Interface Display Method, Device, Electronic Device and Storage Medium

By dividing the display interface into multiple partitions and displaying only the target partition in the display timing, the problem of high power consumption in the AMOLED AOD display method is solved, and power saving of electronic devices is achieved.

CN113391781BActive Publication Date: 2025-07-11BOE TECHNOLOGY GROUP CO LTD +1
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Patent Information

Application Number
CN202110712852.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-06-25
Publication Date
2025-07-11
Estimated Expiration
2041-06-25

AI Technical Summary

Technical Problem

The existing AMOLED AOD display mode consumes a high power consumption, resulting in the short standby time of electronic devices.

Method used

Reduce power consumption by dividing the display interface into multiple partitions and displaying only the target partition within each display timing, while the target partition is turned off or stored in the image data.

Benefits of technology

While ensuring the normal display of the target partition content, the driving power consumption of electronic devices is reduced and power savings are saved.

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Abstract

Embodiments of the present application provide an interface display method, apparatus, electronic device, and storage medium. The interface display method includes: obtaining at least two partitions of a display interface and a display timing corresponding to each of the partitions; within each of the display timings, displaying a target partition corresponding to the display timing and not displaying non-target partitions, thereby reducing the driving power consumption of the electronic device and saving the electrical energy of the electronic device while ensuring normal display of the content of the target partition. Embodiments of the present application solve the technical problem of high power consumption in the existing AMOLED AOD display mode.
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Description

Technical Field

[0001] This application relates to the technical field of displays. Specifically, this application relates to an interface display method, apparatus, electronic device, and storage medium. Background Art

[0002] In the technical field of displays, Active-matrix organic light-emitting diode (AMOLED) panels are widely used in various display fields, such as mobile phones, notebooks, tablets, and wearable devices, due to their advantages of self-luminescence, vivid colors, and foldability. At the same time, the Always On Display (AOD) mode of AMOLED has gradually become the mainstream in the AMOLED field. However, currently, the AMOLED AOD display mode still has the problem of high power consumption, resulting in problems such as short standby time for the electronic device to which the display belongs. Summary of the Invention

[0003] In view of the shortcomings of the existing methods, this application proposes an interface display method, apparatus, electronic device, and storage medium to solve the technical problem of high power consumption in the existing AMOLED AOD display mode.

[0004] In a first aspect, an embodiment of this application provides an interface display method, including:

[0005] Obtain at least two partitions of a display interface and a display timing corresponding to each partition;

[0006] Within each display timing, display a target partition corresponding to the display timing.

[0007] Optionally, before obtaining at least two partitions of the display interface, the method further includes:

[0008] Determine partition parameter information of the partitions included in each display interface; the partition parameter information includes pixel coordinate range parameters of the partitions.

[0009] Optionally, displaying the target partition corresponding to the display timing includes:

[0010] Drive a display panel of the display interface to display the target partition according to the pixel coordinate range parameters of the target partition.

[0011] Optionally, the method further includes:

[0012] Within each of the display timings, turn off the display of non-target partitions in the partition.

[0013] Optionally, the turning off the display of non-target partitions in the partition includes:

[0014] Set the pixel source data (Source Data) of non-target partitions in the partition to the target analog power supply voltage (AVDD); where the target AVDD is the AVDD of the display device corresponding to the display interface.

[0015] Optionally, the turning off the display of non-target partitions in the partition includes:

[0016] Store the image data of the non-target partition.

[0017] Optionally, the obtaining at least two partitions of the display interface includes:

[0018] Obtain at least two partitions of the display interface when the refresh frequency of the display interface is lower than a preset threshold.

[0019] In a second aspect, an embodiment of the present application provides an interface display device, including:

[0020] An obtaining module, configured to obtain at least two partitions of a display interface and the display timing corresponding to each of the partitions;

[0021] A display module, configured to display the target partition corresponding to the display timing within each of the display timings.

[0022] In a third aspect, an embodiment of the present application provides an electronic device, including a memory, a processor, and a computer program stored on the memory and executable on the processor, where the processor implements the above method when executing the program.

[0023] In a fourth aspect, an embodiment of the present application provides a computer-readable storage medium, on which a computer program is stored, and when the computer program is executed by a processor, the above method is implemented.

[0024] The beneficial technical effects brought by the technical solution provided by the embodiment of the present application include:

[0025] In the embodiment of the present application, at least two partitions of the display interface and the display timing corresponding to each of the partitions are obtained; within each of the display timings, the target partition corresponding to the display timing is displayed, and non-target partitions are not displayed. While ensuring the normal display of the content of the target partition, the driving power consumption of the electronic device is reduced, and the electric energy of the electronic device is saved.

[0026] Additional aspects and advantages of the present application will be given in part in the following description, will become apparent from the following description, or will be learned through the practice of the present application. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] The above and / or additional aspects and advantages of the present application will become apparent and be readily understood from the following description of embodiments in conjunction with the accompanying drawings, in which:

[0028] Figure 1 is a schematic flowchart of an interface display method provided for an embodiment of the present application;

[0029] Figure 2 is a schematic diagram of partitioning for a first example provided for an embodiment of the present application;

[0030] Figure 3 is a schematic diagram of a clock cycle for a second example provided for an embodiment of the present application;

[0031] Figure 4 is one of the schematic diagrams of driving principles for a third example provided for an embodiment of the present application;

[0032] Figure 5 is the other schematic diagram of driving principles for a third example provided for an embodiment of the present application;

[0033] Figure 6 is a schematic framework diagram of the structure of an interface display device provided for an embodiment of the present application;

[0034] Figure 7 is a schematic framework diagram of the structure of an electronic device provided for an embodiment of the present application. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0035] The present application will be described in detail below. Examples of embodiments of the present application are shown in the accompanying drawings, where the same or similar reference numerals denote the same or similar components or components with the same or similar functions throughout. In addition, if the detailed description of the known technology is not necessary for showing the features of the present application, it will be omitted. The embodiments described below with reference to the accompanying drawings are exemplary only for explaining the present application and should not be construed as limiting the present application.

[0036] Those skilled in the art of the present technology can understand that, unless otherwise defined, all terms (including technical terms and scientific terms) used herein have the same meaning as the general understanding of those of ordinary skill in the art to which the present application belongs. It should also be understood that terms such as those defined in a general dictionary should be understood to have a meaning consistent with the meaning in the context of the prior art, and will not be interpreted with an idealized or overly formal meaning unless specifically defined as here.

[0037] Those skilled in the art can understand that, unless specifically stated otherwise, the singular forms "a", "an", "the", and "said" used herein may also include the plural forms. It should be further understood that the term "comprising" used in the specification of this application means the presence of the described features, integers, steps, operations, elements, and / or components, but does not exclude the presence or addition of one or more other features, integers, steps, operations, elements, components, and / or their groups. It should be understood that when we say an element is "connected" or "coupled" to another element, it can be directly connected or coupled to other elements, or there may also be intermediate elements. In addition, the "connection" or "coupling" used herein may include wireless connection or wireless coupling. The phrase "and / or" used herein includes all or any unit and all combinations of one or more of the associated listed items.

[0038] First, several terms related to this application are introduced and explained:

[0039] AMOLED: Active-matrix organic light-emitting diode. Due to its advantages such as self-luminescence, vivid colors, and foldability, AMOLED is widely used in various display fields, such as displays for mobile phones, notebooks, tablets, and wearable devices.

[0040] AOD: Always On Display. For example, without lighting up the entire screen of an electronic device, only content such as time, incoming call information, and push messages is displayed in a partial area of the screen.

[0041] Next, specific embodiments are used to elaborate in detail on the technical solution of this application and how the technical solution of this application solves the above technical problems.

[0042] As Figure 1 shown, an embodiment of this application provides an interface display method, and the method includes:

[0043] Step 101, obtain at least two partitions of the display interface and the display timing corresponding to each of the partitions.

[0044] Among them, the display interface can be the display interface of an electronic device, such as a mobile phone, a laptop computer, a tablet computer, and a wearable device, etc. Optionally, the display interface can be a preset display interface in the electronic device, such as a lock screen interface, or an interface with a lower refresh rate, such as an interface set to be displayed in the AOD mode; in addition, the display interface can also be an interface determined by the electronic device through real-time detection. For example, when the electronic device detects that the current display interface of the display screen has a lower refresh rate, such as lower than a preset threshold, at least two partitions of the display interface are obtained.

[0045] Specifically, at least two partitions (Set) are preset for the display interface, and the partition is a partial area of the display interface; as a first example, as Figure 2 shown, Figure 2 is a schematic diagram of the display interface of an electronic device. Among them, Set1 to Set4 respectively represent 4 different partitions, that is, partition 1 to partition 4. Each partition corresponds to a different display timing. Optionally, a display cycle can be set, and within each display cycle, each partition corresponds to a display timing; optionally, the timing includes the time sequence within each clock cycle. For example, Figure 2 the partitions 1 to 4 shown in have their respective display timings. Or, within a complete display cycle, multiple display sub-cycles are included; within each display sub-cycle, some partitions have display timings and some partitions do not. For example, within display sub-cycle 1, only partitions 1 and 2 respectively have display timings, while partitions 3 and 4 do not; within display sub-cycle 2, only partition 2 has a display timing, and the other partitions do not. In this way, when each display interface of the electronic device is determined or detectable, the partitions for each display interface and the display timing of each partition can be set.

[0046] Step 102, within each of the display timings, display the target partition corresponding to the display timing.

[0047] Within each display timing, control the electronic device to display the corresponding target partition. For example, a display panel driver chip (Display Driver IC, DDIC) drives to display the display panel area corresponding to the target partition; during the process of the display panel outputting a picture, its driving power consumption is relatively high. In the embodiments of the present application, for non-target partitions, the electronic device does not display these partitions to reduce the power consumption of the electronic device.

[0048] As a second example, in combination with Figure 2 and Figure 3 , a complete clock cycle includes sub-cycle 1, sub-cycle 2, sub-cycle 3, and sub-cycle 4; Figure 3The middle one is the power-on timing diagram (Power Sequence). Vsync represents the synchronization signal, and GOA represents the gate driving signal of the array substrate (Gate On Array, GOA). The timing patterns shown by Set1 to Set4 are the driving timings corresponding to each partition respectively. For example, the timing pattern shown by Set1 is Figure 2 the display timing of partition 1 (Set1) in Figure 2 .

[0049] Taking sub-cycle 1 as an example, within this sub-cycle, Set1 to Set4 each have a display timing, and each partition is displayed separately within this sub-cycle. For example, within this sub-cycle, the power information in Set1 is updated, the time information in Set2 is updated, the date information in Set3 is updated, and the fingerprint recognition information in Set4 is updated; taking sub-cycle 2 as an example, among them, Set2 to Set4 each have a display timing, and each partition of Set2 to Set4 is displayed separately within this sub-cycle, while Set1 does not have a display timing. For example, the power information in Set1 is not updated, so Set1 is not driven to be displayed within this sub-cycle to reduce power consumption.

[0050] In the embodiments of the present application, at least two partitions of the display interface and the display timing corresponding to each of the partitions are obtained; within each of the display timings, the target partition corresponding to the display timing is displayed, while the non-target partitions are not displayed, which reduces the driving power consumption of the electronic device and saves the electrical energy of the electronic device while ensuring the normal display of the content of the target partition. The embodiments of the present application solve the technical problem of relatively high power consumption in the existing AMOLED AOD display mode.

[0051] In an optional embodiment, before obtaining at least two partitions of the display interface, the method further includes:

[0052] Determining the partition parameter information of the partitions included in each of the display interfaces; the partition parameter information includes the pixel coordinate range parameter of the grouping.

[0053] The pixel coordinate range parameter is, for example, the pixel point range of each partition. For example, for the X-axis of the pixel coordinate system, x_Point1, x_Point2, x_Point3, and x_Point4 are defined to represent the abscissa range of the pixel points of each partition respectively, and each value can occupy 3 bits; similarly, for the Y-axis, y_Point1, y_Point2, y_Point3, and y_Point4 are defined to represent the ordinate range of the pixel points of each partition respectively; after obtaining the abscissa range and ordinate range of each partition, it can be used for the driving IC to determine the target partition to be driven for display.

[0054] Optionally, the electronic device may pre-configure partition and grouping parameter information for each display interface. For example, for a pre-labeled first target interface, such as the lock screen interface or standby interface of the electronic device, the partition parameter information of the partitions it includes may be preset.

[0055] For a second target interface detected by the electronic device according to a preset detection rule, such as an interface with a refresh rate lower than a preset threshold, the partition parameter information may be determined according to a pre-configured rule. For example, the partition parameter information of each partition of the second target interface may be preset.

[0056] In an alternative embodiment, the target partitions corresponding to the display timing include:

[0057] Drive the display panel of the display interface to display the target partition according to the pixel coordinate range parameters of the target partition.

[0058] Within each display timing, drive the display panel of the display interface to display the target partition. For example, drive the IC to drive the display panel area corresponding to the target partition, and determine the specific position of the target group according to the pixel coordinate range parameters corresponding to each target group. During the process of the display panel outputting an image, its driving power consumption is relatively high. In the embodiment of the present application, for non-target partitions, the electronic device does not display these partitions to reduce the power consumption of the electronic device.

[0059] As a third example, in combination with Figure 4 , Figure 4 FIG. shows a schematic diagram of the driving principle of an AP device (AOD Partial device). Among them, the AP encoder (Encoder) compresses the image data through VESA (VESA Compression, Video Electronics Standards Association Compression) and sends it to the graphics register (Graphics RAM, GRAM) module of the driving IC. The GRAM module sends it to the DSC (Display Stream Compression) decoding module. The decoding module sends the decoded image data to the timing control (Block) module, and the timing control module controls the display of each group according to the pixel coordinate range parameters corresponding to each target group. For example, taking sub-cycle 1 in Figure 3 as an example, within this sub-cycle, Set1 to Set4 respectively have display timings. Then, within this sub-cycle, the timing control module drives the display of each partition according to the pixel coordinate range parameters of each partition.

[0060] Taking Figure 5For example, Set1 to Set2 each have a display timing. During this sub-cycle, the timing control module drives the display of Set1 to Set2 according to the pixel coordinate range parameters of each of Set1 to Set2 respectively. Since Set3 and Set4 do not have a display timing, during this sub-cycle, the timing control module does not drive the display of Set3 and Set4 to reduce power consumption.

[0061] In an alternative embodiment, the method further includes:

[0062] During each of the display timings, turn off the display of non-target partitions in the partition.

[0063] During the process of the display panel outputting an image, its driving power consumption is relatively high. In the embodiments of the present application, for non-target partitions, the electronic device does not display the partitions, that is, turns off the display of non-target partitions in the partitions to reduce the power consumption of the electronic device. Taking Figure 3 sub-cycle 2 as an example, where Set2 to Set4 each have a display timing. During this sub-cycle, each partition displays Set2 to Set4 respectively. Since Set1 does not have a display timing, for example, the power information in Set1 has not been updated, Set1 is not driven to be displayed during this sub-cycle to reduce power consumption.

[0064] In an alternative embodiment, the turning off the display of non-target partitions in the partition includes:

[0065] Set the pixel source data Source Data of non-target partitions in the partition to the target analog power supply voltage AVDD; where the target AVDD is the AVDD of the display device corresponding to the display interface, and the display device is the aforementioned electronic device.

[0066] Turning off the display means not displaying. During the process of turning off the display of non-target partitions, the voltage value of Source Data is pulled up to the AVDD voltage. At this time, the image shows a black screen, that is, the function of turning off the display is achieved. Combining Figure 3 , in the Source Data pattern, in sub-cycle 2, the S1 area and the S2 area respectively represent that the voltage value of Source Data is the AVDD voltage. At this time, the entire display interface is in a black screen state; in the RGB (RED, GREEN, BLUE) state, there are target partitions being displayed in the display interface; in the black screen interface state, since the GOA signal is opposite to the synchronization signal, the electronic device is in a black screen (or blank screen) state at this time, such as the black screen state when switching between two frames of images; while in the S1 area and the S2 area, in order to save power, the voltage value of Source Data is set to the AVDD voltage, and at this time, the S1 area and the S2 area will also be displayed as a black screen state.

[0067] In an alternative embodiment, closing and displaying non-target partitions in the partition includes:

[0068] Storing the image data of the non-target partition.

[0069] For non-target partitions that are not displayed, the electronic device needs to store the non-displayed image data in the partition so that the image data of the partition can be used later.

[0070] In an alternative embodiment, obtaining at least two partitions of the display interface includes:

[0071] When the refresh frequency of the display interface is lower than a preset threshold, obtain at least two partitions of the display interface. For example, when the electronic device refreshes the interface at a fixed frequency and the fixed frequency is lower than the preset threshold, at least two partitions of the display interface and the display timing of each group can be displayed; then within each of the display timings, the target partition corresponding to the display timing is displayed, and the non-target partition is not displayed, reducing the driving power consumption of the electronic device.

[0072] In the embodiments of the present application, at least two partitions of the display interface and the display timing corresponding to each partition are obtained; within each display timing, the target partition corresponding to the display timing is displayed, and the non-target partition is not displayed, reducing the driving power consumption of the electronic device and saving the electric energy of the electronic device while ensuring the normal display of the content of the target partition. The embodiments of the present application solve the technical problem of high power consumption in the existing AMOLED AOD display mode.

[0073] Based on the same inventive concept, an interface display device 600 provided in the embodiments of the present application, the structural framework schematic diagram of the device 600 is as Figure 6 shown, the interface display device 600 includes:

[0074] An obtaining module 601, configured to obtain at least two partitions of the display interface and the display timing corresponding to each partition;

[0075] Wherein, the display interface may be the display interface of an electronic device, such as a mobile phone, a laptop, a tablet computer, and a wearable device, etc. Optionally, the display interface may be a preset display interface in the electronic device, such as a lock screen interface, or an interface with a lower refresh frequency, such as an interface set to be displayed in the AOD mode; in addition, the display interface may also be an interface determined by the electronic device through real-time detection. For example, when the electronic device detects that the current display interface of the display screen has a lower refresh frequency, such as lower than a preset threshold, at least two partitions of the display interface are obtained.

[0076] Specifically, the display interface is preset with at least two partitions (Set), and the partition is a partial area of the display interface; as a first example, such asFigure 2 As shown Figure 2 is a schematic diagram of the display interface of an electronic device. Among them, Set1 to Set4 respectively represent 4 different partitions, namely partition 1 to partition 4. Each partition corresponds to a different display timing. Optionally, a display cycle can be set. Within each display cycle, each partition corresponds to a display timing; optionally, the timing includes the time sequence within each clock cycle. For example, Figure 2 the partitions 1 to 4 shown in have their respective display timings. Or, within a complete display cycle, it includes multiple display sub-cycles; within each display sub-cycle, some partitions have display timings and some partitions do not. For example, within display sub-cycle 1, only partitions 1 and 2 respectively have display timings, while partitions 3 and 4 do not; within display sub-cycle 2, only partition 2 has a display timing, and the other partitions do not. In this way, when each display interface of the electronic device is determined or detectable, the partitions for each display interface and the display timing of each partition can be set.

[0077] The display module 602 is used to display the target partition corresponding to the display timing within each said display timing.

[0078] Within each display timing, control the electronic device to display the corresponding target partition. For example, the display panel driving chip drives the display panel area corresponding to the target partition; during the process of the display panel outputting an image, its driving power consumption is relatively high. In the embodiments of the present application, for non-target partitions, the electronic device does not display these partitions to reduce the power consumption of the electronic device.

[0079] As a second example, in combination with Figure 2 and Figure 3 , a complete clock cycle includes sub-cycle 1, sub-cycle 2, sub-cycle 3, and sub-cycle 4; Figure 3 is a power-on timing diagram. Vsync represents the synchronization signal, GOA represents the array substrate row driving signal, and the timing patterns shown by Set1 to Set4 are respectively the driving timings corresponding to each partition. For example, the timing pattern shown by Set1 is Figure 2 the display timing of partition 1 (Set1) in.

[0080] Taking sub - cycle 1 as an example, within this sub - cycle, Set1 to Set4 respectively have display timings, and each partition is displayed within this sub - cycle. For example, within this sub - cycle, the power information in Set1 is updated, the time information in Set2 is updated, the date information in Set3 is updated, and the fingerprint recognition information in Set4 is updated. Taking sub - cycle 2 as another example, among them, Set2 to Set4 respectively have display timings, and Set2 to Set4 are displayed in each partition within this sub - cycle, while Set1 does not have a display timing. For example, the power information in Set1 is not updated, so Set1 is not driven to be displayed within this sub - cycle to reduce power consumption.

[0081] In the embodiment of the present application, the acquisition module 601 acquires at least two partitions of the display interface and the display timing corresponding to each of the partitions; the display module 602 displays the target partition corresponding to the display timing within each of the display timings, and does not display non - target partitions, thereby reducing the driving power consumption of the electronic device and saving the electrical energy of the electronic device while ensuring the normal display of the content of the target partition.

[0082] Optionally, in the embodiment of the present application, the device 600 further includes:

[0083] An information determination module, configured to determine the partition parameter information of each of the partitions included in each of the display interfaces before the acquisition module 601 acquires at least two partitions of the display interface; the partition parameter information includes the pixel coordinate range parameter of the grouping.

[0084] The pixel coordinate range parameter is, for example, the pixel point range of each partition. For example, for the X - axis of the pixel coordinate system, x_Point1, x_Point2, x_Point3, and x_Point4 are defined to respectively represent the abscissa range of the pixel points of each partition, and each value can occupy 3 bits; similarly, for the Y - axis, y_Point1, y_Point2, y_Point3, and y_Point4 are defined to respectively represent the ordinate range of the pixel points of each partition. After obtaining the abscissa range and the ordinate range of each partition, it can be used for the driving IC to determine the target partition that needs to be driven for display.

[0085] Optionally, the electronic device can pre - configure the partition and the parameter information of the grouping for each display interface. For example, for the pre - marked first target interface, such as the lock screen interface and the standby interface of the electronic device, the partition parameter information of the partitions included therein can be preset.

[0086] For a second target interface detected by an electronic device according to a preset detection rule, such as an interface with a refresh rate lower than a preset threshold, partition parameter information can be determined according to a pre-configured rule; for example, the partition parameter information of each partition of the second target interface is preset.

[0087] Optionally, in the embodiments of the present application, the display module 602 includes:

[0088] A driving sub-module, configured to drive a display panel of the display interface to display the target partition according to the pixel coordinate range parameters of the target partition.

[0089] In each display timing, the driving sub-module drives the display panel of the display interface to display the target partition, drives the display panel area corresponding to the target partition, and determines the specific position of the target group according to the pixel coordinate range parameters corresponding to each target group; during the process of the display panel outputting a picture, its driving power consumption is relatively high. In the embodiments of the present application, for non-target partitions, the electronic device does not display these partitions to reduce the power consumption of the electronic device.

[0090] As a third example, in combination with Figure 4 , Figure 4 shows a schematic diagram of the driving principle of an AP device (AOD Partial device); among them, the AP encoder (Encoder) compresses image data through VESA (VESA Compression, Video Electronics Standards Association compression) and sends it to the image register (Graphics RAM, GRAM) module of the driving IC, and the GRAM module sends it to the DSC (Display Stream Compression) decoding module, and the decoding module sends the decoded image data to the timing control (Block) module. The timing control module is the driving sub-module, and the timing control module controls the display of each group according to the pixel coordinate range parameters corresponding to each target group. For example, taking sub-cycle 1 in Figure 3 as an example, within this sub-cycle, Set1 to Set4 respectively have display timings, then the timing control module drives the display of each partition according to the pixel coordinate range parameters of each partition within this sub-cycle.

[0091] Taking Figure 5 as an example again, where Set1 to Set1 respectively have display timings, then within this sub-cycle, the timing control module drives the display of Set1 to Set2 according to the pixel coordinate range parameters of each of Set1 to Set2; and since Set3 and Set4 do not have display timings, the timing control module does not drive the display of Set3 and Set4 within this sub-cycle to reduce power consumption.

[0092] Optionally, in the embodiments of the present application, the device 600 further includes:

[0093] A display-off module, configured to turn off the display of non-target partitions in each of the display timings.

[0094] During the process of the display panel outputting an image, its driving power consumption is relatively high. In the embodiments of the present application, for non-target partitions, the electronic device does not display these partitions, and the display-off module turns off the display of non-target partitions in these partitions to reduce the power consumption of the electronic device. Taking Figure 3 sub-cycle 2 in as an example, where Set2 to Set4 each have a display timing, then each partition displays Set2 to Set4 respectively within this sub-cycle; while Set1 does not have a display timing. For example, the power information in Set1 has not been updated, then Set1 is not driven to be displayed within this sub-cycle to reduce power consumption.

[0095] Optionally, in the embodiments of the present application, the display-off module includes:

[0096] A data adjustment sub-module, configured to set the pixel source data (Source Data) of non-target partitions in the partition to a target analog power supply voltage (AVDD); where the target AVDD is the AVDD of the display device corresponding to the display interface.

[0097] Turning off the display means not displaying. During the process of turning off the display of non-target partitions, the data adjustment sub-module raises the voltage value of SourceData to the AVDD voltage. At this time, the image displayed is a black screen, that is, the display-off function is achieved. Combining Figure 3 , in the Source Data pattern, in sub-cycle 2, the S1 area and the S2 area respectively represent that the voltage value of SourceData is the AVDD voltage. At this time, the entire display interface is in a black screen state; in the RGB (RED, GREEN, BLUE) state, there are target partitions being displayed in the display interface; in the black screen interface state, since the GOA signal is opposite to the synchronization signal, the electronic device is in a black screen (or screen-off) state at this time.

[0098] Optionally, in the embodiments of the present application, the display-off module includes:

[0099] A data storage sub-module, configured to:

[0100] Store the image data of the non-target partitions.

[0101] For non-target partitions that are not displayed, the data storage sub-module stores the image data that is not displayed in these partitions for subsequent use of the image data of these partitions.

[0102] Optionally, in the embodiments of the present application, the acquisition module 601 is configured to:

[0103] When the refresh frequency of the display interface is lower than a preset threshold, at least two partitions of the display interface are obtained.

[0104] For example, when the electronic device refreshes the interface at a fixed frequency and the fixed frequency is lower than the preset threshold, at least two partitions of the displayable interface and the display timing of each group can be obtained; then, within each of the display timings, the target partition corresponding to the display timing is displayed, while the non-target partitions are not displayed, reducing the driving power consumption of the electronic device.

[0105] The interface display device 600 in this embodiment can execute any of the interface display methods provided in the embodiments of the present application, and the implementation principles are similar and will not be elaborated here.

[0106] In the embodiments of the present application, the obtaining module 601 obtains at least two partitions of the display interface and the display timing corresponding to each of the partitions; the display module 602 displays the target partition corresponding to the display timing within each of the display timings, while not displaying the non-target partitions, reducing the driving power consumption of the electronic device and saving the electrical energy of the electronic device while ensuring the normal display of the content of the target partition.

[0107] Based on the same inventive concept, the embodiments of the present application provide an electronic device, which includes: a memory and a processor.

[0108] The memory is communicatively connected to the processor.

[0109] At least one computer program is stored in the memory and is used to implement any of the interface display methods provided in the embodiments of the present application / various alternative embodiments of the interface display method provided in the embodiments of the present application when executed by the processor.

[0110] Those skilled in the art of the present technology can understand that the electronic device provided in the embodiments of the present application can be specifically designed and manufactured for the required purpose, or can also include known devices in a general-purpose computer. These devices have computer programs stored therein, and these computer programs are selectively activated or reconstructed. Such computer programs can be stored in a device (such as a computer) readable medium or in any type of medium suitable for storing electronic instructions and respectively coupled to the bus.

[0111] Compared with the prior art, it can achieve:

[0112] Obtain at least two partitions of the display interface and the display timing corresponding to each partition; within each display timing, display the target partition corresponding to the display timing and do not display non-target partitions, so as to reduce the driving power consumption of the electronic device and save the electric energy of the electronic device while ensuring the normal display of the content of the target partition. The embodiment of the present application solves the technical problem of high power consumption in the existing AMOLED AOD display mode.

[0113] Figure 7 It is a block diagram of an exemplary electronic device 700 according to an embodiment of the present application. Figure 7 The illustrated electronic device 700 is only an example and should not impose any limitations on the functions and usage scope of the embodiments of the present application.

[0114] As Figure 7 shown, in an alternative embodiment of the present application, an electronic device 700 is provided. The electronic device 700 may be embodied in the form of a general-purpose computing device. The components of the electronic device 700 may include, but are not limited to: one or more processors 701, a storage system 702, and a bus 703 connecting different system components (including the storage system 702 and the processor 701).

[0115] The bus 703 represents one or more of a variety of bus architectures. By way of example, these bus architectures include, but are not limited to: Industry Standard Architecture (ISA) bus, Micro Channel Architecture (MAC) bus, Enhanced ISA bus, Video Electronics Standards Association (VESA) local bus, and Peripheral Component Interconnect (PCI) bus.

[0116] The electronic device 700 typically includes a variety of computer system readable media. These media can be any available media that can be accessed by the electronic device 700, including volatile media and non-volatile media, removable media or non-removable media.

[0117] The storage system 702 may include computer system readable media in the form of volatile memory, such as random access memory (RAM) 7021 and / or cache memory 7022. The electronic device 700 may further include other removable / non-removable, volatile / non-volatile computer system storage media (such as Figure 7 the memory 7023). By way of example only, the storage system can be used to read and write non-removable, non-volatile magnetic media ( Figure 7 not shown in the figure, commonly referred to as a "hard disk drive"). Although Figure 7Although not shown in the figure, a disk drive for reading and writing a removable non-volatile disk (such as a floppy disk) and an optical disk drive for reading and writing a removable non-volatile optical disk (such as a CD-ROM, DVD-ROM, or other optical medium) may be provided. In these cases, each drive may be connected to the bus 703 through one or more data medium interfaces. The storage system 702 may include at least one program product, where the program product has at least one program module 7024 configured to execute the multiple functions of the embodiments of the present application.

[0118] A program / utility 7025 having at least one program module 7024 may be stored in, for example, the storage system 702. Such a program module 7024 includes, but is not limited to: an operating system, one or more application programs, other program modules, and program data. In addition, the implementation of a network environment may be included in each or some combination of these examples. The program module 7024 generally executes the functions and / or methods in the embodiments described in the present application.

[0119] The electronic device 700 may also communicate with a display 710 and one or more other external devices 720 (such as a keyboard, a pointing device, etc.), and may also communicate with one or more devices that enable a user to interact with the electronic device 700 and / or with any device that enables the computer system 20 to communicate with one or more other computing devices (such as a network card, a modem, etc.). Such communication may be performed through an input / output (I / O) interface 704. In addition, the electronic device 700 may also communicate with one or more networks (such as a local area network (LAN), a wide area network (WAN), and / or a public network (such as the Internet)) through a network adapter 705. As Figure 7 shown in the figure, the network adapter 705 may communicate with other modules of the electronic device 700 through the bus 703. It should be understood that although Figure 7 not shown in the figure, other hardware and / or software modules may be used in combination with the computer system, including but not limited to: microcode, device drivers, redundant processing units, external disk drive arrays, RAID systems, tape drives, and data backup storage systems, etc.

[0120] It should be noted that Figure 7 only a schematic diagram of a computing system that can be used to implement the various embodiments in the present application is shown schematically. Those skilled in the art can understand that the electronic device 700 can be implemented by introducing additional computing devices.

[0121] Based on the same inventive concept, the embodiments of the present application provide a computer-readable storage medium, on which a computer program is stored, and when the program is executed by a processor, it implements any interface display method provided by the embodiments of the present application.

[0122] Applying the embodiments of the present application can at least achieve the following beneficial effects:

[0123] Obtain at least two partitions of the display interface and the display timings corresponding to each of the partitions; within each of the display timings, display the target partition corresponding to the display timing and do not display non-target partitions, thereby reducing the driving power consumption of the electronic device and saving the electrical energy of the electronic device while ensuring the normal display of the content of the target partition.

[0124] Those skilled in the art of the present technology can understand that the steps, measures, and solutions in the various operations, methods, and processes discussed in the present application can be alternated, changed, combined, or deleted. Further, the other steps, measures, and solutions in the various operations, methods, and processes discussed in the present application can also be alternated, changed, rearranged, decomposed, combined, or deleted. Further, the steps, measures, and solutions in the prior art that are the same as those disclosed in the various operations, methods, and processes in the present application can also be alternated, changed, rearranged, decomposed, combined, or deleted.

[0125] In the description of the present application, it should be understood that the orientation or positional relationship indicated by the terms "center", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present application.

[0126] The terms "first" and "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of such features. In the description of the present application, unless otherwise stated, the meaning of "a plurality" is two or more.

[0127] In the description of the present application, it should be noted that unless otherwise clearly specified and limited, the terms "installed", "connected", and "coupled" should be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or an integral connection; it may be a direct connection, or an indirect connection through an intermediate medium, and it may be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present application can be understood according to specific circumstances.

[0128] In the description of this specification, specific features, structures, materials, or characteristics may be combined in a suitable manner in any one or more embodiments or examples.

[0129] It should be understood that although the steps in the flowchart of the accompanying drawings are shown sequentially according to the indication of the arrows, these steps are not necessarily executed sequentially in the order indicated by the arrows. Unless there is a clear indication in this document, there is no strict order restriction for the execution of these steps, and they can be executed in other orders. Moreover, at least a part of the steps in the flowchart of the accompanying drawings may include multiple sub-steps or multiple stages. These sub-steps or stages are not necessarily executed at the same time, but can be executed at different times, and their execution order is not necessarily sequential, but can be executed alternately or in turn with at least a part of other steps or sub-steps or stages of other steps.

[0130] The above are only some embodiments of the present application. It should be noted that for those of ordinary skill in the art, without departing from the principle of the present application, several improvements and refinements can be made, and these improvements and refinements should also be regarded as the protection scope of the present application.

Claims

1. An interface display method, characterized in that Including: Obtaining at least two partitions of a display interface and a display timing corresponding to each of the partitions; Within each of the display timings, displaying a target partition corresponding to the display timing; Before obtaining the at least two partitions of the display interface, the method further includes: Determining partition parameter information of the partitions included in each of the display interfaces; the partition parameter information includes pixel coordinate range parameters of the partitions; The target partition corresponding to the display timing includes: According to the pixel coordinate range parameters of the target partition, driving a display panel of the display interface to display the target partition; The obtaining of the at least two partitions of the display interface includes: When the refresh frequency of the display interface is lower than a preset threshold, obtaining at least two partitions of the display interface, obtaining a display timing corresponding to each partition, and within each display timing, displaying the target partition corresponding to the display timing and not displaying non-target partitions.

2. The interface display method according to claim 1, wherein The method further includes: Within each of the display timings, turning off the display of non-target partitions among the at least two partitions.

3. The interface display method according to claim 2, wherein The turning off the display of non-target partitions among the at least two partitions includes: Setting the pixel source data (Source Data) of the non-target partitions among the at least two partitions to a target analog power supply voltage (AVDD); wherein the target AVDD is the AVDD of the display device corresponding to the display interface.

4. The interface display method according to claim 2, wherein The turning off the display of non-target partitions among the at least two partitions includes: Storing the image data of the non-target partitions.

5. An interface display device, characterized in that, Including: An obtaining module, configured to obtain at least two partitions of a display interface and a display timing corresponding to each of the partitions; A display module, configured to, within each of the display timings, display a target partition corresponding to the display timing and not display non-target partitions; The interface display device further includes: An information determining module, configured to, before the obtaining module obtains the at least two partitions of the display interface, determine partition parameter information of the partitions included in each of the display interfaces; the partition parameter information includes pixel coordinate range parameters of the partitions; The display module includes: a driving sub-module, configured to, according to the pixel coordinate range parameters of the target partition, drive a display panel of the display interface to display the target partition; The obtaining module is configured to obtain at least two partitions of the display interface when the refresh frequency of the display interface is lower than a preset threshold.

6. An electronic device, characterized in that, Including a memory, a processor, and a computer program stored on the memory and executable on the processor, and when the processor executes the program, implementing the method according to any one of claims 1 to 4.

7. A computer-readable storage medium, characterized in that, A computer program is stored on a computer-readable storage medium, and when the computer program is executed by a processor, implementing the method according to any one of claims 1 to 4.

Citation Information

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