Display method, configuration method and electronic device
Patent Information
- Application Number
- CN202610969171.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-06-30
- Publication Date
- 2026-09-25
AI Technical Summary
现有技术中,双面屏电子设备的内容显示通常固定于主屏,用户若想在特定场景下于副屏查看关键信息,往往需要手动点亮或切换应用,操作路径长、效率低,难以满足用户高效获取关键信息的需求
Smart Images

Figure CN122824840A_ABST
Abstract
Description
Technical Field
[0001] This disclosure relates to the field of content display technology, and more specifically, to a display method, a configuration method, and an electronic device. Background Technology
[0002] With the increasing popularity of dual-screen electronic devices, users' demand for intelligent multi-screen interaction is growing. In existing technologies, the content display of dual-screen electronic devices is usually fixed on the main screen. If users want to view key information on the secondary screen in a specific scenario, they often need to manually turn on or switch applications. This operation path is long and inefficient, making it difficult to meet users' needs for efficiently obtaining key information. Summary of the Invention
[0003] In view of the above, this disclosure provides a display method, a configuration method, an electronic device, a medium, and a program product.
[0004] One aspect of this disclosure provides a display method, comprising: displaying and outputting first target content on a first display screen when an electronic device is in a first posture; and displaying and outputting second target content on a second display screen in response to detecting a target operation, if there is second target information that satisfies the target conditions; wherein the first display screen and the second display screen are disposed on opposite sides of the electronic device; the target operation is an operation to switch the electronic device from the first posture to the second posture, wherein the vertical positional relationship of the first display screen and the second display screen in the direction of gravity is interchanged in the first posture and the second posture; the second target content includes a recognizable coded graphic, the coded graphic being used to store or represent the target information.
[0005] According to embodiments of this disclosure, the target condition characterizes the spatiotemporal environment in which the electronic device is located as a target spatiotemporal environment.
[0006] According to embodiments of this disclosure, the method further includes: if the target spatiotemporal environment in which the electronic device is located is a first spatiotemporal environment, the second target information that meets the target conditions is a first message, and the second target content displayed on the second display screen is the first content; if the target spatiotemporal environment in which the electronic device is located is a second spatiotemporal environment, the second target information that meets the target conditions is a second message, and the second target content displayed on the second display screen is the second content; the first spatiotemporal environment is different from the second spatiotemporal environment, and the first content is different from the second content.
[0007] According to embodiments of this disclosure, the target condition characterizes the first target content displayed on the first display screen as the page content of the target application, the second target content as the target page content of the target application, and the target page content includes coded graphics.
[0008] According to an embodiment of this disclosure, a first display screen displays and outputs a first target content in a first direction of the electronic device; a second display screen displays and outputs a second target content in a second direction of the electronic device; wherein the first direction and the second direction are different directions of the electronic device, and the first direction and the second direction are not parallel.
[0009] According to embodiments of this disclosure, the method further includes: acquiring pose sensor data of the electronic device; determining, based on the pose sensor data, that the electronic device has switched from a first pose to a second pose; and if the pose sensor change data during the switch from the first pose to the second pose indicates that the direction of the angular velocity vector of the electronic device changes continuously within a target time period, determining that the electronic device has performed a target operation.
[0010] Another aspect of this disclosure provides a configuration method, comprising: displaying output third target content on a first display screen when an electronic device is in a first posture; and configuring the third target content for a target operation if the third target content contains a recognizable coded pattern in response to a detected target operation, such that the output coded pattern is displayed on a second display screen when the target operation is detected; wherein the first display screen and the second display screen are disposed on opposite sides of the electronic device; the target operation is an operation that switches the electronic device from the first posture to the second posture, wherein the vertical positional relationship of the first display screen and the second display screen in the direction of gravity is interchanged in the first posture and the second posture; and the coded pattern is used to store or represent target information.
[0011] According to embodiments of this disclosure, in response to detecting a target operation, if the third target content contains an identifiable coded graphic, configuring the third target content for the target operation includes: in response to detecting a target operation, if the third target content contains an identifiable coded graphic, displaying a second control on a second display screen; and in response to the second control being triggered, configuring the third target content for the target operation.
[0012] According to an embodiment of this disclosure, the second control is displayed in a target display area of the second display screen, the target display area being close to the target edge of the electronic device.
[0013] Another aspect of this disclosure provides an electronic device, comprising: a device body, having a first display screen and a second display screen; the first display screen being disposed on a first side of the device body, and the second display screen being disposed on a second side of the device body, the first side and the second side being opposite sides; at least one processor, disposed in the device body, configured to: display and output first target content on the first display screen when the electronic device is in a first posture; and, in response to detecting a target operation, display and output second target content on the second display screen if there is second target information that satisfies the target conditions; wherein the first display screen and the second display screen are disposed on opposite sides of the electronic device; the target operation is an operation to switch the electronic device from the first posture to the second posture, wherein the vertical position relationship of the first display screen and the second display screen in the direction of gravity is interchanged in the first posture and the second posture; the second target content includes a recognizable coded pattern, the coded pattern being used to store or represent target information.
[0014] Another aspect of this disclosure provides a computer-readable storage medium storing computer-executable instructions that, when executed, are used to implement the methods described above.
[0015] Another aspect of this disclosure provides a computer program product including computer-executable instructions that, when executed, are used to implement the methods described above. Attached Figure Description
[0016] The above and other objects, features and advantages of this disclosure will become clearer from the following description of embodiments with reference to the accompanying drawings, in which:
[0017] Figure 1 This diagram illustrates an application scenario where the display method can be applied according to embodiments of the present disclosure.
[0018] Figure 2 A flowchart illustrating a display method according to an embodiment of the present disclosure is shown schematically;
[0019] Figure 3 A schematic diagram showing a first display screen of an electronic device according to an embodiment of the present disclosure is illustrated;
[0020] Figure 4 A schematic diagram of a second display screen of an electronic device according to an embodiment of the present disclosure is shown;
[0021] Figure 5 A schematic diagram of a second display screen of an electronic device in a folded state according to an embodiment of the present disclosure is shown;
[0022] Figure 6 Another schematic diagram of a second display screen of an electronic device according to an embodiment of the present disclosure is shown;
[0023] Figure 7 A flowchart illustrating the process of determining the target operation to be performed according to an embodiment of the present disclosure is shown schematically.
[0024] Figure 8 A flowchart illustrating a configuration method according to an embodiment of the present disclosure is shown schematically;
[0025] Figure 9 The illustration schematically shows a side view of an electronic device suitable for implementing the methods described above, according to an embodiment of the present disclosure;
[0026] Figure 10 A side view of another electronic device suitable for implementing the methods described above, according to an embodiment of this disclosure, is schematically shown. Detailed Implementation
[0027] The embodiments of the present disclosure will now be described with reference to the accompanying drawings. However, it should be understood that these descriptions are exemplary only and are not intended to limit the scope of the disclosure. In the following detailed description, numerous specific details are set forth to provide a thorough understanding of the embodiments of the present disclosure for ease of explanation. However, it will be apparent that one or more embodiments may be practiced without these specific details. Furthermore, descriptions of well-known structures and techniques are omitted in the following description to avoid unnecessarily obscuring the concepts of the present disclosure.
[0028] The terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit this disclosure. The terms “comprising,” “including,” etc., as used herein indicate the presence of features, steps, operations, and / or components, but do not exclude the presence or addition of one or more other features, steps, operations, or components.
[0029] All terms used herein (including technical and scientific terms) have the meanings commonly understood by those skilled in the art, unless otherwise defined. It should be noted that the terms used herein are to be interpreted in a manner consistent with the context of this specification, and not in an idealized or overly rigid way.
[0030] When using expressions such as "at least one of A, B and C", they should generally be interpreted in accordance with the meaning that is commonly understood by those skilled in the art (e.g., "a system having at least one of A, B and C" should include, but is not limited to, a system having A alone, a system having B alone, a system having C alone, a system having A and B, a system having A and C, a system having B and C, and / or a system having A, B and C, etc.).
[0031] In the embodiments disclosed herein, the collection, updating, analysis, processing, use, transmission, provision, disclosure, and storage of data (e.g., including but not limited to user personal information) comply with relevant laws and regulations, are used for legitimate purposes, and do not violate public order and good morals. In particular, necessary measures have been taken to prevent unauthorized access to user personal information data and to safeguard user personal information security, network security, and national security.
[0032] In the embodiments disclosed herein, user authorization or consent is obtained before acquiring or collecting user personal information.
[0033] Embodiments of this disclosure provide a display method, including: displaying and outputting first target content on a first display screen when an electronic device is in a first posture; and displaying and outputting second target content on a second display screen in response to detecting a target operation, if there is second target information that meets the target conditions; wherein the first display screen and the second display screen are disposed on opposite sides of the electronic device; the target operation is an operation to switch the electronic device from the first posture to the second posture, and the vertical position relationship of the first display screen and the second display screen in the direction of gravity is interchanged in the first posture and the second posture; the second target content includes a recognizable coded graphic, the coded graphic being used to store or represent target information.
[0034] Through the embodiments of this disclosure, by placing the first and second displays on opposite sides of an electronic device, and using the user's objective operation of swapping the vertical positions of the two displays in the direction of gravity as the trigger condition, intelligent cross-screen display of content is achieved. This method, by performing a target operation on the electronic device, displays target information containing coded graphics on the second display, fully utilizing the hardware characteristics of the dual-screen setup. The operation path is drastically shortened, and interactivity is significantly enhanced. Furthermore, since coded graphics can efficiently store or represent target information, this method is suitable for scenarios requiring rapid presentation of credentials. While improving convenience, it also ensures that the current task on the main screen is not interrupted, achieving parallel multi-tasking display.
[0035] Figure 1 The illustration schematically depicts an application scenario where the display method can be applied according to embodiments of the present disclosure. It should be noted that... Figure 1 The diagrams shown are merely examples of application scenarios that can be applied to the embodiments of this disclosure, in order to help those skilled in the art understand the technical content of this disclosure, but do not mean that the embodiments of this disclosure cannot be used in other devices, systems, environments or scenarios.
[0036] like Figure 1 As shown, the application scenario 100 according to this embodiment may include a terminal electronic device 1101.
[0037] The electronic device 1101 can be an electronic device with two displays, such as a smartphone, etc. The displays are touch-enabled screens, and the two displays are located on opposite sides of the electronic device 1101. Users can use both displays by flipping the electronic device.
[0038] An artificial intelligence model can be installed on electronic device 1101. Users can utilize this model for functions including, but not limited to, daily task management, information organization, and personalized content recommendations. The artificial intelligence model can respond to user requests. The artificial intelligence model can be a standalone application or a functional module embedded within an application.
[0039] The following will be through Figures 2-7 The display method of the embodiments of this disclosure will be described in detail.
[0040] Figure 2 A flowchart illustrating a display method according to an embodiment of the present disclosure is shown schematically. Figure 3 A schematic diagram of a first display screen of an electronic device according to an embodiment of the present disclosure is shown. Figure 4 A schematic diagram of a second display screen of an electronic device according to an embodiment of the present disclosure is shown. Figure 5 A schematic diagram of a second display screen of an electronic device in a folded state according to an embodiment of the present disclosure is shown. Figure 6 Another schematic diagram is shown of a second display screen of an electronic device according to an embodiment of the present disclosure.
[0041] like Figure 2 As shown, the display method includes operations S210~S220.
[0042] When operating S210, with the electronic device in a first posture, the output of the first target content is displayed on the first display screen.
[0043] In operation S220, in response to detecting a target operation, if there is second target information that meets the target conditions, the second target content is displayed on the second display screen.
[0044] In the embodiments of this disclosure, the first display screen and the second display screen are disposed on opposite sides of the electronic device; the target operation is the operation of switching the electronic device from a first posture to a second posture, in which the vertical positional relationship of the first display screen and the second display screen in the direction of gravity is interchanged between the first posture and the second posture; the second target content includes identifiable coded graphics, which are used to store or represent target information.
[0045] For example, combined Figure 3 and Figure 4As shown, the electronic device can be a smartphone with two displays, where the displays are touch-enabled screens. The first display 300 and the second display 400 are respectively located on opposite sides of the smartphone, allowing the user to access both displays by flipping the smartphone. For example, when using the smartphone, the first display 300 is the display the user frequently uses, while the second display 400 is the display the user uses in certain specific scenarios; that is, the first display is the main display, and the second display is a secondary display or external screen.
[0046] For example, such as Figure 5 As shown, the electronic device can be a foldable smartphone, which includes a first body 510 and a second body 520. The first display screen is a tablet screen in the unfolded state of the smartphone, and the second display screen 530 is disposed on the first body 510. In the unfolded state, the second display screen 530 faces away from the tablet screen. In the folded state, the second display screen 530 faces the user.
[0047] This disclosure describes the embodiments of the above-mentioned electronic device as a smartphone as an example.
[0048] For example, a user is using a smartphone with the smartphone's first display screen facing the user. After the user opens a relevant mobile application, the relevant page content of the mobile application (i.e., the first target content) is displayed on the first display screen.
[0049] For example, a user is using a smartphone with the first screen facing the user. After the user opens a movie ticketing app on the first screen, the first screen displays various movie ticket purchase pages.
[0050] Furthermore, when it is detected that the user has completed the target operation on the electronic device, if it is determined that there is second target information that meets the target conditions, the second target content is displayed and output on the second display screen.
[0051] For example, a user's target operation on the smartphone is detected, causing the second display screen to face the user and the smartphone to be in a second posture state. At this time, the positional relationship between the first and second display screens in the direction of gravity is reversed. That is, the target operation here refers to the action of swapping the vertical position of the first and second display screens in the direction of gravity. After detecting this target operation, if second target information that meets the target conditions is detected, a recognizable coded graphic is displayed on the second display screen.
[0052] It is understandable that the first target content displayed on the first display screen may or may not be related to the second target content displayed on the second display screen. After a target operation is detected, if there is second target information that meets the target conditions, the second target content will be displayed on the second display screen. If no target operation is detected, or if there is no second target information that meets the target conditions, the second target content will not be displayed on the second display screen.
[0053] For example, the first display screen displays the content of the first application. After detecting the action of swapping the vertical position of the first display screen and the second display screen in the direction of gravity on the smartphone, if there is second target information that meets the target conditions, the second display screen displays the content of the second application.
[0054] For example, after a user purchases movie tickets using a movie ticketing app on the first screen, they switch to another news app to read news. The first screen then displays the relevant sports news. Upon detecting that the user has swapped the vertical positions of the first and second screens in the direction of gravity, the second screen faces the user. At this point, the cached e-ticket QR code (i.e., the coded graphic) is displayed on the second screen. This QR code stores or represents the movie ticket purchase information corresponding to the e-ticket. Here, the e-ticket is essentially the second target information that was stored before the flip and meets the target conditions.
[0055] For example, the first display screen shows the first target content of the first application. After detecting an action that swaps the vertical positions of the first and second display screens in the direction of gravity, if there is second target information that meets the target conditions, the second display screen also shows the second target content of the first application. Here, the first target content and the second target content are the same target content.
[0056] For example, a user opens a movie ticketing app on the first screen of their smartphone. The first screen displays various movie ticket purchase pages. When the user completes payment for the selected movie, the corresponding electronic ticket QR code interface for the purchased movie ticket is generated and displayed on the first screen (that is, there is second target information that meets the target conditions, which is an encoded graphic). After detecting that the user has swapped the vertical position of the first and second screens of the smartphone in the direction of gravity, the second screen faces the user and displays the electronic ticket QR code on the second screen.
[0057] Through the embodiments of this disclosure, by placing the first and second displays on opposite sides of an electronic device and using the user's objective operation of swapping the vertical position of the two displays in the direction of gravity as the trigger condition, intelligent cross-screen display of content is achieved. This method, by performing a target operation on the electronic device, displays target information containing coded graphics on the second display, fully utilizing the hardware characteristics of the dual-screen setup. The operation path is drastically shortened, and interactivity is significantly enhanced. Simultaneously, since coded graphics (such as QR codes) can efficiently store or represent target information (such as payment vouchers, electronic tickets, etc.), this method is suitable for scenarios requiring rapid presentation of vouchers (such as flipping one's wrist to reveal a QR code on the secondary screen). While improving convenience, it also ensures that the current task on the main screen (such as browsing content) is not interrupted, achieving parallel multi-tasking display and significantly improving the user experience of multi-screen devices in mobile scenarios.
[0058] According to embodiments of this disclosure, the second target information corresponds to a target image containing coded graphics, and displaying the second target content on a second display screen includes: reading the cached target image; and displaying the output target image on the second display screen.
[0059] For example, in certain mobile application usage scenarios, the generated QR codes are static and do not need to be dynamically updated. For instance, the QR code for an electronic movie ticket is only used for ticket checking at the cinema entrance and therefore does not need to be updated frequently. Similarly, the QR code for a user account in a social media application is fixed and also does not need to be updated frequently. Therefore, if the second target information that meets the target conditions corresponds to a static QR code, after detecting that the user has completed the target operation on the electronic device, it is only necessary to read the corresponding static image of the QR code and then display the static image on the second display screen.
[0060] For example, the second target information that meets the target conditions corresponds to a target image containing an account QR code in a social application. In a subsequent scenario where adding friends is required, after detecting that the user has performed a target operation on their smartphone, the second display screen faces the user. At this time, the cached target image containing the account QR code is first read, and then the target image containing the account QR code is displayed on the second display screen.
[0061] According to another embodiment of this disclosure, the second target information corresponds to a jump address that includes a jump to a target page, and the target page includes an coded graphic; displaying the second target content on a second display screen includes: jumping to the target page based on the second target information; and displaying the target page on the second display screen.
[0062] For example, in some specific mobile application usage scenarios, the generated QR codes are dynamic QR codes that need to be updated dynamically at any time. For instance, transit codes or payment codes have time limits and may have dynamic update prompts (e.g., prompts to refresh every 30 seconds), requiring timely updates. Therefore, if the second target information that meets the target conditions corresponds to a link that leads to a target page containing a recognizable coded graphic, then when the output is displayed on the second display screen, the user is redirected to the target page based on this link, and the target page is displayed on the second display screen.
[0063] For example, a user opens a payment app on the first screen, clicks on the transit code, and then switches to another map app to select a route. Here, the transit code is a link that needs to be updated regularly. The second target information that meets the target condition is a link that leads to the transit code page. At the subway ticket gate, after detecting the user's target operation on their smartphone, the second screen faces the user. At this time, based on the transit code's link, the user is redirected to the transit code interface, where a time-sensitive transit code is displayed on the second screen.
[0064] According to embodiments of this disclosure, the target condition characterizes the spatiotemporal environment in which the electronic device is located as a target spatiotemporal environment.
[0065] It is understandable that users will use electronic devices in different spatiotemporal environments, where spatiotemporal environment refers to the environment considering geographical location / time.
[0066] For example, the target condition characterizes the electronic device as meeting the target spatiotemporal environment of the target geographical location. That is, when the electronic device is within the range of the target geographical location, after detecting the target operation, there is second target information that conforms to the target geographical location, and the second target content is displayed on the second display screen.
[0067] For example, after detecting that the user has arrived at the target subway station, the system performs a target operation on the smartphone. The second display screen faces the user, and a ride code that matches the target subway station will be displayed on the second display screen.
[0068] For example, the target condition characterizes the electronic device as satisfying a target spatiotemporal environment within a certain target time range. That is, after detecting that the electronic device has completed a target operation within a certain target time range, if there is second target information that conforms to the target time range, the second target content is displayed on the second display screen.
[0069] For example, if a user purchases movie tickets using a movie ticketing app on the first screen and then switches to another news app to read news, the first screen will display the relevant sports news. If the app detects that the user has performed a targeted operation on the smartphone within a preset target time range (e.g., within 10 minutes), the second screen will face the user, and the cached e-ticket QR code will be displayed on the second screen.
[0070] For example, the target condition represents that the electronic device satisfies both the target geographical location and the target spatiotemporal environment within a certain target time range. That is, when the electronic device is located within the target geographical location range, and the target operation is detected to have been completed by the electronic device within a certain target time range, there is second target information that satisfies both the target geographical location and the target time range, and the second target content is displayed on the second display screen.
[0071] For example, if a user opens a payment app on the first screen, clicks on the transit code, and then switches to another map app to select a route, the relevant map page will be displayed on the first screen. If, within 10 minutes, the user is detected to have arrived at the target subway station and performed a targeted action on their smartphone, the second screen will face the user, and a transit code matching the target subway station will be displayed on the second screen.
[0072] Through the embodiments of this disclosure, combined with the current time and space context (such as geographical location, time period, etc.), by performing an action on the electronic device to swap the vertical positions of the first display screen and the second display screen in the direction of gravity, the target content is displayed on the second display screen, which makes it more intelligent to meet the actual needs of user scenarios and improves the accuracy and practicality of content display.
[0073] According to embodiments of this disclosure, if the target spatiotemporal environment in which the electronic device is located is a first spatiotemporal environment, the second target information that meets the target conditions is a first message, and the second target content displayed on the second display screen is the first content; if the target spatiotemporal environment in which the electronic device is located is a second spatiotemporal environment, the second target information that meets the target conditions is a second message, and the second target content displayed on the second display screen is the second content; the first spatiotemporal environment is different from the second spatiotemporal environment, and the first content is different from the second content.
[0074] For example, if the target condition represents that the electronic device meets the target spatiotemporal environment of the target geographical location, then when the target spatiotemporal environment of the electronic device is the environment of the first location (i.e., the first spatiotemporal environment), the second target information that meets the target condition is the first message, and the second target content displayed on the second display screen is the first content. When the target spatiotemporal environment of the electronic device is the environment of the second location (i.e., the second spatiotemporal environment), the second target information that meets the target condition is the second message, and the second target content displayed on the second display screen is the second content. Here, the first content and the second content are different.
[0075] For example, after detecting that a user has arrived at a target location (such as a movie theater) and performing a target action on their smartphone, the second display screen faces the user, and an e-ticket QR code matching the target movie theater location will be displayed on the second display screen. Similarly, if detecting that a user has arrived at a target location (such as a subway station) and performing a target action on their smartphone, the second display screen faces the user, and a transit code matching the target subway station location will be displayed on the second display screen.
[0076] For example, if the target condition represents that the electronic device satisfies a target spatiotemporal environment within a certain target time range, then when the target spatiotemporal environment in which the electronic device is located is an environment within a first target time range (i.e., the first spatiotemporal environment), the second target information satisfying the target condition is the first message, and the second target content displayed on the second display screen is the first content. When the target spatiotemporal environment in which the electronic device is located is an environment within a second target time range (i.e., the second spatiotemporal environment), the second target information satisfying the target condition is the second message, and the second target content displayed on the second display screen is the second content. Here, the first content and the second content are different.
[0077] For example, a user purchases movie tickets using a movie ticketing app on the first screen. While queuing for tickets at the cinema, the user also opens a music app on the first screen to listen to music. If the user performs a targeted action on their smartphone within a preset first target time range (e.g., within 20 minutes), the second screen faces the user, and the cached e-ticket QR code is displayed on the second screen. If the user performs a targeted action on their smartphone within a preset second target time range (e.g., within 20-30 minutes), the second screen faces the user, and the payment code used to purchase the movie ticket is displayed on the second screen.
[0078] Through the embodiments of this disclosure, by performing an action of swapping the vertical positions of the first display screen and the second display screen in the direction of gravity on the electronic device according to different spatiotemporal environments, different target content is displayed on the second display screen, which significantly improves the targeting and efficiency of information acquisition for users in different specific scenarios and enhances the user experience of multi-screen devices in mobile scenarios.
[0079] According to another embodiment of this disclosure, the target condition characterizes the first target content displayed on the first display screen as the page content of the target application, the second target content as the target page content of the target application, and the target page content includes coded graphics.
[0080] For example, the first display screen shows the first target content of the first application (such as a payment application or a movie ticketing application). After detecting the target operation on the smartphone, if there is second target information that meets the target conditions, the second display screen shows the second target content of the first application (that is, the target page content of the application). Here, the first target content and the second target content are different target content of the first application.
[0081] For example, if it's detected that a user has opened a payment app on the first screen of a smartphone and then clicked on a billing page, that billing page will be displayed on the first screen. After detecting that the user has completed the target operation on the smartphone, the second screen will face the user and display a payment code page. It can be understood that this payment code page is the content of the target page, and the payment code is the second target information that satisfies the target conditions.
[0082] For example, if it's detected that a user opens a movie ticketing app on the first screen of their smartphone, completes the purchase of movie tickets, and then continues watching various movie trailers within the app, the second screen, facing the user after the target operation is detected, will display the generated cached e-ticket QR code interface. It can be understood that this e-ticket QR code interface is the content of the target page, and this e-ticket QR code is the second target information that satisfies the target conditions.
[0083] Through the embodiments of this disclosure, when using an application, a user only needs to swap the vertical positions of the first and second display screens on the device in the direction of gravity to synchronize the QR code associated with the application to the rear screen for display. This ensures the continuity of the main screen interface and meets the need for quick presentation of credentials, significantly simplifying the user operation process in scenarios such as payment and ticket collection.
[0084] According to an embodiment of this disclosure, a first display screen displays and outputs a first target content in a first direction of the electronic device; a second display screen displays and outputs a second target content in a second direction of the electronic device; wherein the first direction and the second direction are different directions of the electronic device, and the first direction and the second direction are not parallel.
[0085] For example, the target operation is a wrist-flipping motion performed on the electronic device, which is an operation to switch the electronic device from a first posture to a second posture. In the first posture and the second posture, the vertical position relationship between the first display screen and the second display screen in the direction of gravity is interchanged.
[0086] Understandably, a wrist-flipping motion typically involves swapping the vertical positions of the first and second displays of an electronic device without changing the area the user is holding. Compared to simply flipping the device, this motion changes the data along the X, Y, and Z axes after the wrist-flipping motion is detected. For example, the X-axis is along the shorter side of the device, the Y-axis is along the longer side, and the Z-axis is the direction of gravity. In other words, after the wrist-flipping motion, in addition to the vertical position of the first and second displays changing, the display orientation of the second display also changes.
[0087] Therefore, after detecting the target operation of wrist flipping, the display direction of the first display screen displaying the first target content is different from the display direction of the second display screen displaying the second target content.
[0088] For example, after detecting a target operation of flipping the wrist on the smartphone, a second target content is displayed on the second display screen. At this time, the first display direction on the first display screen that displays the first target content and the second display direction on the second display screen that displays the second target content are different directions, and the first display direction and the second display direction are not parallel.
[0089] For example, the first direction is along the first side of the electronic device; the second direction is along the second side of the electronic device, and the first side and the second side satisfy the condition of being perpendicular. Figure 3 As shown, the first display screen 300 displays the page content of the mobile application in the direction X1 along the long side of the smartphone. After detecting a wrist-twisting operation on the smartphone, as... Figure 4 As shown, a recognizable coded graphic is displayed on the second display screen 400 in the short side direction X2 of the smartphone. That is, after a target operation on the smartphone, the first and second displays are flipped top to bottom, and the smartphone is also rotated 90 degrees, with the display direction of the first display screen perpendicular to the display direction of the second display screen.
[0090] It's understandable that the long side and short side here are defined as follows: Figure 3 The edges defined by the electronic devices shown may have different lengths for the first and second edges in some devices.
[0091] In one embodiment, after a user purchases movie tickets using a movie ticketing app on the first display screen, they switch to another news app to read news. The first display screen is currently showing a sports news interface along the long side of the phone. Upon detecting that the user has flipped their smartphone to meet the wrist-flipping condition, the second display screen faces the user, and the cached e-ticket QR code is displayed on the second display screen along the short side of the phone.
[0092] According to another embodiment of this disclosure, if a non-target operation on the smartphone (i.e., a target operation that does not meet the target wrist-turning condition) is detected, the second display screen will not display the output of the second target content, and the default interface will be displayed instead.
[0093] For example, such as Figure 3 As shown, the first display screen 300 displays the page content of the mobile application in the direction X1 of the long side of the smartphone. After performing a target operation on the phone that does not meet the target wrist-turning condition, as... Figure 6 As shown, at this time, the second display screen 400 still displays along the long side X1 of the phone (that is, the display directions of the two screens are parallel to each other), so the default interface is displayed on the second display screen, but the second target content required for output will definitely not be displayed.
[0094] Through the embodiments of this disclosure, by setting the first display screen and the second display screen to adopt a non-parallel display direction when displaying output content, a target wrist-turning condition that the target operation should meet is set. Only under this wrist-turning condition will the second target content be displayed and output on the second display screen.
[0095] Figure 7 A flowchart illustrating the process of determining the target operation to be performed according to an embodiment of the present disclosure is shown schematically.
[0096] like Figure 7 As shown, according to an embodiment of this disclosure, the process of determining the target operation to be performed includes operations S710 to S720.
[0097] The S710 is used to acquire pose sensor data from electronic devices.
[0098] For example, the target operation is a wrist-flipping motion performed on an electronic device. During the execution of the wrist-flipping motion, the data of the electronic device in the X, Y, and Z axes will change. In order to determine the execution of the wrist-flipping motion, it is necessary to collect the pose sensor data of the electronic device during the wrist-flipping motion, so as to determine whether the changed data meets the preset requirements based on the pose sensor data.
[0099] First, data is acquired from the smartphone's built-in pose sensor. For example, the pose sensor is a six-axis inertial measurement unit (IMU), which includes a three-axis accelerometer and a three-axis gyroscope. This IMU continuously acquires raw motion data of the device in three-dimensional space at a high frequency (e.g., 200 times per second).
[0100] Specifically, the accelerometer outputs in real time the linear acceleration values (unit: m / s²) of the smartphone along the X, Y, and Z axes and the gravity direction component, used to sense the device's tilt angle. The gyroscope outputs in real time the angular velocity values (unit: rad / s or ° / s) of the phone's rotation around the X, Y, and Z axes, used to sense the speed and direction of the smartphone's rotation.
[0101] In operation S720, based on the pose sensor data, it is determined that the electronic device has switched from the first pose to the second pose. If the pose sensor change data during the switch from the first pose to the second pose indicates that the direction of the angular velocity vector of the electronic device changes continuously within the target time period, it is determined that the electronic device has performed the target operation.
[0102] Understandably, determining the transition of an electronic device from a first posture to a second posture based on posture sensor data, thereby confirming that the target operation has been executed, mainly includes posture transition determination and angular velocity continuity determination.
[0103] Specifically, the first step is to determine the smartphone's basic posture. In its first posture, the smartphone may be lying flat in the user's hand, with the first display screen facing the user. At this time, the gravity vector is along the negative Z-axis of the phone (pointing towards the Earth's center). In a short, consecutive period, a significant flip of the first display screen around the short side of the phone is detected. After the flip, the vertical position of the first and second displays screens in the direction of gravity is reversed. At this point, the second display screen faces the user, and the smartphone is in its second posture.
[0104] Furthermore, a continuous time window is extracted from the start of the first posture change to the stabilization of the second posture (e.g., from time T0 when the posture change begins to time T1 when the posture is stabilized, with a total duration of 500 milliseconds). The angular velocity components of the gyroscope's three axes (X, Y, Z) are treated as a three-dimensional spatial vector. The rate of change of this vector's direction of angle during the time interval T0 to T1 is calculated, and any abrupt changes (jumps) or zero-value stagnation (pauses) are detected to ensure that the vector direction is continuous and uninterrupted in time. Then, the energy concentration of the angular velocity amplitude during this time interval is calculated. If it is a valid wrist-flipping motion, the energy is concentrated in a single main peak range, without multiple dispersed energy peaks. This confirms that the smartphone has performed the target operation at this time.
[0105] Through the embodiments of this disclosure, high-precision wrist-flipping operation determination is achieved by collecting posture sensor data and accurately determining whether the angular velocity vector direction changes continuously during the transition of an electronic device from a first posture to a second posture. Using the continuity of the angular velocity direction as the criterion for valid action effectively eliminates common pauses or jitter interference in daily carrying and grip adjustments. This significantly reduces the false trigger rate, avoids wear and tear, and improves the robustness of posture control.
[0106] Figure 8 A flowchart illustrating a configuration method according to an embodiment of the present disclosure is shown schematically. Figure 9 The illustration schematically shows a side view of an electronic device suitable for implementing the methods described above, according to an embodiment of the present disclosure. Figure 10 A side view of another electronic device suitable for implementing the methods described above, according to an embodiment of this disclosure, is schematically shown.
[0107] According to embodiments of this disclosure, a configuration method is also proposed.
[0108] The following will be through Figure 8 The configuration method of the embodiments of this disclosure will be described in detail.
[0109] like Figure 8 As shown, the configuration method includes operations S810~S820.
[0110] When operating the S810, with the electronic device in a first posture, the output of the third target content is displayed on the first display screen.
[0111] In operation S820, in response to the detection of a target operation, if the third target content contains a recognizable coded pattern, the third target content is configured for the target operation so that the output coded pattern is displayed on the second display screen when the target operation is detected.
[0112] The first display screen and the second display screen are located on opposite sides of the electronic device; the target operation is to switch the electronic device from a first posture to a second posture, in which the vertical position of the first display screen and the second display screen is interchanged in the direction of gravity between the first posture and the second posture; the coded graphic is used to store or represent the target information.
[0113] It is understandable that the method of configuring the coded graphic for the target operation is consistent with the method of displaying the output on the second display screen. That is, after detecting that the first display screen displays the corresponding content (i.e., the coded graphic), after detecting the target operation, a displayable coded graphic is added for the target operation, so that the coded graphic is displayed on the second display screen after the target operation is performed.
[0114] For example, when the smartphone is in a first orientation, the first display screen shows the third target content of the mobile application, and the first display screen faces the user. After detecting a wrist-flipping operation on the smartphone, the second display screen faces the user, and the smartphone is in a second orientation state, that is, the positional relationship of the first and second display screens in the direction of gravity is reversed. If the third target content of the mobile application contains a QR code (e.g., a static QR code image or a dynamic QR code link), then the wrist-flipping operation is configured with the target content containing the QR code. Furthermore, if the QR code is directly displayed on the second display screen after a wrist-flipping operation is detected.
[0115] For example, a user opens a movie ticketing app on the first screen of their smartphone, displaying various movie ticket purchase pages. After the user completes payment for the selected movie, a corresponding e-ticket QR code is generated and displayed on the first screen (i.e., the first screen detects matching content). Upon detecting the user flipping their smartphone, the e-ticket QR code is configured on that flip and displayed on the second screen. Furthermore, while queuing for ticket inspection, if the user is listening to music on the first screen, they can flip their smartphone to directly display the e-ticket QR code on the second screen when they need to have their ticket checked.
[0116] Through the embodiments of this disclosure, the path for presenting credentials is simplified by configuring the coded graphic (such as a QR code) from the main screen to the quick display content on the secondary screen after wrist flip. Users no longer need to repeatedly search within the application; they only need to flip their wrist to display the coded graphic, and the content on the main screen remains uninterrupted. This method utilizes the characteristic of the dual-screen back-to-back setting and the interchange of gravity directions to bind posture changes with content, greatly improving operational efficiency in high-frequency credential presentation scenarios such as ticket checking.
[0117] It should also be noted that, in the process of configuring the third target content for the target operation, the determination of the execution of the target operation includes: acquiring the pose sensor data of the electronic device, determining the electronic device to switch from the first pose to the second pose based on the pose sensor data, and if the pose sensor change data during the switch from the first pose to the second pose indicates that the angular velocity vector direction of the electronic device changes continuously within the target time period, it is determined that the electronic device has performed the target operation.
[0118] For example, the pose sensor data built into the smartphone is obtained, and then the pose switching determination and angular velocity continuity determination are performed based on the pose sensor data to determine that the target operation is executed.
[0119] According to embodiments of this disclosure, in response to detecting a target operation, if the third target content contains an identifiable coded graphic, configuring the third target content for the target operation includes: in response to detecting a target operation, if the third target content contains an identifiable coded graphic, displaying a second control on a second display screen; and in response to the second control being triggered, configuring the third target content for the target operation.
[0120] For example, the second control here is a thumbnail control corresponding to an coded graphic, which is configured to display a complete coded graphic after the user clicks it. That is, when a wrist-flipping operation is detected, after determining that the first display screen shows the corresponding content (i.e., the coded graphic), a thumbnail control is displayed on the second display screen. After the user clicks the thumbnail control, the wrist-flipping operation is configured to display the coded graphic.
[0121] For example, the second control here can also be a prompt box displayed on the second display screen. When a wrist-flipping operation is detected, after determining that the first display screen displays the corresponding display content (i.e., the coded graphic), a prompt box is displayed on the second display screen. When the user clicks the "Add" button in the prompt box, the wrist-flipping operation is configured with the coded graphic that can be displayed.
[0122] According to an embodiment of this disclosure, displaying output of second target content on a second display screen includes: displaying a first control on the second display screen; and displaying output of second target content on the second display screen in response to the first control being triggered.
[0123] For example, after configuring the third target content (i.e., containing a recognizable coded graphic) for the wrist-flipping operation, when the wrist-flipping operation is detected, the first control is displayed on the second display screen, and in response to the first control being triggered, the second target content is displayed on the second display screen.
[0124] For example, the system generates and displays the electronic ticket QR code for the purchased movie ticket on the first display screen. After detecting that the user has flipped their smartphone, please continue reading... Figure 4 As shown, a thumbnail control 410 of an electronic ticket QR code is displayed on the second display screen 400. When the user clicks on the thumbnail control 410 (i.e., the aforementioned second control), the electronic ticket QR code is configured for the wrist-flipping operation, and the complete electronic ticket QR code is displayed on the second display screen. Furthermore, when ticket checking is required, after the user flips their smartphone, the thumbnail control of the electronic ticket QR code (i.e., the aforementioned first control) is directly displayed on the second display screen. After the user clicks on the control, the electronic ticket QR code is displayed.
[0125] In another embodiment of this disclosure, the second control includes multiple thumbnails corresponding to coded graphics, and the second control is configured to allow the user to switch between the thumbnails corresponding to the multiple recognizable coded graphics by sliding a second display screen after clicking.
[0126] For example, if the second display screen already contains a first coded graphic and a second coded graphic, after detecting a target operation, if the third target content contains a recognizable third coded graphic, a second control is displayed on the second display screen. This second control contains multiple coded graphics. In response to the user clicking the second control, the user can slide the second display screen to switch between thumbnails corresponding to the multiple recognizable coded graphics and select the target coded graphic.
[0127] For example, the QR code interface (i.e., the third coded graphic) of the purchased movie ticket is generated and displayed on the first display screen. After detecting that the user flips the smartphone, since there are already other QR codes in the second control on the second display screen, the thumbnail control containing multiple QR codes is displayed on the second display screen. At this time, the user clicks on the thumbnail control and slides the second display screen to switch between the thumbnails corresponding to the multiple recognizable coded graphics, thereby selecting the desired QR code of the electronic ticket to be displayed directly on the second display screen.
[0128] According to an embodiment of this disclosure, the second control is displayed in a target display area of the second display screen, the target display area being close to the target edge of the electronic device.
[0129] For example, after determining that the first display screen shows the corresponding display content (i.e., the coded pattern), when configuring a wrist-flipping operation with a recognizable coded pattern, if the user's hand posture on the electronic device does not change during the wrist-flipping process, it is detected and determined that the angular velocity vector direction changes continuously during the transition from the first posture to the second posture. The energy of the angular velocity amplitude during the wrist-flipping process is concentrated in a single main peak range, indicating a wrist-flipping operation that meets the target wrist-flipping conditions. At this time, the target display area for the second control on the second display screen is a fixed area, set so that the control is exactly in a comfortable area where the finger can easily click. The side of this target display area closest to the electronic device is the target side.
[0130] For example, with Figure 4 , Figure 10 Taking the form of an electronic device as an example, the target area can be located in the upper right or lower right area with X2 as the display direction, and the target side is the long side of the second display screen when the electronic device is in the unfolded state, that is, the side of the second display screen near the hinge area.
[0131] For example, such as Figure 4 As shown, after confirming that the coded graphic is displayed on the first display screen, if the user's wrist-holding posture does not change during the wrist-flipping process, it is detected and determined that the wrist-flipping operation meets the above-mentioned target wrist-flipping conditions. At this time, the target display area of the thumbnail control 410 displayed on the second display screen 400 is fixedly set in a comfortable area where the control is easily clickable by the finger (e.g., ...). Figure 4 As shown in the diagram (display area A and display area B), the target side is the long side of the smartphone.
[0132] Please continue reading. Figure 4 As shown, the display area of the thumbnail control 410 can be square, occupying only a relatively small portion of the display area of the second display screen 400, ensuring that the complete QR code displayed after the user clicks the thumbnail control 410 is not obscured. Furthermore, the thumbnail control 410 can also be configured to be draggable on the second display screen. Figure 4 As shown, the thumbnail control 410 can be dragged from display area A to display area B.
[0133] It is also understandable that after determining that the first display screen displays the corresponding display content (i.e., the coded pattern), when configuring the target operation with a recognizable coded pattern, if the user's hand position on the electronic device changes during the wrist flip, and it is detected and determined that the energy of the angular velocity amplitude during the electronic device's transition from the first posture to the second posture has multiple dispersed energy peaks (i.e., the target operation belongs to other flip operations that meet the non-target wrist flip conditions), then no coded pattern will be configured for the operation, and the second control will not be displayed on the second display screen, but the default interface will be displayed instead.
[0134] In summary, embodiments of this disclosure provide an electronic device, including: a device body, having a first display screen and a second display screen; the first display screen is disposed on a first side of the device body, and the second display screen is disposed on a second side of the device body, the first side and the second side being opposite sides; at least one processor, disposed on the device body, configured to: display and output first target content on the first display screen when the electronic device is in a first posture; and, in response to detecting a target operation, display and output second target content on the second display screen if there is second target information that meets the target conditions; wherein the first display screen and the second display screen are disposed on opposite sides of the electronic device; the target operation is an operation to switch the electronic device from the first posture to the second posture, wherein the vertical position relationship of the first display screen and the second display screen in the direction of gravity is interchanged in the first posture and the second posture; the second target content includes a recognizable coded pattern, the coded pattern being used to store or represent target information.
[0135] For example, such as Figure 9 As shown, the electronic device can be a smartphone with two displays, including: a device body 900, which is provided with a first display 910 and a second display 920; the first display 910 is provided on a first side of the device body, and the second display 920 is provided on a second side of the device body, with the first side and the second side being opposite sides; at least one processor is provided in the device body 900, and is used to: display and output first target content on the first display 910 when the electronic device is in a first posture; and, in response to detecting a target operation, display and output second target content on the second display 920 if there is second target information that meets the target conditions; wherein, the first display 910 and the second display 920 are provided on opposite sides of the electronic device; the target operation is an operation to switch the electronic device from the first posture to the second posture, in which the vertical position relationship of the first display 910 and the second display 920 in the direction of gravity is interchanged between the first posture and the second posture; the second target content contains a recognizable coded graphic, which is used to store or represent target information.
[0136] For example, such as Figure 10As shown, the electronic device can be a foldable smartphone, including a device body 1000, and is provided with a first display screen 1010 and a second display screen 1020; the first display screen 1010 is disposed on a first side of the device body, and the second display screen 1020 is disposed on a second side of the device body, with the first side and the second side being opposite sides; wherein, the first display screen 1010 is a flexible screen, the second display screen 1020 is a non-flexible screen, and the display screen area of the second display screen 1020 is smaller than the display screen area of the first display screen 1010; the first display screen 1010 is a tablet screen in the unfolded state of the smartphone, and the second display screen 1020 is disposed on the device body 1000, and is the display screen on the opposite side of the tablet screen in the unfolded state of the smartphone; in the folded state of the smartphone, the second display screen 1020 faces the user.
[0137] Furthermore, the smartphone also includes at least one processor disposed in the device body 1000, configured to: display and output first target content on the first display screen 1010 when the electronic device is in a first posture; and display and output second target content on the second display screen 1020 in response to detecting a target operation, if there is second target information that meets the target conditions; wherein the first display screen 1010 and the second display screen 1020 are disposed on opposite sides of the electronic device; the target operation is an operation to switch the electronic device from the first posture to the second posture, in which the vertical position relationship of the first display screen 1010 and the second display screen 1020 in the direction of gravity is interchanged between the first posture and the second posture; the second target content includes a recognizable coded graphic, which is used to store or represent target information.
[0138] This disclosure also provides a computer-readable storage medium, which may be included in the device / apparatus / system described in the above embodiments; or it may exist independently and not assembled into the device / apparatus / system. The computer-readable storage medium carries one or more programs that, when executed, implement the method according to the embodiments of this disclosure.
[0139] According to embodiments of this disclosure, the computer-readable storage medium can be a non-volatile computer-readable storage medium, such as including, but not limited to: portable computer disks, hard disks, random access memory, read-only memory, erasable programmable read-only memory, portable compact disk read-only memory, optical storage devices, magnetic storage devices, or any suitable combination thereof. In embodiments of this disclosure, the computer-readable storage medium can be any tangible medium that contains or stores a program that can be used by or in conjunction with an instruction execution system, apparatus, or device.
[0140] According to embodiments of this disclosure, the method flow according to embodiments of this disclosure can be implemented as a computer software program. For example, embodiments of this disclosure include a computer program product comprising a computer program carried on a computer-readable storage medium, the computer program containing program code for performing the methods shown in the flowchart. In such embodiments, the computer program can be downloaded and installed from a network via a communication component, and / or installed from a removable medium. When the computer program is executed by a processor, it performs the functions defined in the system of embodiments of this disclosure. According to embodiments of this disclosure, the systems, devices, apparatuses, modules, units, etc., described above can be implemented using computer program modules.
[0141] According to embodiments of this disclosure, program code for executing the computer programs provided in embodiments of this disclosure can be written in any combination of one or more programming languages. Specifically, these computational programs can be implemented using high-level procedural and / or object-oriented programming languages, and / or assembly / machine languages. The program code can execute entirely on a user computing device, partially on a user device, partially on a remote computing device, or entirely on a remote computing device or server. In cases involving remote computing devices, the remote computing device can be connected to the user computing device via any type of network, including a local area network (LAN) or a wide area network (WAN), or it can be connected to an external computing device (e.g., via the Internet using an Internet service provider).
[0142] The flowcharts and block diagrams in the accompanying drawings illustrate the architecture, functionality, and operation of possible implementations of systems, methods, and computer program products according to various embodiments of this disclosure. In this regard, each block in a flowchart or block diagram may represent a module, segment, or portion of code containing one or more executable instructions for implementing a specified logical function. It should also be noted that in some alternative implementations, the functions indicated in the blocks may occur in a different order than those indicated in the drawings. For example, two consecutively indicated blocks may actually be executed substantially in parallel, and they may sometimes be executed in reverse order, depending on the functions involved. It should also be noted that each block in a block diagram or flowchart, and combinations of blocks in a block diagram or flowchart, may be implemented using a dedicated hardware-based system that performs the specified function or operation, or using a combination of dedicated hardware and computer instructions.
[0143] Those skilled in the art will understand that the features described in the various embodiments of this disclosure can be combined and / or combined in various ways, even if such combinations or combinations are not explicitly described in this disclosure. In particular, the features described in the various embodiments of this disclosure can be combined and / or combined in various ways without departing from the spirit and teachings of this disclosure. All such combinations and / or combinations fall within the scope of this disclosure.
Claims
1. A display method, comprising: When the electronic device is in the first posture, the first target content is displayed on the first display screen; In response to the detection of a target operation, if there is second target information that meets the target conditions, the second target content is displayed and output on the second display screen. The first display screen and the second display screen are located on opposite sides of the electronic device; the target operation is to switch the electronic device from the first posture to the second posture, in which the vertical position of the first display screen and the second display screen is interchanged in the direction of gravity; the second target content includes a recognizable coded graphic, which is used to store or represent target information.
2. The display method according to claim 1, wherein the target condition characterizes the spatiotemporal environment in which the electronic device is located as a target spatiotemporal environment.
3. The display method according to claim 2 further includes: If the target spatiotemporal environment in which the electronic device is located is a first spatiotemporal environment, the second target information that satisfies the target conditions is the first message, and the second target content displayed and output by the second display screen is the first content; If the target spatiotemporal environment in which the electronic device is located is a second spatiotemporal environment, the second target information that satisfies the target conditions is the second message, and the second target content displayed and output by the second display screen is the second content; The first spatiotemporal environment is different from the second spatiotemporal environment, and the first content is different from the second content.
4. The display method according to claim 1, wherein the target condition indicates that the first target content displayed and output by the first display screen is the page content of the target application, the second target content is the target page content of the target application, and the target page content includes the coded graphic.
5. The display method according to claim 1, wherein the first display screen displays and outputs the first target content in a first direction of the electronic device; and the second display screen displays and outputs the second target content in a second direction of the electronic device; in, The first direction and the second direction are different directions of the electronic device, and the first direction and the second direction are not parallel.
6. The display method according to claim 1, further comprising: Acquire the pose sensor data of the electronic device; Based on the pose sensor data, it is determined that the electronic device switches from the first pose to the second pose. If the pose sensor change data during the switch from the first pose to the second pose indicates that the angular velocity vector direction of the electronic device changes continuously within the target time period, it is determined that the electronic device has performed the target operation.
7. A configuration method, comprising: When the electronic device is in the first posture, the content of the third target is displayed on the first display screen; In response to the detection of a target operation, if the third target content contains a recognizable coded pattern, the third target content is configured for the target operation so that, in the event of the detection of the target operation, the coded pattern is displayed on a second display screen. The first display screen and the second display screen are located on opposite sides of the electronic device; the target operation is to switch the electronic device from the first posture to the second posture, in which the vertical position of the first display screen and the second display screen is interchanged in the direction of gravity; the coded graphic is used to store or represent target information.
8. The configuration method according to claim 7, wherein in response to detecting a target operation, configuring the third target content for the target operation if the third target content contains a recognizable coded graphic, includes: In response to the detection of the target operation, if the third target content contains a recognizable coded graphic, a second control is displayed on the second display screen; In response to the second control being triggered, the third target content is configured for the target operation.
9. The configuration method according to claim 8, wherein the second control is displayed in a target display area of the second display screen, the target display area being close to a target edge of the electronic device.
10. An electronic device, comprising: The device itself is equipped with a first display screen and a second display screen; The first display screen is disposed on a first side of the device body, and the second display screen is disposed on a second side of the device body, with the first side and the second side being opposite sides; At least one processor, disposed in the device body, is used for: When the electronic device is in the first posture, the first target content is displayed on the first display screen; In response to the detection of a target operation, if there is second target information that meets the target conditions, the second target content is displayed and output on the second display screen. The first display screen and the second display screen are located on opposite sides of the electronic device; the target operation is to switch the electronic device from the first posture to the second posture, in which the vertical position of the first display screen and the second display screen is interchanged in the direction of gravity; the second target content includes a recognizable coded graphic, which is used to store or represent target information.