Mobile phone power supply type electronic cigarette
By integrating the e-cigarette with the mobile phone power supply module and using the mobile phone's power module for power, an integrated design is achieved, solving the problems of inconvenience in carrying and discomfort in use, and improving the integration convenience and user experience of the device.
Patent Information
- Application Number
- CN202520290254.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-24
- Publication Date
- 2026-02-24
- Estimated Expiration
- 2035-02-24
AI Technical Summary
In existing technologies, when carrying a mobile phone and an e-cigarette, the devices are prone to shaking, take up space, and are inconvenient to use, affecting the user's exercise comfort and operating experience.
By combining the key structure of an e-cigarette with a mobile phone power supply module, and using the mobile phone power module for power supply, the functions of the mobile phone and e-cigarette are integrated. The microphone module detects air pressure to control the start and stop of the heating coil module, thus achieving an integrated design.
It reduces the need for additional power supply equipment, improves portability and ease of use, avoids interference and wear between devices, reduces maintenance costs, and enhances the user experience.
Smart Images

Figure CN223929536U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of electronic cigarette technology, and more specifically, to a mobile phone powered electronic cigarette. Background Technology
[0002] As the advantages of e-cigarettes become increasingly apparent, more and more people are choosing e-cigarettes to replace traditional cigarettes. For smokers, e-cigarettes have become one of the essential items besides mobile phones. At the same time, due to the increasing popularity of smartphones and the growing acceptance of mobile payment, smartphones are gradually becoming a necessity that everyone carries with them.
[0003] Currently, in daily activities such as travel, exercise, or work, people often need to carry multiple devices simultaneously, including mobile phones, e-cigarettes, and e-cigarette chargers, impacting user comfort and convenience. If the phone and e-cigarette are placed separately, they tend to shake during dynamic activities like walking or running, affecting the user's performance. Furthermore, carrying these two items separately takes up considerable pocket or bag space, making them inconvenient. If the phone and e-cigarette are placed in the same space, they are prone to colliding during movement, causing noise interference and potential scratches. Additionally, carrying both a phone and e-cigarette simultaneously requires users to switch between the two devices when using the e-cigarette function, resulting in a poor user experience.
[0004] In view of this, it is indeed necessary to provide a technical solution to the above problems. Utility Model Content
[0005] The technical problem to be solved by this utility model is to provide a mobile phone powered electronic cigarette in view of the above-mentioned defects of the prior art.
[0006] The technical solution adopted by this utility model to solve its technical problem is:
[0007] Constructing a mobile phone-powered electronic cigarette, including:
[0008] A mobile phone power supply module includes a main control board and a power module, wherein the main control board and the power module are electrically connected;
[0009] The microphone module is electrically connected to the main control board and the power module. The microphone module is powered by the power module and is used to send a signal to the main control board when air pressure is detected.
[0010] The electronic cigarette control unit and the heating wire module are electrically connected to the main control board and the power module. The electronic cigarette control unit is used to receive signals sent by the microphone module and send start / stop signals to the heating wire module according to the signals. The heating wire module is electrically connected to the electronic cigarette control unit and the power module. The heating wire module is used to receive start / stop signals sent by the electronic cigarette control unit and change its working state.
[0011] As an improvement to the mobile phone-powered electronic cigarette, the electronic cigarette control unit is integrated with the main control board.
[0012] As an improvement to the mobile phone-powered electronic cigarette, the electronic cigarette control unit includes a smoke control chip, which is an independent control chip and is connected to the main control board via a circuit.
[0013] As an improvement to the mobile phone-powered electronic cigarette, it also includes a mobile phone casing. The main control board, the power module, the microphone module, the electronic cigarette control unit, and the heating wire module are all disposed inside the mobile phone casing. The outside of the mobile phone casing is provided with an installation structure for installing the tobacco cartridge and a mouthpiece for the user to smoke.
[0014] As an improvement to the mobile phone powered electronic cigarette, the mounting structure is a receiving groove disposed on the surface of the mobile phone casing; or a connecting seat with a receiving groove, which is detachably disposed on the surface of the mobile phone casing.
[0015] As an improvement to the mobile phone-powered electronic cigarette, the mobile phone power supply module also includes a screen module, which is connected to the main control board and can be used to display mobile phone information and electronic cigarette operation information.
[0016] As an improvement to the mobile phone-powered electronic cigarette, the mobile phone power supply module further includes a button module, which is electrically connected to the main control board. The button module can be used to operate the mobile phone and is configured to start and stop the electronic cigarette control unit.
[0017] As an improvement to the mobile phone-powered electronic cigarette, the main control board also integrates a charging module, which is electrically connected to the power module and is used to charge the power module.
[0018] As an improvement to the mobile phone-powered electronic cigarette, the power module includes a mobile phone battery, which is used to simultaneously power the mobile phone power supply module, the microphone module, the electronic cigarette control unit, and the heating wire module.
[0019] As an improvement to the mobile phone-powered electronic cigarette, the power module includes a first battery and a second battery that are separately configured and both are electrically connected to the charging module. The first battery is used to power the mobile phone power supply module; the second battery is used to power the microphone module, the electronic cigarette control unit and the heating wire module.
[0020] The beneficial effects of this utility model are as follows: This mobile phone-powered electronic cigarette combines the key structure of the electronic cigarette with the power supply module of the mobile phone, reducing the need for additional power supply equipment, making the overall structure more compact, convenient to carry and use; it can simultaneously realize the functions of a mobile phone and an electronic cigarette, achieving multiple uses in one device, improving the integration convenience of the device, and using the electronic cigarette function will not affect the function of the mobile phone; when going out, there is no need to carry the electronic cigarette and the mobile phone separately, avoiding affecting the user's exercise comfort; and when going out, there is no need to carry a special electronic cigarette charger, as the power supply of the mobile phone power module can meet the power needs of the electronic cigarette. Attached Figure Description
[0021] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the utility model will be further described below in conjunction with the accompanying drawings and embodiments. 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.
[0022] Figure 1 This is a schematic diagram of the frame of the electronic cigarette provided by this utility model;
[0023] Figure 2 This is one of the three-dimensional structural schematic diagrams of the electronic cigarette provided by this utility model;
[0024] Figure 3 This is the second three-dimensional structural schematic diagram of the electronic cigarette provided by this utility model;
[0025] Figure 4 This is a schematic diagram of the integrated electronic cigarette control unit and main control board provided by this utility model.
[0026] Figure 5 This is a schematic diagram of the separate electronic cigarette control unit and main control board provided by this utility model;
[0027] Figure 6 This is a schematic diagram of the structure of the power module of the electronic cigarette provided by this utility model, which is a single mobile phone battery;
[0028] Figure 7 This utility model provides a schematic diagram of the power module of an electronic cigarette, which has a first battery and a second battery.
[0029] Figure 8 This is a circuit diagram of the charging module for the electronic cigarette provided by this utility model;
[0030] Figure 9 This is a circuit diagram of the electronic cigarette control unit provided by this utility model;
[0031] Figure 10 This is a circuit diagram of the heating wire module of the electronic cigarette provided by this utility model;
[0032] Figure 11 This is a circuit diagram of the microphone module for an electronic cigarette provided by this utility model;
[0033] Figure 12 This is a circuit diagram of the button module for an electronic cigarette provided by this utility model.
[0034] In the diagram: 1. Main control board; 2. Power module; 21. Mobile phone battery; 22. First battery; 23. Second battery; 3. Microphone module; 31. Mouthpiece; 4. Electronic cigarette control unit; 5. Heating wire module; 6. Mobile phone casing; 7. Receiving slot; 8. Connector; 9. Screen module; 10. Button module; 11. Cartridge. Detailed Implementation
[0035] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, a clear and complete description will be provided below in conjunction with the technical solutions in the embodiments of this utility model. Obviously, the described embodiments are some, but not all, embodiments of this utility model. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.
[0036] like Figure 1 , Figure 2 and Figure 3 , Figure 9 , Figure 10 and Figure 11 As shown, a mobile phone-powered electronic cigarette includes a mobile phone power supply module, a microphone module 3, an electronic cigarette control unit 4, and a heating wire module 5. The mobile phone power supply module includes a main control board 1 and a power module 2, which are electrically connected. The microphone module 3 is electrically connected to both the main control board 1 and the power module 2, and is powered by the power module 2. It is used to send a signal to the main control board 1 when air pressure is detected. The electronic cigarette control unit 4 is electrically connected to both the main control board 1 and the power module 2, and is powered by the power module 2. It is used to receive the signal sent by the microphone module 3 and send a start / stop signal to the heating wire module 5 according to the signal. The heating wire module 5 is electrically connected to both the electronic cigarette control unit 4 and the power module 2, and is used to change its working state upon receiving the start / stop signal from the electronic cigarette control unit 4.
[0037] Specifically, when the user inhales, the microphone module 3 detects a change in air pressure. Since it is connected to the power module 2 and receives power, it operates normally. The microphone module 3 converts the detected pressure signal into an electrical signal and sends it to the main control board 1. Upon receiving the signal, the main control board 1 transmits it to the electronic cigarette control unit 4. The electronic cigarette control unit 4, also powered by the power module 2, processes the signal according to its internal preset program after receiving the signal from the main control board 1, and then sends a start / stop signal to the heating coil module 5. The heating coil module 5 is connected to the power module 2 and the main control board 1. Upon receiving the start / stop signal, it changes its operating state. When it receives the start signal, it begins to heat up, atomizing the e-liquid in the cartridge 11 to achieve the smoking function of the electronic cigarette; when it receives the stop signal, it stops heating.
[0038] This mobile phone-powered electronic cigarette combines the key structure of an electronic cigarette with a mobile phone power supply module, reducing the need for additional power supply equipment and making the overall structure more compact, convenient to carry and use. It can simultaneously realize the functions of a mobile phone and an electronic cigarette, achieving multiple uses in one device and improving the convenience of device integration. Using the electronic cigarette function will not affect the function of the mobile phone. When going out, there is no need to carry the electronic cigarette and the mobile phone separately, avoiding affecting the user's exercise comfort. Furthermore, there is no need to carry a special electronic cigarette charger when going out, as the power supply of the mobile phone power module 2 can meet the power needs of the electronic cigarette.
[0039] In some embodiments of this application, such as Figure 4 As shown, the electronic cigarette control unit 4 is integrated with the main control board 1. Specifically, in traditional designs, the electronic cigarette control unit 4 typically requires a separate smoke control chip, i.e., an MCU, to control the various components of the electronic cigarette. However, this mobile phone-powered electronic cigarette, through software programming and hardware adaptation of the main control chip on the main control board 1, enables it to perform the control tasks originally executed by a separate smoke control chip. The mobile phone's main control chip utilizes its own processing power and resources to handle the control logic of the electronic cigarette while processing the phone's regular functions.
[0040] When the user inhales, the microphone module 3 detects changes in air pressure. Since the microphone module 3 is electrically connected to and powered by the main control board 1 and power module 2, it converts the detected pressure signal into an electrical signal and sends it to the main control board 1. The main control chip on the main control board 1 receives this signal and analyzes and processes it according to its built-in programs and algorithms to determine if the conditions for activating the heating coil module 5 are met. If the conditions are met, the main control chip sends a start signal to the heating coil module 5 according to preset logic. When a stop condition is detected, such as when the user stops inhaling, the main control chip sends a stop signal to the heating coil module 5, thus achieving precise control of the electronic cigarette's operating state. Therefore, this mobile phone-powered electronic cigarette saves the hardware cost of a separate MCU; in mass production, it significantly reduces the material cost of electronic cigarettes and improves the product's market competitiveness.
[0041] When the mobile phone's main control chip handles e-cigarette control functions, it can fully utilize the phone's existing hardware resources, such as memory and storage. For example, when storing the e-cigarette's control program and related data, it can use part of the phone's storage space, eliminating the need for a separate large-capacity storage chip for the e-cigarette. During data processing, it can also leverage the powerful computing capabilities of the mobile phone chip to process e-cigarette control signals more efficiently, achieving resource sharing and optimized configuration. This further improves the overall system performance and efficiency, providing users with a more stable and smooth user experience. Furthermore, it allows simultaneous use of both mobile phone and e-cigarette functions without affecting the phone's functionality.
[0042] In some embodiments of this application, such as Figure 5 As shown, the electronic cigarette control unit 4 includes a smoke control chip, which is an independent control chip connected to the main control board 1 via a circuit. Specifically, when the user inhales, the microphone module 3 detects a change in air pressure and converts it into an electrical signal. Since the microphone module 3 is electrically connected to the power module 2 and receives power, this electrical signal is transmitted to the main control board 1. After receiving the signal, the main control board 1 transmits it to the independent smoke control chip via a circuit. After receiving the signal from the main control board 1, the smoke control chip processes the signal according to its internally preset electronic cigarette control program. The processed signal is converted into a control command for the heating coil module 5, i.e., a start / stop signal, within the smoke control chip. Subsequently, the smoke control chip sends the start / stop signal to the heating coil module 5 via a circuit. The heating coil module 5 also maintains an electrical connection with the power module 2 and the main control board 1. After receiving the signal, it changes its working state. When it receives the start signal, the heating coil begins to heat up, atomizing the e-liquid in the cartridge 11 to achieve the smoking function of the electronic cigarette. When it receives the stop signal, it stops heating.
[0043] During the use of e-cigarettes, if problems related to e-cigarette control occur, the independent control chip allows technicians to more easily inspect, repair, or replace it individually, reducing overall maintenance costs and complexity. Furthermore, when upgrading the e-cigarette's control functions, only the control chip's program needs to be updated or the chip replaced; there's no need to modify the entire main control board, improving the product's maintainability and upgradeability, and extending its lifespan.
[0044] In some embodiments of this application, the phone housing 6 is also included. The main control board 1, power module 2, microphone module 3, electronic cigarette control unit 4 and heating wire module 5 are all disposed inside the phone housing 6. The phone housing 6 is provided with an installation structure for installing the cigarette cartridge 11 and a mouthpiece 31 for the user to smoke.
[0045] Specifically, the main control board 1, power module 2, microphone module 3, electronic cigarette control unit 4, and heating wire module 5 are all tightly arranged inside the phone casing 6, making efficient use of internal space, reducing wiring length and connection complexity, and ensuring efficient and stable signal transmission. The mounting structure on the outside of the phone casing 6 is used to fix the cartridge 11, ensuring its stable position during use and allowing the e-liquid in the cartridge 11 to be accurately heated and atomized by the heating wire. The user inhales through the mouthpiece 31. When inhaling, the airflow through the microphone module 3 creates a pressure change, triggering the electronic cigarette's workflow. The atomized e-liquid enters the user's mouth through the mouthpiece 31, realizing the basic function of inhaling an electronic cigarette.
[0046] By integrating the key components of the e-cigarette—the microphone module 3 and the heating coil module 5—into the phone casing 6, a unified design of the e-cigarette and phone is achieved, greatly improving the device's integration. Users no longer need to carry separate e-cigarettes and phones, reducing the number of items required, making travel and use more convenient, and enhancing user convenience and experience.
[0047] In some embodiments of this application, the mounting structure is a receiving groove 7 disposed on the surface of the mobile phone housing 6; or a connecting seat 8 having a receiving groove 7, which is detachably disposed on the surface of the mobile phone housing 6.
[0048] Specifically, when the mounting structure is a receiving groove 7 on the surface of the phone casing 6, the e-cigarette cartridge 11 can be directly inserted into the receiving groove 7. The size of the receiving groove 7 matches the e-cigarette cartridge 11, which can position and fix the e-cigarette cartridge 11. During use, the e-cigarette cartridge 11 and internal components such as the heating wire module 5 are in a relatively stable positional relationship, ensuring that the heating wire can effectively heat the e-liquid in the e-cigarette cartridge 11. For example, when the user inhales to trigger the electronic cigarette to work, the e-cigarette cartridge 11 will not shift within the receiving groove 7, ensuring the normal operation of the atomization process.
[0049] The connector 8 with the receiving slot 7 is detachably mounted on the surface of the phone case 6. First, the e-cigarette cartridge 11 is placed in the receiving slot 7 of the connector 8, and then it is fixed to the phone by the connection mechanism between the connector 8 and the phone case 6, such as a snap or magnetic attraction. This allows the e-cigarette cartridge 11 to be directly removed and placed from the receiving slot 7 of the connector 8 when it needs to be replaced. When the connector 8 needs to be cleaned or maintained, it can also be easily removed from the phone case 6, making the operation simple and quick.
[0050] Both the design of the receiving slot 7 and the detachable connector 8 can accommodate different specifications and models of e-cigarette cartridges 11. By rationally designing the size and shape of the receiving slot 7, it can be compatible with a variety of common e-cigarette cartridges 11 on the market, providing users with more choices. At the same time, it also makes full use of the external space of the phone casing 6, avoiding the need to create a large extra space inside the phone for installing the e-cigarette cartridge 11, which helps to maintain the compactness of the phone's internal structure.
[0051] In some embodiments of this application, the mobile phone power supply module further includes a screen module 9, which is connected to the main control board 1 and can be used to display mobile phone information and electronic cigarette operation information. Specifically, the main control board 1 collects various information about the mobile phone's own operation, such as battery level, signal strength, and time, as well as electronic cigarette operation information, such as usage time, remaining e-liquid volume, and the working status of the heating coil, i.e., whether it is heating and its heating power. The main control board 1 processes and converts the collected information to generate a signal suitable for display on the screen module 9, and then transmits the signal to the screen module 9 through a connection line. After receiving the signal from the main control board 1, the screen module 9 presents the mobile phone information and electronic cigarette operation information in a visual form according to the content of the signal, making it convenient for the user to view.
[0052] Therefore, users can view all key information about their phone and e-cigarette on the phone's screen module 9 in one place, without having to switch between different devices or interfaces, making operation simpler and more intuitive. For example, when using an e-cigarette, users don't need to check the remaining e-liquid level on the e-cigarette's independent screen module 9; they can see it directly on the phone's screen module 9, making it more convenient. The phone's screen module 9 typically has higher resolution, better color display, and richer display effects, capable of presenting more dazzling reminders and smoking animations than the independent e-cigarette screen module 9. These vivid visual displays not only enhance the fun of use but also allow users to understand the device status more clearly. Users can operate the e-cigarette by touching the screen module 9, such as setting the e-cigarette's working mode and adjusting the heating coil power. By utilizing the phone's own screen module 9 to handle e-cigarette information display and interaction functions, there is no need to equip the e-cigarette with a separate screen module 9 and related driving circuits, reducing the overall manufacturing cost of the product.
[0053] In some embodiments of this application, such as Figure 12 As shown, the mobile phone power supply module also includes a button module 10, which is electrically connected to the main control board 1. The button module 10 can be used to operate the mobile phone and is configured to start and stop the electronic cigarette control unit 4. Specifically, the button module 10 can be a physical button and / or a virtual button displayed on the screen module 9. The physical button can be the power button of the mobile phone to provide the function of turning the electronic cigarette on and off. The virtual button displayed on the touch-sensitive screen module 9 of the mobile phone can provide rich interactive functions, such as power adjustment and animation selection. In this way, the control function of the electronic cigarette can be triggered through the button module 10 of the mobile phone, which can save the cost of the electronic cigarette button.
[0054] In some embodiments of this application, such as Figure 8 As shown, the main control board 1 also integrates a charging module, which is electrically connected to the power module 2 and used to charge the power module 2. Specifically, when an external power source is connected to the mobile phone power supply module, the charging module first detects the input power, identifies parameters such as voltage and current, and determines whether it meets the charging requirements of the power module 2. For example, if the input voltage is too high or too low, the charging module will take corresponding protective measures to prevent damage to the power module 2. After confirming that the input power is suitable, the charging module will precisely control the charging process according to the current power status and charging characteristics of the power module 2. Generally, the power module 2 requires different charging currents and voltages at different power levels. When the power module 2 has a low power level, the charging module will provide a larger charging current to quickly replenish the power; as the power level increases, the charging module will gradually reduce the charging current to avoid overcharging and protect the safety and lifespan of the power module 2. For example, during the charging process of a lithium battery, there are usually two stages: constant current charging and constant voltage charging, and the charging module will automatically switch between these two stages. The charging module will also monitor the charging status of the power module 2 in real time and feed back the relevant information to the main control board 1. The main control board 1 can display information such as charging progress and remaining charging time on the screen module 9 based on this information, making it convenient for users to understand the charging status. When the power module 2 is fully charged, the charging module will automatically stop charging to prevent overcharging.
[0055] In some embodiments of this application, such as Figure 6As shown, the power module 2 includes a mobile phone battery 21, which simultaneously powers the mobile phone power supply module, microphone module 3, electronic cigarette control unit 4, and heating wire module 5. Specifically, the mobile phone battery 21 establishes an electrical connection with the main control board 1, microphone module 3, electronic cigarette control unit 4, and heating wire module 5 via circuitry, providing a power transmission channel for each module and unit, ensuring that current flows smoothly from the battery to each part requiring power. Using the mobile phone battery 21 to power both the mobile phone and electronic cigarette components simultaneously avoids the need for a separate battery for the electronic cigarette; this eliminates the need for users to carry additional charging equipment and spare batteries, reducing the number of items needed when going out and improving travel convenience. It also achieves resource sharing of the mobile phone battery 21, fully utilizing its power capacity and reducing product manufacturing costs to some extent, as there is no need to develop and produce batteries and related power management systems separately for the electronic cigarette; simultaneously, it also reduces battery consumption and waste.
[0056] In some embodiments of this application, such as Figure 7 As shown, the power module 2 includes a separately configured first battery 22 and a second battery 23, both electrically connected to the charging module. The first battery 22 supplies power to the mobile phone power supply module; the second battery 23 supplies power to the microphone module 3, the electronic cigarette control unit 4, and the heating wire module 5. Specifically, the first battery 22 is dedicated to supplying power to the mobile phone power supply module. When the mobile phone is powered on, the mobile phone power supply module obtains the required power from the first battery 22. The first battery 22 will stably output appropriate voltage and current according to the power demand of the mobile phone power supply module to ensure the normal operation of the mobile phone. The second battery 23 is responsible for supplying power to the microphone module 3, the electronic cigarette control unit 4, and the heating wire module 5.
[0057] Since the phone's power supply module and the e-cigarette's related modules are powered by different batteries, their power consumption will not interfere with each other. For example, when the e-cigarette's heating coil module 5 is working at high power, it will not affect the normal operation of the phone due to the instantaneous high current demand, avoiding problems such as the phone freezing or restarting due to power supply fluctuations. Conversely, this ensures the stable operation of the phone and e-cigarette's respective functions.
[0058] This mobile phone-powered electronic cigarette achieves cost savings in several components. The charging module can share the original circuitry of the phone's motherboard; the phone's main control chip performs the functions of the electronic cigarette's MCU; the existing button module 10 and screen module 9 of the phone replace the corresponding components of the electronic cigarette, reducing hardware costs; at the same time, it fully utilizes the phone's computing, display, and interactive resources, such as calculating the remaining e-liquid level through the phone's main control chip and providing better display and interactive functions through the phone's screen module 9, improving the overall utilization rate of resources and avoiding redundant hardware configurations. Furthermore, whether the phone and electronic cigarette functions share the same battery, or each uses a separate battery, both can share the original charging circuitry on the phone's motherboard, thus saving costs.
[0059] In the mobile phone-powered electronic cigarette technology solution involved in this utility model, Figure 8 , Figure 9 , Figure 10 , Figure 11 and Figure 12 The circuit diagrams illustrate one specific implementation of the charging module, electronic cigarette control unit 4, heating wire module 5, microphone module 3, and button module 10. These circuit diagrams are designed based on the overall functional requirements and technical principles of the product, and show the connection relationship, signal transmission path, and working logic of each module at the circuit level.
[0060] It should be noted that, Figure 8-12 The example shown is just one of many feasible implementation methods. In practical applications and product development, the circuit design of each module can be flexibly adjusted and optimized according to different technical requirements, cost budgets, and market demands. For example, in scenarios that pursue higher precision control or lower power consumption, some circuit components can be replaced or improved; when considering cost control, the circuit design can also be simplified, as long as it meets the overall functional requirements of the product.
[0061] It should be understood that those skilled in the art can make improvements or modifications based on the above description, and all such improvements and modifications should fall within the protection scope of the appended claims.
Claims
1. A mobile phone-powered electronic cigarette, characterized in that, include: A mobile phone power supply module includes a main control board and a power module, wherein the main control board and the power module are electrically connected; The microphone module is electrically connected to the main control board and the power module. The microphone module is powered by the power module and is used to send a signal to the main control board when air pressure is detected. The electronic cigarette control unit and the heating wire module are electrically connected to the main control board and the power module. The electronic cigarette control unit is used to receive signals sent by the microphone module and send start / stop signals to the heating wire module according to the signals. The heating wire module is electrically connected to the electronic cigarette control unit and the power module. The heating wire module is used to receive start / stop signals sent by the electronic cigarette control unit and change its working state.
2. The mobile phone-powered electronic cigarette according to claim 1, characterized in that, The electronic cigarette control unit is integrated with the main control board.
3. The mobile phone-powered electronic cigarette according to claim 1, characterized in that, The electronic cigarette control unit includes a smoke control chip, which is an independent control chip and is connected to the main control board via a circuit.
4. The mobile phone-powered electronic cigarette according to claim 1, characterized in that, It also includes a phone casing, and the main control board, the power module, the microphone module, the electronic cigarette control unit and the heating wire module are all located inside the phone casing. The outside of the phone casing is provided with an installation structure for installing the cigarette cartridge and a mouthpiece for the user to smoke.
5. The mobile phone-powered electronic cigarette according to claim 4, characterized in that, The mounting structure is a receiving groove provided on the surface of the mobile phone casing; or a connecting seat with a receiving groove, which is detachably provided on the surface of the mobile phone casing.
6. The mobile phone-powered electronic cigarette according to claim 1, characterized in that, The mobile phone power supply module also includes a screen module, which is connected to the main control board and can be used to display mobile phone information and electronic cigarette operation information.
7. The mobile phone-powered electronic cigarette according to claim 1, characterized in that, The mobile phone power supply module also includes a button module, which is electrically connected to the main control board. The button module can be used to operate the mobile phone and is configured to start and stop the electronic cigarette control unit.
8. The mobile phone-powered electronic cigarette according to any one of claims 1-7, characterized in that, The main control board also integrates a charging module, which is electrically connected to the power module and is used to charge the power module.
9. The mobile phone-powered electronic cigarette according to claim 8, characterized in that, The power module includes a mobile phone battery, which simultaneously supplies power to the mobile phone power supply module, microphone module, electronic cigarette control unit, and heating wire module.
10. The mobile phone-powered electronic cigarette according to claim 8, characterized in that, The power module includes a first battery and a second battery that are separately configured and are both electrically connected to the charging module. The first battery is used to supply power to the mobile phone power supply module; the second battery is used to supply power to the microphone module, the electronic cigarette control unit and the heating wire module.