Blood pressure data monitoring device

By designing a blood pressure data monitoring device including a cylindrical shell, a transformer cuff, a processor and a display screen, the existing household blood pressure meter has solved the complex structure and inconvenient operation, and the compact and easy storage effect of the device is achieved.

CN222929758UActive Publication Date: 2025-06-03SOUTH CHINA UNIV OF TECH
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202421401416.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-18
Publication Date
2025-06-03
Estimated Expiration
2034-06-18

AI Technical Summary

Technical Problem

The overall structure of the existing household blood sphygmomanometer is complicated and inconvenient to operate, especially the cuffs are inconvenient to store, resulting in messy blood sphygmomanometers.

Method used

Design a blood pressure data monitoring device, including a cylindrical housing, a transformer cuff, a processor and a display screen. The transformer cuff is wrapped around the housing and connected to the inflation port through an inflatable connection tube. The processor receives blood pressure data and displays it on the display screen. The housing is designed to be compact, with a concave middle part for easy storage of cuffs.

Benefits of technology

The blood pressure data monitoring device is simple and compact in structure, which facilitates the storage of the transformer cuff, and solves the problems of inconvenient operation and messy existing blood pressure monitors.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN222929758U_ABST
    Figure CN222929758U_ABST
Patent Text Reader

Abstract

The utility model discloses a blood pressure data monitoring device which comprises a shell, a variable pressure cuff, a processor and a display screen. The shell is a cylinder, and an inflation inlet is formed in the shell; the variable-pressure sleeve belt is wound on the shell, and the variable-pressure sleeve belt is connected with the inflation inlet through an inflation connecting pipe; the processor is arranged in the shell; the display screen is arranged on the top face of the shell, the display screen is connected with the processor, and when the variable-pressure cuff works, the processor receives collected blood pressure data and displays the collected blood pressure data on the display screen. The blood pressure data monitoring device is simple and compact in structure, and the variable pressure cuff can be stored conveniently.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of medical devices, in particular to a blood pressure data monitoring device. Background Art

[0002] With the improvement of the quality of life, modern people's health care awareness has become stronger and stronger, and home medical care has become the current fashion of medical care. In the past, people had to go to the hospital to measure blood pressure, but now as long as they have a home electronic sphygmomanometer, they can monitor their blood pressure at any time while sitting at home. In order to facilitate the operation and use of users at any time, elements such as portability, fashion, beauty, and simple operation have become the development trend of home sphygmomanometers.

[0003] However, the overall structure of the current home sphygmomanometer is complex and the operation is inconvenient. Especially, the cuff is not convenient to store, resulting in a messy state of the sphygmomanometer.

[0004] Therefore, the existing technology still needs to be improved. Summary of the Utility Model

[0005] The technical problem to be solved by the utility model is to provide a blood pressure data monitoring device aiming at the above-mentioned defects of the existing technology, aiming to solve the problems that the overall structure of the existing home sphygmomanometer is complex, the operation is inconvenient, especially the cuff is not convenient to store, resulting in a messy state of the sphygmomanometer.

[0006] To solve the above technical problems, the technical solutions adopted by the utility model are as follows:

[0007] In a first aspect, the utility model provides a blood pressure data monitoring device, wherein the device includes:

[0008] A housing, the housing is a cylinder, and an inflation port is arranged on the housing;

[0009] A variable pressure cuff, the variable pressure cuff is wound around the housing, and the variable pressure cuff is connected to the inflation port through an inflation connecting tube;

[0010] A processor, the processor is arranged in the housing;

[0011] A display screen, the display screen is arranged on the top surface of the housing, the display screen is connected to the processor, and when the variable pressure cuff works, the processor receives the collected blood pressure data and displays it on the display screen.

[0012] In one implementation, the middle part of the outer surface of the housing is recessed inward, showing a shape with larger ends and a smaller middle.

[0013] In one implementation, the top surface of the housing is set as an inclined surface.

[0014] In one implementation, a machine cover is provided on the housing, and the display screen is provided on the machine cover, and the size of the display screen is the same as that of the machine cover.

[0015] In one implementation, the display screen includes a blood pressure display area, a pulse display area, a power display area, and a button operation area.

[0016] In one implementation, a voice broadcast port is provided on the display screen.

[0017] In one implementation, a charging port is provided on the housing.

[0018] In one implementation, a buckle member is provided on the variable pressure cuff. After the variable pressure cuff is wound around the housing, the variable pressure cuff is fixed by the buckle member.

[0019] In one implementation, the buckle member includes a first bonding portion and a second bonding portion, and the first bonding portion and the second bonding portion are bonded to each other for fixing the variable pressure cuff.

[0020] In one implementation, the length dimension of the first bonding portion is greater than the length dimension of the second bonding portion.

[0021] Beneficial effects: Compared with the prior art, the present utility model provides a blood pressure data monitoring device, which includes: a housing, a variable pressure cuff, a processor, and a display screen. The housing is a cylinder, and an inflation port is provided on the housing; the variable pressure cuff is wound around the housing, and the variable pressure cuff is connected to the inflation port through an inflation connecting tube; the processor is arranged in the housing; the display screen is arranged on the top surface of the housing, and the display screen is connected to the processor. When the variable pressure cuff works, the processor receives the collected blood pressure data and displays it on the display screen. The blood pressure data monitoring device provided by the present utility model has a simple and compact structure and is convenient for storing the variable pressure cuff. Description of the Drawings

[0022] Figure 1 It is a structural diagram of the blood pressure data monitoring device provided by the embodiment of the present utility model.

[0023] Figure 2 It is an exploded view of the blood pressure data monitoring device provided by the embodiment of the present utility model.

[0024] Reference Numerals in the Drawings

[0025] housing 10 transformer cuff 20 display screen 30 lid 40 inflation port 50 inflation connecting tube 60 charging port 70 voice broadcast port 80 Detailed Embodiments

[0026] To make the objectives, technical solutions and effects of the present utility model clearer and more definite, the following further elaborates on the present utility model with reference to the accompanying drawings and by way of examples. It should be understood that the specific examples described herein are only used to explain the present utility model and are not used to limit the present utility model.

[0027] To solve the problems of the prior art, this embodiment provides a blood pressure data monitoring device, which includes: a housing, a pressure-changing cuff, a processor, and a display screen. The housing is cylindrical, and an inflation port is provided on the housing; the pressure-changing cuff is wound around the housing, and the pressure-changing cuff is connected to the inflation port through an inflation connecting tube; the processor is arranged inside the housing; the display screen is arranged on the top surface of the housing, and the display screen is connected to the processor. When the pressure-changing cuff works, the processor receives the collected blood pressure data and displays it on the display screen. The blood pressure data monitoring device provided by the present utility model has a simple and compact structure, and is convenient for storing the pressure-changing cuff.

[0028] Specifically, as Figure 1 and Figure 2 shown, the housing 10 of this embodiment is arranged in a cylindrical shape. When storing the pressure-changing cuff 20, the pressure-changing cuff 20 can be wound around the housing 10, which makes the entire pressure data monitoring device have a simple structure, and the storage of the pressure-changing cuff 20 is neat and not messy. Further, to make the structure of the entire pressure data monitoring device more compact, the middle part of the outer surface of the housing 10 in this embodiment is recessed inward, presenting a shape with larger ends and a smaller middle, in a waist shape or hourglass shape. When the pressure-changing cuff 20 is wound around the housing 10, due to the inward recess of the middle part of the housing 10, the pressure-changing cuff 20 can just be embedded into the recessed area. Therefore, the entire pressure data monitoring device after storing the pressure-changing cuff has a flat and simple appearance and a compact structure.

[0029] In another implementation manner, an inner groove can be directly provided at the middle position of the outer surface of the housing 10 of this embodiment. The depth of the inner groove is the same as the thickness of the pressure-changing cuff 20 after storage, and the width of the inner groove is the same as the width of the pressure-changing cuff 20. In this way, when the pressure-changing cuff 20 is wound around the housing 10, the pressure-changing cuff 20 just fits into the inner groove, and the structure is more compact.

[0030] Further, from Figure 2As can be seen, the top surface of the housing 10 of this embodiment is provided with a machine cover 40, and a display screen 30 is provided on the machine cover 40. The shapes and sizes of the display screen 30 and the machine cover 40 are the same, so that a complete screen is formed on the top surface of the blood pressure data monitoring device. In this embodiment, a processor is provided inside the housing 10. The processor can be a main control chip, such as SIC32F911 RET6. The main control chip SIC32F911 RET6 adopts a proprietary 32-bit CPU and supports a dual-pin 32KHz crystal oscillator or a single-pin 32KHz crystal oscillator. In practical applications, the processor can be fixedly arranged on the top surface of the inner surface of the housing 10 and connected to the display screen 30. When using the blood pressure monitor, by operating the pressure-changing cuff 20, the processor can receive the collected blood pressure data and display it on the display screen 30. Preferably, the display screen 30 in this application includes a blood pressure display area, a pulse display area, a power display area, and a key operation area, so that the content displayed on the display screen 30 is rich and convenient for application in different usage scenarios. In practical applications, the top surface of the housing 10 of this embodiment is set as an inclined surface, and the machine cover 40 and the display screen 30 are arranged in accordance with the top surface. Therefore, the machine cover 40 and the display screen 30 are also inclined, which is convenient for viewing blood pressure data and operating on the display screen 30.

[0031] In one implementation, an inflation port 50 is further provided on the housing 10 of this embodiment. The inflation port 50 is a pressurized inflation port. The pressurized inflation port is connected to the pressure-changing cuff 20 through an inflation connecting tube 60. An air pump can be provided inside the pressurized inflation port. By the operation of the air pump, air is inflated into the pressure-changing cuff 20, and then the pressure-changing cuff 20 works to collect blood pressure data. A charging port 70 is provided on the housing 10 of this embodiment. The charging port 70 is a type-c interface. The type-c interface can serve as a charging interface and is connected to the battery provided inside the housing 10 for charging the battery through the type-c interface. Alternatively, the type-c interface can also serve as an interface for connecting to an external device, and is used to transmit the collected blood pressure data to other external devices to expand the usage scenarios of the blood pressure monitor of this embodiment.

[0032] In addition, the display screen 30 is provided with a voice broadcast port 80 for voice-playing blood pressure data. A microphone assembly is provided at a position corresponding to the voice broadcast port inside the housing 10, and the microphone assembly can be connected to the processor. In practical applications, the blood pressure data monitoring device can perform voice broadcast on the user's blood pressure data collected in real time, or perform voice warning when the blood pressure data is abnormal to help the user understand their blood pressure situation in real time. The blood pressure monitor of this embodiment can also be provided with a Bluetooth module inside the housing 10. The Bluetooth module can be connected to the processor, and data interaction between the blood pressure monitor and other terminals can be realized through the Bluetooth module.

[0033] Furthermore, a buckle component can be provided on the variable-pressure cuff 20 of this embodiment. After the variable-pressure cuff 20 is wound around the housing 10, the variable-pressure cuff 20 is fixed by the buckle component. Specifically, when not stored, the variable-pressure cuff 20 is in a long strip shape. The buckle component is provided on the left or right side of the long strip shape. The buckle component can be in a long strip shape, and the buckle component includes a first bonding portion and a second bonding portion. When the variable-pressure cuff 20 is wound around the housing 10 and the variable-pressure cuff 20 is stored, the first bonding portion and the second bonding portion are bonded to each other to fix the variable-pressure cuff 20. In addition, in order to better store the variable-pressure cuff 20, the length dimension of the first bonding portion of this embodiment is greater than the length dimension of the second bonding portion. Such a second bonding portion can flexibly adjust the specific bonding position on the first bonding portion, so as to realize winding the variable-pressure cuff 20 with different tightness degrees and achieve a better fixing effect. Preferably, the first bonding portion and the second bonding portion of this embodiment are respectively provided on the front and back surfaces of the buckle component to facilitate the bonding between the first bonding portion and the second bonding portion.

[0034] In one implementation, a silica gel anti-slip pad is provided at the bottom of the housing 10 of this embodiment. Specifically, the silica gel anti-slip pad can be provided around the bottom and is evenly arranged, which is convenient for placing the blood pressure data monitoring device. In other implementations, the blood pressure data monitoring device of this embodiment can also have a clock function and a temperature and humidity display function. For example, a temperature and humidity sensor is provided on the housing 10. The temperature and humidity sensor can be provided on the outer surface of the housing 10 and is close to the top surface, and the temperature and humidity sensor is connected to the processor. The temperature and humidity data collected by the temperature and humidity sensor is displayed on the display screen 30 through the processor.

[0035] In summary, the present utility model provides a blood pressure data monitoring device, and the device includes: a housing, a variable-pressure cuff, a processor, and a display screen. The housing is a cylinder, and an inflation port is provided on the housing; the variable-pressure cuff is wound around the housing, and the variable-pressure cuff is connected to the inflation port through an inflation connecting tube; the processor is arranged in the housing; the display screen is arranged on the top surface of the housing, and the display screen is connected to the processor. When working through the variable-pressure cuff, the processor receives the collected blood pressure data and displays it on the display screen. The blood pressure data monitoring device provided by the present utility model has a simple and compact structure and is convenient for storing the variable-pressure cuff.

[0036] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it; although the present invention 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 cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.

Claims

1. A blood pressure data monitoring device, characterized in that: The device comprises: A shell, the shell is a cylinder, and an air filling port is provided on the shell; A pressure-changing cuff, the pressure-changing cuff is wound around the shell, and the pressure-changing cuff is connected to the inflation port through an inflation connecting pipe; a processor, the processor being disposed in the housing; A display screen, the display screen is arranged on the top surface of the housing, the display screen is connected to the processor, and when the variable pressure cuff is working, the processor receives the collected blood pressure data and displays it on the display screen; The inflation port is a pressurized inflation port, which is connected to the variable pressure cuff through an inflation connection pipe. An air pump can be arranged inside the inflation port. The air pump inflates the variable pressure cuff to make the variable pressure cuff work and collect blood pressure data. The middle part of the outer surface of the shell is concave inward, presenting a shape with large ends and a small middle; an inner groove is provided in the middle part of the outer surface of the shell, the depth of the inner groove is the same as the thickness of the voltage-changing cuff after being stored, and the width of the inner groove is the same as the width of the voltage-changing cuff; The voltage-changing cuff is provided with a buckle component, and when the voltage-changing cuff is wound around the shell, the voltage-changing cuff is fixed by the buckle component; The buckle component includes a first adhesive portion and a second adhesive portion, the first adhesive portion and the second adhesive portion are bonded to each other and are used to fix the variable pressure cuff; The length dimension of the first bonding portion is greater than the length dimension of the second bonding portion; A silicone anti-skid pad is arranged at the bottom of the shell, and the silicone anti-skid pad is arranged on the four sides of the bottom and is evenly arranged.

2. The blood pressure data monitoring device according to claim 1, characterized in that: The top surface of the shell is configured as an inclined surface.

3. The blood pressure data monitoring device according to claim 1, characterized in that: The shell body is provided with a cover, the cover is provided with the display screen, and the size of the display screen is the same as that of the cover.

4. The blood pressure data monitoring device according to claim 3, characterized in that: The display screen includes a blood pressure display area, a pulse display area, a power display area and a key operation area.

5. The blood pressure data monitoring device according to claim 4, characterized in that: The display screen is provided with a voice broadcast port.

6. The blood pressure data monitoring device according to claim 1, characterized in that: The shell is provided with a charging port.