Atomization device
By setting up an identification component that is electrically connected to the power supply component in the atomizing device, user identification and verification can be achieved, which solves the safety hazards caused by the connection of the heating parts of the HNB atomizing device, and improves safety and user experience.
Patent Information
- Application Number
- CN202422516720.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-17
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2034-10-17
AI Technical Summary
The fact that the heating element of an HNB atomizing device is connected to the outside poses a safety hazard to users, especially the risk of children accidentally triggering the device and getting burned.
The atomizing device is equipped with an identification component that is electrically connected to the power supply component. Before use, the user needs to pass the identification verification. Once the verification is successful, the power supply component will supply power; otherwise, the heating component will remain in a stopped state to avoid accidental triggering.
The device improves safety by preventing burns to users, especially children, from accidentally triggering the heating element, eliminating the need for buttons and enhancing the user experience.
Smart Images

Figure CN223463653U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of aerosol atomization, in particular to an atomization device. BACKGROUND
[0002] The heat not burning (HNB) atomization device can heat the solid aerosol product, so that the aerosol product can be heated below the ignition point and release aerosol. At present, the heating part of the HNB atomization device is usually in communication with the outside, so that the aerosol product can be inserted into the HNB atomization device for atomization, but at the same time, the user is easy to contact the heating part of the HNB atomization device, thereby causing certain safety hazards to the user's use. CONTENT OF THE UTILITY MODEL
[0003] The present application provides an atomization device, which aims to solve the technical problem of safety hazards in the use of HNB atomization device by users.
[0004] Some embodiments of the present application provide an atomization device, comprising:
[0005] A shell having a socket for inserting a solid aerosol product;
[0006] A heating assembly installed in the shell, the socket being in communication with a heating source of the heating assembly, and the heating source of the heating assembly being accessible when the aerosol product is not inserted into the socket;
[0007] A power supply assembly electrically connected with the heating assembly; and
[0008] An identification assembly arranged in the shell and electrically connected with the power supply assembly, the identification assembly being used for user identification verification;
[0009] When the identification assembly passes the verification, the power supply assembly supplies power to the heating assembly, and the heating assembly heats and atomizes the aerosol product to generate aerosol;
[0010] When the identification assembly fails the verification, the power supply assembly cuts off the power supply to the heating assembly, and the heating assembly remains in the state of stopping heating.
[0011] In some embodiments, the identification assembly comprises an identification screen electrically connected with the power supply assembly, the identification screen being arranged on the shell and being used for providing user touch identification verification; and / or,
[0012] The identification assembly comprises an identification camera electrically connected with the power supply assembly, the identification camera being arranged on the shell and being used for providing user face or eye identification verification.
[0013] In some embodiments, the identification screen is a fingerprint identification screen configured to provide fingerprint identification verification of a user; and / or,
[0014] the identification screen is a gesture identification screen configured to provide gesture identification verification of a user; and / or,
[0015] the identification screen is a password identification screen configured to provide password identification verification of a user.
[0016] In some embodiments, the identification assembly further comprises a first support;
[0017] the identification screen is connected to the first support, the housing is provided with a mounting port, and the first support is connected to the inner side of the housing so that the identification screen is exposed from the housing at the position of the mounting port and provides a user with a touch.
[0018] In some embodiments, the socket is arranged at the top of the housing, and the mounting port is arranged at the bottom of the housing so that the identification screen is exposed at the bottom of the housing.
[0019] In some embodiments, the heating assembly comprises a heating element and a containing element;
[0020] the containing element is provided with a containing cavity in communication with the socket, the aerosol product is inserted into the containing cavity from the socket, the heating element is arranged in the containing element and is electrically connected to the power supply assembly, and when the power supply assembly supplies power to the heating element, the heating element forms a heating source in the containing cavity to heat the aerosol product.
[0021] In some embodiments, the power supply assembly comprises an electric core and a first circuit board, and the atomization device further comprises a second support;
[0022] the second support is arranged in the housing, the first circuit board is connected to the second support, the electric core is arranged between the second support and the first circuit board, the containing element is arranged on the side of the second support away from the electric core, and the first circuit board is electrically connected to the electric core, the heating element, and the identification assembly, respectively.
[0023] In some embodiments, the atomization device further comprises a prompting device;
[0024] the prompting device is arranged in the housing and is electrically connected to the first circuit board, and the prompting device is configured to vibrate after the identification assembly passes the verification.
[0025] In some embodiments, the atomization device further comprises a mouthpiece support;
[0026] The socket is arranged on the mouthpiece support connected with the shell, and the accommodating member is pressed on the second support through the mouthpiece support.
[0027] In some embodiments, the atomization device further comprises a display screen, a second circuit board and a third support;
[0028] The power supply assembly is mounted on the third support, the display screen and the second circuit board are electrically connected and jointly mounted on the third support, the second circuit board is electrically connected with the power supply assembly, and the third support is mounted in the shell.
[0029] According to the atomization device in the above embodiments, by arranging the identification assembly on the shell and electrically connecting the identification assembly with the power supply assembly, the user needs to first pass the identification verification of the identification assembly before using the atomization device. If the verification is passed, the power supply assembly can supply power to the heating assembly to heat and atomize the aerosol product. If the verification fails, the power supply assembly will cut off the power supply to the heating assembly to keep the heating assembly in a state of stopping heating. In this way, in the case that the identification assembly fails to pass the verification, even if the user inserts his finger into the socket, the heating assembly will not start, thereby avoiding the risk of the user being scalded by the heating assembly and improving the safety of using the atomization device. In addition, the application can also save the design of the key by starting the heating assembly for heating after the identification verification by the identification assembly, so as to avoid the user from starting the heating assembly due to accidental touch of the key. BRIEF DESCRIPTION OF DRAWINGS
[0030] Figure 1 It is a schematic diagram of the three-dimensional structure of the atomization device in an embodiment of the application;
[0031] Figure 2 It is a schematic diagram of the three-dimensional structure of the atomization device in an embodiment of the application; Figure 1
[0032] Figure 3 It is a schematic diagram of the cross-sectional structure of the atomization device in an embodiment of the application; Figure 1
[0033] Figure 4 It is a schematic diagram of the exploded structure of the atomization device in an embodiment of the application; Figure 1
[0034] Figure 5 It is a schematic diagram of the cross-sectional structure of the heating assembly in the atomization device in an embodiment of the application; Figure 4
[0035] Figure 6 It is a schematic diagram of the cross-sectional structure of the heating assembly in the atomization device in an embodiment of the application; Figure 4
[0036] Figure 7 It is a schematic diagram of the cross-sectional structure of the heating assembly in the atomization device in an embodiment of the application; Figure 4 Schematic diagram of the three-dimensional structure of the second bracket in the atomization device from another perspective.
[0037] in:
[0038] 1-shell; 11-first shell; 12-second shell; 13-socket; 14-installation port; 15-nozzle bracket; 2-heating component; 21-heating element; 22-accommodating component; 220-accommodating chamber; 221-inner tube; 222-outer tube; 223-base; 3-power supply component; 31-battery cell; 32-first circuit board; 4-identification component; 41-identification screen; 42-first bracket; 5-second bracket; 6-prompt device; 7-display screen; 8-second circuit board; 9-third bracket. Specific embodiments
[0039] The present application is further described in detail below by means of specific embodiments in conjunction with the accompanying drawings. Similar elements in different embodiments are numbered with associated similar elements. In the following embodiments, many detailed descriptions are provided to enable the present application to be better understood. However, those skilled in the art will readily appreciate that some of the features may be omitted in different circumstances, or may be replaced by other elements, materials, or methods. In some cases, some operations related to the present application are not shown or described in the specification. This is to avoid the core portion of the present application being overwhelmed by excessive descriptions, and for those skilled in the art, it is not necessary to describe these related operations in detail. They can fully understand the related operations based on the description in the specification and the general technical knowledge in the art.
[0040] In addition, the features, operations, or characteristics described in the specification may be combined in any appropriate manner to form various embodiments, and the operational steps involved in each embodiment may be interchanged or adjusted in a manner that is obvious to those skilled in the art. Therefore, the specification and drawings are only for the purpose of clearly describing a particular embodiment and do not imply a required composition and / or sequence.
[0041] The serial numbers assigned to components herein, such as "first," "second," etc., are used solely to distinguish the objects being described and do not convey any sequential or technical meaning. References to "connection" and "coupling" herein, unless otherwise specified, include both direct and indirect connections (couplings).
[0042] The present application provides an atomizing device, such as Figures 1 to 3As shown, the atomization device can include a housing 1, a heating assembly 2, a power supply assembly 3, and an identification assembly 4. The housing 1 has a socket 13 for inserting a solid-phase aerosol product. The heating assembly 2 is installed in the housing 1, and the socket 13 is in communication with a heating source of the heating assembly 2. When the aerosol product is not inserted into the socket 13, the heating source of the heating assembly 2 can be touched. The power supply assembly 3 is electrically connected to the heating assembly 2. The identification assembly 4 is arranged in the housing 1 and is electrically connected to the power supply assembly 3. The identification assembly 4 can be used for user identification verification. When the identification assembly 4 passes the verification, the power supply assembly 3 supplies power to the heating assembly 2, and the heating assembly 2 can heat and atomize the aerosol product to generate an aerosol. When the identification assembly 4 fails the verification, the power supply assembly 3 cuts off the power supply to the heating assembly 2, and the heating assembly 2 can remain in a state of stopping heating.
[0043] In the prior art, the HNB atomization device usually starts heating by pressing a button. The diameter of the solid-phase aerosol product is about 4-7 mm. In order to enable the aerosol product to be inserted into the atomization device for atomization, the diameter of the socket 13 is usually larger than that of the aerosol product. When the aerosol product is not inserted into the socket 13, since the socket 13 is directly in communication with the heating source of the heating assembly 2, the user is prone to accidentally touch the button during use, and there is a risk of the finger being scalded by the heating assembly 2 due to the finger being inserted into the socket 13. Especially for children, the children may insert their fingers into the atomization device out of curiosity, and when the button is accidentally touched, unnecessary harm is likely to be caused.
[0044] The present application sets the identification assembly 4 on the housing 1 and electrically connects the identification assembly 4 to the power supply assembly 3, so that the user needs to first pass the identification verification of the identification assembly 4 before using the atomization device. If the verification passes, the power supply assembly 3 can supply power to the heating assembly 2 to enable the heating assembly 2 to heat and atomize the aerosol product. If the verification fails, the power supply assembly 3 cuts off the power supply to the heating assembly 2 to enable the heating assembly 2 to remain in a state of stopping heating. In this way, in the case where the identification assembly 4 does not pass the verification, even if the user inserts the finger into the socket 13, the heating assembly 2 will not start, thereby avoiding the risk of the user being scalded by the heating assembly 2 and improving the safety of using the atomization device. In addition, the present application can also eliminate the design of the button by starting the heating assembly 2 to heat after the identification verification by the identification assembly 4, so as to avoid the user from starting the heating assembly 2 due to accidental touch of the button.
[0045] In addition, the housing 1 can be provided in the form of a box, a strip, or a column, etc. For example, as shown in FIG. 1, the housing 1 can be provided in the form of a box. As shown in FIG. 2, the housing 1 can be provided in the form of a strip. As shown in FIG. 3, the housing 1 can be provided in the form of a column. Figure 4As shown, the shell 1 can include a first shell 11 and a second shell 12, which can be connected by clamping, screwing or bonding to form a box-shaped shell 1 structure. Among them, the second shell 12 can be set as a transparent shell to improve the aesthetics of the atomization device. The power supply assembly 3 can be arranged in the shell 1, or can be detachably connected with the shell 1 by plugging, clamping or screwing. The specific structure of the shell 1 and the power supply assembly 3 is not specially limited in the present application.
[0046] In some embodiments, as shown in Figure 2 and Figure 3 The identification assembly 4 can include an identification screen 41 electrically connected with the power supply assembly 3, which can be arranged on the shell 1 and can be used to provide user touch identification verification. In other embodiments, the identification assembly 4 can also include an identification camera electrically connected with the power supply assembly 3, which can be arranged on the shell 1 and can be used to provide user face or eye identification verification.
[0047] When the identification screen 41 is arranged on the shell 1, the user can verify by touching the identification screen 41 before using the atomization device. When the identification camera is arranged on the shell 1, the user can verify by face or eye identification before using the atomization device. In addition, the identification screen 41 and the identification camera can also be arranged on the shell 1 at the same time, so that the user can verify by two kinds of identification before using the atomization device, so as to avoid that children start the heating assembly 2 by mistake due to curiosity. The specific structure of the identification assembly 4 is not specially limited in the present application.
[0048] In some embodiments, as shown in Figure 2 and Figure 3 The identification screen 41 can be a fingerprint identification screen 41, which can be used to provide user fingerprint identification verification; and / or, the identification screen 41 can be a gesture identification screen 41, which can be used to provide user gesture identification verification; and / or, the identification screen 41 can be a password identification screen 41, which can be used to provide user password identification verification.
[0049] When the user touches the identification screen 41, he can verify by fingerprint identification, gesture pattern or password input, or by multiple ways of fingerprint identification, gesture pattern and password input. The specific verification method of the identification screen 41 is not specially limited in the present application.
[0050] In some embodiments, as shown in Figure 4 and Figure 5As shown, the identification assembly 4 can further include a first support 42; the identification screen 41 is connected to the first support 42, and the shell 1 can be provided with a mounting port 14, and the first support 42 can be connected to the inner side of the shell 1, so that the identification screen 41 is exposed from the shell 1 at the position of the mounting port 14 and provides a user to touch.
[0051] As shown, the first support 42 can be a plate structure or a frame structure, and the identification screen 41 can be connected to the side of the first support 42 facing the mounting port 14 by means of adhesion, clamping or insertion, etc. The specific structure of the first support 42 is not specially limited in the present application. For example, the mounting port 14 can be provided on the first shell 11, the first support 42 can be connected to the inner side of the first shell 11, and the identification screen 41 can be exposed from the shell 1 at the position of the mounting port 14 so as to facilitate the user to touch the identification screen 41. In addition, the first support 42 can also be provided as a heat dissipation plate structure, so that the heat dissipation plate can transfer the heat of the identification screen 41 to the first shell 11 for heat dissipation, thereby reducing the problem of damage to the identification screen 41 due to overheating.
[0052] In some embodiments, as shown in Figures 3 to 5 The mounting port 14 can be provided at the bottom of the shell 1, so that the identification screen 41 can be exposed at the bottom of the shell 1.
[0053] The identification screen 41 is arranged at the bottom of the shell 1, which is not easy to be found by children, so as to reduce the risk of children mistakenly starting the heating assembly 2. At the same time, the insertion port 13 and the identification screen 41 are arranged opposite to each other on the shell 1, so that the identification screen 41 can be away from the side of the insertion port 13. When a child accidentally starts the heating assembly 2 by touching the identification screen 41 due to curiosity (for example, when the gesture of the child's touch accidentally coincides with the verification gesture), the insertion port 13 is located away from the identification screen 41, which can also prevent the heating assembly 2 in the insertion port 13 from being directed towards the child, thereby causing the risk of scalding, thereby improving the safety of the use of the atomization device. In other embodiments, according to different user holding habits, the identification screen 41 can also be arranged on the side or top of the shell 1, and the specific position of the identification screen 41 arranged on the shell 1 is not specially limited in the present application.
[0054] In some embodiments, as shown in Figure 6 The heating assembly 2 can include a heating element 21 and a containing element 22; the containing element 22 is provided with a containing cavity 220 in communication with the insertion port 13, and an aerosol product can be inserted into the containing cavity 220 from the insertion port 13; the heating element 21 is arranged in the containing element 22 and is electrically connected to the power supply assembly 3; when the power supply assembly 3 supplies power to the heating element 21, the heating element 21 can form a heating source in the containing cavity 220 to heat the aerosol product.
[0055] For example, the heating element 21 can be provided in the form of a heating net, a heating wire, a heating sheet or a heating body, and the accommodating element 22 can include an inner tube 221, an outer tube 222 and a base 223. The inner tube 221 is sleeved in the outer tube 222, and the base 223 is clamped between the bottom of the inner tube 221 and the outer tube 222, so that the inner tube 221 and the base 223 form a containing cavity 220 with an opening at the top. The top of the containing cavity 220 is in communication with the socket 13, so that the aerosol product can be inserted into the containing cavity 220 from the socket 13. The heating element 21 can be sleeved on the inner side of the inner tube 221, or on the outer side of the inner tube 221 or the outer tube 222, or provided on the base 223. When the aerosol product is inserted into the containing cavity 220, the heating assembly 2 is started, and the heating element 21 can form a heating source in the containing cavity 220, thereby heating the aerosol product to generate aerosol. The specific structure and position of the heating element 21 are not specially limited in the present application.
[0056] In the formula, the heating element 21 can be made of a metal material, and the inner tube 221, the outer tube 222 and the base 223 can be made of a high-temperature-resistant polyether ether ketone (PEEK) material, so as to avoid the diffusion of high temperature generated by the heating element 21 to the outside of the accommodating element 22, and also avoid the dissipation of heat of the heating element 21. The specific materials of the heating element 21 and the accommodating element 22 are not specially limited in the present application.
[0057] In some embodiments, as shown in Figure 4 The power supply assembly 3 can include a battery 31 and a first circuit board 32, and the atomization device can further include a second support 5. The second support 5 is arranged in the shell 1, the first circuit board 32 is connected with the second support 5, the battery 31 is arranged between the second support 5 and the first circuit board 32, the accommodating element 22 is arranged on the side of the second support 5 away from the battery 31, and the first circuit board 32 is electrically connected with the battery 31, the heating element 21 and the identification assembly 4 respectively.
[0058] For example, the second support 5 can be connected with the first circuit board 32 by bonding or clamping, and the battery 31 is installed between the second support 5 and the first circuit board 32, which is beneficial to save the internal space of the shell 1, so that the structure inside the atomization device is more compact. At the same time, the accommodating element 22 is arranged on the side of the second support 5 away from the battery 31, so that the second support 5 can support the accommodating element 22, so that the containing cavity 220 is aligned with the socket 13, and the containing cavity 220 is prevented from being misaligned with the socket 13, so that the aerosol product is more easily inserted into the containing cavity 220.
[0059] The identification screen 41 can be electrically connected to the first circuit board 32 through a flexible flat cable, so that the identification screen 41 has a certain installation freedom, and thus the identification screen 41 can be connected to the side of the first support 42 facing the installation opening 14. In other embodiments, the identification screen 41 can also be directly electrically connected to the board surface of the first circuit board 32 facing the installation opening 14, and the application does not specially limit the connection mode between the identification screen 41 and the first circuit board 32.
[0060] In addition, the outer tube 222 of the accommodating member 22 and the second support 5 can be connected through clamping, bonding or insertion, so as to improve the connection reliability between the heating assembly 2 and the second support 5, and avoid the shaking of the heating assembly 2 relative to the second support 5. The application does not specially limit the specific connection structure between the heating assembly 2 and the second support 5.
[0061] When the identification assembly 4 is verified, the battery cell 31 can supply power to the first circuit board 32, and the first circuit board 32 can supply power to the heating element 21, so that the heating element 21 heats the aerosol generating article. When the identification assembly 4 fails to verify, the battery cell 31 can cut off the power supply to the first circuit board 32, and the first circuit board 32 cuts off the power supply to the heating element 21, so that the heating element 21 remains in an unstarted state, thereby avoiding the problem of scalding caused by the user mistakenly starting the heating element 21.
[0062] In some embodiments, as shown in Figure 7 The prompting device 6 is arranged in the shell 1 and electrically connected to the first circuit board 32, and the prompting device 6 can be used to vibrate after the identification assembly 4 is verified.
[0063] For example, the prompting device 6 can be a vibration motor, which can be connected to the second support 5. When the identification assembly 4 is verified, the vibration motor can vibrate on the second support 5 to prompt the user that the verification is passed. At the same time, the first circuit board 32 supplies power to the heating element 21 to heat the aerosol generating article. In other embodiments, the vibration motor can also be arranged on the shell 1, so that the vibration motor drives the shell 1 to vibrate to prompt the user that the verification is passed. The application does not specially limit the specific position of the prompting device 6.
[0064] In addition, the prompting device 6 can also be a buzzer, which can be arranged in the shell 1 and electrically connected to the first circuit board 32. When the identification assembly 4 is verified, the buzzer can prompt the user that the verification is passed by emitting a prompt sound. The application does not specially limit the type of the prompting device 6 and the prompting mode of the prompting device 6.
[0065] In some embodiments, as shown in Figure 4As shown, the atomization device can further include a mouthpiece support 15; the socket 13 is arranged on the mouthpiece support 15, the mouthpiece support 15 is connected with the shell 1, and the accommodating member 22 is clamped on the second support 5 through the mouthpiece support 15.
[0066] When assembling the atomization device, the identification assembly 4, the first circuit board 32, the second support 5, the prompting device 6, the electric core 31 and the heating assembly 2 can be first installed in the shell 1, and then the mouthpiece support 15 is installed on the shell 1 by clamping or inserting, etc. At this time, the mouthpiece support 15 can clamp the accommodating member 22 on the second support 5, so as to ensure the stability of the internal structure of the atomization device.
[0067] In some embodiments, as shown in Figure 3 and Figure 4 As shown, the atomization device can further include a display screen 7, a second circuit board 8 and a third support 9; the power supply assembly 3 is installed on the third support 9, the display screen 7 is electrically connected with the second circuit board 8 and is jointly installed on the third support 9, the second circuit board 8 is electrically connected with the power supply assembly 3, and the third support 9 is installed in the shell 1.
[0068] The display screen 7 can display information whether the user is verified, and at the same time, the display screen 7 can also display information such as heating power, remaining power, working state and charging state of the atomization device, so that the user can reasonably use the atomization device according to the displayed content. In addition, the display screen 7 and the identification screen 41 can be two screens arranged separately, or different display areas arranged on the same screen, and the number of screens arranged on the atomization device is not specially limited in the application.
[0069] For example, the third support 9 can be arranged as an L-shaped support, the first circuit board 32 can be installed at the bottom of the third support 9, and the display screen 7 and the second circuit board 8 can be installed on the side of the third support 9 away from the heating assembly 2 and close to the second shell 12, so that the display screen 7 can be away from the heating assembly 2, so as to avoid the problem that the display screen 7 is damaged due to overheating.
[0070] The above uses specific examples to describe the present application, which is only used to help understand the present application and does not limit the present application. For those skilled in the art to which the present application belongs, according to the idea of the present application, a number of simple deductions, deformations or substitutions can be made.
Claims
1. An atomising device characterised in that, The aerosol generating device comprises: a housing having a socket for inserting a solid aerosol generating article; a heating assembly installed in the housing, the socket being in communication with a heating source of the heating assembly, the heating source of the heating assembly being accessible when the aerosol generating article is not inserted into the socket; a power supply assembly electrically connected to the heating assembly; and an identification assembly provided on the housing and electrically connected to the power supply assembly, the identification assembly being configured to perform user identification verification; when the identification assembly passes the verification, the power supply assembly supplies power to the heating assembly, the heating assembly heats and atomizes the aerosol generating article to generate an aerosol; when the identification assembly fails the verification, the power supply assembly cuts off power to the heating assembly, and the heating assembly remains in a state of stopping heating. The identification assembly comprises an identification screen electrically connected to the power supply assembly, the identification screen being provided on the housing and being configured to provide user touch identification verification; and / or 2. The atomization device of claim 1, wherein, The identification assembly comprises an identification camera electrically connected to the power supply assembly, the identification camera being provided on the housing and being configured to provide user face or eye identification verification. The identification screen is a fingerprint identification screen configured to provide user fingerprint identification verification; and / or 3. The atomization device of claim 2, wherein, The identification screen is a gesture identification screen configured to provide user gesture identification verification; and / or The identification screen is a password identification screen configured to provide user password identification verification. The identification assembly further comprises a first support; 4. The atomizing device of claim 2, wherein The identification screen is connected to the first support, the housing is provided with a mounting port, and the first support is connected to the inner side of the housing so that the identification screen is exposed from the housing at the mounting port and provides user touch. The socket is provided at the top of the housing, and the mounting port is provided at the bottom of the housing so that the identification screen is exposed at the bottom of the housing.
5. The atomizing device of claim 4, wherein The heating assembly comprises a heating member and a containing member; 6. The atomization device of claim 1, wherein, The containing member is provided with a containing cavity in communication with the socket, the aerosol generating article is inserted into the containing cavity from the socket, the heating member is provided in the containing member and is electrically connected to the power supply assembly, and when the power supply assembly supplies power to the heating member, the heating member forms a heating source in the containing cavity to heat the aerosol generating article. The power supply assembly comprises an electric core and a first circuit board, and the atomization device further comprises a second support; 7. The atomizing device of claim 6, wherein The second support is provided in the housing, the first circuit board is connected to the second support, the electric core is provided between the second support and the first circuit board, the containing member is provided on the side of the second support away from the electric core, and the first circuit board is electrically connected to the electric core, the heating member and the identification assembly, respectively. The atomization device further comprises a prompting device; 8. The atomizing device of claim 7, wherein, The prompting device is provided in the housing and is electrically connected to the first circuit board, and the prompting device is configured to vibrate after the identification assembly passes the verification. The atomization device further comprises a mouthpiece support; 9. The atomization device of claim 7, wherein, The insertion port is arranged on the mouthpiece support connected with the shell, and the accommodating member is pressed on the second support through the mouthpiece support.
10. The atomization device of any one of claims 1-9, wherein, The atomization device further comprises a display screen, a second circuit board and a third support; The power supply assembly is mounted on the third support, the display screen and the second circuit board are electrically connected and jointly mounted on the third support, the second circuit board is electrically connected with the power supply assembly, and the third support is mounted in the shell.