A multifunctional humidifier
Patent Information
- Application Number
- CN202521373391.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-01
- Publication Date
- 2026-09-15
- Estimated Expiration
- 2035-07-01
AI Technical Summary
[0030]This utility model provides a multifunctional humidifier, which includes a main body containing a water tank and an electrolysis device for electrolyzing liquids. The main body also includes an atomizing device located at the bottom or side of the water tank. The water tank stores liquid, providing a liquid source for the electrolysis and atomizing devices. The electrolysis device, located in the water tank, electrolyzes the liquid within. In practical use, users can add water to the tank, and the atomizing device atomizes the water into tiny particles. A fan then evenly distributes these atomized water particles into the indoor air, increasing indoor humidity. Users can also add a suitable amount of salt to the water tank to form a sodium chloride solution. The electrolysis device then activates, electrolyzing the sodium chloride solution. During electrolysis, chloride ions lose electrons at the anode and are oxidized into chlorine gas. The chlorine gas reacts with water to produce hypochlorous acid. The atomizing device atomizes a disinfectant solution containing hypochlorous acid into tiny particles. A fan then evenly distributes the atomized disinfectant solution into the indoor air, killing airborne microorganisms and improving indoor air quality. This humidifier not only has traditional humidification functions but also adds a disinfection function. Users can increase indoor humidity while utilizing the effective ingredients in the disinfectant solution to kill airborne microorganisms, improving indoor air quality and enriching the humidifier's functionality, thus enhancing the user experience. By making their own disinfectant solution, users can choose environmentally friendly, non-toxic, and biodegradable disinfectants, reducing environmental pollution. Furthermore, making their own disinfectant solution reduces user costs, improving the product's economic viability and sustainability.
Smart Images

Figure CN224757203U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of humidifier technology, and in particular to a multifunctional humidifier. Background Technology
[0002] Most humidifiers on the market today are single-function designs, only meeting the basic need to increase indoor humidity and completely lacking the ability to create their own disinfectant solutions. This forces users to take additional disinfection measures when they need to disinfect indoor air, such as spraying disinfectant or using ultraviolet (UV) light. However, spraying disinfectant is not only cumbersome, but the odor of disinfectant is often pungent, and some disinfectants leave residues in the air or on surfaces. These odors and residues may irritate the human body, especially in households with elderly people, children, or those with allergies, potentially causing discomfort. Furthermore, UV light has a limited coverage area, and prolonged exposure can cause serious damage to the skin and eyes. This requires users to leave the disinfection area when using UV light, increasing inconvenience and safety risks.
[0003] Therefore, single-function humidifiers cannot meet consumers' multi-purpose needs and need to be improved. Utility Model Content
[0004] To overcome the problems existing in related technologies, one of the objectives of this utility model is to provide a multifunctional humidifier that can use an electrolysis device to electrolyze the liquid in the water tank to generate disinfectant, thereby giving the humidifier a disinfection function. This can enrich the functions of the humidifier and improve the user experience.
[0005] A multi-functional humidifier, comprising:
[0006] The main body contains a water tank, and the water tank contains an electrolysis device for electrolyzing liquids.
[0007] The main body is also equipped with an atomizing device, which is located at the bottom or side wall of the water tank.
[0008] The humidifier's water tank stores liquid, providing a liquid source for the electrolysis and atomization devices. This humidifier has both humidification and disinfection functions. In actual use, users can add water to the tank, and the atomization device atomizes the water into tiny particles. A fan then evenly distributes these atomized water particles into the indoor air, increasing indoor humidity and achieving the humidification function. Users can also add an appropriate amount of salt to the tank to form a sodium chloride solution. The electrolysis device then activates, electrolyzing the sodium chloride solution. During electrolysis, chloride ions lose electrons at the anode and are oxidized into chlorine gas. The chlorine gas reacts with water to produce hypochlorous acid. The atomization device atomizes the hypochlorous acid-containing disinfectant solution into tiny particles, and a fan evenly distributes the atomized disinfectant solution into the indoor air, thereby killing airborne microorganisms and improving indoor air quality. This humidifier not only has traditional humidification functions but also adds a disinfection function. Users can increase indoor humidity while simultaneously using the effective ingredients in the disinfectant solution to kill airborne microorganisms, improving indoor air quality, enriching the humidifier's functionality, and enhancing the user experience. By making their own disinfectant, users can choose environmentally friendly, non-toxic, and biodegradable disinfectants, reducing environmental pollution. Furthermore, making their own disinfectant lowers user costs and improves the product's economic viability and sustainability.
[0009] In a preferred embodiment of this invention, the electrolysis device includes an electrolysis electrode disposed in the water tank; a first circuit board is disposed on the main body, and one end of the electrolysis electrode penetrates the side wall of the water tank and is detachably electrically connected to the first circuit board.
[0010] The electrolytic electrode is detachably electrically connected to the first circuit board via connecting bolts. This design makes maintenance and replacement of the electrolytic electrode more convenient. Users can easily replace the electrolytic electrode as needed, extending the humidifier's lifespan and reducing maintenance costs.
[0011] In a preferred embodiment of this invention, one end of the electrolytic electrode is provided with a connecting bolt, and the connecting bolt is detachably electrically connected to the first circuit board.
[0012] By connecting the electrodes to the circuit board with bolts, the ease of electrode installation can be improved, and a stable connection of the electrolytic electrodes can be achieved, thereby ensuring operational stability.
[0013] In a preferred embodiment of this invention, a protective cover is provided on one side of the first circuit board, and one end of the electrolytic electrode passes through the protective cover and is detachably electrically connected to the first circuit board; a sealing ring is provided between the electrolytic electrode and the protective cover.
[0014] A protective cover is provided on one side of the first circuit board, and one end of the electrolytic electrode passes through the protective cover and is detachably electrically connected to the first circuit board. The protective cover effectively prevents moisture and impurities from entering the circuit board, improving its service life and reliability. A sealing ring is provided between the electrolytic electrode and the protective cover, further enhancing the sealing performance, preventing liquid leakage, and ensuring the safe operation of the humidifier.
[0015] In a preferred embodiment of this invention, the main body is further provided with a second circuit board, which is disposed on one side of the first circuit board and is electrically connected to the first circuit board and the atomizing device.
[0016] The second circuit board, serving as the main controller of the multi-functional humidifier, is used to control the entire humidifier's operation. In practical use, the second circuit board, acting as the main controller, enables intelligent control of the humidifier. Users can easily adjust the humidifier's working mode via the control panel or remote control. The second circuit board can also automatically adjust the humidifier's operating status based on feedback from the indoor environment, improving the product's intelligence level and user experience.
[0017] In a preferred embodiment of this utility model, a first fan is further provided in the main body, and the first fan is disposed on one side of the atomizing device;
[0018] The main body is provided with an air outlet, and the air outlet of the first fan is oriented towards the air outlet.
[0019] The second circuit board, acting as the main controller, controls the entire humidifier's operation through electrical connections with the first circuit board and the atomizing device. Users can adjust the humidifier's operating mode—including humidification, disinfection, or a combination of both—using the control panel on the humidifier or a remote control. The second circuit board can also automatically adjust the humidifier's operating status based on feedback from indoor humidity and air quality sensors, ensuring a comfortable and healthy indoor environment.
[0020] The primary fan design ensures that the atomized liquid particles are evenly distributed into the indoor air, improving humidification and disinfection effects. The primary fan's outlet is positioned facing the air outlet, allowing the atomized liquid particles to be smoothly delivered to every corner of the room, further enhancing the humidifier's performance and user experience.
[0021] In a preferred embodiment of this invention, the main body is further provided with a voltage regulating device, which is electrically connected to the electrolysis device.
[0022] The voltage regulating device includes an regulating body, a voltage control chip is disposed inside the regulating body, and an regulating knob is disposed on the regulating body. The voltage control chip is electrically connected to the regulating knob and the electrolysis device.
[0023] In practical use, users can manually adjust the voltage control chip in the voltage regulator by adjusting the knob, thereby controlling the operating voltage of the electrolysis device. By adjusting the operating voltage, users can precisely control the intensity and speed of the electrolysis process according to different usage requirements and environmental conditions, achieving the best disinfection effect.
[0024] The voltage regulation device allows the humidifier to adapt to different water qualities and operating environments. Users can adjust the operating voltage of the electrolysis unit according to the conductivity and impurity content of the water, ensuring the stability and effectiveness of the electrolysis process. This highly adaptable design enables the humidifier to maintain good performance under different regional and water quality conditions, improving the product's versatility and market competitiveness.
[0025] In a preferred embodiment of this invention, a timer is further provided in the main body, and the timer is electrically connected to the electrolysis device.
[0026] The timer records the working time of the electrolysis device to ensure the accuracy and stability of the electrolysis process. The timer can automatically start and stop the electrolysis device according to preset time intervals to avoid electrolysis time being too long or too short, ensuring that the concentration of the disinfectant meets the requirements.
[0027] In a preferred embodiment of this invention, a concentration monitoring device is also provided on the side wall of the water tank, and the concentration monitoring device is electrically connected to the timer.
[0028] The concentration monitoring device monitors the concentration of the electrolyte in the water tank in real time and feeds the monitoring data back to the timer. The timer adjusts the electrolysis time according to the concentration changes to ensure that the concentration of the disinfectant is always kept within the optimal range. If the concentration monitoring device detects that the electrolyte concentration is too high or too low, the timer can automatically adjust the electrolysis time or remind the user to make adjustments.
[0029] The beneficial effects of this utility model are as follows:
[0030] This utility model provides a multifunctional humidifier, which includes a main body containing a water tank and an electrolysis device for electrolyzing liquids. The main body also includes an atomizing device located at the bottom or side of the water tank. The water tank stores liquid, providing a liquid source for the electrolysis and atomizing devices. The electrolysis device, located in the water tank, electrolyzes the liquid within. In practical use, users can add water to the tank, and the atomizing device atomizes the water into tiny particles. A fan then evenly distributes these atomized water particles into the indoor air, increasing indoor humidity. Users can also add a suitable amount of salt to the water tank to form a sodium chloride solution. The electrolysis device then activates, electrolyzing the sodium chloride solution. During electrolysis, chloride ions lose electrons at the anode and are oxidized into chlorine gas. The chlorine gas reacts with water to produce hypochlorous acid. The atomizing device atomizes a disinfectant solution containing hypochlorous acid into tiny particles. A fan then evenly distributes the atomized disinfectant solution into the indoor air, killing airborne microorganisms and improving indoor air quality. This humidifier not only has traditional humidification functions but also adds a disinfection function. Users can increase indoor humidity while utilizing the effective ingredients in the disinfectant solution to kill airborne microorganisms, improving indoor air quality and enriching the humidifier's functionality, thus enhancing the user experience. By making their own disinfectant solution, users can choose environmentally friendly, non-toxic, and biodegradable disinfectants, reducing environmental pollution. Furthermore, making their own disinfectant solution reduces user costs, improving the product's economic viability and sustainability. Attached Figure Description
[0031] Figure 1 This is a schematic diagram of the main body of the multifunctional humidifier provided in the embodiments of this application;
[0032] Figure 2 This is a top view of the main body of the multifunctional humidifier provided in the embodiments of this application;
[0033] Figure 3 This is a schematic diagram of the electrolysis apparatus provided in the embodiments of this application;
[0034] Figure 4 This is a top view of the electrolysis apparatus provided in the embodiments of this application;
[0035] Figure 5 This is a schematic diagram showing the connection between the voltage regulation device and the first circuit board provided in an embodiment of this application.
[0036] Figure label:
[0037] 1. Main body; 11. First fan; 12. Timer; 13. Concentration monitoring device; 2. Gas outlet; 3. Electrolysis device; 31. Electrolysis electrode; 32. Connecting bolt; 33. Protective cover; 34. First circuit board; 4. Water tank; 5. Voltage regulating device; 51. Adjustment knob; 52. Voltage control chip. Detailed Implementation
[0038] Preferred embodiments of the present invention will now be described in more detail with reference to the accompanying drawings. While preferred embodiments of the present invention are shown in the drawings, it should be understood that the present invention may be implemented in various forms and should not be limited to the embodiments set forth herein. Rather, these embodiments are provided so that the present invention will be thorough and complete, and will fully convey the scope of the present invention to those skilled in the art.
[0039] Most humidifiers on the market today are single-function designs, only meeting the basic need to increase indoor humidity and completely lacking the ability to create their own disinfectant solutions. This forces users to take additional disinfection measures when they need to disinfect indoor air, such as spraying disinfectant or using ultraviolet (UV) light. However, spraying disinfectant is not only cumbersome, but the odor of disinfectant is often pungent, and some disinfectants leave residues in the air or on surfaces. These odors and residues may irritate the human body, especially in households with elderly people, children, or those with allergies, potentially causing discomfort. Furthermore, UV light has a limited coverage area, and prolonged exposure can cause serious damage to the skin and eyes. This requires users to leave the disinfection area when using UV light, increasing inconvenience and safety risks.
[0040] Based on this, this application provides a multifunctional humidifier.
[0041] Example 1
[0042] like Figures 1-5 As shown, a multi-functional humidifier includes:
[0043] The main body 1 is provided with a water tank 4, and the water tank 4 is provided with an electrolysis device 3 for electrolyzing liquids;
[0044] The main body 1 is also equipped with an atomizing device, which is located at the bottom or side wall of the water tank 4. Specifically, the atomizing device can employ ultrasonic atomization technology, which atomizes the liquid through high-frequency vibration, making the atomized liquid particles finer and more uniform, facilitating their dispersion in the air. The atomized liquid particles are then evenly dispersed into the indoor air by a fan, thereby achieving the functions of humidification and disinfection.
[0045] The water tank 4 of this humidifier stores liquid, providing a liquid source for the electrolysis device 3 and the atomizing device. This humidifier has both humidification and disinfection functions. In actual use, users can add water to the water tank 4. The atomizing device atomizes the water into tiny particles, which are then evenly distributed into the indoor air by a fan, thereby increasing indoor humidity and achieving the humidification function. Users can also add an appropriate amount of salt to the water tank 4 to form a sodium chloride solution. The electrolysis device 3 is activated to electrolyze the sodium chloride solution. During electrolysis, chloride ions lose electrons at the anode and are oxidized into chlorine gas. The chlorine gas reacts with water to produce hypochlorous acid. The atomizing device atomizes the disinfectant containing hypochlorous acid into tiny particles, which are then evenly distributed into the indoor air by a fan, thereby killing microorganisms in the air and improving indoor air quality. This humidifier not only has traditional humidification functions but also adds a disinfection function. Users can increase indoor humidity while simultaneously using the active ingredients in disinfectants to kill airborne microorganisms, improving indoor air quality, enriching the humidifier's functionality, and enhancing the user experience. By making their own disinfectants, users can choose environmentally friendly, non-toxic, and biodegradable agents, reducing environmental pollution. Furthermore, making their own disinfectants lowers user costs, improving the product's economic viability and sustainability.
[0046] Example 2
[0047] This embodiment is an improvement on embodiment 1.
[0048] like Figures 1-5 As shown, in this embodiment, the electrolysis device 3 includes an electrolysis electrode 31, which is disposed in the water tank 4; a first circuit board 34 is disposed on the main body, and one end of the electrolysis electrode 31 penetrates the side wall of the water tank 4 and is detachably electrically connected to the first circuit board 34.
[0049] The electrolytic electrode 31 is detachably electrically connected to the first circuit board 34 via connecting bolts 32. This design makes maintenance and replacement of the electrolytic electrode 31 more convenient. Users can easily replace the electrolytic electrode 31 as needed, extending the humidifier's lifespan and reducing maintenance costs.
[0050] In a preferred embodiment of this invention, one end of the electrolysis electrode 31 is provided with a connecting bolt 32, which is detachably electrically connected to the first circuit board 34. Specifically, the electrolysis device 3 of this application is made of safe materials such as titanium electrodes, ensuring the safety and stability of the electrolysis process. Simultaneously, the atomized disinfectant particles are fine and uniform, and will not cause irritation or harm to the human body, thus improving product safety.
[0051] By connecting the connecting bolt 32 to the circuit board, the ease of electrode installation can be improved, and the stable connection of the electrolytic electrode 31 can be achieved, thereby ensuring operational stability.
[0052] Furthermore, a protective cover 33 is provided on one side of the first circuit board 34, and one end of the electrolytic electrode 31 passes through the protective cover 33 and is detachably electrically connected to the first circuit board 34; a sealing ring is provided between the electrolytic electrode 31 and the protective cover 33.
[0053] A protective cover 33 is provided on one side of the first circuit board 34, and one end of the electrolytic electrode 31 passes through the protective cover 33 and is detachably electrically connected to the first circuit board 34. The protective cover 33 can effectively prevent moisture and impurities from entering the circuit board, improving the service life and reliability of the circuit board. A sealing ring is provided between the electrolytic electrode 31 and the protective cover 33, which further enhances the sealing performance, prevents liquid leakage, and ensures the safe operation of the humidifier.
[0054] Specifically, the protective cover 33 is made of corrosion-resistant, waterproof, and insulating engineering plastic material, such as polycarbonate (PC) or polyoxymethylene (POM). This material has good mechanical strength and chemical corrosion resistance, which can effectively protect the circuit board from moisture and impurities, while ensuring the normal operation of the circuit board.
[0055] The protective cover 33 is designed to be circular or square, with the specific shape optimized according to the shape of the circuit board and the installation space. A sealing groove is provided along the edge of the protective cover 33, and a sealing ring is installed within the groove to ensure a tight seal between the protective cover 33 and the electrolytic electrode 31. Reinforcing ribs may be provided on the surface of the protective cover 33 to improve its structural strength and impact resistance.
[0056] Example 3
[0057] This embodiment is an improvement on embodiment 2.
[0058] like Figures 1-5 As shown, in this embodiment, the main body is further provided with a second circuit board, which is disposed on one side of the first circuit board 34 and is electrically connected to the first circuit board 34 and the atomizing device.
[0059] The second circuit board, serving as the main controller of the multi-functional humidifier, controls the overall operation of the humidifier. In practical use, the second circuit board, acting as the main controller, enables intelligent control of the humidifier. Users can easily adjust the humidifier's operating mode via the control panel or remote control. The second circuit board can also automatically adjust the humidifier's operating status based on feedback from the indoor environment, improving the product's intelligence level and user experience. Specifically, the models of the first circuit board 34 and the second circuit board can be selected according to specific needs. For example, the second circuit board can be a Hercules RM46L852, which offers high reliability and supports multiple interfaces, such as Ethernet and USB, contributing to the humidifier's ease of use.
[0060] Example 4
[0061] This embodiment is an improvement on embodiment 1.
[0062] like Figures 1-5 As shown, in this embodiment, the main body 1 is also provided with a first fan 11, which is disposed on one side of the atomizing device;
[0063] The main body 1 is provided with an air outlet 2, and the air outlet of the first fan 11 is arranged facing the air outlet 2.
[0064] The second circuit board, acting as the main controller, controls the entire humidifier's operation through electrical connections with the first circuit board 34 and the atomizing device. Users can adjust the humidifier's operating mode, including humidification, disinfection, or a combination of both, via the control panel or remote control located on the humidifier. The second circuit board can also automatically adjust the humidifier's operating status based on feedback from indoor humidity and air quality sensors, ensuring a comfortable and healthy indoor environment.
[0065] The first fan 11 ensures that the atomized liquid particles are evenly distributed into the indoor air, improving the humidification and disinfection effects. The air outlet of the first fan 11 is positioned facing the air outlet 2, allowing the atomized liquid particles to be smoothly blown to every corner of the room, further enhancing the humidifier's performance and user experience.
[0066] The air outlet of the first fan 11 is set to face the air outlet 2, which helps to blow the atomized water mist into the indoor environment, thereby disinfecting the indoor environment.
[0067] Example 5
[0068] This embodiment is an improvement on embodiment 1.
[0069] like Figures 1-5As shown, in this embodiment, the main body 1 is further provided with a voltage regulating device 5, which is electrically connected to the electrolysis device 3;
[0070] The voltage regulating device 5 includes an regulating body, a voltage control chip 52 is disposed inside the regulating body, and an regulating knob 51 is disposed on the regulating body. The voltage control chip 52 is electrically connected to the regulating knob 51 and the electrolysis device 3.
[0071] In practical use, users can manually adjust the voltage control chip 52 in the voltage regulating device 5 by adjusting knob 51, thereby controlling the operating voltage of the electrolysis device 3. By adjusting the operating voltage, users can precisely control the intensity and speed of the electrolysis process according to different usage requirements and environmental conditions, achieving the best disinfection effect.
[0072] The voltage regulation device 5 allows the humidifier to adapt to different water qualities and operating environments. Users can adjust the operating voltage of the electrolysis device 3 according to the conductivity and impurity content of the water to ensure the stability and effectiveness of the electrolysis process. This highly adaptable design enables the humidifier to maintain good performance under different regional and water quality conditions, improving the product's versatility and market competitiveness.
[0073] Example 6
[0074] This embodiment is an improvement on embodiment 1.
[0075] like Figures 1-5 As shown, in this embodiment, a timer 12 is also provided in the main body, and the timer 12 is electrically connected to the electrolysis device 3.
[0076] Timer 12 records the working time of electrolysis device 3 to ensure the accuracy and stability of the electrolysis process. Timer 12 can automatically start and stop electrolysis device 3 according to preset time intervals to avoid electrolysis time being too long or too short, and to ensure that the concentration of disinfectant meets the requirements.
[0077] In this embodiment, a concentration monitoring device 13 is also provided on the side wall of the water tank 4, and the concentration monitoring device 13 is electrically connected to the timer 12.
[0078] The concentration monitoring device 13 monitors the concentration of the electrolyte in the water tank 4 in real time and feeds the monitoring data back to the timer 12. The timer 12 adjusts the electrolysis time according to the concentration changes to ensure that the concentration of the disinfectant is always kept within the optimal range. If the concentration monitoring device 13 detects that the electrolyte concentration is too high or too low, the timer 12 can automatically adjust the electrolysis time or remind the user to make adjustments.
[0079] In this embodiment, the humidifier is used as follows:
[0080] Remove water tank 4 from the humidifier body, open the lid of water tank 4, and add an appropriate amount of clean water to water tank 4. The amount of water should be adjusted according to the capacity of water tank 4 and usage needs. It is generally recommended to fill water tank 4 to about 80% capacity to ensure that the humidifier can operate normally and has enough liquid for atomization and electrolysis.
[0081] Based on the amount of water in tank 4, add an appropriate amount of salt according to a certain ratio (e.g., 5-10 grams of salt per liter of water). The amount of salt added should be adjusted according to actual needs and disinfection requirements; too much or too little salt will affect the concentration and effectiveness of the disinfectant.
[0082] Use a clean stirring rod or spoon to thoroughly mix the water and salt, ensuring the salt is completely dissolved in the water to form a homogeneous sodium chloride solution. Avoid introducing impurities from the stirring tool into water tank 4 during stirring, as this could affect the purity of the electrolyte and the disinfection effect.
[0083] Reinstall the water tank 4, which has been filled with water and salt, into the humidifier body, ensuring that the water tank 4 is placed stably and that the connection between the water tank 4 and the humidifier is secure and reliable.
[0084] Select the humidifier's operating mode according to your needs, such as humidification mode, disinfection mode, or a combination of both. This can be done via the control panel on the humidifier or the remote control. Please refer to the device's instruction manual for detailed operating instructions.
[0085] Press the power switch of the humidifier to start the device. At this time, the atomizing device starts working, atomizing the water into tiny particles; at the same time, the electrolysis device 3 also starts working, electrolyzing the sodium chloride solution in the water tank 4 to generate disinfectant.
[0086] After starting the humidifier, observe its operating status to ensure that the atomizing device and electrolysis device 3 are working properly. You can determine if the equipment is operating normally by observing whether atomized particles are being emitted from the air outlet 2 and whether current is flowing through the electrolysis device 3. If any abnormalities are found, the equipment should be shut down immediately for inspection and repair.
[0087] After the humidifier is turned on, timer 12 begins recording the working time of electrolysis device 3. Users can set timer 12 via the control panel or remote control according to actual needs and disinfection requirements, preset the working interval of electrolysis device 3, etc. For example, it can be set to perform an electrolysis operation every 30 minutes, with each electrolysis session lasting 10 minutes.
[0088] The concentration monitoring device 13 monitors the concentration of the electrolyte in the water tank 4 in real time and feeds the monitoring data back to the timer 12. Users can view the real-time concentration of the electrolyte and understand the generation of disinfectant through the display screen on the humidifier.
[0089] If the concentration monitoring device 13 detects that the electrolyte concentration is too high or too low, the timer 12 will automatically adjust the electrolysis time according to a preset program to ensure that the concentration of the disinfectant is always kept within the optimal range. For example, when the concentration monitoring device 13 detects that the electrolyte concentration is too high, the timer 12 will shorten the electrolysis time; when the concentration monitoring device 13 detects that the electrolyte concentration is too low, the timer 12 will extend the electrolysis time.
[0090] Users can also manually adjust the working time or electrolysis voltage of the electrolysis device 3 according to actual needs and monitored concentration data. The working voltage of the electrolysis device 3 can be manually adjusted by the adjustment knob 51 on the voltage adjustment device 5, thereby controlling the intensity and speed of the electrolysis process and achieving the best disinfection effect.
[0091] Unless otherwise specifically stated, the relative arrangement, numerical expressions, and values of the components and steps described in these embodiments do not limit the scope of this application. It should also be understood that, for ease of description, the dimensions of the various parts shown in the drawings are not drawn to actual scale. Techniques, methods, and devices known to those skilled in the art may not be discussed in detail, but where appropriate, such techniques, methods, and devices should be considered part of the specification. In all examples shown and discussed herein, any specific values should be interpreted as merely exemplary and not as limitations. Therefore, other examples of exemplary embodiments may have different values. It should be noted that similar reference numerals and letters in the following drawings denote similar items; therefore, once an item is defined in one drawing, it need not be further discussed in subsequent drawings. In the description of this application, it should be understood that the orientation or positional relationship indicated by directional terms such as "front, back, up, down, left, right", "horizontal, vertical, horizontal" and "top, bottom" is usually based on the orientation or positional relationship shown in the accompanying drawings, and is only for the convenience of describing this application and simplifying the description. Unless otherwise stated, these directional terms 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 scope of protection of this application; the directional terms "inner" and "outer" refer to the inner and outer contours relative to the outline of each component itself.
[0092] For ease of description, spatial relative terms such as "above," "on top of," "on the upper surface of," "above," etc., are used herein to describe the spatial positional relationship of a device or feature as shown in the figures to other devices or features. It should be understood that spatial relative terms are intended to encompass different orientations in use or operation beyond the orientation of the device as described in the figures. For example, if the device in the figures were inverted, a device described as "above" or "on top of" other devices or structures would subsequently be positioned as "below" or "under" other devices or structures. Thus, the exemplary term "above" can include both "above" and "below." The device may also be positioned in other different ways (rotated 90 degrees or in other orientations), and the spatial relative descriptions used herein will be interpreted accordingly.
[0093] Furthermore, it should be noted that the use of terms such as "first" and "second" to define components is merely for the purpose of distinguishing the corresponding components. Unless otherwise stated, these terms have no special meaning and therefore should not be construed as limiting the scope of protection of this application. The above description is only a preferred embodiment of this utility model and is not intended to limit this utility model. For those skilled in the art, this utility model can have various modifications and variations. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the scope of protection of this utility model.
Claims
1. A multifunctional humidifier, characterized in that, include: The main body (1) is provided with a water tank (4) and an electrolysis device (3) for electrolyzing liquid is provided in the water tank (4); The main body (1) is also provided with an atomizing device, which is located at the bottom or side wall of the water tank (4).
2. The multifunctional humidifier according to claim 1, characterized in that: The electrolysis device (3) includes an electrolysis electrode (31) disposed in the water tank (4); a first circuit board (34) is disposed on the main body, and one end of the electrolysis electrode (31) penetrates the side wall of the water tank (4) and is detachably electrically connected to the first circuit board (34).
3. The multifunctional humidifier according to claim 2, characterized in that: One end of the electrolytic electrode (31) is provided with a connecting bolt (32), and the connecting bolt (32) is detachably electrically connected to the first circuit board (34).
4. The multifunctional humidifier according to claim 2, characterized in that: A protective cover (33) is provided on one side of the first circuit board (34), and one end of the electrolytic electrode (31) passes through the protective cover (33) and is detachably electrically connected to the first circuit board (34); a sealing ring is provided between the electrolytic electrode (31) and the protective cover (33).
5. The multifunctional humidifier according to any one of claims 2-4, characterized in that: The main body is also provided with a second circuit board, which is disposed on one side of the first circuit board (34) and is electrically connected to the first circuit board (34) and the atomizing device.
6. The multifunctional humidifier according to claim 5, characterized in that: The main body (1) is also provided with a first fan (11), which is located on one side of the atomizing device; The main body (1) is provided with an air outlet (2), and the air outlet of the first fan (11) is arranged facing the air outlet (2).
7. The multifunctional humidifier according to any one of claims 1-4, characterized in that: The main body (1) is also provided with a voltage regulating device (5), which is electrically connected to the electrolysis device (3); The voltage regulating device (5) includes an regulating body, a voltage control chip (52) is provided inside the regulating body, and an regulating knob (51) is provided on the regulating body. The voltage control chip (52) is electrically connected to the regulating knob (51) and the electrolysis device (3).
8. The multifunctional humidifier according to any one of claims 1-4, characterized in that: The main body is also equipped with a timer (12), which is electrically connected to the electrolysis device (3).
9. The multifunctional humidifier according to claim 8, characterized in that: The side wall of the water tank (4) is also provided with a concentration monitoring device (13), which is electrically connected to the timer (12).