Electronic atomizer capable of automatically discharging smoke

By incorporating a blower and a sensor switch into the electronic atomizer, users can choose between different modes of operation. This solves the problem that existing electronic atomizers require users to inhale to function, enabling multiple usage methods including automatic vapor production and traditional inhalation, thus improving ease of use.

CN224268302UActive Publication Date: 2026-05-26SHENZHEN IMPETUS TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN IMPETUS TECH CO LTD
Filing Date
2024-08-19
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

Existing electronic atomizers require users to inhale in order to work and produce vapor, which is not very convenient to use.

Method used

An electronic atomizer with automatic smoke output was designed. By setting a blowing device on one side of the air inlet of the atomizing device and setting a sensor switch on the cover, when the cover opens the smoke outlet, the sensing component controls the atomizing and blowing devices to work, so as to achieve automatic smoke output.

Benefits of technology

It realizes the automatic vapor production function of electronic atomizer, which improves the convenience of use. Users can choose to use it in the automatic vapor production or traditional vaping mode.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an electronic atomizer capable of automatically discharging smoke, which comprises a shell, a first smoke outlet, a first air inlet, a second smoke outlet and a second air inlet. The atomization device is arranged in the shell, the atomization device is provided with a second smoke outlet hole and a second air inlet hole, and the second smoke outlet hole of the atomization device is communicated with the first smoke outlet hole; the air blowing device is arranged on one side of the second air inlet hole of the atomization device; the cover body is arranged on the shell and is used for opening or closing the first smoke outlet hole; the induction switch comprises a first induction part and a second induction part which are matched with each other, the first induction part is arranged on the cover body, the second induction part is arranged on the shell, and the second induction part is electrically connected with the atomization device and the air blowing device. Therefore, after the cover body of the electronic atomizer is opened, automatic cigarette discharging can be achieved, and the electronic atomizer is more convenient to use.
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Description

Technical Field

[0001] This utility model belongs to the field of electronic atomizer technology, and more specifically, it relates to an electronic atomizer that can automatically produce smoke. Background Technology

[0002] An electronic atomizer is a device that produces vapor by heating chemical substances, which is then inhaled by the user. These types of electronic atomizers have wide applications in various fields, such as the medical field, where patients can relieve symptoms like coughs through nebulization therapy. Of course, electronic atomizers can also be used in other areas; for example, they can physicochemically process e-liquid to produce vapor that simulates cigarette smoke. In other words, depending on the substances being atomized, electronic atomizers can be applied to various fields.

[0003] However, current electronic atomizers require users to inhale before they work, and the generated vapor can only be extracted by inhaling. Utility Model Content

[0004] The present invention provides an electronic atomizer that can automatically produce smoke, in order to solve the technical problems mentioned in the background art.

[0005] The technical solution adopted in this utility model is an electronic atomizer that can automatically produce smoke, comprising:

[0006] The casing is provided with a first smoke outlet and a first air inlet;

[0007] An atomizing device is disposed within the housing. The atomizing device has a second smoke outlet and a second air inlet. The second smoke outlet of the atomizing device is connected to the first smoke outlet.

[0008] A blowing device is disposed on one side of the second air inlet of the atomizing device. The blowing device is used to blow the gas that enters the housing through the first air inlet to the atomizing device through the second air inlet.

[0009] A cover, disposed on the housing, is used to open or close the first smoke outlet; and

[0010] The inductive switch includes a first sensing part and a second sensing part that cooperate with each other. The first sensing part is disposed on the cover, and the second sensing part is disposed on the housing. The second sensing part is electrically connected to the atomizing device and the blowing device respectively. When the cover opens the first smoke outlet, the first sensing part moves away from the second sensing part. At this time, the second sensing part enables the atomizing device and the blowing device to work.

[0011] As can be seen, in the electronic atomizer of this application, a blowing device is provided on one side of the second air inlet of the atomizing device. The blowing device is used to blow the gas that enters into the housing through the first air inlet to the atomizing device through the second air inlet, thereby blowing the smoke generated in the atomizing device out of the housing through the second smoke outlet and the first smoke outlet in sequence, realizing the automatic smoke output of the electronic atomizer. Furthermore, a cover for opening or closing the first smoke outlet is provided on the housing, and a first sensing part is provided on the cover. A second sensing part is provided on the housing in conjunction with the first sensing part. In this way, when the cover opens the first smoke outlet, the atomizing device and the blowing device can work at the same time. That is, after the first smoke outlet is opened, the first smoke outlet can automatically output smoke, making the use of the electronic atomizer more convenient.

[0012] As a preferred embodiment of this utility model, the cover is rotatably mounted on the shell;

[0013] The cover has a receiving groove, and the first sensing unit is disposed in the receiving groove; and

[0014] The receiving groove accommodates one end of the housing that has the first smoke outlet.

[0015] As a preferred embodiment of this utility model, the housing is provided with a mouthpiece, the mouthpiece is provided with a first smoke outlet, and the receiving groove accommodates the mouthpiece.

[0016] As a preferred embodiment of this utility model, it also includes a motherboard, which is disposed inside the housing and is electrically connected to the atomizing device, the blowing device, and the second sensing unit.

[0017] As a preferred embodiment of this utility model, it also includes:

[0018] A button is provided on the housing, and the button is electrically connected to the motherboard;

[0019] The microphone is disposed inside the housing and located in the air path between the first smoke outlet and the first air inlet. The microphone is electrically connected to the motherboard.

[0020] As a preferred embodiment of this utility model, the cover is provided with a third smoke outlet, which is connected to the first smoke outlet.

[0021] As a preferred embodiment of this utility model, the housing includes an outer shell and a base;

[0022] The first smoke outlet is provided at one end of the outer casing;

[0023] The base is detachably connected to the end of the outer shell away from the first smoke outlet. The base is provided with a first air inlet. The atomizing device is detachably mounted on the base. When the base is connected to the outer shell, the atomizing device is housed inside the outer shell.

[0024] In a preferred embodiment of this utility model, the cover and the second sensing part are respectively disposed on the outer shell, and the main board is disposed inside the base;

[0025] The second sensing unit is electrically connected to the motherboard via a spring-loaded contact pin; and

[0026] It also includes a power supply, which is disposed inside the housing and is electrically connected to the motherboard via a spring-loaded contact connection.

[0027] As a preferred embodiment of this utility model, it further includes a mounting base and electrodes, wherein the mounting base and electrodes are electrically connected to the motherboard to form positive and negative electrodes respectively;

[0028] The base is provided with a mounting seat, the mounting seat is provided with a first through hole, the electrode is disposed in the first through hole, and an insulating element is provided between the electrode and the mounting seat, and the electrode is provided with a second through hole;

[0029] The atomizing device is connected to the mounting base and simultaneously contacts the electrode; the second air inlet communicates with the second through hole; and

[0030] The blowing device is located on the side of the second through hole away from the atomizing device.

[0031] As a preferred embodiment of this utility model, it also includes a ventilation component, which has a first air vent and a second air vent that are interconnected.

[0032] The first air outlet is connected to the end of the electrode that is away from the atomizing device, so that the first air outlet is connected to the second through hole;

[0033] The blower is connected to the second air outlet so that the blower blows air onto the second air outlet. Attached Figure Description

[0034] To more clearly illustrate the technical solutions in the embodiments of this utility model, 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.

[0035] Figure 1 A schematic diagram of the structure of an electronic atomizer with an automatic smoke output provided by this utility model when the cover is closed;

[0036] Figure 2 A schematic diagram of the opening structure of an electronic atomizer capable of automatically producing smoke, provided by this utility model;

[0037] Figure 3 A top view schematic diagram of an electronic atomizer capable of automatically producing smoke, provided by this utility model;

[0038] Figure 4 for Figure 3 Schematic diagram of cross-section at point AA;

[0039] Figure 5 A schematic diagram of the outer shell of an electronic atomizer that can automatically produce smoke, provided by this utility model;

[0040] Figure 6 One of the structural schematic diagrams of the base in an electronic atomizer that can automatically produce smoke, provided by this utility model;

[0041] Figure 7 The second schematic diagram of the base of an electronic atomizer that can automatically produce smoke, provided by this utility model;

[0042] Figure 8 The third schematic diagram of the base of an electronic atomizer that can automatically produce smoke, provided by this utility model;

[0043] Figure 9 for Figure 8 Schematic diagram of the cross section at point BB;

[0044] Figure 10 An exploded view of the blowing device and atomizing device in an electronic atomizer that can automatically produce smoke, provided by this utility model.

[0045] Figure label:

[0046] 100, Housing; 110a, First smoke outlet; 110b, First air inlet; 120, Mouthpiece; 140, Outer shell; 141, Receiving cavity; 142, Airflow channel; 150, Base; 160a, First magnetic clasp; 160b, Second magnetic clasp; 170a, Mounting base; 170b, Electrode; 170c, Insulator; 171a, First through hole; 171b, Second through hole;

[0047] 200. Atomizing device;

[0048] 300. Blowering device;

[0049] 400. Cover; 410. Receiving groove; 420. Third smoke outlet;

[0050] 500, Inductive switch; 510, First sensing unit; 520, Second sensing unit;

[0051] 600, Mainboard; 700, Buttons; 800, Microphone; 900, Ventilation components; 1000a, Contacts; 1000b, Springs. Detailed Implementation

[0052] To make the technical problems, technical solutions, and beneficial effects of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.

[0053] It should be noted that when a component is referred to as being "fixed to" or "set on" another component, it can be directly on or indirectly on that other component. When a component is referred to as being "connected to" another component, it can be directly connected to or indirectly connected to that other component.

[0054] It should be understood that the terms "length", "width", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", and "outer" 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 this utility model 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 this utility model.

[0055] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In some descriptions of utility models, "a plurality of" means two or more, unless otherwise explicitly specified.

[0056] Combination Figures 1 to 10 This utility model provides an electronic atomizer that can automatically produce smoke, including a housing 100, an atomizing device 200, a blowing device 300, a cover 400, and an induction switch 500.

[0057] Combination Figure 2 and Figure 7The housing 100 is provided with a first smoke outlet 110a and a first air inlet 110b. For example, the first smoke outlet 110a can be provided at one end of the housing 100, and the first air inlet 110b can be provided at the other end of the housing 100. The first air inlet 110b is used for the entry of external gas, such as air, and the first smoke outlet 110a is used for the discharge of smoke from inside the housing 100.

[0058] See Figure 4 The atomizing device 200 is disposed within the housing 100, and the atomizing device 200 has a second smoke outlet and a second air inlet (not shown in the figure). It is understood that the atomizing device 200 can generate smoke, for example, by atomizing e-liquid, tobacco paste, tobacco leaves, or other medical liquids to produce smoke. External gas enters the atomizing device 200 through the second air inlet and then carries the smoke generated by the atomizing device 200 out through the second smoke outlet.

[0059] Furthermore, the second smoke outlet of the atomizing device 200 is connected to the first smoke outlet 110a. That is, the smoke generated by the atomizing device 200 inside the housing 100 is discharged to the outside of the housing 100 through the first smoke outlet 110a.

[0060] The blowing device 300 is located on one side of the second air inlet of the atomizing device 200. The blowing device 300 is used to blow the gas that enters the housing 100 through the first air inlet 110b to the atomizing device 200 through the second air inlet, thereby blowing the smoke generated in the atomizing device 200 out of the housing 100 through the second smoke outlet and the first smoke outlet 110a in sequence, realizing the automatic smoke output of the electronic atomizer and making it convenient for users to inhale.

[0061] Combination Figure 1 and Figure 2 The cover 400 is disposed on the housing 100 and is used to open or close the first smoke outlet 110a.

[0062] See Figure 4 The induction switch 500 includes a first sensing part 510 and a second sensing part 520 that cooperate with each other. The first sensing part 510 is disposed on the cover 400, and the second sensing part 520 is disposed on the housing 100. The second sensing part 520 is electrically connected to the atomizing device 200 and the blowing device 300, respectively. When the cover 400 opens the first smoke outlet 110a, the first sensing part 510 moves away from the second sensing part 520. At this time, the second sensing part 520 enables the atomizing device 200 and the blowing device 300 to work. The atomizing device 200 produces smoke, and the blowing device 300 blows the smoke produced by the atomizing device 200 outside the housing 100 for the user to inhale.

[0063] In use, the cover 400 is opened with the first smoke outlet 110a. During the process of opening the first smoke outlet 110a, the first sensing part 510 on the cover 400 moves away from the second sensing part 520 on the housing 100. When the second sensing part 520 senses that the first sensing part 510 has moved away, the second sensing part 520 can control the atomizing device 200 and the blowing device 300 to work. For example, the second sensing part 520 can send a working signal to the atomizing device 200 and the blowing device 300. The blowing device 300 blows the smoke generated by the atomizing device 200 outside the housing 100 and is inhaled by the user.

[0064] As can be seen, in the electronic atomizer of this application, a blowing device 300 is provided on one side of the second air inlet of the atomizing device 200. The blowing device 300 is used to blow the gas that enters into the housing 100 through the first air inlet 110b towards the atomizing device 200 through the second air inlet, thereby blowing the smoke generated in the atomizing device 200 out of the housing 100 through the second smoke outlet and the first smoke outlet 110a in sequence, realizing the automatic smoke output of the electronic atomizer. Furthermore, a blowing device 300 is provided on the housing 100. The device includes a cover 400 for opening or closing the first smoke outlet 110a, a first sensing part 510 on the cover 400, and a second sensing part 520 on the housing 100. In this way, when the cover 400 opens the first smoke outlet 110a, the atomizing device 200 and the blowing device 300 can work at the same time. That is, after the first smoke outlet 110a is opened, the first smoke outlet 110a can automatically emit smoke, making the use of the electronic atomizer more convenient.

[0065] Furthermore, in some embodiments, the inductive switch 500 may be a magnetic inductive switch 500. For example, the first sensing part 510 may be a magnet, and the second sensing part may be an induction coil.

[0066] Combination Figure 1 and Figure 2 The cover 400 is disposed on the housing 100. Specifically, in some embodiments, the cover 400 is rotatably disposed on the housing 100 to open or close the first smoke outlet 110a. In other embodiments, the cover 400 may also be disposed on the housing 100 in a detachable manner, such as by means of a snap-fit ​​connection.

[0067] Further, see Figure 2 The cover 400 may have a receiving groove 410, in which a first sensing part 510 is disposed. This method allows the first sensing part 510 to be conveniently disposed on the cover 400.

[0068] In some embodiments, the receiving groove 410 may accommodate one end of the housing 100 having the first smoke outlet 110a. For example, when the cover 400 is rotatably mounted on the housing 100, one end of the cover 400 is rotatably connected to the housing 100, and the other end of the cover 400 may move toward or away from the housing 100. When the other end of the cover 400 moves toward the housing 100, the cover 400 may close the first smoke outlet 110a, and at the same time, the end of the housing 100 having the first smoke outlet 110a may be accommodated by the receiving groove 410. This method can prevent the first smoke outlet 110a and the portion of the housing 100 surrounding the first smoke outlet 110a from being contaminated.

[0069] Of course, in some embodiments, to facilitate the setting of the first smoke outlet 110a, a mouthpiece 120 may be provided on the housing 100, and the mouthpiece 120 is provided with the first smoke outlet 110a. The mouthpiece 120 may be detachably connected to the housing 100, for example, by means of a snap-fit ​​connection, to facilitate the assembly between the mouthpiece 120 and the housing 100.

[0070] In some embodiments, in order to facilitate the installation of the second sensing unit 520 and to facilitate the cooperation between the first sensing unit 510 and the second sensing unit 520, the second sensing unit 520 may also be installed inside the mouthpiece 120.

[0071] Combination Figure 4 and Figure 9 In order to facilitate the control of the electronic atomizer, the electronic atomizer may also include a motherboard 600, which can be used to control the operation of the electronic atomizer.

[0072] Specifically, the main board 600 can be disposed inside the housing 100, and the main board 600 is electrically connected to the atomizing device 200, the blowing device 300, and the second sensing unit 520.

[0073] When in operation, after the cover 400 opens the first smoke outlet 110a, the first sensing part 510 moves away from the second sensing part 520. The second sensing part 520 sends the sensing signal of the first sensing part 510 moving away to the main board 600. The main board 600 controls the atomizing device 200 and the blowing device 300 to work.

[0074] Furthermore, combined Figure 4 , Figure 7 and Figure 9In some implementations, to provide users with a better user experience, the electronic atomizer may also include a button 700. The button 700 is located on the housing 100 and is electrically connected to the main board 600. Users can control the atomizing device 200 or the blower 300 and the atomizing device 200 via the button 700 through the main board 600. Additionally, the button 700 can also control the on / off status of the electronic atomizer and the operating modules of the electronic atomizer.

[0075] Further, see Figure 6 In some embodiments, the electronic atomizer may further include a microphone 800, which is disposed within the housing 100 and located in the air path between the first smoke outlet 110a and the first air inlet 110b. The microphone 800 is electrically connected to the main board 600. It is understood that when automatic smoke production is not required, the user can inhale through the first smoke outlet 110a, causing the microphone 800 to sense the airflow and send a sensing signal to the main board 600. The main board 600 can then control the atomizing device 200 to operate, and the vapor produced by the atomizing device 200 is inhaled by the user through the first smoke outlet 110a. In other words, this method allows the electronic atomizer to both automatically produce vapor for the user to inhale and, in the traditional way, allow the user to generate airflow through inhalation, which is then sensed by the microphone 800 to produce vapor for the user to inhale.

[0076] In addition, see Figure 1 In some embodiments, a third smoke outlet 420 may also be provided on the cover 400, which is connected to the first smoke outlet 110a.

[0077] When the cover 400 has a receiving groove 410, the third smoke outlet 420 can communicate with the first smoke outlet 110a through the receiving groove 410.

[0078] Specifically, in some implementations, the user can directly apply pressure to the third smoke outlet 420 and inhale to make the microphone 800 sense the airflow. Then, the main board 600 controls the atomizing device 200 to generate smoke for the user to inhale. This method does not require opening the cover 400, making it convenient for the user to inhale directly.

[0079] Alternatively, in other embodiments, the atomizing device 200 and the blowing device 300 can be controlled by button 700, so that the smoke generated by the atomizing device 200 is discharged from the second smoke outlet, the first smoke outlet 110a and the third smoke outlet 420 in sequence to the outside of the cover 400 under the action of the blowing device 300, so that the user can inhale without opening the cover 400.

[0080] In other words, the above methods provide users with a variety of ways to use electronic atomizers.

[0081] Additionally, it should be noted that in some embodiments, although a third smoke outlet 420 communicating with the first smoke outlet 110a is provided on the cover 400, when the cover 400 moves in the direction of opening the first smoke outlet 110a, since the first sensing part 510 can move away from the second sensing part 520, the second sensing part 520 can still enable the atomizing device 200 and the blowing device 300 to work through the sensing signal, that is, the electronic atomizer can still automatically emit smoke by opening the cover 400.

[0082] Combination Figures 5 to 9 In some embodiments, to facilitate replacement of the atomizing device 200 in the electronic atomizer, the housing 100 may include an outer shell 140 and a base 150. One end of the outer shell 140 may be provided with a first smoke outlet 110a. The base 150 is detachably connected to the end of the outer shell 140 away from the first smoke outlet 110a. The base 150 is provided with a first air inlet 110b. The atomizing device 200 is detachably mounted on the base 150, and when the base 150 is connected to the outer shell 140, the atomizing device 200 is housed within the outer shell 140.

[0083] It is understandable that when the atomizing device 200 is mounted on the base 150, the blowing device 300 is correspondingly mounted on the base 150 to facilitate blowing air onto the atomizing device 200.

[0084] When the atomizing device 200 needs to be replaced, the base 150 can be removed from the outer casing 140, and then the atomizing device 200 can be removed from the base 150 for replacement. After replacement, the base 150 can be put back into the outer casing 140.

[0085] Specifically, in combination Figure 5 and Figure 6 In some embodiments, the base 150 and the housing 100 can be detachably connected by magnetic attraction. For example, a first magnetic member 160a may be provided on the housing 140, and a second magnetic member 160b that cooperates with the first magnetic member 160a may be provided on the base 150.

[0086] Specifically, see Figure 9In some embodiments, to facilitate replacement of the atomizing device 200, the electronic atomizer may further include a mounting base 170a and an electrode 170b. The mounting base 170a and the electrode 170b are electrically connected to the main board 600 to form positive and negative electrodes, respectively. A mounting base 170a is provided on the base 150, and a first through hole 171a is provided through the mounting base 170a. The electrode 170b is disposed within the first through hole 171a, and an insulating member 170c is provided between the electrode 170b and the mounting base 170a. The electrode 170b also has a second through hole 171b. The atomizing device 200 is connected to the mounting base 170a and simultaneously contacts the electrode 170b. A second air inlet communicates with the second through hole 171b, and a blower 300 is disposed on the side of the second through hole 171b away from the atomizing device 200. The mounting base 170a may have threads on its side wall, and the atomizing device 200 and the mounting base 170a are detachably connected by the threads.

[0087] Understandably, when the atomizing device 200 is installed on the mounting base 170a and comes into contact with the electrode 170b, the atomizing device 200 is connected to the positive and negative electrodes. At this time, the main board 600 can control the operation of the atomizing device 200.

[0088] In addition, since the electrode 170b is provided with a second through hole 171b that communicates with the second air inlet, and the blowing device 300 is located on the side of the second through hole 171b away from the atomizing device 200, the blowing device 300 can blow air into the second air inlet through the second through hole 171b.

[0089] Furthermore, to ensure that the blowing device 300 can blow sufficient air into the atomizing device 200, thereby enabling the electronic atomizer to produce sufficient vapor, the electronic atomizer may also include a ventilation component 900, which has a first air inlet and a second air inlet that are interconnected. The first air inlet is connected to the end of the electrode 170b that is away from the atomizing device 200, so that the first air inlet communicates with the second through hole 171b; for example, the first air inlet can be sleeved with the electrode 170b. The blowing device 300 is connected to the second air inlet so that the blowing device 300 blows air into the second air inlet; for example, the air outlet of the blowing device 300 is connected to the second air inlet.

[0090] See Figure 6 When the housing 100 includes the outer shell 140 and the base 150, the microphone 800 can be disposed on the base 150. Specifically, a through hole communicating with the interior of the base 150 can be provided on the end face of the base 150, and the through hole can be disposed close to the mounting position of the atomizing device 200, with the microphone 800 located inside the through hole. After the base 150 is installed on the outer shell 140, the through hole can communicate with the first smoke outlet 110a.

[0091] For example, combining Figure 4 and Figure 5 The outer casing 140 may be provided with a receiving cavity 141. One end of the receiving cavity 141 is connected to the first smoke outlet 110a, and the other end of the receiving cavity 141 extends to the other end of the outer casing 140 to form an opening. When the base 150 is installed on the outer casing 140, the atomizing device 200 on the base 150 is received in the receiving cavity 141 through the opening, and an airflow channel 142 is formed between the atomizing device 200 and the side wall of the receiving cavity 141. The airflow channel 142 is connected to the first smoke outlet 110a and the through hole respectively.

[0092] Combination Figure 4 , Figure 5 and Figure 6 When the housing 100 includes an outer shell 140 and a base 150, the cover 400 and the second sensing unit 520 can be respectively disposed on the outer shell 140, and the main board 600 can be disposed inside the base 150. The cover 400 can be rotatably connected to the outer shell 140 to open or close the first smoke outlet 110a. The second sensing unit 520 can be electrically connected to the main board 600 by means of contact connection between the spring pin 1000b and the contact 1000a. That is, after the base 150 is connected to the outer shell 140, the second sensing unit 520 achieves electrical connection with the main board 600 after the contact connection between the spring pin 1000b and the contact 1000a.

[0093] Of course, in some implementations, the mainboard 600 may also be housed inside the housing 140, and the atomizing device 200, microphone 800, blower 300 and button 700 may be electrically connected to the mainboard 600 by means of contact connection between spring pin 1000b and contact point 1000a.

[0094] In some embodiments, the electronic atomizer may also include a power source (not shown in the figure), which may be a rechargeable battery. The power source is located inside the housing 140 and is electrically connected to the main board 600 via a contact connection between a spring pin 1000b and a contact 1000a.

[0095] For example, the housing 140 may be provided with a contact 1000a, the second sensing part 520 and the power supply are electrically connected to the contact 1000a respectively, the base 150 is provided with a spring pin 1000b, the main board 600 is electrically connected to the spring pin 1000b, and when the base 150 is installed on the housing 100, the spring pin 1000b contacts the contact 1000a.

[0096] The above are merely preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of some utility models should be included within the protection scope of some utility models.

Claims

1. An electronic atomizer capable of automatically producing smoke, characterized in that, include: The casing is provided with a first smoke outlet and a first air inlet; An atomizing device is disposed within the housing. The atomizing device has a second smoke outlet and a second air inlet. The second smoke outlet of the atomizing device is connected to the first smoke outlet. A blowing device is disposed on one side of the second air inlet of the atomizing device. The blowing device is used to blow the gas that enters the housing through the first air inlet to the atomizing device through the second air inlet. A cover, disposed on the housing, is used to open or close the first smoke outlet; as well as The inductive switch includes a first sensing part and a second sensing part that cooperate with each other. The first sensing part is disposed on the cover, and the second sensing part is disposed on the housing. The second sensing part is electrically connected to the atomizing device and the blowing device respectively. When the cover opens the first smoke outlet, the first sensing part moves away from the second sensing part, and the second sensing part enables the atomizing device and the blowing device to work.

2. The electronic atomizer capable of automatically producing smoke as described in claim 1, characterized in that, The cover is rotatably mounted on the housing; The cover has a receiving groove, and the first sensing unit is disposed in the receiving groove; and The receiving groove accommodates one end of the housing that has the first smoke outlet.

3. The electronic atomizer capable of automatically producing smoke as described in claim 2, characterized in that, The housing is provided with a mouthpiece, the mouthpiece is provided with a first smoke outlet, and the receiving groove accommodates the mouthpiece.

4. The electronic atomizer capable of automatically producing smoke as described in claim 1, characterized in that, It also includes a motherboard, which is disposed inside the housing and is electrically connected to the atomizing device, the blowing device, and the second sensing unit.

5. The electronic atomizer capable of automatically producing smoke as described in claim 4, characterized in that, Also includes: A button is provided on the housing, and the button is electrically connected to the motherboard; The microphone is disposed inside the housing and located in the air path between the first smoke outlet and the first air inlet. The microphone is electrically connected to the motherboard.

6. The electronic atomizer capable of automatically producing smoke as described in claim 5, characterized in that, The cover is provided with a third smoke outlet, which is connected to the first smoke outlet.

7. The electronic atomizer capable of automatically producing smoke as described in any one of claims 4 to 6, characterized in that, The housing includes an outer shell and a base; The first smoke outlet is provided at one end of the outer casing; The base is detachably connected to the end of the outer shell away from the first smoke outlet. The base is provided with a first air inlet. The atomizing device is detachably mounted on the base. When the base is connected to the outer shell, the atomizing device is housed inside the outer shell.

8. The electronic atomizer capable of automatically producing smoke as described in claim 7, characterized in that, The cover and the second sensing part are respectively disposed on the outer shell, and the main board is disposed inside the base; The second sensing unit is electrically connected to the motherboard via a spring-loaded contact pin. as well as It also includes a power supply, which is disposed inside the housing and is electrically connected to the motherboard via a spring-loaded contact connection.

9. The electronic atomizer capable of automatically producing smoke as described in claim 7, characterized in that, It also includes a mounting base and electrodes, which are electrically connected to the motherboard to form positive and negative terminals, respectively. The base is provided with a mounting seat, the mounting seat is provided with a first through hole, the electrode is disposed in the first through hole, and an insulating element is provided between the electrode and the mounting seat, and the electrode is provided with a second through hole; The atomizing device is connected to the mounting base and simultaneously contacts the electrode; the second air inlet communicates with the second through hole; and The blowing device is located on the side of the second through hole away from the atomizing device.

10. The electronic atomizer capable of automatically producing smoke as described in claim 9, characterized in that, It also includes a ventilation component having a first air vent and a second air vent that are interconnected; The first air outlet is connected to the end of the electrode that is away from the atomizing device, so that the first air outlet is connected to the second through hole; The blower is connected to the second air outlet so that the blower blows air onto the second air outlet.