Multi-airway atomizer
By separating the atomizer coil and microphone into different chambers within the atomizer, the problem of microphone failure due to condensation contact is solved, thus improving microphone lifespan and device reliability.
Patent Information
- Application Number
- CN202323083307.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2023-11-15
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2033-11-15
AI Technical Summary
In existing atomizers, the microphone is prone to failure due to contact with condensate, causing the atomizer coil to fail to start.
The atomizer core and microphone are placed in separate compartments, and the partition design on the shell prevents condensate from coming into contact with the microphone, thus preventing it from malfunctioning.
This effectively avoids the risk of microphone failure due to contact with condensate, thus improving the microphone's lifespan and the device's reliability.
Smart Images

Figure CN223773095U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of atomizing device technology, and in particular to a multi-channel atomizer. Background Technology
[0002] An atomizer is a device that heats a liquid to generate an aerosol using an atomizing coil. It typically includes a liquid reservoir, an atomizing coil, and an airflow channel. The liquid reservoir stores the liquid; the atomizing coil heats the liquid to generate an aerosol, which then flows out through the airflow channel.
[0003] To detect the presence of airflow within the airway, a microphone is installed inside. As the aerosol flows out of the airway, some of it condenses and adheres to the inner wall of the airway. Once it accumulates to a certain extent, it flows back along the airway. When this condensed liquid comes into contact with the microphone, it may cause the microphone to malfunction, preventing the atomizer coil from starting. Utility Model Content
[0004] In view of this, the purpose of this application is to provide a multi-channel atomizer to solve the problem that the microphone in existing atomizers is at risk of failure due to contact with condensate.
[0005] To achieve the above technical objectives, this application provides a multi-channel atomizer, comprising: a shell, a mouthpiece, an atomizing coil, and a microphone;
[0006] The shell is provided with a first compartment and a second compartment that are separated from each other;
[0007] The shell is provided with an air inlet that connects to the first compartment;
[0008] The atomizing core is disposed in the first chamber;
[0009] The microphone is located in the second compartment;
[0010] The suction nozzle is disposed on the housing and connects the first compartment and the second compartment.
[0011] Furthermore, the air inlet is located on the side of the first chamber near the nozzle.
[0012] Furthermore, oil-absorbing cotton is provided on the side of the first compartment away from the suction nozzle.
[0013] Furthermore, the suction nozzle includes a central airway and side airways that are separated from each other;
[0014] The central airway connects to the first compartment;
[0015] The side air passage connects to the second compartment.
[0016] Furthermore, it also includes control components;
[0017] A third compartment is also provided inside the shell;
[0018] The third compartment is located on the side furthest from the nozzle relative to the first compartment;
[0019] The shell is provided with a connecting hole that connects the first compartment and the third compartment;
[0020] The control component is movably disposed within the housing and is used to control the opening and closing of the connection hole.
[0021] Furthermore, the control element is rotatably disposed within the housing, and is used to rotate relative to the housing to cover or open the connection hole.
[0022] Furthermore, the first end of the control component passes through the connection hole and enters the first compartment;
[0023] The second end of the control component extends through the third compartment and out of the housing.
[0024] The control element is used to control the opening and closing of the connection hole by sliding linearly relative to the housing.
[0025] Furthermore, an insertion groove is provided on the outer end face of the housing;
[0026] The second end of the control element can slide into the insertion slot.
[0027] Furthermore, it also includes elastic elements;
[0028] The two ends of the elastic element abut against the control element and the housing respectively, and are used to provide the control element with an elastic force to press the connection hole.
[0029] Furthermore, it also includes a first seal;
[0030] The first sealing element is sleeved on the second end of the control element, and seals the connection between the control element and the housing.
[0031] As can be seen from the above technical solutions, this application provides a multi-channel atomizer, including: a shell, a mouthpiece, an atomizing core, and a microphone; the shell is provided with a first chamber and a second chamber that are separated from each other; the shell is provided with an air inlet that connects to the first chamber; the atomizing core is disposed in the first chamber; the microphone is disposed in the second chamber; the mouthpiece is disposed on the shell and connects the first chamber and the second chamber.
[0032] In this design, the atomizer core and microphone are located in the first and second chambers respectively, thus separating the microphone airflow from the atomizer core airflow. This prevents the condensate inside the atomizer core from contacting the microphone, avoiding the risk of the microphone malfunctioning due to contact with condensate. Attached Figure Description
[0033] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0034] Figure 1 This is a schematic diagram of the external structure of a multi-channel atomizer provided in an embodiment of this application;
[0035] Figure 2 A front cross-sectional view of a multi-channel atomizer provided in an embodiment of this application;
[0036] Figure 3 A cross-sectional perspective view of a multi-channel atomizer provided in an embodiment of this application;
[0037] Figure 4 This is a disassembled diagram of a multi-channel atomizer provided in an embodiment of this application. Detailed Implementation
[0038] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this application. Based on the embodiments in this application specification, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection claimed in this application.
[0039] In the description of the embodiments of this application, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing the embodiments of this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the embodiments of this application. In addition, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0040] In the description of the embodiments of this application, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a replaceable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in the embodiments of this application according to the specific circumstances.
[0041] Please see Figure 1 and Figure 2 The multi-channel atomizer provided in this application embodiment includes: a housing 10, a mouthpiece 20, an atomizing core 30, and a microphone 40.
[0042] The housing 10 has a first chamber 11 and a second chamber 12 that are separated from each other. The housing 10 has an air inlet 13 that communicates with the first chamber 11; the atomizing core 30 is disposed in the first chamber 11.
[0043] The microphone 40 is located in the second compartment 12; the suction nozzle 20 is located on the housing 10 and connects the first compartment 11 and the second compartment 12.
[0044] Both the first chamber 11 and the second chamber 12 are provided with air outlets; the air inlet 13 is connected to the air outlet of the first chamber 11 to form the atomizing core air channel; the air outlet of the second chamber 12 serves as the microphone air channel. The microphone 40 can be activated when there is negative pressure in the microphone air channel, therefore the second chamber 12 can be a semi-enclosed cavity, or a through hole can be provided on the housing 10 to connect to the second chamber 12, with this through hole serving as the air inlet of the second chamber 12.
[0045] In this embodiment, the microphone 40 and the atomizing core 30 are respectively disposed in the second chamber 12 and the first chamber 11. Therefore, the aerosol generated in the first chamber 11 and the condensate formed by the aerosol will not come into contact with the microphone 40 in the second chamber 12, thereby avoiding the risk of the microphone 40 failing due to contact with the condensate and improving the service life of the microphone 40.
[0046] In other embodiments, the first compartment 11 and the second compartment 12 within the housing 10 are two detachable components connected by magnetic attraction or snap-fit. After the second compartment 12 is separated, the microphone 40 and its air passage are exposed to the external environment, allowing for cleaning of the microphone and air passage. This added cleanability further improves the reliability and durability of the device.
[0047] In a further improved embodiment, the air inlet 13 is located on the side of the first chamber 11 near the nozzle 20.
[0048] Specifically, when the housing 10 is placed vertically, the nozzle 20 is generally located above the atomizing core 30. For ease of explanation, the embodiments provided in this application are also described with the housing 10 placed vertically and the nozzle 20 located above the atomizing core 30.
[0049] In this embodiment, the air inlet 13 being located on the side of the first chamber 11 near the mouthpiece 20 means that the air inlet 13 connects to the top of the first chamber 11. That is, the atomizer core airflow channel draws air from the top of the first chamber 11. Since the atomizer core 30 uses a bottom-intake method, the gas in the atomizer core airflow channel in this embodiment flows from top to bottom within the first chamber 11 to the bottom of the atomizer core 30, and then flows out from bottom to top within the atomizer core 30. This arrangement increases the airflow channel length, ensuring ample air intake, and also prevents condensate flowing back into the first chamber 11 from clogging the air inlet 13.
[0050] Furthermore, an oil-absorbing cotton 14 is provided on the side of the first compartment 11 away from the suction nozzle 20. That is, an oil-absorbing cotton 14 is provided at the bottom of the first compartment 11.
[0051] The oil-absorbing cotton 14 can absorb the backflow of condensate, further improving the problem of condensate flowing out of the air inlet 13.
[0052] In one embodiment, the mouthpiece 20 includes a central airway 21 and a side airway 22 that are separated from each other; the central airway 21 connects to the first chamber 11; and the side airway 22 connects to the second chamber 12.
[0053] The central air duct 21 has a larger flow area than the side air ducts 22, ensuring sufficient flow space for the atomizing core air duct. The independent design of the central air duct 21 and the side air ducts 22 effectively prevents the airflow from mixing and causing aerosol to flow into the second chamber 12.
[0054] Please see Figures 1 to 4 In other embodiments, the multi-channel atomizer also includes a control element 50; a third chamber 15 is also provided inside the housing 10; the third chamber 15 is located on the side away from the mouthpiece 20 relative to the first chamber 11; a connection hole 16 is provided on the housing 10 to connect the first chamber 11 and the third chamber 15; the control element 50 is movably disposed inside the housing 10 for controlling the opening and closing of the connection hole 16.
[0055] The housing 10 may contain an intermediate seat 19 and a base 18. The intermediate seat 19 is installed in the middle of the housing 10 and forms a first chamber 11 with the inner wall of the housing 10. Correspondingly, the atomizing core 50 is installed on the intermediate seat 19. The base 18 is installed at the bottom of the housing 10 and forms a third chamber 15 for storing atomizing liquid with the inner wall of the housing 10 and the intermediate seat 19. A connecting hole 16 is provided on the intermediate seat 19 and passes through the intermediate seat 19 to connect the first chamber 11 and the third chamber 15.
[0056] When the atomizer is not used for a long time, the control component 50 can close the connection hole 16, thus isolating the first chamber 11 and the third chamber 15 from each other. This prevents the atomized liquid in the third chamber 15 from entering the first chamber 11 and seeping out through the mouthpiece 20. When the atomizer needs to be used, the control component 50 can open the connection hole 16 to connect the first chamber 11 and the third chamber 15. Then, by flipping the entire atomizer, the atomized liquid in the third chamber 15 can flow into the first chamber 11 to saturate the liquid guide cotton.
[0057] In practical applications, some atomizing devices do not have a third compartment to avoid leakage of the atomizing liquid. However, this method has the problem of limited liquid storage capacity, requiring the carrying of a separate storage bottle when going out. In this embodiment, the atomizer can control the on / off state of the first compartment 11 and the third compartment 15 through the control component 50, without the need for a separate storage bottle. This method has the advantages of simple operation, easy portability, low leakage risk, and the atomizing liquid is less prone to deterioration.
[0058] It should be noted that a battery compartment 110 may also be provided inside the housing 10; the battery compartment 110 contains a battery module 80 electrically connected to the atomizing core 30. Simultaneously, the battery cell and control components may be disposed between the battery module 80 and the atomizing core 30. The battery compartment 110 may be interconnected with or isolated from the second compartment 12. The battery compartment 110 can be magnetically or snap-fitted to the first compartment 11 and the second compartment 12, thus forming a detachable first compartment 11, second compartment 12, and battery compartment 110 within the housing 10.
[0059] In one embodiment, the control element 50 is linearly slidable within the housing 10, and is used to cover or open the connection hole 16 by sliding linearly relative to the housing 10. When the control element 50 covers the connection hole 16, the control element 50 closes the connection hole 16.
[0060] That is, the control element 50 opens or closes the connection hole by sliding in a straight line. The sliding direction of the control element 50 can be vertical, and one end of the control element 50 can be connected to a cover plate 51. By pulling or pressing the control element 50, the cover plate 51 can be moved to cover or move away from the connection hole 16, thereby controlling the opening and closing of the connection hole 16.
[0061] For a more specific embodiment, please refer to Figure 3 and Figure 4 The first end of the control element 50 passes through the connection hole 16 and enters the first compartment 11; the second end of the control element passes through the third compartment 15 and extends out of the housing 10.
[0062] In this embodiment, the connecting hole 16 can provide guidance for the sliding of the control member 50; correspondingly, the control member 50 is rod-shaped, and the connecting hole 16 can be elongated.
[0063] The second end of the control element 50 extending out of the housing 10 is its bottom end; the control element 50 can be operated through the second end of the control element 50. The first end of the control element 50 enters the first chamber 11. Therefore, in this embodiment, when the connection hole 16 is closed, the control element 50 covers the connection hole 16 through the cover plate 51; when it is necessary to open the connection hole 16, the connection hole 16 can be opened by moving the control element 50 towards the suction nozzle 20, that is, by pressing the control element 50.
[0064] In a further improved embodiment, an insertion groove 17 is provided on the outer end face of the housing 10; the second end of the control member 50 can slide into the insertion groove 17.
[0065] The insertion groove 17 allows the second end of the control member 50 to enter, providing guidance for the sliding of the control member 50 while also preventing the bottom end of the control member 50 from protruding relative to the housing 10, which would make it inconvenient to place the housing 10.
[0066] Furthermore, it also includes a first seal 71; the first seal 71 is sleeved on the second end of the control member 50 and seals the connection between the control member 50 and the housing 10.
[0067] The first seal 71 can also be a silicone ring, used to ensure a sealing effect between the control element 50 and the housing 10 during linear sliding. Correspondingly, the first seal 71 can be fixedly installed in the insertion groove 17.
[0068] Furthermore, a second sealing element 72 is provided on the end face of the cover plate 51 facing the connection hole 16; the cover plate 51 is used to cover the connection hole 16 and seal the connection hole 16 through the second sealing element 72.
[0069] The second sealing element 72 can be a silicone ring; when the cover plate 51 covers the connection hole 16, the second sealing element 72 surrounds the connection hole 16 to seal and isolate the connection hole 16 from the first chamber 11.
[0070] In one implementation, the control element 50 can be snapped together with the housing 10; specifically, the housing 10 can be provided with a first snap position and a second snap position; the control element 50 is provided with a snap, and during the linear sliding of the control element 50, the snap can be driven to switch between the first snap position and the second snap position.
[0071] When the buckle is connected to the first buckle position, the cover plate 51 separates from the connecting hole 16, allowing the connecting hole 16 to open; when the buckle is connected to the second buckle position, the cover plate 51 covers the connecting hole 16, closing the connecting hole 16.
[0072] In another embodiment, an elastic member 60 is also included; the two ends of the elastic member 60 abut against the control member 50 and the housing 10 respectively, for providing the control member 50 with an elastic force to press the connection hole 16.
[0073] When the control member 50 is pressed, the second end of the control member 50 compresses the elastic member 30 and pushes the cover plate 51 away from the connection hole 16 to open the connection hole 16. After the pressing force on the control member 50 is removed, the control member 50 can drive the cover plate 51 to approach the connection hole 16 and seal the connection hole 16 due to the restoring force of the elastic member 30.
[0074] Correspondingly, the elastic element 30 can be disposed in the insertion groove 17; the second end of the control element 50 can be provided with a limiting plate for the elastic element 30 to abut against.
[0075] In other embodiments, the control member 50 may have an injection channel inside; the injection channel is connected to the outside of the housing 10; the control member 50 can control the injection channel to be connected to or disconnected from the third chamber 15 by sliding linearly along the housing 10.
[0076] Specifically, the injection channel can be L-shaped, with both ends connected to the side and bottom of the control component 50, respectively; the control component 50 can control the injection channel to be connected to or disconnected from the third chamber 15 by linear sliding.
[0077] In the reset state, the bottom end of the control component 50 can be flush with the bottom end of the housing 10. At this time, the liquid injection channel is isolated from the third chamber 15, and the cover plate 51 closes the connection hole 16. By pressing the control component 50, the connection hole 16 can be opened and the liquid injection channel can be connected to the third chamber 15. Then, the user can inject liquid into the third chamber 15 through the liquid injection channel. After that, the control component 50 can be reset to isolate the third chamber 15 from the liquid injection channel.
[0078] In another embodiment, a liquid injection plug 90 is also included; the housing 10 is provided with a liquid injection hole 111 communicating with the third chamber 15; the liquid injection plug 90 is used to block the liquid injection hole 111.
[0079] In this embodiment, the atomizing liquid can be injected into the third chamber 15 through the injection hole 111, and then the injection hole 111 can be sealed by the injection plug 90.
[0080] In practical applications, the control element 50 can also cover or open the connection hole 16 by rotating relative to the housing 10. That is, the control element 50 can be rotatably disposed within the housing 10.
[0081] The above are merely preferred embodiments of this application and are not intended to limit the present invention. Although the present application has been described in detail with reference to examples, those skilled in the art can still modify the technical solutions described in the foregoing examples or make equivalent substitutions for some of the technical features. However, any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the protection scope of this application.
Claims
1. A multi-channel atomizer, characterized in that, include: Shell (10), mouthpiece (20), atomizer core (30) and microphone (40); The shell (10) is provided with a first compartment (11) and a second compartment (12) that are separated from each other; The shell (10) is provided with an air inlet (13) that communicates with the first compartment (11); The atomizing core (30) is disposed in the first chamber (11); The microphone (40) is located in the second compartment (12); The suction nozzle (20) is disposed on the housing (10) and connects the first compartment (11) and the second compartment (12).
2. The multi-channel atomizer according to claim 1, characterized in that, The air inlet (13) is located on the side of the first chamber (11) near the nozzle (20).
3. The multi-channel atomizer according to claim 1 or 2, characterized in that, Oil-absorbing cotton (14) is provided on the side of the first compartment (11) away from the suction nozzle (20).
4. The multi-channel atomizer according to claim 1, characterized in that, The suction nozzle (20) includes a central airway (21) and side airways (22) that are separated from each other; The central airway (21) is connected to the first chamber (11); The side air passage (22) is connected to the second compartment (12).
5. The multi-channel atomizer according to claim 1, characterized in that, It also includes control components (50); A third compartment (15) is also provided inside the shell (10); The third compartment (15) is located on the side away from the nozzle (20) relative to the first compartment (11); The housing (10) is provided with a connecting hole (16) that connects the first compartment (11) and the third compartment (15); The control element (50) is movably disposed within the housing (10) and is used to control the opening and closing of the connection hole (16).
6. The multi-channel atomizer according to claim 5, characterized in that, The control element (50) is rotatably disposed within the housing (10) and is used to rotate relative to the housing (10) to cover or open the connection hole (16).
7. The multi-channel atomizer according to claim 5, characterized in that, The first end of the control element (50) passes through the connection hole (16) and enters the first compartment (11); The second end of the control element (50) extends through the third compartment (15) and out of the housing (10); The control element (50) is used to control the opening and closing of the connection hole (16) by sliding linearly relative to the housing (10).
8. The multi-channel atomizer according to claim 7, characterized in that, The outer end face of the housing (10) is provided with an insertion groove (17); The second end of the control element (50) can slide into the insertion groove (17).
9. The multi-channel atomizer according to claim 7 or 8, characterized in that, It also includes elastic elements (60); The two ends of the elastic member (60) abut against the control member (50) and the housing (10) respectively, and are used to provide the control member (50) with an elastic force to press the connection hole (16).
10. The multi-channel atomizer according to claim 7 or 8, characterized in that, It also includes a first seal (71); The first sealing member (71) is sleeved on the second end of the control member (50) and seals the control member (50) and the housing (10).