Electronic atomizer

CN224722705UActive Publication Date: 2026-09-08SHENZHEN TRANSPRING ENTERPRISE LTD
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Patent Information

Application Number
CN202521993045.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-16
Publication Date
2026-09-08
Estimated Expiration
2035-09-16

AI Technical Summary

Technical Problem

[0004]本实用新型的目的是提供一种电子雾化器,解决电子雾化器的气道和雾化件切换操作繁琐的问题

Benefits of technology

[0018] By setting the first atomizing element to be housed in the first atomizing channel and the second atomizing element to be housed in the second atomizing channel, the adjustment component can drive the control switch to control the operation of the corresponding first atomizing element and/or second atomizing element while switching the connection hole to the first atomizing channel and/or the second atomizing channel. The operation of the corresponding atomizing element can be switched at the same time as switching the atomizing channel, which is convenient to operate and eliminates the need to set up multiple switches to control the two atomizing elements separately. This reduces the space occupation and is conducive to the lightweight design of electronic atomizers.

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Abstract

An electronic atomizer comprises a shell assembly, an adjusting assembly, an atomizing assembly and a control switch, the shell assembly has a first atomizing channel and a second atomizing channel arranged at intervals; the adjusting assembly is in sliding connection with the shell assembly, the adjusting assembly has a communication hole, and the adjusting assembly is used to move to make the communication hole communicate with the first atomizing channel and / or the second atomizing channel; the atomizing assembly comprises a first atomizing piece and a second atomizing piece, the first atomizing piece is accommodated in the first atomizing channel, and the second atomizing piece is accommodated in the second atomizing channel; the adjusting assembly is also used to drive the control switch to switch between different gears to make the first atomizing piece and / or the second atomizing piece in a working state; wherein when the communication hole communicates with the first atomizing channel and / or the second atomizing channel, the control switch controls the corresponding first atomizing piece and / or the second atomizing piece to work. The electronic atomizer in the utility model can synchronously switch the corresponding atomizing piece to work when the atomizing channels are switched, and the operation is convenient.
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Description

Technical Field

[0001] This utility model relates to the field of electronic atomizer technology, specifically to an electronic atomizer. Background Technology

[0002] Electronic atomizers have become an innovative consumer electronics product, gaining increasing popularity worldwide. Looking at the global market size of the electronic atomizer industry, the overall trend is upward.

[0003] Existing electronic atomizers require controlling the operation of each atomizing element by controlling its corresponding switch, and using regulating valves or levers to switch airways or adjust the draw resistance. These two functions are independently set up, making the operation cumbersome. Utility Model Content

[0004] The purpose of this invention is to provide an electronic atomizer that solves the problem of cumbersome operation when switching between the air passage and atomizing element in electronic atomizers.

[0005] To achieve the objectives of this utility model, the following technical solution is provided:

[0006] In a first aspect, this utility model provides an electronic atomizer, including a housing assembly, an adjustment assembly, an atomizing assembly, and a control switch. The housing assembly has a first atomizing channel and a second atomizing channel spaced apart. The adjustment assembly is slidably connected to the housing assembly and has a communicating hole. The adjustment assembly is used to move so that the communicating hole communicates with the first atomizing channel and / or the second atomizing channel. The atomizing assembly includes a first atomizing element and a second atomizing element, the first atomizing element being housed in the first atomizing channel and the second atomizing element being housed in the second atomizing channel. The adjustment assembly is also used to drive the control switch to switch between different gear positions so that the first atomizing element and / or the second atomizing element are in a working state.

[0007] When the connecting hole is connected to the first atomizing channel and / or the second atomizing channel, the control switch controls the corresponding first atomizing element and / or the second atomizing element to work.

[0008] In one embodiment, the housing assembly has an installation space and an opening communicating with the installation space, the adjustment assembly includes a slider and an adjustment member, the slider is received in the installation space and slidably connected to the housing assembly, the adjustment member is connected to the slider and exposed from the opening, and the slider has the communicating hole.

[0009] In one embodiment, the control switch includes a body and a paddle, the paddle being connected and fixed to the slider, and the slider being used to drive the paddle to move relative to the body, so that the control switch switches between different gears.

[0010] In one embodiment, the housing assembly includes a main shell and a support member. The main shell has the mounting space and the opening. The support member is received in the mounting space and has a sliding cavity communicating with the opening. The sliding member is received in the sliding cavity and slidably connected to the support member.

[0011] In one embodiment, the electronic atomizer further includes a circuit board, the atomizing component and the circuit board are respectively disposed on opposite sides of the support member, and the body is connected and fixed to the circuit board.

[0012] In one embodiment, the connecting hole includes a first connecting hole and a second connecting hole, the first connecting hole and the second connecting hole being spaced apart from each other on the sliding member, the first connecting hole communicating with the first atomizing channel, and / or the second connecting hole communicating with the second atomizing channel.

[0013] In one embodiment, the support member has a first connecting hole and a second connecting hole spaced apart. Both the first connecting hole and the second connecting hole communicate with the first atomizing channel. The first connecting hole is closer to the outside of the electronic atomizer than the second connecting hole. The first connecting hole is used to communicate with either the first connecting hole or the second connecting hole.

[0014] In one embodiment, the support member further has a third connecting hole and a fourth connecting hole spaced apart, both of which communicate with the second atomizing channel, and the fourth connecting hole is closer to the outside of the electronic atomizer than the third connecting hole. The second connecting hole is used to communicate with the third connecting hole or the fourth connecting hole.

[0015] When the first connecting hole is connected to the first connecting hole, the second connecting hole is connected to the third connecting hole.

[0016] In one embodiment, the housing assembly further includes an oil storage shell, a first atomizing tube, and a second atomizing tube. The oil storage shell is connected to the main shell. Both the first atomizing tube and the second atomizing tube pass through the oil storage shell. The first atomizing tube surrounds the first atomizing channel, and the second atomizing tube surrounds the second atomizing channel.

[0017] In one embodiment, the housing assembly further includes a partition wall connected to the oil storage shell and dividing the space inside the oil storage shell into a first liquid storage chamber and a second liquid storage chamber, wherein the first atomizing tube passes through the first liquid storage chamber and the second atomizing tube passes through the second liquid storage chamber.

[0018] By setting the first atomizing element to be housed in the first atomizing channel and the second atomizing element to be housed in the second atomizing channel, the adjustment component can drive the control switch to control the operation of the corresponding first atomizing element and / or second atomizing element while switching the connection hole to the first atomizing channel and / or the second atomizing channel. The operation of the corresponding atomizing element can be switched at the same time as switching the atomizing channel, which is convenient to operate and eliminates the need to set up multiple switches to control the two atomizing elements separately. This reduces the space occupation and is conducive to the lightweight design of electronic atomizers. Attached Figure Description

[0019] To more clearly illustrate the technical solutions in the embodiments of this utility model 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 utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0020] Figure 1 A perspective view of an electronic atomizer according to one embodiment;

[0021] Figure 2 This is a cross-sectional schematic diagram of an embodiment of an electronic atomizer;

[0022] Figure 3 This is an exploded view of a partial structure of an electronic atomizer according to one embodiment;

[0023] Figure 4 This is an exploded schematic diagram of an embodiment of an electronic atomizer.

[0024] Explanation of reference numerals in the attached figures:

[0025] 100 - Electronic atomizer, 10 - Housing assembly, 11 - Main housing, 111 - Mounting space, 112 - Opening, 12 - Support, 121 - First connecting hole, 122 - Second connecting hole, 123 - Third connecting hole, 124 - Fourth connecting hole, 125 - Sliding cavity, 13 - Oil reservoir, 131 - First liquid reservoir, 132 - Second liquid reservoir, 14 - First atomizing tube, 141 - First atomizing channel, 15 - Second atomizing tube, 151 - Second atomizing tube Channel, 16-partition wall, 17-outer shell, 21-first atomizing element, 22-second atomizing element, 30-adjustment component, 31-slider, 311-first connecting hole, 312-second connecting hole, 32-adjustment component, 41-control switch, 411-body, 412-paddle, 42-air supply component, 421-fan, 422-support shell, 43-circuit board, 44-battery, 45-microphone, 46-oil-absorbing cotton, 50-mouthpiece, 51-air guide channel;

[0026] Z - First direction. Detailed Implementation

[0027] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of them. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0028] It should be noted that when a component is said to be "fixed" to another component, it can be directly on the other component or it can be in a middle component. When a component is said to be "connected" to another component, it can be directly connected to the other component or it may be in a middle component.

[0029] Unless otherwise defined, all technical and scientific terms used in this invention have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used in this specification is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. The term "and / or" as used in this invention includes any and all combinations of one or more of the associated listed items.

[0030] The following detailed description, in conjunction with the accompanying drawings, outlines some embodiments of the present invention. Unless otherwise specified, the following embodiments and features can be combined with each other.

[0031] An electronic atomizer is used to store and atomize an aerosol-generating matrix to form an aerosol that can be inhaled by a user. This electronic atomizer can be used in various fields, such as medical, cosmetic, and recreational use. In one specific embodiment, the electronic atomizer can be used in an electronic aerosolization device to atomize the aerosol-generating matrix and generate an aerosol for inhalation; the following embodiments all use recreational use as an example. Of course, in other embodiments, the electronic atomizer can also be applied to hairspray devices to atomize hairspray used for hair styling; or to devices for treating upper and lower respiratory system diseases to atomize medical drugs.

[0032] Please refer to Figures 1 to 4 This utility model provides an electronic atomizer 100, including a housing assembly 10, an adjustment assembly 30, an atomizing assembly, and a control switch 41.

[0033] The housing assembly 10 has a first atomizing channel 141 and a second atomizing channel 151 arranged at intervals. The housing assembly 10 can be a one-piece structure or a split structure, without limitation.

[0034] In one embodiment, the housing assembly 10 has a mounting space 111 and an opening 112 communicating with the mounting space 111. Optionally, the housing assembly 10 includes a main housing 11 and a support member 12, the main housing 11 having the mounting space 111 and the opening 112, and the support member 12 being received in the mounting space 111.

[0035] The main shell 11 and the support component 12 can be made of transparent antistatic ABS material, acrylic, glass, steel, plastic, etc., without limitation. The main shell 11 and the support component 12 can be a one-piece structure manufactured by a molding process, such as stamping or casting, without limitation. Alternatively, the main shell 11 and the support component 12 can also be a separate structure, which can be connected and fixed by welding, bonding, snap-fitting, screwing, etc.

[0036] Optionally, the housing assembly 10 also includes an outer shell 17, within which the main shell 11 is housed. The outer surface of the main shell 11 may be in close contact with the inner wall of the outer shell 17.

[0037] In one implementation, such as Figure 2 As shown, the housing assembly 10 also includes an oil storage shell 13, a first atomizing tube 14 and a second atomizing tube 15. The oil storage shell 13 is connected to the main shell 11. The first atomizing tube 14 and the second atomizing tube 15 are both inserted through the oil storage shell 13. The first atomizing tube 14 encloses the first atomizing channel 141, and the second atomizing tube 15 encloses the second atomizing channel 151.

[0038] Optionally, the oil reservoir 13 and the main shell 11 can be connected and fixed, or they can be detached; there are no restrictions.

[0039] The first atomizing tube 14 can be a one-piece structure or formed by splicing multiple tube segments sequentially. The connection method between the multiple tube segments can be welding, bonding, snap-fitting, screwing, etc., without limitation. The first atomizing tube 14 can extend along a straight line, or along a curve or zigzag line, without limitation.

[0040] Optionally, the oil reservoir 13 and the first atomizing tube 14 can be an integral structure, and the integral molding process can be stamping, casting, etc., without limitation. The oil reservoir 13 and the first atomizing tube 14 can also be a separate structure, and the oil reservoir 13 and the first atomizing tube 14 can be connected and fixed by welding, bonding, snap-fitting, screwing, etc.

[0041] Similarly, the structure of the second atomizing tube 15 is the same as that of the first atomizing tube 14, and will not be described again.

[0042] The atomizing assembly includes a first atomizing element 21 and a second atomizing element 22. The first atomizing element 21 is housed in a first atomizing channel 141, and the second atomizing element 22 is housed in a second atomizing channel 151.

[0043] Both the first atomizing element 21 and the second atomizing element 22 can adopt any feasible atomizing structure in the art, and there are no specific restrictions.

[0044] Optionally, taking the first atomizing element 21 as an example, the first atomizing element 21 includes an atomizing core (not shown) and a heating structure (not shown). The heating structure and the atomizing core can be connected and fixed by means of snap-fit, screw-fit, welding, and bonding, without limitation. In a specific embodiment, the heating structure and the atomizing core are sintered together to form an integral structure.

[0045] The first atomizing element 21 can be a single-heating-wire atomizing core, a dual-heating-wire atomizing core, a multi-heating-wire atomizing core, etc., without specific limitations. The atomizing core can be a ceramic atomizing core, a cotton wick atomizing core, etc., without limitations. Optionally, the atomizing core has a porous structure inside, so that the oil in the liquid storage chamber enters the atomizing core and disperses to form small droplets, which are then heated and evaporated by the heating structure to form even smaller aerogel particles. For example, the atomizing core is a ceramic atomizing core. Optionally, the heating structure can be made of a material that meets the requirements of structural strength, high temperature resistance, and ease of processing and molding, specifically such as iron-chromium-aluminum alloy, nickel-chromium alloy, nickel, titanium, and stainless steel, without limitations.

[0046] The structure of the second atomizing element 22 can refer to that of the first atomizing element 21, or any other feasible atomizing structure can be used without restriction.

[0047] Optionally, the first atomizing element 21 and the first atomizing tube 14 (and the second atomizing element 22 and the second atomizing tube 15) can be connected and fixed by welding, bonding, snap-fitting, screwing, etc., without limitation.

[0048] With this configuration, the first atomizing tube 14 and the second atomizing tube 15 pass through the oil storage shell 13, the first atomizing element 21 is housed in the first atomizing tube 14, and the second atomizing element 22 is housed in the second atomizing tube 15. The connection between the atomizing components and the shell assembly 10 is simple and reliable, and the atomizing components do not occupy too much of the internal space of the shell assembly 10, which can improve the utilization rate of the internal space of the electronic atomizer 100.

[0049] In one embodiment, the housing assembly 10 further includes a partition wall 16, which is connected to the oil storage shell 13 and divides the space inside the oil storage shell 13 into a first liquid storage chamber 131 and a second liquid storage chamber 132. A first atomizing tube 14 passes through the first liquid storage chamber 131, and a second atomizing tube 15 passes through the second liquid storage chamber 132.

[0050] The partition wall 16 and the oil reservoir 13 can be an integral structure or a separate structure, without limitation. Optionally, the outer surface of the first atomizing tube 14, the inner wall of the oil reservoir 13, and the partition wall 16 together form the first liquid storage cavity 131, and the outer surface of the second atomizing tube 15, the inner wall of the oil reservoir 13, and the partition wall 16 together form the second liquid storage cavity 132.

[0051] Optionally, the first liquid storage chamber 131 and the second liquid storage chamber 132 can be used to hold the same liquid to be atomized, or they can be used to hold different liquids to be atomized, without limitation. With this configuration, the first atomizing element 21 and the second atomizing element 22 can be used to atomize the same or different flavored liquids, allowing users to inhale vapors of different flavors or a mixture of multiple flavors, resulting in a better user experience.

[0052] The adjustment component 30 is slidably connected to the housing component 10. The adjustment component 30 has a communication hole and is used to move so that the communication hole communicates with the first atomizing channel 141 and / or the second atomizing channel 151.

[0053] Optionally, the adjustment component 30 is housed in the installation space 111, and at least a portion of the adjustment component 30 is exposed through the opening 112. This arrangement facilitates user operation of the adjustment component 30.

[0054] Optionally, the adjustment component 30 and the housing component 10 can be connected by means of adhesive bonding, snap-fit, screwing, magnetic connection, etc., without limitation. Optionally, the adjustment component 30 can be slidably connected to the main housing 11 or the support component 12.

[0055] The adjustment component 30 is also used to drive the control switch 41 to switch between different gears so that the first atomizing element 21 and / or the second atomizing element 22 are in working state. When the connecting hole is connected to the first atomizing channel 141 and / or the second atomizing channel 151, the control switch 41 controls the corresponding first atomizing element 21 and / or the second atomizing element 22 to work.

[0056] Understandably, in one specific embodiment, the electronic atomizer 100 includes three operating modes: the connecting hole of the adjusting component 30 is connected to the first atomizing channel 141, and the control switch 41 controls the first atomizing element 21 to work; the connecting hole of the adjusting component 30 is connected to the second atomizing channel 151, and the control switch 41 controls the second atomizing element 22 to work; the connecting hole of the adjusting component 30 is connected to both the first atomizing channel 141 and the second atomizing channel 151, and the control switch 41 controls the first atomizing element 21 and the second atomizing element 22 to work simultaneously.

[0057] With this setup, users can quickly switch between different atomizing components as needed, making operation convenient and providing a rich user experience.

[0058] The electronic atomizer 100 in this embodiment of the present invention is configured with a first atomizing element 21 housed in a first atomizing channel 141 and a second atomizing element 22 housed in a second atomizing channel 151. When the adjustment component 30 switches the connection between the connecting hole and the first atomizing channel 141 and / or the second atomizing channel 151, it can drive the control switch 41 to control the operation of the corresponding first atomizing element 21 and / or the second atomizing element 22. The operation of the corresponding atomizing element can be switched at the same time as the atomizing channel is switched, which is convenient to operate. It does not require multiple switches to control the two atomizing elements separately, which can reduce the space occupation and facilitate the lightweight design of the electronic atomizer 100.

[0059] In one implementation, such as Figure 2 , Figure 3 and Figure 4 As shown, the adjustment assembly 30 includes a slider 31 and an adjustment member 32. The slider 31 is housed in the mounting space 111 and is slidably connected to the housing assembly 10. The adjustment member 32 is connected to the slider 31 and exposed from the opening 112. The slider 31 has a communicating hole.

[0060] The sliding component 31 and the adjusting component 32 can be an integral structure or a separate structure, without limitation. Optionally, the sliding component 31 and the adjusting component 32 can be connected and fixed by welding, bonding, snap-fitting, screwing, riveting, magnetic connection, etc.

[0061] Optionally, the opening 112 connects the installation space 111 to the outside. When the atomizer 100 is a cube, the shape of the opening 112 can be rectangular, circular, elliptical, etc., without limitation. When the atomizer 100 is a cylinder, the opening 112 can extend circumferentially along the atomizer 100, and the sidewall of the opening 112 is curved.

[0062] The adjusting element 32 can be a slider, a roller, or any other feasible structure, without specific limitations. Optionally, at least a portion of the adjusting element 32 may be exposed through the opening 112 for user convenience.

[0063] With this configuration, the user can operate the adjusting member 32, which drives the sliding member 31 to move, thereby switching the connection between the connecting hole and the first atomizing channel 141 and / or the second atomizing channel 151. At the same time, the sliding member 31 can drive the control switch 41 to control the operation of the corresponding first atomizing element 21 and / or the second atomizing element 22, making the operation convenient.

[0064] In one implementation, such as Figure 3 As shown, the control switch 41 includes a body 411 and a paddle 412. The paddle 412 is connected and fixed to the slider 31. The slider 31 is also used to drive the paddle 412 to move relative to the body 411 so that the control switch 41 switches between different gears.

[0065] Optionally, the paddle 412 and the slider 31 can be connected and fixed by means of adhesive, snap-fit, screw, riveting, magnetic connection, etc., without restriction.

[0066] In one specific embodiment, the control switch 41 includes a first adjustment position to a third adjustment position arranged sequentially. A paddle 412 can move between the first and third adjustment positions under the influence of a slider 31. The paddle 412 can communicate with different contacts in different adjustment positions to send corresponding control signals to the atomizing components. When the paddle 412 is switched to the first position, the control switch 41 controls the first atomizing component 21 to be in a working state; when the paddle 412 is switched to the second position, the control switch 41 controls the first atomizing component 21 and the second atomizing component 22 to be in a working state; when the paddle 412 is switched to the third position, the control switch 41 controls the second atomizing component 22 to be in a working state.

[0067] With this configuration, the movement of the slider 31 can drive the paddle 412 to move, thereby controlling the operation of the corresponding first atomizing element 21 and / or second atomizing element 22. There is no need to control the connection of the airway and the operation of the atomizing element separately, making the operation convenient.

[0068] In one implementation, such as Figure 3 As shown, the support member 12 has a sliding cavity 125, which communicates with the opening 112. The slider 31 is housed in the sliding cavity 125 and is slidably connected to the support member 12.

[0069] Optionally, the support member 12 can be a slide rail-like structure, and the slider 31 can slide relative to the support member 12. In one specific embodiment, the support member 12 is made of silicone, which can reduce the sliding resistance of the slider 31 and prevent the slider 31 from generating excessive noise during sliding, thereby improving the user experience.

[0070] Optionally, the slider 31 is spaced from at least one side of the inner wall of the sliding cavity 125 in the sliding direction, and contacts the inner wall of the sliding cavity 125 in other directions.

[0071] With this configuration, the support member 12 can limit the sliding direction of the slider 31, preventing the slider 31 from moving around randomly and causing poor contact.

[0072] In one implementation, such as Figure 3 and Figure 4 As shown, the electronic atomizer 100 also includes a circuit board 43. The atomizing component and the circuit board 43 are respectively disposed on opposite sides of the support member 12, and the body 411 is connected and fixed to the circuit board 43.

[0073] Optionally, the control switch 41, the first atomizing element 21, and the second atomizing element 22 are all electrically connected to the circuit board 43. The connection method between the control switch 41, the first atomizing element 21, the second atomizing element 22 and the circuit board 43 can be welding, bonding, snap-fitting, screwing, etc., without limitation. Optionally, the circuit board 43 can also be connected and fixed to the main shell 11.

[0074] This arrangement achieves a reasonable layout of the circuit board 43, atomizing components, and adjustment components 30, resulting in a compact internal structure and high space utilization of the electronic atomizer 100.

[0075] In one implementation, such as Figure 3 As shown, the connecting hole includes a first connecting hole 311 and a second connecting hole 312. The first connecting hole 311 and the second connecting hole 312 are spaced apart on the sliding member 31. The first connecting hole 311 is connected to the first atomizing channel 141, and / or the second connecting hole 312 is connected to the second atomizing channel 151.

[0076] The shapes of the first connecting hole 311 and the second connecting hole 312 can be square, circular, triangular, trapezoidal, irregular, etc., without limitation. Optionally, the shapes and sizes of the first connecting hole 311 and the second connecting hole 312 can be the same or different, without limitation.

[0077] Optionally, the first connecting hole 311 and the second connecting hole 312 are approximately symmetrical with respect to the center line of the electronic atomizer 100. This is understandable, as... Figure 2 As shown, Z is the first direction. The first direction Z can be the height direction of the electronic atomizer 100. The centerline of the electronic atomizer 100 extends approximately along the first direction Z, and the left and right sides of the electronic atomizer 100 are approximately symmetrical about this centerline.

[0078] The slider 31 is used to move so that the first connecting hole 311 connects with the first atomizing channel 141 and / or the second connecting hole 312 connects with the second atomizing channel 151.

[0079] Optionally, the electronic atomizer 100 also includes an oil-absorbing cotton 46 disposed on the surface of the support 12 facing the atomizing assembly. The oil-absorbing cotton 46 is used to absorb condensate that may form in the first atomizing channel 141 and / or the second atomizing channel 151 to prevent oil leakage.

[0080] By setting a first connecting hole 311 and a second connecting hole 312, the slider 31 moves and switches the connection between the first connecting hole 311 and the first atomizing channel 141 and / or the second connecting hole 312 and the second atomizing channel 151, thereby realizing the switching of atomizing channels.

[0081] In one implementation, such as Figure 3 As shown, the support member 12 has a first connecting hole 121 and a second connecting hole 122 spaced apart. Both the first connecting hole 121 and the second connecting hole 122 are connected to the first atomizing channel 141. The first connecting hole 121 is closer to the outside of the electronic atomizer 100 than the second connecting hole 122. The first connecting hole 311 is used to connect with the first connecting hole 121 or the second connecting hole 122.

[0082] The shapes of the first connecting hole 121 and the second connecting hole 122 can be square, circular, triangular, trapezoidal, irregular, etc., without limitation. Optionally, the shapes and sizes of the first connecting hole 121 and the second connecting hole 122 can be the same or different, without limitation.

[0083] Optionally, the slider 31 is in close contact with the inner wall of the support 12 in the first direction, so as to isolate the first connecting hole 311 from the first atomizing channel 141 when the first connecting hole 311 is misaligned with the first connecting hole 121 and the second connecting hole 122. If airflow still enters the first atomizing channel 141 when the second atomizing element 22 is working, the user may directly inhale the gas without mixed atomizing liquid because the first atomizer is only in a non-working state, resulting in a poor user experience. This design can improve the user experience.

[0084] Optionally, when the control switch 41 is in the position where the first atomizing element 21 operates independently, the first connecting hole 311 is connected to one of the first connecting hole 121 and the second connecting hole 122; when the control switch 41 is in the position where the first atomizing element 21 and the second atomizing element 22 operate simultaneously, the first connecting hole 311 is connected to the other of the first connecting hole 121 and the second connecting hole 122; when the control switch 41 is in the position where the second atomizing element 22 operates independently, the first connecting hole 311 is offset from the first connecting hole 121 and the second connecting hole 122, and the airflow will not enter the first connecting hole 121 or the second connecting hole 122 through the first connecting hole 311.

[0085] With this configuration, the airflow can be controlled to flow into the first atomizing channel 141 by controlling whether the first connecting hole 311 is connected to the first connecting hole 121 and the second connecting hole 122 at different gear levels, thereby achieving the switching of the atomizing channel.

[0086] In one implementation, such as Figure 3 As shown, the support member 12 also has a third connecting hole 123 and a fourth connecting hole 124 spaced apart. Both the third connecting hole 123 and the fourth connecting hole 124 are connected to the second atomizing channel 151. The fourth connecting hole 124 is closer to the outside of the electronic atomizer 100 than the third connecting hole 123. The second connecting hole 312 is used to connect with the third connecting hole 123 or the fourth connecting hole 124.

[0087] The specific settings of the third connecting hole 123 and the fourth connecting hole 124 can be referred to the aforementioned first connecting hole 121 and second connecting hole 122, and will not be repeated here. Optionally, the distance between the first connecting hole 121 and the second connecting hole 122 can be equal to the distance between the third connecting hole 123 and the fourth connecting hole 124. With this setting, the movement distance of the adjustment component 30 when switching the connection of a single atomizing channel and when a single atomizing element is working is approximately the same, which is convenient for user operation.

[0088] Optionally, the distance between the second connecting hole 122 and the third connecting hole 123 can be equal to the distance between the first connecting hole 311 and the second connecting hole 312. When the first connecting hole 311 is connected to the first connecting hole 121, the second connecting hole 312 is connected to the third connecting hole 123. This arrangement facilitates smooth airflow through the connecting holes and the connecting holes into the atomizing channel.

[0089] As you can understand, the distances between the different connecting holes mentioned above refer to the distance between their centers. When the connecting hole is circular, the center of the connecting hole is the center of the circle; when the connecting hole is of other shapes, the center of the connecting hole is the center of the circumcircle of the connecting hole.

[0090] With this configuration, when the control switch 41 is in different positions, the airflow can smoothly pass through the connecting hole and the connection hole into the corresponding atomization channel, resulting in a better user experience.

[0091] In one implementation, such as Figures 2 to 4 As shown, the electronic atomizer 100 also includes an air supply component 42, which is spaced apart from the atomizing component. The air supply component 42 is used to promote gas flow in the first atomizing channel 141 and the second atomizing channel 151.

[0092] The air supply component 42 can be any feasible structure in the art that can promote gas flow, such as a fan, a baffle plate, etc., without limitation. Optionally, the air supply component 42 is connected and fixed to the housing assembly 10, and the connection method can be welding, bonding, snap-fitting, screwing, etc., without limitation.

[0093] Optional, such as Figure 3 As shown, the air supply component 42 includes a fan 421 and a support housing 422.

[0094] Taking the air supply component 42 as an example, the air supply component 42 can convert electrical energy into rotational kinetic energy, driving the fan blades to cut the air and generate a pressure difference. According to Bernoulli's principle, the rotation of the fan blades increases the air velocity in front (increases dynamic pressure) and creates a negative pressure zone behind (decreases static pressure), thereby establishing a continuous airflow gradient to promote gas flow.

[0095] Optionally, when the first atomizing element 21 and / or the second atomizing element 22 are activated and begin to work, the air supply element 42 may be activated according to a preset method or user operation to promote gas flow in the first atomizing channel 141 and the second atomizing channel 151.

[0096] With this configuration, the air supply component 42 can promote gas flow in the first atomization channel 141 and the second atomization channel 151, reducing the difficulty of suction for the user. In addition, after the user finishes suction, the atomizing component stops working. At this time, the residual kinetic energy of the air supply component 42 can promote some of the un-atomized gas to enter the atomization channel, reducing the residue of atomized oil mist in the airflow channel and preventing the residual oil mist from forming condensate in the atomization channel, which would cause blockage of the atomization channel.

[0097] In one implementation, such as Figure 3 and Figure 4 As shown, the electronic atomizer 100 also includes a battery 44, which is electrically connected to the circuit board 43. The battery 44 is used to power the air supply component 42, the first atomizing component 21, and the second atomizing component 22.

[0098] In one implementation, such as Figure 2 and Figure 4 As shown, the electronic atomizer 100 also includes a microphone 45, which is electrically connected to the first atomizing element 21, the second atomizing element 22 and the air supply element 42. The microphone 45 is used to activate the first atomizing element 21 and / or the second atomizing element 22, and simultaneously activate the air supply element 42.

[0099] The microphone 45 is used to control the activation and deactivation of the first atomizing element 21 and / or the second atomizing element 22. Optionally, the microphone 45 and the atomizing components are located on the same side of the support portion, and the main housing 11 also has a vent hole that connects to the outside and the microphone 45. When the user inhales, the airflow passes through the vent hole and then through the microphone 45, triggering the microphone 45 to send an activation signal to activate the first atomizing element 21 and / or the second atomizing element 22.

[0100] Optionally, the microphone 45 can simultaneously activate the first atomizing element 21 and the second atomizing element 22, with the user controlling the operation of the first atomizing element 21 and / or the second atomizing element 22; alternatively, the microphone 45 can cooperate with the subsequent adjustment component 30 to control the activation and operation of the corresponding atomizing element according to user needs; or, the microphone 45 can adopt any other feasible control mode without restriction. In the above methods, regardless of which atomizing element the microphone 45 activates, the air supply component 42 can be activated simultaneously to promote gas flow and reduce the difficulty of inhalation for the user.

[0101] The control method is simple and efficient, which controls the start and stop of the first atomizing element 21 and / or the second atomizing element 22 and the air supply element 42 by setting the microphone 45.

[0102] In one implementation, such as Figure 1 and Figure 2 As shown, the electronic atomizer 100 also includes a mouthpiece 50, which is connected to the housing assembly 10. The ends of the first atomization channel 141 and the second atomization channel 151 away from the air supply component 42 are both connected to the mouthpiece 50.

[0103] The connection method between the nozzle 50 and the housing assembly 10 can be welding, bonding, snap-fitting, screwing, magnetic connection, etc., without restriction.

[0104] Optionally, the mouthpiece 50 has an air guide channel 51, which is connected to the first atomization channel 141 and the second atomization channel 151. With this configuration, the gas atomized by the first atomizing element 21 and / or the second atomizing element 22 enters the air guide channel 51 of the mouthpiece 50 through the first atomization channel 141 and / or the second atomization channel 151, and is inhaled by the user through the air guide channel 51.

[0105] In the description of the embodiments of this utility model, it should be noted that the orientation or positional relationship of the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and other indicators are based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this utility model and simplifying the description, and are not intended to indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model.

[0106] The above-disclosed embodiments are merely preferred embodiments of the present utility model and should not be construed as limiting the scope of the present utility model. Those skilled in the art can understand that implementing all or part of the above-described embodiments and making equivalent changes in accordance with the claims of the present utility model are still within the scope of the present utility model.

Claims

1. An electronic atomizer, characterized in that, include: The housing assembly has a first atomizing channel and a second atomizing channel spaced apart. An adjustment component is slidably connected to the housing assembly. The adjustment component has a communicating hole and is movable to communicate with the communicating hole and / or the first atomizing channel and / or the second atomizing channel. An atomizing assembly includes a first atomizing element and a second atomizing element, wherein the first atomizing element is housed in a first atomizing channel and the second atomizing element is housed in a second atomizing channel; The control switch, and the adjustment component is also used to drive the control switch to switch between different gears so that the first atomizing element and / or the second atomizing element are in working state; When the connecting hole is connected to the first atomizing channel and / or the second atomizing channel, the control switch controls the corresponding first atomizing element and / or the second atomizing element to work.

2. The electronic atomizer according to claim 1, characterized in that, The housing assembly has an installation space and an opening communicating with the installation space. The adjustment assembly includes a slider and an adjustment member. The slider is received in the installation space and slidably connected to the housing assembly. The adjustment member is connected to the slider and exposed from the opening. The slider has the communicating hole.

3. The electronic atomizer according to claim 2, characterized in that, The control switch includes a body and a lever. The lever is connected and fixed to the slider. The slider is also used to drive the lever to move relative to the body, so that the control switch can switch between different gears.

4. The electronic atomizer according to claim 3, characterized in that, The housing assembly includes a main shell and a support member. The main shell has the mounting space and the opening. The support member is housed in the mounting space and has a sliding cavity that communicates with the opening. The sliding member is housed in the sliding cavity and is slidably connected to the support member.

5. The electronic atomizer according to claim 4, characterized in that, The electronic atomizer also includes a circuit board. The atomizing component and the circuit board are respectively disposed on opposite sides of the support member, and the main body is connected and fixed to the circuit board.

6. The electronic atomizer according to claim 4, characterized in that, The connecting hole includes a first connecting hole and a second connecting hole, which are spaced apart from each other on the sliding member. The first connecting hole is connected to the first atomizing channel, and / or the second connecting hole is connected to the second atomizing channel.

7. The electronic atomizer according to claim 6, characterized in that, The support member has a first connecting hole and a second connecting hole spaced apart. Both the first connecting hole and the second connecting hole are connected to the first atomizing channel. The first connecting hole is closer to the outside of the electronic atomizer than the second connecting hole. The first connecting hole is used to connect with either the first connecting hole or the second connecting hole.

8. The electronic atomizer according to claim 7, characterized in that, The support member also has a third connecting hole and a fourth connecting hole spaced apart. Both the third connecting hole and the fourth connecting hole are connected to the second atomizing channel. The fourth connecting hole is closer to the outside of the electronic atomizer than the third connecting hole. The second connecting hole is used to connect with the third connecting hole or the fourth connecting hole. When the first connecting hole is connected to the first connecting hole, the second connecting hole is connected to the third connecting hole.

9. The electronic atomizer according to claim 4, characterized in that, The housing assembly further includes an oil storage shell, a first atomizing tube, and a second atomizing tube. The oil storage shell is connected to the main shell. Both the first atomizing tube and the second atomizing tube pass through the oil storage shell. The first atomizing tube surrounds the first atomizing channel, and the second atomizing tube surrounds the second atomizing channel.

10. The electronic atomizer according to claim 9, characterized in that, The housing assembly further includes a partition wall connected to the oil storage shell, which divides the space inside the oil storage shell into a first liquid storage chamber and a second liquid storage chamber. The first atomizing tube passes through the first liquid storage chamber, and the second atomizing tube passes through the second liquid storage chamber.