Module combined type multifunctional summer heat relieving aromatherapy atomizer
By designing a modular, multi-functional cooling and aromatherapy atomizer, the problem of traditional electrical appliances having multiple uses and functions is solved. It achieves multi-functional integration, reduces costs and space requirements, improves flexibility and user experience, and supports functional expansion.
Patent Information
- Application Number
- CN202520085678.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-15
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2035-01-15
AI Technical Summary
Traditional electrical appliances require multiple devices to meet various needs, resulting in high costs, large footprints, and inconvenience in use.
The design is a modular, multi-functional aromatherapy atomizer for cooling down in the summer, consisting of an air supply module, an atomization module, and a guide module. Each module can be freely assembled through a unified interface, enabling multiple uses in one device. An aromatherapy module can be added to expand the functionality, and the airflow and atomization can be adjusted via a control circuit board.
It achieves multi-functional integration, reduces equipment costs and footprint, improves usage flexibility and user experience, and supports functional expansion and upgrades.
Smart Images

Figure CN223775154U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a module combined multifunctional summer cooling aromatherapy atomizer more specifically, it relates to a set of freely assembled module, the set of module can be used independently as summer cooling fan, blowing type aromatherapy machine, atomizer, aromatherapy type atomizer after assembling, can freely select and purchase, freely combined use according to the user needs, satisfy multiple function demand. BACKGROUND
[0002] People usually need to use fan and other summer cooling tools in summer; need to use aromatherapy tools to add fragrance or medicine to air in the required scene to pursue the efficacy of aromatherapy, mosquito repellent, disinfection or physiotherapy; in the environment of using air conditioner or heating, or in dry season, need to humidify air to adjust air humidity. The above is independent demand, or multiple demand coexist. For the above demand, the traditional technology provides corresponding electric appliances such as electric fan, aromatherapy machine and humidifier, and people can purchase different electric appliances according to different needs.
[0003] Obviously, people need to prepare different electric appliances for different needs, and in the case of multiple needs coexisting, multiple electric appliances need to be used at the same time. Whether from cost investment, land storage, use rate or use convenience, there is a certain degree of limitation. SUMMARY
[0004] The utility model provides a module combined multifunctional summer cooling aromatherapy atomizer for the limitation and market demand of traditional technology in real life to solve the prior art problem.
[0005] According to actual needs, one or more embodiments of the specification provide a module combined multifunctional summer cooling aromatherapy atomizer, which solves the limitations and defects of the current technology listed in the background art and provides a practical solution. The technical scheme of the utility model is as follows:
[0006] The utility model provides a module combined multifunctional summer cooling aromatherapy atomizer, which includes a user freely combined and assembled air supply module, an atomization module and a guide module.
[0007] The air supply module is an air supply device that can work independently and includes: an air cavity for restricting airflow direction, a motor fixed on the air cavity, a fan wheel fixed on the output shaft of the motor, a fixed seat arranged outside the air cavity, which enables the air supply module to supply air horizontally and vertically, an air supply interface fixed on the air outlet of the air cavity, a control circuit board fixed inside the air cavity, and a power supply terminal fixed on the air cavity and electrically connected to the control circuit board.
[0008] The atomization module is an atomization device grafted to the air supply module, comprising: an atomization shell, an air inlet interface fixed to the lower end of the atomization shell, an air duct fixed to the inside of the atomization shell, a power receiving terminal fixed to the lower part of the atomization shell, a container fixed to the inside of the atomization shell, an electric atomizer fixed to the bottom of the container and electrically connected to the power receiving terminal, and an air outlet interface fixed to the upper end of the atomization shell; the vertical wall of the container is lower than the vertical wall of the air duct.
[0009] The guiding module is a device covering the upper end of the atomization module and restraining the air mist of the atomization module, comprising: a guiding shell, a guiding interface arranged at the lower end of the guiding shell, and an output port arranged on the guiding shell.
[0010] The air supply interface and the air outlet interface are consistent in shape and size; the air inlet interface and the guiding interface are consistent in shape and size; and the air supply interface can be connected to the air inlet interface to enable the air outlet of the air supply module to enter the air duct of the atomization module; the air outlet interface can be connected to the guiding interface to enable the air mist generated by the atomization module to enter the inside of the guiding module and be output from the output port.
[0011] In this scheme, the air supply module is provided with a fixing seat enabling it to supply air horizontally and vertically, so that the air supply module can be placed horizontally to supply air vertically or placed vertically to supply air horizontally. Therefore, when the air supply module is placed vertically, it can work alone as a fan for cooling; when the air supply module is placed horizontally, the atomization module can be embedded into the air supply interface of the air supply module through the air inlet interface, and the guiding module can be embedded into the air outlet interface of the atomization module through the guiding interface, so that the three modules are assembled into a complete atomization (humidification) device, providing a scheme of realizing one machine with multiple functions through assembly and combination, solving the limitations of traditional technology, and the shapes and sizes of the interfaces being consistent providing a structural possibility for assembly and combination.
[0012] As a further technical scheme, the module combination type multifunctional cooling aromatherapy atomizer further comprises an aromatherapy module;
[0013] The aromatherapy module is an aromatherapy device embedded into the air supply interface of the air supply module, comprising: an aromatherapy shell, an aromatherapy lower interface arranged at the lower end of the aromatherapy shell, an aromatherapy upper interface arranged at the upper end of the aromatherapy shell, a mesh tray arranged in the inside of the aromatherapy shell, and a power supply channel arranged on the aromatherapy shell or the mesh tray;
[0014] The aromatherapy lower interface and the air inlet interface of the atomization module are consistent in shape and size; and the aromatherapy upper interface and the air outlet interface of the atomization module are consistent in shape and size.
[0015] The scheme adds a module with aromatherapy function to the above-mentioned scheme, that is, when the air supply module is horizontally placed, the aromatherapy module is embedded on the air supply interface of the air supply module through the lower aromatherapy interface, and a solid cake-shaped aromatherapy (or insect repellent, or sterilization and disinfection, etc.) piece or a porous material (hereinafter referred to as "diffusion cake") with aromatherapy essential oil (or insect repellent, or sterilization and disinfection liquid, etc.) is placed in the aromatherapy module, which can be used as an aromatherapy machine or a medicine diffuser; when the guide module is embedded on the upper aromatherapy interface of the aromatherapy module through the guide interface, the diffusion direction can be controlled and restricted through the guide module (proportional mist inhalation type physiotherapy); when the aromatherapy module is embedded on the air supply interface of the air supply module through the lower aromatherapy interface, the diffusion cake is placed in the aromatherapy module, the atomization module is embedded on the upper aromatherapy interface of the aromatherapy module through the air inlet interface, and the guide module is embedded on the mist outlet interface of the atomization module through the guide interface, so that the four modules + diffusion cake are assembled into a complete aromatherapy humidifier. The scheme adds two combinations to the above-mentioned scheme, expands the use function, and further solves the limitations of traditional technology. As mentioned above, the shapes and sizes of the interfaces are consistent, which provides the possibility of structure for assembly and combination.
[0016] As a further technical scheme, the air supply module is provided with a man-machine interaction device electrically connected with the control circuit board, which is used to realize interaction with the user;
[0017] The control circuit board is provided with a power supply circuit, an air supply driving circuit and a central controller, the central controller is internally loaded with software for controlling air volume, the air supply driving circuit is electrically connected with the motor, and is used to control the air supply driving circuit to realize start and stop of the air supply module and / or adjustment of output air volume.
[0018] The scheme provides a controllable air volume technical scheme, so that when used alone as a cooling fan, it has the functions of gust, simulation of natural wind, etc., and the use experience is better; when used in combination as an aromatherapy machine or a diffusion device, the air volume can be adjusted to realize adjustment of diffusion speed (diffusion amount); when used in combination as an aromatherapy humidifier or an aromatherapy humidifier, the air volume also provides the functions of adjustment of diffusion speed (diffusion amount) and atomization amount, etc., so that the user experience is better.
[0019] As a further technical scheme, the control circuit board of the air supply module is provided with a power supply circuit, an air supply driving circuit, an atomization driving circuit and a central controller;
[0020] The central controller is internally loaded with software for controlling air volume of the air supply module and controlling working state of the atomization module;
[0021] The air supply driving circuit is electrically connected with the motor, and is used for controlling the air supply driving circuit to realize start and stop of the air supply module and / or adjustment of the output air volume.
[0022] The atomization driving circuit is electrically connected with the power transmission terminal, and is used for driving the electric atomizer in the atomization module to work through the power transmission terminal and the power receiving terminal.
[0023] Compared with the previous scheme, the air supply driving and atomization driving circuits are concentrated on the same control circuit board, so that the overall structure and assembly process can be simplified.
[0024] As a further technical scheme, the atomization driving circuit board is arranged in the atomization shell of the atomization module, and is used to drive the electric atomizer to work.
[0025] Compared with the previous two schemes, the atomization driving circuit is arranged in the atomization module, so that the control part and the structure part are one-to-one corresponding. Since the corresponding product of the utility model is a combined assembly type, the sale allows users to select and purchase each module. The implementation of the scheme can reduce the cost without redundant configuration of the atomization driving circuit when the user does not select and purchase the atomization module.
[0026] As a further technical scheme, the power transmission terminal is located at the axis of the air supply module,
[0027] The power transmission terminal is a concentric power transmission ring, and correspondingly, the power receiving terminal is arranged at the axis of the atomization module and is a plurality of needle type or brush type conductive terminals; or
[0028] The power receiving terminal is a concentric power transmission ring and is located at the axis of the atomization module, and correspondingly, the power transmission terminal is a plurality of needle type or brush type conductive terminals.
[0029] In the scheme, the power transmission terminal and the power receiving terminal are arranged on the axis, so that positioning is not required during combined assembly, and the assembly is convenient, and the use experience is better.
[0030] As a further technical scheme, the atomization isolation pipe is arranged in the inner cavity of the container of the atomization module, the atomization isolation pipe is tubular, is fixed to the bottom wall of the container, and covers the electric atomizer, and a liquid inlet groove is arranged at the bottom and communicates the inner cavity of the container and the inner cavity of the atomization isolation pipe.
[0031] In the scheme, the arrangement of the isolation pipe reduces the real-time working range of the electric atomizer on the liquid to be atomized, and can greatly improve the atomization speed.
[0032] As a further technical scheme, the atomization module,
[0033] The atomization shell and the container are in a concentric structure; the air duct is a gap between the atomization shell and the container; or
[0034] The air duct is a vertical channel beside the vertical wall of the container, the lower end of which is open in the air inlet interface, and the upper end is open outside the vertical wall of the container.
[0035] The air duct is a vertical channel beside the vertical wall of the container, the lower end of which is open in the air inlet interface, and the upper end is open outside the vertical wall of the container.
[0036] The present scheme provides a variety of schemes for delivering airflow to the atomizer.
[0037] As a further technical scheme, the module combined multifunctional cooling aromatherapy atomizer is provided with a splash-proof baffle; the splash-proof baffle is arranged in the atomization module or in the guide module, directly above the electric atomizer and covering the electric atomizer in the horizontal projection direction.
[0038] The present scheme sets a splash-proof baffle above the electric atomizer, which can constrain the liquid splash generated by ultrasonic atomization or evaporation, limit the height of liquid splash, and at the same time provide a channel for the backflow of the splashed liquid, which can greatly reduce the noise caused by the back-dripping of the "boiling" liquid.
[0039] As a further technical scheme, the module combined multifunctional cooling aromatherapy atomizer is provided with an atmosphere lamp, which is a light-emitting diode, mounted on the air supply module and electrically connected with the control circuit board, or mounted on the aromatherapy module, or mounted on the guide module.
[0040] The present scheme adds a light experience to the product of the utility model, further enriches the performance of the product, and improves the use value of the product.
[0041] In summary, the beneficial effects of the present embodiment are as follows:
[0042] 1. Modularization of each functional component allows each module to be used individually or combined to achieve different functions and realize one machine with multiple functions.
[0043] 2. The uniform interface of each module allows free combination and provides the possibility for developing new combined modules in the future.
[0044] 3. The corresponding modules can be selected and used according to the functional requirements, and the product can be sold, selected, and upgraded in the future. DETAILED DESCRIPTION
[0045] The utility model will be further described below in combination with the drawings and examples, and the drawings are as follows:
[0046] Figure 1 It is a structural schematic view of a four-module module combined multifunctional cooling aromatherapy atomizer.
[0047] Figure 2 The schematic diagram of the air supply module working independently as a cooling fan;
[0048] Figure 3 The schematic diagram of the assembly as an aromatherapy machine;
[0049] Figure 4 The schematic diagram of the assembly as a humidifier;
[0050] Figure 5 The schematic diagram of the assembly as an aromatherapy humidifier. DETAILED DESCRIPTION
[0051] Example 1 - Four-module type modular multifunctional cooling aromatherapy atomizer (hereinafter referred to as "four-module device")
[0052] As shown in Figure 1 , the four-module device is composed of a guide module 1, an atomization module 2, an aromatherapy module 3, and an air supply module 4. Among them:
[0053] The guide module 1 is a bowl-shaped structure, which is composed of a guide shell 11, a guide butt joint 12 located along the edge, and a mist outlet 13 arranged on the guide shell 11.
[0054] The atomization module 2 is a concentric double-layer structure, which is composed of an outer humidifying shell 21, an inner container 22, an air inlet butt joint 20 located at the lower end of the humidifying shell 21, a mist outlet butt joint 23 located at the upper end of the humidifying shell 21, a plurality of connecting strips 24 fixing the humidifying shell 21 and the container 22, an electric atomizer 26 sealingly installed at the bottom of the container 22, an electric butt joint column 28 fixed to the outer bottom center of the container 22, and a plurality of power receiving terminals (electric brushes, not drawn due to angle reasons) located on the electric butt joint column 28. The gap between the humidifying shell 21 and the container 22 constitutes an air duct 25.
[0055] The aromatherapy module 3 is a disc structure, comprising an aromatherapy shell 31, an upper aromatherapy interface 32 located at the upper end of the aromatherapy shell 31, a lower aromatherapy interface 3a located at the lower end of the aromatherapy shell 31, an outer constraint edge 33 located at the upper side of the aromatherapy shell 31, a tray 34 located at the end face of the aromatherapy shell 31, an inner constraint edge 35 located at the center of the tray 34, a plurality of protrusions 36 distributed on the tray, a plurality of air permeable holes 37 distributed on the tray, a connecting rib 30 connecting the aromatherapy shell 31 and the outer constraint edge 33, etc. The inner constraint edge 35 is in a cylindrical shape, hollow inside, and is provided with a power transmission hole 38. A plurality of side holes 39 are provided between the aromatherapy shell 31 and the outer constraint edge 33. Due to the plurality of air permeable holes 37, the tray 34 inside the inner constraint edge 35 is in a mesh shape, used to place a solid diffusion cake (such as an aromatherapy cake, a mosquito-repellent sheet, or a porous material with liquid such as aromatherapy essential oil, mosquito-repellent liquid, disinfectant, etc.) with a corresponding shape. The mesh-shaped tray 34 facilitates airflow to blow to the lower end face of the solid diffusion cake. The plurality of protrusions 36 support the solid diffusion cake from the tray 34, providing an airflow passage between the two. The side holes 39 facilitate airflow to blow through the side face of the solid diffusion cake.
[0056] The air supply module 4 comprises an air supply shell 41, an air supply interface 42 located at the air outlet end face edge of the air supply shell 41, a motor 44 provided at the center of the air outlet end face of the air supply shell 41, a plurality of spokes 43 radially connecting the air supply shell 41 and the motor 44, a fan wheel 45 fixed to the output shaft (not shown due to angle reasons) of the motor 44, a power transmission terminal 46 fixed to the end face of the motor 44 away from the output shaft, a vertical placement foot 47 fixed to the air supply shell 41, a power supply port 48 provided on the side face of the air supply shell 41, a human-computer interaction device 49, a plurality of air inlets 40 provided on the air inlet end face edge of the air supply shell 41, and a control circuit board (not shown) installed inside the air supply shell 41. In this embodiment, the power transmission terminal 46 is a concentric power transmission slip ring. The power supply port 48, the human-computer interaction device 49, the motor 44, and the power transmission terminal 46 are all electrically connected to the control circuit board.
[0057] Among the above four modules, the air supply interface 42 of the air supply module 4, the upper aromatherapy interface 32 of the aromatherapy module 3, and the mist outlet interface 23 of the atomization module 2 are completely consistent in size and shape. Correspondingly, the lower aromatherapy interface 3a of the aromatherapy module 3, the air inlet interface 20 of the atomization module 2, and the guide interface 12 of the guide module 1 are completely consistent in size and shape. This allows the modules to be freely assembled and combined.
[0058] In this embodiment, the air supply module 4 is placed horizontally. During operation, power is supplied to the control circuit board through the power supply port 48. The control circuit board provides power to the power transmission terminal 46 according to the user's operation of the human-machine interface device 49, and also drives the motor 44 to work, driving the fan wheel 45 to rotate, driving air to enter from the air inlet 40 and output along the upper port of the air supply module 4 from bottom to top. Figure 1 The direction of placement (flows) forms an airflow.
[0059] The aromatherapy module 3 is embedded in the air supply interface 42 of the air supply module 4 through its aromatherapy lower interface 3a. The airflow output by the air supply module 4 flows through the gap formed by the protrusion 36 between the solid diffuser cake and the tray 34, and the side hole 39, passing through the lower end face and side of the solid diffuser cake, encapsulating the drug molecules therein, and forming an upward flow from the side of the solid diffuser cake.
[0060] The atomizing module 2 is embedded in the aromatherapy interface 32 of the aromatherapy module 3 via its air inlet interface 20, and the guide module 1 is embedded in the mist outlet interface 23 of the atomizing module 2 via its guide interface 12. Thus, an atomizing chamber is formed above the container 22 of the atomizing module 2 and between it and the guide module 1. The electrical connection post 28 of the atomizing module 2 passes through the power supply through-hole 38 of the aromatherapy module, allowing the receiving terminal (brush, not shown) mounted on the electrical connection post 28 to connect with the power supply terminal 46 on the air supply module 4, achieving electrical connection. The receiving terminal is electrically connected to the electro-atomizer 26, providing operating power to the electro-atomizer 26. Water to be atomized is added to the cavity 27 of the container 22. Under the action of the electro-atomizer 26, the water is atomized, forming water mist within the atomizing chamber. The airflow carrying the drug molecules from the aromatherapy module 3 enters the atomization chamber through the air duct 25 of the atomization module 2, carrying water mist, and is output into the surrounding air along the mist outlet 13 of the guide module 1, thus completing the diffusion of the drug molecules and the diffusion of the water mist.
[0061] In this embodiment, the mist outlet 13 is offset from the center of the guide module 1. The direction of the mist outlet can be adjusted by rotating the guide module 1.
[0062] In this embodiment, since the four modules are separate units and the dimensions and shapes of their interfaces are completely identical, the modules can be freely combined and assembled according to functional requirements, for example:
[0063] 1. Figure 2 As shown, when the air supply module 4 is vertically placed through the vertical mounting foot 47, the air supply module 4 can be used independently as a cooling fan.
[0064] 2 such as Figure 3 As shown, when the air supply module 4 is placed horizontally, the air supply module 4, the aromatherapy module 3, the solid diffusion cake 5, and the guide module 1 are assembled together and can be used as an aromatherapy machine, a chemical mosquito repellent device, a chemical disinfection device, etc.
[0065] 3 such as Figure 4 As shown, when the air supply module 4 is placed horizontally, the air supply module 4, atomizing module 2, solid diffuser cake 5, and guide module 1 are assembled together and can be used as a humidifier.
[0066] 4 such as Figure 5 As shown, when the air supply module 4 is placed horizontally, the air supply module 4, aromatherapy module 3, solid diffuser 5, atomizing module 2, and guide module 1 are assembled together and can be used as an aromatherapy humidifier, a humidifier with drug therapy, etc.
[0067] As can be seen from the above, the advantages of implementing this embodiment are:
[0068] Each module is a separate unit that can be freely combined and assembled as needed. The functions can be flexibly selected, avoiding the limitations of dedicated machines in traditional technologies, and realizing multiple uses and flexible combinations.
[0069] 2. Since the size and shape of each pair of interfaces are completely uniform, it creates conditions for the development and expansion of new modules on this basis, making it possible to upgrade the structure and function of the device.
[0070] The 3-unit modular design provides more combination options for selling and purchasing, which can enrich the product series;
[0071] The four-module design allows for the design and manufacturing of only the updated parts when updating the product, eliminating the need to redesign the entire product as with traditional technologies. This shortens the design cycle and reduces R&D costs.
[0072] Example 2 – Module Allocation with One-to-One Correspondence Between Function and Structure
[0073] In some embodiments, the control circuits of each module are centralized on the control circuit board of the air supply module, which simplifies assembly.
[0074] In this embodiment, the driving circuit of the atomizing module is independently located on the atomizing module, while the motor driving circuit of the air supply module is located on the control circuit board of the air supply module. That is, the control functions of each module are configured according to the mode, which simplifies the design planning and helps to avoid control conflicts in future function expansion. At the same time, it avoids the cost waste caused by circuit centralization when the user selects the simplest combination configuration.
[0075] Example 3 – Breathing Therapy Device
[0076] according to Figure 3 or Figure 5The breathing mask (not shown) is arranged outside the mist outlet 13 of the guide module 1. The solid diffusion cake 5 with added physiotherapy medicine, or the liquid physiotherapy medicine added to the sponge-like solid diffusion cake 5, can be used to provide the breathing physiotherapy function. Figure 3 The combination provides the breathing physiotherapy function with the wetting function. Figure 5 The combination provides the breathing physiotherapy function with the wetting function.
[0077] The embodiment has the advantage of adding the physiotherapy function to the device. It can be used as an auxiliary medical device to provide self-service medicine for the user.
[0078] The above describes the specific embodiments of the present specification, and other embodiments are within the scope of the appended claims. In some cases, the structure described in the claims can refer to the above-described specific embodiments to achieve the desired results. Those skilled in the art can easily achieve the desired results by referring to the above-described specific embodiments and design ideas.
[0079] The above only describes one or more embodiments of the present specification and does not limit the present specification. Those skilled in the art can implement new embodiments by combining the technologies of one or more embodiments of the present specification, or can make various modifications and changes. Any modification, equivalent replacement, improvement, technical combination, etc. within the spirit and principles of one or more embodiments of the present specification shall be included in the scope of the claims of the present specification.
Claims
1. A modular multifunctional summer cooling aromatherapy atomizer, characterized in that, The air supply module, the atomization module, and the guide module can be freely combined by a user. The air supply module is an air supply device capable of independent operation, comprising: an air cavity for restricting the direction of air flow, a motor fixed on the air cavity, an air wheel fixed on the output shaft of the motor, a fixed seat arranged outside the air cavity, enabling the air supply module to supply air horizontally and vertically, an air supply interface fixed on the air outlet of the air cavity, a control circuit board fixed inside the air cavity, and a power supply terminal fixed on the air cavity and electrically connected to the control circuit board. The atomization module is an atomization device grafted on the air supply module, comprising: an atomization shell, an air inlet interface fixed on the lower end of the atomization shell, an air duct fixed inside the atomization shell, a power receiving terminal fixed on the lower part of the atomization shell, a container fixed inside the atomization shell, an electric atomizer fixed on the bottom of the container and electrically connected to the power receiving terminal, and an air outlet interface fixed on the upper port of the atomization shell; the vertical wall of the container is lower than that of the air duct. The guide module is a device covering the upper end of the atomization module and restricting the air outlet of the atomization module, comprising: a guide shell, a guide interface arranged on the lower end of the guide shell, and an output port arranged on the guide shell. The air supply interface and the air outlet interface are consistent in shape and size; the air inlet interface and the guide interface are consistent in shape and size; the air supply interface can be connected to the air inlet interface, enabling the air outlet of the air supply module to enter the air duct of the atomization module; the air outlet interface can be connected to the guide interface, enabling the air mist generated by the atomization module to enter the inside of the guide module and be output from the output port.
2. The modular multifunctional cooling aromatherapy nebulizer according to claim 1, characterized in that, The aromatherapy module is embedded in the air supply interface of the air supply module, comprising: an aromatherapy shell, an aromatherapy lower interface arranged on the lower end of the aromatherapy shell, an aromatherapy upper interface arranged on the upper end of the aromatherapy shell, a mesh tray arranged inside the aromatherapy shell, and a power supply channel arranged on the aromatherapy shell or the mesh tray. The aromatherapy lower interface and the air inlet interface of the atomization module are consistent in shape and size; the aromatherapy upper interface and the air outlet interface of the atomization module are consistent in shape and size.
3. The multifunctional aromatherapy atomizer according to claim 1, wherein the air supply module is provided with a human-machine interaction device electrically connected to the control circuit board, for realizing interaction with the user. The control circuit board is provided with a power supply circuit, an air supply driving circuit, and a central controller, the central controller is loaded with software for controlling air volume, the air supply driving circuit is electrically connected to the motor, for controlling the air supply driving circuit to realize the start-stop of the air supply module and / or the adjustment of the output air volume.
4. The multifunctional aromatherapy atomizer according to claim 1, wherein The control circuit board of the air supply module is provided with a power supply circuit, an air supply driving circuit, an atomization driving circuit and a central controller. The central controller is loaded with software for controlling the air volume of the air supply module and controlling the working state of the atomization module. The air supply driving circuit is electrically connected with the motor, and is used for controlling the air supply driving circuit to start and stop the air supply module and / or adjust the output air volume. The atomization driving circuit is electrically connected with the power transmission terminal, and is used for driving the electric atomizer in the atomization module through the power transmission terminal and the power receiving terminal.
5. The modular multi-functional cooling mist diffuser of claim 1, wherein, The atomization driving circuit is electrically connected with the power transmission terminal, and is used for driving the electric atomizer in the atomization module through the power transmission terminal and the power receiving terminal.
6. The modular multi-functional cooling mist diffuser of claim 1, wherein, The power transmission terminal is located at the center of the air supply module, The power transmission terminal is a concentric circular power transmission ring, and the power receiving terminal is a plurality of needle type or brush type conductive terminals. The power receiving terminal is a concentric circular power transmission ring, and the power transmission terminal is a plurality of needle type or brush type conductive terminals.
7. The modular multi-functional cooling mist diffuser of claim 1, wherein the modular multi-functional cooling mist diffuser further comprises a plurality of modular components. The inner cavity of the container of the atomization module is provided with an atomization isolation pipe, which is tubular, fixed to the bottom wall of the container, covers the electric atomizer, and is provided with a liquid inlet groove communicating the inner cavity of the container and the inner cavity of the atomization isolation pipe.
8. The modular multi-functional cooling mist diffuser of claim 1, wherein, The atomization module, The atomization shell and the container are in a concentric structure; the air duct is the gap between the atomization shell and the container; or The air duct is a tubular structure vertically penetrating through the container, and the lower end is opened in the air inlet interface, and the upper end is opened in the inner cavity of the container and is higher than the vertical wall of the container; or The air duct is a vertical channel beside the outer side of the vertical wall of the container, and the lower end is opened in the air inlet interface, and the upper end is opened outside the vertical wall of the container.
9. The modular multi-functional cooling mist diffuser of claim 1, wherein, A splash-proof baffle is provided; the splash-proof baffle is arranged in the atomization module or the guide module, directly above the electric atomizer, and covers the electric atomizer in the horizontal projection direction.
10. The modular multi-functional cooling mist diffuser of claim 1, wherein, An atmosphere lamp is provided, which is a light emitting diode, mounted on the air supply module and electrically connected with the control circuit board, or mounted on the aromatherapy module or the guide module.