Intelligent bracelet application switching device and bracelet with intelligent function
By setting sensors on the bracelet component of the smart bracelet, users can customize the operation form through touch sensors, solving the problem of handling labor caused by the small bracelet screen, and achieving faster and more efficient application switching and interface display.
Patent Information
- Application Number
- CN202422111696.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-28
- Publication Date
- 2025-08-15
- Estimated Expiration
- 2034-08-28
AI Technical Summary
The existing smart bracelets are small in size and have difficulty in handling fingers and are less efficient, especially when searching and opening applications.
The sensor is set on the bracelet assembly of the bracelet. The display assembly is controlled by the touch sensor to display different contents, including pressure sensors and touch sensors. The user can customize the operation form such as double-click or slide to open the application.
It improves the speed, efficiency and accuracy of user operations and improves the user experience.
Smart Images

Figure CN223220059U_ABST
Abstract
Description
Technical Field
[0001] The present application is applied to the technical field of smart bracelets, and in particular relates to a smart bracelet application switching device and a smart bracelet. Background Art
[0002] With the continuous advancement of technology, various smart functions are integrated into bracelets. The operation methods of smart functions serve as the interaction entrance between people and electronic devices. Their natural convenience, efficiency and accuracy have always been pursued by users.
[0003] However, current smart bracelets have small screens, making finger manipulation difficult and inefficient. This is particularly problematic when searching for the growing number of apps. Currently, bracelets lack the ability to perform global searches or quickly access targeted software or features. For example, to open the weather app on a bracelet, a user must unlock the bracelet, swipe to the weather home screen, and then find and launch the weather app. This operation is inefficient for the small touchscreen and relatively large fingers. Utility Model Content
[0004] The present application provides a smart bracelet application switching device to solve the problem of low efficiency when using the bracelet.
[0005] In order to solve the above technical problems, the present application provides a smart bracelet application switching device, including: a main body; a display component, the display component is arranged in the main body, and the display component is at least partially exposed to the main body; a bracelet component, the two ends of the bracelet component are connected to the two ends of the main body, and at least one sensor is provided on the bracelet component; a control component, which is arranged in the main body, the control component is coupled to the sensor and the display component, and the control component receives different operation forms of the sensor to control the display component to display different content.
[0006] The watch chain assembly includes at least one watch chain link, which is movably connected to each other, and the sensor is arranged on one end surface of some of the watch chain links.
[0007] Wherein, a sensor is provided on at least one watch chain link connected to one end of the main body, or a sensor is provided on at least one watch chain link connected to both ends of the main body.
[0008] A touch component is provided on the watch chain component. The touch component is coupled to the control component via the watch chain link display. A plurality of pressing parts are provided on the touch component.
[0009] Among them, the watch chain component is provided with a touch component and a sensor; the watch chain link provided with the touch component is connected to one end of the main body, and the watch chain link provided with the sensor is connected to the other end of the main body.
[0010] The link of the watch chain provided with the touch component is connected to the main body, and the link of the watch chain provided with the sensor is away from the main body and connected to the link of the watch chain provided with the touch component.
[0011] Among them, sensors are provided on the watch chain links connected at both ends of the main body, and one of the watch chain links provided with a sensor is connected to the watch chain link provided with a sensor at one end away from the main body.
[0012] Among them, an adjustment component is provided on the watch chain component, and the adjustment component is provided between two watch chain links. The number of watch chain links connected at both ends of the adjustment component is the same.
[0013] Among them, a buckle is provided at one end of the watch chain link, and a connecting piece is provided at the other end, and the connecting piece is clamped in the buckle.
[0014] To solve the above technical problems, the present application also provides a smart bracelet with smart functions, including: a smart bracelet application switching device, which is the smart bracelet application switching device of any of the above embodiments.
[0015] The beneficial effect of the present invention is: different from the existing technology, the present application connects the watch strap component to the main body and sets a sensor on the watch strap component. After touching the sensor on the watch strap component, the sensor feeds back a signal to the control component so that the control component controls the display component to display different content. By touching the sensor, the display component displays different content, which effectively improves the user's speed, efficiency and accuracy during the operation process, thereby enhancing the user experience. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 This is a schematic diagram of the structure of an embodiment of the smart bracelet application switching device of the present application;
[0017] Figure 2 This is a structural diagram of another embodiment of the smart bracelet application switching device of the present application. DETAILED DESCRIPTION
[0018] The following will be combined with the drawings in the embodiments of this application to clearly and completely describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are only part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.
[0019] It should be noted that if the embodiments of the present application involve directional indications (such as up, down, left, right, front, back, etc.), the directional indications are only used to explain the relative position relationship, movement status, etc. between the various components under a certain specific posture (as shown in the accompanying drawings). If the specific posture changes, the directional indications will also change accordingly.
[0020] In addition, if there are descriptions involving "first", "second", etc. in the embodiments of the present application, the descriptions of "first", "second", etc. are only for descriptive purposes and cannot be understood as indicating or implying their relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" and "second" may explicitly or implicitly include at least one of such features. In addition, the technical solutions between the various embodiments can be combined with each other, but they must be based on the fact that they can be implemented by ordinary technicians in this field. When the combination of technical solutions is contradictory or cannot be implemented, it should be deemed that such a combination of technical solutions does not exist and is not within the scope of protection required by this application.
[0021] See also Figure 1 , Figure 1 This is a structural diagram of an embodiment of a smart bracelet application switching device provided by this application.
[0022] The utility model provides a smart bracelet application switching device. Figure 1 As shown, the smart bracelet application switching device of this embodiment includes: a main body 10, a display component 20, a bracelet component 30 and a control component (not shown). Among them, the display component 20 is arranged in the main body 10, and the display component 20 is at least partially exposed to the main body 10. The two ends of the bracelet component 30 are connected to the two ends of the main body 10, and at least one sensor 40 is provided on the bracelet component 30. Set in the main body 10, the control component is coupled to the sensor 40 and the display component 20. The control component receives different operation forms of the sensor 40 to control the display component 20 to display different content. Among them, the sensor 40 can be a pressure sensor. After the pressure sensor senses pressure, it transmits a signal to the control component, thereby controlling the display component 20 to display different applications or interfaces. Other suitable sensors, such as touch sensors, can also be used as needed. This application does not make specific limitations here.
[0023] In an optional embodiment, a sensor 40 is provided on the portion connecting the bracelet assembly 30 and the main body 10, that is, the sensor 40 is provided on the bracelet assembly 30 near the main body 10. When the user touches the sensor 40 on the bracelet assembly 30, it is more ergonomic, and when the sensor 40 is touched, the display assembly 20 can display different content. The touch sensor 40 can be used to control the display assembly 20 to display different content, or the touch sensor 40 can be used to control the interface switching or interface sliding of the display assembly 20. The user can customize this as needed, and this application does not specifically limit this. Therefore, the user can customize the wristband to display different content when touching the sensor 40 through different operation methods, that is, customize different forms of interaction. For example, by double-clicking or sliding the sensor 40 on the bracelet assembly 30, the sensor 40 will feedback a signal to the control component, and the control component will control the display assembly 20 to display different content.
[0024] In this embodiment, the user can define and set corresponding applications through the control component and the display component 20. For example, a certain software in the wristband can be defined to be opened by double-clicking a certain sensor 40 on the strap component 30. Based on this, the user can complete the preset operation form of opening the corresponding application through the sensor 40 according to the defined application. That is, after completing the corresponding preset operation, the user will become familiar with the required operation form for opening a certain application, such as double-clicking or sliding. After completing the definition of the application and the preset operation, the user can trigger the preset control event by touching the corresponding sensor 40.
[0025] In an optional embodiment, multiple sensors 40 may be provided on the bracelet assembly 30, for example, any suitable number of 2, 3, 4, or the like. For example, two sensors 40 may be provided on the bracelet assembly 30. Each sensor 40 may perform different operations based on different user-defined applications. For example, the same sensor 40 may receive a double-click or a swipe in any direction, thereby providing feedback to the control component so that the control component controls the display component 20 to display different content. In this embodiment, performing different operations on a particular sensor 40 opens the corresponding application. For example, a double-click may open the weather, a left swipe may open the clock, or a swipe down or up may turn pages. The user may define applications as needed to trigger different content through the sensor 40, and this is not specifically limited in this application.
[0026] In the above embodiment, by connecting the watch strap assembly 30 to the main body 10 and setting the sensor 40 on the watch strap assembly 30, after touching the sensor 40 on the watch strap assembly 30, the sensor 40 feeds back a signal to the control assembly so that the control assembly controls the display assembly 20 to display different content. By touching the sensor 40, the display assembly 20 displays different content, which effectively improves the user's speed, efficiency and accuracy during the operation process, thereby enhancing the user experience.
[0027] In an optional embodiment, if Figure 1 As shown, the bracelet assembly 30 includes at least one link 301, which is movably connected to each other. Sensors 40 are disposed on one end surface of some of the links 301. Specifically, the bracelet assembly 30 comprises multiple links 301, which are movably connected to each other, making it easier to attach the bracelet to the user's wrist. The bracelet assembly 30 includes at least one link 301, and sensors 40 are disposed on some of the links 301. Specifically, different operations can be performed to touch the sensors 40 on different links 301, causing the display assembly 20 to display different content.
[0028] In an optional embodiment, a sensor 40 is provided on at least one link 301 connected to one end of the main body 10. That is, a link 301 is connected to both ends of the main body 10. When the bracelet is worn on the user's wrist via the link 301, the link 301 provided with the sensor 40 is positioned closer to the user. When the user uses the link 301 to perform different operations, they can more conveniently double-click or slide the sensor 40 and observe the content displayed on the display component 20 of the bracelet after performing different operations on the sensor 40. Alternatively, a sensor 40 is provided on at least one link 301 connected to each end of the main body 10. Sensors 40 are provided on the watch chain links 301 connected at both ends of the main body 10. The user can use a variety of operation methods to make the display component 20 display different content. For example, a certain watch chain link 301 with a sensor 40 can be operated separately to make the display component 20 display different content. The sensors 40 on the watch chain links 301 connected at both ends of the main body 10 can also be pressed at the same time to display a preset application. The two sensors 40 can also be slid at the same time. The specific operation method can be set according to the user's daily usage habits.
[0029] In an optional embodiment, a touch component 50 is provided on the bracelet assembly 30. The touch component 50 is displayed via a bracelet link 301 and is coupled to the control assembly. The touch component 50 is provided with multiple pressing portions 501. The touch component 50 can be specifically configured as a touch screen, which is not specifically limited in this application. Because the interface of the display assembly 20 on the wristband is small, users are prone to accidental touches when switching interfaces or applications through the display assembly 20. Specifically, the touch component 50 is provided on the bracelet assembly 30. When using the wristband, the user can control the corresponding interface display or application switching within the display assembly 20 through the touch component 50. Specifically, the touch component 50 can be provided on a bracelet link 301 connected to the main body 10. When the user needs to switch interfaces or applications, they can slide or press, and after receiving the feedback signal from the touch component 50, the control assembly 20 can display different content. This reduces the occurrence of accidental touches caused by directly touching the display assembly 20, thereby improving the user experience. In order to facilitate the user to operate the bracelet, multiple pressing parts 501 are set on the touch component 50, so that different functions of the pressing parts 501 can also be defined. For example, by pressing the pressing part 501, the interface can be controlled to slide left and right, or after selecting an application, confirmation can be made to enter the application. The specific function of the pressing part 501 can also be customized according to user needs or usage habits, and this application does not make specific restrictions here.
[0030] In an optional embodiment, the bracelet assembly 30 is provided with a touch component 50 and a sensor 40. The bracelet link 301 provided with the touch component 50 is connected to one end of the main body 10, and the bracelet link 301 provided with the sensor 40 is connected to the other end of the main body. In this case, people who are accustomed to multi-finger operation can simultaneously control the bracelet links 301 at both ends of the main body 10 to complete the corresponding operation. That is, when using the bracelet, on the one hand, by touching the bracelet link 301 provided with the sensor 40, the corresponding application can be opened or the interface can be switched. On the other hand, when some applications need to be opened but there are no defined applications, the bracelet link 301 provided with the sensor 40 can be touched through the hole to control the interface switching. After switching to the corresponding application interface to be opened, the corresponding application can be opened by touching the bracelet link 301 provided with the touch component 50. In other embodiments, the pressing portion 501 on the touch component 50 may correspond one-to-one to the application on the display component 20, that is, one pressing portion 501 corresponds to the corresponding application on the current interface. When an application needs to be opened, the display component 20 can be controlled to open the corresponding application by pressing the corresponding pressing portion 501.
[0031] In an optional embodiment, the bracelet link 301 provided with the touch component 50 is connected to the main body 10, and the bracelet link 301 provided with the sensor 40 is connected to the bracelet link 301 provided with the touch component 50 away from the main body 10. In this case, the bracelet link 301 provided with the touch component 50 and the sensor 40 can be arranged at one end of the main body 10 to facilitate user operation of the bracelet when the user uses the bracelet, effectively adapting to different user habits. During the use of the bracelet, the steps are the same as those described above, and no further details will be given here.
[0032] In an optional embodiment, sensors 40 are provided on each of the bracelet links 301 connected at both ends of the main body 10, with one of the bracelet links 301 equipped with a sensor 40 connected to the bracelet link 301 equipped with the sensor 40 at one end away from the main body 10. Specifically, sensors 40 may be provided on multiple bracelet links 301 on the bracelet assembly 30. Specifically, sensors 40 may be provided on multiple bracelet links 301 connected to one end of the main body 10, for example, two or three. A single bracelet link 301 equipped with a sensor 40 may be provided at the other end of the main body 10. This arrangement of sensors 40 on multiple bracelet links 301 is suitable for users who have a wide variety of wristband applications or who prefer to use a single bracelet link 301 to control only one application. Providing multiple bracelet links 301 equipped with sensors 40 at one end of the main body 10 and providing a sensor 40 on only one bracelet link 301 connected to the other end of the main body 10 is more ergonomic and consistent with most people's usage habits.
[0033] In an optional embodiment, if Figure 2 As shown, a snap 601 is provided at one end of the watch link 301, and a snap connector 602 is provided at the other end, and the snap connector 602 is snapped into the snap connector 601. That is, a snap 601 is provided at one end of the watch link 301, and a snap connector 602 is provided on the other watch link 301, and the snap connector 601 is movably connected to the snap connector 602, so that the two watch links 301 are movably connected. Furthermore, an adjustment component (not shown) is provided on the watch chain assembly 30, and the adjustment component is provided between the two watch chain links 301. The number of watch chain links 301 connected at both ends of the adjustment component is the same. The adjustment component is provided on the watch chain assembly 30, so that after the bracelet is worn on the user's wrist, the length of the watch chain assembly 30 can be adjusted by adjusting the adjustment component, thereby adapting to the different wrists of different people.
[0034] In a specific application scenario, the wristband is first worn on the user's wrist. The user can adjust the adjustment component on the bracelet component 30 to fit their wrist. Based on this, the user can define and set the corresponding application through the control component and display component 20, and perform the corresponding preset operation through the sensor 40 according to the defined application, so that when the wristband needs to open an application or switch interfaces later, the preset operation can trigger the corresponding control event.
[0035] Through the above-described method, by connecting the bracelet assembly 30 to the main body 10 and providing a sensor 40 on the bracelet assembly 30, the display assembly 20 can be controlled to display different content by touching the sensor 40, effectively improving the user's speed, efficiency, and accuracy during operation, thereby enhancing the user experience. By providing the sensor 40 on at least one bracelet link 301 connected to one end of the main body 10, the sensor 40 can be more conveniently double-clicked or slid, and the content displayed on the display assembly 20 on the wristband after performing different operations on the sensor 40 can be observed. By providing the sensor 40 on at least one bracelet link 301 connected to both ends of the main body 10, the display assembly 20 can be controlled to display different content through various operations. By providing the touch assembly 50 on the bracelet assembly 30 and providing multiple pressing portions 501 on the touch assembly 50, the display assembly 20 can be controlled to display different content through operations such as sliding or pressing, reducing the occurrence of accidental touches caused by directly touching the display assembly 20. By providing a fastener 601 at one end of the watch link 301 and a connector 602 at the other end, the watch links 301 can be flexibly connected, making it easier to wear. By providing an adjustment component on the watch bracelet assembly 30, the length of the watch bracelet assembly 30 can be adjusted to accommodate the different wrists of different people.
[0036] The present application also provides a smart bracelet with smart functions, which includes: a smart bracelet application switching device, which is the smart bracelet application switching device of any of the above embodiments.
[0037] The above description is only an implementation method of the present application and does not limit the patent scope of the present application. Any equivalent structure or equivalent process transformation made using the contents of the description and drawings of this application, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present application.
Claims
1. A smart bracelet application switching device, characterized in that: The smart bracelet application switching device includes: Main body; a display assembly, the display assembly being disposed in the main body and at least partially exposed to the main body; A bracelet assembly, wherein two ends of the bracelet assembly are connected to two ends of the main body, and at least one sensor is provided on the bracelet assembly; A control component is disposed in the main body, the control component is coupled to the sensor and the display component, and the control component receives different operation modes of the sensor to control the display component to display different contents.
2. The smart bracelet application switching device according to claim 1, characterized in that: The watch chain assembly includes at least one watch chain link, the watch chain links are movably connected to each other, and the sensor is arranged on one side end surface of some of the watch chain links.
3. The smart bracelet application switching device according to claim 2, characterized in that: A sensor is provided on at least one of the watch chain links connected to one end of the main body, or a sensor is provided on at least one of the watch chain links connected to both ends of the main body.
4. The smart bracelet application switching device according to claim 2, characterized in that: The bracelet assembly is provided with a touch assembly, the touch assembly is coupled to the control assembly via the bracelet link display, and the touch assembly is provided with a plurality of pressing portions.
5. The smart bracelet application switching device according to claim 4, characterized in that: The touch control component and the sensor are provided on the bracelet component; The link provided with the touch component is connected to one end of the main body, and the link provided with the sensor is connected to the other end of the main body.
6. The smart bracelet application switching device according to claim 4, characterized in that: The watch link provided with the touch component is connected to the main body, and the watch link provided with the sensor is away from the main body and connected to the watch link provided with the touch component.
7. The smart bracelet application switching device according to claim 3, characterized in that: Sensors are provided on the watch chain links connected at both ends of the main body, and one of the watch chain links provided with the sensor is connected to the watch chain link provided with the sensor at one end away from the main body.
8. The smart bracelet application switching device according to claim 2, characterized in that: The bracelet assembly is provided with an adjustment assembly, which is arranged between two bracelet links. The number of bracelet links connected at both ends of the adjustment assembly is the same.
9. The smart bracelet application switching device according to claim 2, characterized in that: One end of the watch chain link is provided with a snap fastener, and the other end is provided with a snap connector, and the snap connector is snapped into the snap fastener.
10. A smart bracelet, characterized in that: The smart bracelet includes: A smart bracelet application switching device, wherein the smart bracelet application switching device is the smart bracelet application switching device according to any one of claims 1 to 9.