Novel intelligent waistband

By integrating human body data acquisition and a vibrator into a smart belt, personalized breathing training can be achieved, solving the problems of large size and inconvenient operation of existing breathing exercise trainers, and improving the effectiveness and personalized experience of breathing training.

CN121795672APending Publication Date: 2026-04-07夏行之
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-09-25
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

Existing breathing exercise trainers are bulky, inconvenient to operate, unable to adjust training methods according to real-time body indicators, and lack personalized user-controlled training devices, thus failing to achieve effective breathing training.

Method used

A novel smart belt is designed, integrating human body data acquisition sensors and a vibrator. Through the cooperation of a main controller and terminal software, it can realize real-time physiological indicator monitoring and personalized breathing training modes, and support 24-hour physiological status recording and feedback.

Benefits of technology

It enables personalized breathing training, improves respiratory muscle strength and lung function, enhances cardiopulmonary function, promotes blood circulation, and has the effect of improving hypertension, anxiety, and sleep disorders.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a novel intelligent waistband. The novel intelligent waistband comprises a waistband body and a waistband buckle, the waistband body is in a long strip shape, two ends of the waistband body are connected with waistband heads, and the other ends of the waistband heads are connected with waistband buckles which are matched with each other. A main controller is arranged in any one waistband head, a charging power supply is arranged in the other waistband head, a plurality of human body data acquisition sensors and vibrators are uniformly arranged on the waistband body, and the charging power supply, the human body data acquisition sensors and the vibrators are electrically connected with the main controller; the system further comprises a terminal, a communication unit is arranged in the master controller, and the terminal is connected with the master controller through the communication unit. The health management software in the terminal analyzes and processes the detection data to generate a corresponding respiratory training mode, and the vibrator is controlled to realize autonomous respiratory exercise training of the user.
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Description

Technical Field

[0001] This invention relates to the field of smart wearable device technology, specifically to a novel smart belt. Background Technology

[0002] Proper breathing techniques have a direct impact on human health. Small lung capacity indicates poor oxygen intake and waste gas expulsion, resulting in insufficient oxygen supply within the body. This hinders the normal functioning of certain bodily processes. When the body requires significant oxygen consumption, such as during prolonged study, work, or strenuous exercise, severe oxygen deficiency can occur, leading to adverse reactions such as headaches, dizziness, chest tightness, lethargy, poor concentration, memory loss, and insomnia. This not only affects work and study but also causes irreversible damage to health. Lung capacity is already a primary indicator of aging; therefore, breathing exercises to improve lung capacity are crucial for human health.

[0003] Breathing exercises are a type of lung muscle training that simultaneously trains inspiratory and expiratory resistance. Based on the principles of resistance breathing training, these exercises rapidly enhance the strength and endurance of the respiratory muscles, thereby improving lung function and vital capacity. They effectively increase endurance and vitality, helping patients with lung diseases improve lung function and recover more quickly. Breathing exercises also improve hypoxemia, promote blood circulation, and increase oxygen supply. They help tighten the transverse abdominis muscle, and long-term adherence can reduce excess fat in the waist and abdomen. They also improve the function of abdominal organs, promote gastrointestinal motility, improve blood circulation in the digestive tract, benefit liver and gallbladder health, and promote bile secretion. Furthermore, they have a certain improving effect on hypertension, anxiety, and sleep disorders. Breathing exercises are widely used as an adjunct therapy in clinical treatment.

[0004] There are many types of breathing exercise trainers on the market, most of which are large and inconvenient to operate. Furthermore, the inability to limit the training volume target greatly restricts the effectiveness of breathing training. At the same time, existing breathing exercise trainers cannot change the training method according to real-time body indicators, and cannot achieve the best breathing training for users.

[0005] In addition, there is a lack of user-autonomous breathing training devices on the market, making it impossible for users to train independently. Breathing management methods vary from person to person, and there is no personalized training for different users.

[0006] Therefore, a novel smart belt is proposed, which provides breathing exercise training in different modes and can record multiple physiological indicators of users under different physiological states in real time 24 hours a day, and provide real-time feedback. In addition, the feedback of the breathing training on the monitored physiological indicators can also be evaluated and analyzed by the health management software in the terminal, which can not only realize self-management, but also provide remote professional guidance. Summary of the Invention

[0007] The technical problem to be solved by the present invention is to overcome the defects of the above-mentioned technology and provide a new type of smart belt.

[0008] To solve the above-mentioned technical problems, the technical solution provided by the present invention is a novel smart belt: including a belt body and a belt buckle;

[0009] The belt body is long and narrow, with belt buckles connected to both ends of the belt body, and belt buckles connected to the other end of the belt buckles.

[0010] A main controller is provided in one of the belt heads, and a charging power supply is provided in the other belt head. A plurality of human data acquisition sensors and vibrators are evenly provided on the belt body. The charging power supply, human data acquisition sensors and vibrators are all electrically connected to the main controller.

[0011] It also includes a terminal, in which the main controller is equipped with a communication unit, and the terminal is connected to the main controller through the communication unit.

[0012] As an improvement, the terminal has several working modes. In different working modes, the main controller generates the drive signal according to the control signal of the terminal to control the vibration frequency and vibration time of the vibrator.

[0013] As an improvement, the switching between different operating modes is controlled by human body data indicators transmitted to the terminal via the main controller, and the communication unit and the main controller receive the switching signal output by the terminal.

[0014] As an improvement, some of the aforementioned human data acquisition sensors are used to collect human pulse, blood pressure, electrocardiogram, body temperature, and respiratory rate indicators.

[0015] As an improvement, both the human body data acquisition sensor and the vibrator are arranged linearly along the length of the waist belt body, with the vibrator located below the human body data acquisition sensor.

[0016] As an improvement, the communication unit is a GPRS, 4G, or 5G module.

[0017] As an improvement, the terminal may include a handheld terminal, a mobile terminal, or a cloud platform.

[0018] The advantages of this invention compared to the prior art are:

[0019] 1. By setting up several human data acquisition sensors, it is possible to detect various indicators of the body, and through the storage of data in the health management software in the terminal, it can greatly help in the prevention, control, and diagnosis of diseases.

[0020] 2. By analyzing and processing the detection data through the health management software within the terminal, corresponding breathing training modes are generated, and the user's autonomous breathing exercise training is realized through the control of the vibrator. Attached Figure Description

[0021] Figure 1 This is a structural schematic diagram of a novel smart belt according to the present invention.

[0022] Figure 2 This is a schematic diagram illustrating the working principle of a novel smart belt according to the present invention.

[0023] As shown in the figure: 1. Belt body, 2. Belt buckle, 3. Belt head, 4. Main controller, 5. Charging power supply, 6. Human body data acquisition sensor, 7. Vibrator, 8. Terminal. Detailed Implementation

[0024] To make the objectives, technical solutions, and advantages of the embodiments of the invention clearer, the technical solutions of the embodiments of the invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the invention, not all embodiments. The components of the embodiments of the invention described and shown in the accompanying drawings can generally be arranged and designed in various different configurations.

[0025] In the description of the embodiments of the invention, it should be noted that if terms such as "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," or "outer" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, or the orientation or positional relationship commonly used when the product of the invention is in use, they are only for the convenience of describing the invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation on the invention. Furthermore, terms such as "first," "second," and "third" are only used to distinguish descriptions and should not be construed as indicating or implying relative importance.

[0026] Furthermore, the use of terms such as "horizontal," "vertical," and "sag" does not imply that the component must be absolutely horizontal or suspended, but rather that it can be slightly tilted. For example, "horizontal" simply means that its direction is more horizontal relative to "vertical," and does not mean that the structure must be completely horizontal, but can be slightly tilted.

[0027] In the description of the embodiments of the invention, "a plurality of" means at least two.

[0028] In the description of the embodiments of the invention, it should also be noted that, unless otherwise explicitly specified and limited, the terms "set," "install," "connect," and "link" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in the invention according to the specific circumstances.

[0029] Combined with appendix Figure 1-2 As shown, a new type of smart belt includes a belt body 1 and a belt buckle 2;

[0030] The belt body 1 is elongated and the material of the belt body 1 is set according to the actual situation. In this embodiment, the side of the belt body 1 that contacts the skin can be made of fiber material. During the wearing process, it is not sensitive to deformation, moisture and air pressure, and can provide a comfortable microclimate environment for the human body. For a belt that is worn close to the human skin, it can protect the built-in components of the belt from the influence of human sweat and other moisture factors, while improving the comfort of wearing the belt.

[0031] The two ends of the belt body 1 are connected to belt heads 3. The inner side of the belt heads 3 is also made of fiber material. By setting the belt heads 3 at both ends of the belt body 1, the main controller 4 and the charging power supply 5 can be set separately. At the same time, the main controller 4, the charging power supply 5, the human body data acquisition sensor 6, and the vibrator 7 can be separated to avoid mutual interference and improve the detection accuracy of the human body data acquisition sensor 6.

[0032] The other end of the belt head 3 is connected to the belt buckle 2, which is used to fix the belt around the user's waist. Specifically, the structure of the belt buckle 3 can be set according to the actual situation, including but not limited to the plug-in belt buckle, the waist ring that makes it easy to adjust the tightness of the belt, etc.

[0033] Each of the belt heads 3 is equipped with a main controller 4 to control the internal components of the belt.

[0034] Another type of belt head 3 is equipped with a charging power supply 5. Specifically, the charging power supply 5 can be a rechargeable button battery or a rechargeable battery. It is small in size and has a long battery life. A wireless charging module can be added to the belt to enable the charging power supply 5 to be wirelessly charged, eliminating the hassle of replacing the charging power supply 5.

[0035] In specific implementation, the charging power supply 5 and the belt head 3 can adopt a detachable structure or a fixed connection structure. At the same time, the belt head 3 where the charging power supply 5 is installed can also serve as an expansion space for the installation of other functional components.

[0036] The waist belt body 1 is uniformly provided with a plurality of human data acquisition sensors 6 and vibrators 7. Specifically, the human data acquisition sensors 6 and vibrators 7 are arranged linearly along the length direction of the waist belt body 1. The number of human data acquisition sensors 6 is set according to actual needs. In this embodiment, a plurality of human data acquisition sensors 6 are used to collect and monitor indicators such as human pulse, blood pressure, electrocardiogram, body temperature and respiratory rate.

[0037] Meanwhile, the human data acquisition sensor 6 can also monitor other indicators such as sleep quality.

[0038] The vibrator 7 is located below the human body data acquisition sensor 6. In specific implementation, the vibration of the vibrator 7 can be used to achieve human perception. In this embodiment, the vibration frequency and single vibration time of the vibrator 7 are controlled by the main controller 4. The human body can exercise breathing movements by perceiving the vibration of the vibrator 7. Different vibration modes of the vibrator 7 can be used to train different modes of breathing movements.

[0039] The charging power supply 5, the human data acquisition sensor 6, and the vibrator 7 are all electrically connected to the main controller 4.

[0040] It also includes a terminal 8, specifically a handheld terminal, a mobile terminal, or a cloud platform. The terminal 8 is connected to the main controller 4 through a communication unit, enabling remote monitoring of various user indicators. In practice, the terminal 8 can monitor various indicators in real time. The terminal 8 can also control the waist belt vibrator 7.

[0041] The main controller 4 is equipped with a communication unit, specifically a GPRS, 4G, or 5G module; the mobile terminal 8 is connected to the main controller 4 through the communication unit.

[0042] In practical use, when the human body data acquisition sensor 6 comes into contact with the human body, it can detect the user's physiological data and transmit it to the terminal 8 through the communication unit in the main controller 4. The terminal 8 is equipped with health management software, which may be presented in the form of an APP or a mini-program. After being set up, the health management software is used to receive, store and display the physiological data detected by the human body data acquisition sensor 6. At the same time, the human physiological data stored in the terminal 8 can be processed through the software in the terminal 8.

[0043] Specifically, the terminal 8 has several working modes. In different working modes, the main controller 4 generates the drive signal according to the control signal of the terminal 8 to control the vibration frequency and vibration time of the vibrator 7. In practice, the health management software in the terminal 8 generates the control signal and transmits it to the main controller 4 through the communication unit. The main controller 4 generates the drive signal according to the received control signal to control the vibration frequency and single vibration time of the vibrator 7. The human body perceives the vibration generated by the vibrator 7 and, in conjunction with the vibration time and frequency, achieves breathing exercise training.

[0044] The switching of different working modes is controlled by the human body data indicators transmitted to the terminal 8 through the main controller 4. The communication unit and the main controller 4 receive the switching signal output by the terminal 8. In fact, the switching of different working modes in the health management software in the terminal 7 is based on the human body data indicators transmitted to the terminal 8. The health management software in the terminal 7 processes the collected human body data indicators and adopts different working modes according to the processing results.

[0045] During implementation, the health management software in the terminal 8 processes the user's physiological data detected by the human body data acquisition sensor 6 and generates a corresponding breathing mode based on the data processing results. Then, the health management software in the terminal 8 transmits the control signal of the corresponding working mode to the main controller 4 through the communication unit. The main controller 4 generates a drive signal based on the received control signal to control the vibration frequency and single vibration time of the vibrator 7. The human body perceives the vibration generated by the vibrator 7 and, in conjunction with the vibration time and frequency, trains breathing exercises in the corresponding working mode.

[0046] The human body data acquisition sensor 6 in the belt records various indicators under different conditions and feeds them back to the terminal 8 in real time. The terminal 8 analyzes and processes the various indicators to generate corresponding breathing patterns. The impact of breathing training on various indicators can also be fed back to the terminal 8 in real time through the human body data acquisition sensor 6, so that remote analysis and guidance can be carried out through the terminal 8.

[0047] At the same time, the use of this belt can not only monitor various physiological indicators of users, but also improve their cardiopulmonary function through the breathing exercise training it generates. In addition, the breathing exercise training through this belt can also strengthen respiratory muscles, improve hypoventilation, improve hypoxemia and promote blood circulation. Similarly, it also has a certain effect on improving hypertension, anxiety and sleep disorders.

[0048] The present invention and its embodiments have been described above. This description is not restrictive, and the accompanying drawings are only one embodiment of the present invention; the actual structure is not limited thereto. In conclusion, if those skilled in the art are inspired by this description and design similar structures and embodiments without departing from the spirit of the invention, such designs should fall within the protection scope of the present invention.

Claims

1. A novel smart belt, characterized in that: Includes the belt body (1) and the belt buckle (2); The belt body (1) is long and narrow, and belt heads (3) are connected to both ends of the belt body (1). The other end of the belt head (3) is connected to a belt buckle (2) that cooperates with it. A main controller (4) is provided in one of the belt heads (3), and a charging power supply (5) is provided in the other belt head (3). A plurality of human data acquisition sensors (6) and vibrators (7) are evenly provided on the belt body (1). The charging power supply (5), human data acquisition sensors (6) and vibrators (7) are all electrically connected to the main controller (4). It also includes a terminal (8), and the main controller (4) is equipped with a communication unit. The mobile terminal (8) is connected to the main controller (4) through the communication unit.

2. The novel smart belt according to claim 1, characterized in that: The terminal (8) has several working modes. In different working modes, the main controller (4) generates the drive signal according to the control signal of the terminal (8) to control the vibration frequency and vibration time of the vibrator (7).

3. The novel smart belt according to claim 2, characterized in that: The switching of different working modes is controlled by human body data indicators transmitted to the terminal (8) via the main controller (4), and the communication unit and the main controller (4) receive the switching signal output by the terminal (8).

4. The novel smart belt according to claim 1, characterized in that: Several of the human data acquisition sensors (6) are used to collect human pulse, blood pressure, electrocardiogram, body temperature and respiratory rate indicators.

5. A novel smart belt according to claim 1, characterized in that: The human body data acquisition sensor (6) and the vibrator (7) are both arranged linearly along the length of the waist belt body (1), and the vibrator (7) is located below the human body data acquisition sensor (6).

6. A novel smart belt according to claim 1, characterized in that: The communication unit is a GPRS, 4G, or 5G module.

7. A novel smart belt according to claim 1, characterized in that: The terminal (8) includes a handheld terminal, a mobile terminal, or a cloud platform.