Electronic cigarette device

By designing multiple independent atomization components and electronic control control devices, the problems of condensate generation and taste selection in existing electronic cigarettes are solved, and multiple flavor selections and better suction experiences are achieved.

CN120093016APending Publication Date: 2025-06-06广东金莱特智能科技有限公司
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Patent Information

Application Number
CN202510052791.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-01-14
Publication Date
2025-06-06

AI Technical Summary

Technical Problem

In the existing electronic cigarette design, the oil silo sharing the same airway leads to a large amount of condensate production, and the sub-oilo tank has no significant effect during the suction process, which limits the user's taste selection and suction experience.

Method used

An electronic cigarette device is designed, including three independent atomization components and a control device. Through electronic control technology, the working order of the atomization components can be adjusted, and users can choose different flavors for suction to avoid the generation of condensate.

Benefits of technology

A variety of flavor choices are achieved, the production of condensate is avoided, the user's suction experience is improved, and the carbon deposit formation in the atomized components is reduced, and the service life is extended.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an electronic cigarette device, and relates to the technical field of electronic cigarettes, the electronic cigarette device comprises a first shell, an atomization device and a control device, the first shell is internally provided with a cavity; the atomization device is detachably installed on the upper portion of the cavity and comprises a second shell, a PCBA assembly, a first atomization assembly, a second atomization assembly and a third atomization assembly, and the PCBA assembly, the first atomization assembly, the second atomization assembly and the third atomization assembly are all arranged in the second shell. The first atomization assembly, the second atomization assembly and the third atomization assembly are arranged above the PCBA assembly side by side; the control device is detachably installed on the lower portion of the cavity and comprises a third shell, a battery cell and a control mainboard, the battery cell and the control mainboard are arranged in the third shell, and the battery cell is connected with the control mainboard and the PCBA assembly.
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Description

Technical Field

[0001] The present application relates to the technical field of electronic cigarettes, and in particular to an electronic cigarette device. Background Art

[0002] As e-cigarettes become more and more popular, the flavors of e-cigarettes are becoming more and more diverse to meet the needs of users. After being assembled, most existing e-cigarettes are equipped with only one or two oil tanks, which limits users to injecting only one or two flavors of e-liquid. In addition, the two oil tanks share the same airway, which often leads to the generation of a large amount of condensate, and the effect of the auxiliary oil tank during the suction process is not significant. Summary of the invention

[0003] The main purpose of the embodiments of the present application is to solve at least one of the technical problems existing in the prior art and to provide an electronic cigarette device that can meet the user's demand for smoking different flavors and enhance the user's smoking experience.

[0004] To achieve the above-mentioned purpose, an embodiment of the present invention application proposes an electronic cigarette device, comprising: a first shell, an atomization device and a control device, wherein a cavity is arranged in the first shell; the atomization device is detachably installed on the upper part of the cavity, and the atomization device comprises: a second shell and a PCBA component, a first atomization component, a second atomization component, and a third atomization component, all of which are arranged inside the second shell, and the first atomization component, the second atomization component and the third atomization component are arranged side by side above the PCBA component; the control device is detachably installed on the lower part of the cavity, and the control device comprises: a third shell and a battery cell and a control main board arranged inside the third shell, and the battery cell is connected to the control main board and the PCBA component respectively.

[0005] An electronic cigarette device provided according to an embodiment of the present invention has at least the following beneficial effects: firstly, a mutually independent first atomization assembly, a second atomization assembly and a third atomization assembly are arranged in the atomization device, and three different airways are formed in the three atomization assemblies, thereby avoiding the generation of a large amount of condensed liquid; secondly, the airflow can be controlled in the first atomization assembly, the second atomization assembly and the third atomization assembly. Different flavors of e-liquid are injected into the second atomizer assembly and the third atomizer assembly respectively, and multiple flavors can bring different smoking experiences. Compared with the problem of flavor residue and confusion caused by replacing different flavors of e-liquid in a single atomizer assembly, injecting different flavors of e-liquid into the three atomizer assemblies can effectively avoid this problem; in addition, by adjusting the working order of different atomizer assemblies through electronic control technology, users can choose different flavors for smoking according to current preferences and needs. Specifically, the battery cells are connected to the control mainboard and the PCBA assembly respectively, wherein the control mainboard is used to control the PCBA assembly to supply the electric energy in the battery cells to the first atomizer assembly, the second atomizer assembly, or the third atomizer assembly, thereby starting the first atomizer assembly, or starting the second atomizer assembly, or starting the third atomizer assembly, and finally generating smoke that can meet the user's current taste needs.

[0006] In some embodiments, it also includes: an airflow detection module and a button module, wherein the airflow detection module is arranged in the control device, and the button module is arranged on the surface of the first shell, and the control main board is respectively connected to the airflow detection module and the button module, and the airflow detection module is used to control the operation of the first atomization component, and the button module is used to control the operation of the second atomization component and the third atomization component.

[0007] In some embodiments, the button module includes a first button and a second button, the first button is used to control the operation of the second atomization component, and the second button is used to control the operation of the third atomization component.

[0008] In some embodiments, a first oil cup is disposed in the first atomization component, a first heating component and a first silicone are nested in the first oil cup, the first silicone is disposed below the first heating component, and a first oil storage cotton is disposed between the first heating component and the first oil cup.

[0009] In some embodiments, the atomization device further includes: a fixing member and a lower sealing silicone, wherein the fixing member is arranged below the first atomization assembly, the second atomization assembly and the third atomization assembly, the lower sealing silicone is arranged below the fixing member, and the PCBA assembly is arranged between the fixing member and the lower sealing silicone.

[0010] In some embodiments, the atomization device further includes: an upper sealing silicone, wherein the upper sealing silicone is disposed above the first atomization assembly, the second atomization assembly, and the third atomization assembly.

[0011] In some embodiments, the atomization device further includes: oil-absorbing cotton, and the oil-absorbing cotton is arranged above the upper sealing silicone.

[0012] In some embodiments, a mouthpiece hole is provided at the top of the first shell, and an air regulating switch is provided at the bottom of the first shell, and a plurality of air regulating holes are provided in the air regulating switch.

[0013] In some embodiments, air-regulating silica gel is also included, and the air-regulating silica gel is arranged between the control device and the air-regulating switch.

[0014] In some embodiments, the first button includes a first button silicone rubber and a first button plate, the first button plate is disposed on the surface of the first shell, and the first button silicone rubber is disposed above the first button plate. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] The accompanying drawings are used to provide a further understanding of the technical solution of the present invention and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the technical solution of the present invention and do not constitute a limitation on the technical solution of the present invention.

[0016] The present invention is further described below in conjunction with the accompanying drawings and embodiments; Figure 1 It is a schematic diagram of the overall structure of an electronic cigarette device provided by the present invention in a first direction; Figure 2 It is a schematic diagram of the internal structure of an electronic cigarette device provided by the present invention; Figure 3 is a schematic diagram of the overall structure of an electronic cigarette device provided by the present invention in a second direction; Figure 4 is a schematic diagram of a longitudinal cross-sectional structure of an electronic cigarette device provided by the present invention in a third direction; Figure 5 is a schematic diagram of a longitudinal cross-sectional structure of an electronic cigarette device provided by the present invention in a fourth direction; Figure 6 It is a schematic diagram of the internal structure of an atomization device of an electronic cigarette device provided by the present invention; Figure 7 It is an exploded view of the internal structure of an atomizer of an electronic cigarette device provided by the present invention. DETAILED DESCRIPTION

[0017] In order to make the purpose, technical solution and advantages of the present application more clearly understood, the present application is further described in detail below in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application and are not used to limit the present application.

[0018] It should be noted that the terms "first", "second", etc. in the specification, claims and the above-mentioned drawings are used to distinguish similar objects, and are not necessarily used to describe a specific order or sequence.

[0019] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as those commonly understood by those skilled in the art to which this application belongs. The terms used herein are only for the purpose of describing the embodiments of this application and are not intended to limit this application.

[0020] As e-cigarettes become more and more popular, the flavors of e-cigarettes are becoming more and more diverse to meet the needs of users. After being assembled, most existing e-cigarettes are only equipped with one or two oil tanks, which limits users to injecting only one or two flavors of e-liquid. In addition, the two oil tanks share the same airway, which often leads to the generation of a large amount of condensate. The effect of the auxiliary oil tank during the suction process is not significant, affecting the user's suction experience.

[0021] Based on this, an embodiment of the present invention provides an electronic cigarette device that can meet the user's demand for smoking different flavors and improve the user's smoking experience.

[0022] The embodiments of the present invention are further described below in conjunction with the accompanying drawings.

[0023] Reference Figure 1-7 The embodiment of the present invention provides an electronic cigarette device, including: a first shell 1000, an atomizer 2000 and a control device 3000, wherein a cavity is arranged in the first shell 1000; the atomizer 2000 is detachably mounted on the upper part of the cavity, and the atomizer 2000 includes: a second shell 2100 and a PCBA assembly 2200, a first atomizer assembly 2300, a second atomizer assembly 2400, and a third atomizer assembly 2500, all of which are arranged inside the second shell 2100, and the first atomizer assembly 2300, the second atomizer assembly 2400 and the third atomizer assembly 2500 are arranged side by side above the PCBA assembly 2200; the control device 3000 is detachably mounted on the lower part of the cavity, and the control device 3000 includes: a third shell 3100 and a battery cell 3200 and a control mainboard 3300 arranged inside the third shell 3100, and the battery cell 3200 is connected to the control mainboard 3300 and the PCBA assembly 2200 respectively.

[0024] According to an electronic cigarette device provided by an embodiment of the present invention, firstly, a mutually independent first atomization assembly 2300, a second atomization assembly 2400 and a third atomization assembly 2500 are arranged in the atomization device 2000, and three different airways are formed in the three atomization assemblies, thereby avoiding the large amount of condensation liquid generated; secondly, different flavors of e-liquid can be respectively injected into the three atomization assemblies of the first atomization assembly 2300, the second atomization assembly 2400 and the third atomization assembly 2500, and a plurality of flavors can bring different inhalation feelings. Compared with the problem of flavor residue and confusion caused by replacing different flavors of e-liquid in a single atomization assembly, injecting different flavors of e-liquid into the three atomization assemblies can effectively avoid this problem; in addition, the working of different atomization assemblies is adjusted by electronic control technology. The user can choose different flavors to smoke according to the current preferences and needs. Specifically, the battery cell 3200 is connected to the control mainboard 3300 and the PCBA assembly 2200 respectively, wherein the control mainboard 3300 is used to control the PCBA assembly 2200 to supply the electric energy in the battery cell 3200 to the first atomization assembly 2300 or the second atomization assembly 2400 or the third atomization assembly 2500, thereby starting the first atomization assembly 2300, or starting the second atomization assembly 2400, or starting the third atomization assembly 2500, and finally generating smoke that can meet the current taste needs of the user.

[0025] It should be noted that, refer to Figure 3 , Figure 5 An upper cover 1100 is provided on the front of the first shell 1000, and a lower cover 1200 is provided on the back of the first shell 1000. The first shell 1000 and the upper cover 1100 are relatively fixed by a buckle connection, and the first shell 1000 and the lower cover 1200 are relatively fixed by a buckle connection.

[0026] It should be noted that the first atomization assembly 2300, the second atomization assembly 2400 and the third atomization assembly 2500 are placed side by side, wherein the first atomization assembly 2300 is placed in the center, the second atomization assembly 2400 is arranged on the left side of the first atomization assembly 2300, and the third atomization assembly 2500 is on the right side of the first atomization assembly 2300. The three atomization assemblies are arranged independently of each other. When an atomization assembly has an oil leakage problem, it will not affect the normal use of the remaining atomization assemblies, and it can also make it easier for users to check and replace the problematic atomization assembly, thereby improving the user experience.

[0027] In some embodiments, referring to 3, Figure 4 A mouthpiece hole 1300 is provided at the top of the first shell 1000 , and a gas adjustment switch 1400 is provided at the bottom of the first shell 1000 . A plurality of gas adjustment holes 1500 are provided in the gas adjustment switch 1400 .

[0028] It should be noted that the multiple air adjustment holes 1500 have different sizes, and the size of the air flow entering the first housing 1000 can be changed by sliding the air adjustment switch 1400 to the left or right.

[0029] In some embodiments, reference Figure 4 , and also includes air-regulating silica gel 1600, which is arranged between the control device 3000 and the air-regulating switch 1400.

[0030] It should be noted that a through hole is provided in the air-adjusting silica gel 1600, and an air inlet hole is provided on the third shell 3100 of the control device 3000. The through hole is communicated with the air-adjusting hole 1500 in the air-adjusting switch 1400, and forms a sealed air inlet duct with the air inlet hole provided on the third shell 3100. An air inlet hole is also provided at the lower end of the second shell 2100 of the atomizing device 2000, and the air inlet duct is communicated with the air inlet hole provided at the lower end of the second shell 2100. The gas flows from the air inlet duct into the atomizing device 2000, flows through the first atomizing assembly 2300, the second atomizing assembly 2400, and the third atomizing assembly 2500, to form three different air ducts, and the air guide hole provided at the upper end of the second shell 2100. The airflows of the three air ducts converge to the mouthpiece hole 1300 provided at the top of the first shell 1000 through the air guide hole provided at the upper end of the second shell 2100.

[0031] In some embodiments, reference Figure 4 , also includes: an airflow detection module 3400 and a button module, the airflow detection module 3400 is arranged in the control device 3000, the button module is arranged on the surface of the first shell 1000, the control mainboard 3300 is respectively connected to the airflow detection module 3400 and the button module, the airflow detection module 3400 is used to control the operation of the first atomization component 2300, and the button module is used to control the operation of the second atomization component 2400 and the third atomization component 2500.

[0032] Preferably, the airflow detection module 3400 is a microphone assembly, and a microphone silica gel is arranged between the microphone assembly and the battery cell 3200, and the microphone silica gel is used to fix the microphone assembly in the control device 3000 to prevent the microphone assembly from shaking.

[0033] It can be understood that the airflow detection module 3400 is used to control the operation of the first atomization assembly 2300. Specifically, the microphone assembly includes a substrate and a conductive film arranged above the substrate. When the user has a puffing action, the airflow detection module 3400 (i.e., the microphone assembly) senses the change in airflow, and its conductive film is deformed, changing the distance between it and the substrate, thereby generating a capacitance change. When this change reaches a certain value, the airflow detection module 3400 transmits the start signal to the control motherboard 3300, and the control motherboard 3300 controls the PCBA assembly 2200 to supply the electrical energy in the battery cell 3200 to the first atomization assembly 2300, thereby starting the first atomization assembly 2300 to work.

[0034] It can be understood that the button module is used to control the operation of the second atomization assembly 2400 and the third atomization assembly 2500. Specifically, when the button module is triggered, for example, when the button module slides upward or to the left, the button module transmits a start signal to the control mainboard 3300, and the control mainboard 3300 controls the PCBA assembly 2200 to supply the electrical energy in the battery cell 3200 to the second atomization assembly 2400, thereby starting the second atomization assembly 2400; when the button module slides downward or to the right, the button module transmits a start signal to the control mainboard 3300, and the control mainboard 3300 controls the PCBA assembly 2200 to supply the electrical energy in the battery cell 3200 to the third atomization assembly 2500, thereby starting the third atomization assembly 2500.

[0035] In some embodiments, the button module includes a first button 3510 and a second button 3520 , wherein the first button 3510 is used to control the operation of the second atomization assembly 2400 , and the second button 3520 is used to control the operation of the third atomization assembly 2500 .

[0036] Preferably, the first button 3510 is disposed at the upper left end of the first housing 1000 , and the second button 3520 is disposed at the upper right end of the first housing 1000 .

[0037] It can be understood that the first button 3510 is used to control the operation of the second atomization assembly 2400. Specifically, when the first button 3510 is triggered, the first button 3510 transmits a start signal to the control motherboard 3300. The control motherboard 3300 controls the PCBA assembly 2200 to supply the electrical energy in the battery cell 3200 to the second atomization assembly 2400, thereby starting the operation of the second atomization assembly 2400.

[0038] It can be understood that the second button 3520 is used to control the operation of the third atomization assembly 2500. Specifically, when the second button 3520 is triggered, the second button 3520 transmits a start signal to the control motherboard 3300. The control motherboard 3300 controls the PCBA assembly 2200 to supply the electrical energy in the battery cell 3200 to the third atomization assembly 2500, thereby starting the operation of the third atomization assembly 2500.

[0039] It should be noted that the control motherboard 3300 can control the operation of any one of the first atomization component 2300, the second atomization component 2400, and the third atomization component 2500, so that a single atomization component does not need to work continuously for a long time, and the workload of each atomization component is relatively reduced. The heating time and frequency of a single atomization component will be reduced, thereby slowing down the speed of carbon deposition, which can effectively reduce the possibility of carbon deposition inside the atomization component, solve the problem of lighter taste, improve the suction effect, and thus improve the user's suction experience.

[0040] In some embodiments, by triggering the first button 3510 and the second button 3520 at the same time, the first atomization assembly 2300 , the second atomization assembly 2400 , and the third atomization assembly 2500 work at the same time.

[0041] It is understandable that the same flavor of e-liquid can be put into the first atomizer assembly 2300, the second atomizer assembly 2400 and the third atomizer assembly 2500, and by triggering the first button 3510 and the second button 3520 at the same time, the first atomizer assembly 2300, the second atomizer assembly 2400 and the third atomizer assembly 2500 can work at the same time, and the heating power is increased to three times the original. Even in the later stage of electronic cigarette use, there is serious carbon deposition in the three atomizer assemblies, but because the three atomizer assemblies can be controlled to work at the same time, they can output three times the amount of smoke than when a single atomizer core is working, which is also conducive to alleviating the problem of lighter taste of electronic cigarettes in the later stage of use, improving the suction effect, and thus improving the user's smoking experience.

[0042] In some embodiments, the first button 3510 includes a first button silicone 3511 and a first button plate 3512 . The first button plate 3512 is disposed on the surface of the first shell 1000 , and the first button silicone 3511 is disposed above the first button plate 3512 .

[0043] Preferably, the first key panel 3512 is disposed at the upper left end of the first housing 1000 , and the first key panel 3512 is connected to the control main board 3300 via a lead wire.

[0044] It should be noted that when the first button silicone 3511 is pressed, the first button silicone 3511 will be deformed, thereby triggering the corresponding switch or sensor on the first button panel 3512 located below the first button silicone 3511, and the first button panel 3512 will transmit the start signal to the control motherboard 3300. The control motherboard 3300 controls the PCBA assembly 2200 to supply the electrical energy in the battery cell 3200 to the second atomization assembly 2400, thereby starting the second atomization assembly 2400 to work.

[0045] In some embodiments, the second button 3520 includes a second button silicone 3521 and a second button plate 3522 . The second button plate 3522 is disposed on the surface of the second shell 2100 , and the second button silicone 3521 is disposed above the second button plate 3522 .

[0046] Preferably, the second key panel 3522 is disposed at the upper right end of the first housing 1000 , and the second key panel 3522 is connected to the control main board 3300 via a lead wire.

[0047] It should be noted that when the second button silicone 3521 is pressed, the second button silicone 3521 will be deformed, thereby triggering the corresponding switch or sensor on the second button plate 3522 located below the second button silicone 3521, and the second button plate 3522 will transmit the start signal to the control motherboard 3300. The control motherboard 3300 controls the PCBA assembly 2200 to supply the electrical energy in the battery cell 3200 to the third atomization assembly 2500, thereby starting the third atomization assembly 2500 to work.

[0048] In some embodiments, a first oil cup 2310 is disposed in the first atomization assembly 2300, and a first heating assembly 2320 and a first silicone 2330 are nested in the first oil cup 2310. The first silicone 2330 is disposed below the first heating assembly 2320, and a first oil storage cotton 2340 is disposed between the first heating assembly 2320 and the first oil cup 2310.

[0049] It should be noted that the first silicone 2330 is used to fix the first heating component 2320 in the first oil cup 2310. An air inlet hole is provided in the first silicone 2330. The control motherboard 3300 controls the PCBA component 2200 to supply the electric energy in the battery cell 3200 to the first heating component 2320 in the first atomization component 2300, thereby starting the first atomization component 2300 to work.

[0050] In some embodiments, a second oil cup 2410 is disposed in the second atomization assembly 2400, and a second heating assembly 2420 and a second silicone 2430 are nested in the second oil cup 2410. The second silicone 2430 is disposed below the second heating assembly 2420, and a second oil storage cotton 2440 is disposed between the second heating assembly 2420 and the second oil cup 2410.

[0051] It should be noted that the second silicone 2430 is used to fix the second heating component 2420 in the second oil cup 2410. An air inlet hole is provided in the second silicone 2430. The PCBA component 2200 is controlled by the control motherboard 3300 to supply the electric energy in the battery cell 3200 to the second heating component 2420 in the second atomization component 2400, thereby starting the second atomization component 2400 to work.

[0052] In some embodiments, a third oil cup 2510 is disposed in the third atomization assembly 2500, and a third heating assembly 2520 and a third silicone 2530 are nested in the third oil cup 2510. The third silicone 2530 is disposed below the third heating assembly 2520, and a third oil storage cotton 2540 is disposed between the third heating assembly 2520 and the third oil cup 2510.

[0053] It should be noted that the third silicone 2530 is used to fix the third heating component 2520 in the third oil cup 2510. An air inlet hole is provided in the third silicone 2530. The control motherboard 3300 controls the PCBA component 2200 to supply the electric energy in the battery cell 3200 to the third heating component 2520 in the third atomization component 2500, thereby starting the third atomization component 2500 to work.

[0054] In some embodiments, referring to 4, Figure 6 The atomizing device 2000 further includes: a fixing member 2600 and a lower sealing silicone 2700 . The fixing member 2600 is disposed below the first atomizing assembly 2300 , the second atomizing assembly 2400 , and the third atomizing assembly 2500 . The lower sealing silicone 2700 is disposed below the fixing member 2600 . The PCBA assembly 2200 is disposed between the fixing member 2600 and the lower sealing silicone 2700 .

[0055] It should be noted that the fixing member 2600 is used to fix the first atomizing assembly 2300 , the second atomizing assembly 2400 and the third atomizing assembly 2500 in the second housing 2100 of the atomizing device 2000 to prevent the first atomizing assembly 2300 , the second atomizing assembly 2400 and the third atomizing assembly 2500 from shaking during use.

[0056] It should be noted that an air inlet hole is provided in the fixing part 2600, and a common airflow cavity is formed between the lower sealing silicone 2700 and the PCBA assembly 2200. The airflow in the airflow cavity can flow to the first atomization assembly 2300, the second atomization assembly 2400 and the third atomization assembly 2500 at the same time along the air inlet hole in the fixing part 2600, forming three different air passages, and the air guide hole provided at the upper end of the second shell 2100. The airflows of the three air passages converge to the mouthpiece hole 1300 provided at the top of the first shell 1000 through the air guide hole provided at the upper end of the second shell 2100.

[0057] In some embodiments, the atomization device 2000 further includes: an upper sealing silicone 2800 , which is disposed above the first atomization assembly 2300 , the second atomization assembly 2400 , and the third atomization assembly 2500 .

[0058] It should be noted that an air duct is provided in the upper sealing silicone 2800, and an air guide hole is provided at the upper end of the second shell 2100. The airflows of the three air ducts in the first atomizer assembly 2300, the second atomizer assembly 2400 and the third atomizer assembly 2500 are converged into the air duct of the upper silicone through the air guide hole provided at the upper end of the second shell 2100, and the air duct of the upper silicone is connected to the mouthpiece hole 1300 provided at the top of the first shell 1000.

[0059] In some embodiments, reference Figure 4 The atomizing device 2000 further includes: oil-absorbing cotton 2900 , which is disposed above the upper sealing silicone 2800 .

[0060] It is understandable that the oil-absorbing cotton 2900 is arranged above the upper sealing silicone 2800 to absorb the condensed liquid generated during the suction process and improve the suction taste.

Claims

1. An electronic cigarette device, characterized in that: include: A first shell, wherein a cavity is provided in the first shell; an atomizing device, the atomizing device being detachably mounted on the upper portion of the cavity, the atomizing device comprising: a second housing, and a PCBA assembly, a first atomizing assembly, a second atomizing assembly, and a third atomizing assembly all disposed inside the second housing, wherein the first atomizing assembly, the second atomizing assembly, and the third atomizing assembly are disposed side by side above the PCBA assembly; A control device, wherein the control device is detachably mounted at the lower portion of the cavity, and comprises: a third shell, and a battery cell and a control mainboard arranged inside the third shell, wherein the battery cell is respectively connected to the control mainboard and the PCBA assembly.

2. The electronic cigarette device according to claim 1, characterized in that: Also includes: An airflow detection module and a button module, wherein the airflow detection module is arranged in the control device, the button module is arranged on the surface of the first shell, the control mainboard is respectively connected to the airflow detection module and the button module, the airflow detection module is used to control the operation of the first atomization component, and the button module is used to control the operation of the second atomization component and the third atomization component.

3. The electronic cigarette device according to claim 2, characterized in that: The button module includes a first button and a second button, the first button is used to control the operation of the second atomization component, and the second button is used to control the operation of the third atomization component.

4. The electronic cigarette device according to claim 1, characterized in that: A first oil cup is arranged in the first atomizing component, a first heating component and a first silica gel are nested in the first oil cup, the first silica gel is arranged below the first heating component, and a first oil storage cotton is arranged between the first heating component and the first oil cup.

5. The electronic cigarette device according to claim 1, characterized in that: The atomization device also includes: a fixing part and a lower sealing silicone, the fixing part is arranged below the first atomization component, the second atomization component and the third atomization component, the lower sealing silicone is arranged below the fixing part, and the PCBA component is arranged between the fixing part and the lower sealing silicone.

6. The electronic cigarette device according to claim 1, characterized in that: The atomizing device further comprises: an upper sealing silicone, and the upper sealing silicone is arranged above the first atomizing assembly, the second atomizing assembly and the third atomizing assembly.

7. The electronic cigarette device according to claim 6, characterized in that: The atomizing device further comprises: oil absorbing cotton, and the oil absorbing cotton is arranged above the upper sealing silica gel.

8. The electronic cigarette device according to claim 1, characterized in that: A cigarette holder hole is arranged on the top of the first shell, and an air regulating switch is arranged on the bottom of the first shell. A plurality of air regulating holes are arranged in the air regulating switch.

9. The electronic cigarette device according to claim 8, characterized in that: It also includes gas-regulating silica gel, which is arranged between the control device and the gas-regulating switch.

10. The electronic cigarette device according to claim 3, characterized in that: The first button includes a first button silica gel and a first button plate. The first button plate is arranged on the surface of the first shell, and the first button silica gel is arranged above the first button plate.