分,可以参见其他实施例的相关描述。
需要说明的是,对于前述的各方法实施例,为了简单描述,故将其都表述为一系列的动作组合,但是本领域技术人员应所述知悉,本发明并不受所描述的动作顺序的限制,因为依据本发明,某些步骤可能可以采用其他顺序或者同时进行。其次,本领域技术人员也应所述知悉,说明书中所描述的实施例均属于优选实施例,所涉及的动作和模块并不一定是本发明所必须的。
在本申请所提供的几个实施例中,应所述理解到,所揭露的装置,可通过其它的方式实现。例如,以上所描述的装置实施例仅仅是示意性的。上述控制方法以软件功能单元的形式实现并作为独立的产品销售或使用时,可以存储在一个计算机可读取存储介质中。基于这样的理解,本发明的技术方案本质上或者说对现有技术做出贡献的部分或者所述技术方案的全部或部分可以以软件产品的形式体现出来,所述计算机软件产品存储在一个存储介质中,包括若干指令用以使得一台计算机设备(可以为个人计算机、服务器或者网络设备等,具体可以是计算机设备中的处理器)执行本发明各个实施例上述控制方法的全部或部分步骤。其中,而前述的存储介质可包括:U盘、移动硬盘、磁碟、光盘、只读存储器(英文:Read-Only Memory,缩写:ROM)或者随机存取存储器(英文:Random Access Memory,缩写:RAM)等各种可以存储程序代码的介质。
以上对本发明实施例进行了详细介绍,本文中应用了具体个例对本发明的原理及实施方式进行了阐述,以上实施例的说明只是用于帮助理解本发明的方法及其核心思想;同时,对于本领域的一般技术人员,依据本发明的思想,在具体实施方式及应用范围上均会有改变之处,综上上述,本说明书内容不应理解为对本发明的限制。
Claims (20)
- 一种显示屏的控制方法,应用于具有显示屏的电子设备,所述显示屏包括第一子显示屏和相对所述第一子显示屏可折叠的第二子显示屏;其特征在于,所述控制方法包括:在所述电子设备处于预设折叠状态时,控制所述第一子显示屏及所述第二子显示屏其中之一处于亮屏显示状态;判断是否接收到亮屏锁定操作;以及当接收到所述亮屏锁定操作时,控制锁定所述当前处于亮屏显示状态的子显示屏为用于亮屏显示的目标子显示屏。
- 如权利要求1所述的控制方法,其特征在于,所述控制方法还包括:在所述目标子显示屏处于亮屏锁定状态时,判断所述电子设备的空间朝向是否发生改变;当所述空间朝向发生改变时,仍控制所述当前处于亮屏显示状态的子显示屏为处于亮屏显示状态的目标子显示屏。
- 如权利要求1所述的控制方法,其特征在于,所述控制方法还包括:当接收到亮屏解锁操作时,控制解除用于亮屏显示的目标子显示屏的锁定。
- 如权利要求1至3任意一项所述的控制方法,其特征在于,所述当前处于亮屏显示状态的子显示屏上显示有锁屏键,所述锁屏键响应接收到的点击操作生成所述亮屏锁定操作或所述亮屏解锁操作。
- 如权利要求1所述的控制方法,其特征在于,“控制所述第一子显示屏及所述第二子显示屏其中之一进行亮屏显示”包括:获取所述第一子显示屏及所述第二子显示屏的朝向;根据所述第一子显示屏及所述第二子显示屏的朝向,确定所述第一子显示屏及所述第二子显示屏中当前所需点亮的子显示屏。
- 如权利要求5所述的控制方法,其特征在于,所述控制方法在“获取所述第一子显示屏及所述第二子显示屏的朝向”之前还包括:判断所述电子设备的空间朝向在预设时间内是否发生改变;当所述电子设备的空间在预设时间内未发生改变时,侦测所述第一子显示屏及所述第二子显示屏的朝向。
- 如权利要求5所述的控制方法,其特征在于,所述朝向包括第一预设方向和第二预设方向,且所述第一预设方向不同于所述第二预设方向;“根据所述第一子显示屏及所述第二子显示屏的朝向,确定所述第一子显示屏及所述第二子显示屏中当前所需点亮的子显示屏”包括:当所述第一子显示屏及所述第二子显示屏其中之一的朝向为所述第一预设方向,且所述第一子显示屏及所述第二子显示屏其中另一的朝向为所述第二预设方向时,确定当前朝向为所述第一预设方向的子显示屏为所需点亮的子显示屏。
- 如权利要求7所述的控制方法,其特征在于,“获取所述第一子显示屏及所述第二子显示屏的朝向”,包括:获取所述第一子显示屏中的第一重力传感器感测到的第一Z轴数据及所述第二子显示屏中的第二重力传感器感测到的第二Z轴数据;当所述第一Z轴数据为正值且第二Z轴数据为负值时,确定所述第一子显示屏的朝向为所述第一预设方向,所述第二子显示屏的朝向为所述第二预设方向;或当所述第一Z轴数据为负值且第二Z轴数据为正值时,确定所述第一子显示屏的朝向为所述第二预设方向,所述第二子显示屏的朝向为所述第一预设方向,其中,所述第一预设方向为面向用户的方向,所述第二预设方向为背向用户的方向。
- 如权利要求8所述的控制方法,其特征在于,所述控制方法还包括:当所述第一Z轴数据与所述第二Z轴数据相同时,获取所述第一重力传感器感测到的第一X轴数据和第一Y轴数据及所述第二重力传感器感测到的第二X轴数据和和第二Y轴数据,根据所获取到的第一X轴数据、第一Y轴数据、第二X轴数据、和第二Y轴数据确定所述第一子显示屏及所述第二子显示屏的当前朝向,其中,所述第一X轴数据和第一Y轴数据表征所述第一子显示屏的空间朝向,所述第二X轴数据和第二Y轴数据表征所述第二子显示屏的空间朝向。
- 如权利要求1所述的控制方法,其特征在于,所述显示屏为柔性显示屏,还包括连接所述第一子显示屏和所述第二子显示屏的第三子显示屏,所述第三子显示屏对应于所述柔性显示屏的可折叠区域,所述控制方法还包括:响应所述目标子显示屏接收到的预设的输入操作,控制点亮或关闭所述第三子显示屏。
- 如权利要求1所述的控制方法,其特征在于,所述控制方法在“在所述电子设备处于所述预设折叠状态时,控制所述第一子显示屏及所述第二子显示屏其中之一进行亮屏显示”之前还包括:获取所述第一子显示屏和所述第二子显示屏之间的角度值;当所述角度值大于或等于第一预设阈值且小于或等于第二预设阈值,判断所述电子设备处于所述预设折叠状态。
- 一种电子设备,其特征在于,包括处理器和电连接于所述处理器的显示屏,所述显示屏包括第一子显示屏和相对所述第一子显示屏可折叠的第二子显示屏,所述处理器在所述电子设备处于预设折叠状态时,控制所述第一子显示屏及所述第二子显示屏其中之一处于亮屏显示状态,判断是否接收到亮屏锁定操作,以及当接收到所述亮屏锁定操作时,控制锁定所述当前处于亮屏显示状态的子显示屏为用于亮屏显示的目标子显示屏。
- 如权利要求12所述的电子设备,其特征在于,所述处理器还在所述 目标子显示屏处于亮屏锁定状态时,判断所述电子设备的空间朝向是否发生改变,以及在所述空间朝向发生改变时,仍控制所述当前处于亮屏显示状态的子显示屏为处于亮屏显示状态的目标子显示屏。
- 如权利要求12所述的电子设备,其特征在于,所述处理器还在接收到亮屏解锁操作时,控制解除用于亮屏显示的目标子显示屏的锁定。
- 如权利要求12至14任意一项所述的电子设备,其特征在于,所述当前处于亮屏显示状态的子显示屏上显示有锁屏键,所述锁屏键响应接收到的点击操作生成所述亮屏锁定操作或所述亮屏解锁操作。
- 如权利要求13所述的电子设备,其特征在于,所述处理器还获取所述第一子显示屏及所述第二子显示屏的朝向,以及根据所述第一子显示屏及所述第二子显示屏的朝向,确定所述第一子显示屏及所述第二子显示屏中当前所需点亮的子显示屏。
- 如权利要求16所述的电子设备,其特征在于,所述处理器还判断所述电子设备的空间朝向在预设时间内是否发生改变,以及当所述电子设备的空间在预设时间内未发生改变时,侦测所述第一子显示屏及所述第二子显示屏的朝向。
- 如权利要求16所述的电子设备,其特征在于,所述朝向包括第一预设方向和第二预设方向,且所述第一预设方向不同于所述第二预设方向,所述处理器还在所述第一子显示屏及所述第二子显示屏其中之一的朝向为所述第一预设方向,且所述第一子显示屏及所述第二子显示屏其中另一的朝向为所述第二预设方向时,确定当前朝向为所述第一预设方向的子显示屏为所需点亮的子显示屏。
- 如权利要求12所述的电子设备,其特征在于,所述显示屏为柔性显示 屏,还包括连接所述第一子显示屏和所述第二子显示屏的第三子显示屏,所述第三子显示屏对应于所述柔性显示屏的可折叠区域;所述处理器还响应所述目标子显示屏接收到的预设的输入操作,控制点亮或关闭所述第三子显示屏。
- 一种可读存储介质,其特征在于,所述可读存储介质上存储有交互程序,所述交互程序被处理器运行时执行如权利要求1-11中任一项所述显示屏的控制方法。
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| CN201980079780.4A CN113348435A (zh) | 2019-05-24 | 2019-05-24 | 显示屏的控制方法、电子设备及可读存储介质 |
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| PCT/CN2019/088384 WO2020237435A1 (zh) | 2019-05-24 | 2019-05-24 | 显示屏的控制方法、电子设备及可读存储介质 |
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| CN116436999A (zh) * | 2022-01-04 | 2023-07-14 | 荣耀终端有限公司 | 电子设备显示方法及电子设备 |
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| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US20160381014A1 (en) * | 2015-03-31 | 2016-12-29 | Samsung Electronics Co., Ltd. | Foldable device and method of controlling the same |
| CN107765835A (zh) * | 2017-11-07 | 2018-03-06 | 广东欧珀移动通信有限公司 | 点亮屏幕的方法、装置及终端 |
| CN107765773A (zh) * | 2017-10-19 | 2018-03-06 | 广东欧珀移动通信有限公司 | 一种显示信息的方法、装置、终端及存储介质 |
| CN108536411A (zh) * | 2018-04-12 | 2018-09-14 | 维沃移动通信有限公司 | 一种移动终端控制方法及移动终端 |
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| Publication number | Priority date | Publication date | Assignee | Title |
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| CN105791564A (zh) * | 2016-02-26 | 2016-07-20 | 努比亚技术有限公司 | 一种控制移动终端的方法及移动终端 |
| CN106020423A (zh) * | 2016-05-25 | 2016-10-12 | 努比亚技术有限公司 | 终端的屏幕控制装置及方法 |
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- 2019-05-24 CN CN201980079780.4A patent/CN113348435A/zh active Pending
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Patent Citations (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US20160381014A1 (en) * | 2015-03-31 | 2016-12-29 | Samsung Electronics Co., Ltd. | Foldable device and method of controlling the same |
| CN107765773A (zh) * | 2017-10-19 | 2018-03-06 | 广东欧珀移动通信有限公司 | 一种显示信息的方法、装置、终端及存储介质 |
| CN107765835A (zh) * | 2017-11-07 | 2018-03-06 | 广东欧珀移动通信有限公司 | 点亮屏幕的方法、装置及终端 |
| CN108536411A (zh) * | 2018-04-12 | 2018-09-14 | 维沃移动通信有限公司 | 一种移动终端控制方法及移动终端 |
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