Magnetic suspension humidifier

By employing magnetic levitation technology and combining multiple modules in the humidifier, the biological motion simulation of the suspended humidifier is achieved, solving the problem of the humidifier's dull appearance, improving the visual effect and aesthetic value, and enhancing functionality and user experience.

CN224080338UActive Publication Date: 2026-04-03GUANGZHOU PANYU POLYTECHNIC
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2023-09-14
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

Existing humidifiers have a dull design, bland visual effect, and low aesthetic value.

Method used

The device employs magnetic levitation technology, combining a suspension base and the humidifier body. By setting up an electromagnetic module and a magnetic levitation coil inside the suspension base, the humidifier body is levitated using the principle of magnetic field repulsion. The suspension base also houses a bladeless fan module, a lighting module, and a sound module, simulating biological movement. Combined with a rotating mechanism and a detachable shell design, it can achieve various postures and functions.

Benefits of technology

It improves the visual appeal and aesthetic value of humidifiers, enhances their versatility and convenience, simulates biological movement, and improves the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a magnetic suspension humidifier, which relates to the technical field of air improvement equipment, and comprises a suspension seat and a humidifier main body, an electromagnetic module is arranged in the suspension seat, a magnetic suspension coil is arranged in the humidifier main body, and the magnetic pole direction of the magnetic suspension coil is opposite to the magnetic pole direction of the electromagnetic module; a first control module and a plurality of bladeless fan modules are arranged in the suspension seat, the first control module is electrically connected with the electromagnetic module, the plurality of bladeless fan modules are distributed in an annular array along the center of the suspension seat, and the bladeless fan modules are electrically connected with the first control module; a plurality of air inlet holes are formed in the bottom face of the suspension base, air outlet holes are formed in the positions, corresponding to the bladeless fan modules, of the top face of the suspension base, and the air outlet holes are located below the humidifier body. According to the magnetic suspension humidifier, the biological motion state can be simulated, the visual effect and the ornamental value of the magnetic suspension humidifier are improved, and the defect that the shape is stiff is overcome.
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Description

Technical Field

[0001] This utility model belongs to the technical field of air improvement equipment, specifically relating to a magnetic levitation humidifier. Background Technology

[0002] A humidifier is a device that improves ambient humidity and air quality by atomizing water into a mist. Existing indoor humidifiers primarily utilize the high-frequency oscillation of an ultrasonic atomizer and the high-frequency resonance of an atomizing plate to break down liquid water molecules into a mist. This mist naturally disperses into the indoor air, regulating humidity. During atomization, a large number of negative ions are released, which react electrostatically with airborne smoke and dust, causing them to settle. Simultaneously, it effectively removes harmful substances such as formaldehyde, carbon monoxide, and bacteria, purifying the air and reducing the occurrence of diseases.

[0003] Magnetic levitation technology refers to the technology of using magnetic levitation force to make an object float in a frictionless and contactless equilibrium state. The utility model patent with patent number 201820426258.1 discloses a magnetic levitation aromatherapy humidifier, which combines magnetic levitation technology into the humidifier, making the humidifier more aesthetically pleasing and technologically advanced.

[0004] However, it still suffers from drawbacks such as a dull design, bland visual effect, and low aesthetic value. To address these shortcomings, it is necessary to research and develop a magnetic levitation humidifier that can simulate biological movement, thereby improving the visual effect and aesthetic value of the humidifier. Summary of the Invention

[0005] The purpose of this invention is to provide a magnetic levitation humidifier that can simulate the movement of living organisms, thereby improving the visual effect and aesthetic value of the humidifier and overcoming the shortcomings of a rigid design.

[0006] The following technical solutions are used to achieve the above objectives.

[0007] This utility model provides a magnetic levitation humidifier, including a suspension base and a humidifier body. An electromagnetic module is provided inside the suspension base, and a magnetic levitation coil is provided inside the humidifier body. The magnetic pole direction of the magnetic levitation coil is opposite to the magnetic pole direction of the electromagnetic module.

[0008] The suspension seat is equipped with a first control module and multiple bladeless fan modules. The first control module is electrically connected to the electromagnetic module. The multiple bladeless fan modules are arranged in a ring array along the center of the suspension seat, and the bladeless fan modules are electrically connected to the first control module.

[0009] Multiple air inlets are provided on the bottom surface of the suspension base, and air outlets are provided on the top surface of the suspension base corresponding to the position of each bladeless fan module. The air outlets are located below the humidifier body.

[0010] In some embodiments, a lighting module is also provided inside the suspension seat. The lighting module is electrically connected to the first control module. Multiple light-transmitting holes are provided on the top surface of the suspension seat and at least one side surface of the suspension seat. The light-transmitting holes on the top surface of the suspension seat are at least partially facing the humidifier body.

[0011] By installing a lighting module inside the suspension base and controlling its operation using a first control module, the lighting module illuminates the suspension base so that light is transmitted through the light-transmitting holes on the top surface and at least one side of the suspension base. This light is then reflected onto the humidifier body, walls, ceiling, or floor, creating a visual effect of overlapping mist and light, effectively enhancing the visual appeal and aesthetic value of the magnetic levitation humidifier.

[0012] In some embodiments, an audio module and a charging module are also provided inside the suspension seat. The audio module and the charging module are both electrically connected to the first control module. Multiple speaker slots are provided on the side of the suspension seat near the audio module, and multiple heat dissipation slots are provided on at least the side with speaker slots. The charging port on the charging module passes through the side of the suspension seat and communicates with the outside of the suspension seat.

[0013] By installing an audio module inside the suspension base, and using a first control module to control the audio module to play music, news, ambient sounds, biomimetic sounds, etc., which are emitted through the sound channel on the suspension base, the versatility of the magnetic levitation humidifier's functions is improved. A charging module is installed inside the suspension base, with the charging socket of the charging module passing through the suspension base, so that the charging module can be connected to a power supply to power the suspension base. Heat dissipation slots are opened on the suspension base to dissipate the heat generated inside the suspension base during operation, preventing the suspension base from being damaged due to excessive heat.

[0014] In some embodiments, a rotating base is provided at the bottom end of the suspension seat, and a support base is provided at the bottom end of the rotating base. The rotating base and the support base are rotatably connected. An installation groove is provided on the suspension seat, and the electromagnetic module, the first control module, the lighting module, the audio module, and the charging module are provided in the installation groove. A removable cover plate is provided at the top of the suspension seat, and the light-transmitting hole and the aromatherapy box are provided on the cover plate. A display module is provided on the side of the suspension seat, and the display module is electrically connected to the first control module.

[0015] By setting a rotating base at the bottom of the suspension base, and a support base at the bottom of the rotating base, the rotating base and the support base are rotatably connected. During use, the rotating mechanism inside the rotating base drives the rotating base and the suspension base to rotate, which in turn drives the humidifier body to rotate, adjusting the position of the mist outlet of the humidifier body to humidify different areas of the room. An aromatherapy box is set on the cover of the suspension base, giving the magnetic levitation humidifier an aromatherapy function, which can improve the smell during humidification. A display module is set on the suspension base to display the battery level of the suspension base, whether the suspension base is on or off, the operating status or water shortage status of the humidifier body, and the working parameter settings of the suspension base and the humidifier body.

[0016] In some embodiments, the humidifier body includes a first housing and a second housing, which are detachably connected. A cavity is formed between the first housing and the second housing. A mist outlet is provided on the top surface of the first housing to conduct through the cavity. A water supply component, an air supply component, an atomizing component, a water balance component, and a second control module are provided in the cavity. The second control module is electrically connected to the water supply component, the air supply component, the atomizing component, and the water balance component, and is communicatively connected to the first control module.

[0017] By configuring the humidifier body as a detachable first and second housing, the water supply component, air supply component, atomizing component, water balance component, and second control module are installed in the cavity between the first and second housings. The second control module is connected to the first control module for communication, and the operating status information of the water supply component, air supply component, atomizing component, and water balance component is transmitted to the first control module and displayed through the display module, thereby improving user convenience and user experience.

[0018] In some embodiments, the water supply assembly includes a water tank disposed within the accommodating cavity, and a water pump, a heater, a water level sensor, a circulation pump, and an ozone generator disposed within the water tank. The water pump, heater, water level sensor, circulation pump, and ozone generator are all electrically connected to the second control module, and the water pump is connected to the atomizing assembly via a water pipe.

[0019] An air inlet chamber is provided within the accommodating cavity. The air supply assembly includes an air pump, a temperature sensor, a humidity sensor, an oxygen content sensor, and an ozone generator, all located within the air inlet chamber. The air pump, humidity sensor, oxygen content sensor, and ozone generator are all electrically connected to the second control module. The air pump is connected to the atomizing assembly and the air inlet on the first or second housing via an air pipe.

[0020] The water supply unit's water tank is pumped through a water pipe to the atomizing component for atomization. A heater heats the water in the tank to meet the need for ambient temperature increases. A water level sensor detects the water level and transmits the information to the second control module, which in turn transmits it to the first control module. The first control module controls the display module to show a water shortage warning and / or controls the audio module to issue a water shortage warning. A circulating pump is intermittently activated to ensure the oxygen content in the water tank meets the standard. An ozone generator is used to kill bacteria and viruses in the water and decompose residual organic matter.

[0021] An air intake chamber is set up within the accommodating cavity. Inside the air intake chamber, an air pump, temperature sensor, humidity sensor, oxygen content sensor, and ozone generator are installed. The humidity sensor detects the humidity of the air entering the air intake chamber in real time and transmits this information to the second control module. The second control module determines the required spray intensity and speed based on different air environments to ensure rapid adjustment of the humidity in the user's local area. The oxygen content sensor can monitor the oxygen content in the air in real time. The ozone generator located in the air intake chamber is used to disinfect and sterilize the air entering the air intake chamber, killing bacteria and viruses in the air and decomposing residual organic matter.

[0022] In some embodiments, an atomizing chamber is provided within the accommodating cavity, and the atomizing assembly includes an ultrasonic atomizer disposed within the atomizing chamber. The ultrasonic atomizer is connected to a mist outlet on the first housing via a pipe, and the mist outlet is located at any end of the first housing away from its centerline.

[0023] By setting an aerosol chamber inside the accommodating cavity, and installing an ultrasonic atomizer inside the aerosol chamber, the ultrasonic atomizer is connected to the mist outlet through a pipe. A water supply component supplies water to the ultrasonic atomizer inside the aerosol chamber, and an air supply component supplies air to the ultrasonic atomizer inside the aerosol chamber, so that the ultrasonic atomizer can atomize water into water mist and deliver it to the indoor environment through the mist outlet to regulate the humidity of the ambient air.

[0024] In some embodiments, the water balance assembly includes a load-bearing plate, a partition, a first spring, and a second spring. The partition is disposed between the water tank and the magnetic levitation coil. The load-bearing plate is disposed between the water tank and the partition. The bottom end of the load-bearing plate is provided with two opposing first springs, the other end of which is connected to the partition. The top end of the load-bearing plate is provided with two opposing second springs, the other end of which is connected to the inner wall of the accommodating cavity. The water tank is disposed on the load-bearing plate.

[0025] The water tank and the magnetic levitation coil are separated by a partition in the water balance component, preventing water from falling into the magnetic levitation coil and causing damage. When the water level in the tank drops, the reduced weight of the tank causes the second and first springs to push the tank upwards. The decrease in water volume also reduces the weight of the humidifier body. Under the repulsive force between the electromagnetic module and the magnetic levitation coil, the humidifier body floats. Combined with the water level sensor in the tank, the water level can be roughly determined. The display module and / or audio module provide timely reminders when the water tank is low.

[0026] In some embodiments, a wireless charging receiving module is provided in the accommodating cavity, and a wireless charging transmitting module is provided in the suspension seat. The wireless charging receiving module is used to receive the magnetic field generated by the wireless charging transmitting module and generate an induced current through electromagnetic induction.

[0027] By setting a wireless charging receiving module in the accommodating cavity and a wireless charging transmitting module in the suspension base, the wireless charging receiving module receives the magnetic field generated by the wireless charging transmitting module and generates an induced current through electromagnetic induction to power the electrical components inside the humidifier body. This avoids the situation where using a wired structure reduces the aesthetic design of the magnetic levitation humidifier.

[0028] In some embodiments, an ambient light sensor, an ambient temperature sensor, and a millimeter-wave radar are also provided in the accommodating cavity, and the ambient light sensor, ambient temperature sensor, and millimeter-wave radar are all electrically connected to the second control module.

[0029] By incorporating an ambient light sensor to detect changes in indoor ambient light, the system transmits this information to a second control module, which in turn relays it to a first control module. The first control module then controls the lighting module to adjust the lighting brightness to an appropriate level. Similarly, an ambient temperature sensor detects changes in indoor temperature and transmits this information to the second control module. When the temperature is too low, the second control module activates the heater in the water tank to heat the water, resulting in a mist that regulates the ambient temperature. Furthermore, a millimeter-wave radar detects environmental information about the user's local area, including the relative position of the user and the humidifier, and the location of obstacles around the humidifier. This information is fed back to the second control module, which determines the area requiring humidification and drives the humidifier to operate in the corresponding mode, including the required spray intensity and speed. If necessary, the second control module relays this information to the first control module, which then determines whether to activate the bladeless fan module within the suspension base, the operating mode of the bladeless fan module, and drives the rotating base to face the user. This ensures not only precise humidity adjustment but also the ability to match the operating strategy best suited to the user's needs.

[0030] This utility model provides a magnetic levitation humidifier. An electromagnetic module is installed inside the levitation base, and a magnetic levitation coil is installed inside the humidifier body. The magnetic poles of the magnetic levitation coil are opposite to those of the electromagnetic module. The humidifier body levitates above the levitation base using the principle of magnetic repulsion. Furthermore, a first control module and multiple bladeless fan modules are installed inside the levitation base. These bladeless fan modules are arranged in a ring array along the center of the levitation base, and air outlets are located on the top surface of the levitation base corresponding to the positions of the bladeless fan modules. These air outlets are located below the humidifier body. In actual use, the humidifier body is set to... The humidifier body is designed to resemble the shape of an animal or plant in proportion. Based on the animal or plant image, the first control module controls at least one bladeless fan module to blow air onto the humidifier body. This allows the humidifier body to simulate the movement of the animal or plant under the action of the wind. For example, if the humidifier body is designed to resemble an orca, the bladeless fan module can create multi-level disturbances to the humidifier body with wind of different sizes and directions. This allows the humidifier body in a suspended state to achieve various postures such as back-and-forth undulations and left-and-right swaying as an orca swims. This effectively simulates the movement of a living organism, improves the visual effect and ornamental value of the magnetic levitation humidifier, and overcomes the shortcomings of a rigid shape. Attached Figure Description

[0031] Figure 1 This is a schematic diagram of the present invention;

[0032] Figure 2 This is a top view of the suspension seat of this utility model;

[0033] Figure 3 This is a top view of the suspension seat removal cover of this utility model;

[0034] Figure 4 This is a bottom view of the suspension seat of this utility model;

[0035] Figure 5 This is a schematic diagram of the display module of this utility model;

[0036] Figure 6 This is a schematic diagram of the side light-transmitting hole of this utility model;

[0037] Figure 7 This is a schematic diagram of the speaker channel of this utility model;

[0038] Figure 8 This is a cross-sectional schematic diagram of the humidifier body of this utility model.

[0039] Explanation of reference numerals in the attached figures:

[0040] 10. Humidifier body; 101. First housing; 102. Second housing; 103. Receptacle; 104. Water tank; 105. Water pump; 106. Atomizing assembly; 107. Air supply assembly; 108. Mist outlet; 109. Water balance assembly; 1091. Partition; 1092. Load-bearing plate; 1093. First spring; 1094. Second spring; 110. Second control module; 111. Magnetic levitation coil; 112. Wireless charging power receiving module;

[0041] 20. Suspension base; 201. Mounting slot; 202. Cover plate; 203. First control module; 204. Electromagnetic module; 205. Lighting module; 206. Audio module; 207. Charging module; 2071. Charging socket; 208. Bladeless fan module; 209. Air inlet; 210. Air outlet; 211. Light transmission hole; 212. Aromatherapy box; 213. Heat dissipation slot; 214. Speaker slot; 215. Display module; 2151. First indicator light; 2152. Second indicator light;

[0042] 30. Rotary seat;

[0043] 40. Support base. Detailed Implementation

[0044] To facilitate understanding of this utility model, the specific embodiments of this utility model will be described in more detail below with reference to the accompanying drawings.

[0045] Unless otherwise specified or defined, the terms "first," "second," etc., used in this document are for distinguishing names only and do not represent a specific number or order.

[0046] Unless otherwise stated or defined, the term “and / or” as used herein includes any and all combinations of one or more of the associated listed items.

[0047] It should be noted that in this article, "fixed to" or "connected to" can mean directly fixed to or connected to a component, or indirectly fixed to or connected to a component.

[0048] refer to Figure 1As shown, the magnetic levitation humidifier provided in this embodiment includes a humidifier body 10 and a suspension base 20. The bottom of the suspension base 20 is provided with a rotating base 30, and the bottom of the rotating base 30 is provided with a support base 40. The rotating base 30 and the support base 40 are rotatably connected. An electromagnetic module 204 is provided inside the suspension base 20, and a magnetic levitation coil 111 is provided inside the humidifier body 10. The magnetic pole direction of the magnetic levitation coil 111 is set to be opposite to the magnetic pole direction of the electromagnetic module 204, so that the humidifier body 10 is suspended above the suspension base 20 under the action of the magnetic levitation coil 111 and the electromagnetic module 204. The relative position between the humidifier body 10 and the suspension base 20 can be kept unchanged by controlling the magnetic force of the magnetic levitation coil 111.

[0049] Specifically, the rotating seat 30 is provided with a rotating mechanism inside, which is connected to the suspension seat 20 and is used to drive the suspension seat 20 to rotate during the operation of the rotating mechanism. The rotating structure described in this embodiment adopts a rotating mechanism in the prior art, such as using a motor to drive the gear to rotate and drive the suspension seat 20 to rotate, or using a motor to drive the screw to rotate and the screw to drive the suspension seat 20 to rotate, etc., as long as it can realize the rotation of the suspension seat 20 under the drive of the rotating mechanism.

[0050] Combination Figure 2 and Figure 3 An installation slot 201 is provided inside the suspension seat 20. The top of the installation slot 201 is closed by a removable cover plate 202. The electromagnetic module 204 is provided inside the installation slot 201. The electromagnetic module 204 consists of an electromagnet, a control component, and connecting circuitry. There are several electromagnets, including electromagnets arranged in a circle to form a circular magnetic field and electromagnets used to control the stability of the circular magnetic field. The control component is an existing control component equipped with a Hall sensor for monitoring changes in the magnetic field.

[0051] Specifically, when powered on, the electromagnetic module 204 can suspend the humidifier body 10 above the suspension seat 20, and in conjunction with the rotating mechanism, the humidifier body 10 rotates, thereby achieving a good visual effect and increasing the technological feel of the humidifier; and if the humidifier body 10 is subjected to a large disturbance and deviates far from the balance position, the control component generates a compensation current and magnetic force in the electromagnet, so that the humidifier body 10 returns to the balance position.

[0052] The mounting slot 201 is also provided with a first control module 203, multiple bladeless fan modules 208, a lighting module 205, an audio module 206 and a charging module 207. The first control module 203 is electrically connected to the electromagnetic module 204, the bladeless fan module 208, the lighting module 205, the audio module 206 and the charging module 207 respectively.

[0053] Specifically, the electromagnetic module 204 is located at the center of the suspension seat 20, the first control module 203 is located below the electromagnetic module 204, the lighting module 205 is a ring-shaped LED light, and the electromagnetic module 204 and the first control module 203 are enclosed within the lighting module 205. The bladeless fan modules 208 are arranged in a ring array around the center of the suspension seat 20. In this embodiment, four bladeless fan modules 208 are preferably provided, and the bladeless fan modules 208 enclose the first control module 203, the lighting module 205 and the electromagnetic module 204. The audio module 206 and the charging module 207 are located outside the bladeless fan modules 208.

[0054] In practical use, combined with Figure 6 and Figure 7 The charging module 207 connects to an external power source via its charging socket 2071 through the suspension base 20. This power supply provides power to the first control module 203, multiple bladeless fan modules 208, lighting module 205, audio module 206, and electromagnetic module 204 inside the suspension base 20. Alternatively, a built-in battery can be installed inside the mounting slot 201, and the charging module 207 can charge the built-in battery, which in turn powers the first control module 203, multiple bladeless fan modules 208, lighting module 205, audio module 206, and electromagnetic module 204. The lighting module 205 uses four colors of LEDs: white, red, green, and blue, allowing for various lighting effects and enhancing visual appeal. It can also automatically adjust the brightness of the LEDs and display screen by sensing the ambient light through an ambient light sensor embedded in the surface of the humidifier body 10, maximizing the working time of the charging module 207, reducing charging frequency, and achieving energy saving.

[0055] Multiple light-transmitting holes 211 are provided on the cover plate 202 at the position corresponding to the bladeless fan module 208, and on at least one side of the suspension seat 20. The light-transmitting holes 211 on the cover plate 202 are divided into twelve areas, each corresponding to one of the twelve constellations. The light-transmitting holes 211 located in the same area are arranged to form a layout opposite to the constellations, and arc-shaped light-transmitting holes 211 in the shape of constellation symbols are provided.

[0056] The light-transmitting holes 211 on one side of the suspension seat 20 are arranged in multiple rows and columns of evenly spaced orca-shaped holes. On the other side, there are multiple speaker slots 214 for transmitting the sound of the audio module 206 from inside the suspension seat 20 and multiple heat dissipation slots 213 for dissipating the heat inside the suspension seat 20. The speaker slots 214 and heat dissipation slots 213 also serve the function of the light-transmitting holes 211. This allows the magnetic levitation humidifier to work with the lighting module 205, the humidifier body 10, and multiple different light-transmitting holes 211 to create a spatial landscape where stars and the sea coexist, forming a romantic scene where constellations fill the room ceiling and orcas of various sizes swim together and are reflected on the side walls of the room.

[0057] Combination Figure 4 To ensure the bladeless fan module 208 operates normally, it is understandable that multiple air inlets 209 are provided at the bottom of the suspension seat 20, and multiple air outlets 210 corresponding to the bladeless fan module 208 are provided on the cover plate 202. Furthermore, the bladeless fan module 208 described in this embodiment can be an existing bladeless fan, and the first control module 203 described in this embodiment uses an existing microcontroller.

[0058] In actual use, the first control module 203 controls the operation of the bladeless fan module 208. The number of bladeless fan modules 208 that are activated is selected according to the posture required by the humidifier body 10, which is 1 / 2, 1 / 4 and 3 / 4. The wind force creates multi-level disturbances on the humidifier body 10 with wind force of different magnitude and direction, so that the humidifier body 10 in the suspended state can realize various postures such as back and forth undulation and left and right swaying when the orca swims.

[0059] Combination Figure 5 As shown, a display module 215 electrically connected to the first control module 203 is provided on the side of the suspension base 20. The display module 215 is a display screen and a first indicator light 2151 and a second indicator light 2152 located next to the display screen. The first indicator light 2151 is used to display the operating status or water shortage status of the magnetic levitation humidifier, and the second indicator light 2152 is used to display the WIFI connection status of the magnetic levitation humidifier. When in use, the display screen can be used to turn the humidifier on / off, reset, view working status information, and set working parameters.

[0060] Reference here Figure 2 Aroma boxes 212 are embedded in the four corners of the cover plate 202 to diffuse aroma into the indoor environment, thereby improving the indoor odor while humidifying the indoor environment.

[0061] refer to Figure 1 and Figure 8As shown, the humidifier body 10 includes a first housing 101 and a second housing 102. The first housing 101 and the second housing 102 are detachably connected, for example, by adopting a splicing structure or a bolted connection structure, as long as the detachable connection of the first housing 101 and the second housing 102 can be achieved.

[0062] A receiving cavity 103 is formed between the first housing 101 and the second housing 102. A water supply component, an air supply component 107, an atomizing component 106, a water balance component 109, and a second control module 110 are provided in the receiving cavity 103. The second control module 110 is electrically connected to the water supply component, the air supply component 107, the atomizing component 106, and the water balance component 109, respectively. The second control module 110 is also communicatively connected to the first control module 203. In this embodiment, the second control module 110 is a conventional microcontroller.

[0063] The water supply assembly includes a water tank 104 disposed in the accommodating cavity 103, and a water pump 105, a heater, a water level sensor, a circulation pump, and an ozone generator disposed in the water tank 104. The water pump 105, the heater, the water level sensor, the circulation pump, and the ozone generator are all electrically connected to the second control module 110. The water pump 105 is connected to the atomizing assembly 106 through a water pipe.

[0064] An air inlet chamber is provided in the accommodating cavity 103. The air supply assembly 107 includes an air pump, a humidity sensor, an oxygen content sensor, and an ozone generator disposed in the air inlet chamber. The air pump, temperature sensor, humidity sensor, oxygen content sensor, and ozone generator are all electrically connected to the second control module 110. The air pump is connected to the atomizing assembly 106 and the air inlet on the first housing 101 or the second housing 102 via an air pipe.

[0065] An atomizing chamber is provided in the accommodating cavity 103. The atomizing component 106 includes an ultrasonic atomizer disposed in the atomizing chamber. The ultrasonic atomizer is connected to the mist outlet 108 on the first housing 101 through a pipe. The mist outlet 108 is disposed at any end of the first housing 101 away from its center line.

[0066] The ultrasonic atomizer described in this embodiment is an existing ultrasonic atomizer. The ultrasonic atomizer uses high-frequency electronic oscillation and high-frequency resonance of ceramic atomizing plates to break down the liquid water molecule structure and produce a naturally drifting water mist. At the same time, it releases a large number of negative ions during the atomization process and can effectively remove harmful substances such as formaldehyde, carbon monoxide, and bacteria.

[0067] The water balance component 109 includes a load-bearing plate 1092, a partition 1091, a first spring 1093, and a second spring 1094. The partition 1091 is disposed between the water tank 104 and the magnetic levitation coil 111. The load-bearing plate 1092 is disposed between the water tank 104 and the partition 1091. The bottom end of the load-bearing plate 1092 is provided with two opposing first springs 1093, the other end of which is connected to the partition 1091. The top end of the load-bearing plate 1092 is provided with two opposing second springs 1094, the other end of which is connected to the inner wall of the accommodating cavity 103. The water tank 104 is disposed on the load-bearing plate 1092.

[0068] A wireless charging receiving module 112 is also provided in the accommodating cavity 103, and a wireless charging transmitting module is provided in the suspension seat 20. The wireless charging receiving module 112 is used to receive the magnetic field generated by the wireless charging transmitting module and generate an induced current through electromagnetic induction to power the electrical components inside the humidifier body 10, thus avoiding the situation where the use of a wired structure reduces the aesthetic design of the magnetic levitation humidifier.

[0069] An ambient light sensor is also provided in the accommodating cavity 103. The ambient light sensor is electrically connected to the second control module 110. By setting the ambient light sensor, changes in indoor ambient light are detected and transmitted to the second control module 110. The second control module 110 transmits the data to the first control module 203. The first control module 203 controls the lighting module 205 to adjust the appropriate lighting brightness.

[0070] An ambient temperature sensor is also provided in the accommodating cavity 103. The ambient temperature sensor is electrically connected to the second control module 110. By setting the ambient temperature sensor, the indoor temperature changes are detected and transmitted to the second control module 110. When the temperature is too low, the second control module 110 controls the heater in the water tank 104 to heat the water, so that the atomized water mist can regulate the ambient temperature and ensure that users enjoy a warm and skin-friendly experience in the cold winter.

[0071] A millimeter-wave radar is also provided in the accommodating cavity 103. The millimeter-wave radar is electrically connected to the second control module 110. By setting up the millimeter-wave radar, the environmental information of the local area where the user is located is detected, including the relative position of the user and the humidifier, and the position of obstacles around the humidifier. The information is fed back to the second control module 110. The second control module 110 determines the area range that the humidifier needs to adjust and drives the humidifier body 10 to operate in the corresponding mode, including the required spray intensity and speed. If necessary, the second control module 110 feeds back to the first control module 203. The first control module 203 determines whether to activate the bladeless fan module 208 in the suspension seat 20, the operating mode of the bladeless fan module 208, etc., and drives the rotating seat 30 to turn to the user's position. This not only ensures precise humidity adjustment area, but also matches the operating strategy most beneficial to the user's needs.

[0072] This embodiment provides a magnetic levitation humidifier. An electromagnetic module 204 is installed inside the suspension base 20, and a magnetic levitation coil 111 is installed inside the humidifier body 10. The magnetic poles of the magnetic coil 111 are opposite to those of the electromagnetic module 204. The humidifier body 10 levitates above the suspension base 20 due to the repulsion of their magnetic fields. Furthermore, a first control module 203 and multiple bladeless fan modules 208 are installed inside the suspension base 20. The bladeless fan modules 208 are arranged in a ring array along the center of the suspension base 20, and air outlets 210 are provided on the top surface of the suspension base 20 at positions corresponding to the bladeless fan modules 208. The air outlet 210 is located below the humidifier body 10. In actual use, the humidifier body 10 is designed to resemble an animal or plant in scale. Based on the chosen animal or plant image, the first control module 203 controls at least one bladeless fan module 208 to blow air onto the humidifier body 10. This allows the humidifier body 10 to simulate the movement of an animal or plant under the influence of the wind. For example, if the humidifier body 10 is designed to resemble an orca, the bladeless fan module 208 can create multi-level disturbances to the humidifier body 10 with varying wind speeds and directions. This allows the suspended humidifier body 10 to mimic the back-and-forth undulations and left-and-right swaying movements of an orca. This effectively simulates biological movement, enhances the visual appeal and aesthetic value of the magnetic levitation humidifier, and overcomes the shortcomings of a rigid design.

[0073] The above embodiments are not an exhaustive list based on the present invention, and there may be other embodiments not listed. Any substitutions and improvements made without departing from the concept of the present invention are within the protection scope of the present invention.

Claims

1. A magnetic levitation humidifier, characterized by, The application relates to a magnetic levitation humidifier, which comprises a levitation base and a humidifier body, wherein an electromagnetic module is arranged in the levitation base, and a magnetic levitation coil is arranged in the humidifier body, the magnetic pole direction of the magnetic levitation coil being opposite to that of the electromagnetic module. A first control module and a plurality of bladeless fan modules are arranged in the levitation base, the first control module being electrically connected with the electromagnetic module, the bladeless fan modules being arranged in a ring array along the center of the levitation base, and the bladeless fan modules being electrically connected with the first control module. A plurality of air inlet holes are arranged on the bottom surface of the levitation base, and air outlet holes are arranged on the top surface of the levitation base and correspond to the positions of the bladeless fan modules, the air outlet holes being located below the humidifier body.

2. The magnetic levitation humidifier as claimed in claim 1, wherein, An illumination module is further arranged in the levitation base, the illumination module being electrically connected with the first control module, a plurality of light transmission holes are arranged on the top surface of the levitation base and at least one side surface of the levitation base, and the light transmission holes arranged on the top surface of the levitation base at least partially face the humidifier body.

3. The magnetic levitation humidifier of claim 2, wherein, An audio module and a charging module are further arranged in the levitation base, the audio module and the charging module being electrically connected with the first control module, a plurality of loudspeaker slots are arranged on the side surface of the levitation base close to the audio module, a plurality of heat dissipation slots are arranged on at least the side surface provided with the loudspeaker slots, and a charging jack on the charging module is in communication with the outside of the levitation base through the side surface of the levitation base.

4. The magnetic levitation humidifier of claim 3, wherein, A rotating base is arranged at the bottom end of the levitation base, a supporting base is arranged at the bottom end of the rotating base, the rotating base is rotatably connected with the supporting base, an installation groove is arranged on the levitation base, the electromagnetic module, the first control module, the illumination module, the audio module and the charging module are arranged in the installation groove, a detachable cover plate is arranged at the top end of the levitation base, the light transmission holes and a fragrance box are arranged on the cover plate, and a display module is arranged on the side surface of the levitation base, the display module being electrically connected with the first control module.

5. The magnetic levitation humidifier according to any one of claims 1 to 4, wherein The humidifier body comprises a first shell and a second shell, the first shell and the second shell being detachably connected, a containing cavity is formed between the first shell and the second shell, an air outlet is arranged on the top surface of the first shell and leads to the containing cavity, a water supply assembly, an air supply assembly, an atomization assembly, a water quantity balancing assembly and a second control module are arranged in the containing cavity, the second control module is electrically connected with the water supply assembly, the air supply assembly, the atomization assembly and the water quantity balancing assembly respectively, and the second control module is in communication connection with the first control module.

6. The magnetic levitation humidifier of claim 5, wherein, The water supply assembly comprises a water tank arranged in the containing cavity, and a water pump, a heater, a water level sensor, a circulating pump and an ozone generator arranged in the water tank, the water pump, the heater, the water level sensor, the circulating pump and the ozone generator are electrically connected with the second control module, and the water pump is connected with the atomization assembly through a water pipe. An air inlet cavity is arranged in the accommodating cavity, the air supply assembly comprises an air pump, a humidity sensor, an oxygen content sensor and an ozone generator arranged in the air inlet cavity, the air pump, the temperature sensor, the humidity sensor, the oxygen content sensor and the ozone generator are electrically connected with the second control module, and the air pump is connected with the atomization assembly through an air pipe and communicates with the air inlets on the first shell or the second shell.

7. The magnetic levitation humidifier of claim 6, wherein, An aerosol cavity is arranged in the accommodating cavity, the atomization assembly comprises an ultrasonic atomizer arranged in the aerosol cavity, the ultrasonic atomizer is connected with the mist outlet on the first shell through a pipeline, and the mist outlet is arranged on any end of the first shell away from the center line.

8. The magnetic levitation humidifier of claim 7, wherein, The water amount balance assembly comprises a bearing plate, a partition plate, a first spring and a second spring, the partition plate is arranged between the water tank and the magnetic suspension coil, the bearing plate is arranged between the water tank and the partition plate, two first springs in opposite arrangement are arranged at the bottom end of the bearing plate, the other ends of the first springs are connected with the partition plate, two second springs in opposite arrangement are arranged at the top end of the bearing plate, the other ends of the second springs are connected with the inner wall of the accommodating cavity, and the water tank is arranged on the bearing plate.

9. The magnetic levitation humidifier as claimed in claim 5, wherein, A wireless charging receiving module is further arranged in the accommodating cavity, a wireless charging transmitting module is arranged in the suspension seat, the wireless charging receiving module is used to receive the magnetic field generated by the wireless charging transmitting module and generate induced current through electromagnetic induction.

10. The magnetic levitation humidifier as claimed in claim 5, wherein, An ambient light sensor, an ambient temperature sensor and a millimeter wave radar are further arranged in the accommodating cavity, and the ambient light sensor, the ambient temperature sensor and the millimeter wave radar are electrically connected with the second control module.

Citation Information

Patent Citations

  • Magnetic suspension fragrance humidifier

    CN208296183U