Wrist smart wearable device, display control method thereof and master control terminal

By generating multiple display screens in a smart wrist-worn device and switching the displayed content according to the user's wrist movements, the problem of information switching under screen size limitations is solved, enabling convenient information viewing without the need for the other hand.

CN115599207BActive Publication Date: 2026-02-13GEER TECH CO LTD
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Patent Information

Application Number
CN202211204286.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-09-29
Publication Date
2026-02-13
Estimated Expiration
2042-09-29

AI Technical Summary

Technical Problem

The limited screen size of existing wrist-worn smart wearable devices forces users to use the fingers of their other hand to swipe the screen when they need to switch displayed information. This is especially problematic when it is inconvenient to use the other hand, which reduces the user experience.

Method used

When a smart wrist-worn wearable device receives an information display command, it generates multiple display screens and switches the display content according to the user's wrist movement information. By detecting the user's wrist movements through an acceleration detection module or electromyography sensor, information switching can be achieved without the need for operation of the other hand.

Benefits of technology

It improves the convenience for users to view information using smart wrist-worn devices and enhances the user experience. Users can switch information through wrist movements without the help of the other hand.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a wrist intelligent wearable device and a display control method and a master control terminal thereof. The display control method of the wrist intelligent wearable device comprises the following steps: when a first information display instruction is received, N display pictures are generated according to preset display parameters and the data length of the first information, and one of the N display pictures is displayed, wherein N is greater than or equal to 1; when wrist action information of a user is received, if N is equal to 1, another information is displayed; and if N is greater than 1, another display picture is displayed. The application aims to improve the convenience of a user in viewing information by using the wrist intelligent wearable device.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of wrist smart wearable device information display technology, in particular to a wrist smart wearable device and a display control method and a master terminal thereof. BACKGROUND

[0002] In recent years, technology is increasingly updated, and wrist smart wearable devices such as smart watches and bracelets have entered people's lives. Due to their versatility and convenience, they are favored by consumers, especially the display of information on the screen interface, which brings convenience to daily communication. However, the screen hardware size of the current wristband product is limited, and some information cannot be fully displayed on the screen of the wristband product. When the user needs to switch the information displayed by the current device, the user must use the fingers of the other hand to slide the screen to switch the information displayed by the current device. If the user's other hand is not convenient to use at the moment, for example, the user is looking at the information displayed by the smart wearable device on the wrist of one hand, and the other hand is holding a heavy object, then the user cannot switch the information displayed by the wrist smart wearable device at the moment, which greatly inconveniences the user in using the wrist smart wearable device to browse information and reduces the user's experience. SUMMARY

[0003] The main purpose of the present application is to provide a wrist smart wearable device display control method, which aims to improve the convenience of users using wrist smart wearable devices to view information.

[0004] To achieve the above purpose, the present application provides a wrist smart wearable device display control method, comprising the following steps:

[0005] S100, when the wrist smart wearable device receives a first information display instruction, N display pictures are generated according to a preset display parameter and the data length of the first information, and one of them is displayed, N is greater than or equal to 1;

[0006] S200, when receiving the wrist action information of the user, if N is equal to 1, another information is displayed; and if N is greater than 1, another display picture is displayed.

[0007] Optionally, the preset display parameter includes at least one of the following: a preset switching rule, a to-be-displayed area size, a preset display font, a preset display size, a preset display word spacing, and a preset display segment spacing.

[0008] Optionally, when the wrist action information of the user is received, if N is equal to 1, the step of switching to display another information specifically includes:

[0009] S210, receiving the wrist action information of the user, and determining the wrist action of the user according to the wrist action information;

[0010] S220, if the N is equal to 1 and the wrist motion is a first preset motion, switching to a next information of the first information to display;

[0011] S230, if the N is equal to 1 and the wrist motion is a second preset motion, switching to a previous information of the first information to display.

[0012] Optionally, the step of switching to another display screen to display when the N is greater than 1, comprises:

[0013] S240, receiving the wrist motion information of the user, and determining the wrist motion of the user according to the wrist motion information;

[0014] S250, if the N is greater than 1 and the wrist motion is a first preset motion, switching to a next display screen of the current display screen to display;

[0015] S260, if the N is greater than 1 and the wrist motion is a second preset motion, switching to a previous display screen of the current display screen to display.

[0016] Optionally, the step of switching to another display screen to display when the N is greater than 1, further comprises:

[0017] if the N is greater than 1 and the wrist motion is a third preset motion, switching to a next display screen of the current display screen to display every preset switching time interval;

[0018] if the N is greater than 1 and the wrist motion is a fourth preset motion, switching to a previous display screen of the current display screen to display every preset switching time interval.

[0019] Optionally, the step of switching to another information to display when the N is equal to 1, and switching to another display screen to display when the N is greater than 1, further comprises:

[0020] if the N is greater than 1 and the current display screen is an initial screen / terminal screen of the N display screens, switching to another information to display when the wrist motion information of the user is received.

[0021] Optionally, the wrist intelligent wearable device comprises an acceleration detection module; and the wrist motion information is acceleration information.

[0022] Optionally, the first preset action is rotating the wrist towards the direction of the user's own body and then returning to the initial position; and the second preset action is rotating the wrist away from the direction of the user's own body and then returning to the initial position.

[0023] Optionally, the third preset action is rotating the wrist towards the direction of the user's own body and keeping for a preset time length; and the fourth preset action is rotating the wrist away from the direction of the user's own body and keeping for a preset time length.

[0024] The application further provides a master terminal, comprising:

[0025] a memory;

[0026] a processor, a wrist smart wearable device display control program stored on the memory and executed by the processor, the wrist smart wearable device display control program, when executed by the processor, implements the wrist smart wearable device display control method.

[0027] The application further provides a wrist smart wearable device, comprising a wrist action detection module and the master terminal.

[0028] In the application, when the first information display instruction is received, N display pictures are generated according to preset display parameters and the data length of the first information, and one of the N display pictures is displayed, N is greater than or equal to 1; and when the wrist action information of the user is received, if N is equal to 1, another information is displayed; and if N is greater than 1, another display picture is displayed. In actual application, when the user uses the wrist smart wearable device to view information, if the user needs to switch the information displayed on the display component, whether the user needs to view the next new information or the other content of the same information, the user does not need to use the fingers of the other hand to cooperate, and only needs to make the wrist wearing the wrist smart wearable device to make corresponding actions, so that the information displayed on the current display component can be switched, the convenience of the user using the wrist smart wearable device to view information is effectively improved, and the experience of the user is improved. BRIEF DESCRIPTION OF DRAWINGS

[0029] In order to more clearly illustrate the technical solutions in the embodiments of the application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description only show some embodiments of the application, and for those skilled in the art, other drawings can also be obtained according to the structures shown in the drawings without creative labor.

[0030] Figure 1 The method flowchart of the wrist smart wearable device display control method embodiment of the application;

[0031] Figure 2 A method flowchart of another embodiment of the wrist smart wearable device display control method of the present application;

[0032] Figure 3 A method flowchart of another embodiment of the wrist smart wearable device display control method of the present application;

[0033] Figure 4 A schematic diagram of a screen displayed in an embodiment of the wrist smart wearable device of the present application; wherein:

[0034] Figure 4 A schematic diagram of a screen displayed in another embodiment of the wrist smart wearable device of the present application;

[0035] Figure 4 A schematic diagram of a screen displayed in another embodiment of the wrist smart wearable device of the present application;

[0036] Figure 4 A schematic diagram of a screen displayed in another embodiment of the wrist smart wearable device of the present application;

[0037] Figure 4 A schematic diagram of a screen displayed in another embodiment of the wrist smart wearable device of the present application;

[0038] Figure 5 A schematic diagram of a circuit module of an embodiment of the wrist smart wearable device of the present application.

[0039] Explanation of reference signs:

[0040]

[0041] The implementation, functional features and advantages of the present application will be further described with reference to the accompanying drawings in conjunction with embodiments. DETAILED DESCRIPTION

[0042] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.

[0043] It should be noted that all directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of the present application are only used to explain the relative positional relationship, movement condition, etc. between components in a certain posture (as shown in the drawings), and if the certain posture changes, the directional indications will also change accordingly.

[0044] In recent years, with the increasing update of technology, wrist smart wearable devices such as smart watches and smart bands have entered people's lives. Due to their versatility and convenience, they are favored by consumers, especially the display of information on the screen interface brings convenience to daily communication. However, the screen hardware size of the current wristband product is limited, and some information cannot be fully displayed on the screen of the wristband product. When the user needs to switch the information displayed by the current device, the user must use the fingers of the other hand to slide the screen to switch the information displayed by the current device. If the user's other hand is not convenient to use at the moment, for example, the user is looking at the information displayed by the smart wearable device on the wrist of one hand, and the other hand is holding a heavy object, then the user cannot switch the information displayed by the wrist smart wearable device at the moment, which brings great inconvenience to the user in using the wrist smart wearable device to browse information, and reduces the user's experience.

[0045] Therefore, the present application provides a wrist smart wearable device display control method.

[0046] It can be understood that the wrist smart wearable device can be a smart watch, a smart band, a smart wristband, etc. In the above wrist smart wearable device, a master control terminal, a display component and a communication component are generally provided. The master control terminal is integrated with a memory for storing the following method and a processor for executing the following method. The master control terminal can be implemented by a master controller, such as an MCU, a DSP (Digital Signal Process), an FPGA (Field Programmable Gate Array), etc. The display component can be implemented by a touchable display screen, which is configured to display corresponding picture content under the control of the master control terminal. The communication module can be implemented by a wireless communication module, such as a Bluetooth module, a 4G / 5G module, a WIFI module, a local area network module, etc. The communication component is used to communicate with the user's external terminal, such as a mobile phone, to receive a plurality of information transmitted by the user's external terminal.

[0047] Reference Figure 1 In an embodiment of the present application, the wrist smart wearable device display control method comprises the following steps:

[0048] S100, when the wrist smart wearable device receives a first information display instruction, N display pictures are generated according to the preset display parameters and the data length of the first information, and one of them is displayed, N is greater than or equal to 1;

[0049] Optionally, the master terminal in the wrist smart wearable device will arrange the plurality of to-be-displayed information received from the external terminal via the communication module and / or the to-be-displayed information generated due to its own function in the order of the received order / preset information type order, and then display the to-be-displayed information on the display component, for example, display the title information of the current to-be-displayed information, or display part of the content of the current to-be-displayed information, or display the corresponding thumbnail information according to the notification display rule of the APP corresponding to the information source. Specifically, taking the A content as an example, the wrist smart wearable device has received three to-be-displayed information, which are the information in the memo of the wrist smart wearable device, the short message information from the external terminal, and the APP information in the external terminal. At this time, the master terminal will display the to-be-displayed information on the display component according to the above rule, for example, the title content of the current memo, the APP notification information displayed according to the APP notification display rule, and the beginning part of the content of the short message. Figure 4

[0050] Optionally, in another embodiment, the first information can also be the information that the user needs to directly display on the wrist smart wearable device after triggering the wrist smart wearable device / external terminal, and the information does not have the thumbnail information in the above embodiment. For example, the display interface of the wrist smart wearable device has an e-book APP, when the user clicks on a certain book in the e-book APP by touching, the text content of the book is the current first information, and the master module will generate N display pictures for the text content of the first information, or the user controls the wrist smart wearable device to enter a certain web page, and the content on the current web page is the current first information.

[0051] In the embodiment, the display component can be a touchable screen, and the first information display instruction can be a corresponding signal output by the touchable screen when the user touches a corresponding functional area of the touchable screen. For example, referring to Figure 4 , the display component of the current wrist smart wearable device displays a plurality of thumbnail information corresponding to the to-be-displayed information, when the user wants to see a certain information, the user can click on the thumbnail information corresponding to the to-be-displayed information that the user wants to see with the finger, so that the touchable screen outputs the corresponding first information display instruction.

[0052] Optionally, the wrist smart wearable device can also be provided with a trigger component, for example, a button, a scroll wheel, a turntable, etc., so that the user can trigger the corresponding trigger component to make the trigger component output the corresponding first information display instruction, so that the master terminal determines the to-be-displayed information that the user currently wants to see according to the first information display instruction.

[0053] Optionally, the first information display instruction can also be controlled by the user to the external terminal and issued by the external terminal, so that the master terminal determines the to-be-displayed information that the user currently wants to see when receiving the first information display instruction.​

[0054] Optionally, the first information display instruction can also be wrist action information when a piece of to-be-displayed information is to be switched to another piece of to-be-displayed information for display, i.e., the other piece of to-be-displayed information is the first information. At this time, the wrist action information is not only a switching instruction, but also a first information display instruction, so that the host terminal generates N display screens according to the preset display parameters and the data length of the first information for the other piece of to-be-displayed information to be switched to, and displays one of the N display screens.

[0055] In the embodiment, when the host terminal determines the to-be-displayed information that the current user wants to see according to the first information display instruction, i.e., the first information, the host terminal generates N display screens according to the data length of the first information and the preset display parameters.

[0056] Optionally, the preset display parameters include at least one of a preset switching rule, a to-be-displayed area size, a preset display font, a preset display size, a preset display word spacing, and a preset display paragraph spacing. It can be understood that the size of the to-be-displayed area can be the size of the display screen of the display component currently preset in the host terminal, or the size of the content display interface of the UI (User Interface) corresponding to such information. The preset display parameters can be set by a developer or by the user. The preset switching rule can be set in advance by the user / developer, for example, the content of the next display screen is the content of a preset length / line / page after the content of the previous display screen.

[0057] If N = 1, it means that the entire content of the current first information can be completely displayed on the display component; if N is greater than 1, it means that the entire content of the current first information cannot be completely displayed on the display component. Specifically, when the host terminal determines that the content of the first information cannot be completely displayed on the display component according to the preset display parameters and the data length of the first information, such as the string length, the host terminal generates N display screens according to the preset display parameters and the display content of the first information. Optionally, the content of the next display screen can be completely different from that of the previous display screen, for example, the host terminal divides the entire content of the first information into multiple display screens according to the preset display parameters, and the content of the multiple display screens is completely different. Optionally, the content of the next display screen can also be partially the same as that of the previous display screen.

[0058] It can be understood that if N is greater than 1, the host terminal can display an initial screen in the multiple display screens arranged in sequence, and the initial screen is the beginning content part of the first information.

[0059] S200, when the wrist action information of the user is received, if the N is equal to 1, switching to another information for display; and if the N is greater than 1, switching to another display screen for display.

[0060] In the embodiment, optionally, the wrist smart wearable device comprises a wrist action information detection module, such as an acceleration detection module, and the wrist action information is acceleration information. The acceleration detection module is electrically connected to the master terminal to detect the acceleration value of the current wrist smart wearable device. It can be understood that when the user needs to view information by using the wrist smart wearable device, the user generally wears the wrist smart wearable device on the wrist. At this time, the acceleration value detected by the acceleration detection module is the acceleration value of the user's wrist. The master terminal can determine the current wrist action of the user according to the change of the acceleration value of the user's wrist detected by the acceleration detection module and a preset wrist acceleration value change-wrist action mapping table. For example, the wrist action includes inwardly turning the wrist, outwardly turning the wrist, lifting the wrist, and swinging the wrist. The preset wrist acceleration value change-wrist action mapping table is obtained and preset in the master terminal by the researchers after multiple tests during the research and development.

[0061] Optionally, the wrist action information detection module can further comprise a plurality of pressure detection modules. The plurality of pressure detection modules are used to detect the pressure values of different positions of the wrist when the user wears the wrist smart wearable device, and output corresponding pressure detection signals to the master terminal respectively. The master terminal can determine the current wrist action of the user according to the plurality of pressure detection signals and a preset wrist pressure-wrist action mapping table. The preset wrist pressure-wrist action mapping table is obtained and preset in the master terminal by the researchers after multiple tests during the research and development.

[0062] Optionally, the wrist action information detection module can also be implemented by using an electromyography sensor. The electromyography sensor can detect the electromyography signal of the muscle of the wrist of the user and output to the master terminal. The master terminal can determine the muscle activity state of the wrist of the user according to the electromyography signal, and then confirm the current wrist action of the user.

[0063] In the embodiment, when the master terminal receives the wrist action information of the user, that is, when the master terminal confirms the current wrist action of the user, the master terminal can execute the switching action of the content displayed by the display assembly according to the preset wrist action-display switching action, so as to realize the switching of the content displayed on the display assembly.

[0064] Specifically, when N is 1, that is, the content of the current first information can be displayed on the display component, if the host terminal receives the wrist action information, the host terminal switches to another information to display according to the wrist action of the user, for example, a plurality of information to be displayed are arranged in the order of receiving, when the user makes a wrist action, the host terminal can switch to the previous information of the first information to display the process of the above embodiment, or the next information to display the process of the above embodiment.

[0065] When N is greater than 1, that is, the content of the current first information cannot be displayed on the display component, if the host terminal receives the wrist action information, the host terminal switches to another display screen to display according to the wrist action of the user, for example, the current display screen is the initial screen, when the user makes a wrist action, the host terminal can display the next display screen of the initial screen.

[0066] In the present application, when receiving the first information display instruction, N display screens are generated according to the preset display parameters and the data length of the first information, and one of the N display screens is displayed, N is greater than or equal to 1; and when receiving the wrist action information of the user, if N is equal to 1, another information is switched to display; and if N is greater than 1, another display screen is switched to display. In actual application, in the process of using the wrist smart wearable device to view information, if the user needs to switch the information displayed on the display component, whether it is to switch to the next new information for viewing or to switch to other content of the same information for viewing, the other hand does not need to cooperate, only the wrist wearing the wrist smart wearable device needs to make the corresponding action, and the information displayed on the current display component can be switched, the convenience of the user using the wrist smart wearable device to view information is effectively improved, and the user experience is improved.

[0067] Reference Figure 2 In an embodiment of the present application, when the wrist action information of the user is received, if N is equal to 1, the step of switching to another information to display specifically includes:

[0068] S210, receiving the wrist action information of the user, and determining the wrist action of the user according to the wrist action information;

[0069] S220, if N is equal to 1 and the wrist action is a first preset action, switching to the next information of the first information to display;

[0070] S230, if N is equal to 1 and the wrist action is a second preset action, switching to the previous information of the first information to display.

[0071] In the embodiment, optionally, the first preset action is rotating the wrist towards the direction of the user's own and then restoring to the initial position; and the second preset action is rotating the wrist away from the direction of the user's own and then restoring to the initial position. Optionally, the first preset action and the second preset action can also be set by the user. As known from the above, the master terminal can determine the wrist action of the user according to the acceleration value change of the wrist of the user, and switch the display content of the display component according to the specific wrist action and the display condition of the current first information.

[0072] Specifically, the embodiment in Figure 4 will be taken as an example for illustration, Figure 4 The abbreviated information "memo title", "novel update prompt" and "message" in A are arranged from top to bottom as the first to-be-displayed information, the second to-be-displayed information and the third to-be-displayed information. At this time, the user touches the "message" with the finger, and sends the corresponding first information display instruction to the master terminal to the display component which is a touch screen. At this time, the first information is the third to-be-displayed information, and when the master terminal receives the first information display instruction, the master terminal will generate N display pictures according to the preset display parameters and the data length of the first information. Since the display picture corresponding to the first information generated by the master terminal is only one (N = 1), and reference is made to Figure 4 B, the master terminal will directly display the entire content of the first information. At this time, if the user wants to switch to the previous information to view, i.e., to view the second to-be-displayed information, the user can rotate the wrist away from the direction of the user's own and then restore to the initial position. In this way, when the master terminal identifies that the wrist action of the user is the second preset action, the master terminal will take the second to-be-displayed information as the new first information, and generate the corresponding N display pictures according to the above embodiment. Since the content of the current first information cannot be displayed on the display component, the master terminal will switch to the initial picture in the N display pictures to display according to the process of the above embodiment, i.e., the picture in Figure 4 C.

[0073] It can be understood that in another embodiment of the present application, reference is made to Figure 3 In an embodiment of the present application, when the wrist action information of the user is received, if the N is greater than 1, the step of switching to another display picture to display specifically includes:

[0074] S240, receiving the wrist action information of the user, and determining the wrist action of the user according to the wrist action information;

[0075] S250, if the N is greater than 1 and the wrist action is the first preset action, switching to the display picture after the current display picture to display;

[0076] S260, if the N is greater than 1 and the wrist motion is the second preset motion, switching to a previous display screen of the current display screen to display.

[0077] In the embodiment, optionally, the first preset motion and the second preset motion can be the motions in the above embodiment, or can be defined by the user.

[0078] Specifically, still taking the example of Figure 4 , in combination with the example content in the above embodiment, when the user wants to switch to display the second to-be-displayed information from the above process, or the information the user wants to see at the beginning is the second to-be-displayed information, the host terminal will take the second to-be-displayed information as the first information, and generate N display screens according to the preset display parameters and the data length of the first information, and display one of them, referring to Figure 4 C, Figure 4 C is the initial screen in the N display screens of the first information, and N is greater than 1 because the content of the first information cannot be displayed on the display component at one time. At this time, if the user wants to see the subsequent content of the current novel, i.e., the display screen after the initial screen, the first preset motion can be made, i.e., rotating the wrist towards the user's own direction and then restoring to the initial position. In this way, when the host terminal recognizes that the wrist motion of the user is the first preset motion, the next display screen of the current display screen is switched to display, i.e., from the screen in Figure 4 C to the screen in Figure 4 D. In this way, in actual application, the user can realize the switching display of different information or the display of different information content in one information through wrist motion, improving the convenience of the user in using the wrist smart wearable device to view information.

[0079] It should be understood that if the display screen of the first information is more, for example, N is equal to 20 at present, if the user wants to find a certain key information, the first preset motion / second preset motion needs to be executed multiple times to switch to the display interface carrying the key information, which is more troublesome and brings inconvenience to the user.

[0080] Therefore, in another embodiment, when the wrist motion information of the user is received, if the N is greater than 1, the step of switching to another display screen to display further includes:

[0081] If the N is greater than 1 and the wrist motion is a third preset motion, every interval preset switching duration switches to the display screen after the current display screen to display;

[0082] If the N is greater than 1 and the wrist motion is a fourth preset motion, every interval preset switching duration switches to the display screen before the current display screen to display.

[0083] In the embodiment, optionally, the third preset action is rotating the wrist towards the user's own direction and keeping for a preset time length; and the fourth preset action is rotating the wrist away from the user's own direction and keeping for a preset time length. The preset time length can be set by the developer in advance during the development and preset in the master terminal, for example, 3S, or can be set by the user.

[0084] Specifically, when the user rotates the wrist towards the user's own direction and keeps for a preset time length, the master terminal can know that the current user wants to quickly switch the display screen backward, and will switch the current screen once every preset switching time length. For example, the current preset switching time length is 2S, the display screen is 5 including ABCDE, the current display screen is display screen A, when the master terminal determines that the user has made the third preset action, it will switch to display screen B display after 2S, and switch to display screen C display after display screen B display for 2S, and switch to display screen D display after display screen C display for 2S, until display screen E is displayed, and stop at the end of the display screen E. If the user stops keeping the third preset action during the period, the master terminal will stop displaying the current display screen.

[0085] Similarly, when the user rotates the wrist away from the user's own direction and keeps for a preset time length, the master terminal can know that the current user wants to quickly switch the display screen forward, and will switch the current screen once every preset switching time length.

[0086] It can be understood that when the display is switched forward to the starting screen, the forward switching will be stopped, and when the display is switched backward to the end screen, the backward switching will also be stopped.

[0087] Therefore, in actual application, if the user wants to find some key content in the content of the first information, only needs to make the corresponding wrist action, the automatic and quick switching of the display screen can be realized, and the user does not need to switch one by one, and the convenience of the user using the wrist smart wearable device to view the information is further improved.

[0088] In addition, it can be understood that in another embodiment, the step S200 further includes:

[0089] When the wrist action information of the user is received, if the N is greater than 1 and the current display screen is the initial screen / end screen of the N display screens, the other information is switched to display.

[0090] Specifically, if the picture displayed on the display component is an initial picture, and the user makes a second preset action again, the host terminal controls the display component to switch to the previous information of the current first information for display. Similarly, if the picture displayed on the display component is a final picture, and the user makes a first preset action again, the host terminal controls the display component to switch to the next information of the current first information for display. The specific switching process can refer to the above embodiment, and will not be described here. In actual application, the user can switch to another information for subsequent reading only by wrist action after reading the content of the first information composed of multiple display pictures, thereby improving the convenience of the user in viewing information by using the wrist smart wearable device.

[0091] Reference Figure 4 The application further provides a host terminal, comprising:

[0092] a memory 10;

[0093] a processor 20, a wrist smart wearable device display control program stored on the memory 10 and executed by the processor 20, wherein the wrist smart wearable device display control program, when executed by the processor, implements the wrist smart wearable device display control method in any one of claims 1-10.

[0094] It is worth noting that, because the host terminal of the application contains all the embodiments of the wrist smart wearable device display control method described above, the host terminal of the application has all the beneficial effects of the wrist smart wearable device display control method described above, which will not be described here.

[0095] The application further provides a wrist smart wearable device, comprising a wrist action detection module 30 and the host terminal described above.

[0096] In the embodiment, the wrist action detection module 30 is an acceleration detection module.

[0097] It is worth noting that, because the wrist smart wearable device of the application contains all the embodiments of the host terminal and the wrist smart wearable device display control method described above, the wrist smart wearable device of the application has all the beneficial effects of the host terminal and the wrist smart wearable device display control method described above, which will not be described here.

[0098] The above is only an optional embodiment of the application, and does not limit the patent scope of the application, any equivalent structural transformation made by using the content of the application specification and drawings, or direct / indirect application in other related technical fields under the inventive concept of the application is included in the patent protection scope of the application.

Claims

1. A display control method for a wrist-worn smart wearable device, characterized in that, Includes the following steps: S100: When the wrist-worn smart wearable device receives the first information display instruction, it generates N display screens according to the preset display parameters and the data length of the first information, and displays one of them, where N is greater than or equal to 1; S200: When receiving wrist movement information from the user, if N equals 1, then switch to displaying another piece of information; and if N is greater than 1, then switch to displaying another of the aforementioned display screens. Specifically, the step of switching to another display screen when receiving user wrist movement information, if N is greater than 1, includes: S240: Receive the user's wrist movement information, and determine the user's wrist movement based on the wrist movement information; S250. If N is greater than 1 and the wrist movement is the first preset movement, switch to the next display screen of the current display screen for display. S260. If N is greater than 1 and the wrist movement is the second preset movement, switch to the previous display screen of the current display screen for display. When the user's wrist movement information is received, if N is greater than 1, the step of switching to another display screen for display further includes: When the user's wrist movement information is received, if N is greater than 1, the step of switching to another display screen for display further includes: If N is greater than 1 and the wrist movement is the third preset movement, the display will switch to the next display screen after the current display screen every preset switching time interval; If N is greater than 1 and the wrist movement is the fourth preset movement, the display will switch to the previous display screen every preset switching time interval; The third preset action is to rotate the wrist toward the user and hold it for a preset duration; the fourth preset action is to rotate the wrist away from the user and hold it for a preset duration.

2. The display control method for a wrist-worn smart wearable device as described in claim 1, characterized in that, The preset display parameters include at least one of the following: preset switching rules, size of the display area, preset display font, preset display size, preset display character spacing, and preset display segment spacing.

3. The display control method for a wrist-worn smart wearable device as described in claim 1, characterized in that, When the user's wrist movement information is received, if N equals 1, the step of switching to display another type of information specifically includes: S210. Receive the user's wrist movement information and determine the user's wrist movement based on the wrist movement information; S220. If N equals 1 and the wrist movement is a first preset movement, switch to display the next piece of information in the first information. S230. If N equals 1 and the wrist movement is the second preset movement, switch to displaying the previous message of the first message.

4. The display control method for a wrist-worn smart wearable device as described in claim 1, characterized in that, When the user's wrist movement information is received, if N equals 1, then switch to displaying another type of information; Furthermore, if N is greater than 1, the step of switching to another display screen further includes: When the user's wrist movement information is received, if N is greater than 1 and the currently displayed screen is the initial / final screen among the N displayed screens, then switch to displaying another piece of information.

5. The display control method for a wrist-worn smart wearable device as described in any one of claims 1-4, characterized in that, The wrist-worn smart wearable device includes an acceleration detection module; the wrist movement information is acceleration information.

6. The display control method for a wrist-worn smart wearable device as described in claim 1 or 3, characterized in that, The first preset action is to rotate the wrist toward the user and then return it to the initial position; The second preset action is to rotate the wrist away from the user and then return to the initial position.

7. A master control terminal, characterized in that, include: Memory; A processor, a wrist-worn smart wearable device display control program stored in the memory and executed by the processor, wherein the wrist-worn smart wearable device display control program, when executed by the processor, implements the wrist-worn smart wearable device display control method as described in any one of claims 1-6.

8. A smart wearable device for wrist use, characterized in that, It includes a wrist motion detection module and the main control terminal as described in claim 7.

Citation Information

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