WO2015165066A1 - 一种电子烟以及电子烟工作方法 - Google Patents

一种电子烟以及电子烟工作方法 Download PDF

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Publication number
WO2015165066A1
WO2015165066A1 PCT/CN2014/076583 CN2014076583W WO2015165066A1 WO 2015165066 A1 WO2015165066 A1 WO 2015165066A1 CN 2014076583 W CN2014076583 W CN 2014076583W WO 2015165066 A1 WO2015165066 A1 WO 2015165066A1
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WO
WIPO (PCT)
Prior art keywords
electronic cigarette
microcontroller
module
different
control signal
Prior art date
Application number
PCT/CN2014/076583
Other languages
English (en)
French (fr)
Inventor
向智勇
Original Assignee
吉瑞高新科技股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 吉瑞高新科技股份有限公司 filed Critical 吉瑞高新科技股份有限公司
Priority to CN201480000515.XA priority Critical patent/CN107105769A/zh
Priority to PCT/CN2014/076583 priority patent/WO2015165066A1/zh
Priority to EP14890718.1A priority patent/EP3138419A4/en
Publication of WO2015165066A1 publication Critical patent/WO2015165066A1/zh
Priority to US15/336,734 priority patent/US20170042247A1/en

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Classifications

    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M11/00Sprayers or atomisers specially adapted for therapeutic purposes
    • A61M11/04Sprayers or atomisers specially adapted for therapeutic purposes operated by the vapour pressure of the liquid to be sprayed or atomised
    • A61M11/041Sprayers or atomisers specially adapted for therapeutic purposes operated by the vapour pressure of the liquid to be sprayed or atomised using heaters
    • A61M11/042Sprayers or atomisers specially adapted for therapeutic purposes operated by the vapour pressure of the liquid to be sprayed or atomised using heaters electrical
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts
    • A24F40/48Fluid transfer means, e.g. pumps
    • A24F40/485Valves; Apertures
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/50Control or monitoring
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/60Devices with integrated user interfaces
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M15/00Inhalators
    • A61M15/06Inhaling appliances shaped like cigars, cigarettes or pipes
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B1/00Details of electric heating devices
    • H05B1/02Automatic switching arrangements specially adapted to apparatus ; Control of heating devices
    • H05B1/0227Applications
    • H05B1/023Industrial applications
    • H05B1/0244Heating of fluids
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/10Devices using liquid inhalable precursors
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M2205/00General characteristics of the apparatus
    • A61M2205/58Means for facilitating use, e.g. by people with impaired vision
    • A61M2205/581Means for facilitating use, e.g. by people with impaired vision by audible feedback
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B2203/00Aspects relating to Ohmic resistive heating covered by group H05B3/00
    • H05B2203/021Heaters specially adapted for heating liquids

Definitions

  • the present invention relates to the field of electronic cigarettes, and more particularly to a method for playing electronic cigarettes and playing tempera according to different smoking airflows.
  • E-cigarettes are a new type of electronic product that has a similar appearance to ordinary cigarettes and a similar taste to cigarettes, but e-cigarettes are healthier and more environmentally friendly than traditional cigarettes.
  • the electronic cigarette in the prior art comprises a battery rod assembly and an atomization assembly, the battery rod assembly is connected to the atomization assembly, and the other end of the atomization assembly is connected to the suction nozzle.
  • the airflow sensor can sense the user's action of smoking, and the electronic cigarette internal controller can control the atomizing component of the atomizing component to atomize the smoke oil to generate smoke.
  • the present invention provides an electronic cigarette that plays different tempos according to different smoking airflows and a method of playing music.
  • An electronic cigarette including:
  • the electronic cigarette body is internally provided with an air flow sensor, an atomizing component, a voice module, and a microcontroller for receiving and identifying different pulse signals, and issuing a control signal according to different pulse signals; the air flow sensor and the micro The controller is connected and configured to send different pulse signals to the microcontroller according to different flow rates of the airflow in the electronic cigarette;
  • the voice module is connected to the microcontroller, and configured to receive the control signal and emit a sound
  • the atomizing assembly is coupled to the microcontroller and is used to atomize the soot to generate smoke.
  • the electronic cigarette body further includes an atomization control module
  • the atomization control module is coupled to the microcontroller and is configured to open or close the atomization assembly.
  • the electronic cigarette body further includes a switch module;
  • the switch module is coupled to the microcontroller and is configured to turn the voice module on or off.
  • the electronic cigarette body further includes a voice adjustment module;
  • the voice adjustment module is coupled to the microcontroller and is configured to change a tone of the voice module.
  • the electronic cigarette body further includes a recording module
  • the recording module is coupled to the microcontroller and is used to record a tempo.
  • the recording module includes a receiving unit and a button unit;
  • the button unit of the receiving unit is respectively connected to the microcontroller, and is configured to control a recording module to receive a tempo command.
  • the electronic cigarette body further includes an overcurrent protection module
  • the overcurrent protection module is coupled to the microcontroller and is configured to prevent short circuits.
  • the electronic cigarette body further includes a display device
  • the display device is connected to the microcontroller and is configured to display an electronic cigarette working state.
  • the display device is an LED light or a display screen.
  • the voice module is a bar or a buzzer.
  • the air flow sensor includes a cylindrical outer casing
  • An inductor connected to the microcontroller is disposed inside the negative pressure chamber, and the inductor is configured to generate the pulse signal if a pressure drop inside the negative pressure chamber is detected.
  • An annular insulating sleeve is disposed at a position corresponding to the through hole at a bottom of the metal ram, and the annular insulating sleeve is used to isolate the baffle and the ram.
  • An electronic cigarette working method for playing different tempos according to different smoking airflows the method applying the electronic cigarette, the method comprising:
  • the airflow sensor sends a first pulse signal to the microcontroller according to the flow rate of the airflow in the electronic cigarette body;
  • the microcontroller sends a first control signal to the voice module according to the first pulse signal; the voice module emits a tempo according to the first control signal.
  • the method further includes:
  • the microcontroller sends a second control signal to the atomizing component according to the first pulse signal; the atomizing component atomizes the smoke liquid according to the second control signal to generate smoke.
  • the method further includes:
  • the microcontroller sends a third control signal to the display module according to the first pulse signal; the display module displays the electronic cigarette working state according to the third control signal.
  • the method further includes:
  • the atomization control module sends a second pulse signal to the microcontroller
  • the airflow sensor sends a first pulse signal to the microcontroller according to the flow rate of the airflow in the electronic cigarette body; the microcontroller sends a first control signal to the voice module according to the pulse signal.
  • the embodiments of the present invention have the following advantages:
  • the airflow sensor when the user smokes, the airflow sensor generates a pulse signal according to the airflow velocity in the electronic cigarette body, and the microcontroller in the electronic cigarette body recognizes the pulse signal to send a corresponding control signal to the voice module, and the atomization component atomizes.
  • the smoke liquid produces smoke.
  • the user when the user is e-cigarette, they can listen to different temperament according to different smoking airflows. During the smoking process, they can cultivate the sentiment and feel more pleasant.
  • the method of adjusting the temperament through the airflow of smoking can guide the skillfully.
  • Smokers use e-cigarettes, which is good for the health and well-being of smokers.
  • FIG. 1 is a schematic overall view of an embodiment of an electronic cigarette provided by the present invention.
  • FIG. 2 is a schematic view of an embodiment of an electronic cigarette provided by the present invention.
  • FIG. 3 is a schematic view of another embodiment of an electronic cigarette provided by the present invention.
  • FIG. 4 is a cross-sectional structural view showing an embodiment of an air flow sensor for an electronic cigarette according to the present invention
  • FIG. 5 is a schematic diagram showing a circuit connection of another embodiment of the electronic cigarette provided by the present invention
  • FIG. 6 is a schematic diagram of an embodiment of an electronic cigarette working method for playing different tempos according to different smoking airflows according to the present invention.
  • the present invention provides an electronic cigarette that plays different tempera according to different smoking airflows.
  • the specific structure is shown in Figure 1 and shown in Figure 2, the electronic cigarette body 100;
  • the electronic cigarette body is internally provided with an air flow sensor 102, an atomizing component 103, a voice module 104, and a microcontroller 101 for receiving and identifying different pulse signals and issuing control signals according to different pulse signals;
  • the airflow sensor 102 is coupled to the microcontroller 101 and configured to transmit different pulse signals to the microcontroller 101 according to different airflow rates in the electronic cigarette body 100;
  • the voice module 104 is connected to the microcontroller 101 and configured to receive the control signal and emit a tempo;
  • the atomizing assembly 103 is coupled to the microcontroller 101 and is used to atomize the soot to generate smoke.
  • the electronic cigarette body is provided with an air flow sensor 102, an atomizing assembly 103, a voice module 104, and a microcontroller 101.
  • the airflow sensor 102 detects a change in the internal pressure of the electronic cigarette body 100, and emits a different pulse signal according to the difference in the airflow. That is, the air flow sensor 102 is provided with a sensor capable of detecting the flow rate of the air flow of the electronic cigarette body 100, and after detecting the flow rate of the air flow, pulses the microcontroller 101.
  • the sensing element of the airflow sensor 102 is divided into several levels of different airflow levels, each level setting a range of airflow flows, each flowmeter corresponding to the airflow sensor 102 emitting a different pulse signal.
  • the inhalation reaches a pressure flattening value after 1.2 seconds, that is, the airflow flow inside the electronic cigarette body 100 reaches a constant value, and the airflow sensor 102 detects the constant value to the microcontroller. 101 emits a pulse signal corresponding to the constant value.
  • a pressure flattening value after 1.2 seconds, that is, the airflow flow inside the electronic cigarette body 100 reaches a constant value
  • the airflow sensor 102 detects the constant value to the microcontroller. 101 emits a pulse signal corresponding to the constant value.
  • This example is for the purpose of better explaining the real-time mode of the embodiment, and is not limited.
  • the microcontroller 101 receives the pulse signal and sends a corresponding signal according to the received pulse information. Control signal.
  • the control signal corresponds to the pulse signal.
  • the microcontroller 101 sends a control signal to the voice module 104.
  • several different tempos have been set inside the voice module 104, and the different temperas emit corresponding tempera according to the control signal sent by the microcontroller 101.
  • the microcontroller 101 sends a control signal to the atomizing assembly 103 based on the pulse signal.
  • the atomizing component 103 atomizes the smoke liquid inside the body of the electronic cigarette according to the control signal to generate smoke.
  • the user can hear the melody while absorbing the electronic cigarette.
  • the user can hear different temperament with different inspiratory volume, increase the fun of smoking e-cigarette, and can cultivate the sentiment in the process of smoking, and the mood is more pleasant.
  • the method of adjusting the temperament through the air flow of smoking can guide the skillfully.
  • Smokers use e-cigarettes, which is good for the health and well-being of smokers.
  • the electronic cigarette body 100 further includes an atomization control module 105;
  • the atomization control module 105 is coupled to the microcontroller 101 and is used to open or close the atomization assembly 103.
  • the atomization control module 105 can be installed outside the body of the electronic cigarette in the form of a push button switch or a changeover switch, which is not specifically limited herein.
  • the atomizing assembly 103 can be turned on or off by the user by using the atomization control module 105. When the user turns off the atomizing assembly 103, when the electronic cigarette is smoked, only the tempo is heard, that is, only the voice module 104 operates, the tempo is played, and the atomizing component 103 does not work.
  • the electronic cigarette body 100 further includes a switch module 106;
  • the switch module 106 is coupled to the microcontroller 101 and is configured to turn the voice module 104 on or off.
  • the switch module 106 can be installed outside the electronic cigarette body in the form of a push button switch or a changeover switch, which is not specifically limited herein.
  • the user can turn the voice module 104 on or off by using the switch module 106.
  • the atomizing assembly 103 operates to generate smoke, while the voice module 104 does not work and the user does not hear the temperament.
  • the electronic cigarette body 100 further includes a voice adjustment module 107;
  • the voice adjustment module 107 is coupled to the microcontroller and used to change the tempo of the voice module 104.
  • the switch module 106 can be installed in the form of a push button switch or a changeover switch. Outside the body of the sub-smoke, it is not specifically limited here.
  • the user can select the preferred arrangement of the temperament by the voice adjustment module 107, that is, the voice adjustment module 107 changes the airflow flow of the voice module 104 corresponding to the user's smoking.
  • the electronic cigarette often plays the temperament in a certain order, so that the user can experience auditory fatigue.
  • the electronic cigarette body 100 further includes a recording module 112;
  • the recording module 112 is coupled to the microcontroller 101 and is used to record a tempo.
  • the recording module 112 includes a receiving unit 1121 and a button unit 1122;
  • the receiving unit 1121 and the button unit 1122 are respectively connected to the microcontroller 101, and are used to control the recording module 112 to receive a tempo command.
  • the button unit 1122 can be installed outside the electronic cigarette body in the form of a push button switch or a changeover switch, which is not specifically limited herein.
  • the user uses the button unit 1122 and inputs his favorite temperament to the microcontroller 101 through the receiving unit 1121. For example, music, animal calls, ringtones, etc.
  • the micro controller 101 is internally provided with a storage unit for storing the temperament input by the user.
  • the user uses the voice adjustment module 107 to change and set the playback tempo of the voice module 104. Make e-cigarettes more interesting and more humane.
  • the electronic cigarette body 100 further includes an overcurrent protection module 108;
  • the overcurrent protection module 108 is coupled to the microcontroller 101 and is used to prevent short circuits. In order to protect the circuit in this embodiment, the overcurrent protection module 108 detects the circuit current. When a short circuit occurs in the circuit, the overcurrent protection module 108 disconnects the power supply circuit, thereby protecting the electronic components in the circuit.
  • the overcurrent protection module 108 can draw a fuse or a fuse switch, etc., and is not limited herein.
  • the electronic cigarette body 100 further includes a display device 110;
  • the display device 110 is connected to the microcontroller 101 and is used to display an electronic cigarette working state.
  • the display device 110 is an LED light or a display screen.
  • the display device 110 may be disposed outside the electronic cigarette body.
  • the LED lamp is taken as an example, and this example is not limited. Several LED lights of different colors are arranged outside the body of the electronic cigarette. When the user smokes the electronic cigarette, the LED light is red, the electronic aerosolizing component 103 is working, and the yellow LED is also illuminated, indicating the current tempo of the voice module 104.
  • the setting of the color of the LED lamp can correspond to the order in which the voice module 104 plays the tempo.
  • the electronic cigarette body 100 is internally provided with a battery component. When the battery component is insufficient in power, the LED light flashes to indicate that the battery is insufficient.
  • the voice module 104 is a speaker or a buzzer, which is not limited herein.
  • the airflow sensing switch 102 includes a cylindrical outer casing 301.
  • the microcontroller 101 is disposed in the housing 301.
  • a baffle 302 is disposed at the second end of the outer casing 301.
  • a through hole is provided in the baffle 302.
  • a hollow metal ram 303 is disposed in the through hole.
  • An annular insulating sleeve 305 is disposed at a position corresponding to the through hole at the bottom of the metal ejector 303.
  • the annular insulating sleeve 305 is used to isolate the baffle 302 and the ram 303.
  • a negative pressure chamber 306 is disposed inside the outer casing 301;
  • a sensor 304 connected to the microcontroller 101 is disposed inside the negative pressure chamber 306, and the sensor 304 is configured to generate the pulse signal if the pressure inside the negative pressure chamber 306 is detected to decrease.
  • the microcontroller is located inside or outside of the negative pressure chamber 306.
  • the specific location is not limited in this embodiment.
  • the specific application process of the airflow sensor 102 is:
  • the pressure of the negative pressure chamber 306 located in the cylindrical outer casing 301 is reduced, and an air flow is generated in the negative pressure chamber 306, and the air flow sensor 304 senses that the pressure of the negative pressure chamber 306 is reduced, and A pulse signal is generated and transmitted to the microcontroller 101.
  • the microcontroller 101 simultaneously outputs a control signal to open the circuit switch in which the atomizing assembly 103 is located, causing the atomizer to operate to generate smoke. At the same time, the circuit switch of the voice module 104 is turned on, and the voice module 104 plays the tempo. When the user stops smoking, the microcontroller 101 does not detect the pulse signal and turns off the circuit switch where the atomizing component 103 and the voice module 104 are located, thereby causing the atomizing component 103 and the voice module 104 to stop working.
  • the air flow sensor 304 does not generate any signal, that is, the negative pressure chamber 306 only has a negative pressure generated by the negative pressure chamber 306 when the user smokes. Press to generate a pulse signal.
  • the microcontroller 101 has a good seal with the outer casing 301 to ensure good sealing of the negative pressure chamber 306. And the negative pressure chamber 306 maintains air communication with the outside only through the hollow metal ram 302.
  • the airflow sensor 102 can sense the pressure in the negative pressure chamber 306 when the user smokes.
  • the change, thereby reducing the pressure of the negative pressure chamber 306, generates a different pulse signal, by which the microcontroller turns on the circuit switch where the atomizer is located, so that the atomizer works normally to generate smoke, thereby making the user
  • the smoking process is more realistic.
  • the microcontroller 101 controls the voice module 104 to play a tempo by the pulse signal.
  • FIG. 5 illustrates the real-time mode of the embodiment in a specific circuit diagram.
  • This circuit diagram is only for a fuller explanation and is not limited.
  • Ml is the airflow sensor 102.
  • the specific model can be UASIOOO.
  • the specific model of the microcontroller 101 can be SN8P2711B, Q2 is the triode, LS is the voice module 104, and B1 is the atomization component 103.
  • the heating wire wherein K1 is a voice adjustment module 107, K2 is a switch module 106, and K3 is an atomization control module 105.
  • the specific work project is:
  • the airflow passes through the airflow sensor 102, and the airflow sensor 102 measures the airflow velocity and sends it to the microcontroller 101.
  • the microcontroller 101 controls the voice module 104 to emit different sounds according to the received different airflow signals, and simultaneously switches.
  • the FET Q1 in the assembly is turned on, so that the battery BATTERY supplies power to the heating wire B1 of the atomizing assembly 103, so that the heating wire B1 atomizes the oil, and at the same time controls the LED1 for imitating the burning of the cigarette, the user realizes Take e-cigarettes and listen to beautiful music.
  • an electronic cigarette working method for playing different tempos according to different smoking airflows is further included.
  • the method uses the electronic cigarette in the above embodiment, and the method includes:
  • the airflow sensor 102 sends a first pulse signal to the microcontroller 101 according to the flow rate of the airflow in the electronic cigarette body;
  • the airflow sensor 102 detects a change in the internal pressure of the electronic cigarette body 100, and emits a different pulse signal according to the difference in the airflow. That is, the air flow sensor 102 is provided with a sensor capable of detecting the flow rate of the air flow of the electronic cigarette body 100, and after detecting the flow rate of the air flow, sends a first pulse signal to the microcontroller 101.
  • the microcontroller 101 sends a first control signal to the voice module 104 according to the first pulse signal.
  • the microcontroller 101 After receiving the first pulse signal, the microcontroller 101 sends a first control signal to the voice module 104 to prepare the voice module 104 to begin operation. 1003.
  • the voice module 104 issues a tempo according to the first control signal.
  • the microcontroller 101 sends a first control signal to the voice module 104.
  • Several different tempos have been set inside the voice module 104, and the different temperas are based on the first control signal sent by the microcontroller 101. Issue the corresponding temperament.
  • the method further includes:
  • the microcontroller 101 sends a second control signal to the atomizing component 103 according to the first pulse signal;
  • the atomizing assembly 103 atomizes the liquid smoke according to the second control signal to generate smoke.
  • the microcontroller 101 While the microcontroller 101 sends the first control signal to the voice module 104, the micro controller 101 sends a second control signal to the atomizing component 103 based on the pulse signal.
  • the atomizing component 103 atomizes the smoke liquid inside the body of the electronic cigarette according to the second control signal to generate smoke.
  • the method further includes:
  • the microcontroller 101 sends a third control signal to the display module 110 according to the first pulse signal;
  • the display module 110 displays an electronic cigarette operating state according to the third control signal.
  • the user is allowed to smoke the electronic cigarette as if the cigarette was smoked.
  • the display module 110 may be disposed at one end of the electronic cigarette.
  • the display module 110 at one end of the electronic cigarette simulates the burning of the cigarette with an LED lamp or other illuminating element. Give users more realism.
  • the method further includes:
  • the atomization control module 105 sends a second pulse signal to the microcontroller 101; the airflow sensor 102 sends a first pulse signal to the microcontroller 101 according to the flow rate of the airflow in the electronic cigarette body 100;
  • the microcontroller 101 issues a first control signal to the speech module 104 based on the pulse signal.
  • the speech module 104 issues a first control signal to the speech module 104 based on the pulse signal.
  • the user can turn off the atomizing assembly 103, when the electronic cigarette is smoked, only the sound is heard, that is, only the voice module 104 operates, the sound law is played, and the atomizing component 103 does not work.

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Abstract

一种根据吸烟气流量不同播放不同音律的电子烟及该电子烟的工作方法。电子烟包括电子烟本体(100),其内部设置有气流传感器(102)、雾化组件(103)、语音模块(104)以及用于接收和识别不同的脉冲信号,并根据不同的脉冲信号发出控制信号的微控制器(101)。当用户吸烟时,气流传感器(102)根据电子烟本体(100)内气流流速产生脉冲信号,微控制器(101)识别脉冲信号向语音模块(104)发出对应的控制信号,使语音模块(104)能够根据不同的气流流速发出不同的声音,同时雾化组件(103)雾化烟液产生烟雾。用户在进行吸电子烟时,可根据不同的吸烟气流量收听到不同的音律,从而陶冶情操,心情愉悦,通过吸烟的气流量进行调节音律的办法,能巧妙地引导吸烟者吸食电子烟,因而利于吸烟者的身心健康,戒烟效果较好。

Description

一种电子烟以及电子烟工作方法 技术领域
本发明涉及电子烟领域,尤其涉及一种根据吸烟气流量不同播放不同音律 的电子烟及播放音律的方法。
电子烟是一种新型的电子产品, 其与普通的香烟有着相似的外观, 以及与 香烟相似的味道, 但是电子烟相对于传统的香烟更为的健康以及环保。
现有技术中的电子烟包括电池杆组件及雾化组件,电池杆组件与雾化组件 连接, 雾化组件另一端连接吸嘴。 用户在吸烟时, 气流感应器可感应到用户吸 烟的动作后,电子烟内部控制器即可控制雾化组件的电热丝组件雾化烟油产生 烟雾。
现有的电子烟, 用户吸烟时没有任何声音发出, 即使有声音一般只是模仿 吸烟烟草燃烧的声音, 声音显得沉闷单调, 没有乐趣, 不利于吸烟者的身心健 康, 戒烟效果差。
发明内容
本发明提供了一种根据吸烟气流量不同播放不同音律的电子烟及播放音 乐的方法。
一种电子烟, 其中包括:
电子烟本体;
所述电子烟本体内部设置有气流传感器、 雾化组件、语音模块以及用于接 收和识别不同的脉冲信号, 并根据不同的脉冲信号发出控制信号的微控制器; 所述气流传感器与所述微控制器连接,且用于根据电子烟本体内气流流速 的不同向所述微控制器发送不同的脉冲信号;
所述语音模块与所述微控制器连接, 且用于接收所述控制信号并发出音 律;
所述雾化组件与所述微控制器连接, 且用于烟液雾化产生烟雾。
所述电子烟本体还包括雾化控制模块;
所述雾化控制模块与所述微控制器连接, 且用于打开或关闭所述雾化组 件。 所述电子烟本体还包括开关模块;
所述开关模块与所述微控制器连接, 且用于打开或关闭所述语音模块。 所述电子烟本体还包括语音调节模块;
所述语音调节模块与所述微控制器连接, 且用于改变所述语音模块的音 律。
所述电子烟本体还包括录音模块;
所述录音模块与所述微控制器连接, 且用于录制音律。
所述录音模块包括接收单元和按键单元;
所述接收单元所述按键单元分别与所述微控制器连接,且用于控制录音模 块接收音律命令。
所述电子烟本体还包括过流保护模块;
所述过流保护模块与所述微控制器连接, 且用于防止电路短路。
所述电子烟本体还包括显示装置;
所述显示装置与所述微控制器连接, 且用于显示电子烟工作状态。
所述显示装置为 LED灯或显示屏。
所述语音模块为喇八或蜂鸣器。
所述气流传感器包括圓筒状外壳;
在所述外壳的第一端设置有所述微控制器;
在所述外壳的第二端设置有挡板;
在所述外壳内部设置有负压腔;
在所述负压腔内部设置有与所述微控制器连接的感应器,所述感应器用于 若检测到所述负压腔内部的压力降低则生成所述脉冲信号。
在所述挡板上设置有通孔;
在所述通孔中设置有中空的金属顶杆;
在所述金属顶杆底部与所述通孔对应的位置设置有环形绝缘套,所述环形 绝缘套用以隔离所述挡板和所述顶杆。
一种根据吸烟气流量不同播放不同音律的电子烟工作方法,所述方法应用 上述所述电子烟, 所述方法包括:
气流传感器根据电子烟本体内气流的流速向微控制器发出第一脉冲信号; 微控制器根据所述第一脉冲信号向语音模块发出第一控制信号; 语音模块根据第一控制信号发出音律。
所述方法还包括:
微控制器根据所述第一脉冲信号向雾化组件发出第二控制信号; 雾化组件根据第二控制信号雾化烟液产生烟雾。
所述方法还包括:
微控制器根据所述第一脉冲信号向显示模块发出第三控制信号; 显示模块根据第三控制信号显示电子烟工作状态。
所述方法还包括:
所述雾化控制模块向所述微控制器发出第二脉冲信号;
气流传感器根据电子烟本体内气流的流速向微控制器发出第一脉冲信号; 微控制器根据所述脉冲信号向语音模块发出第一控制信号。
从以上技术方案可以看出, 本发明实施例具有以下优点:
在本发明中, 当用户吸烟时, 气流传感器根据电子烟本体内气流流速产生 脉冲信号,电子烟本体内的微控制器识别此脉冲信号向语音模块发出对应的控 制信号, 同时雾化组件雾化烟液产生烟雾。 这样, 用户在进行吸电子烟时, 可 以根据不同的吸烟气流量收听到不同的音律, 吸烟时过程中可陶冶情操, 心情 更愉悦,通过吸烟的气流量进行调节音律的方法, 能巧妙地引导吸烟者吸食电 子烟, 因而利于吸烟者的身心健康, 戒烟效果较好。 附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施 例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地, 下面描述 中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付 出创造性劳动的前提下, 还可以根据这些附图获得其他的附图。
图 1为本发明所提供电子烟的一种实施例整体示意图;
图 2为本发明所提供电子烟的一种实施例示意图;
图 3为本发明所提供电子烟的另一种实施例示意图;
图 4为本发明所提供电子烟的气流传感器的一种实施例剖面结构示意图; 图 5为本发明所提供电子烟的另一种实施例的电路连接示意图; 图 6 为本发明一种根据吸烟气流量不同播放不同音律的电子烟工作方法 的一个实施例示意图。 具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清 楚、 完整地描述, 显然, 所描述的实施例仅仅是本发明一部分实施例, 而不是 全部的实施例。基于本发明中的实施例, 本领域普通技术人员在没有做出创造 性劳动前提下所获得的所有其他实施例, 都属于本发明保护的范围。
本发明提供一种根据吸烟气流量不同播放不同的音律的电子烟。其具体结 构请参见图 1并结合图 2所示, 电子烟本体 100; 包括
所述电子烟本体内部设置有气流传感器 102、雾化组件 103、语音模块 104 以及用于接收和识别不同的脉冲信号,并根据不同的脉冲信号发出控制信号的 微控制器 101;
所述气流传感器 102与所述微控制器 101连接, 且用于根据电子烟本体 100内气流流速的不同向所述微控制器 101发送不同的脉冲信号;
所述语音模块 104与所述微控制器 101连接,且用于接收所述控制信号并 发出音律;
所述雾化组件 103与所述微控制器 101连接, 且用于烟液雾化产生烟雾。 在本实施例中, 电子烟本体设置有气流传感器 102、 雾化组件 103、 语音 模块 104以及微控制器 101。
用户在吸烟时, 气流传感器 102检测到电子烟本体 100内部气压变化,根 据气流量的不同发出不同的脉冲信号。也就是说, 气流传感器 102设置有能够 检测电子烟本体 100气流流量的传感器,在检测到气流的流量后, 向微控制器 101发出脉冲。 所述气流传感器 102的传感元件分为几个气流流量大小不同的 等级, 每个等级设定一定范围的气流流量, 每个流量等级对应气流传感器 102 发出不同的脉冲信号。 例如, 用户在吸烟时, 在 1.2秒后使吸气达到一个气压 平定值, 也就是说, 电子烟本体 100内部的气流流量达到一个恒定值, 气流传 感器 102检测出这个恒定值, 向微控制器 101发出该恒定值对应的脉冲信号。 此举例为了更好的说明本实施例的实时方式, 不做限定。
所述微控制器 101接收到所述脉冲信号,并根据接收的脉冲信息发出相应 的控制信号。 所述控制信号与所述脉冲信号向对应。 所述微控制器 101将控制 信号发送给语音模块 104。 这里, 所述语音模块 104内部已经设定好几种不同 的音律,所述不同的音律根据微控制器 101发出的控制信号,发出对应的音律。
同时, 所述微控制器 101根据脉冲信号向雾化组件 103发出控制信号。 雾 化组件 103根据控制信号使电子烟本体内部烟液雾化产生烟雾。
这样, 用户在吸电子烟的同时就能听到悦耳的音律。 而且用户用不同的吸 气量能够听到不同的音律,增加了吸电子烟的乐趣,吸烟时过程中可陶冶情操, 心情更愉悦,通过吸烟的气流量进行调节音律的方法, 能巧妙地引导吸烟者吸 食电子烟, 因而利于吸烟者的身心健康, 戒烟效果较好。
在本实施例中, 为了能够增加更多的使用功能, 给用户带来更好的体验, 在电子烟本体内部增加一些功能部件,请参阅图 3所示, 所述功能部件可以单 独增加一项, 也可以增加几项或全部都包括, 这里不做限定。 下面就对每个功 能部件的使用方式及原理逐一说明。
本实施例中, 所述电子烟本体 100还包括雾化控制模块 105;
所述雾化控制模块 105与所述微控制器 101连接,且用于打开或关闭所述 雾化组件 103。
所述雾化控制模块 105, 可以用按钮开关或转换开关的形式安装在电子烟 本体外部, 这里不做具体限定。用户通过使用所述雾化控制模块 105可以打开 或关闭所述雾化组件 103。 当用户关闭雾化组件 103时, 在吸电子烟时, 只听 到音律, 也就是只有语音模块 104工作, 播放音律而雾化组件 103不工作。
本实施例中, 所述电子烟本体 100还包括开关模块 106;
所述开关模块 106与所述微控制器 101连接,且用于打开或关闭所述语音 模块 104。
所述开关模块 106 可以用按钮开关或转换开关的形式安装在电子烟本体 外部, 这里不做具体限定。用户通过使用所述开关模块 106可以打开或关闭所 述语音模块 104。 用户吸烟时雾化组件 103工作产生烟雾, 而语音模块 104不 工作, 用户听不到音律。
本实施例中, 所述电子烟本体 100还包括语音调节模块 107;
所述语音调节模块 107与所述微控制器连接 101 , 且用于改变所述语音模 块 104的音律。所述开关模块 106可以用按钮开关或转换开关的形式安装在电 子烟本体外部, 这里不做具体限定。用户可以通过语音调节模块 107选择自己 喜欢的音律排列次序,也就是通过语音调节模块 107改变语音模块 104对应用 户吸烟时的气流流量, 电子烟经常按照一定的次序播放音律,使用户产生听觉 疲劳。
本实施例中, 所述电子烟本体 100还包括录音模块 112;
所述录音模块 112与所述微控制器 101连接, 且用于录制音律。
所述录音模块 112包括接收单元 1121和按键单元 1122;
所述接收单元 1121和所述按键单元 1122分别与所述微控制器 101连接, 且用于控制录音模块 112接收音律命令。
所述按键单元 1122可以用按钮开关或转换开关的形式安装在电子烟本体 外部, 这里不做具体限定。 用户使用按键单元 1122并通过接收单元 1121向微 控制器 101输入自己喜爱的音律。 例如音乐, 动物叫声, 铃声等等。 所述微控 制器 101内部设置有存储单元, 可以将用户输入的音律储存。用户用语音调节 模块 107来改变和设置语音模块 104的播放音律。 使电子烟更加具有趣味性, 更有人性化。
本实施例中, 所述电子烟本体 100还包括过流保护模块 108;
所述过流保护模块 108与所述微控制器 101连接, 且用于防止电路短路。 为了能够给本实施例中电路保护, 釆用过流保护模块 108检测电路电流, 当电路中出现短路时, 过流保护模块 108断开电源回路, 这样能够保护电路中 的电子元件。所述过流保护模块 108可以釆取熔断器或熔断开关等等这里不做 限定。
本实施例中, 所述电子烟本体 100还包括显示装置 110;
所述显示装置 110与所述微控制器 101连接,且用于显示电子烟工作状态。 所述显示装置 110为 LED灯或显示屏。
为了能够让用户更加了解电子烟的工作状态,可以在电子烟本体外部设置 显示装置 110。 这里以 LED灯为例, 此举例不作为限定。 在电子烟本体外部 设置几个不同颜色的 LED灯。 用户吸电子烟时, LED灯红色发光, 表述电子 烟雾化组件 103正在工作, 同时 LED灯黄色也在发光,表示当前语音模块 104 播放的那个音律。 这里可以将 LED灯颜色的设置与语音模块 104播放音律的 次序相对应。 在本实施例中, 电子烟本体 100内部设置有电池组件, 当电池组件电量不 足时, 通过 LED灯闪烁来提示电量不足。
在本实施例中, 语音模块 104为喇叭或蜂鸣器, 这里不做限定。
在本实施例中, 所述气流传感器 102具体结构请结合图 4所示, 具体的该气流感应开关 102包括圓筒状外壳 301。在该外壳 301的设置有 该微控制器 101。 在该外壳 301的第二端设置有挡板 302。 在该挡板 302上设 置有通孔。 在该通孔中设置有中空的金属顶杆 303。
在该金属顶杆 303底部与该通孔对应的位置设置有环形绝缘套 305, 该环 形绝缘套 305用以隔离该挡板 302和该顶杆 303。
在该外壳 301内部设置有负压腔 306;
在该负压腔 306内部设置有与该微控制器 101连接的传感器 304, 该传感 器 304用于若检测到该负压腔 306内部的压力降低则生成该脉冲信号。
更具体的, 该微控制器位于该负压腔 306内部或位于该负压腔 306外部。 具体位置在本实施例中不作限定。
本实施例中, 气流传感器 102具体的应用过程为:
当用户吸烟时,位于圓筒状外壳 301内的负压腔 306的压力减少,会在该 负压腔 306内生成气流,则该气流传感器 304感应到负压腔 306的压力减少的 情况, 并生成脉冲信号, 并将该脉冲信号传送至微控制器 101。
微控制器 101同时输出控制信号以使得打开雾化组件 103所在电路开关, 使雾化器工作产生烟雾。 同时导通语音模块 104所在电路开关, 语音模块 104 播放音律。 当用户停止抽烟时,微控制器 101检测不到脉冲信号便会关断雾化 组件 103和语音模块 104所在电路开关, 从而使雾化组件 103和语音模块 104 停止工作。
其中, 若负压腔 306内的压力增大或受到外力冲击产生震动时, 该气流传 感器 304不产生任何信号,也就是说, 该负压腔 306只有在用户吸烟时负压腔 306产生的负压生成脉冲信号。
微控制器 101与外壳 301具有良好的密封性,以确保负压腔 306的密封性 良好。 且该负压腔 306只通过中空的金属顶杆 302与外界保持空气的连通。
本实施例中,该气流传感器 102能够感应到用户吸烟时负压腔 306内压力 的变化, 从而在负压腔 306压力减少的情况, 生成不同的脉冲信号, 通过该脉 冲信号使得微控制器打开雾化器所在电路开关,以使得雾化器正常工作以生成 烟雾,从而使得用户吸烟过程更具真实效果。 同时所述微控制器 101通过所述 脉冲信号, 控制所述语音模块 104播放音律。
为了能够更好的理解本实施例,请参阅图 5所示, 利用以具体的电路图说 明本实施例的实时方式。 此电路图仅为了更充分的说明, 不做任何限定。
如图 5 所示, 具体部件为: Ml 为气流传感器 102 具体型号可以选用 UASIOOO, 微控制器 101的具体型号可以选用 SN8P2711B , Q2为三极管, LS 为语音模块 104, B1为雾化组件 103的电加热丝, 其中 K1为语音调节模块 107, K2为开关模块 106, K3为雾化控制模块 105。
具体工作工程为:
当用户吸烟时, 气流通过气流传感器 102, 气流传感器 102测量出气流速 度并发给微控制器 101, 微控制器 101根据接收到的不同的气流量信号来控制 语音模块 104发出不同的声音,同时开关组件中的场效应管 Q1导通,从而使电 池 BATTERY为雾化组件 103的电热丝 B1供电, 以使电热丝 B1将烟油雾化, 同时控制用于模仿香烟燃烧的 LED1亮, 用户便实现进行吸食电子烟, 同时可 以收听到美妙、的音乐。
在本实施例中,还包括一种根据吸烟气流量不同播放不同音律的电子烟工 作方法, 请参阅图 6所示, 所述方法应用上述实施例中的电子烟, 所述方法包 括:
1001、气流传感器 102根据电子烟本体内气流的流速向微控制器 101发出 第一脉冲信号;
用户在吸烟时, 气流传感器 102检测到电子烟本体 100内部气压变化,根 据气流量的不同发出不同的脉冲信号。也就是说, 气流传感器 102设置有能够 检测电子烟本体 100气流流量的传感器,在检测到气流的流量后, 向微控制器 101发出第一脉冲信号。
1002、微控制器 101根据所述第一脉冲信号向语音模块 104发出第一控制 信号;
微控制器 101接收所述第一脉冲信号后,向语音模块 104发出第一控制信 号, 使语音模块 104准备开始工作。 1003、 语音模块 104根据第一控制信号发出音律。
所述微控制器 101将第一控制信号发送给语音模块 104,所述语音模块 104 内部已经设定好几种不同的音律,所述不同的音律根据微控制器 101发出的第 一控制信号, 发出对应的音律。
在本实施例中, 所述方法还包括:
所述微控制器 101根据所述第一脉冲信号向雾化组件 103发出第二控制信 号;
所述雾化组件 103根据第二控制信号雾化烟液产生烟雾。
所述微控制器 101向语音模块 104发送第一控制信号的同时,所述微控制 器 101根据脉冲信号向雾化组件 103发出第二控制信号。雾化组件 103根据第 二控制信号使电子烟本体内部烟液雾化产生烟雾。
这样, 用户在吸电子烟的同时就能听到悦耳的音律。 而且用户用不同的吸 气量能够听到不同的音律, 增加了吸电子烟的乐趣。
在本实施例中, 所述方法还包括:
所述微控制器 101根据所述第一脉冲信号向显示模块 110发出第三控制信 号;
所述显示模块 110根据第三控制信号显示电子烟工作状态。
为了能够更逼真, 让用户抽电子烟如同子吸香烟一样, 本实施例中, 可以 在电子烟一端设置有显示模块 110。 当用户吸电子烟产生烟雾并听到音律的同 时, 电子烟一端的显示模块 110用 LED灯或其他发光元件模拟香烟燃烧的样 子。 给用户带来更多的真实感。
在本实施例中, 所述方法还包括:
所述雾化控制模块 105向所述微控制器 101发出第二脉冲信号; 气流传感器 102根据电子烟本体 100内气流的流速向微控制器 101发出第 一脉冲信号;
所述微控制器 101根据所述脉冲信号向语音模块 104发出第一控制信号。 在本实施例中, 用户可以关闭雾化组件 103时, 在吸电子烟时, 只听到音 律, 也就是只有语音模块 104工作, 播放音律而雾化组件 103不工作。
本说明书中各个实施例釆用递进的方式描述,每个实施例重点说明的都是 与其他实施例的不同之处, 各个实施例之间相同相似部分互相参见即可。 对所公开的实施例的上述说明,使本领域专业技术人员能够实现或使用本 实用新型。对这些实施例的多种修改对本领域的专业技术人员来说将是显而易 见的,本文中所定义的一般原理可以在不脱离本实用新型的精神或范围的情况 下, 在其它实施例中实现。 因此, 本实用新型将不会被限制于本文所示的这些 实施例, 而是要符合与本文所公开的原理和新颖特点相一致的最宽的范围。

Claims

权 利 要 求
1、 一种电子烟, 其特征在于, 包括:
电子烟本体(100);
所述电子烟本体内部设置有气流传感器(102)、 雾化组件(103)、 语音模 块(104) 以及用于接收和识别不同的脉冲信号, 并根据不同的脉冲信号发出 控制信号的微控制器(101);
所述气流传感器 ( 102)与所述微控制器 ( 101 )连接, 且用于根据电子烟 本体 (100) 内气流流速的不同向所述微控制器(101)发送不同的脉冲信号; 所述语音模块 ( 104)与所述微控制器 ( 101 )连接, 且用于接收所述控制 信号并发出音律;
所述雾化组件( 103 )与所述微控制器( 101 )连接, 且用于雾化烟液产生 烟雾。
2、 根据权利要求 1所述的电子烟, 其特征在于,
所述电子烟本体 ( 100)还包括雾化控制模块( 105 );
所述雾化控制模块 ( 105 )与所述微控制器 ( 101 )连接, 且用于打开或关 闭所述雾化组件 (103)。
3、 根据权利要求 1所述的电子烟, 其特征在于,
所述电子烟本体 ( 100)还包括开关模块(106);
所述开关模块 ( 106)与所述微控制器 ( 101 )连接, 且用于打开或关闭所 述语音模块( 104 )。
4、 根据权利要求 1所述的电子烟, 其特征在于,
所述电子烟本体 ( 100)还包括语音调节模块( 107);
所述语音调节模块(107)与所述微控制器连接(101), 且用于改变所述 语音模块(104) 的音律。
5、 根据权利要求 1所述的电子烟, 其特征在于,
所述电子烟本体 ( 100)还包括录音模块(112);
所述录音模块(112)与所述微控制器(101)连接, 且用于录制音律。
6、 根据权利要求 5所述的电子烟, 其特征在于,
所述录音模块(112) 包括接收单元(1121)和按键单元(1122);
所述接收单元( 1121 )和所述按键单元( 1122 )分别与所述微控制器( 101 ) 连接, 且用于控制录音模块接收音律命令。
7、 根据权利要求 1所述的电子烟, 其特征在于,
所述电子烟本体 ( 100)还包括过流保护模块( 108);
所述过流保护模块( 108)与所述微控制器( 101 )连接, 且用于防止电路 短路。
8、 根据权利要求 1所述的电子烟, 其特征在于,
所述电子烟本体 ( 100)还包括显示装置 (110);
所述显示装置( 110)与所述微控制器( 101 )连接, 且用于显示电子烟工 作状态。
9、 根据权利要求 8所述的电子烟, 其特征在于,
所述显示装置 (110) 为 LED灯或显示屏。
10、 根据权利要求 1所述的电子烟, 其特征在于,
所述语音模块(104) 为喇叭或蜂鸣器。
11、 根据权利要求 1所述的电子烟, 其特征在于,
所述气流传感器(102) 包括圓筒状外壳 (301);
在所述外壳 (301) 的第一端设置有所述微控制器 (101 );
在所述外壳 (301) 的第二端设置有挡板(302);
在所述外壳 (301) 内部设置有负压腔(306);
在所述负压腔(306) 内部设置有与所述微控制器 (101 ) 连接的感应器 (304), 所述感应器(304)用于若检测到所述负压腔(306) 内部的压力降低 则生成所述脉冲信号。
12、 根据权利要求 11所述的电子烟, 其特征在于,
在所述挡板(302)上设置有通孔;
在所述通孔中设置有中空的金属顶杆(303 );
在所述金属顶杆 ( 303 )底部与所述通孔对应的位置设置有环形绝缘套 ( 305 ), 所述环形绝缘套( 305 )用以隔离所述挡板( 302 )和所述顶杆( 303 )。
13、一种根据吸烟气流量不同播放不同音律的电子烟工作方法, 其特征在 于, 所述方法应用权利要求 1至 12所述电子烟, 所述方法包括:
气流传感器( 102 )根据电子烟本体内气流的流速向微控制器( 101 )发出 第一脉冲信号;
微控制器( 101 )根据所述第一脉冲信号向语音模块( 104 )发出第一控制 信号;
语音模块(104 )根据第一控制信号发出音律。
14、 根据权利要求 13所述的电子烟工作方法, 其特征在于, 所述方法还 包括:
微控制器( 101 )根据所述第一脉冲信号向雾化组件( 103 )发出第二控制 信号;
雾化组件(103 ) 4艮据第二控制信号雾化烟液产生烟雾。
15、 根据权利要求 13所述的电子烟工作方法, 其特征在于, 所述方法还 包括:
微控制器( 101 )根据所述第一脉冲信号向显示模块( 110 )发出第三控制 信号;
显示模块(110 )根据第三控制信号显示电子烟工作状态。
16、 根据权利要求 13所述的电子烟工作方法, 其特征在于, 所述方法还 包括:
雾化控制模块( 105 ) 向所述微控制器 ( 101 )发出第二脉冲信号; 气流传感器( 102 )根据电子烟本体( 100 )内气流的流速向微控制器( 101 ) 发出第一脉冲信号;
微控制器( 101 )根据所述脉冲信号向语音模块( 104 )发出第一控制信号。
PCT/CN2014/076583 2014-04-30 2014-04-30 一种电子烟以及电子烟工作方法 WO2015165066A1 (zh)

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