Respiration sensing control system of human body hydrogen absorption machine

By introducing a pressure sensor and a heart rate and blood oxygen detection module into the hydrogen inhalation machine, the hydrogen output and user status can be monitored in real time, solving the problems of hydrogen leakage and changes in human body status, and achieving safety and enhanced security of the hydrogen inhalation machine.

CN223555280UActive Publication Date: 2025-11-18C & E ENVIRONMENTAL TECH CO LTD
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Patent Information

Application Number
CN202421699519.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-17
Publication Date
2025-11-18
Estimated Expiration
2034-07-17

AI Technical Summary

Technical Problem

Existing hydrogen inhalation machines are prone to hydrogen leakage during use, posing a safety hazard. Furthermore, they lack real-time monitoring of the user's heart rate and blood oxygen levels, making it impossible to respond promptly to changes in the body's condition.

Method used

A pressure sensor is used to detect the hydrogen output pressure, and a heart rate and blood oxygen detection module monitors the user's status in real time. The circuit control module controls the hydrogen output to ensure that the hydrogen output stops in time when the human body leaves the device, and adjusts the generation and stopping of hydrogen according to heart rate and blood oxygen indicators.

Benefits of technology

This improves the safety of hydrogen inhalation machines, avoids hydrogen leakage and flammable and explosive risks, and ensures the safety of users during use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a human body hydrogen absorption machine respiration sensing control system which comprises a hydrogen production machine, a circuit control module, a hydrogen output port and a pressure sensor are arranged on the hydrogen production machine, the pressure sensor is connected to an output pipeline, connected with a human body, of the hydrogen output port, and the circuit control module is in signal connection with the pressure sensor. According to the breathing sensing control system of the human body hydrogen absorption machine, the pressure sensor is arranged to detect the pressure of hydrogen on the pipeline connected with the human body in real time, the circuit control module obtains the pressure value detected by the pressure sensor, when the human body is separated from the equipment, the hydrogen production machine is stopped from outputting hydrogen in time, and the safety coefficient of the use environment is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to hydrogen inhalation machine technical field especially is a kind of human body hydrogen inhalation machine breathing sensing control system. BACKGROUND

[0002] Hydrogen inhalation refers to the relatively high concentration of hydrogen gas mixed air is inhaled into the lungs, and then transported to the whole body by blood, using hydrogen and active oxygen neutralization reaction to eliminate oxygen free radicals, so as to achieve the effect of rehabilitation conditioning, health care. Currently, hydrogen produced by hydrogen generator can be directly used by people. Hydrogen is a flammable and explosive gas, and people do not inhale hydrogen at all times during the process of inhaling hydrogen. The existing hydrogen generator produces hydrogen gas when the machine is working. When the human body is separated from the equipment, the hydrogen gas produced by the existing hydrogen generator will leak, which will cause waste and a certain risk factor. Heart rate and blood oxygen detection are applied in medical field and are not combined with hydrogen inhalation machine products for linkage use. Some special groups of people may not be aware of the changes in human body signs when using hydrogen inhalation machine. For the detection of heart rate and blood oxygen of human body during the use of hydrogen inhalation machine, the existing hydrogen inhalation machine products do not provide a solution. SUMMARY

[0003] The utility model aims at providing a kind of human body hydrogen inhalation machine breathing sensing control system, setting pressure sensor real-time detection hydrogen gas on the pipe connected to human body, the pressure value detected by pressure sensor is obtained by circuit control module, hydrogen generator is stopped in time to output hydrogen when human body is separated from equipment, improve the safety factor of use environment.

[0004] To achieve the above object, the utility model provides a technical scheme: a kind of human body hydrogen inhalation machine breathing sensing control system, including hydrogen generator, hydrogen generator is equipped with circuit control module, hydrogen output and pressure sensor, pressure sensor is connected on the output pipe of hydrogen output connected to human body, and circuit control module is signal connected pressure sensor.

[0005] The utility model adopts the above technical scheme, increases pressure sensor detection hydrogen output pressure, judges whether human body leaves hydrogen generator, when human body leaves hydrogen generator, circuit control module stops hydrogen generator output hydrogen in time, whole hydrogen inhalation process is continuously tested, guarantee the safety factor of use environment, improve equipment use safety.

[0006] The above-mentioned human body hydrogen inhalation machine breathing sensing control system, signal connection has heart rate blood oxygen detection module on hydrogen generator. Heart rate blood oxygen detection module is used to detect the heart rate and blood oxygen index of hydrogen inhalation machine user, and is signal connected with hydrogen generator, whether the heart rate and blood oxygen index of user is required is judged, and the start and stop of hydrogen generator are controlled.

[0007] The human body hydrogen inhalation machine breath sensing control system, the heart rate blood oxygen detection module is a blood oxygen finger clip or a bracelet. The blood oxygen finger clip or the bracelet can be conveniently worn on the hand of the user of the hydrogen inhalation machine, and can detect the heart rate and the blood oxygen index of the user in real time, feed back the index to the hydrogen generator, judge whether the heart rate and the blood oxygen index of the user are abnormal, and stop the hydrogen generator in time when the heart rate and the blood oxygen index of the user are abnormal, thereby improving the use safety factor.

[0008] The human body hydrogen inhalation machine breath sensing control system, the hydrogen generator comprises a water tank, an electrolytic cell, a gas-water separator and an adjustable humidity regulating valve. The electrolytic cell electrolyzes water delivered from the water tank. The gas-water separator receives and separates hydrogen water electrolyzed in the electrolytic cell. The hydrogen outlet of the gas-water separator is connected with the adjustable humidity regulating valve. The adjustable humidity regulating valve is connected with the pressure sensor. Water in the water tank flows into the electrolytic cell for electrolysis, and hydrogen water is delivered to the gas-water separator for separation. The separated hydrogen is output after passing through the adjustable humidity regulating valve. The hydrogen generator has the advantages of good electrolysis effect, high hydrogen concentration of the generated hydrogen and adjustable humidity.

[0009] The human body hydrogen inhalation machine breath sensing control system, the water tank is provided with a water level detection point, and the circuit control module is connected with the water level detection point. The circuit control module can detect the water amount in the water tank in real time through the water level detection point.

[0010] The human body hydrogen inhalation machine breath sensing control system, the circuit control module is connected with an electric conductivity probe. The electric conductivity probe is arranged on the pipeline between the water tank and the electrolytic cell. The electric conductivity probe is used to measure the electric conductivity of raw water input into the electrolytic cell from the water tank.

[0011] The human body hydrogen inhalation machine breath sensing control system, the current control module is connected with a liquid crystal display screen and a control panel, which are used to input control signals and output control information.

[0012] The human body hydrogen inhalation machine breath sensing control system, the water tank is provided with an electric conductivity stabilizing filter element. The electric conductivity stabilizing filter element is used to balance the electric conductivity of water, so that the electric conductivity meets the electrolysis requirement.

[0013] The human body hydrogen inhalation machine breath sensing control system, the bottom of the water tank is provided with a drain valve. The drain valve is used to drain the water to be replaced in the water tank.

[0014] The human body hydrogen inhalation machine breath sensing control system, the hydrogen generator further comprises an observation window, which is used to observe the hydrogen generation condition.

[0015] The utility model discloses beneficial effect obtained is: through being arranged in pressure sensor, the hydrogen pressure of hydrogen output of hydrogen production machine is detected in real time, judges whether the human body is away from the equipment in the hydrogen suction process of user, when the human body is away from the equipment, the hydrogen output of hydrogen output is closed down in time by circuit control module, avoids hydrogen leakage and makes the environment to have the flammable and explosive danger, improves equipment use safety. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is the structure schematic diagram of the embodiment of the utility model in specific implementation.

[0017] Mark explanation: hydrogen production machine 1, circuit control module 11, hydrogen output 12, pressure sensor 13, output pipeline 14, water tank 15, electrolytic cell 16, gas-water separator 17, adjustable humidity regulating valve 18, observation window 19, water level detection point 111, electric conductivity probe 112, liquid crystal display 113, control panel 114, electric conductivity stable filter core 151, drain valve 152, heart rate blood oxygen detection module 2. DETAILED DESCRIPTION

[0018] The utility model will be further explained in connection with the drawings and specific implementation.

[0019] Referring to Figure 1 As shown in the figure, a kind of human body hydrogen suction machine breath sensing control system, including hydrogen production machine 1, hydrogen production machine 1 is equipped with circuit control module 11, hydrogen output 12 and pressure sensor 13, pressure sensor 13 is connected on the output pipeline 14 of hydrogen output 12 connection human body, circuit control module 11 signal connection pressure sensor 13.

[0020] Hydrogen production machine 1 is signal connected with heart rate blood oxygen detection module 2.Hydrogen production machine 1 is signal connected with heart rate blood oxygen detection module 2.Hydrogen production machine 1 is signal connected with heart rate blood oxygen detection module 2.

[0021] Hydrogen production machine 1 includes water tank 15, electrolytic cell 16, gas-water separator 17 and adjustable humidity regulating valve 18, electrolytic cell 16 electrolysis is transported from water tank 15 water, gas-water separator 17 receives and separates the hydrogen gas water of electrolysis in electrolytic cell 16, the hydrogen output 12 of gas-water separator 17 is connected with adjustable humidity regulating valve 18, and adjustable humidity regulating valve 18 is connected with pressure sensor 13.

[0022] Water tank 15 is equipped with water level detection point 111, and circuit control module 11 is signal connected with water level detection point 111.Circuit control module 11 is signal connected with electric conductivity probe 112, and electric conductivity probe 112 is arranged on the pipeline between water tank 15 and electrolytic cell 16.Circuit control module 11 is signal connected with liquid crystal display 113 and control panel 114, for input control signal and output control information.Water tank 15 is equipped with electric conductivity stable filter core 151.Water tank 15 bottom is equipped with drain valve 152.

[0023] The hydrogen generator 1 further comprises an observation window 19 for observing the hydrogen generation. The hydrogen generated by the electrolytic cell 16 can be observed through the observation window 19 when the hydrogen flows through the observation window 19. The observation window 19 can be arranged on the electrolytic cell 16 or connected to the outside of the electrolytic cell 16.

[0024] In the embodiment, the adjustable humidity regulating valve 18 is connected to the hydrogen output port 12 of the gas-water separator 17, the water in the water tank 15 is transported to the electrolytic cell 16 for electrolysis, the hydrogen generated by the electrolysis enters the gas-water separator 17 for gas-liquid separation after flowing through the observation window 19, and the generated hydrogen is output from the hydrogen output port 12. The excess water in the gas-water separator 17 flows back to the water tank 15, and the water tank 15 is provided with an electric conductivity stabilizing filter element 151 to improve the electric conductivity of the water in the water tank 15. The circuit control module 11 detects the high, medium and low water levels of the water tank 3 through the water level detection point 111.

[0025] The hydrogen is output from the hydrogen output port 12, passes through the adjustable humidity regulating valve 18, and is provided to the user through the output pipeline 14. The output pipeline 14 is provided with a pressure sensor 13 for detecting the gas pressure on the output pipeline 14, converting the detected pressure into a voltage signal, and feeding back the voltage signal to the circuit control module 11, wherein the pressure and the voltage output signal are in proportional relationship. The circuit control module 11 in the hydrogen generator 1 detects the voltage signal to determine the change of the gas pressure on the output pipeline 14, and accordingly makes a corresponding judgment and processing. In use, the gas pressure detected by the pressure sensor 13 on the output pipeline 14 and the instructions output by the circuit control module 11 can be displayed through the liquid crystal display screen 113, and the related parameters can be set through the control panel 114.

[0026] When the human body breathes, the output pipeline 14 will have a change in pressure, the pressure becomes smaller when inhaling, and the pressure becomes larger when exhaling. Clinical medicine shows that the breathing frequency of an adult is 12-2 times per minute, and one breathing cycle corresponds to 3-5 seconds. The present application sets 4 seconds as one breathing cycle, and obtains a detection value every 0.25 seconds. When the difference between the maximum value and the minimum value detected by the pressure sensor 13 in one breathing cycle is greater than the set reference value, it is judged that the user completes one breathing action. When the number of breathing actions per minute is 12 times or more, it is judged that the human body is out of the device range. Thus, it is realized to automatically judge whether the user is out of the hydrogen generator, and the circuit control module 11 accordingly makes a corresponding action. When the human body is out of the hydrogen generator, the hydrogen output of the hydrogen generator is stopped in time, and the safety coefficient of use is improved.

[0027] The utility model discloses in implementation time, still adopt a heart rate blood oxygen detection module 2, heart rate blood oxygen detection module 2 includes but is not limited to blood oxygen finger clamp and bracelet, through wearing in the finger or wrist of user, to detect the heart rate and blood oxygen index of user. Blood oxygen finger clamp and bracelet can carry out data communication with hydrogen generator 1 through two ways of wired or wireless, and the heart rate and blood oxygen of user are detected in real time. Clinical medicine shows that the static heart rate range of adult is 50-125 times / min, and the blood oxygen range is 95-105%, when the equipment detects that two indexes are out of limit, then stop hydrogen production, when the index of user restores normal, and has the use demand, hydrogen generator 1 starts hydrogen production.

[0028] In summary, the utility model has as the content of the specification and the drawing, and is made into actual sample and is tested for many times, and from the effect of use test, it can prove that the utility model can reach its intended purpose, and the practical value is not in doubt. The above-mentioned embodiments are only used to facilitate the illustration of the utility model, and do not limit the utility model in any form, and anyone with ordinary knowledge in the art can make equivalent embodiments by making partial changes or modifications within the scope of the technical features disclosed by the utility model, and without departing from the technical features of the utility model, all still belong to the scope of the technical features of the utility model.

Claims

1. A human body hydrogen inhalation machine respiratory sensing and control system, comprising a hydrogen generator (1), characterized in that: The hydrogen generator (1) is equipped with a circuit control module (11), a hydrogen output port (12) and a pressure sensor (13). The pressure sensor (13) is connected to the output pipeline (14) that connects the hydrogen output port (12) to the human body. The circuit control module (11) is connected to the pressure sensor (13). The hydrogen generator (1) is also connected to a heart rate and blood oxygen detection module (2). The heart rate and blood oxygen detection module (2) is a blood oxygen finger clip or wristband.

2. The human body hydrogen inhalation machine respiratory sensing control system according to claim 1, characterized in that: The hydrogen generator (1) includes a water tank (15), an electrolytic cell (16), a gas-water separator (17), and an adjustable humidity control valve (18). The electrolytic cell (16) electrolyzes the water supplied from the water tank (15). The gas-water separator (17) receives and separates the hydrogen-water electrolyzed in the electrolytic cell (16). The hydrogen output port (12) of the gas-water separator (17) is connected to the adjustable humidity control valve (18), and the adjustable humidity control valve (18) is connected to the pressure sensor (13).

3. The human body hydrogen inhalation machine respiratory sensing control system according to claim 2, characterized in that: The water tank (15) is equipped with a water level detection point (111), and the circuit control module (11) is connected to the water level detection point (111) via signal.

4. The human body hydrogen inhalation machine respiratory sensing control system according to claim 2, characterized in that: The circuit control module (11) is connected to a conductivity probe (112), which is located on the pipeline between the water tank (15) and the electrolytic cell (16).

5. The human body hydrogen inhalation machine respiratory sensing control system according to claim 2, characterized in that: The circuit control module (11) is connected to the LCD screen (113) and the control panel (114) for inputting control signals and outputting control information.

6. The human body hydrogen inhalation machine respiratory sensing control system according to claim 2, characterized in that: The water tank (15) is equipped with a conductivity stabilizing filter element (151).

7. The human body hydrogen inhalation machine respiratory sensing control system according to claim 2, characterized in that: A drain valve (152) is provided at the bottom of the water tank (15).

8. The human body hydrogen inhalation machine respiratory sensing control system according to claim 2, characterized in that: The hydrogen generator (1) also includes an observation window (19) for observing the hydrogen production.