Electronic cigarette
Patent Information
- Application Number
- CN202522010197.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-17
- Publication Date
- 2026-09-11
- Estimated Expiration
- 2035-09-17
AI Technical Summary
[0004]本申请实施例的目的是提供一种电子烟,能够解决电子烟美观性受影响或者容易被误触发等问题
[0009]本申请实施例中的电子烟,将指纹传感器设置在按键的外侧,既可以通过指纹传感器实现指纹的识别功能,又可以通过按键实现对电子烟的操作;并且,指纹传感器和按键集成设置,相比于单独设置方式,可以减少壳体表面被占用的空间,从而可以有利于缩小电子烟的体积,有利于实现电子烟的小型化设计,还可以使壳体的外观更加简洁,有利于提高电子烟的美观性,并且,由于缩小了在壳体表面的占用面积,从而可以降低误触几率。
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Figure CN224734756U_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the technical field of electronic cigarettes, and specifically relates to an electronic cigarette. Background Technology
[0002] To prevent minors from using e-cigarettes, most current e-cigarettes incorporate some form of identification. Fingerprint recognition technology, with its speed and reliability, is well-suited for application in e-cigarettes for identification purposes to prevent minors from using them. Current e-cigarette devices use fingerprint recognition modules to identify the user's identity information, and additional physical buttons are used to operate and control the e-cigarette.
[0003] However, considering the small size of e-cigarettes, setting fingerprint recognition modules, physical buttons, etc. on the e-cigarette casing not only affects the overall aesthetics of the e-cigarette, but also makes it easy to accidentally touch them, affecting the user experience. Utility Model Content
[0004] The purpose of this application is to provide an electronic cigarette that can solve problems such as the impact on the aesthetics of electronic cigarettes or their susceptibility to accidental triggering.
[0005] To solve the above-mentioned technical problems, this application is implemented as follows:
[0006] This application provides an electronic cigarette, including: a housing, a fingerprint sensor, and a button;
[0007] Both the fingerprint sensor and the button are located on the surface close to the housing, with the fingerprint sensor located on the outside of the button;
[0008] When the fingerprint sensor is pressed, at least one of the fingerprint sensor and the button is triggered.
[0009] In this embodiment of the electronic cigarette, the fingerprint sensor is located on the outside of the button. The fingerprint sensor can be used to recognize fingerprints, and the button can be used to operate the electronic cigarette. Furthermore, the integration of the fingerprint sensor and the button reduces the space occupied on the surface of the casing compared to separate placements. This helps to reduce the size of the electronic cigarette, facilitates miniaturization, and makes the casing look simpler, improving its aesthetics. In addition, the reduced area occupied on the casing surface also reduces the chance of accidental touches. Attached Figure Description
[0010] Figure 1 This is a first schematic diagram of the integrated module before encapsulation as disclosed in the embodiments of this application;
[0011] Figure 2This is a second schematic diagram of the integrated module before encapsulation as disclosed in the embodiments of this application;
[0012] Figure 3 This is a schematic diagram of the integrated module after encapsulation as disclosed in the embodiments of this application;
[0013] Figure 4 This is a schematic diagram of an electronic cigarette disclosed in an embodiment of this application;
[0014] Figure 5 This is a schematic diagram of the side view of the electronic cigarette disclosed in the embodiments of this application;
[0015] Figure 6 for Figure 5 Sectional view along the middle AA;
[0016] Figure 7 for Figure 5 A sectional view along the middle edge BB;
[0017] Figure 8 This is a schematic diagram of the hardware control structure of the electronic cigarette disclosed in an embodiment of this application;
[0018] Figure 9 This is a flowchart of the fingerprint recognition algorithm for electronic cigarettes disclosed in an embodiment of this application.
[0019] Explanation of reference numerals in the attached figures:
[0020] 10-Housing; 11-Front; 12-Side; 121-Finger contact area; 122-Mounting hole; 13-Frame; 14-Limiting element; 141-Through hole;
[0021] 20 - Integrated module; 21 - Fingerprint sensor; 22 - Button; 23 - Reinforcing layer; 24 - Flexible circuit board; 241 - First connecting part; 242 - Second connecting part; 243 - Bending part;
[0022] 30 - Feedback Module;
[0023] 40 - Heating module;
[0024] 50 - Power Management Module;
[0025] 60 - Microprocessor module. Detailed Implementation
[0026] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0027] The terms "first," "second," etc., used in the specification and claims of this application are used to distinguish similar objects and not to describe a specific order or sequence. It should be understood that such use of data can be interchanged where appropriate so that embodiments of this application can be implemented in orders other than those illustrated or described herein, and the objects distinguished by "first," "second," etc., are generally of the same class and the number of objects is not limited; for example, a first object can be one or more. Furthermore, in the specification and claims, "and / or" indicates at least one of the connected objects, and the character " / " generally indicates that the preceding and following objects are in an "or" relationship.
[0028] The embodiments of this application will be described in detail below with reference to the accompanying drawings and specific examples and application scenarios.
[0029] refer to Figures 1 to 9 This application discloses an electronic cigarette, which includes a housing 10, a fingerprint sensor 21, and a button 22.
[0030] The housing 10 is a basic component that provides a base for mounting and housing components such as the fingerprint sensor 21 and the button 22. The fingerprint sensor 21 can be used to identify the user's fingerprint, so as to lay the foundation for subsequent determination of the user's age. The button 22 is an operating component that allows the user to operate the electronic cigarette by pressing the button 22.
[0031] Both the fingerprint sensor 21 and the button 22 are located on the surface near the housing 10, with the fingerprint sensor 21 situated outside the button 22. Optionally, the fingerprint sensor 21 and the button 22 can be integrated on the surface near the housing 10 to facilitate the recognition of the user's fingerprint information and the operation of the electronic cigarette. It should be noted that the integrated fingerprint sensor 21 and the button 22 can form an integrated module 20, through which relevant information can be input to achieve the operation of the electronic cigarette.
[0032] Optionally, the housing 10 may include a front side 11 and a side side 12 arranged adjacent to each other. The integrated module 20 may be disposed on the side side 12 of the housing 10 to reduce the space occupied by the integrated module 20 on the surface of the housing 10. Based on this, integrating the fingerprint sensor 21 and the button 22 on the side side 12 of the housing 10 can save the space occupied by the user interface on the front side 11 of the housing 10, making it easier to integrate the integrated module 20 onto the housing 10. Furthermore, the integrated module 20 on the side 12 is more ergonomic and makes operation more convenient.
[0033] For example, the housing 10 can be a cuboid cylindrical structure, and the thickness of the housing 10 is smaller than its length and width. Of course, the housing 10 can also be an elliptical cylindrical structure or other shapes, which are not specifically limited here.
[0034] Optionally, the fingerprint sensor 21 can be an ultra-narrow width side fingerprint sensor 21. Compared with a circular or square fingerprint sensor 21, the fingerprint sensor 21 in this embodiment has a smaller width and is located on the side 12 of the housing 10, which helps to reduce the space occupied by the integrated module 20 inside and outside the housing 10, and further improves the miniaturization of the electronic cigarette.
[0035] It should be noted that button 22 may have an appropriate travel distance, such as 0.3mm ± 0.05mm, to provide clear tactile feedback.
[0036] Based on the above settings, when the fingerprint sensor 21 is pressed, at least one of the fingerprint sensor 21 and the button 22 will be triggered. When the fingerprint sensor 21 is triggered, the user's fingerprint can be identified, so that the user can be determined by fingerprint analysis to determine whether the user meets the requirements for using the electronic cigarette, such as whether the user is an adult. When the button 22 is triggered, the electronic cigarette can be operated accordingly to enable the electronic cigarette to perform the corresponding functions.
[0037] In this embodiment of the electronic cigarette, the fingerprint sensor 21 is located on the outside of the button 22. The fingerprint sensor 21 can be used to recognize fingerprints, and the button 22 can be used to operate the electronic cigarette. Furthermore, the fingerprint sensor 21 and the button 22 are integrated, which reduces the space occupied on the surface of the housing 10 compared to separate settings. This helps to reduce the size of the electronic cigarette, facilitates miniaturization, and makes the appearance of the housing 10 simpler, improving the aesthetics of the electronic cigarette. In addition, the reduced area occupied on the surface of the housing 10 reduces the probability of accidental touch, thus alleviating the problem of energy waste caused by accidental activation of the electronic cigarette.
[0038] In addition, the fingerprint sensor 21 and the button 22 are integrated together in this embodiment, which can alleviate the problem of complex structure caused by separately setting the fingerprint module and physical button on the housing 10. Furthermore, different functions can be achieved to alleviate the problem of the fingerprint module having a single function.
[0039] In some embodiments, the side 12 of the housing 10 may be provided with a finger contact area 121 for the user's fingers to contact, and the fingerprint sensor 21 is disposed in the finger contact area 121. Based on this, the user can press at least one of the fingerprint sensor 21 and the button 22 by touching and pressing the finger contact area 121, so as to transmit relevant information to the main board of the electronic cigarette, thereby realizing information detection and operation of the electronic cigarette.
[0040] Optionally, such as Figures 5 to 7 As shown, the finger contact area 121 can be provided with a mounting hole 122, and the button 22 of the integrated module 20 can be provided in the mounting hole 122. In this way, the button 22 can be provided with installation space to realize the installation of the button 22 and ensure the stability of the button 22.
[0041] refer to Figure 4 and Figure 5 In some embodiments, the housing 10 may further include a limiting member 14, which is detachably disposed in the mounting hole 122 to facilitate the installation and removal of the limiting member 14; and the limiting member 14 may be provided with a through hole 141, the button 22 is disposed inside the housing 10, and the end of the button 22 protrudes outside the housing 10 through the through hole 141. Based on this, the end of the button 22 protruding outside the housing 10 can contact the fingerprint sensor 21 and be subjected to the squeezing action of the fingerprint sensor 21.
[0042] Based on the above settings, the button 22 can be limited by the limiting member 14, and the detachable installation of the limiting member 14 facilitates the maintenance or replacement of the button 22.
[0043] refer to Figure 6 In some embodiments, a frame 13 may be provided inside the housing 10. The frame 13 is fastened to the inner surface of the side 12 of the housing 10. The end of the button 22 located inside the housing 10 abuts against the frame 13. In this way, the frame 13 can limit the end of the button 22 to ensure the stability of the button 22 under the pressure.
[0044] refer to Figures 1 to 3 In some embodiments, the electronic cigarette may also include a flexible circuit board 24 disposed within the housing 10. One side of the flexible circuit board 24 is electrically connected to the fingerprint sensor 21, and the other side of the flexible circuit board 24 is used to electrically connect to the mainboard of the electronic cigarette. In this way, the fingerprint sensor 21 can be electrically connected to the mainboard of the electronic cigarette through the flexible circuit board 24, so as to facilitate the transmission of information between the fingerprint sensor 21 and the mainboard.
[0045] The flexible circuit board 24 may include a first connecting portion 241, a second connecting portion 242, and a bending portion 243. The bending portion 243 is connected between the first connecting portion 241 and the second connecting portion 242 so that the first connecting portion 241 and the second connecting portion 242 can move relative to each other through the bending portion 243, thereby changing the shape of the flexible circuit board 24. In addition, signals can also be transmitted between the first connecting portion 241 and the second connecting portion 242 through the bending portion 243.
[0046] The first connecting part 241 is connected to the fingerprint sensor 21, and the second connecting part 242 is connected to the button 22. In addition, the second connecting part 242 is also used to electrically connect to the control module of the electronic cigarette so as to transmit signals between the fingerprint sensor 21 and the control module.
[0047] In addition, the fingerprint sensor 21, the first connecting part 241, the second connecting part 242 and the button 22 can be stacked in sequence. In this way, while meeting the signal transmission requirements, the layout space of these components in the housing 10 can be optimized, thereby improving the space utilization rate of the housing 10.
[0048] refer to Figure 2 and Figure 3 In some embodiments, the electronic cigarette may further include a reinforcing layer 23 disposed within the housing 10 and stacked between the fingerprint sensor 21 and the button 22. Based on this arrangement, when a user applies pressure to the fingerprint sensor 21 by pressing the finger contact area 121, the reinforcing layer 23 can provide support for the fingerprint sensor 21, thereby effectively alleviating the problem of deformation or even breakage of the fingerprint sensor 21 due to prolonged pressure, and thus improving the service life of the fingerprint sensor 21.
[0049] In addition, when the fingerprint sensor 21 receives a pressing force, it can be transmitted to the reinforcement layer 23 and then to the button 22 to trigger the button 22.
[0050] Optionally, the reinforcing layer 23 can be a metal reinforcing sheet, or of course, other forms, which are not specifically limited here.
[0051] Furthermore, the fingerprint sensor 21, the first connecting part 241, the reinforcing layer 23, the second connecting part 242, and the button 22 can be stacked sequentially. In this way, while meeting the signal transmission requirements, the layout space of these components within the housing 10 can be optimized, thereby improving the space utilization rate within the housing 10.
[0052] refer to Figure 4 and Figure 8In some embodiments, the electronic cigarette may further include a feedback module 30. Correspondingly, the motherboard may be equipped with a microprocessor module 60, and the feedback module 30, fingerprint sensor 21, and button 22 are electrically connected to the microprocessor module 60. Based on this, after the microprocessor module 60 receives the recognition signal from the fingerprint sensor 21 and the operation signal from the button 22, it can provide corresponding information through the feedback module 30 so that the user can understand the specific situation of the electronic cigarette.
[0053] Optionally, the feedback module 30 can be located inside the housing 10 or outside the housing 10. Alternatively, a portion of the structure of the feedback module 30 can be located inside the housing 10 and another portion can be located outside the housing 10. As long as it can provide feedback to the user, the specific configuration is not limited.
[0054] Optionally, the feedback module 30 may include at least one of an LED light, a display screen, a vibrator, and a buzzer. Based on this, the feedback module 30 can provide the user with information about the electronic cigarette through sound and light.
[0055] refer to Figure 8 In some embodiments, the electronic cigarette may also include a power management module 50, which is disposed within the housing 10 to manage the electrical energy of the electronic cigarette, thereby improving the battery life of the electronic cigarette.
[0056] Accordingly, the motherboard includes a microprocessor module 60, and the power management module 50, fingerprint sensor 21, and button 22 can be electrically connected to the microprocessor module 60. Based on this, the microprocessor module 60 can send control commands to the power management module 50 according to the recognition status of the fingerprint sensor 21 and the pressing status of the button 22, so as to manage the power of the electronic cigarette through the power management module 50.
[0057] refer to Figure 8 In some embodiments, the electronic cigarette may also include a heating module 40 disposed within the housing 10 to realize the basic functions of the electronic cigarette.
[0058] Accordingly, the motherboard may be equipped with a microprocessor module 60, and the heating module 40, the fingerprint sensor 21 and the button 22 are electrically connected to the microprocessor module 60 respectively. In this way, the microprocessor module 60 can send control commands to the heating module 40 according to the recognition status of the fingerprint sensor 21 and the pressing status of the button 22, so as to control the heating module 40 to heat, thereby realizing the basic functions of the electronic cigarette.
[0059] In some specific embodiments, the hardware control structure of the electronic cigarette may include a microprocessor module 60, a power management module 50, a heating module 40, a fingerprint sensor 21, a button 22, and a feedback module 30. The power management module 50, heating module 40, fingerprint sensor 21, button 22, and feedback module 30 can all be electrically connected to the microprocessor module 60. The microprocessor module 60, as the overall control unit of the electronic cigarette, can realize functions such as user information storage, fingerprint recognition, and heating management; the power management module 50 supplies power and manages the energy of each module; the heating module 40 can be used to heat the e-liquid and other atomizing substrates containing nicotine; the feedback module 30 is used to provide real-time feedback on the status of the electronic cigarette during operation, such as heating status, battery level, and fingerprint recognition status.
[0060] This application also discloses a method for identifying electronic cigarettes, used to identify the identity information of electronic cigarette users, where the electronic cigarette is the aforementioned electronic cigarette. The disclosed identification method includes:
[0061] When the finger contact area 121 is pressed, it receives the user's fingerprint information and the pressing signal;
[0062] Check whether the identified fingerprint information matches the preset fingerprint information;
[0063] If the fingerprint information matches the preset fingerprint information, the heating function of the electronic cigarette will be activated.
[0064] Based on the above steps, the user's fingerprint can be identified and compared before the e-cigarette is activated. When the fingerprints match, it indicates that the user meets the usage requirements. In this case, the e-cigarette can perform its basic functions for the user to use. When the fingerprints do not match, it indicates that the user does not meet the usage requirements. In this case, the e-cigarette cannot perform its basic functions, thus effectively preventing users who do not meet the usage requirements from using the e-cigarette.
[0065] Optionally, the system receives the user's fingerprint information and pressure signal, including:
[0066] If the pressing time meets the first condition, control the activation of the electronic cigarette and / or detect the electronic cigarette's battery level.
[0067] If the pressing time meets the second condition, control the recognition of fingerprint information.
[0068] Optionally, the first condition can refer to a time less than a preset time, and the second condition can refer to a time greater than or equal to a preset time. Other forms are also possible, but are not specifically limited here.
[0069] For example, the preset time can be 0.5s, but of course, it can also be other values, which are not specifically limited here.
[0070] Specifically, when the pressing time is less than 0.5 seconds, it can be defined as a short press. At this time, it can control the electronic cigarette to wake up or control the electronic cigarette to detect the battery information so that the user can understand the usage status of the electronic cigarette.
[0071] When the pressing time is greater than or equal to 0.5 seconds, it can be defined as continuous pressing. At this time, the fingerprint sensor 21 can be activated so that the fingerprint sensor 21 can identify the user's fingerprint.
[0072] Optionally, the electronic cigarette may include a microprocessor module 60, an integrated module 20, and a power management module 50, wherein the integrated module 20 includes a fingerprint sensor 21 and a button 22;
[0073] If no press signal is received, the microprocessor module 60 is in standby mode and controls the fingerprint sensor 21 to be in a power-off state.
[0074] If the pressing time meets the first condition, the microprocessor module 60 switches to the wake-up state and controls the power management module 50 to detect the power information;
[0075] If the pressing time meets the second condition, the microprocessor module 60 controls the fingerprint sensor 21 to recognize the fingerprint information, and controls the fingerprint sensor 21 to switch to the power-off state after the fingerprint information matching is completed.
[0076] The electronic cigarette in this embodiment has a three-level power consumption management mechanism, including:
[0077] Ultra-low power consumption mode: When button 22 is not pressed, the control microprocessor module 60 is in standby mode, and the microprocessor module 60 controls the fingerprint sensor 21 to be in a power-off state. At this time, the power consumption of the microprocessor module 60 and the fingerprint sensor 21 is low, which is beneficial to improving the battery life of the electronic cigarette.
[0078] Low power mode: When the finger touches the contact area 121, the pressing time of the button 22 is less than a preset time, such as less than 0.5s. At this time, the microprocessor module 60 is woken up and controls the power management module 50 to detect power information and other functions, and controls the fingerprint sensor 21 to remain in a power-off state, thereby reducing power consumption.
[0079] Normal power consumption mode: Press and hold the finger contact area 121, so that the pressing time of the button 22 is greater than or equal to the preset time, such as greater than or equal to 0.5s. At this time, the microprocessor module 60 controls the fingerprint sensor 21 to scan and recognize the user's fingerprint, and sends the recognized fingerprint information to the microprocessor module 60 so that the microprocessor module 60 can compare the recognized fingerprint information with the preset fingerprint information.
[0080] When the detected fingerprint information matches the preset fingerprint information, the microprocessor module 60 determines that the user meets the usage requirements and allows the user to use the electronic cigarette; when the detected fingerprint information does not match the preset fingerprint information, the microprocessor module 60 determines that the user does not meet the usage requirements and the user cannot use the electronic cigarette.
[0081] After fingerprint recognition, the microprocessor module 60 controls the fingerprint sensor 21 to automatically switch to a low-power mode, which can prevent the fingerprint sensor 21 from being in a recognition state for a long time, thus reducing the power consumption of the e-cigarette and extending its battery life.
[0082] Optionally, identifying whether the fingerprint information matches preset fingerprint information includes:
[0083] If the fingerprint information matches the preset information, the system will display a message indicating successful fingerprint recognition.
[0084] If the fingerprint information does not match the preset fingerprint information, the system will enter a time-limited lock mode and display a fingerprint recognition failure message.
[0085] Specifically, if the fingerprint information does not match the preset fingerprint information, that is, if the fingerprint recognition fails, a 3-second input blocking is activated to prevent the fingerprint sensor 21 from being triggered repeatedly.
[0086] In addition, the recognition status can be fed back through the feedback module 30 to provide feedback to the user. For example, the feedback module 30 can use an LED light; after successful fingerprint recognition, the LED light can be solid green; after fingerprint recognition fails, the LED light can be red and flash three times.
[0087] In this embodiment of the application, the fingerprint recognition process is as follows:
[0088] When the user presses the integrated module 20, triggering button 22, the microprocessor module 60 is activated.
[0089] If the pressing time is too short and does not reach the preset time (e.g., less than 0.5s), the fingerprint sensor 21 will not be triggered, and actions such as power detection will not be performed.
[0090] If the pressing time exceeds the preset time (e.g., greater than or equal to 0.5s), the microprocessor module 60 controls the fingerprint sensor 21 to start for fingerprint scanning and recognition.
[0091] If the identified fingerprint information matches the preset information, the preset function is executed, such as informing the user of the successful match through LED lights, vibrators, displays, buzzers, etc.
[0092] If the detected fingerprint information does not match the preset information, a time-limited lock is entered (e.g., lock for 3 seconds). At this time, the microprocessor module 60 blocks the input information of the button 22 to avoid continuous false triggering.
[0093] In summary, the electronic cigarette in this embodiment integrates a fingerprint sensor 21 and a button 22 on the side 12 of the housing 10, thereby achieving a miniaturized design while providing fingerprint recognition and operation functions to prevent minors from using it; the fingerprint function can be activated by the button 22, preventing the fingerprint sensor 21 from being in working state when in standby mode, reducing the overall power consumption of the electronic cigarette when in standby mode, and helping to extend the battery life of the electronic cigarette.
[0094] The embodiments of this application have been described above with reference to the accompanying drawings. However, this application is not limited to the specific embodiments described above. The specific embodiments described above are merely illustrative and not restrictive. Those skilled in the art can make many other forms under the guidance of this application without departing from the spirit and scope of the claims, and all of these forms are within the protection scope of this application.
Claims
1. An electronic cigarette, characterized in that, include: Housing (10), fingerprint sensor (21), button (22) and microprocessor module (60); The fingerprint sensor (21) and the button (22) are both located on the surface close to the housing (10), and the fingerprint sensor (21) is located outside the button (22); The microprocessor module (60) is electrically connected to the fingerprint sensor (21) and the button (22) respectively. The microprocessor module (60) is used to receive fingerprint information and pressing signals. When the fingerprint sensor (21) is pressed, both the fingerprint sensor (21) and the button (22) are triggered, and the microprocessor module (60) is used to start the electronic cigarette when the fingerprint information matches the preset fingerprint information.
2. The electronic cigarette according to claim 1, characterized in that, The side (12) of the housing (10) is provided with a finger contact area (121) for the user's fingers to contact, and the fingerprint sensor (21) is located in the finger contact area (121). The finger contact area (121) is provided with a mounting hole (122), and the button (22) is located in the mounting hole (122).
3. The electronic cigarette according to claim 2, characterized in that, The housing (10) includes a limiting member (14), which is detachably disposed in the mounting hole (122). The limiting member (14) is provided with a through hole (141), the button (22) is located inside the housing (10), and part of the button (22) extends out of the housing (10) through the through hole (141).
4. The electronic cigarette according to claim 3, characterized in that, The housing (10) is provided with a frame (13), which is fastened to the inner surface of the side (12) of the housing (10); The end of the button (22) located inside the housing (10) abuts against the frame (13).
5. The electronic cigarette according to any one of claims 1 to 4, characterized in that, The electronic cigarette also includes a flexible circuit board (24), one side of which is electrically connected to the fingerprint sensor (21), and the other side of which is electrically connected to the microprocessor module (60) disposed on the main board of the electronic cigarette.
6. The electronic cigarette according to claim 5, characterized in that, The flexible circuit board (24) includes a first connecting portion (241), a second connecting portion (242), and a bent portion (243) connecting the first connecting portion (241) and the second connecting portion (242). The first connecting part (241) is connected to the fingerprint sensor (21), and the second connecting part (242) is connected to the button (22).
7. The electronic cigarette of claim 6, wherein, The fingerprint sensor (21), the first connecting part (241), the second connecting part (242) and the button (22) are stacked in sequence.
8. The electronic cigarette according to claim 7, characterized in that, The electronic cigarette also includes a reinforcing layer (23), and the fingerprint sensor (21), the first connecting part (241), the reinforcing layer (23), the second connecting part (242) and the button (22) are stacked in sequence.
9. The electronic cigarette of claim 5, wherein, The electronic cigarette also includes a feedback module (30), which is electrically connected to the microprocessor module (60).
10. The electronic cigarette of claim 5, wherein, The electronic cigarette also includes a power management module (50), which is electrically connected to the microprocessor module (60); And / or, The electronic cigarette also includes a heating module (40), which is electrically connected to the microprocessor module (60).