Intelligent kettle bell
The data collection and processing unit of smart kettlebells provide real-time feedback, which solves the problem that existing kettlebells cannot provide real-time feedback, reduces the cost and complexity of multi-spec kettlebell training, and improves training efficiency.
Patent Information
- Application Number
- CN202421816784.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-30
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2034-07-30
AI Technical Summary
Existing kettlebells cannot provide real-time feedback, making it difficult for users to judge the degree of completion and correctness of training movements, and the multi-spec kettlebell training is expensive and inconvenient to use.
Design a smart kettlebell, which includes a data acquisition unit, a data processing unit, a motion information unit and a battery, obtains motion data through a gyroscope, uses algorithm analysis and provides real-time feedback through speakers and display screens, supports Bluetooth connection to interact with other smart devices, and the smart module can be detached to adapt to different kettlebell specifications.
Real-time feedback on training movements is achieved, sports injuries are avoided, and the cost and operation complexity of multi-spec kettlebell training is reduced, which improves training efficiency.
Smart Images

Figure CN223183994U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to an intelligent kettlebell. Background Art
[0002] Kettlebells currently on the market are typically made entirely of iron or feature a body made of elastic material filled with pellets. However, these kettlebells are not electrically powered, and lack real-time feedback on user training. This means users are unclear about their training completion and whether their movements are correct. This can lead to injury if users perform incorrect training movements over time.
[0003] In addition, users often choose a set of kettlebells of various sizes to train together. If all the kettlebells of various sizes are electronic, the cost will be very high and it will be troublesome to use. Summary of the Invention
[0004] In order to solve the above technical problems, the utility model provides an intelligent kettlebell, including a kettlebell belly, a handle and an intelligent module. The intelligent module includes a data acquisition unit, a data processing unit, a motion information unit and a battery. The data acquisition unit is used to obtain the motion data of the intelligent kettlebell, the data processing unit analyzes the motion data to form a motion analysis result, the motion information unit can output corresponding information based on the operation of the intelligent kettlebell and / or motion data and / or motion analysis results, and the battery provides power for the intelligent module.
[0005] Preferably, the data acquisition unit includes a gyroscope.
[0006] Preferably, the gyroscope obtains the acceleration and angular velocity of the smart kettlebell during movement.
[0007] Preferably, the data processing unit analyzes the motion data according to an algorithm pre-stored inside to form a motion analysis result.
[0008] Preferably, the smart module is located on the top of the pot belly.
[0009] Preferably, the smart module includes a housing, and the smart module is detachably mounted on the pot belly.
[0010] Preferably, the pot belly has a mounting recess for mounting the smart module.
[0011] Preferably, the smart module further includes a button for performing one or more operations on the smart kettlebell, including power on, power off, setting, mode selection or motion state control.
[0012] Preferably, the smart module further includes a charging port, through which the battery can be charged.
[0013] Preferably, the corresponding information includes one or more of the movement action, the movement part, the number of movements, the movement time or the evaluation of the movement.
[0014] Preferably, the motion information unit includes a speaker, which can output sound information after the smart module is turned on.
[0015] Preferably, the motion information unit includes a display screen, which can output visual information after the smart module is turned on.
[0016] Preferably, the display screen is a touch screen, and the touch screen is used to perform one or more operations of powering on, powering off, setting, mode selection or motion state control on the smart kettlebell.
[0017] Preferably, the smart kettlebell is connected to applications in other smart devices through a data processing unit (Bluetooth module), and other smart devices include one or more of smart phones, smart tablets, smart TVs or smart projection devices.
[0018] Preferably, the data processing unit includes a Bluetooth module, and the Bluetooth module includes at least an integrated circuit IC, a crystal oscillator and an antenna.
[0019] Preferably, the smart kettlebell can be powered on, powered off, set, mode selected, or exercise state controlled in one or more ways through applications in other smart devices.
[0020] Preferably, the smart kettlebell transmits the motion data and / or motion analysis results of the smart kettlebell to applications in other smart devices through the data processing unit (Bluetooth module).
[0021] Preferably, if it is determined that the user's kettlebell exercise posture is in place or correct, a correct prompt voice is output through the speaker.
[0022] Preferably, if it is determined that the user's kettlebell exercise posture is not in place or is wrong, an error prompt voice is output through the speaker.
[0023] Preferably, the applications in other smart devices can output corresponding information on the other smart devices according to the transmitted motion data and / or motion analysis results.
[0024] Preferably, applications in other smart devices can form historical training data based on the transmitted motion data and / or motion analysis results.
[0025] The present invention has positive effects: the smart kettlebell of the present invention can provide users with options for different training parts or training movements, record the user's training, and provide timely feedback on the user's movement completion status, so that the user can persist in training and train with correct movements to avoid sports injuries. In addition, the detachable smart module in the smart kettlebell of the present invention can match kettlebell bodies of different weights, which reduces costs and is convenient for only moving the smart module when charging or other operations are required, without having to move the entire smart kettlebell. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 This is a three-dimensional schematic diagram of the smart kettlebell.
[0027] Figure 2 The smart kettlebell consists of a kettlebell body and a detachable smart module.
[0028] Figure 3 It is a detachable smart module in the smart kettlebell.
[0029] Figure 4 This is a schematic diagram of the intelligent module composition. DETAILED DESCRIPTION
[0030] See also Figure 1 The present invention provides an intelligent kettlebell 1, which includes a kettlebell belly 2, a handle 3 and an intelligent module 4. The kettlebell belly 2 and the handle 3 constitute the body of the intelligent kettlebell 1, and the kettlebell belly 2 includes internal fillings and the like.
[0031] The smart module 4 can be set in any part of the smart kettlebell 1 that does not affect the use, preferably on the top of the kettlebell belly 2, so that the user can operate and get prompts more conveniently. The smart module 4 can be integrated with the smart kettlebell 1, or it can be installed as Figure 2 Such a separate design - detachably mounted on the smart kettlebell 1, especially detachably mounted on the kettlebell belly 2. The advantage of the separate design is that if the user has multiple kettlebell bodies (including kettlebell bellies and handles) of different specifications (such as 0.5kg, 1kg, 2kg, 3kg, 6kg, etc.), one smart module 4 can be used on the bodies of these multiple kettlebells of different specifications, which saves the cost of the smart module 4. At the same time, because the smart module 4 is easy to disassemble, it is also convenient to only move the smart module when charging or other operations are required, without having to move the entire smart kettlebell. If the smart module 4 is detachably mounted on the kettlebell belly 2, a mounting recess 5 can be provided on the kettlebell belly 2, and the mounting recess 5 can be used to install the smart module 4 so that the smart kettlebell 1 can be used. After the smart module 4 is installed in the mounting recess 5, see Figure 1 shown.
[0032] like Figure 4As shown, the intelligent module 4 includes a data acquisition unit 6 , a data processing unit 7 , a motion information unit 8 , a battery 9 and a button 12 , and the motion information unit 8 includes a speaker 10 and a display screen 11 .
[0033] like Figure 3 As shown, the components of the intelligent module 4 are described below in combination with the working mode of the intelligent kettlebell 1.
[0034] The user can operate the buttons 12 to power on or off the smart kettlebell 1, perform settings, select a mode, or control the motion state. After the smart module 4 is turned on, the user can select a training area or exercise. Alternatively, the display screen 11 can be a touch screen for powering on or off the smart kettlebell 1, performing settings, selecting a mode, or controlling the motion state.
[0035] After training begins, the data acquisition unit 6 begins collecting motion data from the smart kettlebell 1. This unit may include a gyroscope to collect the acceleration and angular velocity of the smart kettlebell 1 during exercise. The acquired acceleration and angular velocity can be used to determine the motion trajectory of the smart kettlebell 1. Based on the collected motion data and the user's selection of training areas or movements, the data processing unit 7 uses a pre-stored algorithm to analyze the motion data and generate motion analysis results. The display screen 11 can output visual information after the smart module 4 is turned on.
[0036] The motion information unit 8 can output corresponding information based on the operation and / or motion data and / or motion analysis results of the smart kettlebell 1. The motion information unit 8 includes a speaker 10, which can output sound information after the smart module 4 is turned on. For example, each time the user completes an action, a group of actions, or a complete set of actions, the speaker 10 will output voice feedback, broadcasting the number of times completed and / or the remaining actions, etc. If it is determined that the user's kettlebell exercise posture is in place or correct, a correct prompt voice will be output through the speaker 10; if it is determined that the user's kettlebell exercise posture is not in place or incorrect, an error prompt voice will be output through the speaker 10. The motion information unit 8 includes a display screen 11, which can output visual information after the smart module 4 is turned on. The display screen 11 can output the prompt information corresponding to the output of the speaker 10.
[0037] The battery 9 provides power to the smart module 4. The smart module 4 includes a charging port 14, which is suitable for various universal charging interfaces. The battery 9 in the smart module 4 can be charged through the charging port 14.
[0038] The smart kettlebell 1 connects to applications in other smart devices via a data processing unit 7. The data processing unit 7 in the present invention may include a Bluetooth module, which includes at least an integrated circuit (IC), a crystal oscillator, and an antenna. The smart kettlebell 1 can connect to applications in other smart devices via the Bluetooth module. These other smart devices include one or more of a smartphone, a smart tablet, a smart TV, or a smart projector.
[0039] After the smart kettlebell 1 is connected to another smart device, the application on the other smart device can also perform one or more operations on the smart kettlebell 1, including powering on and off, setting up, selecting modes, or controlling exercise status. This makes it easier to use the smart kettlebell 1 and allows for more complex settings such as training plans and training reminders.
[0040] After the smart kettlebell 1 is connected to another smart device, it transmits its motion data and / or motion analysis results to an application on the other smart device via the data processing unit 7. Specifically, the smart kettlebell 1 transmits its motion data and / or motion analysis results to the application on the other smart device via the Bluetooth module. The application on the other smart device can output corresponding information on the other smart device based on the operation of the smart kettlebell 1, the transmitted motion data, and / or motion analysis results. For example, each time the user completes an exercise, a set of exercises, or a complete set of exercises, the application on the other smart device will provide feedback, announcing and / or displaying the number of exercises completed and / or the number of remaining exercises. If the user's kettlebell exercise posture is determined to be correct, the application on the other smart device will output a correct prompt. If the user's kettlebell exercise posture is determined to be incorrect, the application on the other smart device will output an error prompt.
[0041] Applications in other smart devices can form historical training data based on the transmitted motion data and / or motion analysis results. The applications can provide users with feedback on the completion of training and provide suggestions and plans for further training based on the historical training data.
[0042] It should be understood that the present disclosure is not limited to the exact structures that have been described above and shown in the drawings, and that various modifications and changes can be made without departing from the scope thereof. The scope of the present application is limited only by the appended claims.
Claims
1. A smart kettlebell (1), characterized by: The intelligent kettlebell (1) comprises a kettlebell belly (2), a handle (3) and an intelligent module (4); The intelligent module (4) comprises a data acquisition unit (6), a data processing unit (7), a motion information unit (8) and a battery (9); the data acquisition unit (6) is used to obtain motion data of the intelligent kettlebell (1); the data processing unit (7) analyzes the motion data to form a motion analysis result; the motion information unit (8) can output corresponding information based on the operation of the intelligent kettlebell (1) and / or the motion data and / or the motion analysis result; and the battery (9) provides power for the intelligent module (4).
2. The smart kettlebell (1) according to claim 1, characterized in that: The data acquisition unit (6) includes a gyroscope.
3. The smart kettlebell (1) according to claim 2, characterized in that: The gyroscope obtains the acceleration and angular velocity of the smart kettlebell (1) during movement.
4. The smart kettlebell (1) according to claim 1, characterized in that: The data processing unit (7) analyzes the motion data according to an algorithm pre-stored inside to form the motion analysis result.
5. The smart kettlebell (1) according to claim 1, characterized in that: The intelligent module (4) is located on the top of the pot belly (2).
6. The smart kettlebell (1) according to claim 1 or 5, characterized in that: The smart module (4) comprises a housing (13), and the smart module (4) is detachably mounted on the pot belly (2).
7. The smart kettlebell (1) according to claim 1 or 5, characterized in that: The pot belly (2) has a mounting recess (5), and the mounting recess (5) is used to mount the smart module (4).
8. The smart kettlebell (1) according to claim 6, characterized in that: The pot belly (2) has a mounting recess (5), and the mounting recess (5) is used to mount the smart module (4).
9. The smart kettlebell (1) according to claim 1, characterized in that: The intelligent module (4) further comprises a button (12), and the button (12) is used to perform one or more operations of powering on, powering off, setting, mode selection or motion state control on the intelligent kettlebell (1).
10. The smart kettlebell (1) according to claim 1, characterized in that: The intelligent module (4) further comprises a charging port (14), through which the battery (9) can be charged.
11. The smart kettlebell (1) according to claim 1, characterized in that: The corresponding information includes one or more of the movement action, the movement part, the number of movements, the movement time or the evaluation of the movement.
12. The smart kettlebell (1) according to claim 1 or 11, characterized in that: The motion information unit (8) includes a speaker (10), and the speaker (10) is capable of outputting sound information after the smart module (4) is turned on.
13. The smart kettlebell (1) according to claim 1 or 11, characterized in that: The motion information unit (8) includes a display screen (11), and the display screen (11) is capable of outputting visual information after the intelligent module (4) is turned on.
14. The smart kettlebell (1) according to claim 13, characterized in that: The display screen (11) is a touch screen, and the touch screen is used to perform one or more operations of powering on, powering off, setting, mode selection, or motion state control on the smart kettlebell (1).
15. The smart kettlebell (1) according to claim 1, characterized in that: The smart kettlebell (1) is connected to applications in other smart devices via the data processing unit (7), and the other smart devices include one or more of a smart phone, a smart tablet, a smart TV, or a smart projection device.
16. The smart kettlebell (1) according to claim 15, characterized in that: The data processing unit (7) includes a Bluetooth module, which at least includes an integrated circuit IC, a crystal oscillator, and an antenna.
17. The smart kettlebell (1) according to claim 16, characterized in that: The smart kettlebell (1) is connected to the application in the other smart device via the Bluetooth module.
18. The smart kettlebell (1) according to claim 15 or 17, characterized in that: The smart kettlebell (1) can be powered on, powered off, set, mode selected, or exercise state controlled by one or more operations through the application in the other smart device.
19. The smart kettlebell (1) according to claim 15, characterized in that: The smart kettlebell (1) transmits the motion data and / or the motion analysis result of the smart kettlebell (1) to the application in the other smart device via the data processing unit (7).
20. The smart kettlebell (1) according to claim 17, characterized in that: The smart kettlebell (1) transmits the motion data and / or the motion analysis result to the application in the other smart device via the Bluetooth module.
21. The smart kettlebell (1) according to claim 19 or 20, characterized in that: If it is determined that the user's kettlebell exercise posture is in place or correct, a correct prompt voice is output through the speaker (10), and / or If it is determined that the user's kettlebell exercise posture is not in place or is wrong, an error prompt voice is output through the speaker (10).
22. The smart kettlebell (1) according to claim 18, characterized in that: The application in the other smart device can output the corresponding information on the other smart device according to the operation on the smart kettlebell (1).
23. The smart kettlebell (1) according to claim 19 or 20, characterized in that: The application in the other smart device can output the corresponding information on the other smart device according to the transmitted motion data and / or the motion analysis result.
24. The smart kettlebell (1) according to claim 23, characterized in that: The application in the other smart device can form historical training data based on the transmitted motion data and / or the motion analysis results.