Modularized intelligent bracelet system

Through the modularly designed smart bracelet system, the problem of fixed functions of existing wearable devices is solved, flexible combination of functions and personalized selection is realized, and the degree of intelligence and application scope is improved.

CN120284051APending Publication Date: 2025-07-11SHANGHAI ART & DESIGN ACADAMY
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Patent Information

Application Number
CN202510523286.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-24
Publication Date
2025-07-11

AI Technical Summary

Technical Problem

The existing wearable device functional modules are fixed when leaving the factory, making it difficult to expand and adjust functions according to the actual needs of users, resulting in low functional integration and poor flexibility.

Method used

A modular smart bracelet system is designed. Through the combination of smart beads and ordinary beads, each smart bead includes independent power supply modules, wireless transmission modules and functional modules. The electrical connection and disassembly between modules are achieved using magnetic power-absorbing connectors, and the combination and exchange of multiple functional modules are supported, and centralized control is performed through control beads or smart terminals.

Benefits of technology

The combination of functional modules selected according to user needs is realized, which improves the personalization and diversification of functions, reduces design and maintenance costs, and increases the degree of intelligence and application scope.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a modular intelligent bracelet system, which comprises a bracelet body constructed by a plurality of intelligent beads and common beads, each intelligent bead comprises an independent power supply module, a wireless transmission module and one or more functional modules, and the intelligent beads communicate with an intelligent terminal through respective wireless transmission modules. Or one intelligent bead serves as a control bead, other intelligent beads communicate with the control bead through respective wireless transmission modules, the intelligent terminal is loaded with an application program, and the application program controls the function module of the corresponding intelligent bead to execute the corresponding function according to a control instruction sent by the intelligent terminal. The execution result or the collection information of each intelligent bead is displayed on the intelligent terminal; or the control bead is loaded with an application program, the application program controls the function module of the corresponding intelligent bead to execute the corresponding function according to a control instruction sent by the control bead, and the execution result or the collection information of each intelligent bead is displayed on the control bead or the corresponding intelligent bead.
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Description

Technical Field

[0001] The present invention relates to the technical field of wearable devices, and particularly to a modular intelligent bracelet system. Background Art

[0002] Currently, common wearable devices such as bracelets and watches have their function modules fixed at the time of factory shipment, making it difficult to expand and adjust functions according to the actual usage scenarios of users. As a result, they have low function integration and poor flexibility. For example, in a sports scenario, users expect the device to selectively implement functions such as step counting, body temperature monitoring, sports posture analysis, calorie consumption calculation, etc. according to personal needs, rather than all functions. However, traditional devices are limited by the established function framework and cannot meet these diversified and personalized needs. Summary of the Invention

[0003] The present invention provides a modular intelligent bracelet system, which solves the technical problems of existing wearable devices such as bracelets, where the function modules are fixed at the time of factory shipment, making it difficult to expand and adjust functions according to the actual usage scenarios of users, resulting in low function integration and poor flexibility.

[0004] The present invention can be realized through the following technical solutions:

[0005] A modular intelligent bracelet system includes a bracelet body, and the bracelet body includes a plurality of intelligent beads and ordinary beads built together. Each intelligent bead includes an independent power supply module, a wireless transmission module, and one or more function modules.

[0006] They all communicate with the intelligent terminal through their respective wireless transmission modules, or one of the intelligent beads is used as a control bead, and other intelligent beads all communicate with the control bead through their respective wireless transmission modules.

[0007] The intelligent terminal is loaded with an application program, and the application program controls the function modules of the corresponding intelligent beads to execute corresponding functions according to the control instructions sent by the intelligent terminal, and displays the execution results or collected information of each intelligent bead on the intelligent terminal.

[0008] Or the control bead is loaded with an application program, and the application program controls the function modules of the corresponding intelligent beads to execute corresponding functions according to the control instructions sent by the control bead, and displays the execution results or collected information of each intelligent bead on the control bead or the corresponding intelligent bead.

[0009] Further, the control bead communicates with the smart terminal through its own wireless transmission module. The smart terminal is loaded with an application program, which sends control instructions of the smart terminal to the control bead. The functional module of the control bead controls the functional modules of the corresponding smart beads to perform corresponding functions according to the control instructions, and transmits the execution results or collected information of each smart bead to the smart terminal for display.

[0010] Further, the control bead communicates with other smart wearable devices through its own wireless transmission module.

[0011] Further, the smart bead includes a universal hemisphere and a functional hemisphere that cooperate with each other and can be detachably connected together. Inside the universal hemisphere, there are a power module, a wireless communication module, and a female end of a magnetic attraction electrical connector. Inside the functional hemisphere, there are one or more functional modules and a male end of a magnetic attraction electrical connector. The female end and male end of the magnetic attraction electrical connector cooperate with each other to realize electrical connection between the universal hemisphere and the functional hemisphere.

[0012] Further, at the edge positions of the universal hemisphere and the functional hemisphere, there are correspondingly arranged threads or bayonets and tongues that cooperate with each other.

[0013] Further, the female end of the magnetic attraction electrical connector of the universal hemisphere is electrically connected to the charging base for charging.

[0014] Further, grooves are correspondingly opened along the diameter position where the centers of the universal hemisphere and the functional hemisphere are located. The two grooves together form a channel for the connecting rope to pass through. The connecting rope is used to connect each smart bead together to form a bracelet.

[0015] At the port position of each groove, there is an indicator light, which is used to indicate the working state and fault state of the corresponding smart bead.

[0016] Further, the functional module includes a GPS positioning module, a step counting module, a temperature and humidity sensor, a body temperature / heart rate monitoring module, an NFC module, a vibration module, a sound module, a display module, and a control chip.

[0017] Further, these smart beads and ordinary beads are arranged in an alternating manner and are strung together with a connecting rope to form a bracelet. Each ordinary bead is provided with a channel for the connecting rope to pass through.

[0018] Further, the control bead, the smart bead, and the smart terminal also communicate with the cloud server.

[0019] The beneficial technical effects of the present invention are as follows:

[0020] 1. Since each intelligent bead is equipped with an independent power supply module, wireless transmission module, and function module, it can achieve corresponding functions on its own. Users can select intelligent beads with corresponding functions according to actual needs to jointly form an intelligent bracelet, meeting the personalized and diversified needs of today's users.

[0021] 2. The control bead / smart terminal can be directly used as the control center to directly control the coordinated work of each intelligent bead. Or the smart terminal can be used as the main controller, and the control bead as the sub - controller to indirectly control the coordinated work of each intelligent bead. On this basis, it can also interact with other intelligent wearable devices to achieve more advanced and complex functions, with a high degree of intelligence, a wider application range, and stronger practicality.

[0022] 3. The intelligent bead is designed such that the universal hemisphere and the functional hemisphere are detachably connected. The universal hemisphere mainly provides electrical energy and wireless communication, serving as the common part of each intelligent bead, which can greatly reduce the design cost of the intelligent bead, facilitate replacement and maintenance, and have better practicality. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 is a schematic diagram of the overall structure of the bracelet of the present invention, where black represents ordinary beads;

[0024] Figure 2 is a schematic diagram of the mating structure of the universal hemisphere and the functional hemisphere of the present invention;

[0025] Figure 3 is a schematic diagram of the structure of the universal hemisphere of the present invention;

[0026] Figure 4 is a schematic diagram of the structure of the functional hemisphere of the present invention;

[0027] Figure 5 is a schematic diagram of the thread structure on the functional hemisphere of the present invention;

[0028] Figure 6 is a schematic diagram of the thread structure on the universal hemisphere of the present invention;

[0029] Among them, 1 - intelligent bead, 11 - universal hemisphere, 111 - power supply module, 112 - wireless communication module, 113 - female end of magnetic - absorption electrical connector, 114 - thread, 115 - groove, 12 - functional hemisphere, 121 - function module, 122 - male end of magnetic - absorption electrical connector, 2 - connecting string, 3 - indicator light. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0030] The following describes the specific embodiments of the present invention in detail with reference to the accompanying drawings and preferred embodiments.

[0031] As Figure 1As shown in the figure, the present invention provides a modular intelligent bracelet system, including a bracelet body, which consists of a plurality of intelligent beads 1 and ordinary beads built together. Each intelligent bead 1 includes an independent power supply module, a wireless transmission module, and one or more functional modules. They all communicate with the intelligent terminal through their respective wireless transmission modules, or one of the intelligent beads 1 is used as a control bead, and the other intelligent beads 1 all communicate with the control bead through their respective wireless transmission modules. The intelligent terminal is loaded with an application program. According to the control instructions sent by the intelligent terminal, the application program controls the functional modules of the corresponding intelligent beads 1 to perform corresponding functions, and displays the execution results or collected information of each intelligent bead 1 on the intelligent terminal;

[0032] Or the control bead is loaded with an application program. According to the control instructions sent by the control bead, the application program controls the functional modules of the corresponding intelligent beads 1 to perform corresponding functions, and displays the execution results or collected information of each intelligent bead 1 on the control bead or the corresponding intelligent bead.

[0033] In this way, since each intelligent bead 1 has an independent power supply module, a wireless transmission module, and a functional module, it can realize the corresponding functions by itself. Users can choose the intelligent beads with corresponding functions according to actual needs to jointly form an intelligent bracelet, meeting the personalized and diversified needs of current users. At the same time, the intelligent beads can cooperate with each other under the control of the control bead or the intelligent terminal, improving the intelligent level. And by dispersing the functions to each intelligent bead, it is beneficial to the integration of more functions, with better intelligent effects, wider application ranges, and stronger practicability.

[0034] Specifically as follows:

[0035] These intelligent beads and ordinary beads are arranged in an alternating manner and strung together with a stringing rope to form a bracelet. Each intelligent bead and ordinary bead is provided with a channel for the stringing rope to pass through. Of course, users can also design the sorting method and quantity between the intelligent beads and ordinary beads according to their own preferences and needs.

[0036] Such as Figures 2 - 4As shown, the intelligent bead 1 includes a universal hemisphere 11 and a functional hemisphere 12 that cooperate with each other and can be detachably connected together. Inside the universal hemisphere 11, there are a power module 111, a wireless communication module 112, and a female magnetic electrical connector 113. Inside the functional hemisphere 12, there is one or more functional modules 121 and a male magnetic electrical connector 122. The female magnetic electrical connector 113 and the male magnetic electrical connector 122 cooperate with each other to achieve electrical connection between the universal hemisphere 11 and the functional hemisphere 12. In this way, the universal hemisphere 11 can be used as a common component to cooperate with the functional hemisphere 12 to work, provide electrical energy for it, and achieve communication with the intelligent terminal or the control bead, which can effectively reduce the manufacturing cost of the intelligent bead 1, facilitate maintenance and replacement, and even product function upgrade. In addition, the magnetic electrical connector can not only achieve electrical connection between the universal hemisphere and the functional hemisphere, but also provide assistance for the mechanical connection between the universal hemisphere and the functional hemisphere, which helps with the disassembly between the two.

[0037] For easy disassembly, as Figures 5 - 6 shown, corresponding threads 114 that cooperate with each other are provided at the edge positions of the universal hemisphere 11 and the functional hemisphere 12. It can be only threads with a relatively small arc length, which depends on the actual situation. A clamping structure such as a bayonet and a tongue can also be used. There are multiple pairs of them. For example, multiple openings are spaced apart at the edge of the universal hemisphere 11, and tongues are provided at the corresponding positions of the functional hemisphere 12. Selecting one pair as the positioning is more conducive to the suction connection between the female magnetic electrical connector 113 and the male magnetic electrical connector 122.

[0038] In addition, we can set a male magnetic electrical connector on the charging base that cooperates with the female magnetic electrical connector 113, so that the universal hemisphere 11 can be electrically connected to the charging base to achieve charging. Of course, the charging base can be a power converter and can be directly connected to the mains socket.

[0039] The control chip in the control bead / intelligent terminal serves as the "commander" of the charging process, real-time monitoring key parameters such as the voltage, current, and temperature of the battery, as well as factors such as power and electromagnetic interference in the charging environment. Based on these real-time monitoring data, the control chip can dynamically and precisely adjust parameters such as the charging voltage and current to achieve an efficient, safe, and stable charging process. During the charging process, the intelligent control chip can also automatically optimize the charging strategy according to the real-time state of the battery. For example, it adopts a fast charging mode when the battery power is low and a trickle charging mode when the battery power is close to full, so as to effectively protect the battery, extend the battery life, and ensure the safety and stability of the charging process at the same time.

[0040] In order to string these intelligent beads 1 together, grooves 115 are correspondingly opened along the diameter positions where the centers of the universal hemisphere and the functional hemisphere are located. These two grooves 115 cooperate to jointly form a channel for the stringing rope 2 to pass through. The stringing rope 2 passes through the channel to string together each intelligent bead 1 to form a bracelet. These intelligent beads 1 can adopt structures such as circular, square, and polygonal shapes and can be designed according to current popular styles.

[0041] An indicator light 3 is provided at the port position of each groove 115. The indicator light 3 can indicate the working state and fault state of the corresponding intelligent bead. For example, when in the working state, it can continuously light a green light to save energy; when in the fault state, it can light a red light to remind the user to pay attention.

[0042] These functional modules can be a GPS positioning module, a step counting module, a temperature and humidity sensor, a body temperature / heart rate monitoring module, an NFC module, a vibration module, a sound module, a control chip, or an artificial intelligence module integrated with advanced artificial intelligence algorithms, etc.

[0043] For the advanced artificial intelligence module: Through deep learning algorithms and big data analysis technologies, intelligent interactions are realized, such as voice assistants, intelligent recommendations, health analysis, etc. Its interaction data, analysis results, etc. can also be uploaded to an intelligent terminal such as a mobile phone to provide a more intelligent and personalized service experience for users. For example, the voice assistant can query the weather, set reminders, etc. according to the user's voice commands; the intelligent recommendation function can recommend suitable exercise courses, health foods, etc. according to the user's exercise data and health status, and can also optimize the settings of the artificial intelligence module, such as adjusting the wake-up word of the voice assistant, setting the preferences of the intelligent recommendation, etc.

[0044] NFC module: Integrates NFC functions and supports functions such as convenient payment, identity recognition, and access control unlocking. During use, information such as its transaction data and identification records can be uploaded to the mobile phone through the wireless communication module, facilitating the user to query consumption records, manage access control permissions, etc. The mobile phone can set the NFC function, such as adding or deleting access control card information, managing payment accounts, etc.

[0045] Step counting module: It can be an integrated precision step counting module that can accurately record each step of the user's movement. Through advanced algorithms and sensor technologies, precise measurement of movement data such as the number of steps, movement distance, and movement speed is achieved. These data are also transmitted to the mobile phone through the wireless communication module. The user can view the statistical chart of their movement data on it to assist in scientific sports and health management. The mobile phone can provide personalized exercise suggestions according to the user's movement data, such as adjusting exercise intensity, recommending exercise duration, etc.

[0046] GPS positioning module: Integrates an advanced positioning module that obtains the accurate location information of users through various technical means such as satellite positioning and base station positioning, and uses wireless communication technology to upload location data to the mobile APP in real time. In the scenario of preventing children from getting lost, parents can view the location of their children wearing the smart bead string in real time through the mobile APP to ensure the safety of the children; in the scenario of recording outdoor exercise trajectories, users can clearly review their exercise routes on the mobile APP; the mobile APP also has a historical location query function, which is convenient for users to trace their action trajectories over a period of time.

[0047] Battery module: An arc-shaped battery can be used, which is manufactured based on flexible lithium polymer battery technology, with a thickness ≤ 2mm, and can be flexibly adapted according to the unique curvature of different beads, providing lasting and stable power support for the bead string.

[0048] Body temperature and heart rate monitoring module: Integrates a professional physiological monitoring module, uses high-precision sensors and advanced signal processing algorithms to monitor the changes in the user's body temperature and heart rate in real time and accurately. The monitoring data is quickly uploaded to the mobile APP through the wireless communication module, allowing users to pay attention to their physiological health status at any time. The APP can also set health warning values to remind users in time when the data is abnormal. The mobile APP can generate curves of the user's body temperature and heart rate changes, which is convenient for users to understand the dynamic trends of their own health status.

[0049] Vibration module: Integrates a TEC1-12706 model vibration motor, which is mainly used to generate vibration feedback and can also be used as a special sensing feedback module. When receiving specific instructions (such as reminder instructions) sent by the mobile APP, the vibration motor generates vibration to complete the human-machine interaction feedback, and its working state data can also be uploaded to the mobile APP through the wireless communication module, facilitating users to understand the device operation status. Users can customize the vibration mode on the mobile APP, such as vibration intensity, duration, frequency, etc., to meet the reminder needs in different scenarios.

[0050] Finally, in addition to using the control bead as the master control to act as the CPU to control the cooperation of each smart bead, this control bead can also be used as a slave control. It communicates with the smart terminal through its own wireless transmission module. The application program is still installed in the smart terminal. This application program sends the control instructions of the smart terminal to the control bead, and the function modules of the control bead control the function modules of the corresponding smart beads to execute the corresponding functions according to the control instructions, and transmit the execution results or collected information of each smart bead to the smart terminal for display.

[0051] In addition, the control bead communicates with other smart wearable devices through its own wireless transmission module, such as smart glasses, smart rings, etc. They can work together under the unified control of the smart terminal, or the control bead, smart glasses, or smart ring can be used as the master control, and cooperate with each other under its unified control to complete more complex and advanced functions.

[0052] In addition, the above-mentioned control bead, smart bead, and smart terminal can also communicate with the cloud server to achieve cloud storage, etc.

[0053] In the multi-bead combination scenario of the smart bracelet of the present invention, each bead can work independently, giving full play to the functions integrated by each, and can also cooperate with each other to form a more advanced organic whole.

[0054] For example, the smart bead corresponding to the step counting module transmits the recorded step data to the control bead in real time. Under its unified control, the bead with a display function displays it so that the user can intuitively view the exercise results. At the same time, the step data can also be comprehensively analyzed with the data collected by other beads, such as heart rate, exercise duration, exercise speed, etc., to generate a comprehensive and accurate exercise health report for the user, providing a scientific basis for the user's exercise training and health management; of course, we can also transmit these data to the bead with data analysis function for analysis, and then transmit the analysis result to the control bead for further processing.

[0055] Another example is that when the smart bead corresponding to the positioning module detects an abnormal change in the position, it uploads the data to the smart terminal. Under its unified control, it can send an alarm message to other beads through the wireless communication module, triggering a multi-bead linkage response. After receiving the alarm message, other beads can take corresponding actions according to the preset linkage strategy, such as the bead with a vibration motor emits a strong vibration to remind the user, and the bead with a voice module emits a voice alarm to prompt the user to take measures. And the corresponding position abnormal information can be displayed on the user's mobile APP in time so that the user can understand the situation in time and take corresponding measures. Such a multi-bead cooperation mechanism provides a more rich and diverse user experience, meets the personalized needs of different users in different scenarios, and gives full play to the overall advantages of the smart bead string.

[0056] Although the specific implementation manners of the present invention have been described above, those skilled in the art should understand that these are only examples. Without departing from the principle and essence of the present invention, various changes or modifications can be made to these implementation manners. Therefore, the protection scope of the present invention is defined by the appended claims.

Claims

1. A modular intelligent bracelet system, characterized in that: It includes a bracelet body, and the bracelet body includes a plurality of intelligent beads and ordinary beads built together. Each intelligent bead includes an independent power supply module, a wireless transmission module, and one or more functional modules. They all communicate with the intelligent terminal through their respective wireless transmission modules, or one of the intelligent beads is used as a control bead, and other intelligent beads all communicate with the control bead through their respective wireless transmission modules. The intelligent terminal is loaded with an application program. The application program controls the functional modules of the corresponding intelligent beads to execute corresponding functions according to the control instructions sent by the intelligent terminal, and displays the execution results or collected information of each intelligent bead on the intelligent terminal. Or the control bead is loaded with an application program. The application program controls the functional modules of the corresponding intelligent beads to execute corresponding functions according to the control instructions sent by the control bead, and displays the execution results or collected information of each intelligent bead on the control bead or the corresponding intelligent bead.

2. The modular intelligent bracelet system according to claim 1, characterized in that: The control bead communicates with the intelligent terminal through its own wireless transmission module. The intelligent terminal is loaded with an application program. The application program sends the control instructions of the intelligent terminal to the control bead. The functional module of the control bead controls the functional modules of the corresponding intelligent beads to execute corresponding functions according to the control instructions, and transmits the execution results or collected information of each intelligent bead to the intelligent terminal for display.

3. The modular intelligent bracelet system according to claim 1, characterized in that: The control bead communicates with other intelligent wearable devices through its own wireless transmission module.

4. The modular intelligent bracelet system according to claim 1, wherein: The intelligent bead includes a universal hemisphere and a functional hemisphere that cooperate with each other and can be detachably connected together. Inside the universal hemisphere, there are a power supply module, a wireless communication module, and a female end of a magnetic electrical connector. Inside the functional hemisphere, there are one or more functional modules and a male end of a magnetic electrical connector. The female end of the magnetic electrical connector and the male end of the magnetic electrical connector cooperate with each other to realize the electrical connection between the universal hemisphere and the functional hemisphere.

5. The modular intelligent bracelet system according to claim 4, wherein: At the edge positions of the universal hemisphere and the functional hemisphere, there are corresponding threads or bayonets and tongues that cooperate with each other.

6. The modular intelligent bracelet system according to claim 4, wherein: The female end of the magnetic electrical connector of the universal hemisphere is electrically connected to the charging base to achieve charging.

7. The modular intelligent bracelet system according to claim 4, wherein: Grooves are correspondingly opened along the diameter position where the centers of the universal hemisphere and the functional hemisphere are located. The two grooves together form a channel for the connecting rope to pass through. The connecting rope is used to string together each intelligent bead to form a bracelet. Indicator lights are arranged at the port positions of each groove. The indicator lights are used to indicate the working state and fault state of the corresponding intelligent bead.

8. The modular intelligent bracelet system according to claim 1, wherein: The functional module includes a GPS positioning module, a step counting module, a temperature and humidity sensor, a body temperature / heart rate monitoring module, an NFC module, a vibration module, a sound module, a display module, and a control chip.

9. The modular intelligent bracelet system according to claim 1, wherein: These intelligent beads and ordinary beads are arranged in an alternating manner and are strung together with a connecting rope to form a bracelet. Each ordinary bead is provided with a channel for the connecting rope to pass through.

10. The modular intelligent bracelet system according to claim 1, wherein: The control bead, the intelligent bead, and the intelligent terminal also communicate with the cloud server.