WO2019206091A1 - 一种灭屏显示的方法及电子设备 - Google Patents

一种灭屏显示的方法及电子设备 Download PDF

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Publication number
WO2019206091A1
WO2019206091A1 PCT/CN2019/083715 CN2019083715W WO2019206091A1 WO 2019206091 A1 WO2019206091 A1 WO 2019206091A1 CN 2019083715 W CN2019083715 W CN 2019083715W WO 2019206091 A1 WO2019206091 A1 WO 2019206091A1
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WO
WIPO (PCT)
Prior art keywords
screen
mode
display
electronic device
interface
Prior art date
Application number
PCT/CN2019/083715
Other languages
English (en)
French (fr)
Inventor
罗红磊
张春燕
印杰
滕志辉
蒋进
Original Assignee
华为技术有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Priority to US17/051,161 priority Critical patent/US11307733B2/en
Priority to EP19793394.8A priority patent/EP3780569A4/en
Publication of WO2019206091A1 publication Critical patent/WO2019206091A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/724User interfaces specially adapted for cordless or mobile telephones
    • H04M1/72448User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions
    • H04M1/72451User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions according to schedules, e.g. using calendar applications
    • 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
    • G06F3/04817Interaction 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 using icons
    • 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]
    • G06F3/0487Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser
    • G06F3/0488Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures
    • G06F3/04883Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures for inputting data by handwriting, e.g. gesture or text
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W52/00Power management, e.g. TPC [Transmission Power Control], power saving or power classes
    • H04W52/02Power saving arrangements
    • H04W52/0209Power saving arrangements in terminal devices
    • H04W52/0261Power saving arrangements in terminal devices managing power supply demand, e.g. depending on battery level
    • H04W52/0267Power saving arrangements in terminal devices managing power supply demand, e.g. depending on battery level by controlling user interface components
    • H04W52/027Power saving arrangements in terminal devices managing power supply demand, e.g. depending on battery level by controlling user interface components by controlling a display operation or backlight unit
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M2250/00Details of telephonic subscriber devices
    • H04M2250/10Details of telephonic subscriber devices including a GPS signal receiver
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M2250/00Details of telephonic subscriber devices
    • H04M2250/22Details of telephonic subscriber devices including a touch pad, a touch sensor or a touch detector
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W52/00Power management, e.g. TPC [Transmission Power Control], power saving or power classes
    • H04W52/02Power saving arrangements
    • H04W52/0209Power saving arrangements in terminal devices
    • H04W52/0251Power saving arrangements in terminal devices using monitoring of local events, e.g. events related to user activity
    • H04W52/0254Power saving arrangements in terminal devices using monitoring of local events, e.g. events related to user activity detecting a user operation or a tactile contact or a motion of the device
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W52/00Power management, e.g. TPC [Transmission Power Control], power saving or power classes
    • H04W52/02Power saving arrangements
    • H04W52/0209Power saving arrangements in terminal devices
    • H04W52/0261Power saving arrangements in terminal devices managing power supply demand, e.g. depending on battery level
    • H04W52/0274Power saving arrangements in terminal devices managing power supply demand, e.g. depending on battery level by switching on or off the equipment or parts thereof
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D30/00Reducing energy consumption in communication networks
    • Y02D30/70Reducing energy consumption in communication networks in wireless communication networks

Definitions

  • the present application relates to the field of terminal technologies, and in particular, to a method and device for performing a screen off display.
  • Off-screen display means that after the screen is turned off, the electronic device (such as a mobile phone, tablet, etc.) can illuminate a part of the screen to display clock, date, notification, etc., which can be more convenient for the user to operate, thereby improving the user.
  • the electronic device such as a mobile phone, tablet, etc.
  • the electronic device can illuminate a part of the screen to display clock, date, notification, etc., which can be more convenient for the user to operate, thereby improving the user.
  • the electronic device such as a mobile phone, tablet, etc.
  • the off-screen display has an 8-color mode and a 16.7-mega mode.
  • the mobile phone can display only the clock, date, notification, etc. after the screen is off.
  • the mobile phone only displays the clock and date after the screen is off.
  • the 16.7 mega mode after the phone is off, in addition to displaying the clock, date, notification and other information, you can also display the background wallpaper.
  • the phone displays the clock, date and background wallpaper after the screen is off.
  • only one mode is configured in the electronic device, which is relatively single, cannot flexibly meet the needs of the user, and reduces the ability of the electronic device to interact intelligently with the user.
  • the present application provides a method for extinguishing a screen display and an electronic device, which helps to improve the ability of intelligent interaction between the electronic device and the user.
  • a method for displaying a screen off display is provided in an embodiment of the present application, where the method may be implemented in an electronic device having a touch screen, where the off-screen display mode configured on the electronic device includes a first mode and a second mode.
  • the screen-off interface corresponding to the first mode is different from the screen-off interface corresponding to the second mode, and the power consumption of the electronic device when displayed in the first mode after the screen is off is lower than the power consumption when the second mode is displayed;
  • the method includes: the electronic device acquires the device status information, and then automatically determines, according to the device status information, the off-screen display mode corresponding to the device status information from the first mode and the second mode, and displays the The off screen interface corresponding to the determined off-screen display mode.
  • the device status information is information related to the current state of operation of the electronic device.
  • the electronic device can automatically determine the off-screen display mode according to the setting state information, so that the electronic device can intelligently determine the off-screen display mode according to different scenarios in which the electronic device is currently located, thereby improving the electronic
  • the intelligent interaction between the device and the user also enhances the user experience.
  • the screen-off interface corresponding to the first mode and the screen-off interface corresponding to the second mode respectively comprise a plurality of different display effects; the electronic device determines the screen-off interface corresponding to the determined off-screen display mode.
  • the display effect is the target display effect
  • the screen is displayed corresponding to the determined off-screen display mode, wherein the target display effect is a plurality of different screens included in the screen-off interface corresponding to the determined off-screen display mode. Displays the display effect selected by the user in the effect.
  • the screen-off interface corresponding to the first mode does not include the background wallpaper, and includes at least one of a clock, a date, a remaining power, a missed call, and an unread short message.
  • the screen-off interface corresponding to the second mode includes at least one of a clock, a date, a remaining power, a missed call, an unread short message, a background wallpaper, and an application icon.
  • the electronic device determines, according to the current remaining power, and the corresponding relationship between the preset remaining power and the number of application icons, the number of application icons on the screen-off interface corresponding to the second mode; or, the electronic device The application icon on the screen-off interface corresponding to the second mode is determined according to the current remaining power and the corresponding relationship between the preset remaining power and the application icon.
  • the device status information includes battery remaining power information; and the electronic device determines, according to the remaining battery power information, if the remaining battery power is less than or equal to the first threshold, determining that the screen blanking display mode corresponding to the device state information is The first mode; if it is determined that the remaining battery power is greater than the first threshold, determining that the off-screen display mode corresponding to the device state information is the second mode.
  • the device status information includes the brightness-off screen frequency information; and the electronic device determines, according to the brightness-off-screen frequency information, if the brightness-off-screen frequency is less than or equal to the second threshold, determining the screen-off corresponding to the device status information.
  • the display mode is the first mode; if it is determined that the brightness-off-screen frequency is greater than the second threshold, determining that the off-screen display mode corresponding to the device state information is the second mode.
  • the device status information includes a sleeping alarm clock and an waking alarm clock; when the electronic device reaches the moment when the sleeping alarm is set at the current time, determining that the off-screen display mode corresponding to the device status information is the first mode; When the time when the wake-up alarm is set is reached at all times, it is determined that the off-screen display mode corresponding to the device status information is the second mode.
  • the device status information is acquired.
  • the electronic device acquires device status information after receiving the screen-off operation for the touch screen and before the touch screen is turned off.
  • the electronic device acquires device status information after the touch screen is turned off.
  • it is helpful to increase the speed of the corresponding screen-off operation.
  • the device status information further includes at least one of configuration information, a state of charge, a geographic location, a number of walking steps, and a heart rate of the user.
  • the configuration information includes configuration information indicating whether the off-screen display function and the smart display are turned on; wherein the configuration information is obtained by the electronic device from the setting interface of the off-screen display, and the setting interface of the off-screen display includes Off screen display option, first mode option, second mode option, smart mode option, first virtual button, second virtual button, third virtual button and fourth virtual button, wherein the first virtual button is used to turn on or off
  • the screen display function the second virtual button is used to turn the first mode on or off
  • the third virtual button is used to turn the second mode on or off
  • the fourth virtual button is used to turn the smart mode on or off
  • the second mode corresponds to the off screen interface It is composed of 16.7 mega-color
  • the screen-off interface corresponding to the first mode is composed of 8 colors.
  • device status information is periodically acquired by the electronic device.
  • the touch screen is an OLED screen.
  • the method for performing the screen-off display is implemented in an electronic device having a touch screen, where the off-screen display mode configured on the electronic device is the first mode and the second mode;
  • the screen corresponding to the screen is composed of 8 colors, and the screen corresponding to the second mode is composed of 16.7 mega-color;
  • the method includes: the electronic device receives the screen-off operation; if the configuration information is determined to indicate the screen-off display function And the smart display is turned on, and the electronic device is charging, then the off-screen display mode is automatically determined to be the second mode; and according to the charging of the electronic device, determining that the off-screen interface corresponding to the second mode is the first off-screen interface, first
  • the screen is composed of clock, date, missed call, missed SMS message, remaining battery, background wallpaper and N application icons.
  • N application icons are icons of the application whose frequency is ranked in the top N.
  • N A positive integer greater than or equal to 1; the display effect of the first screen-off interface is that the user is in a plurality of different display effects included in the screen-off interface corresponding to the second mode. The display; Then, the display screen off a first interface on a touch screen;
  • the electronic device After detecting that the charging is completed and disconnecting the charging, if the first geographical location is located, the electronic device automatically determines that the off-screen display mode is the second mode; and according to the charging completion and disconnecting the charging, determining the second mode corresponding to the second mode
  • the off screen interface is the second screen off interface, and the second screen off interface is composed of clock, date, missed call, missed text message, background wallpaper and M application icons, and M application icons are arranged for the user frequency.
  • the icon of the application of the first M-bit, M is a positive integer smaller than N and greater than or equal to 1;
  • the display effect of the second screen-off interface is a plurality of different display effects included by the user from the screen-off interface corresponding to the second mode The display effect selected by the user; switching the first off-screen interface to the second off-screen interface, and displaying on the touch screen;
  • the electronically determining the off-screen display mode is the first mode;
  • the power is greater than the first threshold, determining that the screen-off interface corresponding to the first mode is the third screen-off interface, and the third screen-off interface is composed of a clock, a date, a missed call, a short message, and a remaining power;
  • the display effect of the screen-off interface is the display effect selected by the user from a plurality of different display effects included in the screen-off interface corresponding to the first mode; the second screen-cut interface is switched to the third screen-off interface, on the touch screen Display
  • the electronically determining the off-screen display mode is the second mode; According to the remaining power is greater than the first threshold, determining that the screen-off interface corresponding to the second mode is the fourth screen-off interface, and the fourth screen-off interface is the clock, date, missed call, missed short message, remaining power background wallpaper, and K application icons are composed; K application icons are icons of applications whose users use the top K bits, K is a positive integer less than M and greater than or equal to 1; the display effect of the fourth off screen interface is user The display effect selected by the user among the plurality of different display effects included in the second mode corresponding to the off-screen interface; and the second off-screen interface is switched to the fourth off-screen interface, and displayed on the touch screen;
  • the electronic device determines that the remaining power is less than or equal to the first threshold, it automatically determines that the off-screen display mode is the first mode; and according to the remaining power is less than or equal to the first threshold, determining that the screen-off interface corresponding to the first mode is the fifth-out
  • the screen interface, the fifth screen is composed of a clock and a date; the display effect of the fifth screen is the display effect selected by the user from a plurality of different display effects included in the screen corresponding to the first mode. And display the fifth off screen interface on the touch screen.
  • the electronic device can automatically determine the off-screen display mode, so that the electronic device can intelligently determine the off-screen display mode according to different scenarios in which the electronic device is currently located, thereby improving the electronic device and the user.
  • the intelligent interaction ability also improves the user experience.
  • an electronic device in a third aspect, includes an acquiring module, a processing module, a display module, and a storage module.
  • the memory module stores a screen-off display mode, and the screen-off display mode includes a first mode and a In the second mode, the screen-off interface corresponding to the first mode is different from the screen-off interface corresponding to the second mode, and the power consumption of the electronic device when displayed in the first mode after the screen is off is lower than that when the second mode is displayed.
  • the acquisition module is configured to acquire device status information, and the device status information is information related to a current running state of the electronic device; the processing module is configured to automatically determine the device status information from the first mode and the second mode according to the device status information.
  • the corresponding off-screen display mode is used; the display module is configured to display a screen-off interface corresponding to the determined off-screen display mode after the screen is off.
  • the screen-off interface corresponding to the first mode and the screen-off interface corresponding to the second mode respectively comprise a plurality of different display effects
  • the processing module is further configured to determine that the display effect of the screen-off interface corresponding to the determined screen-off display mode is the target display effect; the target display effect is a plurality of different display effects included in the screen-off interface corresponding to the determined screen-off display mode. The display effect selected by the user.
  • the screen-off interface corresponding to the first mode does not include the background wallpaper, and includes at least one of a clock, a date, a remaining power, a missed call, and an unread short message.
  • the screen-off interface corresponding to the second mode includes at least one of a clock, a date, a remaining power, a missed call, an unread short message, a background wallpaper, and an application icon.
  • the processing module is further configured to determine, according to the current remaining power, and the corresponding relationship between the preset remaining power and the number of application icons, the number of application icons on the screen-off interface corresponding to the second mode; or And determining, according to the current remaining power and the corresponding relationship between the preset remaining power and the application icon, the application icon on the screen-off interface corresponding to the second mode.
  • the device status information includes battery remaining power information
  • the processing module is configured to determine, according to the remaining battery power information, that the remaining power of the battery is less than or equal to the first threshold, determine that the off-screen display mode corresponding to the device state information is the first mode; and if determining that the remaining battery power is greater than the first threshold, It is determined that the off-screen display mode corresponding to the device status information is the second mode.
  • the device status information includes light-off screen frequency information
  • the processing module is configured to determine, according to the brightness and off-screen frequency information, if the brightness-off-screen frequency is less than or equal to the second threshold, determining that the off-screen display mode corresponding to the device state information is the first mode;
  • the threshold determines that the off-screen display mode corresponding to the device status information is the second mode.
  • device status information includes a bedtime alarm and an wake up alarm
  • the processing module is configured to determine, when the current time reaches the time set by the sleeping alarm clock, the off-screen display mode corresponding to the device status information is the first mode; when the current time reaches the time set by the wake-up alarm, determining that the device status information is corresponding The off-screen display mode is the second mode.
  • the obtaining module is specifically configured to: after receiving the screen-off operation for the touch screen, acquire the device state information; for example, the acquiring module is specifically configured to: after receiving the screen-off operation for the touch screen, and displaying Before the module is off, the device status information is obtained. Alternatively, the obtaining module is specifically configured to obtain device status information after the display module is off.
  • the display module is further configured to display the lock screen interface on the touch screen after displaying the screen-off interface corresponding to the determined screen-off display mode and in response to the screen-on operation received by the acquisition module.
  • the device status information further includes at least one of configuration information, a state of charge, a geographic location, a number of walking steps, and a heart rate of the user.
  • the configuration information includes configuration information indicating whether the screen blanking display function and the smart display are turned on; wherein the configuration information is obtained by the acquiring module from the setting interface of the screen clearing display, and the setting interface of the screen blanking display includes Off screen display option, first mode option, second mode option, smart mode option, first virtual button, second virtual button, third virtual button and fourth virtual button, wherein the first virtual button is used to turn on or off
  • the screen display function the second virtual button is used to turn the first mode on or off
  • the third virtual button is used to turn the second mode on or off
  • the fourth virtual button is used to turn the smart mode on or off
  • the second mode corresponds to the off screen interface It is composed of 16.7 mega-color
  • the screen-off interface corresponding to the first mode is composed of 8 colors.
  • the first mode is a simple mode and the second mode is a colorful mode.
  • device status information is periodically acquired by the electronic device.
  • the display module is an OLED screen.
  • an electronic device provided by the embodiment of the present application includes: a touch screen, one or more processors, a memory, a plurality of applications, and one or more computer programs; wherein the touch screen includes a touch-sensitive surface and a display
  • One or more computer programs are stored in the memory, and the one or more computer programs include instructions that, when executed by the electronic device, cause the electronic device to perform any of the first aspect of the embodiments of the present application and the first aspect The method of design.
  • a computer storage medium of the embodiment of the present application stores a program, when the program runs on the electronic device, causing the electronic device to perform the first aspect and any one of the first aspects The method of design.
  • a computer program product of an embodiment of the present application when the computer program product is run on an electronic device, causes the electronic device to perform the first aspect and any one of the possible design methods of the first aspect.
  • Figure 1a is a schematic diagram of a possible screen-off interface
  • Figure 1b is a schematic diagram of another possible screen-off interface
  • FIG. 2a is a schematic structural diagram of an electronic device according to an embodiment of the present application.
  • 2b is a schematic diagram of a possible user interface of the present application.
  • FIG. 3 is a schematic diagram of a possible system setting interface of the present application.
  • 4a is a schematic diagram of a setting interface of a possible off-screen display of the present application.
  • FIG. 4b is a schematic diagram of another possible setting interface of the screen off display according to the present application.
  • 4c is a schematic diagram of another possible setting interface of the screen-off display of the present application.
  • 4d is a schematic diagram of a setting interface of a possible layout of the present application.
  • 4e is a schematic diagram of a setting interface of a possible off-screen display according to the present application.
  • 4f is a schematic diagram of a setting interface of another possible layout of the present application.
  • 4g is a schematic diagram of a setting interface of a possible off-screen display of the present application.
  • FIG. 4h is a schematic diagram of a setting interface of a possible off-screen display according to the present application.
  • 4i is a schematic diagram of a setting interface of a possible off-screen display of the present application.
  • 4j is a schematic diagram of a setting interface of a possible off-screen display of the present application.
  • 4k is a schematic diagram of a possible custom setting interface of the present application.
  • FIG. 5 is a schematic diagram of a setting interface of a possible off-screen display according to the present application.
  • FIG. 6 is a schematic flow chart of a method for extinguishing a screen display according to the present application.
  • FIG. 7a is a schematic diagram of a possible screen-off interface of the present application.
  • FIG. 7b is a schematic diagram of still another possible screen-off interface of the present application.
  • FIG. 8 is a schematic flowchart diagram of another method for clearing the screen display according to the present application.
  • FIG. 9 is a schematic structural diagram of a driving chip according to the present application.
  • FIG. 10 is a schematic structural diagram of an electronic device according to the present application.
  • FIG. 11 is a schematic structural diagram of an electronic device according to the present application.
  • the electronic device may be a portable electronic device including functions such as a personal digital assistant and/or a music player, such as a mobile phone, a tablet, a wearable device having a wireless communication function (such as a smart watch), and the like.
  • portable electronic devices include, but are not limited to, piggybacking Or portable electronic devices of other operating systems.
  • the portable electronic device described above may also be other portable electronic devices, such as a laptop with a touch-sensitive surface, such as a touch panel, or the like. It should also be understood that in some other embodiments of the present application, the electronic device may not be a portable electronic device, but a desktop computer having a touch-sensitive surface such as a touch panel.
  • the electronic device in the embodiment of the present application may be the mobile phone 200.
  • the embodiment will be specifically described below by taking the mobile phone 200 as an example. It should be understood that the illustrated mobile phone 200 is only one example of an electronic device, and the mobile phone 200 may have more or fewer components than those shown in the figures, two or more components may be combined, or Has a different component configuration.
  • the various components shown in the figures can be implemented in hardware, software, or a combination of hardware and software, including one or more signal processing and/or application specific integrated circuits.
  • the mobile phone 200 may specifically include: one or more processors 201, a radio frequency (RF) circuit 202, a memory 203, a touch screen 204, a Bluetooth device 205, one or more sensors 206, and Wi-Fi.
  • These components can communicate over one or more communication buses or signal lines (not shown in Figure 2a). It will be understood by those skilled in the art that the hardware structure shown in FIG. 2a does not constitute a limitation to the mobile phone 200, and the mobile phone 200 may include more or less components than those illustrated, or combine some components, or different component arrangements. .
  • the processor 201 is a control center of the mobile phone 200, and connects various parts of the mobile phone 200 by using various interfaces and lines, by running or executing an application (application, referred to as App) stored in the memory 203, and calling the storage in the memory 203.
  • the data and instructions perform various functions and processing data of the handset 200.
  • the processor 201 may turn off the screen in response to the user locking the input of the screen if the input of the user lock screen is detected when the screen-out display function is not turned on.
  • the processor 201 displays preset information, such as a clock, date, notification, etc., in a specific area in response to the input of the user lock screen, and turns off the specific area except the specific area.
  • the input of the user lock screen may be pressing a physical key (such as a power button), clicking or double-clicking an icon of the lock screen, or a preset gesture operation for locking the screen, etc.
  • a physical key such as a power button
  • clicking or double-clicking an icon of the lock screen or a preset gesture operation for locking the screen, etc.
  • the off-screen display may also be referred to as a blackout mode, a blackout clock, or a night clock, etc., which is not limited thereto.
  • the various embodiments in the present application are described with a screen off display.
  • processor 201 can include one or more processing units.
  • the processor 201 can also integrate an application processor and a modem processor.
  • the application processor mainly processes an operating system, a user interface, an application, and the like, and the modem processor mainly processes wireless communication. It can be understood that the above modem processor may not be integrated into the processor 201.
  • the processor 201 may be a Kirin 970 chip manufactured by Huawei Technologies Co., Ltd.
  • the processor 201 may further include a fingerprint verification chip for verifying the collected fingerprint.
  • the radio frequency circuit 202 can be used to receive and transmit wireless signals during transmission or reception of information or calls. Specifically, the radio frequency circuit 202 can receive the downlink data of the base station and then process it to the processor 201. In addition, the radio frequency circuit 202 can also transmit data related to the uplink to the base station. Generally, radio frequency circuit 202 includes, but is not limited to, an antenna, at least one amplifier, a transceiver, a coupler, a low noise amplifier, a duplexer, and the like. In addition, the radio frequency circuit 202 can also communicate with other devices through wireless communication. The wireless communication can use any communication standard or protocol, including but not limited to global mobile communication systems, general packet radio services, code division multiple access, wideband code division multiple access, long term evolution, email, short message service, and the like.
  • the memory 203 is used to store applications and data, and the processor 201 executes various functions and data processing of the mobile phone 200 by running applications and data stored in the memory 203.
  • the memory 203 mainly includes a storage program area and a storage data area.
  • the storage program area may store an operating system, an application required for at least one function (such as a sound playing function, an image playing function, etc.); the storage data area may store data (such as audio data, a phone) created according to the use of the mobile phone 200.
  • the memory 203 may include a high speed random access memory, and may also include a nonvolatile memory such as a magnetic disk storage device, a flash memory device, or other nonvolatile solid state storage device.
  • the memory 203 can store various operating systems, such as those developed by Apple. Operating system, developed by Google Inc. Operating system, etc.
  • the application 203 and related data, such as background wallpaper, clock, date, etc., related to the embodiments of the present application are stored in the memory 203.
  • the background wallpaper, the clock, the date, and the like in the embodiment of the present application may also be stored in the cloud, and the mobile phone 100 obtains the background wallpaper, the date, the clock, and the like from the cloud.
  • Touch screen 204 can include touch-sensitive surface 204-1 and display 204-2.
  • the touch-sensitive surface 204-1 eg, a touch panel
  • the touch-sensitive surface 204-1 can collect touch events on or near the user of the mobile phone 200 (eg, the user uses a finger, a stylus, or the like on the touch-sensitive surface 204-1. Or operation near the touch-sensitive surface 204-1) and transmitting the acquired touch information to other devices such as the processor 201.
  • the touch event of the user in the vicinity of the touch-sensitive surface 204-1 may be referred to as a hovering touch; the hovering touch may mean that the user does not need to directly touch the touch in order to select, move or drag a target (eg, an App icon, etc.) Board, and only the user is located near the electronic device to perform the desired function.
  • a target eg, an App icon, etc.
  • the touch-sensitive surface 204-1 capable of floating touch can be realized by capacitive, infrared light, ultrasonic, and the like.
  • the touch sensitive surface 204-1 can include two portions of a touch detection device and a touch controller.
  • the touch detection device detects the touch orientation of the user, and detects a signal brought by the touch operation, and transmits a signal to the touch controller; the touch controller receives the touch information from the touch detection device, and converts the touch information into contact coordinates, and then Sended to the processor 201, the touch controller can also receive the instructions sent by the processor 201 and execute them.
  • the touch sensitive surface 204-1 can be implemented in various types such as resistive, capacitive, infrared, and surface acoustic waves.
  • a display (also referred to as display) 204-2 can be used to display information entered by the user or information provided to the user as well as various menus of the handset 200.
  • the display 204-2 may further include a display driving chip and a display device.
  • the display driver chip is configured to receive signals or data sent by the processor 201 to drive display of a corresponding interface on the display device.
  • the processor 201 upon detecting an event that the remaining charge is less than 20%, matches the off-screen display mode to the easy mode in response to the event.
  • the processor 201 detects the input of the user lock screen, in response to the input of the user lock screen, according to the simple mode, the related information to be displayed is sent to the display driver chip (such as displaying the style, brightness, and brightness of the information to be displayed). Timing). After the display driver chip receives the related information to be displayed sent by the processor, after processing the information, the display device is driven to illuminate the corresponding pixel point according to the processed information, and the corresponding pixel is extinguished, thereby extinguishing the screen in a simple mode. display.
  • the display driver chip such as displaying the style, brightness, and brightness of the information to be displayed. Timing.
  • the embodiment of the present application may configure the display device by an organic light-emitting diode (OLED).
  • OLED organic light-emitting diode
  • AMOLED active matrix organic light emitting diode
  • the display driving chip receives the related information to be displayed after the screen is cleared by the processor, and processes the related information to be displayed, and drives the partial OLED lamp to light up, and the remaining part of the OLED is turned off, thereby achieving the extinction.
  • the touch-sensitive surface 204-1 can be overlaid on the display 204-2, and when the touch-sensitive surface 204-1 detects a touch event on or near it, is transmitted to the processor 201 to determine the type of touch event, followed by the processor 201 may provide a corresponding visual output on display 204-2 depending on the type of touch event.
  • touch-sensitive surface 204-1 and display screen 204-2 are implemented as two separate components to implement the input and output functions of handset 200
  • touch-sensitive surface 204- 1 is integrated with the display 204-2 to implement the input and output functions of the handset 200. It is to be understood that the touch screen 204 is formed by stacking a plurality of layers of materials.
  • the touch-sensitive surface 204-1 may overlie the display 204-2, and the size of the touch-sensitive surface 204-1 is greater than the size of the display 204-2 such that the display 204- 2 is completely covered under the touch-sensitive surface 204-1, or the touch-sensitive surface 204-1 may be disposed on the front side of the mobile phone 200 in a full-board form, that is, the user's touch on the front of the mobile phone 200 can be perceived by the mobile phone. You can achieve a full touch experience on the front of your phone.
  • the touch-sensitive surface 204-1 is disposed on the front side of the mobile phone 200 in the form of a full-board
  • the display screen 204-2 may also be disposed on the front side of the mobile phone 200 in the form of a full-board, so that the front side of the mobile phone is Can achieve a borderless structure.
  • the touch screen 204 may also include a series of pressure sensor arrays that may cause the handset to sense the pressure applied to the touch screen 204 by a touch event.
  • the mobile phone 200 can also include a Bluetooth device 205 for enabling data exchange between the handset 200 and other short-range electronic devices (eg, mobile phones, smart watches, etc.).
  • the Bluetooth device in the embodiment of the present application may be an integrated circuit or a Bluetooth chip or the like.
  • the handset 200 can also include at least one type of sensor 206, such as a light sensor, motion sensor, and other sensors.
  • the light sensor may include an ambient light sensor and a proximity sensor, wherein the ambient light sensor may adjust the brightness of the display of the touch screen 204 according to the brightness of the ambient light, and the proximity sensor may turn off the power of the display when the mobile phone 200 moves to the ear.
  • the accelerometer sensor can detect the magnitude of acceleration in all directions (usually three axes). When it is stationary, it can detect the magnitude and direction of gravity. It can be used to identify the gesture of the mobile phone (such as horizontal and vertical screen switching, related Game, magnetometer attitude calibration), vibration recognition related functions (such as pedometer, tapping).
  • sensor 206 may also include fingerprint sensor 212.
  • fingerprint sensor 212 may be disposed on the back of handset 200 (eg, below the rear camera) or fingerprint sensor 212 may be disposed on the front of handset 200 (eg, below touch screen 204).
  • the fingerprint recognition function can also be implemented by configuring the fingerprint sensor 212 in the touch screen 204, that is, the fingerprint sensor 212 can be integrated with the touch screen 204 to implement the fingerprint recognition function of the mobile phone 200.
  • the fingerprint sensor 212 can be disposed in the touch screen 204, can be part of the touch screen 204, or can be otherwise disposed in the touch screen 204.
  • the fingerprint sensor 212 can also be implemented as a full-board fingerprint sensor, and thus the touch screen 204 can be viewed as a panel that can be fingerprinted at any location.
  • the fingerprint sensor 212 may process the fingerprint (eg, fingerprint verification, etc.) after the fingerprint is collected, and send the fingerprint processing result (such as whether the fingerprint verification passes) to the processor 201, so that the processor 201 can perform corresponding processing according to the fingerprint processing result.
  • the fingerprint sensor 212 can transmit the collected fingerprint to the processor 201 for the processor 201 to process the fingerprint (eg, fingerprint verification, etc.).
  • the fingerprint sensor 212 in the embodiment of the present application may employ any type of sensing technology, including but not limited to optical, capacitive, piezoelectric or ultrasonic sensing technologies.
  • sensing technology including but not limited to optical, capacitive, piezoelectric or ultrasonic sensing technologies.
  • sensors such as a gyroscope, a barometer, a hygrometer, a thermometer, an infrared sensor, and the like that can be configured in the mobile phone 200 are not described herein.
  • the Wi-Fi device 207 is configured to provide the mobile phone 200 with network access complying with the Wi-Fi related standard protocol.
  • the mobile phone 200 can access the Wi-Fi access point through the Wi-Fi device 207, thereby helping the user to send and receive emails, browse web pages, and access streaming media, etc., which provides users with wireless broadband Internet access.
  • the Wi-Fi device 207 can also function as a Wi-Fi wireless access point, and can provide Wi-Fi network access to other electronic devices.
  • the positioning device 208 is configured to provide a geographic location for the mobile phone 200. It can be understood that the positioning device 208 can be specifically a receiver of a positioning system such as a global positioning system (GPS) or a Beidou satellite navigation system. After receiving the geographical location sent by the positioning system, the positioning device 208 sends the information to the processor 201 for processing, or sends it to the memory 203 for storage. In some other embodiments, the positioning device 208 can be an assisted global positioning system (AGPS) receiver.
  • AGPS is a mobile positioning method that cooperates with the mobile assistance.
  • the signal of the base station allows the mobile phone 200 to be positioned faster; in the AGPS system, the positioning device 208 can obtain positioning assistance by communicating with an auxiliary positioning server (e.g., a positioning server of the mobile phone 200).
  • the AGPS system assists the positioning device 208 in performing the ranging and positioning services by acting as a secondary server, in which case the secondary positioning server is provided over the wireless communication network in communication with the positioning device 208 (i.e., GPS receiver) of the electronic device, such as the handset 200.
  • Positioning assistance can also be a Wi-Fi access point based positioning technology.
  • each Wi-Fi access point has a globally unique MAC address
  • the electronic device can scan and collect the broadcast signals of the surrounding Wi-Fi access points when Wi-Fi is turned on, so that Wi can be obtained.
  • the MAC address broadcasted by the Fi access point the electronic device transmits the data (such as the MAC address) capable of indicating the Wi-Fi access point to the location server through the wireless communication network, and each Wi-Fi connection is retrieved by the location server.
  • the geographic location of the inbound point combined with the strength of the Wi-Fi broadcast signal, calculates the geographic location of the electronic device and sends it to the positioning device 208 of the electronic device.
  • the audio circuit 209, the speaker 213, and the microphone 214 can provide an audio interface between the user and the handset 200.
  • the audio circuit 209 can transmit the converted electrical data of the received audio data to the speaker 213 for conversion to the sound signal output by the speaker 213; on the other hand, the microphone 214 converts the collected sound signal into an electrical signal by the audio circuit 209. After receiving, it is converted into audio data, and then the audio data is output to the radio frequency circuit 202 for transmission to, for example, a mobile phone, or the audio data is output to the memory 203 for further processing.
  • the peripheral interface 210 is used to provide various interfaces for external input/output devices (such as a keyboard, a mouse, an external display, an external memory, a subscriber identity module card, etc.). For example, it is connected to the mouse through a universal serial bus interface, and is connected to a subscriber identity module (SIM) card provided by a telecommunications carrier through a metal contact on the card slot of the subscriber identity module.
  • SIM subscriber identity module
  • Peripheral interface 210 can be used to couple the external input/output peripherals described above to processor 201 and memory 203.
  • the mobile phone 200 may further include a power supply device 211 (such as a battery and a power management chip) that supplies power to the various components.
  • the battery may be logically connected to the processor 201 through the power management chip to manage charging, discharging, and power management through the power supply device 211. And other functions.
  • the mobile phone 200 may further include a camera, such as a front camera and a rear camera, wherein the front camera may be used to capture facial feature information, and the processor 201 may perform facial face information on the facial feature information. Identify and proceed with subsequent processing.
  • the mobile phone 200 may further include a flash, a micro projection device, a near field communication (NFC) device, and the like, and details are not described herein.
  • the following embodiments can all be implemented in an electronic device (for example, a mobile phone 200, a tablet computer, etc.) having the above-described hardware structure.
  • FIG. 2b is a graphical user interface (GUI) displayed on the touch screen 204 of the mobile phone 200.
  • the GUI may include a status bar 213, a hidden navigation bar 216, a time and weather Widget 214, and more. Icons of the application, such as the icon 215 of the camera, and the like.
  • the status bar 213 may include the name of the operator (China Mobile), the mobile network (4G), the time, and the remaining power.
  • the navigation bar 216 may include a back button icon, a home screen button icon, and a forward button icon.
  • the status bar 213 may further include a Bluetooth icon, a Wi-Fi icon, an external device icon, and the like.
  • a Dock bar may also be included in the interface shown in FIG. 2b, and an icon of a commonly used App or the like may be included in the Dock column.
  • the mobile phone may open a user interface of the App corresponding to the App icon. For example, when the handset detects an event of the user's finger touching the icon 216 of the camera, the user interface of the camera is opened in response to an event of the user's finger touching the icon 216 of the camera.
  • the electronic device can also include a home screen key.
  • the home screen key can be a physical button or a virtual button.
  • the home screen key is used to return the GUI displayed on the touch screen to a certain page of the home screen according to the user's operation, so that the user can view the home screen at any time and operate the controls (such as icons) in the home screen.
  • the above operation may specifically be that the user presses the home screen key, or the user presses the home screen key twice in a short time, or the user long presses the home screen key.
  • the home screen key may further integrate the fingerprint sensor 212, so that the user can perform fingerprint collection when the home screen key is pressed, thereby confirming the identity of the user.
  • the mobile phone 200 can be set according to the user after the mobile phone is turned off and the display function is enabled, in order to make the function of the screen-off display function more flexible to meet the different needs of the user.
  • the system default setting automatic switching in at least the above two modes.
  • the off-screen display function in the mobile phone 200 can be configured with an easy mode (also referred to as a low power mode) and a colorful mode.
  • the mobile phone 200 in the simple mode, the mobile phone 200 can display only the clock and the date after the screen is off. Therefore, the mobile phone 200 consumes less power in the simple mode.
  • the mobile phone 200 in addition to displaying the clock and date, can display notification information of basic applications such as remaining power, missed calls, and SMS reminders, and does not display such as WeChat, Alipay, etc. Notification information for the three-party application.
  • Notification information for the three-party application in order to reduce power consumption, less color may be included in the screen display interface.
  • the interface displayed after the screen is off can be composed of 8 colors.
  • the simple mode may be referred to as an 8-color mode.
  • the name of the simple mode is not limited in the embodiment of the present application.
  • the mobile phone 200 displays the clock, the date, the remaining power, the missed call, and the SMS reminder, and can also display notifications and background wallpapers of third-party applications such as unread WeChat messages. 200 in the colorful mode, the power consumption is higher. It should be understood that in the colorful mode, in order to be able to bring a cool color visual effect to the user, in some examples, the interface after the screen is extinguished may be composed of more colors. For example, in the colorful mode of the mobile phone 200, the interface displayed after the screen is off can be composed of 16.7 mega-color. In the case where the display interface is composed of 16.7 mega-colors after the screen is off, the colorful mode may be referred to as a 16.7 mega-color mode. The name of the colorful mode is not limited in the embodiment of the present application.
  • an interface is set for the system of the handset 200.
  • the system settings interface includes flight mode options 301a and virtual buttons 301b, Wi-Fi options 302, Bluetooth options 303a and virtual buttons 303b, personal hotspot options 304, mobile network options 305, do not disturb mode options 306, display and brightness options 307, The screen display option 308, the sound option 309, and the privacy option 310 are displayed.
  • the virtual button 301b is used to turn the flight mode function on or off
  • the virtual button 303b is used to turn the Bluetooth function on or off.
  • the virtual button 301b is closed, and the virtual button 303b is closed.
  • the mobile phone 200 detects the off-screen display option 308 on the touch system setting interface, the setting interface of the off-screen display function is displayed.
  • the setting interface of the off-screen display function can be as shown in FIG. 4a.
  • the setting interface of the screen-off display function may include a screen-off display option 401a and a virtual button 401b.
  • the virtual button 401b is used to enable or disable the off-screen display function.
  • the setting interface of the off-screen display function can also be as shown in FIG. 4b.
  • the setting interface of the screen-off display function may include a screen-off display option 401a and a virtual button 401b, a simple mode option 402a and a virtual button 402b, a colorful mode option 403a and a virtual button 403b, a smart mode 404a, and a virtual button 404b.
  • the virtual button 401b is used to turn the off-screen display function on or off
  • the virtual button 402b is used to turn the simple mode on or off
  • the virtual button 403a is used to turn the colorful mode on or off
  • the virtual button 404b is used to turn the smart mode on or off.
  • the setting interface of the off-screen display function can be as shown in FIG. 4c.
  • the setting interface of the screen-off display may include a screen-off display option 401a and a virtual button 401b, a simple mode option 402a and a virtual button 402b, a colorful mode option 403a and a virtual button 403b, a smart mode option 404a and a virtual button 404b, and a layout option 405.
  • the virtual button 401b is used to turn the off-screen display function on or off
  • the virtual button 402b is used to turn the simple mode on or off
  • the virtual button 403a is used to turn the colorful mode on or off
  • the virtual button 404b is used to turn the smart mode on or off.
  • the virtual button 401b and the virtual button 402b are both ON (ON), and the virtual button 403b and the virtual button 404b are both OFF.
  • the setting interface of the layout can be displayed in the touch screen, for example, the setting interface of the displayed layout is as shown in FIG. 4d. .
  • the setting interface of the layout includes a content option 406 to be displayed, a display notification option 407a, and a virtual button 407b, and a display effect option of the plurality of screen-off interfaces.
  • the virtual button 407b is used to enable or disable the display notification function
  • the display effect option 400 of the screen-off interface is the display effect of the screen-off interface selected by the user.
  • the display effect option 400 of the screen-off interface selected by the user is displayed.
  • the display effect of the screen that is selected by the user is 400.
  • the displayed screen is as shown in FIG. 1a, including the clock 08:00 and the date January 1, 2018, and the clock 08:
  • the display effect of 00 and date January 1, 2018 is the display effect indicated by the display effect option 400.
  • the setting interface of the off-screen display function can be as shown in FIG. 4e.
  • the setting interface of the screen-off display may include a screen-off display option 401a and a virtual button 401b, a simple mode option 402a and a virtual button 402b, a colorful mode option 403a and a virtual button 403b, a smart mode option 404a and a virtual button 404b, and a layout option 408.
  • the virtual button 401b is used to turn the off-screen display function on or off
  • the virtual button 402b is used to turn the simple mode on or off
  • the virtual button 403a is used to turn the colorful mode on or off
  • the virtual button 404b is used to turn the smart mode on or off.
  • the virtual button 401b and the virtual button 403b are both turned “ON”, and the virtual button 402b and the virtual button 404b are both turned “OFF”.
  • the setting interface of the layout can be displayed in the touch screen, for example, the setting interface of the displayed layout is as shown in FIG. 4f. .
  • the setting interface of the layout includes a content option 409 to be displayed, a display notification option 410a and a virtual button 410b, a background image option 412, and a display effect option of a plurality of screen-out interfaces.
  • the virtual button 410b is used to enable or disable the function of displaying a notification.
  • the display effect option 413 is a display effect of the screen that is selected by the user. In the scenario of the setting interface of the layout shown in FIG. 4f, when the mobile phone 200 is off, the display is performed according to the display effect option 413 selected by the user.
  • the displayed off-screen interface is as shown in FIG. 1b, including the clock 08:00, the date January 1, 2018, and the background picture, and the clock 08:
  • the display effect of 00, date January 1, 2018 and the background picture is the display effect indicated by the display effect option 413.
  • the user can manually turn on the simple mode, turn off the colorful mode from the device interface of the off-screen display function according to his own needs, or manually turn on the colorful mode and close the simple mode from the setting interface of the off-screen display function.
  • the user can trigger the mobile phone 200 to intelligently determine the off-screen display mode according to different scenarios by turning on the smart mode option, and display different interfaces after the screen is off.
  • the setting interface of the off-screen display function may also be as shown in FIG. 4g.
  • the setting interface of the screen-off display function includes a screen-off display option 401a and a virtual button 401b, a simple mode option 402a and a virtual button 402b, a colorful mode option 403a and a virtual button 403b, a smart mode option 404a and a virtual button 404b, and a sleep based setting.
  • the virtual button 401b is used to enable or disable the screen-off display function
  • the virtual button 402b is used to turn the simple mode on or off
  • the virtual button 403a is used to turn the colorful mode on or off
  • the virtual button 404b is used to turn the smart mode on or off
  • the virtual button 414b is used to turn on or off the setting-based bedtime alarm clock and the wake-up alarm clock to determine the off-screen display mode
  • the virtual button 415b is used to turn on or off the smart-de-screening frequency based on the smart-de-screening display mode
  • the virtual button 416b is used to enable or disable the on-screen display mode.
  • the remaining battery intelligence determines the off-screen display mode.
  • the virtual button 401b, the virtual button 404b, and the virtual button 416b are both ON, and the virtual button 402b, the virtual button 403b, the virtual button 414b, and the virtual button 415b are all closed. (OFF).
  • the mobile phone 200 intelligently determines the off-screen display mode from the simple mode and the colorful mode according to the current remaining power.
  • the mobile phone 200 when the mobile phone 200 detects that the remaining power is higher than 10% and lower than 30%, it determines that the off-screen display mode is the simple mode in response to the event that the remaining power is higher than 20% and lower than 50%. If the remaining power is detected to be higher than 10% and lower than 30% when the mobile phone 200 is bright, after the mobile phone 200 is turned off, the display effect selected by the user in the simple mode is displayed. For example, if the display effect selected by the user in the simple mode is the display effect 400 shown in FIG. 4d, after the mobile phone 200 is turned off, the displayed off-screen interface is as shown in FIG. 1a. If the mobile phone 200 detects that the remaining power is higher than 10% and lower than 30% when the screen is off, the display is displayed according to the display effect selected by the user in the simple mode.
  • the mobile phone 200 when the mobile phone 200 detects that the remaining power is less than 10%, the mobile phone 200 turns off the off-screen display in response to the event that the remaining power is less than 10%.
  • the mobile phone 200 when the mobile phone 200 detects that the remaining power is higher than 30%, it determines that the off-screen display mode is the colorful mode in response to the event that the remaining power is higher than 30%. If the remaining power is detected to be higher than 30% when the mobile phone 200 is on the screen, after the mobile phone 200 is turned off, the display effect selected by the user in the colorful mode is displayed. For example, if the screen-off display effect selected by the user in the colorful mode is the screen-off display effect 413 shown in FIG. 4d, after the mobile phone 200 is turned off, the displayed off-screen interface is as shown in FIG. 1b. If the mobile phone 200 detects that the remaining power is higher than 30% when the screen is off, the display is displayed according to the display effect selected by the user in the colorful mode.
  • the mobile phone 200 may detect the remaining power by an event trigger, or periodically detect the remaining power.
  • the mobile phone 200 triggers detection of the remaining power when detecting an event of switching from the bright screen to the off screen, or the mobile phone 200 triggers detection of the remaining power when detecting an event of switching from the off screen to the bright screen, or the mobile phone 200 detects When the video phone is accessed, the detection of the remaining power is triggered.
  • the embodiment of the present application does not limit the event that triggers the detection of the remaining power.
  • the mobile phone 200 may detect the remaining power through the processor 201, and may also detect the remaining power through a specific chip (such as an artificial intelligence (AI) chip, etc.), which is not limited in this embodiment of the present application.
  • a specific chip such as an artificial intelligence (AI) chip, etc.
  • the mobile phone 200 may switch from a bright screen to a blank screen when detecting that the user's lock screen input is detected.
  • the user's lock screen input can be the operation of the user pressing the power button, the user clicks or double-clicks the icon of the “lock screen” displayed on the display panel, the gesture of the user locking the screen (such as the three-finger slide), etc., which is not limited thereto.
  • the mobile phone 200 can also switch from bright screen to off screen when no input operation is detected within the set duration.
  • the set duration can be the length of time the user sets according to the needs, such as 10 seconds, 20 seconds, 30 seconds or 2 minutes.
  • the mobile phone 200 determines whether the off-screen display mode is the simple mode, or whether the mobile phone 200 determines whether the off-screen display mode is the colorful mode or the off-screen display.
  • the range of the remaining power can be adjusted according to the needs of the user, and is not limited herein.
  • the setting interface of the screen-off display function may also be as shown in FIG. 4h.
  • the device interface of the screen-off display function includes a screen-off display option 401a and a virtual button 401b, a simple mode option 402a and a virtual button 402b, a colorful mode option 403a and a virtual button 403b, a smart mode option 404a and a virtual button 404b, and a sleep based setting.
  • the virtual button 401b is used to enable or disable the screen-off display function
  • the virtual button 402b is used to turn the simple mode on or off
  • the virtual button 403a is used to turn the colorful mode on or off
  • the virtual button 404b is used to turn the smart mode on or off
  • the virtual button 414b is used to turn on or off the setting-based bedtime alarm clock and the wake-up alarm clock to determine the off-screen display mode
  • the virtual button 415b is used to turn on or off the smart-de-screening frequency based on the smart-de-screening display mode
  • the virtual button 416b is used to enable or disable the on-screen display mode.
  • the remaining battery intelligence determines the off-screen display mode.
  • the virtual button 401b, the virtual button 404b, and the virtual button 414b are both ON, and the virtual button 402b, the virtual button 403b, the virtual button 415b, and the virtual button 416b are all closed. (OFF).
  • the mobile phone 200 intelligently determines the off-screen display mode from the simple mode and the colorful mode according to the set bedtime alarm and the wake-up alarm.
  • the sleep alarm clock set by the user on the mobile phone 200 is 23:00, and the wake-up alarm clock is 6:00.
  • the mobile phone 200 determines that the off-screen display mode is the simple mode in response to the current time of the event reaching 23:00. If the mobile phone 200 detects that the current time reaches 23:00 when the mobile phone 200 is bright, after the mobile phone 200 is turned off, the display effect selected by the user in the simple mode is displayed. For example, if the display effect selected by the user in the simple mode is the display effect 400 shown in FIG. 4d, after the mobile phone 200 is turned off, the displayed off-screen interface is as shown in FIG. 1a. If the mobile phone 200 detects that the current time has reached 23:00 when the screen is off, the display is displayed according to the display effect selected by the user in the simple mode.
  • the mobile phone 200 when the mobile phone 200 detects that the current time reaches 6:00, it determines that the off-screen display mode is the colorful mode in response to the current time of the event reaching 6:00. If the current time reaches 6:00 when the mobile phone 200 is on the screen, after the mobile phone 200 is turned off, the display effect selected by the user in the colorful mode is displayed. For example, if the display effect selected by the user in the colorful mode is the display effect 413 shown in FIG. 4f, after the mobile phone 200 is turned off, the displayed off-screen interface is as shown in FIG. 1b. If the mobile phone 200 detects that the current time has reached 6:00 when the screen is off, the display is performed according to the display effect selected by the user in the colorful mode.
  • the mobile phone 200 can detect whether the current time reaches the sleeping alarm clock or the wake-up alarm clock through the processor 201, and can also detect whether the current time reaches the sleeping alarm clock or the wake-up alarm clock through a specific chip (such as an AI chip, etc.)
  • a specific chip such as an AI chip, etc.
  • the foregoing is only illustrative and not limiting of the embodiments of the present application.
  • the embodiment of the present application can also be applied to a scenario in which a user sets multiple sleeping alarms and wake-up alarms on the mobile phone 200.
  • the mobile phone 200 detects the moment when the bedtime alarm is reached at the current time, it is also possible to turn off the off-screen display in response to the moment when the current time reaches the bedtime alarm clock.
  • the mobile phone 200 determines whether the remaining power is lower than when the mobile phone 200 detects that the screen-off display mode is the simple mode or the colorful mode. A certain threshold (such as 10%, the specific size of the threshold can be set according to actual needs), then the off screen display is turned off.
  • the mobile phone 200 If the mobile phone 200 is in the setting interface of the off-screen display function as shown in FIG. 4h, it is detected that the remaining power is lower than a certain threshold, and the off-screen display is turned off. In the above case, in some embodiments, when the mobile phone 200 detects that the remaining power is higher than the certain threshold, the screen is re-opened, and the setting interface of the screen-off display function is also turned on after the screen is turned off again.
  • the interface shown in 4h can also be the setting interface of the initial setting of the off-screen display function, which is not limited.
  • the setting interface of the screen-off display function may also be as shown in FIG. 4i.
  • the device interface of the screen-off display function includes a screen-off display option 401a and a virtual button 401b, a simple mode option 402a and a virtual button 402b, a colorful mode option 403a and a virtual button 403b, a smart mode option 404a and a virtual button 404b, and a sleep based setting.
  • the virtual button 401b is used to enable or disable the screen-off display function
  • the virtual button 402b is used to turn the simple mode on or off
  • the virtual button 403a is used to turn the colorful mode on or off
  • the virtual button 404b is used to turn the smart mode on or off
  • the virtual button 414b is used to turn on or off the setting-based bedtime alarm clock and the wake-up alarm clock to determine the off-screen display mode
  • the virtual button 415b is used to turn on or off the smart-de-screening frequency based on the smart-de-screening display mode
  • the virtual button 416b is used to enable or disable the on-screen display mode.
  • the remaining battery intelligence determines the off-screen display mode.
  • the virtual button 401b, the virtual button 404b, and the virtual button 415b are both ON, and the virtual button 402b, the virtual button 403b, the virtual button 414b, and the virtual button 416b are all closed. (OFF).
  • the mobile phone 200 intelligently determines the current screen-out display mode from the simple mode and the colorful mode according to the brightness-off screen frequency.
  • the mobile phone 200 can periodically detect the brightness of the screen, and can also detect the brightness of the screen.
  • the event triggering detection light-off screen frequency may be when the mobile phone 200 detects the current time to arrive at the wake-up alarm clock, and starts from the moment of the wake-up alarm clock, detecting the light-off screen frequency in the first time period, when the first time length is turned on and off.
  • the screen frequency is within the first range
  • the screen-off display mode is determined to be a simple mode in response to an event in the first range of the brightness-off-screen frequency within the first duration. If the brightness of the screen is within the second range, the screen is determined to be in the colorful mode in response to an event in the second range of the brightness of the first time period.
  • the event triggering detection light-off screen frequency may also be that the mobile phone 200 reaches the bedtime alarm clock when detecting the current time, and starts from the moment of the bedtime alarm clock, detecting the brightness-off screen frequency in the second time period, and when the second time period is on or off.
  • the screen frequency is in the third range
  • the screen-off display mode is determined to be a simple mode in response to an event in the third range of the brightness-off-screen frequency in the second duration. If the brightness of the screen is within the fourth range, the screen is determined to be in the colorful mode in response to an event in the fourth range of the brightness and duration of the second time period.
  • the event that triggers the detection of the on-off and off-screen frequency may also be other events, such as a boot event, and the foregoing is only an example, which is not limited by the embodiment of the present application.
  • the time range of the mobile phone 200 for counting and extinguishing the screen frequency may be the same or different for different events.
  • the mobile phone 200 determines the off-screen display mode as the simple mode, or the mobile phone 200 is specifically in the on-screen frequency. In what range, it is determined that the off-screen display mode is a colorful mode, and the corresponding setting can be made according to the needs of the user, which is not limited herein.
  • the display effect selected by the user in the simple mode is displayed after the mobile phone 200 is turned off. If the mobile phone 200 detects that the brightness of the screen is within the first range when the screen is off, the display is performed according to the display effect selected by the user in the simple mode. For example, if the display effect selected by the user in the simple mode is the display effect 400 shown in FIG. 4d, after the mobile phone 200 is turned off, the displayed off-screen interface is as shown in FIG. 1a.
  • the brightness and extinguishing screen frequency in the first range may be a threshold value of the brightness of the screen to be lower than a certain threshold, or may be a set of threshold ranges preset by the mobile phone 200, for example, ⁇ K
  • the threshold range set may include a plurality of consecutive positive integers, and may also include a plurality of non-contiguous positive integers, which are not limited thereto.
  • the threshold and the threshold range are set, the corresponding settings can be made according to the requirements of the user, which is not limited herein.
  • the display effect selected by the user in the colorful mode is displayed after the mobile phone 200 is turned off. If the mobile phone 200 detects that the on-screen frequency is within the second range when the screen is off, the display is performed according to the display effect selected by the user in the colorful mode. For example, if the display effect selected by the user in the colorful mode is the display effect 413 shown in FIG. 4f, after the mobile phone 200 is turned off, the displayed off-screen interface is as shown in FIG. 1b.
  • the specific implementation of the second scope is similar to the specific implementation of the first scope, and details are not described herein again.
  • the mobile phone 200 may detect the brightness of the screen and the screen through the processor 201, and may also detect the brightness of the screen by a specific chip (such as an AI chip).
  • a specific chip such as an AI chip
  • the mobile phone 200 may also turn off the off-screen display in response to the on-off frequency being 0.
  • the mobile phone 200 is in the colorful mode regardless of whether the current screen-off display mode is the simple mode or the current screen-off display mode. When the brightness and off screen frequency is 0, the off screen display is turned off.
  • the mobile phone 200 is in the setting interface of the off-screen display function as shown in FIG. 4i, the detected off-screen frequency is 0, and the off-screen display is turned off. In this case, in some embodiments, when the mobile phone 200 detects that the brightness of the screen is not 0, the screen is re-opened, and the setting interface of the screen is displayed after the screen is turned off again.
  • the interface shown may also be a setting interface of the initially set off-screen display function, which is not limited thereto.
  • the setting interface of the off-screen display function can also be as shown in Fig. 4j.
  • the device interface of the screen-off display function includes a screen-off display option 401a and a virtual button 401b, a simple mode option 402a and a virtual button 402b, a colorful mode option 403a and a virtual button 403b, a smart mode option 404a and a virtual button 404b, and a sleep based setting.
  • the virtual button 401b is used to enable or disable the screen-off display function
  • the virtual button 402b is used to turn the simple mode on or off
  • the virtual button 403a is used to turn the colorful mode on or off
  • the virtual button 404b is used to turn the smart mode on or off
  • the virtual button 414b is used to enable or disable the setting of the bedtime alarm clock and the wake-up alarm clock to determine the mode of the off-screen display.
  • the virtual button 415b is used to turn on or off the mode for intelligently determining the off-screen display based on the brightness and off-screen frequency
  • the virtual button 416b is used to turn on or Turn off the mode based on the remaining battery intelligence to determine the off-screen display.
  • the virtual button 401b and the virtual button 404b are both turned “ON", and the virtual button 402b, the virtual button 403b, the virtual button 414b, the virtual button 415b, and the virtual button 416b are all turned “OFF”.
  • the mobile phone 200 can intelligently determine the off-screen display mode from the simple mode and the colorful mode according to the customized setting.
  • the custom setting is as shown in FIG. 4k, and the mobile phone 200 is in the time period corresponding to the time period option 418 of the simple mode display at the current time, for example, the mobile phone 200 is at 7:00 at the current time, since 7:00 is at 5: In the range of 00 to 8:00, it is intelligently determined that the off-screen display mode is the simple mode. For another example, when the current time is 23:00, the mobile phone 200 intelligently determines that the off-screen display mode is the simple mode because it is in the range of 22:00 to 24:00 at 23:00.
  • the smart phone determines that the off-screen display mode is the colorful mode; the mobile phone 200 displays the closed time period option 420 at the current time.
  • the off-screen display mode is turned off.
  • the customization can also be other ways, which is not limited. For example, when the mobile phone starts an application that consumes a large amount of power (such as Tencent video, personal hotspot, etc.), the mobile phone 200 matches the simple mode or turns off the off-screen display function. .
  • the setting interface of the screen-off display function is as shown in FIG. 4j
  • the customized control interface is as shown in FIG. 4k, exemplary, at 5:00 to 22:00.
  • a certain threshold for example, 10%, when the specific implementation, the user can perform corresponding setting according to his own needs
  • the setting interface of the screen-off display function may also be as shown in FIG. 5.
  • the setting interface of the screen-off display function shown in FIG. 5 includes a screen-off display option 401a and a virtual button 401b, a simple mode option 402a and a virtual button 402b, a colorful mode option 403a and a virtual button 403b, a smart mode option 404a, and a virtual button 404b.
  • the virtual button 401b is used to enable or disable the screen-off display function
  • the virtual button 402b is used to turn the simple mode on or off
  • the virtual button 403a is used to turn the colorful mode on or off
  • the virtual button 404b is used to turn the smart mode on or off
  • the virtual button Both 402b and 403b are off
  • virtual buttons 401b and 404b are both on.
  • the mobile phone 200 intelligently determines the off-screen display mode. Specifically, how the mobile phone 200 intelligently determines the off-screen display mode is related to the algorithm configured in the mobile phone 200. For example, if it is configured in the mobile phone 200 to determine the off-screen display mode based on the bedtime alarm and the wake-up alarm, when the virtual buttons 401b and 404b are on, the mobile phone 200 intelligently determines the mode of the off-screen display based on the bedtime alarm and the wake-up alarm.
  • the algorithm configured in the mobile phone 200 may be an algorithm for intelligently determining the off-screen display mode based on the brightness of the screen, or an algorithm for determining the off-screen display mode based on the remaining battery power, which is not limited thereto.
  • the mobile phone 200 is intelligently determined to be in the off-screen display mode, refer to the description of the above example, and details are not described herein again.
  • a screen-out display option and a virtual button for turning the off-screen display function on or off can be set in the system setting interface.
  • the mobile phone 200 detects that the virtual button is turned on, it intelligently determines the off-screen display mode.
  • the specific mobile phone 200 intelligently determines the off-screen display mode is related to the algorithm configured in the mobile phone 200. For example, if an algorithm for intelligently determining the off-screen display mode based on the on-off screen frequency is configured in the mobile phone 200, when the virtual button is turned on, the mobile phone 200 intelligently determines the off-screen display mode based on the on-off screen frequency.
  • the algorithm configured in the mobile phone 200 may be an algorithm for determining the off-screen display mode based on the sleep alarm clock and the wake-up alarm clock, or an algorithm for determining the off-screen display mode based on the remaining battery power, which is not limited thereto.
  • the mobile phone 200 is intelligently determined to be in the off-screen display mode, refer to the description of the above example, and details are not described herein again.
  • the mobile phone 200 when the mobile phone 200 is turned off, the mobile phone 200 can display the power consumption prompt, the incoming call notification, the information notification, and the quick open preset after the screen is turned off.
  • the icon of the application, or the information pushed to the user according to the preset rule, is not limited thereto.
  • the user can perform corresponding setting by touching the content option to be displayed and the display notification option on the setting interface of the touch layout.
  • an embodiment of the present application provides a method for performing a screen off display, which may be implemented in an electronic device having the hardware structure shown in FIG. 2a.
  • the touch screen in the electronic device can be an OLED screen.
  • the off-screen display mode configured on the electronic device includes the first mode and the second mode as an example.
  • the power consumption when the electronic device is displayed in the first mode after the screen is off is lower than the power consumption when the electronic device is displayed in the second mode, and the screen-off interface corresponding to the first mode is different from the screen-off interface corresponding to the second mode.
  • the screen-off interface corresponding to the first mode does not include the background wallpaper, and includes at least one of a clock, a date, a remaining power, a missed call, and an unread short message.
  • the screen-off interface corresponding to the first mode is as shown in FIG. 7a, and includes a clock, a date, a missed call, and a remaining power.
  • the screen-off interface corresponding to the second mode includes at least one of a clock, a date, a remaining power, a missed call, an unread short message, a background wallpaper, and an application icon.
  • the application icon can be an icon of a basic application such as a phone or a short message, or an icon of a third-party application such as WeChat or Alipay, which is not limited.
  • the screen-off interface corresponding to the second mode is as shown in FIG. 7b, including the background wallpaper, the clock, the date, the phone icon, the mail icon, the WeChat icon, and the remaining power in the area 701.
  • the number of colors constituting the screen-off interface corresponding to the first mode is smaller than the number of colors constituting the screen-off interface corresponding to the second mode.
  • the screen-off interface corresponding to the first mode is composed of 8 colors
  • the screen-off interface corresponding to the second mode is composed of 16.7 mega-colors.
  • the screen-off interface corresponding to the first mode is black (0, 0, 0), blue (0, 0, 255), green (0, 255, 0), cyan (0, 255, 255), red (255, 0, 0), magenta (255,0,255), yellow (255,255,0) and white (255,255,255) are composed of eight colors.
  • the method for displaying the screen in the embodiment of the present application may include the following steps:
  • Step 600 The electronic device receives the screen-off operation for the touch screen, and the screen-cut operation may be an operation of pressing the power button by the user, or the user may click a virtual button for canceling the screen on the touch screen, or It is a predefined gesture operation for extinguishing the screen (such as four-finger up, three-finger up, etc.), or it can be a heavy or long press of a user's finger on the touch screen for a specific control. .
  • Step 601 The electronic device acquires device state information, where the device state information is information related to a state in which the electronic device is currently running.
  • Device status information can be thought of as a collection of data that includes various data collected by the electronic device.
  • the device status information may include various external environment data collected by the electronic device through various sensors configured; for example, the electronic device may acquire the intensity of the ambient light through the ambient light sensor in FIG. 2a, or may accelerate
  • the meter detects the magnitude and direction of gravity of the electronic device, and can also detect the temperature and humidity of the current environment through the temperature sensor; the electronic device can also detect the number of walking steps of the user through the pedometer, and can also detect the user's step by the heart rate sensor. Heart rate and so on.
  • the device status information may include geographic location information acquired by the electronic device through the positioning device 208 in FIG. 2a; and, for example, the device status information may further include an alarm clock set by the user on the electronic device, or a statistical electronic device.
  • the brightness of the device may include the remaining power of the electronic device.
  • the device status information may further include specific configuration information that is acquired by the electronic device through the user's control interface in the screen display, as shown in FIGS. 4a to 4k. Taking FIG. 4a as an example, the configuration information included in the device status information indicates that the off-screen display function is off. As shown in FIG. 4c, the device status information includes configuration information indicating that both the off-screen display function and the simple mode are on, the colorful mode, and the smart mode are both off.
  • Step 602 The electronic device automatically determines, according to the device status information, a background display mode corresponding to the device status information from the first mode and the second mode.
  • the electronic device may analyze the collected device status information, and then automatically determine the off-screen display mode corresponding to the device status information according to the analysis result. It should be understood that the electronic device can analyze the device status information through an AI chip or a processor to obtain an analysis result.
  • the following is an example in which the first mode is the simple mode and the second mode is the colorful mode.
  • the device status information acquired by the electronic device may include configuration information, time, walking steps, geographic location, on-screen frequency, running application, and the like, wherein the configuration information indicates that the off-screen display function is enabled, and the smart mode is enabled.
  • the electronic device analyzes the device status information. For example, when the acceleration sensor in the electronic device detects that the number of steps of the user is continuously accumulated, it is determined that the user is currently walking. When the clock on the electronic device is 18:00, the current time is determined. For the user's off-duty time, when the geographical location of the electronic device is a certain position in the route of the company's home, it is determined that the user is currently on the way home from work.
  • the electronic device determines that the user is not currently using the electronic device when detecting that the blinking frequency is less than a preset threshold (eg, 5) and the application is not currently running in the foreground.
  • a preset threshold eg, 5
  • the analysis result of the device status information by the electronic device is that the user is currently walking on the way home from work, and the electronic device is not used.
  • the electronic device may determine that the off-screen display mode is a colorful mode.
  • the device status information acquired by the electronic device may include configuration information, an alarm clock, remaining power, geographic location, and light intensity.
  • the electronic device determines that the remaining power is less than 10%, the electronic device no longer analyzes other information, turns off the off-screen display function, or determines that the off-screen display mode is the simple mode.
  • the electronic device determines that the remaining power is higher than 10%, the electronic device further analyzes other information in the device state information, and the configuration information indicates that the off-screen display function and the smart mode are both turned on, and the current time reaches the sleeping alarm setting.
  • the time and location are home and the light intensity is 0.2 lux (Lx)
  • the analysis result is determined that the user rests at home, and the electronic device determines that the off-screen display mode is the simple mode.
  • the device status information acquired by the electronic device may include configuration information, charging status, time, geographic location, and walking steps.
  • the electronic device determines that the configuration information indicates that the off-screen display function is on, and the smart mode is on, in the charging state, the current time is 10:00, and the walking step is 0, it is determined that the user is currently working. Then, the electronic device determines that the off-screen display mode is a colorful mode.
  • Step 603 The electronic device displays a screen-off interface corresponding to the above-mentioned screen-off display mode after the touch screen is off according to the determined screen-off display mode.
  • the screen-off interface is an interface displayed on the touch screen after the electronic device is off-screen, and the interface is a display form of the corresponding off-screen display mode on the touch screen.
  • the screen blanking interface can be as shown in Figure 7a or as shown in Figure 7b.
  • the electronic device may acquire current device state information of the electronic device, and then the electronic device automatically determines the off-screen display mode according to the device state information. In this way, the electronic device can intelligently configure the off-screen display mode according to different scenarios in which the electronic device is currently located, thereby improving the intelligent interaction capability between the electronic device and the user, and also improving the user experience.
  • the device status information acquired by the electronic device includes: the remaining battery power is 10%, the ambient light intensity is 0.2Lx, and the geographic location information is the user's home address; in this case, if the electronic device is less than 20% in the battery power
  • the electronic device can automatically determine that the off-screen display mode is the first mode according to the remaining battery power of 10%, that is, the screen is displayed. Next, only a few colors of monochrome, as well as tips for clocks, dates, and basic functions (such as missed calls, unread text messages, etc.) are displayed to save power.
  • the electronic device may automatically determine that the off-screen display mode is the second according to the device status information.
  • Mode that is, under the off-screen display, the displayed off-screen interface is composed of multiple colors, such as 16.7 mega-color.
  • the electronic device can display the clock, date and simple background wallpaper, and can also display various application prompts (such as missed calls, unread text messages, unread WeChat, Alipay notifications, etc.), in order to give Users provide a cool experience.
  • the screen-off interface corresponding to the first mode and the screen-off interface corresponding to the second mode respectively comprise a plurality of different display effects.
  • the electronic device determines the display effect of the screen-off interface corresponding to the screen-off display mode determined in step 602 as the target display effect.
  • the target display effect is a display effect selected by the user for a plurality of different display effects of the screen-off interface corresponding to the screen-off display mode determined in step 602.
  • the target display effect may also be determined by the electronic device according to a preset algorithm.
  • the number of application icons displayed on the screen-off interface is related to the remaining power.
  • the correspondence between the remaining power and the number of application icons is preset in the electronic device, for example, the remaining power is greater than or equal to 80%, the number of corresponding application icons is 8, and the remaining power is less than 80% and greater than or equal to 40%, corresponding to The number of application icons is four, and the number of corresponding application icons is two when the remaining power is less than 40%.
  • the remaining power when the remaining power is greater than or equal to 80%, the number of application icons displayed on the screen is 8,
  • the eight application icons displayed on the off-screen interface are icons of which applications installed on the electronic device, and may be determined according to the frequency of the application used by the user, or may be predefined.
  • the electronic device determines that the top 8 applications are WeChat, Phone, Alipay, Taobao, Public Comment, Tencent Video, Baidu Map, and Jingdong, and when the remaining power is greater than or equal to 80%,
  • the icon of the top 8 application such as WeChat, Phone, Alipay, Taobao, Public Comment, Tencent Video, Baidu Map and Jingdong, is displayed on the off-screen interface.
  • the remaining power is less than 80% and 40% or more
  • the number of application icons displayed on the screen is four, and the icon of the application with the top 4 is displayed on the screen.
  • the remaining power of the electronic device is less than 40%, the number of application icons displayed on the screen is 2, and the icon of the application whose frequency is ranked in the top 2 is displayed on the screen.
  • the application icon displayed on the screen-off interface is related to the remaining power.
  • the corresponding relationship between the remaining power and the application icon is preset on the electronic device, for example, the remaining power is greater than or equal to 80%, and the corresponding application icons are WeChat, telephone, Alipay, SMS, and email, and the remaining power is less than 80% and greater than or equal to 40%.
  • the corresponding application icon is WeChat, phone and SMS
  • the corresponding application icon is WeChat and phone when the remaining power is less than 40%.
  • the application icons included on the determined screen-off interface are WeChat, phone, and short message.
  • the application icons included on the screen is the WeChat, the phone, and the short message
  • the electronic device is off
  • the WeChat, the phone, and the SMS may have a missed call, for example, or If there is a new SMS or a new WeChat, the notification message of WeChat, phone and SMS will be displayed on the off screen interface, and the notification message of other applications such as email will not be displayed.
  • the foregoing step 601 may specifically include: after the touch screen is off, the electronic device acquires the device status information. In this way, the electronic device can more accurately determine the off-screen display mode according to the newly acquired device state information, thereby further improving the user experience.
  • the electronic device turns off the touch screen in response to the screen-off operation, and after the touch screen is off-screen, acquires the device status information, and automatically determines, according to the device status information, the status information corresponding to the device status information.
  • the screen display mode is off, and then the screen is displayed on the touch screen corresponding to the above-mentioned screen display mode.
  • the step 601 may include: after receiving the screen-off operation, the electronic device acquires the device status information before the touch screen is turned off.
  • the electronic device After receiving the screen-off operation, acquires the device state information in response to the screen-off operation, and automatically determines the off-screen display mode corresponding to the device state information according to the acquired device state information, and then touches the touch screen.
  • the screen is off, and the screen is displayed on the touch screen corresponding to the screen off mode.
  • the electronic device may further acquire device status information before receiving the screen-off operation for the touch screen, and after receiving the screen-off operation for the touch screen, trigger step 603 to be performed.
  • the electronic device acquires the device status information, and automatically determines the screen-off display mode corresponding to the device status information, and then, after receiving the screen-off operation, turns off the touch screen in response to the screen-off operation, and displays and determines on the touch screen.
  • the off screen display mode corresponds to the off screen interface.
  • the foregoing method may further include the following steps:
  • Step 604 The electronic device receives a screen-on operation of the user when displaying the screen-off interface corresponding to the above-mentioned screen-off display mode.
  • the user's bright screen operation may include an operation of the user pressing the power button, an operation of the user pressing the home screen key, or a gesture operation for displaying the lock screen interface, and the like.
  • Step 605 The electronic device displays the lock screen interface in response to the above-mentioned bright screen operation, and no longer displays the screen blanking interface corresponding to the above-mentioned screen blanking display mode.
  • the device status information may include a screen-off display mode set by the user on the electronic device.
  • the off-screen display mode set by the user on the electronic device includes corresponding settings made by the user on at least one of the setting interfaces as shown in FIGS. 4a to 4k.
  • the device status information acquired by the electronic device in step 601 may further include battery remaining power information.
  • the electronic device can automatically determine the off-screen display mode according to the remaining battery power information.
  • the electronic device can automatically determine the off-screen display mode according to the remaining battery power information.
  • the device status information acquired by the electronic device in step 601 may further include the light-off screen frequency information.
  • the electronic device can automatically determine the out-of-screen display mode according to the brightness-off-screen frequency information.
  • the electronic device can automatically determine the out-of-screen display mode according to the brightness-off-screen frequency information.
  • the mobile phone 200 for intelligently determining the off-screen display mode according to the brightness and off-screen frequency in the embodiment of the present application, and details are not described herein again.
  • the device status information acquired by the electronic device in step 601 may further include an alarm clock set by the user.
  • the electronic device can automatically determine the off-screen display mode according to the alarm clock set by the user.
  • the electronic device can automatically determine the off-screen display mode according to the alarm clock set by the user.
  • the description of the blanking display mode of the mobile phone 200 according to the sleep alarm clock and the wake-up alarm clock in the embodiment of the present application and details are not described herein again.
  • the device status information acquired by the electronic device in step 601 may further include one or more of geographic location information, light intensity information, walking steps, and user heart rate.
  • the device status information acquired by the electronic device in step 601 may also include configuration information, where the configuration information is obtained by the electronic device from the setting interface of the off-screen display, and the setting interface of the off-screen display includes Off screen display option, first mode option, second mode option, smart mode option, first virtual button, second virtual button, third virtual button and fourth virtual button, the first virtual button is used to turn the screen off or on A display function, a second virtual button for turning the first mode on or off, a third virtual button for turning the second mode on or off, and a fourth virtual button for turning the smart mode on or off.
  • the electronic device can also periodically acquire device status information.
  • a method for displaying a screen off display may be implemented in the electronic device shown in FIG. 2 .
  • the method may specifically include:
  • Step 800 The electronic device receives the screen blanking operation
  • Step 801 If the electronic device determines that the configuration information indicates that the off-screen display function and the smart display are both on, and the electronic device is charging, the electronically determining the off-screen display mode is the second mode; for example, the second mode corresponding to the off-screen interface is Consists of 16.7 mega-color.
  • Step 802 The electronic device determines that the screen-off interface corresponding to the second mode is the first screen-off interface according to the charging of the electronic device.
  • the first screen-off interface is a clock, a date, a missed call, and a missed message.
  • the remaining power, the background wallpaper, and the N application icons are icons of applications in which the user uses the top N bits in the application installed on the electronic device, and N is a positive integer greater than or equal to 1;
  • the display effect of the first screen-off interface is a display effect selected by the user from a plurality of different display effects included in the screen-off interface corresponding to the second mode;
  • Step 803 The electronic device displays a first screen-off interface on the touch screen.
  • Step 804 After detecting that the charging is completed and disconnecting the charging, if the electronic device is located in the first geographic location, the electronic device automatically determines that the off-screen display mode is the second mode.
  • Step 805 The electronic device determines that the screen-off interface corresponding to the second mode is the second screen-off interface according to the charging completion and the charging is disconnected.
  • the second screen-off interface is the clock, the date, the missed call, and the The message information, the background wallpaper and the M application icons are combined, for example, the M application icons are icons of the application in which the user uses the frequency M in the top M in the application installed on the electronic device, and M is less than N and greater than or equal to 1.
  • the display effect of the second screen-off interface is a display effect selected by the user among a plurality of different display effects included in the screen-off interface corresponding to the second mode.
  • Step 806 The electronic device switches the first screen-off interface to the second screen-off interface, and performs display on the touch screen.
  • Step 807 After the positioning of the electronic device is switched from the first geographic location to the second geographic location, if it is determined that the remaining power is greater than the first threshold, and the on-off frequency is less than the second threshold, the electronically determining the off-screen display mode is the first mode.
  • the screen-off interface corresponding to the first mode is composed of 8 colors.
  • Step 808 The electronic device determines, according to the remaining power is greater than the first threshold, that the screen-off interface corresponding to the first mode is the third screen-off interface.
  • the third screen-off interface is the clock, the date, the missed call, and the The short message and the remaining power are combined; for example, the display effect of the third screen-off interface is a display effect selected by the user from a plurality of different display effects included in the screen-off interface corresponding to the first mode.
  • Step 809 The electronic device switches the second screen-off interface to the third screen-off interface, and displays the screen on the touch screen.
  • Step 810 After the positioning of the electronic device is switched from the first geographic location to the second geographic location, if the remaining power is determined to be greater than the first threshold, and the on-off frequency is greater than or equal to the second threshold, the electronic device automatically determines the off-screen display mode. For the second mode.
  • Step 811 The electronic device determines that the screen blanking interface corresponding to the second mode is the fourth screen blanking interface according to the remaining power amount is greater than the first threshold.
  • the fourth screen blanking interface is clock, date, missed call, and missed.
  • the K application icons are icons of the application in which the user uses the frequency in the top K position in the application installed on the electronic device, and K is less than M and greater than or equal to A positive integer of 1;
  • the display effect of the fourth screen-off interface is a display effect selected by the user among a plurality of different display effects included in the screen-off interface corresponding to the second mode.
  • Step 812 The electronic device switches the second screen-off interface to the fourth screen-off interface, and performs display on the touch screen.
  • Step 813 If the electronic device determines that the remaining power is less than or equal to the first threshold, the electronic device automatically determines that the off-screen display mode is the first mode.
  • Step 814 The electronic device determines that the screen blanking interface corresponding to the first mode is the fifth screen blanking interface according to the remaining power amount is less than or equal to the first threshold.
  • the fifth screen blanking interface is composed of a clock and a date;
  • the display effect of the screen-off interface is the display effect selected by the user from a plurality of different display effects included in the screen-off interface corresponding to the first mode.
  • Step 815 The electronic device displays the fifth screen-off interface on the touch screen.
  • the display driver chip in the mobile phone 200 includes a mobile industry processor interface (MIPI) display serial interface (DSI), a frame memory, a parameter register, and a high range.
  • MIPI mobile industry processor interface
  • DSI display serial interface
  • HDR High dynamic range
  • POC programmable optical compensation
  • timing controllers data latches
  • DACs digital to analog converters
  • source drivers source drivers
  • a possible way to display the interface corresponding to the first mode is when the display driver chip triggers the display interface of the display device, and does not pass the display driver.
  • the processing of the HDR and POC modules in the chip directly sends the data to the timing controller by the frame memory, and then is processed by the timing controller and sent to the source driver through the data latch and the DAC, and the display panel is controlled by the source driver in a simple mode. display.
  • the display driver chip includes MIPI, frame memory, parameter register, HDR and POC module, timing controller, data latch, DAC, and source driver.
  • the MIPI is used to receive data from the processor, and send data to be displayed on the display panel to the frame memory, and display configuration parameters of the display panel in the data (such as lighting and power supply timing, brightness) Information, etc.) and control parameters are sent to the parameter registers, which are used to control the frame memory, the HDR and POC modules, and the conduction state between the frame memory and the timing controller.
  • the control parameter is 1, the frame memory, the conduction between the HDR and POC modules, and the disconnection between the frame memory and the timing controller
  • the control parameter when the control parameter is 0, the frame memory, and the HDR and POC modules Inter-disconnection, conduction between the frame memory and the timing controller.
  • the value of the control parameter is determined by the processor according to the off-screen display mode of the terminal intelligent matching. Wherein, the terminal matches the second mode, and the value of the control parameter indicates the frame memory, the conduction between the HDR and the POC module, and the disconnection between the frame memory and the timing controller. When the terminal matches the first mode, the value of the control parameter indicates the disconnection between the frame memory, the HDR and POC modules, and the conduction between the frame memory and the timing controller.
  • a frame memory for receiving data from the MIPI, if the frame memory, the HDR and POC modules are turned on, and the frame memory and the timing controller are disconnected, the data is sent to the HDR and POC modules.
  • the frame memory, disconnection from the HDR and POC modules, and conduction between the frame memory and the timing controller send data to the timing controller.
  • the HDR and POC modules are configured to receive data to be displayed from the frame memory, perform processing such as contrast and uniformity on the data to be displayed, and send the processed data to be displayed to the timing controller.
  • a parameter register for receiving configuration parameters and control parameters from the MIPI, transmitting the configuration parameters to the timing controller, and controlling the frame memory, the HDR and POC modules, and the conduction between the frame memory and the timing controller according to the control parameters status.
  • a timing controller configured to receive data to be displayed sent from the frame memory or the HDR and POC modules, and configuration parameters from the parameter register, according to the configuration parameters, process the data to be displayed according to the display effect on the display panel, and send Give the data latch.
  • a data latch that receives data from the timing controller and sends the data to the DAC.
  • the DAC is used to receive data from the data latch, convert the data from a digital signal to an analog signal, and send it to the source driver.
  • the source driver is configured to receive an analog signal from the DAC, and trigger the display panel to display the data to be displayed according to the analog signal.
  • connection between the frame memory and the HDR and POC modules can be controlled by the parameter register by controlling the on-state of the switch between the frame register and the HDR and POC modules.
  • the state, and the conduction state between the frame memory and the timing controller by controlling the conduction state of the switch between the frame register and the timing controller.
  • the switch in the embodiment of the present application may be a transistor, and may also be other types of switches, which is not limited thereto.
  • an electronic device 1000 which may include: a touch screen 1001, wherein the touch screen 1001 includes a touch-sensitive surface 1006 and a display screen 1007; one or more processors 1002; a memory 1003; a plurality of applications 1008; and one or more computer programs 1004, each of which may be coupled by one or more communication buses 1005.
  • the one or more computer programs 1004 are stored in the memory 1003 and configured to be executed by the one or more processors 1002, the one or more computer programs 904 including instructions that can be used to execute 6 and the various steps in the corresponding embodiments.
  • the method provided by the embodiment of the present application is introduced from the perspective of an electronic device as an execution subject.
  • the electronic device may include a hardware structure and/or a software module, and implement the foregoing functions in the form of a hardware structure, a software module, or a hardware structure plus a software module.
  • One of the above functions is performed in a hardware structure, a software module, or a hardware structure plus a software module, depending on the specific application and design constraints of the technical solution.
  • FIG. 11 is an electronic device 1100 of the present application.
  • the electronic device 1100 includes an obtaining module 1101, a processing module 1102, a display module 1103, and a storage module 1104.
  • the display mode, the off-screen display mode includes a first mode and a second mode, and the screen-off interface corresponding to the first mode is different from the screen-off interface corresponding to the second mode, and the electronic device displays the first mode after the screen is off.
  • the power consumption is lower than the power consumption when the second mode is displayed;
  • the acquiring module 1101 is configured to acquire device state information, the device state information is information related to a state in which the electronic device is currently running, and the processing module 1102 is configured to use the device state information according to the device state information.
  • the screen-off display mode corresponding to the device state information is automatically determined from the first mode and the second mode; the display module 1103 is configured to display a screen-off interface corresponding to the determined off-screen display mode after the screen is cleared.
  • the screen-off interface corresponding to the first mode and the screen-off interface corresponding to the second mode respectively comprise a plurality of different display effects
  • the processing module 1102 is further configured to determine that the display effect of the screen-off interface corresponding to the determined screen-off display mode is the target display effect; and the target display effect is a plurality of different displays that are included in the screen-off interface corresponding to the determined screen-off display mode. The effect selected by the user in the effect.
  • the screen-off interface corresponding to the first mode does not include a background wallpaper, and includes at least one of a clock, a date, a remaining power, a missed call, and an unread short message.
  • the screen-off interface corresponding to the second mode includes at least one of a clock, a date, a remaining power, a missed call, an unread short message, a background wallpaper, and an application icon.
  • the processing module 1102 is further configured to determine, according to the current remaining power, and the corresponding relationship between the preset remaining power and the number of application icons, the number of application icons on the screen-off interface corresponding to the second mode; or The application icon on the screen-off interface corresponding to the second mode is determined according to the current remaining power and the corresponding relationship between the preset remaining power and the application icon.
  • the device status information includes battery remaining battery information
  • the processing module 1102 is configured to determine, according to the remaining battery power information, that the remaining battery power is less than or equal to the first threshold, determining that the power-off display mode corresponding to the device state information is the first mode; and determining that the remaining battery power is greater than the first threshold, Then, determining that the off-screen display mode corresponding to the device state information is the second mode.
  • the device status information includes light-off screen frequency information
  • the processing module 1102 is configured to determine, according to the brightness and off-screen frequency information, if the brightness-off-screen frequency is less than or equal to the second threshold, determine that the off-screen display mode corresponding to the device state information is the first mode;
  • the second threshold determines that the off-screen display mode corresponding to the device status information is the second mode.
  • the device status information includes a bedtime alarm and an wake up alarm
  • the processing module 1102 is configured to determine, when the current time reaches the moment when the sleeping alarm is set, the off-screen display mode corresponding to the device state information is the first mode; when the current time reaches the time when the wake-up alarm is set, determine the device status information.
  • the corresponding off-screen display mode is the second mode.
  • the obtaining module 1101 is specifically configured to: after receiving the screen-off operation for the touch screen, acquire the device state information; for example, the acquiring module 1101 is specifically configured to: after receiving the screen-off operation for the touch screen, and displaying Before the module is off, the device status information is obtained. Alternatively, the obtaining module 1101 is specifically configured to acquire device status information after the display module is off.
  • the display module 1103 is further configured to display the lock screen interface on the touch screen after displaying the screen blanking interface corresponding to the determined screen blanking display mode and in response to the brightnessing operation received by the acquiring module.
  • the device status information further includes at least one of configuration information, a state of charge, a geographic location, a number of walking steps, and a heart rate of the user.
  • the configuration information includes configuration information indicating whether the screen blanking display function and the smart display are turned on.
  • the configuration information is obtained by the obtaining module 1101 from the setting interface of the screen blanking display, and the setting interface of the screen blanking display includes: a screen display option, a first mode option, a second mode option, a smart mode option, a first virtual button, a second virtual button, a third virtual button, and a fourth virtual button, wherein the first virtual button is used to turn the screen off or on a display function, a second virtual button is used to enable or disable the first mode, a third virtual button is used to enable or disable the second mode, and a fourth virtual button is used to enable or disable the smart mode;
  • the screen is composed of 16.7 mega-color
  • the screen-off interface corresponding to the first mode is composed of 8 colors.
  • the first mode is a simple mode and the second mode is a colorful mode.
  • the device status information is periodically acquired by the electronic device.
  • display module 1103 is an OLED screen.
  • a specific hardware implementation of the acquiring module 1101 may be a sensor, an input device (such as a touch screen, etc.), and a specific hardware implementation of the processing module 1102 may be one or more processors, and the storage module 1104 A specific hardware implementation may be a memory, and a specific hardware implementation of the display mode 1101 may be a touch screen or the like.
  • the processor involved in the above embodiments may be a general purpose processor, a digital signal processor (DSP), an application specific integrated circuit (ASIC), or a field programmable gate array (FPGA). ) or other programmable logic devices, discrete gates or transistor logic devices, discrete hardware components.
  • DSP digital signal processor
  • ASIC application specific integrated circuit
  • FPGA field programmable gate array
  • the general purpose processor may be a microprocessor or the processor or any conventional processor or the like.
  • the steps of the method disclosed in the embodiments of the present application may be directly implemented by the hardware decoding processor, or may be performed by a combination of hardware and software modules in the decoding processor.
  • the software module can be located in a random access memory (RAM), a flash memory, a read-only memory (ROM), a programmable read only memory or an electrically erasable programmable memory, a register, etc.
  • RAM random access memory
  • ROM read-only memory
  • programmable read only memory or an electrically erasable programmable memory
  • register etc.
  • the storage medium is located in the memory, and the processor reads the instructions in the memory and combines the hardware to complete the steps of the above method.
  • the disclosed systems, devices, and methods may be implemented in other manners.
  • the device embodiments described above are merely illustrative.
  • the division of the unit is only a logical function division.
  • there may be another division manner for example, multiple units or components may be combined or Can be integrated into another system, or some features can be ignored or not executed.
  • the mutual coupling or direct coupling or communication connection shown or discussed may be an indirect coupling or communication connection through some interface, device or unit, and may be in an electrical, mechanical or other form.
  • the units described as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units, that is, may be located in one place, or may be distributed to multiple network units. Some or all of the units may be selected according to actual needs to achieve the purpose of the solution of the embodiment.
  • each functional unit in each embodiment of the present application may be integrated into one processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit.
  • the functions may be stored in a computer readable storage medium if implemented in the form of a software functional unit and sold or used as a standalone product.
  • the technical solution of the present application which is essential or contributes to the prior art, or a part of the technical solution, may be embodied in the form of a software product, which is stored in a storage medium, including
  • the instructions are used to cause a computer device (which may be a personal computer, server, or network device, etc.) or a processor to perform all or part of the steps of the methods described in the various embodiments of the present application.
  • the foregoing storage medium includes various media that can store program codes, such as a USB flash drive, a mobile hard disk, a ROM, a RAM, a magnetic disk, or an optical disk.

Abstract

一种灭屏显示的方法及电子设备,涉及终端技术领域,其中该方法可以在具有触摸屏的电子设备中实现,该电子设备上配置的灭屏显示模式包括第一模式和第二模式,与第一模式对应的灭屏界面和与第二模式对应的灭屏界面不同,且电子设备在灭屏后以第一模式显示时的功耗低于以第二模式显示时的功耗;该方法包括:电子设备获取设备状态信息,然后,根据设备状态信息,从第一模式和第二模式中自动确定与设备状态信息对应的灭屏显示模式,并在触摸屏灭屏后显示与确定的灭屏显示模式对应的灭屏界面。该设备状态信息为与电子设备当前运行的状态相关的信息。这种技术方案有助于提高了电子设备与用户之间的智能交互能力。

Description

一种灭屏显示的方法及电子设备 技术领域
本申请涉及终端技术领域,特别涉及一种灭屏显示的方法及电子设备。
背景技术
灭屏显示指的是电子设备(例如手机、平板电脑等)在灭屏后,能够点亮屏幕上的部分区域用以显示时钟、日期、通知等信息,可以更便于用户的操作,从而提升用户的体验。
目前,灭屏显示存在8色模式和16.7兆色模式。以手机为例,对于8色模式,手机可以在灭屏后,只显示时钟、日期、通知等信息,例如,如图1a所示,手机在灭屏后只显示时钟和日期。对于16.7兆色模式,手机在灭屏后,除了可以显示时钟、日期、通知等信息,还可以显示背景壁纸,例如,如图1b所示,手机在灭屏后显示时钟、日期和背景壁纸100。然而,现有技术中,电子设备中只配置有一种模式,比较单一,不能灵活的满足用户的需求,降低了电子设备与用户之间智能交互的能力。
发明内容
本申请提供一种灭屏显示的方法及电子设备,有助于提高电子设备与用户之间智能交互的能力。
第一方面,本申请实施例提供的一种灭屏显示的方法,其中该方法可以在具有触摸屏的电子设备中实现,该电子设备上配置的灭屏显示模式包括第一模式和第二模式,与第一模式对应的灭屏界面和与第二模式对应的灭屏界面不同,且电子设备在灭屏后以第一模式显示时的功耗低于以第二模式显示时的功耗;具体的,该方法包括:电子设备获取设备状态信息,然后,根据设备状态信息,从第一模式和第二模式中自动确定与设备状态信息对应的灭屏显示模式,并在触摸屏灭屏后显示与确定的灭屏显示模式对应的灭屏界面。该设备状态信息为与电子设备当前运行的状态相关的信息。
本申请实施例中由于电子设备能够根据设置状态信息来自动确定灭屏显示模式,这样电子设备就可以根据电子设备当前所处的不同场景来智能化的确定灭屏显示模式,这样就提高了电子设备与用户之间的智能交互能力,同时也提高了用户体验。
在一种可能的设计中,第一模式对应的灭屏界面和第二模式对应的灭屏界面分别包括多种不同的显示效果;电子设备确定与确定的灭屏显示模式对应的灭屏界面的显示效果为目标显示效果之后,根据目标显示效果,显示与确定的灭屏显示模式对应的灭屏界面其中,目标显示效果为与确定的灭屏显示模式对应的灭屏界面包括的多个不同的显示效果中用户选中的显示效果。
通过上述技术方案,有助于提高灭屏界面的多样性。
在一种可能的设计中,第一模式对应的灭屏界面不包括背景壁纸,包括时钟、日期、剩余电量、未接电话、未读短信信息中的至少一个。通过上述技术方案,有助于降低电子设备以第一模式显示时的功耗。
在一种可能的设计中,第二模式对应的灭屏界面包括时钟、日期、剩余电量、未接电话、 未读短信信息、背景壁纸和应用图标中的至少一个。通过上述技术方案,有助于提高灭屏显示界面给用户带来酷炫的效果。
在一种可能的设计中,电子设备根据当前剩余电量、和预设的剩余电量与应用图标个数的对应关系,确定第二模式对应的灭屏界面上应用图标的个数;或者,电子设备根据当前剩余电量和预设的剩余电量与应用图标的对应关系,确定第二模式对应的灭屏界面上的应用图标。通过上述技术方案,有助于提高电子设备和用户的智能交互,提高用户的体验。
在一种可能的设计中,设备状态信息包括电池剩余电量信息;电子设备根据电池剩余电量信息,若确定电池剩余电量小于或等于第一阈值,则确定与设备状态信息对应的灭屏显示模式为第一模式;若确定电池剩余电量大于第一阈值,则确定与设备状态信息对应的灭屏显示模式为第二模式。通过上述技术方案,有助于提高电子设备的待机时长。
在一种可能的设计中,设备状态信息包括亮灭屏频率信息;电子设备根据亮灭屏频率信息,若确定亮灭屏频率小于或等于第二阈值,则确定与设备状态信息对应的灭屏显示模式为第一模式;若确定亮灭屏频率大于第二阈值,则确定与设备状态信息对应的灭屏显示模式为第二模式。通过上述技术方案,有助于提高智能确定灭屏显示模式的可靠性。
在一种可能的设计中,设备状态信息包括就寝闹钟和起床闹钟;电子设备在当期时刻达到就寝闹钟设定的时刻时,确定与设备状态信息对应的灭屏显示模式为第一模式;在当前时刻达到起床闹钟设定的时刻时,确定与设备状态信息对应的灭屏显示模式为第二模式。通过上述技术方案,有助于提高智能确定灭屏显示模式的可靠性。
在一种可能的设计中,电子设备接收到针对触摸屏的灭屏操作之后,获取设备状态信息。例如,电子设备在接收到针对触摸屏的灭屏操作之后,并在触摸屏灭屏之前,获取设备状态信息。通过这种技术方案,有助于提高获取设备状态信息的实时性。再例如,电子设备在触摸屏灭屏之后,获取设备状态信息。通过这种技术方案,有助于提高相应灭屏操作的速度。
在一种可能的设计中,设备状态信息还包括配置信息、充电状态、地理位置、行走步数、用户的心率中的至少一个。通过上述技术方案,有助于提高智能确定灭屏显示模式的可靠性。
在一种可能的设计中,配置信息包括指示灭屏显示功能和智能显示是否开启的配置信息;其中,配置信息是电子设备从灭屏显示的设置界面上获取的,灭屏显示的设置界面包括灭屏显示选项、第一模式选项、第二模式选项、智能模式选项、第一虚拟按钮、第二虚拟按钮、第三虚拟按钮和第四虚拟按钮,其中第一虚拟按钮用于开启或关闭灭屏显示功能,第二虚拟按钮用于开启或关闭第一模式,第三虚拟按钮用于开启或关闭第二模式,第四虚拟按钮用于开启或关闭智能模式;第二模式对应的灭屏界面是由16.7兆色组成的,第一模式对应的灭屏界面是由8色组成的。通过上述技术方案,有助于提高用户对智能确定灭屏显示模式的控制。示例的,第一模式又可称之为简易模式,第二模式又可称之为多彩模式。
在一种可能的设计中,设备状态信息是电子设备周期性获取的。通过上述技术方案,有助于简化实现方式。
在一种可能的设计中,触摸屏为OLED屏。通过上述技术方案,有助于在开启灭屏显示功能后,降低电子设备的功耗。
第二方面,本申请实施例提供的另一种灭屏显示的方法,该方法在具有触摸屏的电子设备中实现,电子设备上配置的灭屏显示模式为第一模式和第二模式;第一模式对应的灭屏界面是由8色组成的,第二模式对应的灭屏界面是由16.7兆色组成的;该方法包括:电子设备 接收到灭屏操作;若确定配置信息指示灭屏显示功能和智能显示均开启、且电子设备正在充电,则自动确定灭屏显示模式为第二模式;并根据电子设备正在充电,确定与第二模式对应的灭屏界面为第一灭屏界面,第一灭屏界面是由时钟、日期、未接来电、未接短信信息、剩余电量、背景壁纸和N个应用图标组成的,N个应用图标为用户使用频率排在前N位的应用的图标,N为大于等于1的正整数;第一灭屏界面的显示效果为用户从与第二模式对应的灭屏界面所包括的多个不同的显示效果中用户选中的显示效果;然后,在触摸屏上显示第一灭屏界面;
电子设备在检测到充电完成,并断开充电后,若定位到第一地理位置,则自动确定灭屏显示模式为第二模式;根据充电完成、且断开充电,确定与第二模式对应的灭屏界面为第二灭屏界面,第二灭屏界面是由时钟、日期、未接来电、未接短信信息、背景壁纸和M个应用图标组成的,M个应用图标为用户使用频率排在前M位的应用的图标,M为小于N、且大于等于1的正整数;第二灭屏界面的显示效果为用户从与第二模式对应的灭屏界面所包括的多个不同的显示效果中用户选中的显示效果;将第一灭屏界面切换到第二灭屏界面,在触摸屏上进行显示;
电子设备在定位从第一地理位置切换到第二地理位置后,若确定剩余电量大于第一阈值、且亮灭屏频率小于第二阈值,则自动确定灭屏显示模式为第一模式;根据剩余电量大于第一阈值,确定与第一模式对应的灭屏界面为第三灭屏界面,第三灭屏界面是由时钟、日期、未接来电、未接短信息和剩余电量组成的;第三灭屏界面的显示效果为用户从与第一模式对应的灭屏界面所包括的多个不同的显示效果中选中的显示效果;将第二灭屏界面切换为第三灭屏界面,在触摸屏上进行显示;
电子设备在定位从第一地理位置切换到第二地理位置后,若确定剩余电量大于第一阈值、且亮灭屏频率大于或等于第二阈值,则自动确定灭屏显示模式为第二模式;根据剩余电量大于第一阈值,确定与第二模式对应的灭屏界面为第四灭屏界面,第四灭屏界面是由时钟、日期、未接来电、未接短信息、剩余电量背景壁纸和K个应用图标组成的;K个应用图标为用户使用频率排在前K位的应用的图标,K为小于M、且大于等于1的正整数;第四灭屏界面的显示效果为用户从与第二模式对应的灭屏界面所包括的多个不同的显示效果中用户选中的显示效果;并将第二灭屏界面切换为第四灭屏界面,在触摸屏上进行显示;
电子设备若确定剩余电量小于或等于第一阈值时,则自动确定灭屏显示模式为第一模式;根据剩余电量小于或等于第一阈值,确定与第一模式对应的灭屏界面为第五灭屏界面,第五灭屏界面是由时钟和日期组成的;第五灭屏界面的显示效果为用户从与第一模式对应的灭屏界面所包括的多个不同的显示效果中选中的显示效果;并在触摸屏上显示第五灭屏界面。
本申请实施例中由于电子设备能够自动确定灭屏显示模式,这样电子设备就可以根据电子设备当前所处的不同场景来智能化的确定灭屏显示模式,这样就提高了电子设备与用户之间的智能交互能力,同时也提高了用户体验。
第三方面,本申请实施例提供的一种电子设备,包括获取模块、处理模块、显示模块和存储模块;其中,存储模块上存储有灭屏显示模式,灭屏显示模式包括第一模式和第二模式,与第一模式对应的灭屏界面和与第二模式对应的灭屏界面不同,且电子设备在灭屏后以第一模式显示时的功耗低于以第二模式显示时的功耗;获取模块用于获取设备状态信息,设备状态信息为与电子设备当前运行的状态相关的信息;处理模块用于根据设备状态信息,从第一 模式和第二模式中自动确定与设备状态信息对应的灭屏显示模式;显示模块用于在灭屏后显示与确定的灭屏显示模式对应的灭屏界面。
在一种可能的设计中,第一模式对应的灭屏界面和第二模式对应的灭屏界面分别包括多种不同的显示效果;
处理模块还用于确定与确定的灭屏显示模式对应的灭屏界面的显示效果为目标显示效果;目标显示效果为与确定的灭屏显示模式对应的灭屏界面包括的多个不同的显示效果中用户选中的显示效果。
在一种可能的设计中,第一模式对应的灭屏界面不包括背景壁纸,包括时钟、日期、剩余电量、未接电话、未读短信信息中的至少一个。
在一种可能的设计中,第二模式对应的灭屏界面包括时钟、日期、剩余电量、未接电话、未读短信信息、背景壁纸和应用图标中的至少一个。
在一种可能的设计中,处理模块还用于根据当前剩余电量、和预设的剩余电量与应用图标个数的对应关系,确定第二模式对应的灭屏界面上应用图标的个数;或者,根据当前剩余电量和预设的剩余电量与应用图标的对应关系,确定第二模式对应的灭屏界面上的应用图标。
在一种可能的设计中,设备状态信息包括电池剩余电量信息;
处理模块用于根据电池剩余电量信息,若确定电池剩余电量小于或等于第一阈值,则确定与设备状态信息对应的灭屏显示模式为第一模式;若确定电池剩余电量大于第一阈值,则确定与设备状态信息对应的灭屏显示模式为第二模式。
在一种可能的设计中,设备状态信息包括亮灭屏频率信息;
处理模块用于根据亮灭屏频率信息,若确定亮灭屏频率小于或等于第二阈值,则确定与设备状态信息对应的灭屏显示模式为第一模式;若确定亮灭屏频率大于第二阈值,则确定与设备状态信息对应的灭屏显示模式为第二模式。
在一种可能的设计中,设备状态信息包括就寝闹钟和起床闹钟;
处理模块用于在当期时刻达到就寝闹钟设定的时刻时,确定与设备状态信息对应的灭屏显示模式为第一模式;在当前时刻达到起床闹钟设定的时刻时,确定与设备状态信息对应的灭屏显示模式为第二模式。
在一种可能的设计中,获取模块具体用于在接收到针对触摸屏的灭屏操作之后,获取设备状态信息;例如,获取模块具体用于在接收到针对触摸屏的灭屏操作之后,并在显示模块灭屏之前,获取设备状态信息;或者,获取模块具体用于在显示模块灭屏之后,获取设备状态信息。
在一种可能的设计中,显示模块还用于在显示与确定的灭屏显示模式对应的灭屏界面之后,并响应于获取模块接收到的亮屏操作,在触摸屏上显示锁屏界面。
在一种可能的设计中,设备状态信息还包括配置信息、充电状态、地理位置、行走步数、用户的心率中的至少一个。
在一种可能的设计中,配置信息包括指示灭屏显示功能和智能显示是否开启的配置信息;其中,配置信息是获取模块从灭屏显示的设置界面上获取的,灭屏显示的设置界面包括灭屏显示选项、第一模式选项、第二模式选项、智能模式选项、第一虚拟按钮、第二虚拟按钮、第三虚拟按钮和第四虚拟按钮,其中第一虚拟按钮用于开启或关闭灭屏显示功能,第二虚拟按钮用于开启或关闭第一模式,第三虚拟按钮用于开启或关闭第二模式,第四虚拟按钮用于 开启或关闭智能模式;第二模式对应的灭屏界面是由16.7兆色组成的,第一模式对应的灭屏界面是由8色组成的。例如,第一模式为简易模式,第二模式为多彩模式。
在一种可能的设计中,设备状态信息是电子设备周期性获取的。
在一种可能的设计中,显示模块为OLED屏。
第四方面,本申请实施例提供的一种电子设备,包括:触摸屏,一个或多个处理器、存储器、多个应用程序、以及一个或多个计算机程序;其中,触摸屏包括触敏表面和显示器;一个或多个计算机程序被存储在存储器中,一个或多个计算机程序包括指令,当指令被电子设备执行时,使得电子设备执行本申请实施例第一方面以及第一方面提供的任一可能设计的方法。
第五方面,本申请实施例的一种计算机存储介质,该计算机存储介质存储有程序,当所述程序在电子设备上运行时,使得电子设备执行第一方面以及第一方面任意一种可能的设计的方法。
第六方面,本申请实施例的一种计算机程序产品,当所述计算机程序产品在电子设备上运行时,使得所述电子设备执行第一方面以及第一方面任意一种可能的设计的方法。
另外,第三方面至第十方面中任一种可能设计方式所带来的技术效果可参见第一方面中不同设计方式所带来的技术效果,此处不再赘述。
附图说明
图1a为一种可能的灭屏界面示意图;
图1b为另一种可能的灭屏界面示意图;
图2a为本申请实施例适用的一种电子设备的结构示意图;
图2b为本申请一种可能的用户界面示意图;
图3为本申请一种可能的系统设置界面的示意图;
图4a为本申请一种可能的灭屏显示的设置界面的示意图;
图4b为本申请另一种可能的灭屏显示的设置界面的示意图;
图4c为本申请又一种可能的灭屏显示的设置界面的示意图;
图4d为本申请一种可能的布局的设置界面的示意图;
图4e为本申请还一种可能的灭屏显示的设置界面的示意图;
图4f为本申请另一种可能的布局的设置界面的示意图;
图4g为本申请还一种可能的灭屏显示的设置界面的示意图;
图4h为本申请还一种可能的灭屏显示的设置界面的示意图;
图4i为本申请还一种可能的灭屏显示的设置界面的示意图;
图4j为本申请还一种可能的灭屏显示的设置界面的示意图;
图4k为本申请一种可能的自定义的设置界面的示意图;
图5为本申请还一种可能的灭屏显示的设置界面的示意图;
图6为本申请一种灭屏显示的方法的流程示意图;
图7a为本申请一种可能的灭屏界面的示意图;
图7b为本申请又一种可能的灭屏界面的示意图;
图8为本申请又一种灭屏显示的方法的流程示意图;
图9为本申请显示驱动芯片的结构示意图;
图10为本申请电子设备的结构示意图;
图11为本申请电子设备的结构示意图。
具体实施方式
本申请公开的各个实施例可以应用于电子设备中。以下介绍电子设备、用于这样的电子设备的图形用户界面(以下可以简称GUI)、和用于使用这样的电子设备的实施例。在本申请一些实施例中,电子设备可以是包含诸如个人数字助理和/或音乐播放器等功能的便携式电子设备,诸如手机、平板电脑、具备无线通讯功能的可穿戴设备(如智能手表)等。便携式电子设备的示例性实施例包括但不限于搭载
Figure PCTCN2019083715-appb-000001
或者其它操作系统的便携式电子设备。上述便携式电子设备也可以是其它便携式电子设备,诸如具有触敏表面(例如触控面板)的膝上型计算机(Laptop)等。还应当理解的是,在本申请其他一些实施例中,上述电子设备也可以不是便携式电子设备,而是具有触敏表面(例如触控面板)的台式计算机。
示例性地,如图2a所示,本申请实施例中的电子设备可以为手机200。下面以手机200为例对实施例进行具体说明。应该理解的是,图示手机200仅是电子设备的一个范例,并且手机200可以具有比图中所示出的更多的或者更少的部件,可以组合两个或更多的部件,或者可以具有不同的部件配置。图中所示出的各种部件可以在包括一个或多个信号处理和/或专用集成电路在内的硬件、软件、或硬件和软件的组合中实现。
如图2a所示,手机200具体可以包括:一个或多个处理器201、射频(radio frequency,RF)电路202、存储器203、触摸屏204、蓝牙装置205、一个或多个传感器206、Wi-Fi装置207、定位装置208、音频电路209、外设接口210以及电源装置211等部件。这些部件可通过一根或多根通信总线或信号线(图2a中未示出)进行通信。本领域技术人员可以理解,图2a中示出的硬件结构并不构成对手机200的限定,手机200可以包括比图示更多或更少的部件,或者组合某些部件,或者不同的部件布置。
下面结合图2a对手机200的各个部件进行具体的介绍:
处理器201是手机200的控制中心,利用各种接口和线路连接手机200的各个部分,通过运行或执行存储在存储器203内的应用程序(application,简称App),以及调用存储在存储器203内的数据和指令,执行手机200的各种功能和处理数据。示例性地,处理器201可以在未开启灭屏显示功能时,若检测到用户锁定屏幕的输入,则响应于用户锁定屏幕的输入,熄灭屏幕。处理器201在开启灭屏显示功能时,若检测到用户锁定屏幕的输入,则响应于用户锁定屏幕的输入,在特定区域显示预设信息,如时钟、日期、通知等,熄灭除了特定区域以外的其他区域的屏幕。需要说明的是,本申请实施例中用户锁定屏幕的输入可以为按压物理键(如电源键)、单击或双击锁定屏幕的图标、或者预设的用于锁定屏幕的手势操作等,对此不作限定。还需要说明的是,灭屏显示也可以称之为熄屏模式、熄屏时钟、或者夜间时钟等,对此不作限定。本申请中的各个实施例中以灭屏显示进行介绍。
在一些实施例中,处理器201可包括一个或多个处理单元。处理器201还可以集成应用处理器和调制解调处理器。其中,应用处理器主要处理操作系统、用户界面和应用程序等,调制解调处理器主要处理无线通信。可以理解的是,上述调制解调处理器也可以不集成到处理器201中。举例来说,处理器201可以是华为技术有限公司制造的麒麟970芯片。在本申请其他 一些实施例中,上述处理器201还可以包括指纹验证芯片,用于对采集到的指纹进行验证。
射频电路202可用于在收发信息或通话过程中,无线信号的接收和发送。具体地,射频电路202可以将基站的下行数据接收后,给处理器201处理。另外,射频电路202还可以将涉及上行的数据发送给基站。通常,射频电路202包括但不限于天线、至少一个放大器、收发信机、耦合器、低噪声放大器、双工器等。此外,射频电路202还可以通过无线通信和其他设备通信。所述无线通信可以使用任一通信标准或协议,包括但不限于全球移动通讯系统、通用分组无线服务、码分多址、宽带码分多址、长期演进、电子邮件、短消息服务等。
存储器203用于存储应用程序以及数据,处理器201通过运行存储在存储器203的应用程序以及数据,执行手机200的各种功能以及数据处理。存储器203主要包括存储程序区以及存储数据区。其中,存储程序区可存储操作系统、至少一个功能所需的应用程序(比如声音播放功能、图像播放功能等);存储数据区可以存储根据使用手机200时所创建的数据(比如音频数据、电话本等)。此外,存储器203可以包括高速随机存取存储器,还可以包括非易失存储器,例如磁盘存储器件、闪存器件或其他非易失性固态存储器件等。存储器203可以存储各种操作系统,例如苹果公司所开发的
Figure PCTCN2019083715-appb-000002
操作系统,谷歌公司所开发的
Figure PCTCN2019083715-appb-000003
操作系统等。示例性地,存储器203中存储了与本申请实施例相关的应用程序和数据等,例如背景壁纸、时钟、日期等。需要说明的是,本申请实施例中的背景壁纸、时钟、日期等还可以存储在云端,手机100从云端获取背景壁纸、日期和时钟等。
触摸屏204可以包括触敏表面204-1和显示器204-2。其中,触敏表面204-1(例如触控面板)可采集手机200的用户在其上或附近的触摸事件(比如用户使用手指、触控笔等任何适合的物体在触敏表面204-1上或在触敏表面204-1附近的操作),并将采集到的触摸信息发送给其他器件例如处理器201。其中,用户在触敏表面204-1附近的触摸事件可以称之为悬浮触控;悬浮触控可以是指,用户无需为了选择、移动或拖动目标(例如App图标等)而直接接触触控板,而只需用户位于电子设备附近以便执行所想要的功能。在悬浮触控的应用场景下,术语“触摸”、“接触”等不会暗示用于直接接触触摸屏204,而是在其附近或接近的接触。能够进行悬浮触控的触敏表面204-1可以采用电容式、红外光感以及超声波等实现。触敏表面204-1可包括触摸检测装置和触摸控制器两个部分。其中,触摸检测装置检测用户的触摸方位,并检测触摸操作带来的信号,将信号传送给触摸控制器;触摸控制器从触摸检测装置上接收触摸信息,并将它转换成触点坐标,再发送给处理器201,触摸控制器还可以接收处理器201发送的指令并加以执行。此外,可以采用电阻式、电容式、红外线以及表面声波等多种类型来实现触敏表面204-1。
显示器(也称为显示屏)204-2可用于显示由用户输入的信息或提供给用户的信息以及手机200的各种菜单。示例的,显示器204-2还可包括显示驱动芯片和显示装置两部分。其中显示驱动芯片用于接收处理器201发送的信号或数据,来驱动在显示装置上显示相应的界面。示例性地,处理器201在检测到剩余电量小于20%的事件,则响应于上述事件,将灭屏显示模式匹配到简易模式。若处理器201检测到用户锁定屏幕的输入,则响应于用户锁定屏幕的输入,根据简易模式,向显示驱动芯片发送待显示的相关信息(如显示待显示信息的样式、亮度、亮灭屏电源时序)。显示驱动芯片接收到处理器发送的待显示的相关信息后,对信息进行处理后,根据处理后的信息驱动显示装置点亮相应的像素点,熄灭相应的像素点,从而以简易模式实现灭屏显示。
示例性的,本申请实施例可以通过有机发光二极管(organic light-emitting diode,OLED)来配置显示装置。例如,采用有源矩阵有机发光二极管(active matrix organic light emitting diode,AMOLED)来配置显示装置。在这种情况下,显示驱动芯片接收到处理器发送的在灭屏后待显示的相关信息,并对待显示的相关信息进行处理,驱动部分OLED灯点亮、剩余部分OLED等熄灭,从而实现灭屏显示的功能。
触敏表面204-1可以覆盖在显示器204-2之上,当触敏表面204-1检测到在其上或附近的触摸事件后,传送给处理器201以确定触摸事件的类型,随后处理器201可以根据触摸事件的类型在显示器204-2上提供相应的视觉输出。虽然在图2a中,触敏表面204-1与显示屏204-2是作为两个独立的部件来实现手机200的输入和输出功能,但是在某些实施例中,可以将触敏表面204-1与显示屏204-2集成而实现手机200的输入和输出功能。可以理解的是,触摸屏204是由多层材料堆叠而成,本申请实施例中只展示出了触敏表面(层)和显示屏(层),其他层在本申请实施例中不予赘述。另外,在本申请其他一些实施例中,触敏表面204-1可以覆盖在显示器204-2之上,并且触敏表面204-1的尺寸大于显示屏204-2的尺寸,使得显示屏204-2全部覆盖在触敏表面204-1下面,或者,上述触敏表面204-1可以以全面板的形式配置在手机200的正面,也即用户在手机200正面的触摸均能被手机感知,这样就可以实现手机正面的全触控体验。在其他一些实施例中,触敏表面204-1以全面板的形式配置在手机200的正面,显示屏204-2也可以以全面板的形式配置在手机200的正面,这样在手机的正面就能够实现无边框的结构。在本申请其他一些实施例中,触摸屏204还可以包括一系列的压力传感器阵列,可以使得手机感测触摸事件所施加给触摸屏204的压力。
手机200还可以包括蓝牙装置205,用于实现手机200与其他短距离的电子设备(例如手机、智能手表等)之间的数据交换。本申请实施例中的蓝牙装置可以是集成电路或者蓝牙芯片等。
手机200还可以包括至少一种传感器206,比如光传感器、运动传感器以及其他传感器。具体地,光传感器可包括环境光传感器及接近传感器,其中,环境光传感器可根据环境光线的明暗来调节触摸屏204的显示器的亮度,接近传感器可在手机200移动到耳边时,关闭显示器的电源。作为运动传感器的一种,加速计传感器可检测各个方向上(一般为三轴)加速度的大小,静止时可检测出重力的大小及方向,可用于识别手机姿态的应用(比如横竖屏切换、相关游戏、磁力计姿态校准)、振动识别相关功能(比如计步器、敲击)等。
在本申请一些实施例中,传感器206还可以包括指纹传感器212。例如,可以在手机200的背面(例如后置摄像头的下方)配置指纹传感器212,或者在手机200的正面(例如触摸屏204的下方)配置指纹传感器212。另外,也可以通过在触摸屏204中配置指纹传感器212来实现指纹识别功能,即指纹传感器212可以与触摸屏204集成在一起来实现手机200的指纹识别功能。在这种情况下,该指纹传感器212可以配置在触摸屏204中,可以是触摸屏204的一部分,也可以以其他方式配置在触摸屏204中。另外,该指纹传感器212还可以被实现为全面板指纹传感器,因此,可以把触摸屏204看成是任何位置都可以进行指纹采集的一个面板。在一些可能实施例中,指纹传感器212可以在采集到指纹后,对指纹进行处理(例如指纹验证等),并将指纹处理结果(如指纹验证是否通过)发送给处理器201,以使得处理器201能够根据指纹处理结果,进行相应的处理。在另一些可能的实施例中,指纹传感器212可以将采集到的指纹发送给处理器201,以便处理器201对该指纹进行处理(例如指纹验证等)。本申请实施例中 的指纹传感器212可以采用任何类型的感测技术,包括但不限于光学式、电容式、压电式或超声波传感技术等。另外,关于本申请实施例中在触摸屏中集成指纹传感器的具体技术方案,可以参见美国专利与商标局公告的申请号为US 2015/0036065 A1,名称为“在电子设备中的指纹传感器”的专利申请,其全部控件通过引用结合在本申请各个实施例中。
至于手机200还可配置的陀螺仪、气压计、湿度计、温度计、红外线传感器等其他传感器,在此不予赘述。
Wi-Fi装置207,用于为手机200提供遵循Wi-Fi相关标准协议的网络接入。手机200可以通过Wi-Fi装置207接入到Wi-Fi接入点,进而帮助用户收发电子邮件、浏览网页和访问流媒体等,它为用户提供了无线的宽带互联网访问。在其他一些实施例中,该Wi-Fi装置207也可以作为Wi-Fi无线接入点,可以为其他电子设备提供Wi-Fi网络接入。
定位装置208,用于为手机200提供地理位置。可以理解的是,该定位装置208具体可以是全球定位系统(global positioning system,GPS)、北斗卫星导航系统等定位系统的接收器。定位装置208在接收到上述定位系统发送的地理位置后,将该信息发送给处理器201处理,或者发送给存储器203保存。在另外的一些实施例中,该定位装置208可以是辅助全球卫星定位系统(assisted global positioning system,AGPS)的接收器,AGPS是一种在移动辅助配合下进行GPS定位的运行方式,它可以利用基站的信号,配合GPS卫星信号,可以让手机200定位的速度更快;在AGPS系统中,该定位装置208可通过与辅助定位服务器(例如手机200的定位服务器)的通信而获得定位辅助。AGPS系统通过作为辅助服务器来协助定位装置208完成测距和定位服务,在这种情况下,辅助定位服务器通过无线通信网络与电子设备例如手机200的定位装置208(即GPS接收器)通信而提供定位协助。在另外的一些实施例中,该定位装置208也可以是基于Wi-Fi接入点的定位技术。由于每一个Wi-Fi接入点都有一个全球唯一的MAC地址,电子设备在开启Wi-Fi的情况下即可扫描并收集周围的Wi-Fi接入点的广播信号,因此可以获取到Wi-Fi接入点广播出来的MAC地址;电子设备将这些能够标示Wi-Fi接入点的数据(例如MAC地址)通过无线通信网络发送给位置服务器,由位置服务器检索出每一个Wi-Fi接入点的地理位置,并结合Wi-Fi广播信号的强弱程度,计算出该电子设备的地理位置并发送到该电子设备的定位装置208中。
音频电路209、扬声器213、麦克风214可提供用户与手机200之间的音频接口。音频电路209可将接收到的音频数据转换后的电信号,传输到扬声器213,由扬声器213转换为声音信号输出;另一方面,麦克风214将收集的声音信号转换为电信号,由音频电路209接收后转换为音频数据,再将音频数据输出至射频电路202以发送给比如一个手机,或者将音频数据输出至存储器203以便进一步处理。
外设接口210,用于为外部的输入/输出设备(例如键盘、鼠标、外接显示器、外部存储器、用户识别模块卡等)提供各种接口。例如通过通用串行总线接口与鼠标连接,通过用户识别模块卡卡槽上的金属触点与电信运营商提供的用户识别模块(subscriber identity module,SIM)卡连接。外设接口210可以被用来将上述外部的输入/输出外围设备耦接到处理器201和存储器203。
手机200还可以包括给各个部件供电的电源装置211(比如电池和电源管理芯片),电池可以通过电源管理芯片与处理器201逻辑相连,从而通过电源装置211实现管理充电、放电、以及功耗管理等功能。
尽管图2a未示出,手机200还可以包括摄像头,例如前置摄像头、后置摄像头,其中,前置摄像头可以用于捕捉人脸特征信息,处理器201可以对该人脸特征信息进行人脸识别,进而进行后续处理。手机200还可以包括闪光灯、微型投影装置、近场通信(near field communication,NFC)装置等,在此不予赘述。
以下实施例均可以在具有上述硬件结构的电子设备(例如手机200、平板电脑等)中实现。
示例性地,图2b为手机200的触摸屏204上显示的一图形用户界面(graphical user interface,GUI),该GUI可以包括状态栏213、可隐藏的导航栏216、时间和天气Widget214,还有多个应用程序的图标例如相机的图标215等。其中,状态栏213中可以包括运营商的名称(中国移动)、移动网络(4G)、时间和剩余电量。导航栏216中可以包括后退(back)键图标、主屏幕键图标和前进键图标。此外,可以理解的是,在其他一些实施例中,状态栏213中还可以包括蓝牙图标、Wi-Fi图标、外接设备图标等。还可以理解的是,在其他一些实施例中,在图2b所示的界面中还可以包括Dock栏,Dock栏中可以包括常用的App的图标等。当手机检测到用户的手指(或触控笔等)针对某一App图标的触摸事件后,响应于该触摸事件,手机可以打开与该App图标对应的App的用户界面。例如,当手机检测到用户的手指触摸相机的图标216的事件后,则响应于用户的手指触摸相机的图标216的事件,打开相机的用户界面。
在其他一些实施例中,该电子设备还可以包括主屏幕键。该主屏幕键可以是实体按键,也可以是虚拟按键。该主屏幕键用于根据用户的操作,将触摸屏上显示的GUI返回到主屏幕的某一页面,这样可以方便用户随时查看主屏幕并对主屏幕中的控件(例如图标)进行操作。上述操作具体可以是用户按下主屏幕键,也可以是用户在短时间内连续两次按下主屏幕键,还可以是用户长按主屏幕键。在本申请其他一些实施例中,主屏幕键还可以集成指纹传感器212,这样用户可以在按下主屏幕键的时候,电子设备随之进行指纹采集,进而对用户身份进行确认。
下面以图2a所示的手机200为例对本申请中的各个实施例进行详细说明。
为了使得灭屏显示功能能够更加灵活的满足用户的不同需求,本申请实施例在手机200中针对灭屏显示功能配置至少两种模式;在手机开启灭屏显示功能后,手机可以根据用户的设置或系统默认的设置,在以上至少两种模式中进行自动切换。示例的,手机200中的灭屏显示功能可以配置有简易模式(也可以称为低功耗模式)和多彩模式。在本申请一些实施例中,手机200在简易模式下,灭屏后可以只显示时钟和日期,因此,手机200在简易模式下,耗电量较低。在本申请另外一些实施例中,手机200在简易模式下,除了显示时钟和日期以外,还可以显示剩余电量、未接来电和短信提醒等基本应用的通知信息,不显示如微信、支付宝等第三方应用的通知信息。应理解,在简易模式下,为了降低耗电量,灭屏显示界面中可以包括较少的颜色。例如,手机200在简易模式下,灭屏后显示的界面可以由括8种颜色组成。在灭屏后显示界面由8种颜色组成的情况下,简易模式又可称之为8色模式,本申请实施例对简易模式的名称不做限定。手机200在多彩模式下,灭屏后显示除了可以显示时钟、日期、剩余电量、未接来电和短信提醒以外,还可以显示如未读微信消息等第三方应用的通知和背景壁纸,因此,手机200在多彩模式下,耗电量较高。应理解,在多彩模式下,为了能够给用户带来色彩酷炫的视觉效果,在一些示例中,灭屏后的界面可以由较多的颜色组成。例如,手机200在多彩模式下,灭屏后显示的界面可以由16.7兆色组成。在灭屏后显示界面由16.7兆色组成的情况下,多彩模式又可称之为16.7兆色模式,本申请实施例对多彩模式的名称不做限定。
下面以手机200中配置的灭屏显示模式为简易模式和多彩模式为例,对本申请实施例灭屏显示的方法进行详细说明。
示例性地,如图3所示,为手机200的系统设置界面。该系统设置界面包括飞行模式选项301a及虚拟按钮301b、Wi-Fi选项302、蓝牙选项303a及虚拟按钮303b、个人热点选项304、移动网络选项305、勿扰模式选项306、显示与亮度选项307、灭屏显示选项308、声音选项309以及隐私选项310等。虚拟按钮301b用于开启或关闭飞行模式功能,虚拟按钮303b用于开启或关闭蓝牙功能。当手机200检测到用户触摸灭屏显示选项308的操作,则响应于该操作,在触摸屏中显示灭屏显示功能的设置界面。其中,在图3所示的系统设置界面中,虚拟按钮301b为关闭,虚拟按钮303b为关闭。当手机200检测到触摸系统设置界面上的灭屏显示选项308后,显示灭屏显示功能的设置界面。
示例性的,灭屏显示功能关闭时,灭屏显示功能的设置界面可以如图4a所示。该灭屏显示功能的设置界面上可以包括灭屏显示选项401a和虚拟按钮401b。其中,虚拟按钮401b用于开启或关闭灭屏显示功能。此外,示例的,灭屏显示功能关闭时,灭屏显示功能的设置界面还可以如图4b所示。该灭屏显示功能的设置界面上可以包括灭屏显示选项401a及虚拟按钮401b、简易模式选项402a及虚拟按钮402b、多彩模式选项403a及虚拟按钮403b、智能模式404a及虚拟按钮404b。其中,虚拟按钮401b用于开启或关闭灭屏显示功能,虚拟按钮402b用于开启或关闭简易模式,虚拟按钮403a用于开启或关闭多彩模式,虚拟按钮404b用于开启或关闭智能模式。图4b所示的灭屏显示功能的设置界面上,虚拟按钮401b为关闭时,虚拟按钮402b、虚拟按钮403b和虚拟按钮404b置灰,用户无法对虚拟按钮402b、虚拟按钮403b和虚拟按钮404b进行操作。
示例的,灭屏显示功能开启时,灭屏显示功能的设置界面可以如图4c所示。该灭屏显示的设置界面可以包括灭屏显示选项401a以及虚拟按钮401b、简易模式选项402a及虚拟按钮402b、多彩模式选项403a及虚拟按钮403b、智能模式选项404a及虚拟按钮404b和布局选项405。其中,虚拟按钮401b用于开启或关闭灭屏显示功能,虚拟按钮402b用于开启或关闭简易模式,虚拟按钮403a用于开启或关闭多彩模式,虚拟按钮404b用于开启或关闭智能模式。其中,虚拟按钮401b、和虚拟按钮402b均为开启(ON),虚拟按钮403b和虚拟按钮404b均为关闭(OFF)。在图4c所示的灭屏显示功能的设置界面的场景下,当手机200检测到触摸布局选项405后,在触摸屏中可以显示布局的设置界面,例如显示的布局的设置界面如图4d所示。
以如图4d所示布局的设置界面为例。该布局的设置界面中包括要显示的内容选项406、显示通知选项407a以及虚拟按钮407b,多个灭屏界面的显示效果选项。其中虚拟按钮407b用于开启或关闭显示通知功能,灭屏界面的显示效果选项400为用户选择的灭屏界面的显示效果。在图4d所示的布局的设置界面的场景下,当手机200灭屏后,按照用户选择的灭屏界面的显示效果选项400进行显示。例如,用户选择的灭屏界面的显示效果为400,当手机200灭屏后,显示的灭屏界面如图1a所示,包括时钟08:00和日期2018年1月1日,且时钟08:00和日期2018年1月1日的显示效果为显示效果选项400所示意的显示效果。
再例如,灭屏显示功能开启时,灭屏显示功能的设置界面可以如图4e所示。该灭屏显示的设置界面可以包括灭屏显示选项401a以及虚拟按钮401b、简易模式选项402a及虚拟按钮402b、多彩模式选项403a及虚拟按钮403b、智能模式选项404a及虚拟按钮404b和布局选项408。其中,虚拟按钮401b用于开启或关闭灭屏显示功能,虚拟按钮402b用于开启或关闭简易模式, 虚拟按钮403a用于开启或关闭多彩模式,虚拟按钮404b用于开启或关闭智能模式。其中,虚拟按钮401b、和虚拟按钮403b均为开启(ON),虚拟按钮402b和虚拟按钮404b均为关闭(OFF)。在图4e所示的灭屏显示功能的设置界面的场景下,当手机200检测到触摸布局选项408后,在触摸屏中可以显示布局的设置界面,例如显示的布局的设置界面如图4f所示。
以图4f所示的布局的设置界面为例。该布局的设置界面包括要显示的内容选项409、显示通知选项410a及虚拟按钮410b、背景图片选项412和多个灭屏界面的显示效果选项。其中虚拟按钮410b用于开启或关闭显示通知的功能。显示效果选项413为用户选择的灭屏界面的显示效果。在图4f所示的布局的设置界面的场景下,当手机200灭屏后,按照用户选择的显示效果选项413进行显示。例如,用户选择的显示效果为413,则当手机200灭屏后,显示的灭屏界面如图1b所示,包括时钟08:00、日期2018年1月1日和背景图片,且时钟08:00、日期2018年1月1日和背景图片的显示效果为显示效果选项413所示意的显示效果。
对于用户而言,用户可以根据自己的需要,从灭屏显示功能的设备界面上手动开启简易模式、关闭多彩模式,也可以从灭屏显示功能的设置界面上手动开启多彩模式、关闭简易模式。为了进一步提高电子设备与用户之间的智能交互能力,用户可以通过开启智能模式选项,来触发手机200能够根据不同的场景智能确定灭屏显示模式,并在灭屏后显示不同的界面。
在本申请其他一些实施例中,灭屏显示功能的设置界面还可以如图4g所示。该灭屏显示功能的设置界面包括灭屏显示选项401a及虚拟按钮401b、简易模式选项402a及虚拟按钮402b、多彩模式选项403a及虚拟按钮403b、智能模式选项404a及虚拟按钮404b、基于设置的就寝闹钟和起床闹钟的选项414a及虚拟按钮414b、基于亮灭屏频率选项415a及虚拟按钮415b、基于剩余电量选项416a及虚拟按钮416b、自定义选项417。其中,虚拟按钮401b用于开启或关闭灭屏显示功能,虚拟按钮402b用于开启或关闭简易模式,虚拟按钮403a用于开启或关闭多彩模式,虚拟按钮404b用于开启或关闭智能模式,虚拟按钮414b用于开启或关闭基于设置的就寝闹钟和起床闹钟智能确定灭屏显示模式,虚拟按钮415b用于开启或关闭基于亮灭屏频率智能确定灭屏显示模式,虚拟按钮416b用于开启或关闭基于剩余电量智能确定灭屏显示模式。在图4g所示灭屏显示功能的设置界面中,虚拟按钮401b、虚拟按钮404b和虚拟按钮416b均为开启(ON),虚拟按钮402b、虚拟按钮403b、虚拟按钮414b和虚拟按钮415b均为关闭(OFF)。在图4g所示的灭屏显示功能的设置界面的场景下,手机200根据当前剩余电量,智能的从简易模式和多彩模式中确定灭屏显示模式。
例如,手机200检测到剩余电量高于10%且低于30%时,则响应于事件剩余电量高于20%且低于50%,确定灭屏显示模式为简易模式。若手机200亮屏时检测到剩余电量高于10%且低于30%,则在手机200灭屏后,按照用户在简易模式下选择的显示效果进行显示。例如,用户在简易模式下选择的显示效果为图4d所示的显示效果400,则在手机200灭屏后,显示的灭屏界面如图1a所示。若手机200在灭屏时,检测到剩余电量高于10%且低于30%,则按照用户在简易模式下选择的显示效果进行显示。
再例如,手机200检测到剩余电量低于10%时,则响应于事件剩余电量低于10%,关闭灭屏显示。
又例如,手机200检测到剩余电量高于30%时,则响应于事件剩余电量高于30%,确定灭屏显示模式为多彩模式。若手机200亮屏时检测到剩余电量高于30%,则在手机200灭屏后,按照用户在多彩模式下选择的显示效果进行显示。例如,用户在多彩模式下选择的灭屏显示 效果为图4d所示的灭屏显示效果413,则在手机200灭屏后,显示的灭屏界面如图1b所示。若手机200在灭屏时,检测到剩余电量高于30%,则按照用户在多彩模式下选择的显示效果进行显示。
此外,本申请实施例可以在手机200可以通过事件触发检测剩余电量,也可以周期性检测剩余电量。例如手机200在检测到从亮屏切换到灭屏的事件时触发检测剩余电量,或者手机200在检测到从灭屏切换到亮屏的事件时触发检测剩余电量,再或者,手机200在检测到有视频电话接入时触发检测剩余电量等,本申请实施例对触发检测剩余电量的事件不做限定。
应理解,手机200可以通过处理器201检测剩余电量,也可以通过特定的芯片(如人工智能(artificial intelligence,AI)芯片等)来检测剩余电量,对此本申请实施例不做限定。
还应理解,在本申请实施例中,手机200可以在检测到用户的锁屏输入从亮屏切换到灭屏。例如用户的锁屏输入可以为用户按压电源键的操作、用户单击或双击显示面板上显示的“锁定屏幕”的图标、用户锁定屏幕的手势(如三指上滑)等,对此不作限定。此外,手机200还可以在设定时长内未检测到输入操作时,从亮屏切换到灭屏。设定时长可以为用户根据需要设定的时长,如10秒、20秒、30秒或2分钟等。
还应理解的是,上述仅为举例说明,并不构成对本申请实施例的限定。本申请实施例中手机200在剩余电量具体在什么范围内确定灭屏显示模式为简易模式,或者,手机200在剩余电量具体在什么范围内确定灭屏显示模式为多彩模式,还是关闭灭屏显示,可以根据用户的需求进行对剩余电量的范围相应的调整,在此不做限定。
在本申请其他一些实施例中,灭屏显示功能的设置界面还可以如图4h所示。该灭屏显示功能的设备界面包括灭屏显示选项401a及虚拟按钮401b、简易模式选项402a及虚拟按钮402b、多彩模式选项403a及虚拟按钮403b、智能模式选项404a及虚拟按钮404b、基于设置的就寝闹钟和起床闹钟的选项414a及虚拟按钮414b、基于亮灭屏频率选项415a及虚拟按钮415b、基于剩余电量选项416a及虚拟按钮416b、自定义选项417。其中,虚拟按钮401b用于开启或关闭灭屏显示功能,虚拟按钮402b用于开启或关闭简易模式,虚拟按钮403a用于开启或关闭多彩模式,虚拟按钮404b用于开启或关闭智能模式,虚拟按钮414b用于开启或关闭基于设置的就寝闹钟和起床闹钟智能确定灭屏显示模式,虚拟按钮415b用于开启或关闭基于亮灭屏频率智能确定灭屏显示模式,虚拟按钮416b用于开启或关闭基于剩余电量智能确定灭屏显示模式。在图4h所示灭屏显示功能的设置界面中,虚拟按钮401b、虚拟按钮404b和虚拟按钮414b均为开启(ON),虚拟按钮402b、虚拟按钮403b、虚拟按钮415b和虚拟按钮416b均为关闭(OFF)。在图4h所示的灭屏显示功能的设置界面的场景下,手机200根据设置的就寝闹钟和起床闹钟,智能的从简易模式和多彩模式中确定灭屏显示模式。
例如,用户在手机200上设置的就寝闹钟为23:00,起床闹钟为6:00。当手机200检测到当前时刻到达23:00时,则响应于事件当前时刻到达23:00,确定灭屏显示模式为简易模式。若手机200亮屏时检测到当前时刻到达23:00,则在手机200灭屏后,按照用户在简易模式下选择的显示效果进行显示。例如,用户在简易模式下选择的显示效果为图4d所示的显示效果400,则在手机200灭屏后,显示的灭屏界面如图1a所示。若手机200在灭屏时,检测到当前时刻到达23:00,则按照用户在简易模式下选择的显示效果进行显示。
再例如,手机200检测到当前时刻到达6:00时,则响应于事件当前时刻到达6:00,确定灭屏显示模式为多彩模式。若手机200亮屏时检测到当前时刻到达6:00,则在手机200灭屏后, 按照用户在多彩模式下选择的显示效果进行显示。例如,用户在多彩模式下选择的显示效果为图4f所示的显示效果413,则在手机200灭屏后,显示的灭屏界面如图1b所示。若手机200在灭屏时,检测到当前时刻到达6:00,则按照用户在多彩模式下选择的显示效果进行显示。
应理解,手机200可以通过处理器201检测当前时刻是否到达就寝闹钟或者起床闹钟,也可以通过特定的芯片(如AI芯片等)来检测当前时刻是否到达就寝闹钟或者起床闹钟,对此本申请实施例不做限定。
应理解,在本申请实施例中,手机200从亮屏切换到灭屏的方式可以参见上述示例中的实现方式,在此不再赘述。
还应理解的是,上述仅为举例说明,并不构成对本申请实施例的限定。本申请实施例还可以应用于用户在手机200上设置多个就寝闹钟和起床闹钟的场景。此外,当手机200检测当前时刻到达就寝闹钟的时刻时,还可以响应于当前时刻到达就寝闹钟的时刻,关闭灭屏显示。另外,还需要说明的是,在灭屏显示功能的设置界面如图4h所示的情况下,手机200无论智能确定灭屏显示模式为简易模式还是多彩模式,当手机200检测到剩余电量低于某一阈值(如10%,阈值的具体大小用户可以根据实际需要进行相应的设定),则关闭灭屏显示。
若手机200是在灭屏显示功能的设置界面如图4h所示的界面时,检测到剩余电量低于某一阈值,关闭了灭屏显示。在上述情况下,在一些实施例中,当手机200检测到剩余电量高于该某一阈值时,重新开启灭屏显示,其重新开启灭屏显示功能后灭屏显示功能的设置界面还为图4h所示的界面,也可以为初始设定的灭屏显示功能的设置界面,对此不做限定。
在本申请另外一些实施例中,灭屏显示功能的设置界面还可以如图4i所示。该灭屏显示功能的设备界面包括灭屏显示选项401a及虚拟按钮401b、简易模式选项402a及虚拟按钮402b、多彩模式选项403a及虚拟按钮403b、智能模式选项404a及虚拟按钮404b、基于设置的就寝闹钟和起床闹钟的选项414a及虚拟按钮414b、基于亮灭屏频率选项415a及虚拟按钮415b、基于剩余电量选项416a及虚拟按钮416b、自定义选项417。其中,虚拟按钮401b用于开启或关闭灭屏显示功能,虚拟按钮402b用于开启或关闭简易模式,虚拟按钮403a用于开启或关闭多彩模式,虚拟按钮404b用于开启或关闭智能模式,虚拟按钮414b用于开启或关闭基于设置的就寝闹钟和起床闹钟智能确定灭屏显示模式,虚拟按钮415b用于开启或关闭基于亮灭屏频率智能确定灭屏显示模式,虚拟按钮416b用于开启或关闭基于剩余电量智能确定灭屏显示模式。在图4i所示灭屏显示功能的设置界面中,虚拟按钮401b、虚拟按钮404b和虚拟按钮415b均为开启(ON),虚拟按钮402b、虚拟按钮403b、虚拟按钮414b和虚拟按钮416b均为关闭(OFF)。在图4i所示的灭屏显示功能的设置界面的场景下,手机200根据亮灭屏频率,智能的从简易模式和多彩模式中确定当前的灭屏显示模式。
例如,手机200可以周期性检测亮灭屏频率,也可以事件触发性检测亮灭屏频率。其中,事件触发检测亮灭屏频率可以为手机200在检测到当前时刻到达起床闹钟时,则从起床闹钟的时刻开始,检测第一时长内的亮灭屏频率,当第一时长内的亮灭屏频率在第一范围内,则响应于第一时长内的亮灭屏频率在第一范围内的事件,确定灭屏显示模式为简易模式。若当第一时长内的亮灭屏频率在第二范围内,则响应于第一时长内的亮灭屏频率在第二范围内的事件,确定灭屏显示模式为多彩模式。此外,事件触发检测亮灭屏频率还可以为手机200在检测到当前时刻到达就寝闹钟,则从就寝闹钟的时刻开始,检测第二时长内的亮灭屏频率,当第二时长内的亮灭屏频率在第三范围内,则响应于第二时长内的亮灭屏频率在第三范围内的事 件,确定灭屏显示模式为简易模式。若当第二时长内的亮灭屏频率在第四范围内,则响应于第二时长内的亮灭屏频率在第四范围内的事件,确定灭屏显示模式为多彩模式。此外,需要说明的是,本申请实施例中触发检测亮灭屏频率的事件还可以为其他事件,如开机事件等,上述仅为举例说明,本申请实施例对此不做限定。
其中,对于不同的事件触发检测亮灭屏频率时,手机200统计亮灭屏频率的时间范围可以相同,也可以不同。对于不同的事件触发检测亮灭屏频率时,在具体实现时,手机200在亮灭屏频率具体在什么范围内,确定灭屏显示模式为简易模式,或者,手机200在亮灭屏频率具体又在什么范围内,确定灭屏显示模式为多彩模式,可以根据用户的需要进行相应的设定,在此不做限定。
以周期性检测亮灭屏频率为例。若手机200亮屏时,检测到亮灭屏频率在第一范围内时,则在手机200灭屏后,按照用户在简易模式下选择的显示效果进行显示。若手机200在灭屏时,检测到亮灭屏频率在第一范围内,则按照用户在简易模式下选择的显示效果进行显示。例如,用户在简易模式下选择的显示效果为图4d所示的显示效果400,则在手机200灭屏后,显示的灭屏界面如图1a所示。例如,亮灭屏频率在第一范围可以为亮灭屏频率低于某一设定的阈值,也可以是亮灭屏频率在手机200预先设置的一个阈值范围集合,例如{K|0≤K≤10}等,应理解,阈值范围集合可以包括多个连续的正整数,也可以包括多个不连续的正整数,对此不做限定。阈值、阈值范围集合在具体实现时,可以根据用户的需求进行相应的设定,在此不做限定。
再例如,若手机200亮屏时检测到亮灭屏频率在第二范围内,则在手机200灭屏后,按照用户在多彩模式下选择的显示效果进行显示。若手机200在灭屏时,检测到亮灭屏频率在第二范围内,则按照用户在多彩模式下选择的显示效果进行显示。例如,用户在多彩模式下选择的显示效果为图4f所示的显示效果413,则在手机200灭屏后,显示的灭屏界面如图1b所示。第二范围的具体实现方式与第一范围的具体实现方式类似,在此不再赘述。
应理解,手机200可以通过处理器201检测亮灭屏频率,也可以通过特定的芯片(如AI芯片等)来检测亮灭屏频率,对此本申请实施例不做限定。
应理解,在本申请实施例中,手机200从亮屏切换到灭屏的方式可以参见上述示例中的实现方式,在此不再赘述。
还应理解的是,上述仅为举例说明,并不构成对本申请实施例的限定。此外,若在手机200开启灭屏显示功能的情况下,当手机200检测到亮灭屏频率为0时,还可以响应于亮灭屏频率为0,关闭灭屏显示。另外,还需要说明的是,在灭屏显示功能的设置界面如图4i所示的情况下,手机200无论在当前灭屏显示模式为简易模式还是当前灭屏显示模式为多彩模式,当手机200检测到亮灭屏频率为0时,则关闭灭屏显示。
若手机200是在灭屏显示功能的设置界面如图4i所示的界面时,检测到亮灭屏频率为0,关闭了灭屏显示。在这种情况下,在一些实施例中,当手机200检测到亮灭屏频率不为0时,重新开启灭屏显示,其重新开启灭屏显示后灭屏显示功能的设置界面还为图4i所示的界面,也可以为初始设定的灭屏显示功能的设置界面,对此不做限定。
除此之外,灭屏显示功能的设置界面还可以如图4j所示。该灭屏显示功能的设备界面包括灭屏显示选项401a及虚拟按钮401b、简易模式选项402a及虚拟按钮402b、多彩模式选项403a及虚拟按钮403b、智能模式选项404a及虚拟按钮404b、基于设置的就寝闹钟和起床闹钟的选项414a及虚拟按钮414b、基于亮灭屏频率选项415a及虚拟按钮415b、基于剩余电量选项416a 及虚拟按钮416b、自定义选项417。其中,虚拟按钮401b用于开启或关闭灭屏显示功能,虚拟按钮402b用于开启或关闭简易模式,虚拟按钮403a用于开启或关闭多彩模式,虚拟按钮404b用于开启或关闭智能模式,虚拟按钮414b用于开启或关闭基于设置的就寝闹钟和起床闹钟智能确定灭屏显示的模式,虚拟按钮415b用于开启或关闭基于亮灭屏频率智能确定灭屏显示的模式,虚拟按钮416b用于开启或关闭基于剩余电量智能确定灭屏显示的模式。虚拟按钮401b、和虚拟按钮404b均为开启(ON),虚拟按钮402b、虚拟按钮403b、虚拟按钮414b、虚拟按钮415b和虚拟按钮416b均为关闭(OFF)。在图4j所示灭屏显示功能的设置界面的场景下,示例性的,手机200可以根据自定义设置,智能的从简易模式和多彩模式中确定灭屏显示模式。
例如,自定义设置如图4k所示,手机200在当前时间在简易模式显示的时间段选项418对应的时间段内,例如手机200在当前时间为7:00时,由于7:00在5:00~8:00的范围内,则智能确定灭屏显示模式为简易模式。再例如,手机200在当前时间为23:00时,由于23:00在22:00~24:00的范围内,则智能确定灭屏显示模式为简易模式。类似的,手机200在当前时间在多彩模式显示的时间段选项419对应的时间段内时,则智能确定灭屏显示模式为多彩模式;手机200在当前时间在灭屏显示关闭的时间段选项420对应的时间段内时,则关闭灭屏显示模式。
还应理解的是,上述仅为举例说明,并不构成对本申请实施例的限定。其中,自定义还可以为其他方式,对此不做限定,如在手机开启耗电量较大的应用(如腾讯视频、个人热点等)时,手机200匹配到简易模式或者关闭灭屏显示功能。
另外,还需要说明的是,在灭屏显示功能的设置界面如图4j所示、且自定义的控制界面如图4k所示的情况下,示例性的,在5:00~22:00之间,当手机200检测到剩余电量低于某一阈值(如10%,具体实现时,用户可以根据自己需要进行相应的设定)时,则关闭灭屏显示。
此外,在一些实施例中,在灭屏显示功能和智能模式同时开启时,灭屏显示功能的设置界面还可以如图5所示。图5所示的灭屏显示功能的设置界面包括灭屏显示选项401a及虚拟按钮401b、简易模式选项402a及虚拟按钮402b、多彩模式选项403a及虚拟按钮403b、智能模式选项404a及虚拟按钮404b。其中,虚拟按钮401b用于开启或关闭灭屏显示功能,虚拟按钮402b用于开启或关闭简易模式,虚拟按钮403a用于开启或关闭多彩模式,虚拟按钮404b用于开启或关闭智能模式,虚拟按钮402b和403b均为关闭、虚拟按钮401b和404b均为开启。
在灭屏显示功能的设置界面如图5所示时,手机200智能确定灭屏显示模式。具体的,手机200如何智能确定灭屏显示模式与配置在手机200中的算法相关。例如,若在手机200中配置的是基于就寝闹钟和起床闹钟智能确定灭屏显示模式,则当虚拟按钮401b和404b为开启时,手机200基于就寝闹钟和起床闹钟智能确定灭屏显示的模式。此外,手机200中配置的还可以是基于亮灭屏频率智能确定灭屏显示模式的算法、或者基于剩余电量智能确定灭屏显示模式的算法等,对此不做限定。其中,手机200具体如何智能确定灭屏显示模式可以参见上述示例的说明,在此不再赘述。
此外,本申请中还可以仅在系统设置界面中设置一个灭屏显示选项和用于开启或关闭灭屏显示功能的虚拟按钮。在这种场景下,当手机200在检测到该虚拟按钮开启时,智能确定灭屏显示模式。具体手机200如何智能确定灭屏显示模式与配置在手机200中的算法相关。例如,若在手机200中配置的是基于亮灭屏频率智能确定灭屏显示模式的算法,则当该虚拟按钮为开启时,手机200基于亮灭屏频率智能确定灭屏显示模式。此外,手机200中配置的还可以是基于就寝闹钟和起床闹钟智能确定灭屏显示模式的算法、或者基于剩余电量智能确定灭屏显示 模式的算法等,对此不做限定。其中,手机200具体如何智能确定灭屏显示模式可以参见上述示例的说明,在此不再赘述。
上述涉及的各个实施例中,手机200开启灭屏显示功能时,在手机200灭屏后,除了可以显示时钟和日期以外,还可以显示耗电量提示、来电通知、信息通知、快捷打开预设应用的图标、或者根据预设规则向用户推送的信息等,对此不做限定。在具体实现时,示例性的,用户可以通过触摸布局的设置界面上的要显示的内容选项和显示通知选项进行相应的设定。
结合上述实施例及附图,本申请实施例提供一种灭屏显示的方法,该方法可以在具有图2a所示的硬件结构的电子设备中实现。例如,电子设备中的触摸屏可以为OLED屏。
以电子设备上配置的灭屏显示模式包括第一模式和第二模式为例。其中,电子设备在灭屏后以第一模式显示时的功耗低于以第二模式显示时的功耗,且与第一模式对应的灭屏界面和与第二模式对应的灭屏界面不同。示例的,第一模式对应的灭屏界面不包括背景壁纸,包括时钟、日期、剩余电量、未接电话和未读短信信息中的至少一个。例如,与第一模式对应的灭屏界面如图7a所示,包括时钟、日期、未接电话和剩余电量。示例的,第二模式对应的灭屏界面包括时钟、日期、剩余电量、未接电话、未读短信信息、背景壁纸和应用图标中的至少一个。应用图标可以为电话、短信等基本应用的图标,也可以为微信、支付宝等第三方应用的图标,对此不作限定。例如,第二模式对应的灭屏界面如图7b所示,包括区域701中的背景壁纸、时钟、日期、电话图标、邮件图标、微信图标和剩余电量。在一些实施例中,组成与第一模式对应的灭屏界面的颜色的个数小于组成与第二模式对应的灭屏界面的颜色的个数。示例的,与第一模式对应的灭屏界面是由8色组成的,与第二模式对应的灭屏界面是由16.7兆色组成的。例如,与第一模式对应的灭屏界面是由黑色(0,0,0)、蓝色(0,0,255)、绿色(0,255,0)、青色(0,255,255)、红色(255,0,0)、洋红色(255,0,255)、黄色(255,255,0)和白色(255,255,255)这八种颜色组成的。
具体的,如图6所示,本申请实施例灭屏显示的方法可以包括以下步骤:
步骤600:电子设备接收到针对触摸屏的灭屏操作,该灭屏操作具体可以是用户按下电源键的操作,也可以是用户在触摸屏上点击一个用于灭屏的虚拟按钮的操作,还可以是预定义的用于灭屏的一个手势操作(如四指上滑、三指上滑等),又可以是用户的手指在触摸屏上做的针对一特定的控件进行的重压或者长按操作。
步骤601:电子设备获取设备状态信息,该设备状态信息是与该电子设备当前运行的状态相关的信息。可以把设备状态信息看成是数据的集合,该集合中包括该电子设备收集的各种数据。示例性的,该设备状态信息可以包括该电子设备通过配置的各种传感器采集到的各种外部环境数据;例如电子设备可以通过图2a中的环境光传感器获取环境光线的强度,也可以通过加速计传感器检测出电子设备重力的大小及方向,还可以通过温度传感器检测到当前环境的温度和湿度;电子设备还可以通过计步器来检测用户的行走步数,还可以通过心率传感器检测用户的心率等。再例如,该设备状态信息可以包括该电子设备通过图2a中的定位装置208获取的地理位置信息;再例如,该设备状态信息还可以包括用户在电子设备上设置的闹钟、或者统计的电子设备的亮灭屏频率,又或者,该设备状态信息可以包括电子设备的剩余电量。再例如,该设备状态信息还可以包括该电子设备通过用户在灭屏显示的控制界面中设置,来获取的具体配置信息,如图4a至4k所示。以图4a为例,该设备状态信息包括的配置信息指示灭屏显示功能关闭。以图4c为例,该设备状态信息包括的配置信息指示灭屏显示功能和简易 模式均开启、多彩模式和智能模式均关闭。
步骤602:电子设备基于上述设备状态信息,从第一模式和第二模式中自动确定与上述设备状态信息对应的灭屏显示模式。
在本步骤中,电子设备可以对上述收集到的设备状态信息进行分析,然后根据分析结果,自动确定与上述设备状态信息对应的灭屏显示模式。应理解,电子设备可以通过AI芯片或者处理器对设备状态信息进行分析,得到分析结果。
下面以第一模式为简易模式、第二模式为多彩模式为例进行举例说明。
示例的,电子设备获取的设备状态信息可以包括配置信息、时间、行走步数、地理位置、亮灭屏频率、正在运行的应用等,其中配置信息指示灭屏显示功能开启、且智能模式开启。电子设备对设备状态信息进行分析,示例的,当电子设备中的加速传感器检测到用户行走步数不断累加时,确定用户当前正在行走,当电子设备上的时钟为18:00时,确定当前时间为用户的下班时间,当电子设备定位的地理位置为公司到家的路线过程中的某一位置时,确定用户当前在下班回家的路上。电子设备在检测到亮灭屏频率小于预设阈值(例如5)、且当前未在前台运行应用时,确定用户当前未使用电子设备。在这种情况下,电子设备对设备状态信息的分析结果为用户当前行走在下班回家的路上,未使用电子设备。在这种场景下,为了提高用户在灭屏时查看时间、通知等信息时的体验,电子设备可以确定灭屏显示模式为多彩模式。
再示例的,电子设备获取的设备状态信息可以包括配置信息、闹钟、剩余电量、地理位置和光强。当电子设备确定剩余电量低于10%时,电子设备不再对其它信息进行分析,关闭灭屏显示功能或者确定灭屏显示模式为简易模式。当电子设备确定剩余电量高于10%的情况下,电子设备再对设备状态信息中的其它信息进行分析,在配置信息指示灭屏显示功能和智能模式均开启、当前时刻达到就寝闹钟设定的时刻、地理位置为家、光强为0.2勒克斯(Lx)时,确定分析结果为用户在家休息,则电子设备确定灭屏显示模式为简易模式。
又示例的,电子设备获取的设备状态信息可以包括配置信息、充电状态、时间、地理位置和行走步数。当电子设备确定配置信息指示灭屏显示功能开启、且智能模式开启、处于充电状态、当前时间为10:00、行走步数为0时,确定用户当前正在工作。则电子设备确定灭屏显示模式为多彩模式。
步骤603:电子设备根据上述确定的灭屏显示模式,在触摸屏灭屏后显示与上述灭屏显示模式对应的灭屏界面。
应理解,灭屏界面是电子设备在灭屏后显示在触摸屏上的界面,该界面是其对应的灭屏显示模式在触摸屏上的呈现形式。示例性地,灭屏界面可以如图7a所示,也可以如图7b所示。
在本申请实施例中,电子设备可以在接收到灭屏操作后,获取电子设备当前的设备状态信息,然后电子设备根据该设备状态信息来自动确定灭屏显示模式。这样电子设备就可以根据电子设备当前所处的不同场景来智能化的配置灭屏显示模式,这样就提高了电子设备与用户之间的智能交互能力,同时也提高了用户体验。
例如,电子设备获取的上述设备状态信息包括:电池剩余电量10%,环境光强度是0.2Lx,地理位置信息为用户的家庭住址;在这种情况下,电子设备若在电池电量低于20%时,不再对设备状态信息中包括的环境光强度和地理位置信息进行分析,电子设备可以根据电池剩余电量为10%,来自动确定灭屏显示模式是第一模式,也即在灭屏显示下,只显示少数单色组 成的色彩,以及时钟、日期和基本功能的提示(例如未接电话、未读短信等),以便节省功耗。再例如,电子设备获取的上述设备状态信息包括地理位置信息为用户的公司地址、行走步数为0、电子设备正在充电,则电子设备可以根据上述设备状态信息自动确定灭屏显示模式为第二模式,即在灭屏显示下,显示的灭屏界面是由多种颜色组成的,例如16.7兆色。具体的在多彩模式下,电子设备可以显示时钟、日期和简单的背景壁纸,以及还可以显示各种应用的提示(如未接电话、未读短信、未读微信、支付宝通知等),以便给用户提供酷炫的体验。
在本申请一些实施例中,与第一模式对应灭屏界面和与第二模式对应的灭屏界面分别包括多个不同的显示效果。则电子设备在确定与步骤602中确定的灭屏显示模式对应的灭屏界面的显示效果为目标显示效果。示例的,目标显示效果为与步骤602中确定的灭屏显示模式对应的灭屏界面的多个不同的显示效果种用户选中的显示效果。再示例的,目标显示效果也可以是电子设备根据预设算法确定的。
在本申请一些实施例中,灭屏界面上显示的应用图标的个数与剩余电量相关。示例的,在电子设备中预先设置剩余电量和应用图标个数的对应关系,例如剩余电量大于或等于80%对应应用图标的个数为8,剩余电量小于80%且大于等于40%时,对应应用图标的个数为4个,剩余电量小于40%时对应应用图标的个数为2个。基于上述剩余电量与应用图标个数的对应关系,在一种可能的实现方式中,电子设备在剩余电量大于或等于80%时,灭屏界面上显示的应用图标的个数为8个,示例的灭屏界面上显示的8个应用图标为安装在电子设备上的哪些应用的图标,可以根据用户使用应用的频率来确定,也可以预先定义。例如电子设备按照用户的使用应用频率,确定排在前8的应用分别为微信、电话、支付宝、淘宝、大众点评、腾讯视频、百度地图和京东,则在剩余电量大于或等于80%时,在灭屏界面上显示使用频率排在前8的应用的图标,如微信、电话、支付宝、淘宝、大众点评、腾讯视频、百度地图和京东。再例如,电子设备在剩余电量小于80%且大于等于40%时,灭屏界面上显示的应用图标的个数为4个,则在灭屏界面上显示使用频率排在前4的应用的图标。又例如,电子设备的剩余电量小于40%时,灭屏界面上显示的应用图标的个数可以为2个,则在灭屏界面上显示使用频率排在前2的应用的图标。
在本申请另一些实施例中,灭屏界面上显示的应用图标与剩余电量相关。示例的,在电子设备上预先设置剩余电量与应用图标的对应关系,例如剩余电量大于或等于80%对应应用图标为微信、电话、支付宝、短信和邮箱,剩余电量小于80%且大于等于40%时,对应应用图标为微信、电话和短信,剩余电量小于40%时对应应用图标为微信和电话。基于上述剩余电量与应用图标的对应关系,当电子设备获取的设备状态信息中包括的剩余电量为70%时,则在确定灭屏界面上包括的应用图标为微信、电话和短信。
示例的,本申请实施例中若灭屏界面上包括的应用图标为微信、电话和短信,则在电子设备灭屏的过程中,若微信、电话和短信有通知消息例如有未接电话、或者有新的短信或新的微信,则在灭屏界面上显示微信、电话和短信的通知消息,而不显示其它应用如邮件的通知消息。
在本申请其他一些实施例中,上述步骤601具体可以包括:在触摸屏灭屏后,电子设备获取上述设备状态信息。这样,电子设备可以根据最新获取到的设备状态信息来更加准确地确定其灭屏显示模式,从而进一步提高用户体验。
具体的,电子设备在接收到灭屏操作后,响应于灭屏操作,将触摸屏灭屏,并在触摸屏灭屏后,获取上述设备状态信息,并根据设备状态信息自动确定与上述设备状态信息对应的灭屏显示模式,然后,在触摸屏上显示与上述灭屏显示模式对应的灭屏界面。
通过上述技术方案,有助于使得触摸屏能够及时响应灭屏操作,而且在一定程度上有助于使得获取到的设备状态信息更加接近于实际场景。
在本申请另外一些实施例中,上述步骤601具体可以包括:在接收到灭屏操作后,在触摸屏灭屏之前,电子设备获取上述设备状态信息。
具体的,电子设备在接收到灭屏操作后,响应于灭屏操作,获取设备状态信息,并根据获取到的设备状态信息,自动确定与上述设备状态信息对应的灭屏显示模式,然后将触摸屏灭屏,在触摸屏上显示与灭屏显示模式对应的灭屏界面。上述技术方案有助于降低用户对电子设备获取并处理设备状态信息的过程的感知。
此外,在本申请的另一些实施例中,电子设备还可以在接收到针对触摸屏的灭屏操作之前获取设备状态信息,在接收到针对触摸屏的灭屏操作之后,触发执行步骤603。例如,电子设备获取设备状态信息,并自动确定与上述设备状态信息对应灭屏显示模式,然后在接收到灭屏操作后,响应于灭屏操作,将触摸屏灭屏,并在触摸屏上显示与确定的灭屏显示模式对应的灭屏界面。通过这种技术方案,有助于及时响应灭屏操作。
在本申请其他一些实施例中,上述方法还可以包括以下步骤:
步骤604:电子设备在显示与上述灭屏显示模式对应的灭屏界面时,接收到用户的亮屏操作。示例性的,用户的亮屏操作可以包括用户按压电源键的操作、用户按压主屏幕键的操作或者用于显示锁屏界面的手势操作等。
步骤605:电子设备响应于上述亮屏操作,电子设备显示锁屏界面,并不再显示与上述灭屏显示模式对应的灭屏界面。
在本申请其他一些实施例中,上述设备状态信息可以包括用户在电子设备上设置的灭屏显示模式。示例的,用户在电子设备上设置的灭屏显示模式包括用户在如图4a~4k中的至少一个设置界面上进行的相应的设置。
在本申请一些实施例中,步骤601中电子设备获取的设备状态信息还可以包括电池剩余电量信息。
例如,电子设备可以根据电池剩余电量信息自动确定灭屏显示模式,具体的可参见本申请实施例中手机200根据当前剩余电量智能确定灭屏显示模式模式的介绍,在此不再赘述。
在本申请其他一些实施例中,步骤601中电子设备获取的设备状态信息还可以包括亮灭屏频率信息。
例如,电子设备可以根据亮灭屏频率信息自动确定灭屏显示模式,具体的可参见本申请实施例中手机200根据亮灭屏频率智能确定灭屏显示模式的介绍,在此不再赘述。
在本申请其他一些实施例中,步骤601中电子设备获取的设备状态信息还可以包括用户设置的闹钟。
例如,电子设备可以根据用户设置的闹钟自动确定灭屏显示模式,具体的可参见本申请实施例中手机200根据就寝闹钟和起床闹钟智能确定灭屏显示模式的介绍,在此不再赘述。
在本申请其他一些实施例中,步骤601中电子设备获取的设备状态信息还可以包括地理位置信息、光强信息、行走步数和用户心率等信息中的一个或多个。
在本申请另外一些实施例中,步骤601中电子设备获取的设备状态信息也可以包括配置信息,其中,配置信息是电子设备从灭屏显示的设置界面上获取的,灭屏显示的设置界面包括灭屏显示选项、第一模式选项、第二模式选项、智能模式选项、第一虚拟按钮、第二虚拟按钮、第三虚拟按钮和第四虚拟按钮,第一虚拟按钮用于开启或关闭灭屏显示功能,第二虚拟按钮用于开启或关闭所述第一模式,第三虚拟按钮用于开启或关闭第二模式,第四虚拟按钮用于开启或关闭智能模式。
此外,电子设备还可以周期性获取设备状态信息。
如图8所示,为本申请一实施例提供的一种灭屏显示方法,该方法可以在具有图2所示的电子设备中实现。该方法具体可以包括:
步骤800:电子设备接收到灭屏操作;
步骤801:电子设备若确定配置信息指示灭屏显示功能和智能显示均开启、且电子设备正在充电,则自动确定灭屏显示模式为第二模式;示例的,第二模式对应的灭屏界面是由16.7兆色组成的。
步骤802,电子设备根据电子设备正在充电,确定与第二模式对应的灭屏界面为第一灭屏界面,示例的,第一灭屏界面是由时钟、日期、未接来电、未接短信信息、剩余电量、背景壁纸和N个应用图标组成的,例如,N个应用图标为电子设备上安装的应用中用户使用频率排在前N位的应用的图标,N为大于等于1的正整数;第一灭屏界面的显示效果为用户从与第二模式对应的灭屏界面所包括的多个不同的显示效果中用户选中的显示效果;
步骤803,电子设备在触摸屏上显示第一灭屏界面。
步骤804,电子设备在检测到充电完成,并断开充电后,若定位到第一地理位置,则自动确定灭屏显示模式为第二模式。
步骤805,电子设备根据充电完成、且断开充电,确定与第二模式对应的灭屏界面为第二灭屏界面,示例的,第二灭屏界面是由时钟、日期、未接来电、未接短信信息、背景壁纸和M个应用图标组成的,例如M个应用图标为电子设备上安装的应用中用户使用频率排在前M位的应用的图标,M为小于N、且大于等于1的正整数;第二灭屏界面的显示效果为用户从与第二模式对应的灭屏界面所包括的多个不同的显示效果中用户选中的显示效果。
步骤806,电子设备将第一灭屏界面切换到第二灭屏界面,在触摸屏上进行显示。
步骤807,电子设备在定位从第一地理位置切换到第二地理位置后,若确定剩余电量大于第一阈值、且亮灭屏频率小于第二阈值,则自动确定灭屏显示模式为第一模式;示例的,第一模式对应的灭屏界面是由8色组成的。
步骤808,电子设备根据,剩余电量大于第一阈值,确定与第一模式对应的灭屏界面为第三灭屏界面,示例的,第三灭屏界面是由时钟、日期、未接来电、未接短信息和剩余电量组成的;例如,第三灭屏界面的显示效果为用户从与第一模式对应的灭屏界面所包括的多个不同的显示效果中选中的显示效果。
步骤809,电子设备将第二灭屏界面切换为第三灭屏界面,在触摸屏上进行显示。
步骤810,电子设备在定位从第一地理位置切换到第二地理位置后,若确定剩余电量大于所述第一阈值、且亮灭屏频率大于或等于第二阈值,则自动确定灭屏显示模式为第二模式。
步骤811,电子设备根据剩余电量大于第一阈值,确定与第二模式对应的灭屏界面为第四灭屏界面,示例的,第四灭屏界面是由时钟、日期、未接来电、未接短信息、剩余电量背 景壁纸和K个应用图标组成的;所述K个应用图标为电子设备上安装的应用中用户使用频率排在前K位的应用的图标,K为小于M、且大于等于1的正整数;第四灭屏界面的显示效果为用户从与第二模式对应的灭屏界面所包括的多个不同的显示效果中用户选中的显示效果。
步骤812,电子设备将第二灭屏界面切换为第四灭屏界面,在触摸屏上进行显示。
步骤813,电子设备若确定剩余电量小于或等于所第一阈值时,则自动确定灭屏显示模式为第一模式。
步骤814,电子设备根据剩余电量小于或等于第一阈值,确定与第一模式对应的灭屏界面为第五灭屏界面,示例的,第五灭屏界面是由时钟和日期组成的;第五灭屏界面的显示效果为用户从与第一模式对应的灭屏界面所包括的多个不同的显示效果中选中的显示效果。
步骤815,电子设备在触摸屏上显示所述第五灭屏界面。
另外,在一些实施例中,手机200中的显示驱动芯片包括移动行业处理器接口(mobile industry processor interface,MIPI)显示串行接口(display serial interface,DSI)、帧存储器、参数寄存器、高动范围图像(high dynamic range,HDR)和光学均匀性补偿(programmable optical compensation,POC)模块、时序控制器、数据锁存器、数模转换器(digital to analog converter,DAC)、和源驱动(source driver)。
本申请实施例中为了进一步降低终端的功耗,当手机200灭屏后,一种可能的显示第一模式对应的界面的方式为,在显示驱动芯片触发显示装置显示界面时,不经过显示驱动芯片中HDR和POC模块的处理,直接由帧存储器将数据发送给时序控制器,然后经过时序控制器处理后经过数据锁存器、DAC发送给source driver,由source driver控制显示面板以简易模式进行显示。
例如,显示驱动芯片的结构示意图如图9所示。具体的,显示驱动芯片包括MIPI、帧存储器、参数寄存器、HDR和POC模块、时序控制器、数据锁存器、DAC和source driver。
其中,MIPI用于接收来自处理器的数据,并将数据中需要在显示面板上待显示的数据发送到帧存储器,将数据中显示面板在显示时的配置参数(如亮灭屏电源时序、亮度信息等)以及控制参数发送到参数寄存器,控制参数用于控制帧存储器、与HDR和POC模块,以及帧存储器与时序控制器之间的导通状态。例如,在控制参数为1时,帧存储器、与HDR和POC模块之间导通、帧存储器与时序控制器之间的断开,在控制参数为0时,帧存储器、与HDR和POC模块之间断开、帧存储器与时序控制器之间的导通。其中控制参数的值是由处理器根据终端智能匹配的灭屏显示模式确定的。其中,终端匹配到第二模式,则控制参数的值指示帧存储器、与HDR和POC模块之间导通、帧存储器与时序控制器之间的断开。终端匹配到第一模式,则控制参数的值指示帧存储器、与HDR和POC模块之间断开、帧存储器与时序控制器之间的导通。
帧存储器,用于接收来自来自MIPI的数据后,若帧存储器、与HDR和POC模块之间导通、帧存储器与时序控制器之间的断开,则将数据发送给HDR和POC模块,若帧存储器、与HDR和POC模块之间断开、帧存储器与时序控制器之间的导通,则将数据发送给时序控制器。
HDR和POC模块,用于接收来自帧存储器的待显示的数据,对待显示的数据进行对比度和均一度等显示效果的处理,并将处理后的待显示的数据发送给时序控制器。
参数寄存器,用于接收来自MIPI的配置参数和控制参数,将配置参数发送给时序控制器,以及根据控制参数控制帧存储器、与HDR和POC模块,以及帧存储器与时序控制器之间的导 通状态。
时序控制器,用于接收来自帧存储器或者HDR和POC模块发送的待显示的数据,以及来自参数寄存器的配置参数,根据配置参数,将待显示的数据按照在显示面板上显示效果进行处理,发送给数据锁存器。
数据锁存器,用于接收来自时序控制器的数据,并将数据发送给DAC。
DAC,用于接收来自数据锁存器的数据,将数据由数字信号转换为模拟信号,发送给source driver。
source driver,用于接收来自DAC的模拟信号,并根据模拟信号触发显示面板显示待显示的数据。
需要说明的是,在本申请实施例中,可以通过参数寄存器可以通过控制帧寄存器、与HDR和POC模块之间的开关的导通状态来控制帧存储器、与HDR和POC模块之间的导通状态、以及通过控制帧寄存器与时序控制器之间的开关的导通状态来帧存储器与时序控制器之间的导通状态。应理解,本申请实施例中的开关可以为晶体管,还可以为其他形式的开关,对此不作限定。
如图10所示,本申请实施例公开了一种电子设备1000,该电子设备1000可以包括:触摸屏1001,其中,所述触摸屏1001包括触敏表面1006和显示屏1007;一个或多个处理器1002;存储器1003;多个应用程序1008;以及一个或多个计算机程序1004,上述各器件可以通过一个或多个通信总线1005连接。其中该一个或多个计算机程序1004被存储在上述存储器1003中并被配置为被该一个或多个处理器1002执行,该一个或多个计算机程序904包括指令,上述指令可以用于执行如图6及相应实施例中的各个步骤。
上述本申请提供的实施例中,从电子设备作为执行主体的角度对本申请实施例提供的方法进行了介绍。为了实现上述本申请实施例提供的方法中的各功能,电子设备可以包括硬件结构和/或软件模块,以硬件结构、软件模块、或硬件结构加软件模块的形式来实现上述各功能。上述各功能中的某个功能以硬件结构、软件模块、还是硬件结构加软件模块的方式来执行,取决于技术方案的特定应用和设计约束条件。
基于相同的构思,图11所示为本申请的一种电子设备1100,该电子设备1100包括获取模块1101、处理模块1102、显示模块1103和存储模块1104;其中,存储模块1104上存储有灭屏显示模式,灭屏显示模式包括第一模式和第二模式,与第一模式对应的灭屏界面和与第二模式对应的灭屏界面不同,且电子设备在灭屏后以第一模式显示时的功耗低于以第二模式显示时的功耗;获取模块1101用于获取设备状态信息,设备状态信息为与电子设备当前运行的状态相关的信息;处理模块1102用于根据设备状态信息,从第一模式和第二模式中自动确定与设备状态信息对应的灭屏显示模式;显示模块1103用于在灭屏后显示与确定的灭屏显示模式对应的灭屏界面。
在一些实施例中,第一模式对应的灭屏界面和第二模式对应的灭屏界面分别包括多种不同的显示效果;
处理模块1102还用于确定与确定的灭屏显示模式对应的灭屏界面的显示效果为目标显示效果;目标显示效果为与确定的灭屏显示模式对应的灭屏界面包括的多个不同的显示效果中用户选中的显示效果。
在一些实施例中,第一模式对应的灭屏界面不包括背景壁纸,包括时钟、日期、剩余电量、未接电话、未读短信信息中的至少一个。
在一些实施例中,第二模式对应的灭屏界面包括时钟、日期、剩余电量、未接电话、未读短信信息、背景壁纸和应用图标中的至少一个。
在一些实施例中,处理模块1102还用于根据当前剩余电量、和预设的剩余电量与应用图标个数的对应关系,确定第二模式对应的灭屏界面上应用图标的个数;或者,根据当前剩余电量和预设的剩余电量与应用图标的对应关系,确定第二模式对应的灭屏界面上的应用图标。
在一些实施例中,设备状态信息包括电池剩余电量信息;
处理模块1102用于根据电池剩余电量信息,若确定电池剩余电量小于或等于第一阈值,则确定与设备状态信息对应的灭屏显示模式为第一模式;若确定电池剩余电量大于第一阈值,则确定与设备状态信息对应的灭屏显示模式为第二模式。
在一些实施例中,设备状态信息包括亮灭屏频率信息;
处理模块1102用于根据亮灭屏频率信息,若确定亮灭屏频率小于或等于第二阈值,则确定与设备状态信息对应的灭屏显示模式为第一模式;若确定亮灭屏频率大于第二阈值,则确定与设备状态信息对应的灭屏显示模式为第二模式。
在一些实施例中,设备状态信息包括就寝闹钟和起床闹钟;
处理模块1102用于在当期时刻达到就寝闹钟设定的时刻时,确定与设备状态信息对应的灭屏显示模式为第一模式;在当前时刻达到起床闹钟设定的时刻时,确定与设备状态信息对应的灭屏显示模式为第二模式。
在一些实施例中,获取模块1101具体用于在接收到针对触摸屏的灭屏操作之后,获取设备状态信息;例如,获取模块1101具体用于在接收到针对触摸屏的灭屏操作之后,并在显示模块灭屏之前,获取设备状态信息;或者,获取模块1101具体用于在显示模块灭屏之后,获取设备状态信息。
在一些实施例中,显示模块1103还用于在显示与确定的灭屏显示模式对应的灭屏界面之后,并响应于获取模块接收到的亮屏操作,在触摸屏上显示锁屏界面。
在一些实施例中,设备状态信息还包括配置信息、充电状态、地理位置、行走步数、用户的心率中的至少一个。
在一些实施例中,配置信息包括指示灭屏显示功能和智能显示是否开启的配置信息;其中,配置信息是获取模块1101从灭屏显示的设置界面上获取的,灭屏显示的设置界面包括灭屏显示选项、第一模式选项、第二模式选项、智能模式选项、第一虚拟按钮、第二虚拟按钮、第三虚拟按钮和第四虚拟按钮,其中第一虚拟按钮用于开启或关闭灭屏显示功能,第二虚拟按钮用于开启或关闭第一模式,第三虚拟按钮用于开启或关闭第二模式,第四虚拟按钮用于开启或关闭智能模式;第二模式对应的灭屏界面是由16.7兆色组成的,第一模式对应的灭屏界面是由8色组成的。例如,第一模式为简易模式,第二模式为多彩模式。
在一些实施例中,设备状态信息是电子设备周期性获取的。
在一些实施例中,显示模块1103为OLED屏。
需要说明的是,获取模块1101的一种具体硬件实现时可以为传感器、输入设备(如触摸屏等),处理模块1102的一种具体硬件实现时可以为一个或多个处理器,存储模块1104的一种具体硬件实现时可以为存储器,显示模式1101的一种具体硬件实现时可以为触摸屏等。
上述各个实施例中涉及处理器可以是通用处理器、数字信号处理器(digital signal processor,DSP)、专用集成电路(application specific integrated circuit,ASIC)、现成可编程门阵列(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。可以实现或者执行本申请实施例中的公开的各方法、步骤及逻辑框图。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。结合本申请实施例所公开的方法的步骤可以直接体现为硬件译码处理器执行完成,或者用译码处理器中的硬件及软件模块组合执行完成。软件模块可以位于随机存取存储器(random access memory,RAM)、闪存、只读存储器(read-only memory,ROM)、可编程只读存储器或者电可擦写可编程存储器、寄存器等本领域成熟的存储介质中。该存储介质位于存储器,处理器读取存储器中的指令,结合其硬件完成上述方法的步骤。
本领域普通技术人员可以意识到,结合本文中所公开的实施例描述的各示例的单元及算法步骤,能够以电子硬件、或者计算机软件和电子硬件的结合来实现。这些功能究竟以硬件还是软件方式来执行,取决于技术方案的特定应用和设计约束条件。专业技术人员可以对每个特定的应用来使用不同方法来实现所描述的功能。
所属领域的技术人员可以清楚地了解到,为描述的方便和简洁,上述描述的系统、装置和单元的具体工作过程,可以参考前述方法实施例中的对应过程,在此不再赘述。
在本申请所提供的几个实施例中,应该理解到,所揭露的系统、装置和方法,可以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,例如,所述单元的划分,仅仅为一种逻辑功能划分,实际实现时可以有另外的划分方式,例如多个单元或组件可以结合或者可以集成到另一个系统,或一些特征可以忽略,或不执行。另一点,所显示或讨论的相互之间的耦合或直接耦合或通信连接可以是通过一些接口,装置或单元的间接耦合或通信连接,可以是电性,机械或其它的形式。
所述作为分离部件说明的单元可以是或者也可以不是物理上分开的,作为单元显示的部件可以是或者也可以不是物理单元,即可以位于一个地方,或者也可以分布到多个网络单元上。可以根据实际的需要选择其中的部分或者全部单元来实现本实施例方案的目的。
另外,在本申请各个实施例中的各功能单元可以集成在一个处理单元中,也可以是各个单元单独物理存在,也可以两个或两个以上单元集成在一个单元中。
所述功能如果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,本申请的技术方案本质上或者说对现有技术做出贡献的部分或者该技术方案的部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质中,包括若干指令用以使得一台计算机设备(可以是个人计算机,服务器,或者网络设备等)或处理器(processor)执行本申请各个实施例所述方法的全部或部分步骤。而前述的存储介质包括:U盘、移动硬盘、ROM、RAM、磁碟或者光盘等各种可以存储程序代码的介质。
以上所述,仅为本申请的具体实施方式,但本申请的保护范围并不局限于此,任何熟悉本技术领域的技术人员在本申请揭露的技术范围内,可轻易想到的变化或替换,都应涵盖在本申请的保护范围之内,因此本申请的保护范围应以权利要求的保护范围为准。

Claims (20)

  1. 一种灭屏显示的方法,所述方法在具有触摸屏的电子设备中实现,其特征在于,所述电子设备上配置的灭屏显示模式包括第一模式和第二模式,与所述第一模式对应的灭屏界面和与所述第二模式对应的灭屏界面不同,且所述电子设备在灭屏后以所述第一模式显示时的功耗低于以所述第二模式显示时的功耗;所述方法包括:
    所述电子设备获取设备状态信息,所述设备状态信息为与所述电子设备当前运行的状态相关的信息;
    所述电子设备根据所述设备状态信息,从所述第一模式和所述第二模式中自动确定与所述设备状态信息对应的灭屏显示模式;
    所述电子设备在所述触摸屏灭屏后显示与确定的所述灭屏显示模式对应的灭屏界面。
  2. 如权利要求1所述的方法,其特征在于,所述第一模式对应的灭屏界面和所述第二模式对应的灭屏界面分别包括多种不同的显示效果;
    所述电子设备显示与确定的所述灭屏显示模式对应的灭屏界面之前,还包括:
    所述电子设备确定与确定的所述灭屏显示模式对应的灭屏界面的显示效果为目标显示效果;所述目标显示效果为与确定的所述灭屏显示模式对应的灭屏界面包括的多个不同的显示效果中用户选中的显示效果。
  3. 如权利要求1或2所述的方法,其特征在于,所述第一模式对应的灭屏界面不包括背景壁纸,包括时钟、日期、剩余电量、未接电话、未读短信信息中的至少一个。
  4. 如权利要求1至3任一所述的方法,其特征在于,所述第二模式对应的灭屏界面包括时钟、日期、剩余电量、未接电话、未读短信信息、背景壁纸和应用图标中的至少一个。
  5. 如权利要求4所述的方法,其特征在于,所述方法还包括:
    所述电子设备根据当前剩余电量、和预设的剩余电量与应用图标个数的对应关系,确定所述第二模式对应的灭屏界面上应用图标的个数;或者,
    所述电子设备根据当前剩余电量和预设的剩余电量与应用图标的对应关系,确定所述第二模式对应的灭屏界面上的应用图标。
  6. 如权利要求1至5所述的方法,其特征在于,所述设备状态信息包括电池剩余电量信息;
    所述电子设备根据所述设备状态信息,确定与所述设备状态信息对应的灭屏显示模式,包括:
    所述电子设备根据所述电池剩余电量信息,若确定电池剩余电量小于或等于第一阈值,则确定与所述设备状态信息对应的灭屏显示模式为所述第一模式;若确定电池剩余电量大于所述第一阈值,则确定与所述设备状态信息对应的灭屏显示模式为所述第二模式。
  7. 如权利要求1至6任一所述的方法,其特征在于,所述设备状态信息包括亮灭屏频率信;
    所述电子设备根据所述设备状态信息,确定与所述设备状态信息对应的灭屏显示模式,包括:
    所述电子设备根据所述亮灭屏频率信息,若确定亮灭屏频率小于或等于第二阈值,则确定与所述设备状态信息对应的灭屏显示模式为第一模式;若确定亮灭屏频率大于所述第二阈 值,则确定与所述设备状态信息对应的灭屏显示模式为第二模式。
  8. 如权利要求1至7任一所述的方法,其特征在于,所述设备状态信息包括就寝闹钟和起床闹钟;
    所述电子设备根据所述设备状态信息,确定与所述设备状态信息对应的灭屏显示模式,包括:
    所述电子设备在当期时刻达到就寝闹钟设定的时刻时,确定与所述设备状态信息对应的灭屏显示模式为所述第一模式;在当前时刻达到起床闹钟设定的时刻时,确定与所述设备状态信息对应的灭屏显示模式为所述第二模式。
  9. 如权利要求1至8任一所述的方法,其特征在于,
    所述电子设备接收到针对所述触摸屏的灭屏操作之后,获取设备状态信息;或者,
    所述电子设备在接收到针对所述触摸屏的灭屏操作之后,并在所述触摸屏灭屏之前,获取所述设备状态信息;或者,
    所述电子设备在所述触摸屏灭屏之后,获取所述设备状态信息;或者,
    所述电子设备显示与确定的所述灭屏显示模式对应的灭屏界面之后,接收到用户的亮屏操作,并响应于所述亮屏操作,在所述触摸屏上显示锁屏界面;或者,
    所述设备状态信息还包括配置信息、充电状态、地理位置、行走步数、用户的心率中的至少一个;或者,
    所述配置信息包括指示灭屏显示功能和智能显示是否开启的配置信息;其中,所述配置信息是所述电子设备从灭屏显示的设置界面上获取的,所述灭屏显示的设置界面包括灭屏显示选项、第一模式选项、第二模式选项、智能模式选项、第一虚拟按钮、第二虚拟按钮、第三虚拟按钮和第四虚拟按钮,其中所述第一虚拟按钮用于开启或关闭灭屏显示功能,所述第二虚拟按钮用于开启或关闭所述第一模式,所述第三虚拟按钮用于开启或关闭所述第二模式,所述第四虚拟按钮用于开启或关闭智能模式;所述第二模式对应的灭屏界面是由16.7兆色组成的,所述第一模式对应的灭屏界面是由8色组成的;或者,
    所述第一模式为简易模式,所述第二模式为多彩模式,或者,
    所述设备状态信息是所述电子设备周期性获取的;或者,
    所述触摸屏为有机发光二极管OLED屏。
  10. 一种灭屏显示的方法,其特征在于,所述方法在具有触摸屏的电子设备中实现,其特征在于,所述电子设备上配置的灭屏显示模式为第一模式和第二模式;所述第一模式对应的灭屏界面是由8色组成的,所述第二模式对应的灭屏界面是由16.7兆色组成的;所述方法包括:
    所述电子设备接收到灭屏操作;
    所述电子设备若确定配置信息指示灭屏显示功能和智能显示均开启、且所述电子设备正在充电,则自动确定灭屏显示模式为所述第二模式;
    所述电子设备根据所述电子设备正在充电,确定与所述第二模式对应的灭屏界面为第一灭屏界面,所述第一灭屏界面是由时钟、日期、未接来电、未接短信信息、剩余电量、背景壁纸和N个应用图标组成的,所述N个应用图标为用户使用频率排在前N位的应用的图标,N为大于等于1的正整数;所述第一灭屏界面的显示效果为用户从与所述第二模式对应的灭屏界面所包括的多个不同的显示效果中用户选中的显示效果;
    所述电子设备在所述触摸屏上显示所述第一灭屏界面;
    所述电子设备在检测到充电完成,并断开充电后,若定位到第一地理位置,则自动确定所述灭屏显示模式为所述第二模式;
    所述电子设备根据充电完成、且断开充电,确定与所述第二模式对应的灭屏界面为第二灭屏界面,所述第二灭屏界面是由时钟、日期、未接来电、未接短信信息、背景壁纸和M个应用图标组成的,所述M个应用图标为用户使用频率排在前M位的应用的图标,M为小于N、且大于等于1的正整数;所述第二灭屏界面的显示效果为用户从与所述第二模式对应的灭屏界面所包括的多个不同的显示效果中用户选中的显示效果;
    所述电子设备将所述第一灭屏界面切换到所述第二灭屏界面,在所述触摸屏上进行显示;
    所述电子设备在定位从所述第一地理位置切换到第二地理位置后,若确定剩余电量大于第一阈值、且亮灭屏频率小于第二阈值,则自动确定所述灭屏显示模式为所述第一模式;
    所述电子设备根据所述剩余电量大于所述第一阈值,确定与所述第一模式对应的灭屏界面为第三灭屏界面,所述第三灭屏界面是由时钟、日期、未接来电、未接短信息和剩余电量组成的;所述第三灭屏界面的显示效果为用户从与所述第一模式对应的灭屏界面所包括的多个不同的显示效果中选中的显示效果;
    所述电子设备将所述第二灭屏界面切换为所述第三灭屏界面,在所述触摸屏上进行显示;
    所述电子设备在定位从所述第一地理位置切换到第二地理位置后,若确定剩余电量大于所述第一阈值、且亮灭屏频率大于或等于所述第二阈值,则自动确定所述灭屏显示模式为所述第二模式;
    所述电子设备根据剩余电量大于所述第一阈值,确定与所述第二模式对应的灭屏界面为第四灭屏界面,所述第四灭屏界面是由时钟、日期、未接来电、未接短信息、剩余电量背景壁纸和K个应用图标组成的;所述K个应用图标为用户使用频率排在前K位的应用的图标,K为小于M、且大于等于1的正整数;所述第四灭屏界面的显示效果为用户从与所述第二模式对应的灭屏界面所包括的多个不同的显示效果中用户选中的显示效果;
    所述电子设备将所述第二灭屏界面切换为所述第四灭屏界面,在所述触摸屏上进行显示;
    所述电子设备若确定剩余电量小于或等于所述第一阈值时,则自动确定灭屏显示模式为所述第一模式;
    所述电子设备根据所述剩余电量小于或等于所述第一阈值,确定与所述第一模式对应的灭屏界面为第五灭屏界面,所述第五灭屏界面是由时钟和日期组成的;所述第五灭屏界面的显示效果为用户从与所述第一模式对应的灭屏界面所包括的多个不同的显示效果中选中的显示效果;
    所述电子设备在所述触摸屏上显示所述第五灭屏界面。
  11. 一种电子设备,其特征在于,获取模块、处理模块、显示模块和存储模块;其中,
    所述存储模块上存储有灭屏显示模式,所述灭屏显示模式包括第一模式和第二模式,与所述第一模式对应的灭屏界面和与所述第二模式对应的灭屏界面不同,且所述电子设备在灭屏后以所述第一模式显示时的功耗低于以所述第二模式显示时的功耗;
    所述获取模块,用于获取设备状态信息,所述设备状态信息为与所述电子设备当前运行的状态相关的信息;
    所述处理模块,用于根据所述设备状态信息,从所述第一模式和所述第二模式中自动确 定与所述设备状态信息对应的灭屏显示模式;
    所述显示模块,用于在灭屏后显示与确定的所述灭屏显示模式对应的灭屏界面。
  12. 如权利要求11所述的电子设备,其特征在于,所述第一模式对应的灭屏界面和所述第二模式对应的灭屏界面分别包括多种不同的显示效果;
    所述处理模块,还用于确定与确定的所述灭屏显示模式对应的灭屏界面的显示效果为目标显示效果;所述目标显示效果为与确定的所述灭屏显示模式对应的灭屏界面包括的多个不同的显示效果中用户选中的显示效果。
  13. 如权利要求11或12所述的电子设备,其特征在于,所述第一模式对应的灭屏界面不包括背景壁纸,包括时钟、日期、剩余电量、未接电话、未读短信信息中的至少一个。
  14. 如权利要求11至13任一所述的电子设备,其特征在于,所述第二模式对应的灭屏界面包括时钟、日期、剩余电量、未接电话、未读短信信息、背景壁纸和应用图标中的至少一个。
  15. 如权利要求14所述的电子设备,其特征在于,所述处理模块,还用于:
    根据当前剩余电量、和预设的剩余电量与应用图标个数的对应关系,确定所述第二模式对应的灭屏界面上应用图标的个数;或者,
    根据当前剩余电量和预设的剩余电量与应用图标的对应关系,确定所述第二模式对应的灭屏界面上的应用图标。
  16. 如权利要求11至15所述的电子设备,其特征在于,所述设备状态信息包括电池剩余电量信息;
    所述处理模块,用于根据所述设备状态信息,确定与所述设备状态信息对应的灭屏显示模式,具体包括:
    所述处理模块,用于根据所述电池剩余电量信息,若确定电池剩余电量小于或等于第一阈值,则确定与所述设备状态信息对应的灭屏显示模式为所述第一模式;若确定电池剩余电量大于所述第一阈值,则确定与所述设备状态信息对应的灭屏显示模式为所述第二模式。
  17. 如权利要求11至16任一所述的电子设备,其特征在于,所述设备状态信息包括亮灭屏频率信;
    所述处理模块,用于根据所述设备状态信息,确定与所述设备状态信息对应的灭屏显示模式,具体包括:
    所述处理模块,用于根据所述亮灭屏频率信息,若确定亮灭屏频率小于或等于第二阈值,则确定与所述设备状态信息对应的灭屏显示模式为第一模式;若确定亮灭屏频率大于所述第二阈值,则确定与所述设备状态信息对应的灭屏显示模式为第二模式。
  18. 如权利要求11至17任一所述的电子设备,其特征在于,所述设备状态信息包括就寝闹钟和起床闹钟;
    所述处理模块,用于根据所述设备状态信息,确定与所述设备状态信息对应的灭屏显示模式,具体包括:
    所述处理模块,用于在当期时刻达到就寝闹钟设定的时刻时,确定与所述设备状态信息对应的灭屏显示模式为所述第一模式;在当前时刻达到起床闹钟设定的时刻时,确定与所述设备状态信息对应的灭屏显示模式为所述第二模式。
  19. 如权利要求11至18任一所述的电子设备,其特征在于,
    所述获取模块,具体用于在接收到针对所述触摸屏的灭屏操作之后,获取设备状态信息;或者,
    所述获取模块,具体用于在接收到针对所述触摸屏的灭屏操作之后,并在所述显示模块灭屏之前,获取所述设备状态信息;或者,
    所述获取模块,具体用于在所述显示模块灭屏之后,获取所述设备状态信息;或者,
    所述显示模块还用于,在显示与确定的所述灭屏显示模式对应的灭屏界面之后,并响应于所述获取模块接收到的亮屏操作,在所述触摸屏上显示锁屏界面;或者,
    所述设备状态信息还包括配置信息、充电状态、地理位置、行走步数、用户的心率中的至少一个;或者,
    所述配置信息包括指示灭屏显示功能和智能显示是否开启的配置信息;其中,所述配置信息是所述获取模块从灭屏显示的设置界面上获取的,所述灭屏显示的设置界面包括灭屏显示选项、第一模式选项、第二模式选项、智能模式选项、第一虚拟按钮、第二虚拟按钮、第三虚拟按钮和第四虚拟按钮,其中所述第一虚拟按钮用于开启或关闭灭屏显示功能,所述第二虚拟按钮用于开启或关闭所述第一模式,所述第三虚拟按钮用于开启或关闭所述第二模式,所述第四虚拟按钮用于开启或关闭智能模式;所述第二模式对应的灭屏界面是由16.7兆色组成的,所述第一模式对应的灭屏界面是由8色组成的;或者,
    所述第一模式为简易模式,所述第二模式为多彩模式,或者,
    所述设备状态信息是所述电子设备周期性获取的;或者,
    所述显示模块为有机发光二极管OLED屏。
  20. 一种电子设备,包括:
    触摸屏,其中,所述触摸屏包括触敏表面和显示器;
    一个或多个处理器;
    存储器;
    多个应用程序;
    以及一个或多个计算机程序,其中所述一个或多个计算机程序被存储在所述存储器中,所述一个或多个计算机程序包括指令,当所述指令被所述电子设备执行时,使得所述电子设备执行如权利要求1至10任一所述的方法。
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CN110417986A (zh) 2019-11-05
CN112235452A (zh) 2021-01-15
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