Display method of folding screen, electronic equipment and storage medium
By receiving user input in electronic devices with flexible displays and displaying target text and patterns on multiple display areas, the problem of low utilization of flexible display areas is solved, achieving more efficient display effects and user interaction experience.
Patent Information
- Application Number
- CN202410564940.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-30
- Publication Date
- 2025-10-31
AI Technical Summary
How to improve the utilization rate and display effect of multiple display areas of flexible displays to meet the diverse needs of users.
By receiving user input in a first display area and displaying corresponding target text and patterns on multiple display areas in an electronic device equipped with a flexible display screen, including operations such as translation, scrolling, and resizing, the display effect is improved.
This improves the display effect and utilization rate of multiple display areas of the flexible display screen, meeting the diverse interactive needs of users.
Smart Images

Figure CN120872199A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of terminal technology, and in particular to a display method, electronic device and storage medium for a foldable screen. Background Technology
[0002] With the rapid development of digital technology, smart terminal devices have become indispensable items in people's lives.
[0003] Currently, flexible screens are attracting much attention due to their unique characteristics and enormous potential. Compared to traditional screens, flexible screens are highly flexible and bendable, offering users new interaction methods based on their bendability and meeting more user needs for electronic devices. Flexible displays can provide multiple display areas; how to improve the utilization rate of these multiple display areas requires further research. Summary of the Invention
[0004] This application provides a display method, electronic device, and storage medium for a foldable screen, which improves the display effect of multiple display areas of a flexible display screen and also increases the utilization rate of multiple display areas of a flexible display screen.
[0005] In a first aspect, this application provides a display method for a foldable screen. The method is applied to an electronic device equipped with a flexible display screen. The electronic device includes a first display area, a second display area, and a third display area. The orientations of the first display area and the third display area are different. The method includes: the electronic device receiving a first operation from a user inputting first text in the first display area; in response to the first operation, the electronic device displaying first target text on the third display area, the first target text being obtained based on the first text; and the electronic device displaying second target text on the second display area, the second target text also being obtained based on the first text, the second target text being the same as or different from the first text.
[0006] Using this method, the electronic device can receive user input of first text in the first display area, display the first target text corresponding to the first text in the third display area, and display the second target text corresponding to the first text in the second display area. The user of the electronic device can view the displayed second target text through the second display area, while other users can view the displayed first target text through the third display area, thus improving the display effect of multiple display areas on the electronic device.
[0007] In conjunction with the first aspect, in one possible implementation, the electronic device includes a first display screen and a second display screen, the first display screen being a flexible display screen, the display area of the first display screen including a first display area and a second display area, and the display area of the second display screen including a third display area.
[0008] In this way, when the electronic device is an inward-folding screen device, the electronic device can improve the display effect of the multiple display areas of the inward-folding screen device.
[0009] In other possible implementations, the electronic device includes a first display screen, which is a flexible display screen, and the display area of the first display screen includes a first display area and a second display area. The electronic device receives a first operation from a user inputting first text in the first display area; in response to the first operation, the electronic device displays first target text on the second display area, the first target text being obtained based on the first text.
[0010] In this way, when the electronic device is an outward-folding screen device, the electronic device can improve the display effect of the multiple display areas of the outward-folding screen device.
[0011] In conjunction with the first aspect, in one possible implementation, the electronic device includes a first display screen, which is a flexible display screen, and the display area of the first display screen includes a first display area, a second display area, and a third display area.
[0012] In this way, when the electronic device is a tri-fold screen device, the electronic device can improve the display effect of the multiple display areas of the tri-fold screen device.
[0013] The application does not limit the use of flexible displays to inward-folding, outward-folding, and tri-folding screen devices. Electronic devices equipped with flexible displays can also be other types of devices.
[0014] In conjunction with the first aspect, in one possible implementation, after the electronic device displays the first target text on the third display area, the method further includes: the electronic device receiving a second operation by a user to input a first pattern on the first display area; in response to the second operation, the electronic device displays the first target text and the first pattern on the third display area; and / or, in response to the second operation, the electronic device displays the second target text and the first pattern on the second display area.
[0015] Optionally, after receiving a user's input of a first pattern in the first display area, the electronic device can add new layers in the second and third display areas, and automatically display the first pattern on the newly added layers.
[0016] In one possible implementation, the electronic device can display the first pattern at a fixed position in the second and third display areas according to a preset size. In other possible implementations, the electronic device can also obtain the position where the user draws the first pattern in the first display area and display the first pattern at a relative position in the second and third display areas. Optionally, the size of the first pattern can be a preset size, or the size of the first pattern can be based on the real-time size of the first pattern drawn by the user.
[0017] Optionally, after receiving a user's input of a first pattern in the first display area, the user can also drag the first pattern to the second display area and display it there. Correspondingly, the electronic device can display the first pattern at a corresponding position in the third display area, which can be determined by the display position of the first pattern in the second display area. In one possible implementation, the display position of the first pattern in the second display area can be determined based on the ending position of the user dragging the first pattern. In other possible implementations, the display position of the first pattern in the second display area can also be preset. Optionally, the size of the first pattern can be a preset size, or the size of the first pattern can be based on the real-time size of the user-drawn drawing area 306.
[0018] In this way, while the electronic device displays the first target text and the second target text, it can also receive user input of the first pattern in the first display area and display the first pattern in the second and third display areas, further improving the display effect of multiple display areas on the electronic device.
[0019] In conjunction with the first aspect, in one possible implementation, the size of the first target text and the size of the second target text are both a first size; after the electronic device displays the first target text on the third display area, the method further includes: the electronic device receiving a third operation performed by a user on the first display area; in response to the third operation, the electronic device displaying the first target text of a second size on the third display area, the second size being different from the first size; and / or, in response to the third operation, the electronic device displaying the second target text of the second size on the second display area. Thus, the electronic device can receive user operations on the first display area, changing the size of the second target text displayed on the second display area and the size of the first target text displayed on the third display area.
[0020] In conjunction with the first aspect, in one possible implementation, the electronic device displays the first target text on a third display area, specifically including: the electronic device scrolling the first text on the third display area in a first direction at a first speed; the electronic device displays the second target text on a second display area, specifically including: the electronic device scrolling the first text on the second display area in a first direction at a first speed. In this way, the electronic device can display the first text in a "marquee" pattern on multiple display areas.
[0021] In conjunction with the first aspect, in one possible implementation, after the electronic device scrolls the first text in a first direction at a first rate on a third display area, the method further includes: the electronic device receiving a fourth operation from the user on the first display area; in response to the fourth operation, the electronic device scrolls the first text in the third display area in a first direction at a second rate, the second rate being different from the first rate. And / or, in response to the fourth operation, the electronic device scrolls the first text in a second display area in a first direction at a second rate. Thus, after the electronic device displays the first text in a "marquee" pattern on multiple display areas, the electronic device can receive an operation from the user in the first display area to change the "marquee" pattern, for example, change the scrolling speed of the first text.
[0022] Optionally, the electronic device can also receive user input and simultaneously change the scrolling speed and scrolling direction of the first text.
[0023] In conjunction with the first aspect, in one possible implementation, after the electronic device scrolls the first text in a first direction at a first rate on a third display area, the method further includes: the electronic device receiving a fifth operation performed by a user on the first display area; in response to the fifth operation, the electronic device scrolls the first text in a second direction at a first rate on the third display area, the second direction being different from the first direction; and / or, in response to the fifth operation, the electronic device scrolls the first text in a second direction at a first rate on a second display area. Thus, after the electronic device displays the first text in a "marquee" pattern on multiple display areas, the electronic device can receive an operation from the user in the first display area to change the "marquee" pattern, for example, by changing the scrolling direction of the first text.
[0024] In conjunction with the first aspect, in one possible implementation, the language of the first text input on the first display area is a first language; the language of the first target text displayed on the third display area is a second language, which is different from the first language. The first target text is the text obtained by the electronic device translating the first text into the second language. In this way, the electronic device can display first text in multiple different languages on multiple display areas.
[0025] In conjunction with the first aspect, in one possible implementation, the second target text is identical to the first text. For example, the second target text could be the first text in the first language.
[0026] Optionally, the second target text may also be different from the first text. For example, the second target text could be the text obtained by translating the first text into a fourth language. The fourth language is different from the first language, and also different from the second language.
[0027] In conjunction with the first aspect, in one possible implementation, after the electronic device displays the first target text on the third display area, the method further includes: the electronic device receiving a sixth operation performed by a user on the first display area; in response to the sixth operation, the electronic device acquiring third target text, which is text obtained by translating the first text into a third language, the third language being different from the second language; the electronic device displaying the third target text on the third display area; and / or, in response to the sixth operation, the electronic device displaying second target text on a second display area. Thus, after the electronic device displays first text in multiple different languages on multiple display areas, the electronic device can receive user operations on the first display area to switch the language of the first text displayed on the third display screen.
[0028] In conjunction with the first aspect, in one possible implementation, the electronic device displays first target text on a third display area, specifically including: the electronic device displaying a first portion of the first target text on the third display area; the electronic device displays second target text on a second display area, specifically including: the electronic device displaying a first portion of the second target text on the second display area; after the electronic device displays the first target text on the third display area, the method further includes: the electronic device receiving a seventh operation from a user on the first display area; in response to the seventh operation, the electronic device displaying a second portion of the first target text on the third display area; and / or, in response to the seventh operation, the electronic device displaying a second portion of the second target text on the second display area. Thus, when displaying the first target text on the third display area, if the third display area displays a portion of the first target text, the electronic device can receive a user operation to refresh other content of the first target text displayed on the third display area. Similarly, the electronic device can also refresh other content of the second target text displayed on the second display area.
[0029] In conjunction with the first aspect, in one possible implementation, when the electronic device is in an unfolded state, the angle between the plane containing the first display area and the plane containing the second display area is greater than a first value; when the electronic device is in a folded state, the angle between the plane containing the first display area and the plane containing the second display area is greater than a second value and less than a first value.
[0030] Secondly, this application provides an electronic device, which includes a memory and a processor; wherein the memory and the processor are coupled, the memory is used to store a computer program, and when the processor executes a call to the computer program, the electronic device performs a method provided in any possible implementation of any of the above aspects.
[0031] Thirdly, this application provides a computer-readable storage medium including instructions that, when executed on an electronic device, cause the electronic device to perform a method provided in any possible implementation of any of the above aspects.
[0032] Fourthly, this application provides a chip system including one or more processors, which are used to invoke computer instructions to cause an electronic device to perform a method provided in any possible implementation of any of the above aspects.
[0033] Fifthly, this application provides a computer program product containing instructions that, when the computer program product is run on an electronic device, causes the electronic device to execute a method provided in any possible implementation of any of the above aspects.
[0034] For a description of the beneficial effects in aspects two through five, please refer to the description of the beneficial effects in aspect one; this application will not repeat them here. Attached Figure Description
[0035] Figures 1A-1L A schematic diagram of the display form of a foldable screen is shown;
[0036] Figure 2A A schematic diagram of the structure of the electronic device 100 is shown;
[0037] Figure 2B and Figure 2C This application provides two application scenario diagrams.
[0038] Figures 3A-3F A schematic diagram is shown of an electronic device 100 displaying first text on multiple displays in a "marquee" style;
[0039] Figures 4A-4D A schematic diagram is shown of an electronic device 100 receiving a user operation and adding a first icon on a second display screen;
[0040] Figures 5A-5C A schematic diagram is shown of an electronic device 100 receiving a user operation to add a doodle pattern on a second display screen;
[0041] Figures 6A-6DA schematic diagram is shown of an electronic device 100 receiving a change in the scrolling direction of first text on a second display screen;
[0042] Figures 7A-7D A schematic diagram is shown of an electronic device 100 receiving a change in the scrolling direction and scrolling rate of first text on a second display screen;
[0043] Figures 8A-8C A schematic diagram is shown of an electronic device 100 receiving a change in the display size of first text on a second display screen;
[0044] Figures 9A-9D A schematic diagram is shown of an electronic device 100 displaying different translated texts on multiple displays;
[0045] Figures 10A-10C A schematic diagram is shown of another electronic device 100 receiving user operation and adding a first icon on a second display screen;
[0046] Figures 11A-11B A schematic diagram is shown of another electronic device 100 receiving user input to add doodle patterns on a second display screen;
[0047] Figures 12A-12D A schematic diagram is shown of an electronic device 100 receiving a user operation to switch the display of first text in another language on a second display screen;
[0048] Figures 13A-13D This diagram illustrates an electronic device 100 receiving a user operation to switch other content of a first target text displayed on a second display screen;
[0049] Figures 14A-14C A schematic diagram is shown of an electronic device 100 receiving a change in the display size of a first target text on a second display screen;
[0050] Figure 15 This is a flowchart illustrating a foldable screen display method provided in this application. Detailed Implementation
[0051] The technical solutions in the embodiments of this application will be clearly and thoroughly described below with reference to the accompanying drawings. In the description of the embodiments of this application, unless otherwise stated, " / " means "or," for example, A / B can mean A or B; the word "and / or" in the text is merely a description of the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent: A existing alone, A and B existing simultaneously, and B existing alone. Furthermore, in the description of the embodiments of this application, "multiple" refers to two or more than two.
[0052] Hereinafter, the terms "first" and "second" are used for descriptive purposes only and should not be construed as implying or suggesting relative importance or implicitly indicating the number of indicated technical features. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature, and in the description of the embodiments of this application, unless otherwise stated, "multiple" means two or more.
[0053] The term "user interface (UI)" used in the following embodiments of this application refers to the medium interface through which an application or operating system interacts and exchanges information with the user. It realizes the conversion between the internal form of information and the form that the user can accept. The commonly used form of user interface is the graphical user interface (GUI), which refers to a user interface related to computer operation displayed in a graphical manner. It can be visible interface elements such as text, icons, buttons, menus, tabs, text boxes, dialog boxes, status bars, navigation bars, and widgets displayed on the screen of a wearable device.
[0054] First, the display screen of the electronic device 100 provided in this application will be described.
[0055] The display screen of the electronic device in this application may include a foldable screen. Foldable screens can be further divided into inward folding screens, outward folding screens, etc. In some embodiments, the foldable screen may also be a tri-fold screen or other types of foldable screens; this application only uses bi-fold and tri-fold screens as examples for illustration.
[0056] Figures 1A-1L A schematic diagram of the display form of a foldable screen is shown.
[0057] Foldable screens can be divided into inward-folding screens and outward-folding screens. The display forms of inward-folding and outward-folding screens can be divided into folded state, intermediate state, and unfolded state.
[0058] in, Figure 1A-Figure 1B A schematic diagram of the inward-folding screen display is shown.
[0059] Figure 1A A schematic diagram of the display form when the inward-folding screen is in the unfolded state is shown.
[0060] Figure 1A(a) illustrates an exemplary front view of the inward-folding screen in its unfolded state. When the inward-folding screen is in its unfolded state, the displayable screens of the folding screen include screen A, screen B, and screen C. Screen A and screen B can be a single, complete display or two separate display screens. The display area containing screens A and B can also be referred to as the inner screen. For example, when the inward-folding screen is in its unfolded state, the angle α between screens A and B is greater than or equal to a first value and less than or equal to a second value. For example, the first value can be 160 degrees, and the second value can be 180 degrees. For instance, when the inward-folding screen is in its unfolded state, the angle α between screens A and B can be 180 degrees.
[0061] Figure 1A (b) illustrates an example view of the rear of the inward-folding screen when it is in the folded state. When the inward-folding screen is in the folded state, the display of the folding screen also includes screen C. Screen C is a display that is completely independent of screens A and B.
[0062] Figure 1B A schematic diagram of the display form when the inward-folding screen is in the folded state is shown.
[0063] The folded state refers to the inward-folding screen's ability to bend at a certain angle towards the facing screens A and B. When the inward-folding screen is in the folded state, the displayable screens include screens A, B, and C. In the intermediate state, the angle α between screens A and B is greater than or equal to a third value and less than or equal to a first value. For example, the first value could be 160 degrees, and the third value could be 90 degrees. For instance, when the inward-folding screen is in the folded state, the angle α between screens A and B could be 120 degrees.
[0064] Figure 1C A schematic diagram of the display form of the inward-folding screen when it is in a fully folded state is shown.
[0065] The inward-folding screen can continue to bend in the direction where screens A and B are facing each other, until the inward-folding screen is in a fully folded state.
[0066] like Figure 1B As shown, when the inward-folding screen is fully folded, the only displayable screen is screen C; screens A and B are hidden and invisible. In the fully folded state, the angle α between screens A and B is greater than or equal to 0 degrees and less than a third value. For example, the third value can be 90 degrees. For instance, when the inward-folding screen is fully folded, the angle α between screens A and B can be 0 degrees.
[0067] Figures 1D-1F Several display forms of outward-folding screens are illustrated.
[0068] Similar to inward-folding screens, outward-folding screens can also be divided into three display forms: unfolded, intermediate, and folded.
[0069] Figure 1D (a) and (b) in the figure show the display form when the outward-folding screen is in the unfolded state.
[0070] in, Figure 1D (a) illustrates an exemplary front view of the outward-folding screen in its unfolded state. When the outward-folding screen is in its unfolded state, the displayable screens of the folding screen include screen A and screen B. Screen A and screen B can be a single, continuous display or two separate displays. Exemplarily, when the inward-folding screen is in its unfolded state, the angle α between screen A and screen B is greater than or equal to a first value and less than or equal to a second value. Exemplarily, the first value can be 160 degrees, and the second value can be 180 degrees. Exemplarily, when the outward-folding screen is in its unfolded state, the angle α between screen A and screen B can be 180 degrees.
[0071] Figure 1D (b) in the figure exemplarily shows a rear view of the outward-folding screen in the unfolded state. When the outward-folding screen is in the unfolded state, the display of the outward-folding screen does not include the C-screen, compared to the inward-folding screen in the unfolded state.
[0072] Figure 1E This shows the display form of the outward-folding screen when it is in the folded state.
[0073] In the folded state, the outward-folding screen can be bent in a direction opposite to screens A and B, forming a folded shape with a certain angle. That is, the folding directions of the outward-folding screen and the inward-folding screen are opposite. When the outward-folding screen is in the folded state, the displayable screens include screens A and B, and the angle α between screens A and B is greater than or equal to a third value and less than or equal to a first value. For example, the third value could be 90 degrees, and the first value could be 160 degrees. For instance, when the outward-folding screen is in the folded state, the angle α between screens A and B could be 120 degrees.
[0074] Figure 1F The display form of the outward-folding screen when it is fully folded is shown.
[0075] like Figure 1F As shown, when the outward-folding screen is in a fully folded state, the displayable screens can be screen A and screen B. The angle α between screen A and screen B is greater than or equal to 0 degrees and less than or equal to a third value, for example, the third value can be 90 degrees. For example, when the outward-folding screen is in a fully folded state, the angle α between screen A and screen B can be 0 degrees.
[0076] Optional, Figures 1A-1F The inward and outward folding screens shown are illustrated using left-right folding as an example. In some embodiments, the inward and outward folding screens can also be folded vertically, and this application does not limit this.
[0077] Alternatively, flexible displays can also take other display forms. Figures 1A-1FThis is for illustrative purposes only and does not constitute a limitation thereof.
[0078] Figure 1G-Figure 1L A schematic diagram of the tri-fold screen display form is shown.
[0079] Figure 1G A schematic diagram of the display form of the tri-fold screen when it is fully unfolded is shown.
[0080] Figure 1G (a) exemplarily shows a front view of the tri-fold screen in its fully unfolded state. When unfolded, the tri-fold screen includes screens A, B, and C. The tri-fold screen also includes hinges D and E for rotating screens A, B, and C in the electronic device 100. Screens A and B can rotate along hinge D in opposite or facing directions until the back of screen A is flush with the back of screen B, or until the display surface of screen A is flush with the display surface of screen B. With screen C rotating at a constant angle, when screen B rotates along hinge D, screen B can cause screen C to rotate by the same angle along hinge D.
[0081] Screens C and B can rotate along hinge E in opposite directions or facing directions until the back of screen C is flush with the back of screen B, or until the display surface of screen C is flush with the display surface of screen B. With screen A rotating at a constant angle, when screen B rotates along hinge E, screen B can cause screen A to rotate by the same angle along hinge E.
[0082] In some embodiments, the angle between screen A and screen B can be called α, and the angle between screen B and screen C can be called β.
[0083] When the tri-fold screen is fully unfolded, the display surfaces of screen A, screen B, and screen C of the electronic device 100 can all be on the same plane. The angle α between the display surfaces of screen A and screen B can be close to 180°, and the angle β between the display surfaces of screen B and screen C can be close to 180°.
[0084] exist Figure 1G In the front view shown in (a), the display screens of the electronic device 100 can be screen A, screen B, and screen C from left to right.
[0085] Figure 1G (b) in the example shows the rear view of the tri-fold screen in its fully unfolded state.
[0086] When the tri-fold screen is fully unfolded, the backs of screen A, screen B, and screen C of electronic device 100 can all be on the same plane. The angle between the back of screen A and the back of screen B can be close to 180°, and the angle between the back of screen B and the back of screen C can also be close to 180°.
[0087] Figure 1H A schematic diagram of the display form of the tri-fold screen when it is in a fully folded state is shown.
[0088] Screens A and B can rotate in opposite directions along hinge D until the back of screen A is flush with the back of screen B. Screens C and B can rotate in opposite directions along hinge E until the display surface of screen C is flush with the display surface of screen B, so that the tri-fold screen is in a fully folded state.
[0089] When the tri-fold screen is in a fully folded state, the angle α between the display surface of screen A and the display surface of screen B can be close to 360°, the angle between the back of screen A and the back of screen B can be close to 0°, the angle β between the display surface of screen B and the display surface of screen C can be close to 0°, and the angle between the back of screen B and the back of screen C can be close to 360°.
[0090] Figure 1H Image (a) shows a front view of the electronic device in its fully folded state. Figure 1H As shown in (a), when the tri-fold screen is in a fully folded state, the electronic device 100 only displays the display surface of screen A.
[0091] Figure 1H Image (b) shows a rear view of the electronic device in its fully folded state. Figure 1H As shown in (b), when the tri-fold screen is in a fully folded state, the electronic device 100 only displays the back of the C screen.
[0092] Figure 1I A schematic diagram of the display form of the tri-fold screen in the folded state is shown.
[0093] Folded states can include, but are not limited to, BC folded state, AB folded state, and BC folded state.
[0094] 1. When only the B screen and C screen are bonded together, it can also be called the BC folded state.
[0095] Screens C and B can rotate in the direction they face each other along the hinge E until the display surface of screen C is in contact with the display surface of screen B, so that the tri-fold screen is in the BC folded state.
[0096] Figure 1I An exemplary schematic diagram of the configuration of some electronic devices 100 in the BC folded state is shown.
[0097] like Figure 1I Image (a) shows a front view of the electronic device 100 in the BC folded state. Figure 1IAs shown in (a), when the tri-fold screen is in the BC folded state, the electronic device 100 displays the display surface of screen A and the back surface of screen C. The angle α between the display surface of screen A and the display surface of screen B can be close to 180°. The angle β between the display surface of screen B and the display surface of screen C can be close to 0°, and the angle between the back surface of screen B and the back surface of screen C can be close to 360°.
[0098] Figure 1I Figure (b) shows a rear view of the electronic device in the BC folded state. Figure 1I As shown in (b), when the tri-fold screen is in the BC folded state, the electronic device 100 displays the back of screen A and the back of screen B. The angle between the back of screen A and the back of screen B can be close to 180°.
[0099] 2. When only screens A and B are bonded together, it can also be called the AB folding state.
[0100] Screens A and B can rotate in opposite directions along pivot D until the back of screen A and the back of screen B are in contact, so that the tri-fold screen is in the AB folded state.
[0101] Figure 1J An exemplary schematic diagram of the configuration of some electronic devices 100 in the AB folded state is shown.
[0102] like Figure 1J Image (a) shows a front view of electronic device 100 in the AB folded state. Figure 1J As shown in (a), when the tri-fold screen is in the AB folded state, the electronic device 100 displays the display surface of screen B and the display surface of screen C. The angle β between the display surface of screen B and the display surface of screen C can be close to 180°.
[0103] Figure 1J Figure (b) shows a rear view of the electronic device in the AB folded state. Figure 1J As shown in (b), when the tri-fold screen is in the AB folded state, the electronic device 100 displays the display surface of screen A and the back surface of screen C. The angle α between the display surface of screen A and the display surface of screen B can be close to 360°. The angle between the back surface of screen A and the back surface of screen B can be close to 0°. The angle between the back surface of screen B and the back surface of screen C can be close to 180°.
[0104] Figure 1K and Figure 1L This diagram illustrates the display configuration of a tri-fold screen in another folded state.
[0105] Figure 1K The image shown is a front view of the tri-fold screen in another folded state. Figure 1KAs shown, when the tri-fold screen is in another folded state, the electronic device 100 displays screen A, screen B, and screen C. The angle α between screen A and screen B can be between 180° and 360°. The angle β between screen B and screen C can be between 0° and 180°.
[0106] Figure 1L The image shown is a rear view of the tri-fold screen in another folded state. Figure 1L As shown, when the tri-fold screen is in another folded state, the electronic device 100 displays the back of screen A, the back of screen B, and the back of screen C. The angle between the back of screen A and the back of screen B can be between 0° and 180°. The angle between the back of screen B and the back of screen C can be between 180° and 360°.
[0107] Optional, Figure 1G-Figure 1L The screens A, B, and C shown can be a single, complete display screen. Screens A and B can also be a single, complete display screen, as can screens B and C.
[0108] Optional, Figure 1G-Figure 1L Screen A shown can also be referred to as 101. Figure 1G-Figure 1L Screen B shown can also be referred to as 102. Figure 1G-Figure 1L The C screen shown can also be referred to as 103.
[0109] It should be noted that, Figure 1G-Figure 1L The diagram only shows a partial display form of the tri-fold screen. The tri-fold screen can also be in other display forms, and this application does not limit it.
[0110] based on Figures 1A-1L It is understood that the electronic device 100 may include multiple displays. For example, the electronic device 100 may include a first display and a second display. The first display may be a flexible display, and the first display may include a first display area, or a first display area and a second display area, wherein the orientation of the second display area is opposite to that of the first display area.
[0111] In some embodiments, the first display screen may be Figures 1A-1C Screens A and B, as shown, can be a single, continuous display screen or two separate displays. The second display screen can be... Figures 1A-1C Screen C is shown.
[0112] In some embodiments, the first display screen may also be Figures 1D-1F As shown in the diagram, screen A, the second display screen can also be... Figures 1D-1F Screen B is shown.
[0113] In some embodiments, the first display screen may also be Figure 1G-Figure 1L The B and C screens shown can also be the second display screen. Figure 1G-Figure 1L Screen A is shown. Alternatively, the first display screen could also be... Figure 1G-Figure 1L As shown in Screen A and Screen B, the second display screen can also be... Figure 1G-Figure 1L Screen C is shown.
[0114] Electronic device 100 can display text and images through the multiple displays, thereby improving the utilization rate of the multiple displays and enhancing the display effect of text and images.
[0115] The electronic device 100 can receive input from a user in a first display area of a first display screen and display first target text on a second display screen. The first target text is obtained based on the first text. The first text may include, but is not limited to, any one or more of the following: text, images, emoticons, doodles, etc.
[0116] Optionally, the first display screen of the electronic device 100 also includes a second display area. While displaying the first target text on the second display screen, the electronic device 100 can also display a second target text on the second display area. The second target text may be the same as or different from the first text. When the second target text is different from the first text, the second target text is still obtained based on the first text. In this way, the electronic device 100 can display the display effect of the first text to other users through the second display screen, and the local user can also view the display effect of the first text entered by the user through the second display area of the first display screen.
[0117] In some embodiments, displaying the first target text on the second display screen by the electronic device 100 may include: the electronic device 100 scrolling the first text on the second display screen in a first direction at a first rate, so that the second display screen can display the first text in a "marquee" effect. In this way, the user can receive user input of text information to be displayed on the first display screen, and the first text is dynamically displayed on the second display screen, thereby improving the text display effect.
[0118] In other embodiments, when the first text is text, displaying the first target text on the second display screen by the electronic device 100 may include: the electronic device 100 receiving the first text in a first language input by the user on a first display area of the first display screen, translating the first text in the first language into the first target text in a second language, and displaying the first target text in the second language on the second display screen, wherein the first language and the second language are different. In this way, the electronic device 100 can display different translated texts on multiple display screens, improving the text display effect.
[0119] The hardware structure of an electronic device 100 provided in the embodiments of this application is described below.
[0120] Figure 2A A schematic diagram of the structure of the electronic device 100 is shown.
[0121] The following description uses electronic device 100 as an example to illustrate the embodiment. It should be understood that... Figure 2A The electronic device 100 shown is merely an example, and the electronic device 100 may have more than Figure 2A The more or fewer components shown can be combined into two or more components, or they can have different component configurations. Figure 2A The various components shown 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.
[0122] Electronic device 100 may include: processor 110, external memory interface 120, internal memory 121, universal serial bus (USB) interface 130, charging management module 140, power management module 141, battery 142, antenna 1, antenna 2, mobile communication module 150, wireless communication module 160, audio module 170, speaker 170A, receiver 170B, microphone 170C, headphone jack 170D, sensor module 180, button 190, motor 191, indicator 192, camera 193, display screen 194, and subscriber identification module (SIM) card interface 195, etc. The sensor module 180 may include a pressure sensor 180A, a gyroscope sensor 180B, a barometric pressure sensor 180C, a magnetic sensor 180D, an accelerometer sensor 180E, a distance sensor 180F, a proximity sensor 180G, a fingerprint sensor 180H, a temperature sensor 180J, a touch sensor 180K, an ambient light sensor 180L, a bone conduction sensor 180M, etc.
[0123] It is understood that the structures illustrated in the embodiments of this application do not constitute a specific limitation on the electronic device 100. In other embodiments of this application, the electronic device 100 may include more or fewer components than illustrated, or combine some components, or split some components, or have different component arrangements. The illustrated components may be implemented in hardware, software, or a combination of software and hardware.
[0124] Processor 110 may include one or more processing units, such as an application processor (AP), a modem processor, a graphics processing unit (GPU), an image signal processor (ISP), a controller, memory, a video codec, a digital signal processor (DSP), a baseband processor, and / or a neural network processing unit (NPU). These different processing units may be independent devices or integrated into one or more processors.
[0125] The controller can be the nerve center and command center of the electronic device 100. The controller can generate operation control signals according to the instruction opcode and timing signals to complete the control of fetching and executing instructions.
[0126] The processor 110 may also include a memory for storing instructions and data. In some embodiments, the memory in the processor 110 is a cache memory. This memory can store instructions or data that the processor 110 has just used or that are used repeatedly. If the processor 110 needs to use the instruction or data again, it can retrieve it directly from the memory. This avoids repeated accesses, reduces the waiting time of the processor 110, and thus improves the efficiency of the system.
[0127] In some embodiments, the processor 110 may include one or more interfaces. Interfaces may include inter-integrated circuit (I2C) interfaces, inter-integrated circuit sound (I2S) interfaces, pulse code modulation (PCM) interfaces, universal asynchronous receiver / transmitter (UART) interfaces, mobile industry processor interfaces (MIPI), general-purpose input / output (GPIO) interfaces, subscriber identity module (SIM) interfaces, and / or universal serial bus (USB) interfaces, etc.
[0128] It is understood that the interface connection relationships between the modules illustrated in the embodiments of this application are merely illustrative and do not constitute a structural limitation on the electronic device 100. In other embodiments of this application, the electronic device 100 may also employ different interface connection methods or combinations of multiple interface connection methods as described in the above embodiments.
[0129] The charging management module 140 receives charging input from a charger. The charger can be a wireless charger or a wired charger. In some wired charging embodiments, the charging management module 140 receives charging input from the wired charger via the USB interface 130. In some wireless charging embodiments, the charging management module 140 receives wireless charging input via the wireless charging coil of the electronic device 100. While charging the battery 142, the charging management module 140 can also supply power to the electronic device via the power management module 141.
[0130] The power management module 141 connects the battery 142, the charging management module 140, and the processor 110. The power management module 141 receives input from the battery 142 and / or the charging management module 140, providing power to the processor 110, internal memory 121, external memory, display screen 194, camera 193, and wireless communication module 160, etc. The power management module 141 can also monitor parameters such as battery capacity, battery cycle count, and battery health status (leakage current, impedance). In some other embodiments, the power management module 141 may also be located within the processor 110. In other embodiments, the power management module 141 and the charging management module 140 may be located in the same device.
[0131] The wireless communication function of electronic device 100 can be realized through antenna 1, antenna 2, mobile communication module 150, wireless communication module 160, modem processor and baseband processor, etc.
[0132] Antenna 1 and antenna 2 are used to transmit and receive electromagnetic wave signals. Each antenna in electronic device 100 can be used to cover one or more communication frequency bands. Different antennas can also be multiplexed to improve antenna utilization. For example, antenna 1 can be multiplexed as a diversity antenna for a wireless local area network. In some other embodiments, the antennas can be used in conjunction with tuning switches.
[0133] The mobile communication module 150 can provide solutions for wireless communication, including 2G / 3G / 4G / 5G, applied to the electronic device 100. The mobile communication module 150 may include at least one filter, switch, power amplifier, low-noise amplifier (LNA), etc. The mobile communication module 150 can receive electromagnetic waves via antenna 1, and perform filtering, amplification, and other processing on the received electromagnetic waves before transmitting them to a modem processor for demodulation. The mobile communication module 150 can also amplify the signal modulated by the modem processor and convert it into electromagnetic waves for radiation via antenna 1. In some embodiments, at least some functional modules of the mobile communication module 150 may be housed in the processor 110. In some embodiments, at least some functional modules of the mobile communication module 150 and at least some modules of the processor 110 may be housed in the same device.
[0134] The modem processor may include a modulator and a demodulator. The modulator modulates the low-frequency baseband signal to be transmitted into a mid-to-high frequency signal. The demodulator demodulates the received electromagnetic wave signal into a low-frequency baseband signal. The demodulator then transmits the demodulated low-frequency baseband signal to the baseband processor for processing. After processing by the baseband processor, the low-frequency baseband signal is transmitted to the application processor. The application processor outputs sound signals through an audio device (not limited to speaker 170A, receiver 170B, etc.) or displays images or videos through the display screen 194. In some embodiments, the modem processor may be a separate device. In other embodiments, the modem processor may be independent of the processor 110 and may be housed in the same device as the mobile communication module 150 or other functional modules.
[0135] The wireless communication module 160 can provide solutions for wireless communication applications on the electronic device 100, including wireless local area networks (WLANs) (such as Wireless Fidelity (Wi-Fi) networks), Bluetooth (BT), Global Navigation Satellite System (GNSS), frequency modulation (FM), near-field communication (NFC), and infrared (IR) technologies. The wireless communication module 160 can be one or more devices integrating at least one communication processing module. The wireless communication module 160 receives electromagnetic waves via antenna 2, performs frequency modulation and filtering of the electromagnetic wave signals, and sends the processed signal to processor 110. The wireless communication module 160 can also receive signals to be transmitted from processor 110, perform frequency modulation and amplification, and convert them into electromagnetic waves for radiation via antenna 2.
[0136] In some embodiments, antenna 1 of electronic device 100 is coupled to mobile communication module 150, and antenna 2 is coupled to wireless communication module 160, enabling electronic device 100 to communicate with networks and other devices via wireless communication technology. The wireless communication technology may include Global System for Mobile Communications (GSM), General Packet Radio Service (GPRS), Code Division Multiple Access (CDMA), Wideband Code Division Multiple Access (WCDMA), Time Division Code Division Multiple Access (TD-SCDMA), Long Term Evolution (LTE), BT, GNSS, WLAN, NFC, FM, and / or IR technologies, etc. The GNSS may include the Global Positioning System (GPS), the Global Navigation Satellite System (GLONASS), the BeiDou Navigation Satellite System (BDS), the Quasi-Zenith Satellite System (QZSS), and / or satellite-based augmentation systems (SBAS).
[0137] Electronic device 100 implements display functions through a GPU, a display screen 194, and an application processor. The GPU is a microprocessor for image processing, connected to the display screen 194 and the application processor. The GPU is used to perform mathematical and geometric calculations and for graphics rendering. Processor 110 may include one or more GPUs, which execute program instructions to generate or modify display information.
[0138] Display screen 194 is used to display images, videos, etc. Display screen 194 includes a display panel. The display panel can be a liquid crystal display (LCD). The display panel can also be manufactured using organic light-emitting diodes (OLEDs), active-matrix organic light-emitting diodes (AMOLEDs), flexible light-emitting diodes (FLEDs), miniled, microled, micro-OLEDs, quantum dot light-emitting diodes (QLEDs), etc. In some embodiments, electronic device 100 may include one or N displays 194, where N is a positive integer greater than 1.
[0139] In some embodiments, the display screen 194 may include a foldable screen. The foldable screen may be an inward-folding screen or an outward-folding screen. In some embodiments, the foldable screen may also be other types of foldable screens such as a tri-fold screen, which are not limited in this application.
[0140] Electronic device 100 can perform shooting functions through ISP, camera 193, video codec, GPU, display 194 and application processor.
[0141] The ISP (Image Signal Processor) is used to process data fed back from the camera 193. For example, when taking a picture, the shutter is opened, and light is transmitted through the lens to the camera's photosensitive element. The light signal is converted into an electrical signal, and the camera's photosensitive element transmits the electrical signal to the ISP for processing, converting it into an image visible to the naked eye. The ISP can also perform algorithmic optimization on image noise and brightness. The ISP can also optimize parameters such as exposure and color temperature of the shooting scene. In some embodiments, the ISP can be set in the camera 193.
[0142] Camera 193 is used to capture still images or videos. An object is projected onto a photosensitive element by generating an optical image through the lens. The photosensitive element can be a charge-coupled device (CCD) or a complementary metal-oxide-semiconductor (CMOS) phototransistor. The photosensitive element converts the light signal into an electrical signal, which is then passed to an ISP for conversion into a digital image signal. The ISP outputs the digital image signal to a DSP for processing. The DSP converts the digital image signal into image signals in standard RGB, YUV, or other formats. In some embodiments, the electronic device 100 may include one or N cameras 193, where N is a positive integer greater than 1.
[0143] Digital signal processors (DSPs) are used to process digital signals. Besides digital image signals, they can also process other digital signals. For example, when electronic device 100 selects a frequency, the DSP can perform Fourier transforms on the frequency energy.
[0144] Video codecs are used to compress or decompress digital video. Electronic device 100 may support one or more video codecs. Thus, electronic device 100 can play or record videos in various encoding formats, such as Moving Picture Experts Group (MPEG) 1, MPEG2, MPEG3, MPEG4, etc.
[0145] An NPU (Neural Processing Unit) is a computational processor for neural networks (NNs). By borrowing the structure of biological neural networks, such as the transmission patterns between neurons in the human brain, it can rapidly process input information and continuously learn on its own. NPUs enable intelligent cognitive applications in electronic devices, such as image recognition, facial recognition, speech recognition, and text understanding.
[0146] The external storage interface 120 can be used to connect an external memory card, such as a MicroSD card, to expand the storage capacity of the electronic device 100. The external memory card communicates with the processor 110 through the external storage interface 120 to perform data storage functions. For example, music, video, and other files can be saved on the external memory card.
[0147] Internal memory 121 can be used to store computer executable program code, which includes instructions. Processor 110 executes various functional applications and data processing of electronic device 100 by running the instructions stored in internal memory 121. Internal memory 121 may include a program storage area and a data storage area. The program storage area may store the operating system, at least one application program required for a function (such as sound playback, image playback, etc.), etc. The data storage area may store data created during the use of electronic device 100 (such as audio data, phonebook, etc.). Furthermore, internal memory 121 may include high-speed random access memory and may also include non-volatile memory, such as at least one disk storage device, flash memory device, universal flash storage (UFS), etc.
[0148] Electronic device 100 can implement audio functions, such as music playback and recording, through audio module 170, speaker 170A, receiver 170B, microphone 170C, headphone jack 170D, and application processor.
[0149] The audio module 170 is used to convert digital audio information into analog audio signals for output, and also to convert analog audio input into digital audio signals. The audio module 170 can also be used for encoding and decoding audio signals. In some embodiments, the audio module 170 may be located in the processor 110, or some functional modules of the audio module 170 may be located in the processor 110.
[0150] The speaker 170A, also known as a "loudspeaker," is used to convert audio electrical signals into sound signals. The electronic device 100 can listen to music or make hands-free calls through the speaker 170A.
[0151] The receiver 170B, also known as the "earpiece," is used to convert audio electrical signals into sound signals. When the electronic device 100 answers a telephone call or voice message, the receiver 170B can be brought close to the ear to listen to the voice.
[0152] Microphone 170C, also known as a "microphone" or "voice transducer," is used to convert sound signals into electrical signals. When making a phone call or sending a voice message, the user can speak by bringing their mouth close to microphone 170C, inputting the sound signal into microphone 170C. Electronic device 100 may have at least one microphone 170C. In some embodiments, electronic device 100 may have two microphones 170C, which, in addition to collecting sound signals, can also perform noise reduction. In other embodiments, electronic device 100 may also have three, four, or more microphones 170C, which can collect sound signals, reduce noise, identify the sound source, and perform directional recording, etc.
[0153] The 170D headphone jack is used to connect wired headphones. The 170D headphone jack can be a USB 130 interface or a 3.5mm Open Mobile Terminal Platform (OMTP) standard interface, a CTIA (Cellular Telecommunications Industry Association of the USA) standard interface.
[0154] Pressure sensor 180A is used to sense pressure signals and convert them into electrical signals. Gyroscope sensor 180B can be used to determine the motion posture of electronic device 100. Barometric pressure sensor 180C is used to measure air pressure. Magnetism sensor 180D includes a Hall sensor. Accelerometer sensor 180E can detect the magnitude of acceleration of electronic device 100 in various directions (generally three axes). When electronic device 100 is stationary, it can detect the magnitude and direction of gravity. It can also be used to identify the posture of electronic device, applied to applications such as screen orientation switching and pedometers. Distance sensor 180F is used to measure distance. Electronic device 100 can measure distance via infrared or laser. In some embodiments, during scene shooting, electronic device 100 can use distance sensor 180F to measure distance for fast focusing. Proximity sensor 180G can include, for example, a light-emitting diode (LED) and a photodetector, such as a photodiode. The LED can be an infrared LED. Electronic device 100 emits infrared light outward through the LED. Electronic device 100 uses the photodiode to detect infrared reflected light from nearby objects. When sufficient reflected light is detected, it can be determined that an object is near the electronic device 100. When insufficient reflected light is detected, the electronic device 100 can determine that no object is near it. The electronic device 100 can use the proximity sensor 180G to detect when a user holds the electronic device 100 close to their ear for a call, so as to automatically turn off the screen to save power. The proximity sensor 180G can also be used for automatic unlocking and locking in folding case mode and pocket mode. The ambient light sensor 180L is used to sense the ambient light brightness. The electronic device 100 can adaptively adjust the brightness of the display screen 194 according to the sensed ambient light brightness. The fingerprint sensor 180H is used to collect fingerprints. The electronic device 100 can use the characteristics of the collected fingerprints to achieve fingerprint unlocking, access to application lock, fingerprint photography, fingerprint answering of calls, etc. The temperature sensor 180J is used to detect temperature. In some embodiments, the electronic device 100 uses the temperature detected by the temperature sensor 180J to execute a temperature processing strategy. The touch sensor 180K is also called a "touch panel". Touch sensor 180K can be placed on display screen 194. The touch sensor 180K and display screen 194 together form a touch screen, also known as a "touchscreen". Touch sensor 180K is used to detect touch operations applied to or near it. Bone conduction sensor 180M can acquire vibration signals.
[0155] Buttons 190 include a power button, volume buttons, etc. Buttons 190 can be mechanical buttons or touch-sensitive buttons. Electronic device 100 can receive button input and generate key signal inputs related to user settings and function control of electronic device 100.
[0156] Motor 191 can generate vibration alerts. Motor 191 can be used for incoming call vibration alerts or for touch vibration feedback. For example, different vibration feedback effects can correspond to touch operations performed on different applications (such as taking photos, playing audio, etc.). Motor 191 can also correspond to different vibration feedback effects for touch operations performed on different areas of the display screen 194. Different application scenarios (such as time reminders, receiving messages, alarm clocks, games, etc.) can also correspond to different vibration feedback effects. The touch vibration feedback effect can also be customized.
[0157] Indicator 192 can be an indicator light, used to indicate charging status, power changes, or to indicate messages, missed calls, notifications, etc.
[0158] The SIM card interface 195 is used to connect the SIM card.
[0159] The following describes in detail a display method provided in this application based on Embodiment 1 and Embodiment 2, respectively.
[0160] The following embodiments of this application use an inward-folding screen as an example to illustrate the process. When the display screen of the electronic device 100 is an outward-folding screen or a tri-folding screen, the specific description of how the multiple displays of the electronic device 100 display text and graphics can be found in the description of the inward-folding screen, and will not be repeated here.
[0161] Optionally, when the display screen of the electronic device 100 is a tri-fold screen, the flexible display screen of the electronic device 100 may include a first display area, a second display area, and a third display area. The electronic device 100 can receive user input of first text on the first display area of the first display screen and display the first target text on the second display area. The first target text may be obtained from the first text. The electronic device 100 may also display a second target text on the third display area. The second target text may be the same as or different from the first text. When the second target text is different from the first text, the second target text may also be obtained from the first text.
[0162] For example, the first display area, the second display area, and the third display area can be respectively Figure 1G-Figure 1L The display areas of screen A, screen B, and screen C shown are all different, and the first, second, and third display areas are all different.
[0163] Figure 2B and Figure 2C The following diagram illustrates two application scenarios provided in this application.
[0164] Figure 2BA schematic diagram of the inward-folding screen of the electronic device 100 in its unfolded state is shown. Figure 2B As shown, the plane containing the second display area and the plane containing the second display screen form a certain angle. For example, Figure 2B The angle between the plane containing the second display area and the plane containing the second display screen is greater than a first value and less than a second value. For example, the first value could be 160 degrees and the second value could be 180 degrees.
[0165] Figure 2C A schematic diagram of the inward-folding screen of electronic device 100 in a folded state is shown. Figure 2C As shown, the plane containing the second display area and the plane containing the second display screen form a certain angle. Figure 2C The angle between the first and second displays shown is greater than a second value; for example, the second value could be 180 degrees.
[0166] The following embodiments of this application illustrate how the electronic device 100 displays the first text entered by the user on the first display screen and the second display screen when the inward-folding screen of the electronic device 100 is in a folded state.
[0167] Example 1
[0168] The electronic device 100 can receive user input of first text on a first display area of a first display screen and scroll the first text on a second display screen at a first rate. The electronic device 100 can also scroll the first text on a second display area of the first display screen at a first rate. In this way, the electronic device 100 can display text and graphics on multiple display screens, improving the utilization rate of the multiple display screens on the electronic device 100 and enhancing the text and graphics display effect.
[0169] Optionally, when the display screen of the electronic device 100 is a tri-fold screen, the flexible display screen of the electronic device 100 may include a first display area, a second display area, and a third display area. The electronic device 100 may receive user input of first text on the first display area of the first display screen and scroll the first text in the second display area at a first rate and in a first direction. Alternatively, the electronic device 100 may scroll the first text in the third display area at a first rate and in a first direction, or the electronic device 100 may scroll the first text in the third display area at a second rate and in a second direction.
[0170] Figures 3A-3F A schematic diagram is shown of an electronic device 100 displaying first text on multiple displays in a "marquee" style.
[0171] like Figure 3AAs shown, the electronic device 100 displays the main interface of a settings application on the first display area of the first display screen. The main interface displays multiple settings items, such as options for turning airplane mode on / off, Wi-Fi on / off, Bluetooth on / off, hotspot on / off, mobile network on / off, security detection on / off, display and brightness settings, and graphic DIY settings. Users can enable a "marquee" mode through the graphic DIY settings, allowing the electronic device 100 to display the first text entered by the user on the first display area of the first display screen in a "marquee" style on the second display screen.
[0172] Optionally, when the main interface for setting up the application is displayed on the first display area of the first display screen, the electronic device 100 may also display other content on the second display area of the first display screen, or may not display other content.
[0173] For example, such as Figure 3A As shown, the electronic device 100 can receive user input operations for graphic DIY settings, such as click operations. In response to the user's input operations, the electronic device 100 can display... Figure 3B The user interface 310 shown.
[0174] The user interface 310 includes multiple settings, such as options 301, 312, 302, 303, 304, 305, and doodle area 306.
[0175] Option 301 can be a setting for the "marquee" mode. Users can use option 301 to set various information about the "marquee" mode, such as the display style of the "marquee".
[0176] Users can change the direction of the first text scrolling on the second display area of the second display screen and the first display screen via option 312.
[0177] Users can set the font size of the first text displayed on the second display screen via option 302.
[0178] Users can set the scrolling speed and direction of the first text displayed on the second screen using option 303. Option 303 is currently off.
[0179] Users can add icons, etc., displayed on the second display screen of electronic device 100 through option 304.
[0180] Users can input initial text via option 305, which will then be displayed on the second screen in a "marquee" style. The initial text can be entered in real-time via option 305, or it can be a preset text selected by the user through option 305. The preset text can be pre-set by the user, such as "Happy Every Day" or similar phrase. This allows users to select a preset text via option 305, eliminating the need for real-time input and saving user time.
[0181] Users can input graffiti patterns in the graffiti area 306. The graffiti patterns are then displayed on the second display screen and the second display area of the first display screen. Optionally, the electronic device 100 can continuously display the user-inputted graffiti patterns on the second display screen and the second display area of the first display screen, or it can display the user-inputted graffiti patterns on the second display screen and the second display area of the first display screen briefly.
[0182] When a user needs to display the first text on the second display screen, the electronic device 100 can receive the user's input operation for option 305, such as a click operation. In response to the user's input operation, the electronic device 100 can display... Figure 3C The user interface 320 shown.
[0183] For example, such as Figure 3C As shown, the user interface 320 includes options 307, 308, 309, and 311.
[0184] Option 307 can be a keyboard, and option 308 can be a text input box. Users can enter the first text in the text input box using the keyboard. For example, the first text can be "Hello China".
[0185] Option 308 may include multiple preset texts, which can be set in advance by the user. For example, the preset texts may be "Happy Every Day" or "Happy Birthday".
[0186] After the first text is entered in the text input box, the electronic device 100 can receive the user's input operation for option 311, such as a click operation. In response to the user's input operation, the electronic device 100 can confirm that the first text entered by the user is displayed in a "marquee" style on the second display screen and the second display area of the first display screen.
[0187] For example, such as Figure 3C As shown, the electronic device 100 can receive user input for option 311, such as a click operation. In response to the user's input, the electronic device 100 can display the first text on a second display screen in a "marquee" style.
[0188] like Figure 3D As shown in (a), the electronic device 100 displays a user interface 310 on the first display area of the first display screen, such as Figure 3D As shown in (b), the electronic device 100 scrolls the text "Hello" on the second display screen at a first rate and also scrolls the text "Hello" on the second display area of the first display screen at a first rate. In this way, the user can input text on the first display area of the first display screen, allowing the electronic device 100 to display the user-inputted text on both the second display screen and the second display area of the first display screen. The user of the electronic device 100 can view the user-inputted text through the second display area of the first display screen, and other users can view the user-inputted text through the second display screen, thus improving the display effect of the electronic device 100.
[0189] Optionally, the electronic device 100 displays the first text on the second display screen in a "marquee" style, which may refer to the electronic device 100 scrolling the first text on the second display screen at a first rate.
[0190] Optionally, when scrolling the first text on the second display screen and the second display area of the first display screen, the display is not limited to the user interface 310. The electronic device 100 may also display other interfaces in "marquee" mode on the first display area of the first display screen. This application does not limit this.
[0191] Figure 3E It shows an inward-folding screen and a tri-folding screen. Figure 3C The side view shown in the display mode.
[0192] in, Figure 3E (a) shows the inward-folding screen in the position of Figure 3C The side view shown in the display configuration. (Example) Figure 3E As shown in (a), the first display screen includes a first display area and a second display area, and the angle between the plane containing the first display area and the plane containing the second display area is α. The second display screen includes a third display area, and the plane containing the third display area is parallel to the plane containing the second display area.
[0193] Figure 3E (b) shows the tri-fold screen in its position. Figure 3C The side view shown in the display configuration. (Example) Figure 3E As shown in (b), the first display screen includes a first display area, a second display area, and a third display area. The angle between the plane containing the first display area and the plane containing the second display area is α. The angle between the plane containing the third display area and the plane containing the second display area is β, where β is close to 180 degrees. It can be said that the plane containing the third display area is parallel to the plane containing the second display area.
[0194] Optionally, the inner-fold screen and the triple-fold screen can also be in other forms, Figure 3E which is only for illustrative purposes and does not constitute a limitation.
[0195] Figure 3F A schematic diagram showing the electronic device 100 displaying the first text on the second display screen is shown.
[0196] As Figure 3F shown in (a) of [], the electronic device 100 displays the text "Hello" on the second display screen. After that, the second display screen can scroll to the left at the first rate to display other texts. For example, as Figure 3F shown in (b) of [], the electronic device 100 displays the text "Good in" on the second display screen.
[0197] After the electronic device 100 displays the text "Good in" on the second display screen, the second display screen can continue to scroll to the left at the first rate to display other texts. For example, as Figure 3F shown in (c) of [], the electronic device 100 displays the text "China" on the second display screen.
[0198] After the electronic device 100 displays the text "China" on the second display screen, the second display screen can continue to scroll to the left at the first rate to display other texts. For example, as Figure 3F shown in (d) of [], the electronic device 100 displays the text "Country you" on the second display screen.
[0199] After the electronic device 100 displays the text "Country you" on the second display screen, the second display screen can continue to scroll to the left at the first rate to display other texts. For example, as Figure 3F shown in (a) of [], the electronic device 100 displays the text "Hello" on the second display screen.
[0200] And so on, the electronic device 100 can continue to scroll to the left at the first rate in sequence according to the interfaces shown in Figure 3F (a) of [], Figure 3F (b) of [], Figure 3F (c) of [], and Figure 3F (d) of [] to display the first text input by the user.
[0201] Optionally, when the electronic device 100 displays the first text on the second display screen in a "marquee" style, it can mean displaying the first text Figure 3F in the display effects shown in (a) of [], Figure 3F in (b) of [], Figure 3F in (c) of [], and Figure 3F in (d) of [].
[0202] Optionally, the display style of the first text on the second display area of the first display screen can refer to Figure 3F (a) Figure 3F (b) Figure 3F (c) and Figure 3F The description in (d) of the document.
[0203] Optionally, the content displayed on the second display screen is similar to that displayed on the second display area of the first display screen. The local user of the electronic device 100 can view the display effect of the first text through the second display area of the first display screen, and other users can view the display effect of the first text through the second display screen. This improves the utilization rate of the multiple displays on the electronic device 100 and also enhances the display effect of text and graphics on the electronic device 100.
[0204] Optionally, and not limited to enabling the "marquee" mode in the settings application, so that the electronic device 100 can display the first text entered by the user in the first display area of the first display screen in a "marquee" style on the second display screen, the electronic device 100 can also enable the "marquee" mode in other applications, so that the electronic device 100 can display the first text entered by the user in the first display area of the first display screen in a "marquee" style on the second display screen. This application does not limit this.
[0205] In some embodiments, when the first text is displayed in a "marquee" style on the second display screen, the electronic device 100 can receive a user operation to add a first icon to the second display screen, so that the electronic device 100 can display the first icon while displaying the first text in a "marquee" style.
[0206] Figures 4A-4D A schematic diagram is shown of an electronic device 100 receiving a user operation and adding a first icon on a second display screen.
[0207] For example, such as Figure 4A As shown, the electronic device 100 can receive user input for option 304, such as a click operation. In response to the user's input, the electronic device 100 can display... Figure 4B The selection box 410 shown contains multiple icons. Users can select any one of the icons and display it on the second display screen and the second display area of the first display screen to improve the display effect of the second display screen and the second display area of the first display screen.
[0208] For example, such as Figure 4B As shown, icon 401 is among the multiple icons. The electronic device 100 can also receive user actions on the selection box 410, such as a swipe, allowing the electronic device 100 to display other undisplayed icons within the selection box 410.
[0209] As Figure 4B shown, the electronic device 100 can receive a user's input operation on the icon 401, such as a click operation. In response to the user's input operation, when the electronic device 100 displays the first text in a "marquee" style on the second display screen and the second display area of the first display screen, the electronic device 100 can also display the icon 401 on the second display screen and the second display area of the first display screen.
[0210] As Figure 4C shown, the electronic device 100 displays the user interface shown in (a) of Figure 4C on the first display area of the first display screen. The electronic device 100 displays the text "Hello" and the icon 401 on the second display screen, as shown in (b) of Figure 4C . The electronic device 100 can also display the text "Hello" and the icon 401 on the second display area of the first display screen.
[0211] Optionally, after the electronic device 100 receives the user's input operation on the icon 401, the electronic device 100 can also display the user interface shown in Figure 4A on the first display area of the first display screen. The electronic device 100 can also display other interfaces in the "marquee" mode on the first display area of the first display screen, and this application does not limit this.
[0212] Figure 4D shows a schematic diagram of the electronic device 100 displaying the first text and the icon 401 on the second display screen.
[0213] As Figure 4D shown in (a), the electronic device 100 displays the text "Hello" and the icon 401 on the second display screen. After that, the second display screen can scroll leftward at the first rate to display other text. For example, as shown in (b) of Figure 4D , the electronic device 100 displays the text "Good in" and the icon 401 on the second display screen.
[0214] After the electronic device 100 displays the text "Good in" and the icon 401 on the second display screen, the second display screen can continue to scroll leftward at the first rate to display other text. For example, as shown in (c) of Figure 4D , the electronic device 100 displays the text "China" and the icon 401 on the second display screen.
[0215] After the electronic device 100 displays the text "China" and the icon 401 on the second display screen, the second display screen can continue to scroll leftward at the first rate to display other text. For example, as shown in Figure 4DAs shown in (d), the electronic device 100 displays the text "Guoni" and icon 401 on the second display screen.
[0216] After the electronic device 100 displays the text "Guoni" and icon 401 on the second display screen, the second display screen can continue to scroll leftward at a first rate to display other text. For example, as Figure 4D As shown in (a), the electronic device 100 displays the text "Hello" and icon 401 on the second display screen.
[0217] And so on, electronic device 100 can continue to follow the steps in sequence. Figure 4D (a) Figure 4D (b) Figure 4D (c) and Figure 4D The interface shown in (d) scrolls to the left at a first rate to display the first text entered by the user and displays icon 401.
[0218] Optionally, the display style of the first text on the second display area of the first display screen can refer to Figure 4D (a) Figure 4D (b) Figure 4D (c) and Figure 4D The description in (d) of the document.
[0219] Optionally, the electronic device 100 may display icon 401 at a fixed position on the second display screen and at a fixed position in the second display area of the first display screen. The electronic device 100 may also scroll icon 401 or change the display position of icon 401 on the second display screen and the second display area of the first display screen.
[0220] Optionally, the electronic device 100 may continuously display the icon 401 on the second display screen and the second display area of the first display screen, or the electronic device 100 may briefly display the icon 401 on the second display screen and the second display area of the first display screen and then stop displaying the icon 401 on the second display screen and the second display area of the first display screen.
[0221] In this manner, the electronic device 100 can display the first text in a "marquee" style on the second display screen and the second display area of the first display screen, while also receiving user input to add and display the first icon on the second display screen and the second display area of the first display screen.
[0222] In some embodiments, when the first text is displayed in a "marquee" style on the second display screen, the electronic device 100 can receive user operation to add graffiti patterns on the second display screen, so that the electronic device 100 can display graffiti patterns while displaying the first text in a "marquee" style.
[0223] The graffiti pattern can be a pattern drawn manually by the user. Figures 4A-4D The first icon shown may be a preset pattern provided by the electronic device 100.
[0224] Figures 5A-5C A schematic diagram is shown of an electronic device 100 receiving user input to add graffiti patterns on a second display screen.
[0225] For example, such as Figure 5A As shown, the electronic device 100 can receive user operations within the graffiti area 306, such as drawing a graffiti pattern 501. In response to the user operation, after detecting that the user has stopped operating within the graffiti area 306 for more than a first duration, or after the electronic device 100 receives confirmation from the user that the graffiti pattern 501 has been used, the electronic device 100 can display the graffiti pattern 501 on the second display screen and the second display area of the first display screen.
[0226] like Figure 5B As shown, the electronic device 100 displays on the first display area of the first display screen... Figure 5B The user interface shown in (a) indicates that the electronic device 100 displays the text "Hello" and a doodle pattern 501 on the second display screen, as shown in (a). Figure 5B As shown in (b), the electronic device 100 can also display the text "Hello" and the doodle pattern 501 on the second display area of the first display screen.
[0227] Optionally, after the electronic device 100 receives the user's operation of drawing a graffiti pattern 501 in the graffiti area 306, the electronic device 100 can add a new layer on the second display area of the first display screen, and the electronic device 100 can automatically display the graffiti area 306 on the newly added layer.
[0228] In one possible implementation, the electronic device 100 can display the graffiti pattern 501 at a fixed position in the second display area of the first display screen according to a preset size. In other possible implementations, the electronic device 100 can also obtain the position of the graffiti pattern 501 drawn by the user in the graffiti area 306 and display the graffiti pattern 501 at a relative position in the second display area of the first display screen. Optionally, the size of the graffiti area 306 can be a preset size, or the size of the graffiti area 306 can be based on the real-time size of the graffiti area 306 drawn by the user.
[0229] Optionally, after the electronic device 100 receives the operation of the user drawing the graffiti pattern 501 within the graffiti area 306, the user can also drag the graffiti pattern 501 to the second display area of the first display screen and display it on the second display area of the first display screen. In one possible implementation, the display position of the graffiti pattern 501 on the second display area of the first display screen can be determined based on the termination position where the user drags the graffiti pattern 501. In other possible implementations, the display position of the graffiti pattern 501 on the second display area of the first display screen can also be preset. Optionally, the size of the graffiti area 306 can be a preset size, or the size of the graffiti area 306 can also be based on the real-time size of the graffiti area 306 drawn by the user.
[0230] The electronic device 100 can also display the graffiti pattern 501 on the second display screen in the above manner.
[0231] Optionally, after the graffiti pattern 501 is displayed on the second display screen and the second display area of the first display screen, the electronic device 100 can also display Figure 4A the user interface shown. The electronic device 100 can also display other interfaces in the "marquee" mode on the first display area of the first display screen, which is not limited in this application.
[0232] Figure 5C FIG. shows a schematic diagram of the electronic device 100 displaying the first text and the graffiti pattern 501 on the second display screen.
[0233] As Figure 5C shown in (a) of, the electronic device 100 displays the text "Hello" and the graffiti pattern 501 on the second display screen. After that, the second display screen can scroll leftward at the first rate to display other texts. For example, as Figure 5C shown in (b) of, the electronic device 100 displays the text "Good in" and the graffiti pattern 501 on the second display screen.
[0234] After the electronic device 100 displays the text "Good in" and the graffiti pattern 501 on the second display screen, the second display screen can continue to scroll leftward at the first rate to display other texts. For example, as Figure 5C shown in (c) of, the electronic device 100 displays the text "China" and the graffiti pattern 501 on the second display screen.
[0235] After the electronic device 100 displays the text "China" and the icon 401 on the second display screen, the second display screen can continue to scroll leftward at the first rate to display other texts. For example, as Figure 5C shown in (d) of, the electronic device 100 displays the text "Country you" and the graffiti pattern 501 on the second display screen.
[0236] After the electronic device 100 displays the text "Guo Ni" and the graffiti pattern 501 on the second display screen, the second display screen can continue to scroll leftward at the first rate to display other texts. For example, as shown in (a) of Figure 5C the electronic device 100 displays the text "Hello" and the graffiti pattern 501 on the second display screen.
[0237] And so on, the electronic device 100 can continue to scroll leftward at the first rate in turn according to the interfaces shown in (a) of Figure 5C , (b) of Figure 5C , (c) of Figure 5C and (d) of Figure 5C to display the first text input by the user and display the icon 401.
[0238] Optionally, the display style of the first text on the second display area of the first display screen can refer to the descriptions in (a) of Figure 5C , (b) of Figure 5C , (c) of Figure 5C and (d) of Figure 5C .
[0239] Optionally, the electronic device 100 can display the graffiti pattern 501 at fixed positions on the second display screen and the second display area of the first display screen. The electronic device 100 can also scroll to display the graffiti pattern 501, or change the display position of the graffiti pattern 501 on the second display screen and the second display area of the first display screen. <00>
[0240] Optionally, the electronic device 100 can continuously display the graffiti pattern 501 on the second display screen and the second display area of the first display screen. The electronic device 100 can also display the graffiti pattern 501 briefly on the second display screen and the second display area of the first display screen and then stop displaying the graffiti pattern 501 on the second display screen and the second display area of the first display screen.
[0241] In this way, the electronic device 100 can display the first text in a "marquee" style on the second display screen and the second display area of the first display screen, and can also receive user operations to add and display the graffiti pattern on the second display screen and the second display area of the first display screen.
[0242] In some embodiments, when the first text is displayed in a "marquee" style on the second display screen, the electronic device 100 can receive user operation to change the "marquee" style. For example, the electronic device 100 defaults to scrolling the first text to the left on the second display screen at a first rate. The electronic device 100 can receive user operation to change the display style of the first text, such as changing the display direction of the first text and scrolling the first text to the right on the second display screen at a first rate.
[0243] In some embodiments, the electronic device 100 may also receive user operation to change the scrolling rate of the first text, for example, switching the speed at which the first text is scrolled to the right on the second display screen from a first rate to a second rate, the second rate being different from the first rate.
[0244] Figures 6A-6D A schematic diagram is shown of an electronic device 100 receiving a change in the scrolling direction of first text on a second display screen.
[0245] For example, such as Figure 6A As shown, the electronic device 100 can receive user input for option 312, such as a click operation. In response to the user's input, the electronic device 100 can display... Figure 6B Options 601 and 602 are shown. Options 601 and 602 have different display styles. For example, option 601 is displayed with a darker color to indicate that the electronic device 100 is currently scrolling the first text to the left. The user can also change the scrolling direction of the first text using option 602.
[0246] For example, such as Figure 6B As shown, the electronic device 100 can receive user input for option 602, such as a click operation. In response to the user's input, the electronic device 100 can display... Figure 6C The user interface shown.
[0247] For example, such as Figure 6C As shown, option 602 is highlighted in darker color to indicate that the current electronic device 100 is scrolling to the right to display the first text.
[0248] Optionally, in response to a user's input operation on option 312, the electronic device 100 may also not display option 601 and option 602. The user can change the scrolling direction of the first text on the second display screen and the second display area of the first display screen through option 312. For example, the first text displayed on the second display screen and the second display area of the first display screen defaults to scrolling left at a first rate. The user clicks on option 312. In response to the user clicking on option 312, the first text displayed on the second display screen and the second display area of the first display screen can scroll right at the first rate. The user clicks on option 312 again. In response to the user clicking on option 312 again, the first text displayed on the second display screen and the second display area of the first display screen can continue to scroll left at the first rate. And so on, the user can change the scrolling direction of the first text on the second display screen and the second display area of the first display screen through option 312.
[0249] In response to changing the scrolling direction of the first text, the first text displayed on the second display screen and the second display area of the first display screen both switch from scrolling left at a first rate to scrolling right at a second rate.
[0250] As Figure 6D shown in (a) of [], the electronic device 100 displays the text "Hello" on the second display screen. After that, the second display screen can scroll to the right at the first rate to display other texts. For example, as Figure 6D shown in (b) of [], the electronic device 100 displays the text "Country you" on the second display screen.
[0251] After the electronic device 100 displays the text "Country you" on the second display screen, the second display screen can continue to scroll to the right at the first rate to display other texts. For example, as Figure 6D shown in (c) of [], the electronic device 100 displays the text "China" on the second display screen.
[0252] After the electronic device 100 displays the text "China" on the second display screen, the second display screen can continue to scroll to the right at the first rate to display other texts. For example, as Figure 6D shown in (d) of [], the electronic device 100 displays the text "Good China" on the second display screen.
[0253] After the electronic device 100 displays the text "Good China" on the second display screen, the second display screen can continue to scroll to the right at the first rate to display other texts. For example, as Figure 6D shown in (a) of [], the electronic device 100 displays the text "Hello" on the second display screen.
[0254] And so on, the electronic device 100 can continue to sequentially follow Figure 6D shown in (a) of [], Figure 6D (b) Figure 6D (c) and Figure 6D The interface shown in (d) scrolls to the right at a first rate to display the first text entered by the user.
[0255] Optionally, the display style of the first text on the second display area of the first display screen can refer to Figure 6D (a) Figure 6D (b) Figure 6D (c) and Figure 6D The description in (d) of the document.
[0256] In this manner, the electronic device 100 can change the display style of the first text displayed on the second display screen and the second display area of the first display screen, for example, by changing the scrolling direction of the first text.
[0257] In some embodiments, when the first text is displayed in a "marquee" style on the second display screen, the electronic device 100 can receive user input to change the "marquee" style. For example, the electronic device 100 defaults to scrolling the first text to the left on the second display screen at a first rate. The electronic device 100 can receive user input to change the display style of the first text, such as changing the scrolling direction and scrolling rate of the first text, and scrolling the first text to the right on the second display screen at a second rate, which is different from the first rate.
[0258] Figures 7A-7D A schematic diagram is shown of an electronic device 100 receiving a change in the scrolling direction and scrolling rate of first text on a second display screen.
[0259] Optionally, the user can change the scrolling direction and scrolling speed of the first text on the second display screen via option 303.
[0260] For example, such as Figure 7A As shown, the electronic device 100 can receive user input for option 303, such as a click operation. In response to the user's input, the electronic device 100 can display... Figure 7B The prompt information 701 shown includes "Slide to the left to control the scrolling speed of the text to the left, and slide to the right to control the scrolling speed of the text to the right". The prompt information 701 is used to prompt the user on how to control the scrolling direction and scrolling speed of the first text displayed on the second display screen.
[0261] For example, such as Figure 7CAs shown, a user can perform a swipe operation on the first display area of the first display screen using one or two fingers, such as a swipe to the left, moving from the first position to the second position, with the user's swipe rate being a second rate. In response to the user's left swipe operation, the electronic device 100 can control the first text displayed on the second display screen and the second display area of the first display screen to swipe to the left at the second rate.
[0262] like Figure 7D As shown in (a), the electronic device 100 displays the text "Hello" on a second display screen. Subsequently, the second display screen can scroll leftward at a second rate to display other text, such as... Figure 7D As shown in (b), the electronic device 100 displays the text "China" on the second display screen.
[0263] After the electronic device 100 displays the text "China" on the second display screen, the second display screen can continue to scroll leftward at a second rate to display other text. For example, as Figure 7D As shown in (a), the electronic device 100 displays the text "Hello" on the second display screen.
[0264] And so on, electronic device 100 can continue to follow the steps in sequence. Figure 7D (a) Figure 7D The interface shown in (b) scrolls to the left at a second rate to display the first text entered by the user.
[0265] Optionally, the display style of the first text on the second display area of the first display screen can refer to Figure 7D (a) Figure 7D The description in (b) of the document.
[0266] Optionally, the electronic device 100 may continuously scroll leftward to display the first text entered by the user at a second rate on the second display screen and the second display area of the first display screen, or the electronic device 100 may briefly scroll leftward to display the first text entered by the user at a second rate on the second display screen and the second display area of the first display screen, and then scroll leftward to display the first text entered by the user at a first rate on the second display screen and the second display area of the first display screen.
[0267] In some embodiments, if a user needs to draw a graffiti pattern within the graffiti area 306, the electronic device 100 can receive the user's input operation on option 303, causing the display mode of option 303 to switch to... Figure 7A As shown in the display form, the electronic device 100 can then receive the user's operation to draw graffiti patterns within the graffiti area 306.
[0268] In this manner, the electronic device 100 can change the display style of the first text displayed on the second display screen and the second display area of the first display screen, for example, by changing the scrolling direction and scrolling speed of the first text.
[0269] In some embodiments, when the first text is displayed in a "marquee" style on the second display screen, the electronic device 100 can receive user input to change the "marquee" style. For example, the electronic device 100 defaults to displaying the first text on the second display screen in a scrolling manner according to a first size. The electronic device 100 can receive user input to change the display style of the first text, such as changing the display size of the first text, and displaying the first text on the second display screen in a scrolling manner according to a second size. The second size is different from the first size; the second size can be larger or smaller than the first size.
[0270] Figures 8A-8C A schematic diagram is shown of an electronic device 100 receiving a change in the display size of first text on a second display screen.
[0271] For example, such as Figure 8A As shown, the electronic device 100 can receive user input for option 302, such as a click operation. In response to the user's input, the electronic device 100 can display... Figure 8B Options 801 and 802 are shown. The user can use option 801 to decrease the size of the first text displayed on the second display screen and the second display area of the first display screen. The user can also use option 802 to increase the size of the first text displayed on the second display screen and the second display area of the first display screen.
[0272] For example, such as Figure 8B As shown, the electronic device 100 can receive user input operations for option 801, such as a click operation. In response to the user's input operation, the electronic device 100 can reduce the size of the first text displayed on the second display screen and the second display area of the first display screen.
[0273] Optionally, not limited to changing the size of the first text displayed on the second display area of the second display screen and the first display screen via option 302, the electronic device 100 can also receive a user's gesture operation on the first display area of the first display screen to change the size of the first text displayed on the second display screen and the second display area of the first display screen. For example, when the user slides two fingers toward each other, the electronic device 100 can decrease the size of the first text displayed on the second display screen and the second display area of the first display screen, and when the user slides two fingers away from each other, the electronic device 100 can increase the size of the first text displayed on the second display screen and the second display area of the first display screen.
[0274] In response to an operation that reduces the size of the first text displayed on the second display screen and the second display area of the first display screen, the first display area of the first display screen displays... Figure 8C In the user interface shown in (a), the first text displayed on the second display screen and the second display area of the first display screen is switched from a first size to a second size, the second size being smaller than the first size.
[0275] Optionally, in response to an operation that reduces the size of the first text displayed on the second display screen and the second display area of the first display screen, the first display area of the first display screen may also display... Figure 8A The user interface shown can also display other interfaces in the "marquee" mode in the first display area of the first display screen, and this application does not limit this.
[0276] like Figure 8C As shown in (a), the electronic device 100 displays the text "Hello" on a second display area of the first display screen, the text "Hello" being of the second size. Figure 8C As shown in (b), the electronic device 100 displays the text "Hello" on a second display screen. The size of the text "Hello" is also the second size, which is smaller than the first size.
[0277] In this manner, the electronic device 100 can change the size of the first text displayed on the second display screen and the second display area of the first display screen.
[0278] Example 2
[0279] The electronic device 100 can receive user input of first text in a first language on a first display area of a first display screen, and display the corresponding first target text in a second language on a second display screen. Alternatively, the electronic device 100 can also display second target text in a second display area of the first display screen, where the first and second languages are different. Optionally, the second target text can be the same as the first text. In this way, a user can view the first text input by the user through the second display area of the first display screen, while other users can view the first target text in a second language displayed on the second display screen, improving the utilization rate of the multiple displays on the electronic device 100 and enhancing the graphic display effect.
[0280] Optionally, the second target text may also be different from the first text. When the second target text is different from the first text, the second target text may be text obtained by the electronic device 100 after translating the first text into a fourth language, where the fourth language is different from the second language. In this way, the electronic device 100 can display text in different languages on multiple displays.
[0281] Optionally, when the display screen of the electronic device 100 is a tri-fold screen, the flexible display screen of the electronic device 100 may include a first display area, a second display area, and a third display area. The electronic device 100 can receive user input of first text in a first language on the first display area of the first display screen, and the electronic device 100 can translate the first text in the first language into a first target text in a second language and display the first target text on the second display area. Optionally, the electronic device 100 may also display the first text in the first language on the third display area.
[0282] Figures 9A-9D A schematic diagram is shown of an electronic device 100 displaying different translated texts on multiple displays.
[0283] like Figure 9A As shown, the electronic device 100 displays the main interface of a settings application on the first display area of the first display screen. The main interface displays multiple settings items, such as options to enable / disable airplane mode, Wi-Fi, Bluetooth, hotspot, mobile network, security detection, display and brightness settings, and translation settings. Users can enable translation mode through the translation settings, allowing the electronic device 100 to display different translated texts on multiple displays.
[0284] For example, such as Figure 9A As shown, the electronic device 100 can receive user input operations for translation settings, such as a click operation. In response to the user's input operation, the electronic device 100 can display... Figure 9B The user interface shown is 910.
[0285] The user interface 910 includes several settings, such as options 901, 902, 903, 904, 905, and doodle area 906.
[0286] Option 901 can be a setting for the translation mode, such as setting the default language displayed on the second display screen, or multiple other languages that the electronic device 100 can display on the second display screen.
[0287] Users can set the font size of the first text displayed on the second display screen via option 902.
[0288] Users can switch the language displayed on the second display screen using option 903.
[0289] Users can add icons, etc., displayed on the second display screen of electronic device 100 through option 904.
[0290] Users can input initial text in their first language via option 905, and the target text will be displayed on the second screen. The initial text can be entered in real-time via option 905, or it can be a preset text selected by the user via option 905. The preset text can be pre-set by the user, such as phrases like "Happy Every Day." This allows users to select a preset text via option 905, eliminating the need for real-time input and saving user time.
[0291] Users can input graffiti patterns in the graffiti area 906. The graffiti patterns are then displayed on the second display screen and the second display area of the first display screen. Optionally, the electronic device 100 can continuously display the user-inputted graffiti patterns on the second display screen and the second display area of the first display screen, or it can display the user-inputted graffiti patterns on the second display screen and the second display area of the first display screen briefly.
[0292] Optionally, when the main interface for setting up the application is displayed on the first display area of the first display screen, the electronic device 100 may also display other content on the second display area of the first display screen, or may not display other content.
[0293] When a user needs to display the first text in different languages on multiple displays, for example, such as Figure 9B As shown, the electronic device 100 can receive user input for option 905, such as a click operation. In response to the user's input, the electronic device 100 can display... Figure 9C The user interface shown is 920.
[0294] For example, such as Figure 9C As shown, the user interface 920 includes options 907, 908, 909, and 911.
[0295] Option 907 can be a keyboard, and option 908 can be a text input box. Users can enter the first text in the text input box using the keyboard. For example, the first text could be "Study hard and make progress every day".
[0296] Option 908 can include multiple preset texts, which can be set by the user in advance. For example, the preset texts can be "Happy Every Day" or "Happy Birthday".
[0297] After the user enters the first text in the first language in the text input box, the electronic device 100 can receive the user's input operation for option 911, such as a click operation. In response to the user's input operation, the electronic device 100 can confirm that the first text entered by the user in the first language has been translated into the second language to obtain the first target text, and display the first target text on the second display screen.
[0298] For example, such as Figure 9C As shown, the electronic device 100 can receive user input for option 911, such as a click operation. In response to the user's input, the electronic device 100 can display the first target text on a second display screen.
[0299] Optionally, the electronic device 100 may also display the first text in the first language entered by the user on a second display area of the first display screen, so that the user can view the first text in the first language entered by the user on the second display area of the first display screen.
[0300] Optionally, when the third language differs from the first language, the electronic device 100 can translate the user-inputted first text into the third language to obtain the third text, and then display the third text in the third language on the second display area of the first display screen. In this way, the electronic device 100 can simultaneously display the first text in multiple languages on multiple display screens.
[0301] The following embodiments of this application are illustrated using the example of the third language and the first language being the same.
[0302] like Figure 9D As shown in (a), the electronic device 100 displays a user interface 910 on a first display area of a first display screen, and displays the first text "Study hard and make progress every day" on a second display area of the first display screen. Figure 9D As shown in (b), the electronic device 100 can display the first target text "study hard and make progress every day" on the second display screen.
[0303] Optionally, after receiving user input for option 911, the electronic device 100 may also display the first text in the first language, "Study hard and make progress every day," on the first display area of the first display screen. The first display area of the first display screen may also display other user interfaces in "translation" mode, which is not limited in this application.
[0304] Using this method, electronic device 100 can display the first text in the first language entered by the user on multiple displays in different languages.
[0305] In some embodiments, when the first target text is displayed on the second display screen, the electronic device 100 can receive a user operation to add a first icon on the second display screen, so that the electronic device 100 can display the first icon at the same time as displaying the first target text.
[0306] Figures 10A-10CA schematic diagram is shown of another electronic device 100 receiving user input and adding a first icon on a second display screen.
[0307] For example, such as Figure 10A As shown, the electronic device 100 can receive user input for option 904, such as a click operation. In response to the user's input, the electronic device 100 can display... Figure 10B The selection box 1010 shown contains multiple icons. Users can select any one of the icons and display it on the second display screen and the second display area of the first display screen to improve the display effect of the second display screen and the second display area of the first display screen.
[0308] For example, such as Figure 10B As shown, icon 1001 is among the multiple icons. The electronic device 100 can also receive user actions on the selection box 1010, such as a swipe action, so that the electronic device 100 can display other undisplayed icons within the selection box 1010.
[0309] like Figure 10B As shown, the electronic device 100 can receive user input operations on the icon 1001, such as a click operation. In response to the user's input operation, the electronic device 100 can not only display the first target text on the second display screen, but also display the first text in the first language on the second display area of the first display screen. The electronic device 100 can also display the icon 1001 on both the second display screen and the second display area of the first display screen.
[0310] like Figure 10C As shown, the electronic device 100 displays on the first display area of the first display screen... Figure 10C The user interface 910 shown in (a) displays first text and icons 1001 in the first language on a second display area of the first display screen. Figure 10C As shown in (b), the electronic device 100 can display a first target text and icon 1001 on a second display screen.
[0311] Optionally, after the electronic device 100 receives input from the user for the icon 1001, the electronic device 100 may also display it on the first display area of the first display screen. Figure 10A The user interface shown can also be used to display other user interfaces in "translation" mode on the first display area of the first display screen.
[0312] Optionally, the electronic device 100 may continuously display the icon 1001 on the second display screen and the second display area of the first display screen, or the electronic device 100 may briefly display the icon 1001 on the second display screen and the second display area of the first display screen and then stop displaying the icon 1001 on the second display screen and the second display area of the first display screen.
[0313] In this manner, the electronic device 100 can display first text in different languages on the second display screen and the second display area of the first display screen, while also receiving user input to add and display a first icon on the second display screen and the second display area of the first display screen.
[0314] In some embodiments, when the first target text is displayed on the second display screen, the electronic device 100 can receive a user operation to add a doodle pattern on the second display screen, so that the electronic device 100 can display the doodle pattern at the same time as displaying the first target text.
[0315] Figures 11A-11B A schematic diagram is shown of another electronic device 100 receiving user input to add graffiti patterns on a second display screen.
[0316] For example, such as Figure 11A As shown, the electronic device 100 can receive user operations within the graffiti area 906, such as drawing a graffiti pattern 915. In response to the user operation, after detecting that the user has stopped operating within the graffiti area 906 for more than a first duration, or after the electronic device 100 receives confirmation from the user that the graffiti pattern 915 has been used, the electronic device 100 can display the graffiti pattern 915 on the second display screen and the second display area of the first display screen.
[0317] like Figure 11B As shown, the electronic device 100 displays on the first display area of the first display screen... Figure 11B The user interface 910 shown in (a) displays first text and doodle patterns 915 in the first language on a second display area of the first display screen. Figure 11B As shown in (b), the electronic device 100 can also display the first target text and graffiti pattern 915 on the second display screen.
[0318] Optionally, after the electronic device 100 receives the user's operation of drawing a graffiti pattern 915 in the graffiti area 306, the electronic device 100 can add a new layer on the second display area of the first display screen, and the electronic device 100 can automatically display the graffiti area 306 on the newly added layer.
[0319] In one possible implementation, the electronic device 100 can display the graffiti pattern 915 at a fixed position in the second display area of the first display screen according to a preset size. In other possible implementations, the electronic device 100 can also obtain the position of the graffiti pattern 915 drawn by the user in the graffiti area 306 and display the graffiti pattern 915 at a relative position in the second display area of the first display screen. Optionally, the size of the graffiti area 306 can be a preset size, or the size of the graffiti area 306 can be based on the real-time size of the graffiti area 306 drawn by the user.
[0320] Optionally, after the electronic device 100 receives the user's operation of drawing a graffiti pattern 915 within the graffiti area 306, the user can also drag the graffiti pattern 915 to the second display area of the first display screen and display it there. In one possible implementation, the display position of the graffiti pattern 915 on the second display area of the first display screen can be determined based on the ending position of the user's dragging of the graffiti pattern 915. In other possible implementations, the display position of the graffiti pattern 915 on the second display area of the first display screen can also be preset. Optionally, the size of the graffiti area 306 can be a preset size, or the size of the graffiti area 306 can be based on the real-time size of the graffiti area 306 drawn by the user.
[0321] The electronic device 100 can also display the graffiti pattern 915 on the second display screen in the manner described above.
[0322] Optionally, the electronic device 100 may continuously display the graffiti pattern 915 on the second display screen and the second display area of the first display screen, or the electronic device 100 may briefly display the graffiti pattern 915 on the second display screen and the second display area of the first display screen and then stop displaying the graffiti pattern 915 on the second display screen and the second display area of the first display screen.
[0323] In this manner, the electronic device 100 can display first text in different languages on the second display screen and the second display area of the first display screen, while also receiving user input to add and display doodle patterns on the second display screen and the second display area of the first display screen.
[0324] In some embodiments, when the first target text is displayed on the second display screen, the electronic device 100 may receive a user operation to switch the first text displayed on the second display screen to another language.
[0325] Figures 12A-12D A schematic diagram is shown of an electronic device 100 receiving a user operation to switch the display of first text in another language on a second display screen.
[0326] For example, such as Figure 12AAs shown, the electronic device 100 can receive user input for option 903, such as a click operation. In response to the user's input, the electronic device 100 can display... Figure 12B The prompt message 1201 shown includes "Slide left or right to switch to display text in other languages, slide up or down to scroll up or down other undisplayed translated text". The prompt message 1201 is used to prompt the user on how to control the content displayed on the second display screen.
[0327] For example, such as Figure 12C As shown, a user can use one or two fingers to operate on the first display area of the first display screen, for example, swipe left. In response to the user's swipe left operation, the electronic device 100 can translate the first text in the first language into the third target text in the third language and display the third target text in the third language on the second display screen.
[0328] like Figure 12D As shown in (a), the electronic device 100 displays on the first display area of the first display screen... Figure 11B The user interface 910 shown in (a) displays first text in the first language on a second display area of the first display screen. Figure 11B As shown in (b) in the figure, Figure 12D As shown in (b), the electronic device 100 can also display third target text on the second display screen.
[0329]
[0330] For example, Figure 12D The first language shown can be Chinese, and the third language can be Korean.
[0331] In some embodiments, if a user needs to draw a graffiti pattern within the graffiti area 906, the electronic device 100 can receive the user's input operation on option 903, causing the display mode of option 903 to switch to... Figure 11A As shown in the display form, the electronic device 100 can then receive the user's operation to draw graffiti patterns within the graffiti area 906.
[0332] Using this method, the electronic device 100 can change the text displayed on the second display screen to correspond to other languages.
[0333] In some embodiments, when the first target text is displayed on the second display screen, if the second display screen displays part of the first target text, the electronic device 100 may also receive user operation to refresh other content of the first target text displayed on the second display screen.
[0334] Figures 13A-13DA schematic diagram is shown of an electronic device 100 receiving a user operation to switch other content of a first target text displayed on a second display screen.
[0335] For example, such as Figure 13A As shown, the electronic device 100 can receive the first text in the first language entered by the user in option 908. For example, the first text could be "There are no shortcuts on the road to success; the only way is to keep striving upwards and make hard work and sweat." Figure 13A Only a portion of the first text is shown.
[0336] Subsequently, the electronic device 100 can receive user input for option 311, such as a click operation. In response to the user's input, the electronic device 100 can acquire a second language and translate the first document into the second language to obtain the first target text.
[0337] Because the display area of the second display screen is limited, it can only display the first part of the first target text. Optionally, the second display area of the first display screen can display a portion of the first text corresponding to the first part of the first target text.
[0338] like Figure 13B As shown, after receiving user input for option 311, the electronic device 100 can display on the first display area of the first display screen. Figure 13B The user interface 910 shown in (a) displays a portion of the first text, "There are no shortcuts to success; only continuous striving can lead to it," on the second display area of the first display screen. Figure 13B As shown in (b), the electronic device 100 can also display the first part of the first target text on the second display screen: "On the road to success, there is no shortcut to take, only to constantly strive upwards."
[0339] In some embodiments, the electronic device 100 may also receive an operation performed by a user on a first display area of a first display screen to switch other content of the first target text displayed by the electronic device 100 on a second display screen.
[0340] For example, such as Figure 13C As shown, the electronic device 100 can receive a sliding operation by a user on a first display area of the first display screen, such as an upward sliding operation. In response to the user's sliding operation, the electronic device 100 can display on the first display area of the first display screen. Figure 13DThe user interface shown in (a) displays additional content of the first target text, "Hard work and diligent effort," on the second display area of the first display screen. Figure 13D As shown in (b), the electronic device 100 can also display the second part of the first target text, “put in hard work and sweat,” on a second display screen.
[0341] In some embodiments, if a user needs to draw a graffiti pattern within the graffiti area 906, the electronic device 100 can receive the user's input operation on option 903, causing the display mode of option 903 to switch to... Figure 11A As shown in the display form, the electronic device 100 can then receive the user's operation to draw graffiti patterns within the graffiti area 906.
[0342] Using this method, the electronic device 100 can receive user operations and switch the display of other content of the first target text on the second display screen.
[0343] In some embodiments, when the first target text is displayed on the second display screen, the electronic device 100 may also receive user input to change the display size of the first target text.
[0344] Figures 14A-14C A schematic diagram is shown of an electronic device 100 receiving a change in the display size of a first target text on a second display screen.
[0345] For example, such as Figure 14A As shown, the electronic device 100 can receive user input for option 902, such as a click operation. In response to the user's input, the electronic device 100 can display... Figure 14B Options 801 and 802 are shown. The user can use option 801 to decrease the size of the first target text displayed on the second display screen and the size of the first text displayed on the second display area of the first display screen. The user can also use option 802 to increase the size of the first target text displayed on the second display screen and the size of the first text displayed on the second display area of the first display screen.
[0346] For example, such as Figure 14A As shown, the electronic device 100 can receive user input for option 902, such as a click operation. In response to the user's input, the electronic device 100 can display... Figure 14BOptions 1401 and 1402 are shown. The user can use option 1401 to reduce the size of the first target text displayed on the second display screen and to reduce the size of the first text displayed on the second display area of the first display screen. The user can also use option 1402 to increase the size of the first target text displayed on the second display screen and to increase the size of the first text displayed on the second display area of the first display screen.
[0347] For example, such as Figure 14B As shown, the electronic device 100 can receive user input operations for option 1402, such as a click operation. In response to the user's input operation, the electronic device 100 can increase the size of the first target text displayed on the second display screen and increase the size of the first text displayed on the second display area of the first display screen.
[0348] Optionally, not limited to changing the size of the text displayed on the second display area of the second display screen and the first display screen via option 1402, the electronic device 100 can also receive a user's gesture operation on the first display area of the first display screen to change the size of the text displayed on the second display screen and the second display area of the first display screen. For example, when the user slides two fingers toward each other, the electronic device 100 can decrease the size of the text displayed on the second display screen and the second display area of the first display screen, and when the user slides two fingers away from each other, the electronic device 100 can increase the size of the text displayed on the second display screen and the second display area of the first display screen.
[0349] In response to operations that increase the size of the first target text displayed on the second display screen and increase the size of the first text displayed on the second display area of the first display screen, the first display area of the first display screen can display Figure 14C In the user interface 910 shown in (a), the text displayed on the second display area of the first display screen changes from a first size to a second size. Figure 14C As shown in (b), the size of the first target text displayed on the second display screen is switched from the first size to the second size, and the second size is larger than the first size.
[0350] Optionally, in response to an operation that increases the size of the text displayed on the second display screen and the second display area of the first display screen, the first display area of the first display screen may also display... Figure 14A The user interface shown.
[0351] In this way, the electronic device 100 can change the size of the text displayed on the second display screen and the second display area of the first display screen.
[0352] Optionally, in "Translation" mode, when the electronic device 100 displays the first target text on the second display screen, the electronic device 100 can also scroll the first target text to the left at a first rate, as described in the "Marquee" mode. Similarly, when the electronic device 100 displays the second target text on the second display area of the first display screen, the electronic device 100 can also scroll the second target text to the left at a first rate, as described in the "Marquee" mode. For details, please refer to... Figures 3F-8C The descriptions in the embodiments are not repeated here.
[0353] Figure 15 This is a flowchart illustrating a foldable screen display method provided in this application.
[0354] The method is applied to an electronic device equipped with a flexible display screen. The electronic device includes a first display area, a second display area, and a third display area, wherein the orientation of the first display area and the orientation of the third display area are different.
[0355] In one possible implementation, the electronic device includes a first display screen and a second display screen. The first display screen is a flexible display screen, and its display area includes a first display area and a second display area. The second display screen's display area includes a third display area. Thus, when the electronic device is an inward-folding screen device, it can improve the display effect of the multiple display areas of the inward-folding screen device.
[0356] For example, an inward-folding screen device can be Figure 1A-Figure 1B The device shown. The first display screen can be... Figure 1A-Figure 1B The second display screen can be one of the screens A and B shown. Figures 1A-1C The C screen shown is an example. The first display area can be the same as the display area where screen B is located, the second display area can be the same as the display area where screen A is located, and the third display area can be the same as the display area where screen C is located.
[0357] In other possible implementations, the electronic device includes a first display screen, which is a flexible display screen, and the display area of the first display screen includes a first display area and a second display area. The electronic device receives a first operation from a user inputting first text in the first display area; in response to the first operation, the electronic device displays first target text on the second display area, the first target text being obtained based on the first text.
[0358] In this way, when the electronic device is an outward-folding screen device, the electronic device can improve the display effect of the multiple display areas of the outward-folding screen device.
[0359] For example, an inward-folding screen device can be Figures 1D-1F The device shown. The first display screen can be... Figures 1D-1FThe diagram shows screens A and B. The first display area can be the area where screen B is located, and the second display area can be the area where screen A is located. Alternatively, the first display area can be the area where screen A is located, and the second display area can be the area where screen B is located.
[0360] In one possible implementation, the electronic device includes a first display screen, which is a flexible display screen, and the display area of the first display screen includes a first display area, a second display area, and a third display area.
[0361] In this way, when the electronic device is a tri-fold screen device, the electronic device can improve the display effect of the multiple display areas of the tri-fold screen device.
[0362] For example, a tri-fold screen device can be Figure 1G-Figure 1K The device shown. The first display screen can be Figure 1G-Figure 1K The diagram shows screens A, B, and C. The first display area can be the area where screen A is located, the second display area can be the area where screen B is located, and the third display area can be the area where screen C is located. Alternatively, the first display area can be the area where screen C is located, the second display area can be the area where screen B is located, and the third display area can be the area where screen A is located.
[0363] The application does not limit the use of flexible displays to inward-folding, outward-folding, and tri-folding screen devices. Electronic devices equipped with flexible displays can also be other types of devices.
[0364] S1501, The electronic device receives a first operation from the user who inputs first text in the first display area.
[0365] For example, the first text could be Figure 3C The text shown is "Hello China".
[0366] For example, the first text could also be Figure 9C The text shown is "Study hard and make progress every day".
[0367] S1502, In response to the first operation, the electronic device displays first target text on a third display area, the first target text being obtained from the first text.
[0368] For example, the first target text Figure 3D The text shown in (b) is shown in the image.
[0369] For example, the first target text could also be Figure 9D The text shown in (b) is shown in the image.
[0370] S1503. The electronic device displays a second target text on a second display area. The second target text is also obtained based on the first text. The second target text may be the same as or different from the first text.
[0371] For example, the second target text Figure 3D The text shown in (a) is shown in the image.
[0372] For example, the second target text could also be Figure 9D The text shown in (a) is shown in the image.
[0373] Using this method, the electronic device can receive user input of first text in the first display area, display the first target text corresponding to the first text in the third display area, and display the second target text corresponding to the first text in the second display area. The user of the electronic device can view the displayed second target text through the second display area, while other users can view the displayed first target text through the third display area, thus improving the display effect of multiple display areas on the electronic device.
[0374] In one possible implementation, after the electronic device displays the first target text on the third display area, the method further includes: the electronic device receiving a second operation from a user to input a first pattern on the first display area; in response to the second operation, the electronic device displays the first target text and the first pattern on the third display area; and / or, in response to the second operation, the electronic device displays the second target text and the first pattern on the second display area.
[0375] Optionally, after receiving a user's input of a first pattern in the first display area, the electronic device can add new layers in the second and third display areas, and automatically display the first pattern on the newly added layers.
[0376] For example, the first pattern can be Figures 4A-4D The icon 401 shown can also be the first pattern. Figures 5A-5C The emoticon doodle pattern shown is 501.
[0377] For example, the first pattern could also be Figures 10A-10C The icon 401 shown can also be the first pattern. Figures 11A-11B The graffiti pattern shown is 915.
[0378] In one possible implementation, the electronic device can display the first pattern at a fixed position in the second and third display areas according to a preset size. In other possible implementations, the electronic device can also obtain the position where the user draws the first pattern in the first display area and display the first pattern at a relative position in the second and third display areas. Optionally, the size of the first pattern can be a preset size, or the size of the first pattern can be based on the real-time size of the first pattern drawn by the user.
[0379] Optionally, after receiving a user's input of a first pattern in the first display area, the user can also drag the first pattern to the second display area and display it there. Correspondingly, the electronic device can display the first pattern at a corresponding position in the third display area, which can be determined by the display position of the first pattern in the second display area. In one possible implementation, the display position of the first pattern in the second display area can be determined based on the ending position of the user dragging the first pattern. In other possible implementations, the display position of the first pattern in the second display area can also be preset. Optionally, the size of the first pattern can be a preset size, or the size of the first pattern can be based on the real-time size of the user-drawn drawing area 306.
[0380] In this way, while the electronic device displays the first target text and the second target text, it can also receive user input of the first pattern in the first display area and display the first pattern in the second and third display areas, further improving the display effect of multiple display areas on the electronic device.
[0381] In one possible implementation, the size of the first target text and the size of the second target text are both a first size; after the electronic device displays the first target text on the third display area, the method further includes: the electronic device receiving a third operation performed by a user on the first display area; in response to the third operation, the electronic device displaying the first target text of a second size on the third display area, the second size being different from the first size; and / or, in response to the third operation, the electronic device displaying the second target text of the second size on the second display area. Thus, the electronic device can receive user operations on the first display area, changing the size of the second target text displayed on the second display area and the size of the first target text displayed on the third display area.
[0382] For example, you can refer to Figures 8A-8C The description in the embodiments. Alternatively, refer to... Figures 14A-14C Description in the embodiments.
[0383] In one possible implementation, the electronic device displays first target text on a third display area, specifically including: the electronic device scrolling the first text on the third display area in a first direction at a first speed; the electronic device displays second target text on a second display area, specifically including: the electronic device scrolling the first text on the second display area in a first direction at a first speed. In this way, the electronic device can display the first text in a "marquee" pattern on multiple display areas.
[0384] For example, you can refer to Figures 3C-3F Description in the embodiments.
[0385] In one possible implementation, after the electronic device scrolls the first text in a first direction at a first rate on a third display area, the method further includes: the electronic device receiving a fourth operation from the user on the first display area; in response to the fourth operation, the electronic device scrolls the first text in the third display area in a first direction at a second rate, the second rate being different from the first rate. And / or, in response to the fourth operation, the electronic device scrolls the first text in a second display area in a first direction at a second rate. Thus, after the electronic device displays the first text in a "marquee" pattern on multiple display areas, the electronic device can receive user operations in the first display area to change the "marquee" pattern, for example, change the scrolling speed of the first text.
[0386] Optionally, the electronic device can also receive user input and simultaneously change the scrolling speed and scrolling direction of the first text.
[0387] For example, you can refer to Figures 7C-7D Description in the embodiments.
[0388] In one possible implementation, after the electronic device scrolls the first text in a first direction at a first rate on a third display area, the method further includes: the electronic device receiving a fifth operation performed by a user on the first display area; in response to the fifth operation, the electronic device scrolls the first text in a second direction at a first rate on the third display area, the second direction being different from the first direction; and / or, in response to the fifth operation, the electronic device scrolls the first text in a second direction at a first rate on a second display area. Thus, after the electronic device displays the first text in a "marquee" pattern on multiple display areas, the electronic device can receive an operation from the user in the first display area to change the "marquee" pattern, for example, by changing the scrolling direction of the first text.
[0389] For example, you can refer to Figures 6A-6D Description in the embodiments.
[0390] In one possible implementation, the language of the first text input on the first display area is a first language; the language of the first target text displayed on the third display area is a second language, which is different from the first language. The first target text is the text obtained by the electronic device translating the first text into the second language. In this way, the electronic device can display first text in multiple different languages on multiple display areas.
[0391] In one possible implementation, the second target text is identical to the first text. For example, the second target text could be the first text in the first language.
[0392] Optionally, the second target text may also be different from the first text. For example, the second target text could be the text obtained by translating the first text into a fourth language. The fourth language is different from the first language, and also different from the second language.
[0393] For example, you can refer to Figures 9C-9D Description in the embodiments.
[0394] In one possible implementation, after the electronic device displays the first target text on the third display area, the method further includes: the electronic device receiving a sixth operation performed by a user on the first display area; in response to the sixth operation, the electronic device acquiring third target text, which is text obtained by translating the first text into a third language, which is different from the second language; the electronic device displaying the third target text on the third display area; and / or, in response to the sixth operation, the electronic device displaying second target text on a second display area. Thus, after the electronic device displays first text in multiple different languages on multiple display areas, the electronic device can receive user operations on the first display area to switch the language of the first text displayed on the third display screen.
[0395] For example, you can refer to Figures 12A-12D Description in the embodiments.
[0396] In one possible implementation, the electronic device displays first target text on a third display area, specifically including: the electronic device displaying a first portion of the first target text on the third display area; the electronic device displays second target text on a second display area, specifically including: the electronic device displaying a first portion of the second target text on the second display area; after the electronic device displays the first target text on the third display area, the method further includes: the electronic device receiving a seventh operation from a user on the first display area; in response to the seventh operation, the electronic device displaying a second portion of the first target text on the third display area; and / or, in response to the seventh operation, the electronic device displaying a second portion of the second target text on the second display area. Thus, when the first target text is displayed on the third display area, if the third display area displays a portion of the first target text, the electronic device can receive a user operation to refresh the remaining content of the first target text displayed on the third display area. Similarly, the electronic device can also refresh the remaining content of the second target text displayed on the second display area.
[0397] For example, you can refer to Figures 13A-13D Description in the embodiments.
[0398] In one possible implementation, when the electronic device is in an unfolded state, the angle between the plane containing the first display area and the plane containing the second display area is greater than a first value; when the electronic device is in a folded state, the angle between the plane containing the first display area and the plane containing the second display area is greater than a second value and less than a first value.
[0399] This application provides an electronic device, which includes a memory and a processor; wherein the memory and the processor are coupled, the memory is used to store computer programs, and when the processor executes and calls the computer programs, the electronic device performs... Figure 15 This illustrates a display method for a foldable screen.
[0400] This application provides a computer-readable storage medium, including instructions that, when executed on an electronic device, cause the electronic device to perform... Figure 15 This illustrates a display method for a foldable screen.
[0401] This application provides a chip system, which includes one or more processors, the processors being used to invoke computer instructions to cause an electronic device to perform... Figure 15 This illustrates a display method for a foldable screen.
[0402] This application provides a computer program product containing instructions that, when executed on an electronic device, causes the electronic device to perform... Figure 15 This illustrates a display method for a foldable screen.
[0403] The above are merely some embodiments and implementation methods of this application. The scope of protection of this application is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.
[0404] It is understood that the user interfaces described in the embodiments of this application are merely example interfaces and do not constitute a limitation on the solution of this application. In other embodiments, the user interface may adopt different interface layouts, may include more or fewer controls, and may add or remove other functional options, as long as they are based on the same inventive concept provided in this application, they are all within the protection scope of this application.
[0405] It should be noted that, without causing contradictions or conflicts, any feature in any embodiment of this application, or any part of any feature, can be combined, and the combined technical solution is also within the scope of the embodiments of this application.
[0406] The above-described embodiments are only used to illustrate the technical solutions of this application, and are not intended to limit it. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this application.
Claims
1. A display method for a foldable screen, characterized in that, The method is applied to an electronic device equipped with a flexible display screen, the electronic device including a first display area, a second display area, and a third display area, wherein the orientation of the first display area and the orientation of the third display area are different, and the method includes: The electronic device receives a first operation from the user who inputs first text in the first display area; In response to the first operation, the electronic device displays first target text on the third display area, the first target text being obtained based on the first text; The electronic device displays a second target text on the second display area. The second target text is also obtained based on the first text. The second target text may be the same as or different from the first text.
2. The method according to claim 1, characterized in that, The electronic device includes a first display screen and a second display screen. The first display screen is the flexible display screen. The display area of the first display screen includes the first display area and the second display area. The display area of the second display screen includes the third display area.
3. The method according to claim 1, characterized in that, The electronic device includes a first display screen, which is the flexible display screen, and the display area of the first display screen includes a first display area, a second display area, and a third display area.
4. The method according to any one of claims 1-3, characterized in that, After the electronic device displays the first target text on the third display area, the method further includes: The electronic device receives a second operation from the user, in which the user inputs a first pattern on the first display area; In response to the second operation, the electronic device displays the first target text and the first pattern on the third display area; And / or, In response to the second operation, the electronic device displays the second target text and the first pattern on the second display area.
5. The method according to any one of claims 1-3, characterized in that, The size of the first target text and the size of the second target text are a first size; after the electronic device displays the first target text on the third display area, the method further includes: The electronic device receives a third operation performed by the user on the first display area; In response to the third operation, the electronic device displays the first target text in a second size on the third display area, the second size being different from the first size; And / or, In response to the third operation, the electronic device displays the second target text of the second size on the second display area.
6. The method according to any one of claims 1-5, characterized in that, The electronic device displays the first target text on the third display area, specifically including: The electronic device scrolls the first text on the third display area in a first direction at a first rate; The electronic device displays the second target text on the second display area, specifically including: The electronic device scrolls the first text on the second display area in the first direction at the first rate.
7. The method according to claim 6, characterized in that, After the electronic device scrolls the first text on the third display area in a first direction at a first rate, the method further includes: The electronic device receives a fourth operation performed by the user on the first display area; In response to the fourth operation, the electronic device scrolls the first text on the third display area in the first direction at a second rate, the second rate being different from the first rate; And / or, In response to the fourth operation, the electronic device scrolls the first text in the second display area in the first direction at the second rate.
8. The method according to claim 6, characterized in that, After the electronic device scrolls the first text on the third display area in a first direction at a first rate, the method further includes: The electronic device receives a fifth operation performed by the user on the first display area; In response to the fifth operation, the electronic device scrolls the first text on the third display area in a second direction at the first rate, the second direction being different from the first direction; And / or, In response to the fifth operation, the electronic device scrolls the first text on the second display area in the second direction at the first rate.
9. The method according to any one of claims 1-5, characterized in that, The language of the first text input on the first display area is a first language; the language of the first target text displayed on the third display area is a second language, which is different from the first language. The first target text is the text obtained by the electronic device after translating the first text into the second language.
10. The method according to claim 9, characterized in that, The second target text is the same as the first text.
11. The method according to claim 9 or 10, characterized in that, After the electronic device displays the first target text on the third display area, the method further includes: The electronic device receives a sixth operation performed by the user on the first display area; In response to the sixth operation, the electronic device acquires a third target text, which is the text obtained by translating the first text into a third language, and the third language is different from the second language; The electronic device displays the third target text on the third display area; And / or, In response to the sixth operation, the electronic device displays the second target text on the second display area.
12. The method according to any one of claims 9-11, characterized in that, The electronic device displays the first target text on the third display area, specifically including: The electronic device displays a first portion of the first target text on the third display area; The electronic device displays the second target text on the second display area, specifically including: The electronic device displays a first portion of the second target text on the second display area; After the electronic device displays the first target text on the third display area, the method further includes: The electronic device receives a seventh operation performed by the user on the first display area; In response to the seventh operation, the electronic device displays a second portion of the first target text on the third display area; And / or, In response to the seventh operation, the electronic device displays a second portion of the second target text on the second display area.
13. The method according to any one of claims 1-12, characterized in that, When the electronic device is in the unfolded state, the angle between the plane containing the first display area and the plane containing the second display area is greater than a first value; When the electronic device is in a folded state, the angle between the plane containing the first display area and the plane containing the second display area is greater than the second value and less than the first value.
14. An electronic device, characterized in that, The electronic device includes one or more memories and one or more processors; wherein the one or more memories and the one or more processors are coupled, and the one or more memories are used to store a computer program, which, when executed by the one or more processors, calls the computer program to perform the method of any one of claims 1-13.
15. A computer-readable storage medium comprising instructions, characterized in that, When the instructions are executed on an electronic device, the electronic device performs the method of any one of claims 1-13.
16. A computer program product comprising a computer program / instructions, characterized in that, When the computer program / instructions are run on an electronic device, the electronic device performs the method of any one of claims 1-13.