Medical bracelet for monitoring heart rate in real time

By introducing a buffer structure and reinforcement belt design into the medical bracelet, combined with the charging port and removable battery, the problem of discomfort and single power supply is solved, and the comprehensive improvement of comfort, stability and long battery life is achieved.

CN223126522UActive Publication Date: 2025-07-22GUANGHAN FUSHENG DIGITAL TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422599533.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-28
Publication Date
2025-07-22
Estimated Expiration
2034-10-28

AI Technical Summary

Technical Problem

The existing real-time heart rate monitoring uses medical bracelets to directly fit the skin tightly. Long-term wearing can easily cause discomfort for patients. The stability of Velcro fixing method is reduced, and the bracelet is easy to fall off. The power supply method is single, and charging is limited in emergency situations.

Method used

The use of protective pads with buffer structure increases wear comfort, the use of the first and second reinforcement belts improves fixing stability, and provides charging flexibility and long battery life through a combination of a charging port and a removable battery.

Benefits of technology

It improves wear comfort and fixing stability, provides charging flexibility and long battery life, and meets the battery recovery needs in emergencies.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of medical bracelets, in particular to a medical bracelet for monitoring heart rate in real time, which comprises a bracelet body, a first bandage, a second bandage, a protective pad, an elastic block, a first reinforcing belt, a second reinforcing belt, a battery and a charging port. By arranging the protection pad with the buffering structure, the comfort in the wearing process can be improved, on the basis of an original hook-and-loop fastener bandage, the first reinforcing belt and the second reinforcing belt are arranged and used for being matched with each other for reinforcing from the outside to improve the stability of the bracelet, and the bracelet is not prone to falling off; the charging port and the detachable battery are synchronously arranged on the bracelet, so that charging or direct battery replacement can be selected according to actual use requirements, the convenience and flexibility of charging are kept, and the advantages of long endurance and prolonged service life are realized by replacing the battery; when a user goes out or is in an emergency, the electric quantity of the bracelet can be quickly recovered by directly replacing the battery, so that more choices and better use experience are provided for the user.
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Description

Technical Field

[0001] The utility model relates to the field of medical bracelets, in particular to a medical bracelet for real-time heart rate monitoring. Background Art

[0002] The purpose of heart rate monitoring is to understand the heart function and health status. The medical bracelet for real-time heart rate monitoring is mainly used to monitor the vital signs such as the heart rate of patients. The bracelet has a wide range of application scenarios and can be used for 24-hour heart rate monitoring of critically ill patients or patients with arrhythmia in clinical settings, and can also be used for health monitoring and positioning of special populations such as psychiatric patients and the elderly.

[0003] For the existing medical bracelets for real-time heart rate monitoring, their straps are usually directly fastened tightly against the skin. Wearing them for a long time is likely to cause discomfort to patients. The fixing method of their straps usually uses Velcro. Repeated use will cause the adhesiveness of the Velcro to decrease, resulting in reduced stability and making it easy for the bracelet to fall off during use. Moreover, the existing bracelets usually use the charging port charging method for power supply, and the power supply method is single. In case of emergency or when the battery runs out during outdoor use, the charging method is usually restricted and the convenience is relatively low.

[0004] Therefore, aiming at the problems of the existing medical bracelets for real-time heart rate monitoring, where their straps are usually directly fastened tightly against the skin, wearing them for a long time is likely to cause discomfort to patients, the fixing method of their straps usually uses Velcro, repeated use will cause the adhesiveness of the Velcro to decrease, resulting in reduced stability and making it easy for the bracelet to fall off during use, and the existing bracelets usually use the charging port charging method for power supply, the power supply method is single, in case of emergency or when the battery runs out during outdoor use, the charging method is usually restricted and the convenience is relatively low. By setting a protective pad with a buffer structure to protect the patient's wrist, the comfort during wearing can be increased, and even if the bracelet is worn for a long time, the patient will not feel discomfort. By setting a first reinforcement strap and a second reinforcement strap on the basis of the original Velcro strap to cooperate for external reinforcement, the stability of the bracelet fixation can be increased, and it is not easy for the bracelet to fall off due to the decrease in Velcro adhesiveness or the patient's excessive movement amplitude. And by setting a charging port and a detachable battery on the bracelet to cooperate synchronously, the charging or direct battery replacement can be selected according to actual use needs, which not only retains the convenience and flexibility of charging, but also realizes the advantages of long battery life and extended service life by replacing the battery. In case of going out or in an emergency, the bracelet battery can be quickly restored by directly replacing the battery, providing more choices and a better use experience for users. Summary of the Utility Model

[0005] In order to overcome the problems of existing medical bracelets for real-time heart rate monitoring. Usually, their straps are directly attached to the skin tightly, which is easy to cause discomfort to patients after long-term wearing. The fixing method of their straps usually uses Velcro, and repeated use will cause the stickiness of the Velcro to decrease, resulting in reduced stability and making it easy for the bracelet to fall off during use. In addition, existing bracelets usually use a charging port for charging, with a single power supply method. In case of emergency or when the battery runs out during outdoor use, the charging method is usually limited and the convenience is relatively low.

[0006] The technical solution of the present utility model is: a medical bracelet for real-time heart rate monitoring, including a bracelet body, a first strap, a second strap, a protective pad, an elastic block, a first Velcro, a second Velcro, a first reinforcement strap, a second reinforcement strap, a buckle, a connecting block, a battery, a protective cover, a handle, a magnetic attraction block and a charging port. The left end of the bracelet body is provided with a first strap, and the right end of the bracelet body is provided with a second strap. One ends of the first strap and the second strap close to the bracelet body are rotatably connected to the bracelet body through two groups of connecting blocks arranged front and back relatively. The first strap and the second strap are used to cooperate to fix the bracelet body. Protective pads for protecting the patient's wrist are provided at the parts of the lower ends of the first strap and the second strap close to the bracelet body. Elastic blocks for buffering are fixedly connected linearly and evenly between the two groups of protective pads and the first strap and the second strap. A first reinforcement strap is fixedly connected to the part of the upper end of the first strap close to the bracelet body, and a second reinforcement strap for cooperating with the first reinforcement strap to reinforce the bracelet body is fixedly connected to the part of the upper end of the second strap close to the bracelet body. A battery for power supply is detachably installed in the middle of the front end of the bracelet body, and a charging port for charging the bracelet body is provided at the left part of the front end of the bracelet body.

[0007] Preferably, by setting a protective pad with a buffer structure to protect the patient's wrist, the comfort during wearing can be increased, and the patient will not feel discomfort even after wearing the bracelet for a long time. By setting a first reinforcement strap and a second reinforcement strap on the basis of the original Velcro strap to cooperate for external reinforcement, the stability of fixing the bracelet can be increased, and it is not easy for the bracelet to fall off due to the decrease of the Velcro stickiness or the excessive movement amplitude of the patient. By setting a charging port and a detachable battery on the bracelet in a synchronous cooperation manner, it is possible to choose to charge or directly replace the battery according to actual use needs, which not only retains the convenience and flexibility of charging, but also realizes the advantages of long battery life and extended service life by replacing the battery. In case of going out or in an emergency, the bracelet battery can be quickly restored by directly replacing the battery, providing more choices and a better user experience for users.

[0008] Preferably, first ventilation holes for increasing air permeability are provided between two adjacent sets of elastic blocks on the surface of the protection pad. Limiting holes are evenly distributed on the surface of the first reinforcing band from left to right, and a buckle for snap connection with the limiting holes is fixedly installed on the upper right side of the second reinforcing band.

[0009] Preferably, a first magic tape is fixedly installed on the lower left part of the first strap, and a second magic tape for sticking to the first magic tape is fixedly installed on the upper right part of the second strap.

[0010] Preferably, second ventilation holes for increasing air permeability are linearly distributed and evenly provided at positions corresponding to the first magic tape and the second magic tape on the surfaces of the first strap and the second strap. The battery is snap-connected to the bracelet body.

[0011] Preferably, a protective cover for opening and closing is provided at a position corresponding to the battery at the front end of the bracelet body, and a handle for facilitating the opening and closing of the protective cover is provided on the outside of the protective cover.

[0012] Preferably, a magnetic block is fixedly installed on the inner side of the handle, and a magnetic slot for magnetic attraction with the magnetic block is provided at the front end of the bracelet body.

[0013] Preferably, the first strap, the second strap, the first reinforcing band and the second reinforcing band are all made of elastic rubber material, and a connection module for remotely connecting to an external data analysis device is provided inside the bracelet body.

[0014] Advantages of the present utility model:

[0015] 1. By providing a protection pad with a buffering structure to protect the patient's wrist, the comfort during wearing can be increased, and even if the bracelet is worn for a long time, there will be no discomfort. Based on the original magic tape strap, a first reinforcing band and a second reinforcing band are provided to cooperate for external reinforcement, which can increase the stability of the bracelet fixation and is not easy to fall off due to the decrease in the stickiness of the magic tape or the excessive movement of the patient. By setting a charging port and a detachable battery on the bracelet in a synchronous manner, charging or directly replacing the battery can be selected according to actual usage needs, which not only retains the convenience and flexibility of charging, but also realizes the advantages of long battery life and extended service life by replacing the battery. In case of going out or in an emergency, the bracelet power can be quickly restored by directly replacing the battery, providing more choices and a better user experience for users. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 Shown is a schematic diagram of the overall three-dimensional structure of the medical bracelet for real-time heart rate monitoring of the present utility model;

[0017] Figure 2Shown is a schematic diagram of the three-dimensional structure of another angle of the medical bracelet for real-time heart rate monitoring of the present utility model;

[0018] Figure 3 Shown is a schematic diagram of the three-dimensional structure of the protective pad of the medical bracelet for real-time heart rate monitoring of the present utility model;

[0019] Figure 4 Shown is a schematic diagram of the three-dimensional structure of the battery of the medical bracelet for real-time heart rate monitoring of the present utility model;

[0020] Figure 5 Shown is a schematic diagram of the three-dimensional structure of the reinforcement strap of the medical bracelet for real-time heart rate monitoring of the present utility model.

[0021] Explanation of reference numerals: 1. Bracelet body; 2. First strap; 3. Second strap; 4. Protective pad; 5. Elastic block; 6. First ventilation hole; 7. First magic tape; 8. Second magic tape; 9. Second ventilation hole; 10. First reinforcement strap; 11. Second reinforcement strap; 12. Limit hole; 13. Buckle; 14. Connecting block; 15. Battery; 16. Protective cover; 17. Handle; 18. Magnetic attraction groove; 19. Magnetic attraction block; 20. Charging port. Detailed implementation manners

[0022] The present utility model will be further described below with reference to the drawings and embodiments.

[0023] Please refer to Figures 1 - 5 , the present utility model provides an embodiment: a medical bracelet for real-time heart rate monitoring, including a bracelet body 1, a first strap 2, a second strap 3, a protective pad 4, an elastic block 5, a first magic tape 7, a second magic tape 8, a first reinforcement strap 10, a second reinforcement strap 11, a buckle 13, a connecting block 14, a battery 15, a protective cover 16, a handle 17, a magnetic attraction block 19 and a charging port 20. A first strap 2 is provided at the left end of the bracelet body 1, and a second strap 3 is provided at the right end of the bracelet body 1. One ends of the first strap 2 and the second strap 3 close to the bracelet body 1 are rotatably connected to the bracelet body 1 through two groups of connecting blocks 14 arranged front and back relatively. The first strap 2 and the second strap 3 are used to cooperate to fix the bracelet body 1. Protective pads 4 for protecting the patient's wrist are provided at the parts of the lower ends of the first strap 2 and the second strap 3 close to the bracelet body 1. Elastic blocks 5 for buffering are fixedly connected linearly and evenly between the two groups of protective pads 4 and the first strap 2 and the second strap 3. A first reinforcement strap 10 is fixedly connected to the part of the upper end of the first strap 2 close to the bracelet body 1, and a second reinforcement strap 11 for cooperating with the first reinforcement strap 10 to reinforce the bracelet body 1 is fixedly connected to the part of the upper end of the second strap 3 close to the bracelet body 1. A battery 15 for power supply is detachably installed in the middle of the front end of the bracelet body 1, and a charging port 20 for charging the bracelet body 1 is provided at the left part of the front end of the bracelet body 1.

[0024] Please refer to Figure 3 and Figure 5 In this embodiment, first ventilation holes 6 for increasing air permeability are provided between two groups of adjacent elastic blocks 5 on the surface of the protection pad 4. Limiting holes 12 are evenly distributed on the surface of the first reinforcing band 10 from left to right, and a buckle 13 for snap connection with the limiting holes 12 is fixedly installed on the upper right side of the second reinforcing band 11.

[0025] Please refer to Figure 1 and Figure 2 In this embodiment, a first magic tape 7 is fixedly installed on the lower left part of the first strap 2, and a second magic tape 8 for mutual adhesion with the first magic tape 7 is fixedly installed on the upper right part of the second strap 3. Second ventilation holes 9 for increasing air permeability are linearly distributed and evenly provided at positions corresponding to the first magic tape 7 and the second magic tape 8 on the surfaces of the first strap 2 and the second strap 3. The battery 15 is snap-connected to the bracelet body 1. The first strap 2, the second strap 3, the first reinforcing band 10, and the second reinforcing band 11 are all made of elastic rubber material, and a connection module for remotely connecting to an external data analysis device is provided inside the bracelet body 1.

[0026] Please refer to Figure 4 In this embodiment, a protective cover 16 for opening and closing is provided at a position corresponding to the battery 15 at the front end of the bracelet body 1. A handle 17 for facilitating the opening and closing of the protective cover 16 is provided on the outer side of the protective cover 16. A magnetic attraction block 19 is fixedly installed inside the handle 17, and a magnetic attraction groove 18 for mutual magnetic attraction with the magnetic attraction block 19 is provided at the front end of the bracelet body 1.

[0027] When working, first, the lower end of the bracelet body 1 is attached to the upper surface of the patient's wrist, so that the bracelet body 1 is located in the middle of the wrist;

[0028] Then, the first strap 2 and the second strap 3 are used in cooperation to fix the bracelet body 1, and the first magic tape 7 and the second magic tape 8 are adhered to each other to initially fix the first strap 2 and the second strap 3;

[0029] Next, the first reinforcing band 10 and the second reinforcing band 11 are tied to the outside of the first strap 2 and the second strap 3, so that the buckle 13 on the second reinforcing band 11 is snap-connected to the limiting hole 12 at the corresponding position on the first reinforcing band 10 to further fix the bracelet body 1;

[0030] During the process of the bracelet body 1 monitoring the patient's heart rate, the wrist of the patient is protected by the protection pad 4 at the lower ends of the first strap 2 and the second strap 3, and buffer protection is carried out through the elastic blocks 5 between the protection pad 4 and the first strap 2 and the second strap 3;

[0031] When the battery 15 runs out of power, the bracelet body 1 is charged through the charging port 20, or the anti-slip cover is opened, the dead battery 15 is taken out, and a new battery 15 is directly replaced. Generally, in case of emergency or when it is inconvenient to charge outdoors, the power of the bracelet body 1 is restored by directly replacing the battery 15.

[0032] Through the above steps, by setting the protective pad 4 with a buffer structure to protect the patient's wrist, the comfort during wearing can be increased, and even if the bracelet is worn for a long time, the patient will not feel uncomfortable. By setting the first reinforcement strap 10 and the second reinforcement strap 11 on the basis of the original magic tape strap to cooperate for external reinforcement, the stability of the bracelet fixation can be increased, and it is not easy to fall off due to the decrease in the stickiness of the magic tape or the excessive movement of the patient. By setting the charging port 20 and the detachable battery 15 on the bracelet in a synchronous cooperation manner, charging or directly replacing the battery 15 can be selected according to actual usage requirements, which not only retains the convenience and flexibility of charging, but also realizes the advantages of long battery life and extended service life by replacing the battery 15. In case of going out or in an emergency, the bracelet power can be quickly restored by directly replacing the battery 15, providing more choices and a better user experience for users, so as to solve the problems that the existing medical bracelets for real-time heart rate monitoring usually have their straps directly attached to the skin tightly, which is easy to cause discomfort to the patient after wearing for a long time, and the fixing method of the straps usually uses magic tape, and repeated use will cause the stickiness of the magic tape to decrease, resulting in reduced stability and easy falling off of the bracelet during use, and the existing bracelets usually use the charging port for power supply, the power supply method is single, and in case of emergency or outdoor use when out of power, the charging method is usually limited and the convenience is low.

Claims

1. A medical bracelet for real-time heart rate monitoring, including a bracelet body (1); characterized in that: It also includes a first strap (2), a second strap (3), a protective pad (4), elastic blocks (5), a first Velcro (7), a second Velcro (8), a first reinforcement strap (10), a second reinforcement strap (11), a buckle (13), a connecting block (14), a battery (15), a protective cover (16), a handle (17), a magnetic attraction block (19) and a charging port (20). The left end of the bracelet body (1) is provided with the first strap (2), and the right end of the bracelet body (1) is provided with the second strap (3). One ends of the first strap (2) and the second strap (3) close to the bracelet body (1) are rotatably connected to the bracelet body (1) through two groups of connecting blocks (14) arranged front and back relatively. The first strap (2) and the second strap (3) are used to cooperate to fix the bracelet body (1). At the parts of the lower ends of the first strap (2) and the second strap (3) close to the bracelet body (1), protective pads (4) for protecting the patient's wrist are provided. Linear and evenly distributed elastic blocks (5) for buffering are fixedly connected between the two groups of protective pads (4) and the first strap (2) and the second strap (3). At the part of the upper end of the first strap (2) close to the bracelet body (1), a first reinforcement strap (10) is fixedly connected. At the part of the upper end of the second strap (3) close to the bracelet body (1), a second reinforcement strap (11) for cooperating with the first reinforcement strap (10) to reinforce the bracelet body (1) is fixedly connected. In the middle of the front end of the bracelet body (1), a battery (15) for power supply is detachably installed. At the left part of the front end of the bracelet body (1), a charging port (20) for charging the bracelet body (1) is provided.

2. The medical bracelet for real-time heart rate monitoring according to claim 1, wherein: First ventilation holes (6) for increasing air permeability are formed on the surface of the protective pad (4) between two adjacent groups of elastic blocks (5) on the left and right. Limiting holes (12) are evenly formed on the surface of the first reinforcement strap (10) from left to right. At the right side of the upper end of the second reinforcement strap (11), a buckle (13) for engaging with the limiting holes (12) is fixedly installed.

3. The medical bracelet for real-time heart rate monitoring according to claim 1, wherein: At the left part of the lower end of the first strap (2), a first Velcro (7) is fixedly installed. At the right part of the upper end of the second strap (3), a second Velcro (8) for sticking to the first Velcro (7) is fixedly installed.

4. The medical bracelet for real-time heart rate monitoring according to claim 1, characterized in that: Second ventilation holes (9) for increasing air permeability are linearly and evenly formed at the positions of the surfaces of the first strap (2) and the second strap (3) corresponding to the first Velcro (7) and the second Velcro (8). The battery (15) is snap-fitted with the bracelet body (1).

5. The medical bracelet for real-time heart rate monitoring according to claim 1, characterized in that: At the position of the front end of the bracelet body (1) corresponding to the battery (15), a protective cover (16) for opening and closing is provided. On the outer side of the protective cover (16), a handle (17) for facilitating the opening and closing of the protective cover (16) is provided.

6. The medical bracelet for real-time heart rate monitoring according to claim 1, characterized in that: A magnetic attraction block (19) is fixedly installed on the inner side of the handle (17). A magnetic attraction groove (18) for mutually magnetically attracting with the magnetic attraction block (19) is formed at the front end of the bracelet body (1).

7. The medical bracelet for real-time heart rate monitoring according to claim 1, characterized in that: The first strap (2), the second strap (3), the first reinforcement strap (10) and the second reinforcement strap (11) are all made of elastic rubber material, and a connection module for remotely connecting to an external data analysis device is provided inside the bracelet body (1).