Intelligent skipping rope

By setting up a dual counting module and intelligent controller on the skipping rope, high-precision recording and real-time display of data are achieved, which solves the problem of user experience decline caused by abnormal counting function, and improves product reliability and user-friendliness.

CN223054980UActive Publication Date: 2025-07-04NANJING JIUGE SPORTS TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202421200676.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-05-29
Publication Date
2025-07-04
Estimated Expiration
2034-05-29

AI Technical Summary

Technical Problem

The abnormal counting function in existing rope skipping equipment leads to a decrease in user experience and reduce product reliability.

Method used

A dual counting module and intelligent controller are designed to realize high-precision recording and real-time display of data through the communication module, and automatically switch the backup mechanism in abnormal situations.

Benefits of technology

Ensure continuous recording and display of motion data, improving product reliability and user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an intelligent skipping rope, and belongs to the technical field of sports equipment. The intelligent skipping rope comprises a skipping rope body, and two handles are installed on the skipping rope body. Wherein a first counting module, a first motion controller and a display are arranged in the first handle. A second counting module, a second motion controller and a first communication module are arranged in the second handle. The first counting module and the display are connected with the first motion controller, and the second counting module is connected with the second motion controller. The first motion controller is connected with the second motion controller through the first communication module. The rope skipping data can still be correctly displayed when the first counting module or the second counting module is abnormal, and the user experience is enhanced.
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Description

Technical Field

[0001] The present disclosure relates to the technical field of sports equipment, and particularly to an intelligent skipping rope. Background Art

[0002] Skipping rope is a simple and effective aerobic exercise that can enhance cardiopulmonary function, improve coordination ability and burn calories. Skipping rope can be carried out indoors or outdoors without much space or equipment, so it has become a popular sport for families and schools. In existing skipping ropes, usually only one end is provided with a counting function. When it malfunctions due to collisions or other reasons, it is very difficult to ensure the normal progress of the exercise, and the reliability of the product is greatly reduced, thus reducing the user experience. Summary of the Utility Model

[0003] Embodiments of the present disclosure provide an intelligent skipping rope to solve the problem of the decline in user experience caused by abnormal counting function in existing skipping rope devices.

[0004] In a first aspect, embodiments of the present disclosure provide an intelligent skipping rope, including a skipping rope body, on which two handles are installed;

[0005] Wherein, a first counting module, a first motion controller and a display are arranged in the first handle; a second counting module, a second motion controller and a first communication module are arranged in the second handle;

[0006] The first counting module and the display are both connected to the first motion controller, and the second counting module is connected to the second motion controller; the first motion controller is connected to the second motion controller through the first communication module;

[0007] Both the first counting module and the second counting module are used to detect the skipping data of the skipping rope body;

[0008] The first motion controller is configured to send the skipping data detected by the first counting module to the display;

[0009] The second motion controller is configured to, when the first counting module is in an abnormal state, send the skipping data detected by the second counting module to the display through the first motion controller;

[0010] The display is configured to display the skipping data sent by the first motion controller or the second motion controller.

[0011] In an exemplary embodiment of the present disclosure, the intelligent skipping rope further includes:

[0012] A first switch module and a first power supply battery;

[0013] The first switch module has a first end connected to the first motion controller, a second end connected to the first counting module, and a third end connected to the first power supply battery;

[0014] The first power supply battery can supply power to the first counting module through the first switch module.

[0015] In an exemplary embodiment of the present disclosure, the intelligent skipping rope further includes:

[0016] A second switch module and a second power supply battery;

[0017] The second switch module has a first end connected to the second motion controller, a second end connected to the second counting module, and a third end connected to the second power supply battery;

[0018] The second power supply battery can supply power to the second counting module through the second switch module.

[0019] In an exemplary embodiment of the present disclosure, the intelligent skipping rope further includes:

[0020] A first identity authentication module and a second identity authentication module;

[0021] The first identity authentication module is connected to the first motion controller, and the second identity authentication module is connected to the second motion controller;

[0022] The first identity authentication module and the second identity authentication module are configured to identify the user's identity information.

[0023] In an exemplary embodiment of the present disclosure, the intelligent skipping rope further includes:

[0024] A heart rate sensing module;

[0025] The heart rate sensing module is connected to the first motion controller;

[0026] The heart rate sensing module is configured to collect the user's heart rate data; the display is configured to display the heart rate data sent by the heart rate sensing module.

[0027] In an exemplary embodiment of the present disclosure, LED lights are provided on both of the two handles. The first LED light is configured to display the counting status of the first counting module, and the second LED light is configured to display the counting status of the second counting module.

[0028] In an exemplary embodiment of the present disclosure, the intelligent skipping rope further includes a second communication module;

[0029] The second communication module is respectively connected to the first motion controller and an external terminal;

[0030] The second communication module is configured to receive voice instructions sent by the user and send the user's motion data to an external terminal.

[0031] In an exemplary embodiment of the present disclosure, the intelligent skipping rope further includes a first button disposed on the first handle and a second button disposed on the second handle;

[0032] The first button is connected to the first motion controller, and the second button is connected to the second motion controller.

[0033] The beneficial effects of an intelligent skipping rope provided by an embodiment of the present disclosure are as follows:

[0034] The present disclosure can achieve that when the first counting module fails to count normally due to collision or other reasons, the second motion controller can send the skipping rope data collected by the second counting module to the first motion controller, and the first motion controller sends the skipping rope data to the display for display, so that it will not affect the user's view of their own motion data. Through the design of a dual counting module and the integration of an intelligent controller and a first communication module, high-precision recording and real-time display of data are achieved, as well as an automatic switching backup mechanism in case of anomalies, greatly improving the reliability and user-friendliness of the product. BRIEF DESCRIPTION OF THE DRAWINGS

[0035] In order to more clearly illustrate the technical solutions in the embodiments of the present disclosure, the following will briefly introduce the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings in the following description are only some embodiments of the present disclosure. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.

[0036] Figure 1 is a schematic structural diagram of an intelligent skipping rope provided by an embodiment of the present disclosure;

[0037] Figure 2 is a schematic structural diagram of an intelligent skipping rope provided by an embodiment of the present disclosure. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0038] In order to enable those skilled in the art to better understand this solution, the following will clearly describe the technical solutions in the embodiments of this solution with reference to the drawings in the embodiments of this solution. Obviously, the described embodiments are some, but not all, of the embodiments of this solution. Based on the embodiments in this solution, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the scope of protection of this solution.

[0039] In the description of this solution, the claims, and the above-mentioned drawings, the term "including" and any other variations thereof mean "including but not limited to", intending to cover non-exclusive inclusion and not limited to the examples listed in the text. In addition, terms such as "first" and "second" are used to distinguish different objects rather than to describe a specific order.

[0040] The implementation of the present disclosure will be described in detail below in conjunction with specific drawings:

[0041] Figure 1 It is a schematic structural diagram of an intelligent skipping rope provided for an embodiment of the present disclosure. Referring to Figure 1 this, the intelligent skipping rope includes a skipping rope body, and two handles are installed on the skipping rope body;

[0042] Among them, a first counting module 101, a first motion controller 102, and a display 103 are arranged in the first handle 11; a second counting module 201, a second motion controller 202, and a first communication module 203 are arranged in the second handle 12;

[0043] The first counting module 101 and the display 103 are both connected to the first motion controller 102, and the second counting module 201 is connected to the second motion controller 202; the first motion controller 102 is connected to the second motion controller 202 through the first communication module 203;

[0044] Both the first counting module 101 and the second counting module 201 are used to detect the skipping data of the skipping rope body;

[0045] The first motion controller 102 is configured to send the skipping data detected by the first counting module 101 to the display 103;

[0046] The second motion controller 202 is configured to, when the first counting module 101 is in an abnormal state, send the skipping data detected by the second counting module 201 to the display 103 through the first motion controller 102;

[0047] The display 103 is configured to display the skipping data sent by the first motion controller 102 or the second motion controller 202.

[0048] In this embodiment, two handles are provided at both ends of the skipping rope, and each handle integrates different intelligent components, so that the skipping rope not only has the basic skipping function, but also can realize intelligent counting, motion control, and data communication. Each handle of the intelligent skipping rope in this embodiment can be used alone to realize the function of skipping rope counting.

[0049] The first handle 11 is provided with a first counting module 101, a first motion controller 102, and a display 103. The first counting module 101 can identify the state of the skipping rope and monitor the number of times the skipping rope is moved. For example, by capturing the movement cycle of the skipping rope through a built-in sensor (Hall effect sensor or acceleration sensor), accurate counting can be achieved.

[0050] The first motion controller 102 can process the skipping rope data collected by the first counting module 101 and perform operations and controls based on this data.

[0051] The display 103 can receive the data sent by the first motion controller 102, such as the number of skipping rope times, exercise time, etc. These data can help users monitor their exercise amount and exercise effect, so as to exercise more effectively.

[0052] The second handle 12 is provided with a second counting module 201, a second motion controller 202, and a first communication module 203. The second counting module 201 can also identify the state of the skipping rope and monitor the number of times the skipping rope is moved. The two counting modules can respectively count the skipping ropes set on the first handle 11 and the second handle 12 without interference.

[0053] The second motion controller 202 can process the skipping rope data collected by the second counting module 201 and perform operations and controls based on this data. The second motion controller 202 can also send the skipping rope data collected by the second counting module 201 to the first motion controller 102 through the first communication module 203, and the first motion controller 102 sends this data to the display 103 for display. This situation may occur when the first counting module 101 is abnormal and cannot count normally, or when the two handles of the skipping rope are held by different people.

[0054] For example, when the first counting module 101 is abnormal and cannot count normally due to collision or other reasons, the second motion controller 202 can send the skipping rope data collected by the second counting module 201 to the first motion controller 102, and the first motion controller 102 sends the skipping rope data to the display 103 for display, so that it will not affect the user's viewing of their exercise data.

[0055] For example, when two people skip rope together and the two handles of the skipping rope are held by different people, in this way, even if the skipping rope is operated by two people together, the counting module can accurately record the number of skipping rope times of each person and help each person track their exercise amount.

[0056] The first communication module 203 can be wireless. For example, using Bluetooth or radio frequency technology, so that the first motion controller 102 and the second motion controller 202 can achieve data exchange through the first communication module 203.

[0057] As can be seen from the above, through the dual counting module design and the integration of the intelligent controller and the first communication module 203, this intelligent skipping rope realizes high-precision data recording and real-time display, as well as an automatic switching backup mechanism in case of anomalies, greatly improving the reliability and user-friendliness of the product.

[0058] In an embodiment of the present disclosure, the intelligent skipping rope further includes:

[0059] The first switch module 104 and the first power supply battery 105;

[0060] For the first switch module 104, the first end is connected to the first motion controller 102, the second end is connected to the first counting module 101, and the third end is connected to the first power supply battery 105;

[0061] The first power supply battery 105 can supply power to the first counting module 101 through the first switch module 104.

[0062] In this embodiment, as a key component for power distribution and management, the first switch module 104 is disposed between the first counting module 101 and the first power supply battery 105. Through the first switch module 104, control over the power supply to the first counting module 101 can be achieved, ensuring that the power supply of the system can be turned on and off as needed, which is beneficial for saving energy and extending the battery life.

[0063] The first power supply battery 105 can provide the necessary electrical energy for the first handle 11, enabling the skipping rope to work properly without relying on an external power source. Considering the portability requirements of skipping rope exercises, the battery is usually a lightweight, high-performance lithium-ion battery or a similar rechargeable battery to ensure long-term usage.

[0064] In this embodiment, when the first motion controller 102 does not detect the skipping rope data sent by the first counting module 101 within a certain period of time, it can send an instruction to the first switch module 104 to disconnect the first switch module 104, and the first power supply battery 105 stops supplying power to the first counting module 101, saving electrical energy.

[0065] As can be seen from the above, the intelligent skipping rope can not only realize intelligent motion data recording and display, but also has good energy management capabilities. The first motion controller 102 can control the switch state of the first switch module 104 according to the working state of the first counting module 101, thereby achieving reasonable utilization of power and enhancing the user experience. In addition, reasonable power management also helps to extend the battery life and reduce the trouble of users frequently replacing the battery or charging.

[0066] In an embodiment of the present disclosure, the intelligent skipping rope further includes:

[0067] The second switch module 204 and the second power supply battery 205;

[0068] The second switch module 204 has a first end connected to the second motion controller 202, a second end connected to the second counting module 201, and a third end connected to the second power supply battery 205;

[0069] The second power supply battery 205 can supply power to the second counting module 201 through the second switch module 204.

[0070] In this embodiment, similar to the first switch module 104 in the first handle 11, the second switch module 204 also plays a role in power distribution and control. Its first end is connected to the second motion controller 202 and can receive instructions sent by the second motion controller 202; the second end is connected to the second counting module 201 and is used to control the power supply state of the second counting module 201. This design enables the counting module and the motion controller on the second handle 12 to work independently of the first handle 11, improving the redundancy and stability of the system.

[0071] The second power supply battery 205 can provide necessary electrical energy for the second handle 12. Similar to the first power supply battery 105, it usually uses a lightweight and efficient rechargeable battery to ensure long-term operation ability. This independent battery configuration enables the other party to continue providing power even if one party's battery runs out or fails, maintaining the normal operation of the intelligent functions of the skipping rope.

[0072] In this embodiment, through the configuration of the second switch module 204 and the second power supply battery 205, in the case of a failure of the power supply or counting module of one handle, the other handle can still continue to work. The two motion controllers can achieve data interaction through the first communication module 203 to ensure continuous recording and display of skipping rope data, improving the overall reliability of the system and the user experience.

[0073] It can be concluded from the above that by setting switch modules and power supply batteries in both handles, this intelligent skipping rope design not only enhances the flexibility and efficiency of power management but also significantly improves the stability and fault tolerance of the system through a dual-backup mechanism, ensuring uninterrupted and accurate data recording during the skipping rope exercise.

[0074] In an embodiment of the present disclosure, the intelligent skipping rope further includes:

[0075] The first authentication module 106 and the second authentication module 206;

[0076] The first authentication module 106 is connected to the first motion controller 102, and the second authentication module 206 is connected to the second motion controller 202;

[0077] The first authentication module 106 and the second authentication module 206 are configured to identify the user's identity information.

[0078] In this embodiment, the first authentication module 106 is disposed in the first handle 11 and connected to the first motion controller 102; the second authentication module 206 is disposed in the second handle 12 and connected to the second motion controller 202. The first authentication module 106 and the second authentication module 206 can be used to identify the user's identity, and they may adopt various authentication technologies, such as fingerprint recognition, biometric recognition (such as heart rate characteristics), password input, etc.

[0079] Before using the smart skipping rope, the user needs to be authenticated by the authentication module. The second motion controller 202 sends the data collected by the second authentication module 206 to the first motion controller 102, and the first motion controller 102 determines whether the user using the skipping rope is the same person or two people according to the data collected by the first authentication module 106 and the data collected by the second authentication module 206. If the user using the skipping rope is the same person, then the display 103 only displays the data collected by the first counting module 101; if the user using the skipping rope is two people, then the display 103 displays the data collected by the first counting module 101 and the second counting module 201.

[0080] In this embodiment, after successful authentication, the smart skipping rope can also provide personalized training suggestions according to the user's historical motion data, record and analyze the user's motion performance. This design promotes personalized interaction between the user and the smart skipping rope device. In the case of multiple users sharing the smart skipping rope, the authentication module can also easily distinguish different users and record the respective motion data for each user.

[0081] From the above, it can be concluded that the smart skipping rope can not only record the skipping in the single-person mode, but also record the skipping in the two-person mode, enhancing the user experience.

[0082] In an embodiment of the present disclosure, the smart skipping rope further includes:

[0083] A heart rate sensing module 107;

[0084] The heart rate sensing module 107 is connected to the first motion controller 102;

[0085] The heart rate sensing module 107 is configured to collect the user's heart rate data; the display 103 is configured to display the heart rate data sent by the heart rate sensing module 107.

[0086] In this embodiment, the heart rate sensing module 107 is disposed in the finger area corresponding to the first handle 11, and can monitor the heart rate change of the user during rope skipping in real time. It may adopt photoplethysmography or other non-invasive technologies to capture blood flow changes and estimate the heart rate accordingly. The heart rate acquisition module is connected to the first motion controller 102 and can send the acquired heart rate data to the first motion controller 102. The first motion controller 102 can process these data (such as filtering, data analysis, etc.) to ensure the accuracy of the data.

[0087] The processed heart rate data is sent from the first motion controller 102 to the display 103, and the user can directly view the real-time heart rate value on the display 103 on the rope skipping handle. This not only helps the user understand their exercise intensity in real time, but also enables them to adjust the exercise rhythm according to the heart rate range to achieve the best exercise effect and avoid the risks brought by excessive exercise. In this embodiment, combined with the heart rate data, the intelligent skipping rope can also provide personalized training suggestions, such as encouraging the user to speed up when the heart rate is too low, or prompting to slow down the rhythm when the heart rate is too high, to ensure the safety and effectiveness of the exercise.

[0088] It can be concluded from the above that by setting the heart rate sensing module 107, the intelligent skipping rope is not only a tool for counting rope skipping, but also a comprehensive sports health monitoring device, which can help users exercise more scientifically and safely.

[0089] In an embodiment of the present disclosure, LED lights are provided on both handles. The first LED light 108 is configured to display the counting status of the first counting module 101, and the second LED light 208 is configured to display the counting status of the second counting module 201.

[0090] In this embodiment, LED lights are integrated on both handles of the intelligent skipping rope. This design not only adds a visual effect, but also improves the user experience. The LED lights are dynamically displayed according to the counting results of the first counting module 101 or the second counting module 201. For example, as the number of rope skippings increases, the LED lights can be lit one by one or reflect the progress and results of rope skipping intuitively through flashing or color change. Such an instant feedback mechanism enables the user to intuitively feel the accumulation of the amount of exercise during the exercise process without having to frequently check the display screen, increasing the fun and interactivity of the exercise.

[0091] The LED lights can also adjust the brightness or color according to the exercise intensity or heart rate change to provide instant exercise intensity feedback to the user and guide the user to adjust the exercise rhythm.

[0092] When an abnormality occurs in the counting module or when user attention is required, the LED lights can also alarm through specific blinking patterns or colors. For example, red blinking may represent low battery, and yellow blinking may indicate that the counting module needs calibration, etc., facilitating the user to promptly understand the device status and take corresponding measures.

[0093] As can be seen from the above, by integrating LED lights on the two handles, the intelligent skipping rope greatly improves the user experience without increasing the usage complexity, combining counting, safety warning, and aesthetic design in one.

[0094] In an embodiment of the present disclosure, the intelligent skipping rope further includes:

[0095] A second communication module 207;

[0096] The second communication module 207 is respectively connected to the first motion controller 102 and an external terminal;

[0097] The second communication module 207 is configured to receive voice commands sent by the user and send the user's motion data to the external terminal.

[0098] In this embodiment, the second communication module 207 includes, but is not limited to, communication methods such as Bluetooth, WiFi, and radio frequency. The second communication module 207 is not only connected to the first motion controller 102 but also directly establishes a connection with an external terminal (such as a smart phone, personal computer, or smart watch, etc.), realizing two-way data transmission. This design enables the intelligent skipping rope to not only receive user commands but also send the user's motion data to the external terminal. The second communication module 207 can also receive voice commands sent by the user and send the voice commands to the first motion controller 102 to control the motion state of the skipping rope through the first motion controller 102.

[0099] In this embodiment, the first communication module 203 is mainly used for communication between the two handles, and the second communication module 207 is mainly used for communication between the handle and the external terminal. Both the first communication module 203 and the second communication module 207 include, but are not limited to, communication units such as Bluetooth, WiFi, and radio frequency. Bluetooth is mainly used for communication between the two handles, and radio frequency is mainly used for communication between the handle and the external terminal.

[0100] As can be seen from the above, the motion data of the intelligent skipping rope is integrated with other health application or device data on the external terminal, providing a comprehensive health management view for the user, helping the user better understand their physical condition and exercise effect, and promoting the cultivation of a healthy lifestyle.

[0101] In an embodiment of the present disclosure, the intelligent skipping rope further includes a first button 109 provided on the first handle 11 and a second button 209 provided on the second handle 12;

[0102] The first button 109 is connected to the first motion controller 102, and the second button 209 is connected to the second motion controller 202.

[0103] In this embodiment, the first button 109 and the second button 209 are physical buttons, providing a direct and immediate control method for users. Users can press the buttons on the handle to quickly start, pause, reset or switch modes of the skipping rope function, without relying on voice control or mobile applications, increasing the directness and reliability of use.

[0104] It can be concluded from the above that the connection between the first button 109 and the first motion controller 102, and the connection between the second button 209 and the second motion controller 202 ensure that users can conveniently control the intelligent skipping rope regardless of which side handle they are accustomed to operating.

[0105] The above embodiments are only used to illustrate the technical solutions of the present disclosure, rather than to limit them; although the present disclosure has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements on some of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present disclosure.

Claims

1. An intelligent skipping rope, characterized in that, It includes a skipping rope body, and two handles are installed on the skipping rope body; Among them, a first counting module, a first motion controller and a display are arranged in the first handle; a second counting module, a second motion controller and a first communication module are arranged in the second handle; The first counting module and the display are both connected to the first motion controller, and the second counting module is connected to the second motion controller; the first motion controller is connected to the second motion controller through the first communication module; Both the first counting module and the second counting module are used to detect the skipping data of the skipping rope body; The first motion controller is configured to send the skipping data detected by the first counting module to the display; The second motion controller is configured to send the skipping data detected by the second counting module to the display through the first motion controller when the first counting module is in an abnormal state; The display is configured to display the skipping data sent by the first motion controller or the second motion controller.

2. The intelligent skipping rope according to claim 1, characterized in that, It further includes: A first switch module and a first power supply battery; For the first switch module, the first end is connected to the first motion controller, the second end is connected to the first counting module, and the third end is connected to the first power supply battery; The first power supply battery can supply power to the first counting module through the first switch module.

3. The intelligent skipping rope according to claim 1, characterized in that, It further includes: A second switch module and a second power supply battery; For the second switch module, the first end is connected to the second motion controller, the second end is connected to the second counting module, and the third end is connected to the second power supply battery; The second power supply battery can supply power to the second counting module through the second switch module.

4. The intelligent skipping rope according to claim 1, characterized in that, It further includes: A first identity authentication module and a second identity authentication module; The first identity authentication module is connected to the first motion controller, and the second identity authentication module is connected to the second motion controller; The first identity authentication module and the second identity authentication module are configured to identify the user's identity information.

5. The intelligent skipping rope according to claim 1, wherein, It further includes: A heart rate sensing module; The heart rate sensing module is connected to the first motion controller; The heart rate sensing module is configured to collect the user's heart rate data; The display is configured to display the heart rate data sent by the heart rate sensing module.

6. The intelligent skipping rope according to claim 1, wherein, LED lights are arranged on both of the two handles. The first LED light is configured to display the counting status of the first counting module, and the second LED light is configured to display the counting status of the second counting module.

7. The intelligent skipping rope according to claim 1, characterized in that, It further includes: A second communication module; The second communication module is respectively connected to the first motion controller and an external terminal; The second communication module is configured to receive the voice commands sent by the user and send the user's motion data to the external terminal.

8. The intelligent skipping rope according to claim 1, characterized in that, It further includes a first button arranged on the first handle and a second button arranged on the second handle; The first button is connected to the first motion controller, and the second button is connected to the second motion controller.