AI-powered intelligent hydrogen and oxygen supply device structure
Patent Information
- Authority / Receiving Office
- TW · TW
- Patent Type
- Utility models
- Current Assignee / Owner
- 黄品瑞
- Filing Date
- 2026-03-09
- Publication Date
- 2026-08-01
Smart Images

Figure TWG2TB001904455_001 
Figure TWG2TB001904455_002 
Figure TWG2TB001904455_003
Abstract
Claims
1. A structure for an AI-powered intelligent hydrogen and oxygen supply device, comprising: A hydrogen-oxygen gas supply unit includes at least one electrolysis module, at least one filtration module, at least one control module, and at least one gas delivery pipeline. The electrolysis module introduces pure water for electrolysis to produce hydrogen and oxygen. The control module includes a control circuit board, a control panel, and at least one breathing sensor. The control panel and breathing sensor are connected to the control circuit board in a controllable and detectable value receiving state. The control panel is electrically connected to the electrolysis module, which is also electrically connected to the filtration module. The filtration module is electrically connected to the breathing sensor, which is then connected to the gas delivery pipeline. The control circuit board is electrically connected to an AI computing module and a hydrogen and oxygen output control module. The AI computing module stores computing suggestion conditions, and the hydrogen and oxygen output control module stores adjustment control conditions. The electrolysis module is connected to a filtration module, which removes impurities and moisture remaining from the electrolysis process from the generated hydrogen and oxygen. The control circuit board inputs the values detected by the breathing sensor into the AI computing module for calculation and makes suggestions. The hydrogen and oxygen output control module then outputs the control results to regulate the output of hydrogen and oxygen, which are then discharged from the filtration module to the gas pipeline.
2. The structure of the AI intelligent hydrogen and oxygen supply device as described in claim 1, wherein, The breathing sensor is located inside the gas supply line. The breathing sensor is a differential pressure flow sensor, a hot wire flow sensor, or a miniature pressure sensor. It is used to detect the user's inhalation flow rate, exhalation flow rate, peak inhalation flow rate, peak exhalation flow rate, total inhalation volume per breath, and respiratory rate. It can also detect when the device is not in use. The data is transmitted to the control circuit board for the AI computing module to perform calculations and analysis to determine the effective supply of hydrogen and oxygen.
3. The structure of the AI intelligent hydrogen and oxygen supply device as described in claim 1 or 2, wherein, The control circuit board of the control module is further provided with a signal processing circuit, which is electrically connected to the hydrogen and oxygen output regulation module, and performs flow correction, noise filtering and respiratory waveform acquisition.
4. The structure of the AI intelligent hydrogen and oxygen supply device as described in claim 3, wherein, The control circuit board of the control module is further provided with a wireless transmission module, which is electrically connected to the signal processing circuit to provide remote device control, remote device reading, or remote device data storage.
5. The structure of the AI intelligent hydrogen and oxygen supply device as described in claim 4, wherein, The AI computing module includes at least one breathing waveform collection database unit, at least one peak and frequency feature extraction database unit, at least one long short-term memory deep learning breathing prediction model, at least one optimal air supply flow calculation model, and at least one flow control output adjustment database to perform user breathing waveform identification, breathing stage detection, personalized air supply suggestion model generation, and breathing abnormality detection, and to perform calculation and analysis of breathing sensor detection values.
6. The structure of the AI intelligent hydrogen and oxygen supply device as described in claim 5, wherein, The flow control output adjustment database stores calculation models such as increasing the air supply when inhaling strongly, decreasing the air supply when inhaling shallowly, maintaining the baseline value but not completely stopping when exhaling, and reverting to a fixed standard output when not in use, to maintain a stable supply of hydrogen and oxygen.