Atomization device
By setting two power supply units on the circuit board of the atomizing device, one connected to an external power source and the other detachably connected to the conductive components of the solar base, plug-in and solar charging are achieved, solving the problem of the device not working due to forgetting to charge, improving aesthetics and reducing obstruction of vision.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-20
- Publication Date
- 2026-04-03
AI Technical Summary
Existing atomizing devices are prone to malfunctioning when the battery runs out and the user forgets to charge them, which affects the user experience.
Two power supply units are set on the circuit board of the atomizing device. One power supply unit is used to connect to an external power source, and the other power supply unit is detachably connected to the conductive components of the solar base, realizing both plug-in charging and solar charging modes, ensuring that it can still be charged by solar energy when it is forgotten to charge.
This avoids the problem of the atomizing device failing to work due to forgetting to charge it, while also reducing the overall size of the device, improving its aesthetics, and minimizing obstruction of the driver's or passenger's view.
Smart Images

Figure CN224072401U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of atomization technology, and in particular to an atomization device. Background Technology
[0002] With technological advancements and increasing focus on visual experience, atomizing devices are finding wider applications, expanding from indoor spaces to automotive interiors, becoming an integral part of enhancing the in-car environment. Existing atomizing devices typically have a power interface. However, if the user forgets to connect the power cord, the battery inside the atomizing device can easily deplete due to prolonged use, causing the device to malfunction and impacting the user experience. Utility Model Content
[0003] In order to improve at least some of the above-mentioned disadvantages or deficiencies, embodiments of the present invention provide an atomizing device.
[0004] Specifically, this utility model provides an atomizing device, comprising: an atomizer with a circuit board inside, the circuit board having a first power supply unit; the atomizer further comprising a second power supply unit disposed on the circuit board, the second power supply unit being used to electrically connect to an external power source to provide power for the atomizer to operate; and a solar base detachably connected to the atomizer, the solar base having a solar panel and a conductive component disposed on the solar base, the conductive component and the solar panel being electrically connected, wherein when the atomizer is connected to the solar base, the first power supply unit is electrically connected to the conductive component, and the electrical energy generated by the solar panel provides power for the atomizer to operate.
[0005] In one embodiment of this utility model, the solar base includes a bottom wall, a top wall opposite to the bottom wall, and a side wall connecting the bottom wall and the top wall; the solar panel is disposed on the side wall; or, the top wall includes a connecting surface and an extension surface extending outward from the connecting surface, the connecting surface being used to connect with the atomizer, and the solar panel being disposed on the extension surface.
[0006] In one embodiment of the present invention, the second power supply unit includes a power supply interface, which passes through the outer casing of the atomizer to be exposed to the outside, and the power supply interface faces the side where the extension surface is located.
[0007] In one embodiment of this utility model, the conductive component includes a first conductive element and a second conductive element. The second conductive element is electrically connected to the solar panel and the first conductive element, respectively. The first conductive element can contact the first power supply unit to achieve electrical connection.
[0008] In one embodiment of the present invention, the atomizer includes a bottom shell located at the bottom, a first through hole provided on the bottom shell, a second through hole provided on the solar base, and the first conductive element passing through the second through hole and the first through hole in sequence and electrically connected to the first power supply unit.
[0009] In one embodiment of this utility model, the first power supply unit includes a conductive post, one end of which is connected to the circuit board, and the other end extends toward the bottom shell with its end located in the first through hole or in the atomizer.
[0010] In one embodiment of this utility model, a third through hole is provided on the circuit board, and the conductive post passes through the third through hole and is electrically connected to the circuit board.
[0011] In one embodiment of the present invention, the conductive post includes a protrusion that extends from the side of the circuit board away from the bottom shell, and the atomizer is also provided with a clearance position to avoid the protrusion.
[0012] In one embodiment of the present invention, the atomizer further includes a switch button, which is disposed opposite to the second power supply unit on opposite sides of the atomizer, and / or, when the atomizer is connected to the solar base, the solar panel and the second power supply unit are located on the same side of the atomizer.
[0013] In one embodiment of the present invention, the atomizer further includes a battery and a fan, the battery and the fan being arranged adjacent to each other, with the battery being located near the switch button and the fan being located near the second power supply unit.
[0014] In one embodiment of this utility model, the atomizer further includes a visible cover, an atomizer assembly, and a flow guide. The visible cover surrounds the flow guide to form a smoke chamber. The mist outlet of the atomizer assembly communicates with the smoke chamber. The fan is located on the side of the flow guide away from the smoke chamber. The switch button and the second power supply unit are located on opposite sides of the flow guide. The flow guide also includes an air guide shroud. The air guide shroud contains a gas flow channel, and both ends of the gas flow channel are connected to the air outlet of the fan and the smoke chamber, respectively. The air guide shroud is located within the smoke chamber and is positioned closer to the second power supply unit. The air guide shroud and the switch button are located on opposite sides of the flow guide.
[0015] In one embodiment of this utility model, the atomizer is provided with a first magnetic suction component, and the solar base is provided with a second magnetic suction component. When the atomizer is connected to the solar base, the first magnetic suction component and the second magnetic suction component are magnetically connected.
[0016] In one embodiment of the present invention, the atomizer includes a bottom shell located at the bottom, and the solar base is provided with a placement groove, which is adapted to accommodate the bottom shell of the atomizer.
[0017] As can be seen from the above, the technical features of this utility model can have one or more of the following beneficial effects: The atomizing device provided in this embodiment has two power supply units set on the same circuit board, specifically a first power supply unit and a second power supply unit, wherein the second power supply unit is used to connect to an external power source; the first power supply unit is detachably connected to the conductive component of the solar base, thereby realizing two charging modes: plug-in charging and solar charging. When the user forgets to connect for charging, it can still be charged by solar power, thereby avoiding the problem that the atomizing device cannot work due to forgetting to charge; the first power supply unit is detachably connected to the conductive component of the solar base, and the user can selectively remove the solar base, which can also reduce the overall size of the atomizing device, not only improving the aesthetics, but also reducing the obstruction of the driver's or passenger's view. Attached Figure Description
[0018] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0019] Figure 1 This is a schematic diagram of the structure of an atomizing device provided in an embodiment of the present utility model.
[0020] Figure 2 for Figure 1 A schematic diagram of the atomizing device from another angle.
[0021] Figure 3 for Figure 1 A schematic diagram of the exploded structure of the atomizing device.
[0022] Figure 4 for Figure 2 A schematic diagram of the structure of a medium-sized atomizer.
[0023] Figure 5 for Figure 2 A schematic diagram of the exploded structure of a medium-sized atomizer.
[0024] Figure 6 for Figure 2 A partial exploded view of the atomizer.
[0025] Figure 7 for Figure 6 A schematic diagram of the circuit board structure.
[0026] Figure 8 for Figure 3 An exploded view of the solar panel base.
[0027] Figure 9 for Figure 8 A schematic diagram of the structure of the conductive component.
[0028] Figure 10 for Figure 1 A schematic diagram of the cross-sectional structure of the atomizing device.
[0029] Figure 11 for Figure 10 A magnified view of a portion of region A in the middle.
[0030] Figure 12 for Figure 2 A schematic diagram of the exploded structure of another part of the atomizer.
[0031] Main component numbers:
[0032] 1. Atomizing device; 10. Atomizer; 11. Smoke chamber; 20. Solar base; 21. Second through hole; 22. Placement slot; 23. First shield; 24. Second shield; 25. First anti-slip component; 26. Second anti-slip component; 27. Interface clearance; 30. Solar panel; 40. Conductive component; 41. First conductive component; 42. Second conductive component; 50. Second magnetic component; 101. Mist outlet; 102. Air inlet; 110. Bottom shell; 111 112. First through hole; 123. First magnetic suction component; 124. Air guide component; 125. Air guide cover; 136. Support assembly; 147. Atomizer assembly; 158. Cover body; 160. Sealing component; 200. Main control circuit board; 310. Switch button; 320. Button circuit board; 400. Second power supply unit; 510. Battery; 520. Fan; 540. Circuit board; 530. Fan bracket; 531. Clearance position; 542. Third through hole; 543. Conductive post. Detailed Implementation
[0033] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0034] See Figures 1 to 3This utility model provides an atomizing device 1, which may specifically include, for example, an atomizer 10 and a solar base 20. The atomizer 10 has the function of converting liquid into mist, and can be applied to products such as atomizing aromatherapy diffusers or humidifiers. A circuit board 540 is provided inside the atomizer 10, and a first power supply unit and a second power supply unit 400 are provided on the circuit board 540. The second power supply unit 400 is used to electrically connect to an external power source to provide power for the atomizer 10 to operate. The solar base 20 is detachably connected to the atomizer 10. The solar base 20 is also provided with a solar panel 30 and a conductive component 40, which are electrically connected. When the atomizer 10 is connected to the solar base 20, the first power supply unit and the conductive component 40 are electrically connected, and the electrical energy generated by the solar panel 30 provides power for the atomizer 10 to operate.
[0035] The atomizing device 1 provided in this embodiment has two power supply units on the same circuit board 540, specifically a first power supply unit and a second power supply unit 400. The second power supply unit 400 is used to connect to an external power source. The first power supply unit is detachably connected to the conductive component 40 of the solar base 20, thereby enabling both plug-in charging and solar charging modes. Even if the user forgets to connect for charging, it can still be charged by solar power, thus avoiding the problem of the atomizing device 1 failing to work due to forgetting to charge. The two power supply units can be integrated onto one circuit board 540, reducing the size of the atomizing device 10. Furthermore, the detachable connection between the first power supply unit and the conductive component 40 of the solar base 20 allows the user to selectively remove the solar base 20, further reducing the overall size of the atomizing device 1, improving aesthetics, and minimizing obstruction of the driver's or passenger's view.
[0036] Furthermore, the atomizer 10 can be mounted on the solar base 20, for example, with the bottom of the atomizer 10 detachably electrically connected to the solar base 20. Placing the solar base 20 at the bottom of the atomizer 10 does not disrupt its visual appearance or affect the aesthetics of the atomizing device 1, and also reduces the user's focus on the solar base 20. By detachably connecting the solar base 20 to the atomizer 10, the user can selectively separate the solar base 20 from the atomizer 10 and store it when the atomizer 10 is not powered, thus improving the aesthetics of the atomizer 10.
[0037] The solar base 20 may, for example, include a bottom wall, a top wall opposite the bottom wall, and a side wall connecting the top wall and the bottom wall. The bottom wall can be connected to an external object such as a control panel or tabletop to stably place the solar base 20 on the external object. In one embodiment of this example, the atomizer 10 may, for example, be disposed on the top wall of the solar base 20, and the side wall surrounds the periphery of the top wall and the bottom wall, forming a surface in the thickness direction of the solar panel 30. The solar panel 30 may be disposed on the side wall of the solar base 20. In another embodiment of this example, the top wall includes a connecting surface that is interconnected with the atomizer 10 and an extension surface extending outward from the connecting surface. The connecting surface is used to connect with the atomizer 10, and the solar panel 30 is disposed on the extension surface. For example, the solar panel 30 and the atomizer 10 may be disposed adjacent to each other on the top wall of the solar base 20, and the upper surface of the solar panel 30 is entirely exposed to the air. The solar base 20 may include, for example, a first portion and a second portion extending along the length of the solar base 20 and protruding from the first portion. The top walls of the first and second portions form the top wall of the solar base 20. Specifically, the top wall of the first portion is used, for example, to house the atomizer 10; the top wall of the second portion is exposed to the air, and the solar panel 30 can be disposed on the top wall of the second portion. Since the second portion extends along the length of the solar base 20, it does not affect the visual effect of the atomizer 10. Therefore, the top wall of the second portion can be extended according to the required area of the solar panel 30, so that the area of the solar panel 30 can be maximized to ensure good solar power supply efficiency without affecting the height of the solar base 20, further improving aesthetics. In this embodiment, the atomizer 10 and the solar panel 30 may be arranged adjacent to each other on the solar base 20, for example. The top wall of the solar base 20 also has a slot for accommodating the solar panel 30, which can be perfectly accommodated in the slot, making the solar panel 30 flush with the surface of the solar base 20, improving the aesthetics of the solar base 20.
[0038] Furthermore, the solar base 20 may, for example, be provided with a placement slot 22 on which the atomizer 10 is placed. The placement slot 22 is adapted to accommodate the bottom shell of the atomizer 10, and for example, the size of the placement slot 22 may match the bottom shell of the atomizer 10. The bottom of the atomizer 10 may, for example, match the size and shape of the placement slot 22, thereby improving the stability of the atomizer 10 placed on the solar base 20. The solar base 20 may, for example, extend along its length, and the placement slot 22 and the solar panel 30 are arranged adjacent to each other along the length of the solar base 20. See also Figure 6 and Figure 8Furthermore, the atomizer 10 may be provided with a first magnetic element 112, and the solar base 20 may be provided with a second magnetic element 50. The second magnetic element 50 may be located inside the placement slot 22, or inside the solar base 20 and located directly below the placement slot 22. When the atomizer 10 is placed on the solar base 20, the first magnetic element 112 and the second magnetic element 50 are magnetically connected, which further improves the connection stability and allows the atomizer 10 to be quickly positioned on the solar base 20.
[0039] See Figures 4 to 8 The atomizer 10 contains a circuit board 540, on which a first power supply unit and a second power supply unit 400 are mounted. The first power supply unit is electrically connected to the solar base 20 and provides power to the atomizer 10 via the solar panel 30. The second power supply unit 400 is used to connect to an external power source to provide power to the atomizer 10. The solar base 20 also has a conductive component 40, which is electrically connected to the solar panel 30. The conductive component 40 can also contact the first power supply unit for electrical connection; for example, the conductive component 40 can be detachably connected to the first power supply unit. When the atomizer 10 is connected to the solar base 20, the first power supply unit contacts the conductive component 40 for electrical connection. The first power supply unit and the second power supply unit 400 are disposed on the same circuit board 540. Combining the two power supply units on one circuit board 540 reduces the size of the atomizer 10. Furthermore, the first power supply unit is detachably connected to the conductive component 40 of the solar base 20, allowing the user to selectively remove the solar base 20, further reducing the overall size of the atomizer 1, improving aesthetics, and minimizing obstruction of the driver's or passenger's view. Further, the circuit board 540 can be, for example, a power supply circuit board. One end of the conductive component 40 is connected to the solar panel 30, and the other end is electrically connected to the circuit board 540 through a contact with the first power supply unit. When the atomizer 10 is placed on the solar base 20, the conductive component 40 contacts the first power supply unit, thereby achieving an electrical connection between the solar panel 30 and the circuit board 540, enabling solar power supply. In this embodiment, the circuit board 540 can be, for example, located near the solar base 20 of the atomizer 10, thus ensuring electrical connection of the solar base 20 at the bottom of the atomizer 10 and avoiding affecting aesthetics.
[0040] Further, see Figure 9 , Figure 10 and Figure 11The conductive component 40 may include, for example, a first conductive element 41 and a second conductive element 42. The second conductive element 42 is electrically connected to both the solar panel 30 and the first conductive element 41. The first conductive element 41 can contact the first power supply unit to achieve electrical connection. The second conductive element 42 may be, for example, a conductive sheet, specifically a conductive copper wire, a conductive metal sheet, etc., and extends along the length of the solar base 20. One end of the second conductive element 42 is connected to the solar panel 30, and the other end is electrically connected to the first conductive element 41. For example, conductive perforations may be provided on the top wall of the solar base 20, located below the solar panel 30. The conductive component 40 is located on the side of the top wall of the solar base 20 opposite to the solar panel 30, so that the electrical connection structure of the solar base 20 is hidden inside the solar base 20, which does not affect the aesthetics of the solar base 20 and also protects the electrical connection structure. The second conductive element 42 is electrically connected to the solar panel 30 through a conductive perforation. The first conductive element 41 can be, for example, a conductive column, specifically, a spring pin. The first conductive element 41 is disposed on the other end of the second conductive element 42. The first conductive element 41 extends along the height direction of the solar base 20 and is perpendicularly connected to the second conductive element 42. The first conductive element 41 can extend out of the top wall of the solar base 20, for example. When the end of the first conductive element 41 away from the second conductive element 42 contacts the first power supply unit, an electrical connection is achieved.
[0041] See Figure 4 and Figure 6 The atomizer 10 may, for example, also include a bottom housing 110 located at the bottom, near the solar base 20, and the bottom housing 110 may, for example, have a first through hole 111. See also Figure 8 The solar base 20 has a second through hole 21 on the side near the atomizer 10. The second through hole 21 may be located, for example, at the bottom of the placement slot 22. The first conductive element 41 passes through the second through hole 21, that is, a portion of the first conductive element 41 is exposed on the solar base 20. When the atomizer 10 is placed on the solar base 20, the portion of the first conductive element 41 exposed on the solar base 20 is electrically connected to the first power supply unit through the first through hole 111.
[0042] See Figure 6The first power supply unit includes, for example, a conductive post 542, which may be a conductive copper post. One end of the conductive post 542 is connected to the circuit board 540, and the other end extends toward the bottom shell 110. The contact portion of the conductive post 542 that connects to the conductive component 40 is located at the end of the conductive post 542 near the bottom shell 110. The end of the conductive post 542 near the bottom shell 110 is located inside the first through hole 111, or the end of the conductive post 542 near the bottom shell 110 is located inside the atomizer 10, for example, outside the first through hole 111, to ensure that the conductive post 542 does not protrude outside the atomizer 10, thereby protecting the conductive post 542 and ensuring that the atomizer 10 can be stably placed on the table when the user removes the solar base 20. In this embodiment, the circuit board 540 can be arranged parallel to the bottom shell 110, for example, and the conductive post 542 can be arranged perpendicular to the circuit board 540, for example. The arrangement of the conductive post 542 allows the first power supply unit to be closer to the bottom shell 110, further improving the convenience and stability of the electrical connection. When the atomizer 10 is placed on the solar base 20, the portion of the first conductive element 41 exposed on the solar base 20 passes through the first through hole 111 and contacts the conductive post 542, allowing the ends of the first conductive element 41 and the conductive post 542 to make contact and achieve electrical connection. This arrangement allows the first power supply unit to be located inside the atomizer 10, preventing the user from contacting the first power supply unit and improving safety and aesthetics.
[0043] See Figure 7 The circuit board 540 has a third through hole 541, through which a conductive post 542 passes and is electrically connected to the circuit board 540. The conductive post 542 is perpendicular to the circuit board 540. The conductive post 542 includes a protrusion that extends from the side of the circuit board 540 away from the bottom shell 110. By inserting the conductive post 542 onto the circuit board 540, the connection stability between the conductive post 542 and the circuit board 540 can be improved, and the skewness of the conductive post 542 can be prevented.
[0044] Furthermore, see also Figure 6The atomizer 10 is also provided with a clearance position 531 to avoid the protruding part. In this embodiment, the atomizer 10 may also include a battery 510, a fan 520, and a fan bracket 530. The fan 520 is located inside the fan bracket 530, and the circuit board 540 may be located, for example, between the fan bracket 530 and the bottom shell 110. That is, part of the structure of the fan bracket 530 is located on the upper side of the circuit board 540 and in contact with the circuit board 540, so that the internal structure of the atomizer 10 is tightly stacked, reducing the volume of the atomizer 10. A clearance position 531 is provided at the contact position between the fan bracket 530 and the circuit board 540. The conductive post 542 protrudes from the side of the circuit board 540 away from the bottom shell 110 to form a protrusion, which passes through the clearance position 531. Of course, this embodiment is not limited to this. When other components are provided on the side of the circuit board 540 away from the bottom shell 110, the clearance position 531 is correspondingly provided on the other components. By setting the clearance position 531, the internal structure can be made compact, the atomizer 10 can be miniaturized, and the aesthetics can be further improved.
[0045] See also Figure 8 The solar base 20 may have a first shielding member 23 on its placement slot 22, with the connecting surface located on the first shielding member 23. A second shielding member 24 is located at the bottom of the solar base 20, forming part of the bottom wall. The first and second shielding members 23 and 24 provide shielding and protection for the solar base 20, further enhancing its aesthetics. The bottom of the solar base 20 may also have a first anti-slip member 25 and a second anti-slip member 26, which may be made of washable adhesive, or other anti-slip materials. The first anti-slip member 25 may be located at the bottom of the solar base 20 away from the atomizer 10, and the second anti-slip member 26 may be located at the bottom of the solar base 20 corresponding to the solar panel 30. The first and second anti-slip members 25 and 26 improve the stability of the solar base 20.
[0046] See also Figure 7 The atomizer also includes a second power supply unit 400, which is electrically connected to a circuit board 540. The outer casing of the atomizer 10 has openings to allow the second power supply unit 400 to pass through, thus facilitating power supply. This arrangement allows the second power supply unit 400 and the solar panel 30 to be mounted on the same circuit board 540, enabling both solar power and plug-in power supply functions to be achieved through a single circuit board 540. This simplifies the circuit structure and reduces circuit board costs. See also... Figure 8 For example, the solar base 20 may also be provided with an interface clearance 27, but this embodiment is not limited thereto.
[0047] See also Figure 1 and Figure 2The atomizer 10 also includes a switch button 310. The switch button 310 and the second power supply unit 400 are disposed opposite each other on opposite sides of the atomizer 10. The second power supply unit 400 includes a power interface that passes through the outer casing of the atomizer 10 and is exposed to the outside. The switch button 310 and the power interface are located, for example, at opposite ends of the peripheral casing of the atomizer 10; the power interface is, for example, a USB port. When the atomizer 10 is connected to the solar base 20, the solar panel 30 and the second power supply unit 400 are located on one side of the atomizer 10. When using the atomizer 1, users generally place the switch button 310 facing them for ease of operation. By arranging the switch button 310 and the second power supply unit 400 opposite each other, and by placing the second power supply unit 400 and the solar panel 30 on the same side of the atomizer 10, the second power supply unit 400 and the solar panel 30 are less visible or not visible at all when the user is facing the switch button 310, further improving the aesthetics. Furthermore, when the atomizing device 1 is used in a vehicle, i.e., when the atomizing device 1 is located on the center console of the car, the solar panel 30 can be placed facing the car window, thereby increasing the solar light reception rate of the solar panel 30 and improving the utilization efficiency of the solar panel 30.
[0048] In one embodiment of this invention, the atomizing device 1 may be, for example, a landscape atomizing aromatherapy diffuser. The atomizer 10 may also include, for example, a battery 510 and a fan 520, arranged adjacent to each other, with the battery 510 positioned near the switch button 310 and the fan 520 positioned near the second power supply unit 400. Specifically, see [link to documentation]. Figure 5 , Figure 6 and Figure 10The atomizer 10 may also include, for example, a flow guide 120, an atomizer assembly 140, and a viewing cover 150, and may also include, for example, a support assembly 130 and a sealing element 160. The support assembly 130 may also house a main control circuit board 200. The flow guide 120 is connected to the bottom shell 110, and the sealing element 160 is connected to both the flow guide 120 and the bottom shell 110, forming an accommodating space. The battery 510, fan 520, fan bracket 530, and circuit board 540 are all housed within this accommodating space, and the circuit board 540 is electrically connected to the main control circuit board 200. The support assembly 130 is located above and connected to the airflow guide 120. The atomizer assembly 140 is located at the top, for example, inside the support assembly 130. The viewing cover 150 covers the outside of the airflow guide 120 and the support assembly 130, forming a smoke chamber 11 through the viewing cover 150, the support assembly 130, and the airflow guide 120. The atomizer assembly 140 communicates with the smoke chamber 11. The fan 520 is located on the side of the airflow guide 120 away from the smoke chamber 11, and the switch button 310 and the second power supply unit 400 are located on opposite sides of the airflow guide 120. The air guide 120 is also provided with an air guide shroud 121. An air guide shroud 121 is provided with a gas channel. The two ends of the gas channel are connected to the air outlet of the fan 520 and the smoke chamber 11, respectively. The air guide shroud 121 is located inside the smoke chamber 11 and is located on the side close to the second power supply unit 400. The air guide shroud 121 and the switch button 310 are located on opposite sides of the air guide 120. The air blown out by the fan 520 blows the smoke in the smoke chamber 11 out of the atomizer 10 through the air guide shroud 121.
[0049] See also Figure 2 The bottom of the base shell 110 may also be provided with an air inlet 102, and the top of the atomizer 10 is provided with a mist outlet 101, which is connected to the smoke chamber 11. The atomizer assembly 140 atomizes the aromatherapy medium and then it enters the smoke chamber 11. The fan 520 blows the aromatherapy smoke in the smoke chamber 11 out of the mist outlet 101 through the air guide shroud 121, thereby achieving the aromatherapy smoke landscape and misting effect, which can improve the aesthetics. Since the aromatherapy smoke landscape is located in the middle of the atomizer 10, placing the solar base 20 at the bottom of the atomizer 10 will not affect the visual effect of the aromatherapy smoke landscape, thus improving the aesthetics.
[0050] Further, see Figure 12The battery 510 may be positioned, for example, close to the switch button 310. A switch button circuit board 320 may also be positioned between the switch button 310 and the battery 510, and the switch button circuit board 320 is electrically connected to the main control circuit board 200. The battery 510 and fan 520 are positioned adjacent to each other, with the fan 520 positioned close to the second power supply unit 400. The air guide shroud 121 is positioned on the side close to the second power supply unit 400. When the user is facing the switch button 310, the air guide shroud 121 will be obscured by the middle part of the atomizer 10, such as the air guide 120 and / or the support assembly 130, further improving the aesthetics.
[0051] Furthermore, it is understood that the foregoing embodiments are merely illustrative examples of this utility model. Provided that the technical features do not conflict, the structure is not contradictory, and the inventive purpose of this utility model is not violated, the technical solutions of the various embodiments can be arbitrarily combined and used.
[0052] In the several embodiments provided in this application, it should be understood that the disclosed systems, apparatuses, and methods can be implemented in other ways. For example, the apparatus embodiments described above are merely illustrative; for instance, the division of units is only a logical functional division, and in actual implementation, there may be other division methods. For example, multiple units or components may be combined or integrated into another system, or some features may be ignored or not executed. Furthermore, the coupling or direct coupling or communication connection shown or discussed may be an indirect coupling or communication connection between devices or units through some interfaces, and may be electrical, mechanical, or other forms.
[0053] The units described as separate components may or may not be physically separate. The components shown as units may or may not be physical units; that is, they may be located in one place or distributed across multiple network units. Some or all of the units can be selected to achieve the purpose of this embodiment according to actual needs.
[0054] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model, and not to limit it. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this utility model.
Claims
1. An atomizing device, characterized in that, include: Atomizer includes a circuit board with a first power supply unit on the circuit board; the atomizer also includes a second power supply unit on the circuit board, the second power supply unit being electrically connected to an external power source to provide power for the atomizer's operation; and... A solar base is detachably connected to the atomizer. The solar base is also equipped with a solar panel and a conductive component. The conductive component and the solar panel are electrically connected. When the atomizer is connected to the solar base, the first power supply unit is electrically connected to the conductive component, and the electrical energy generated by the solar panel provides power for the atomizer.
2. The atomizing device as described in claim 1, characterized in that, The solar base includes a bottom wall, a top wall opposite to the bottom wall, and a side wall connecting the bottom wall and the top wall; The solar panel is disposed on the side wall; or, the top wall includes a connecting surface and an extension surface extending outward from the connecting surface, the connecting surface being used to connect with the atomizer, and the solar panel being disposed on the extension surface.
3. The atomizing device as described in claim 2, characterized in that, The second power supply unit includes a power supply interface that passes through the outer casing of the atomizer to be exposed to the outside, and the power supply interface faces the side where the extension surface is located.
4. The atomizing device as described in claim 1, characterized in that, The conductive component includes a first conductive element and a second conductive element. The second conductive element is electrically connected to the solar panel and the first conductive element, respectively. The first conductive element can contact the first power supply unit to achieve electrical connection.
5. The atomizing device as described in claim 4, characterized in that, The atomizer includes a bottom shell located at the bottom, on which a first through hole is provided, and the solar base is provided with a second through hole. The first conductive element passes through the second through hole and the first through hole in sequence and is electrically connected to the first power supply unit.
6. The atomizing device as described in claim 5, characterized in that, The first power supply unit includes a conductive post, one end of which is connected to the circuit board, and the other end extends toward the bottom shell with its end located inside the first through hole or inside the atomizer.
7. The atomizing device as described in claim 6, characterized in that, The circuit board has a third through hole, and the conductive post passes through the third through hole and is electrically connected to the circuit board.
8. The atomizing device as described in claim 7, characterized in that, The conductive post includes a protrusion that extends from the side of the circuit board away from the bottom shell, and the atomizer is also provided with a clearance position to avoid the protrusion.
9. The atomizing device according to any one of claims 1 to 8, characterized in that, The atomizer also includes a switch button, which is disposed opposite to the second power supply unit on opposite sides of the atomizer, and / or, when the atomizer is connected to the solar base, the solar panel and the second power supply unit are located on the same side of the atomizer.
10. The atomizing device as described in claim 9, characterized in that, The atomizer also includes a battery and a fan, the battery and the fan are arranged adjacent to each other, the battery is arranged near the switch button and the fan is arranged near the second power supply unit.
11. The atomizing device as described in claim 10, characterized in that, The atomizer also includes a visible cover, an atomizer assembly, and a flow guide. The visible cover surrounds the outside of the flow guide to form a smoke chamber. The mist outlet of the atomizer assembly is connected to the smoke chamber. The fan is located on the side of the flow guide away from the smoke chamber. The switch button and the second power supply unit are located on opposite sides of the flow guide. The guide member is also provided with an air guide hood, which has a gas flow channel inside. The two ends of the gas flow channel are respectively connected to the air outlet of the fan and the smoke chamber. The air guide hood is located inside the smoke chamber and is located near the second power supply unit. The air guide hood and the switch button are located on opposite sides of the guide member.
12. The atomizing device according to any one of claims 1 to 8, characterized in that, The atomizer is provided with a first magnetic suction component, and the solar base is provided with a second magnetic suction component. When the atomizer is connected to the solar base, the first magnetic suction component and the second magnetic suction component are magnetically connected.
13. The atomizing device according to any one of claims 1 to 8, characterized in that, The atomizer includes a bottom shell located at the bottom, and the solar base is provided with a placement slot, which is adapted to accommodate the bottom shell of the atomizer.