WO2016000208A1 - 一种电子烟及雾化方法 - Google Patents

一种电子烟及雾化方法 Download PDF

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Publication number
WO2016000208A1
WO2016000208A1 PCT/CN2014/081359 CN2014081359W WO2016000208A1 WO 2016000208 A1 WO2016000208 A1 WO 2016000208A1 CN 2014081359 W CN2014081359 W CN 2014081359W WO 2016000208 A1 WO2016000208 A1 WO 2016000208A1
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WO
WIPO (PCT)
Prior art keywords
electronic cigarette
module
microcontroller
smoke
pulse signal
Prior art date
Application number
PCT/CN2014/081359
Other languages
English (en)
French (fr)
Inventor
向智勇
Original Assignee
惠州市吉瑞科技有限公司
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 惠州市吉瑞科技有限公司 filed Critical 惠州市吉瑞科技有限公司
Priority to PCT/CN2014/081359 priority Critical patent/WO2016000208A1/zh
Priority to CN201480001111.2A priority patent/CN106170214B/zh
Publication of WO2016000208A1 publication Critical patent/WO2016000208A1/zh
Priority to US15/099,184 priority patent/US9980519B2/en

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    • 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
    • A24F40/50Control or monitoring
    • A24F40/51Arrangement of sensors
    • 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
    • A24F40/53Monitoring, e.g. fault detection
    • 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
    • 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
    • H05B1/0202Switches
    • H05B1/0225Switches actuated by timers
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B3/00Ohmic-resistance heating
    • H05B3/0014Devices wherein the heating current flows through particular resistances
    • 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

Definitions

  • the invention relates to the field of electronic cigarettes, in particular to a button and air flow sensing capable of simultaneously controlling atomization The electronic cigarette working on the component and its atomization method.
  • the electronic cigarette in the prior art generally detects the change of the internal pressure of the electronic cigarette through the airflow sensor. To start the atomizer to atomize the smoke liquid to generate smoke; another way is to press the button of the electronic cigarette by the user. Start the atomizer to atomize the smoke liquid to produce smoke.
  • the electronic cigarette airflow is activated and the button is activated, and only a single form of atomizer is used to atomize the smoke liquid.
  • the heating is started when there is airflow, and the internal airflow of the electronic cigarette
  • the gas in the channel enters the user's mouth directly when the user smokes, and the air is cooled by the lower temperature.
  • the amount of smoke is small and the smoke is thin, so it is impossible to achieve the taste and the amount of smoke when the button is heated in advance and then smoked.
  • the simulated smoke effect and user experience are poor.
  • the button activates the heated electronic cigarette because the user uses it in both hands.
  • Such electronic cigarettes are not easy to use when working in a computer or driving environment, and both of these startup methods are lacking. trap.
  • the present invention provides an electronic device capable of switching between a button and an air flow sensing Smoke, including: the body of the electronic cigarette;
  • An airflow sensing module, an atomizing component, a button module, and a battery pack are disposed inside the electronic cigarette body And a timing module, and for receiving the airflow sensing module, the button module, and the timing module a pulse signal emitted according to the airflow sensing module, the button module, and the timing module a pulse signal, a microcontroller that sends a control signal to an internal component of the electronic cigarette body;
  • the airflow sensing module is electrically connected to the microcontroller, and is configured to detect an electronic cigarette body according to the a change in air pressure sends a pulse signal to the microcontroller;
  • the button module is electrically connected to the microcontroller for the micro control according to a user's push direction
  • the device sends a pulse signal to preheat the atomizing component, and when the user is smoking the electronic cigarette, the speaker can increase Add smoke
  • the button module is further configured to: the user presses the set number of times within a set time interval.
  • the button module or the user keeps pressing the button module for a set period of time, and the button module is
  • the microcontroller emits a pulse signal, and the microcontroller causes the electronic cigarette according to the pulse signal Stop working, and when the user presses the button module or the set number of times within the set time interval
  • the user keeps pressing the button module for a set period of time, and the button module is to the micro control Transmitting a pulse signal, and the microcontroller restores the electronic cigarette to normal according to the pulse signal Work
  • the atomizing component is electrically connected to the microcontroller, and is configured to receive a control issued by the microcontroller
  • the signal atomizing smoke liquid produces smoke
  • the timing module is electrically connected to the microcontroller, and is configured to: when the user presses the button module The atomizing component is preheated under the control of the microcontroller, and is timed by the timing module, the user is The electronic cigarette is not sucked within the set time, and the timing module sends a pulse signal to the microcontroller, the micro The controller controls the atomizing component to stop preheating according to a pulse signal sent by the timing module, preventing the The atomizing component is over-fired;
  • the battery assembly is configured to the microcontroller, the airflow sensing module, and the atomizing component And the internal components of the electronic cigarette provide electrical energy.
  • the airflow sensing module is an airflow sensor or an integrated microphone switch.
  • the atomizing component is provided with a heat generating component
  • the switch body is further provided with a switch control tube
  • the switch control tube is electrically connected to the microcontroller and the heat generating component, respectively, for the opening Turning off the control tube according to the microcontroller control, causing the battery component to be supplied to the heating component Electricity, to atomize the smoke liquid to produce smoke.
  • a battery protection module is further disposed inside the electronic cigarette body;
  • the battery protection module is provided with a charging protection unit and a power protection unit;
  • the charging protection unit is configured to detect a charging voltage and a charging current of the battery rod assembly, and when charging When the electric voltage is too high or / and the charging current is too large, the charging circuit is disconnected;
  • the power protection unit is used for the battery rod assembly to supply internal components of the electronic cigarette body In electricity, when the voltage in the circuit is too high or / and the current is too large, the power supply circuit is disconnected.
  • the power protection unit includes two FETs, and two FETs are electrically connected through.
  • the electronic cigarette body is further provided with a display device inside;
  • the display device is electrically connected to the microcontroller and is configured to display an electronic cigarette working state.
  • a boosting module is further disposed inside the electronic cigarette body;
  • the boosting module is electrically connected to the microcontroller, the battery component, and the atomizing component, respectively Connected to increase the voltage supplied by the battery assembly to the atomizing assembly, enabling the atomizing assembly to Rapid heating of the liquid produces smoke.
  • the electronic cigarette body is further provided with a voltage stabilization module
  • the voltage stabilizing module is electrically connected to the microcontroller and the battery component, respectively, and configured to
  • the battery assembly is capable of providing a stable voltage to the microcontroller.
  • the voltage regulator module is provided with a diode and a voltage regulator
  • the diode is connected in series with the voltage regulator
  • the diode anode is electrically connected to the battery rod power supply end, the diode cathode and the voltage regulator
  • the input is electrically connected and is used to prevent the current from conducting in the direction of the diode.
  • An atomization method for an electronic cigarette comprising:
  • the button module sends a first pulse signal to the microcontroller
  • the microcontroller controls the atomization component to generate smoke oil according to the first pulse signal sent by the button module smoke;
  • the user smokes the electronic cigarette, and the airflow sensing module senses the change of the internal pressure of the electronic cigarette body and controls the micro-control Transmitting a second pulse signal;
  • the microcontroller controls the atomization component to continuously atomize according to the second pulse signal sent by the airflow sensing module.
  • Smoke oil produces smoke.
  • the microcontroller controls the timing module to start according to the first pulse signal sent by the button module. Timing
  • the timing module sends a fourth pulse letter to the microcontroller. number
  • the microcontroller controls the atomizing component to stop atomization according to the fourth pulse signal.
  • the user re-sucks the electronic cigarette, and the airflow sensing module senses the change of the internal pressure of the electronic cigarette body. And issuing a second pulse signal to the microcontroller;
  • the microcontroller controls the atomization component to continuously atomize according to the second pulse signal sent by the airflow sensing module.
  • Smoke oil produces smoke.
  • the user presses the button module according to the set number of times during the set time interval, when the user presses The number of times is not less than the number of times the button is set, the microcontroller controls the electronic cigarette to stop working;
  • the user keeps pressing the button module for a set period of time, and the microcontroller controls the power.
  • the child smoke stopped working;
  • the user keeps pressing the button module for a set period of time, and the microcontroller controls the electronic cigarette to recover positively. Work often.
  • the present invention has the following advantages:
  • the button module and the airflow sensing module are combined in one electronic cigarette, wherein
  • the household can smoke directly and trigger the atomizing component to atomize the smoke liquid by the airflow sensing module to generate smoke, or press
  • the button module smokes, that is, the button module triggers the atomization component to atomize the smoke liquid to generate smoke, which brings the user
  • the convenience of use such as direct smoking when driving, no need to press, but usually you can use the hand
  • the button module smokes.
  • the user can first press the button module to atomize The component enters a heating state, so that the airflow passage is heated, and the user can not only generate a large amount of electron smoke.
  • Smoke and when the ambient temperature is low, when the user smokes the electronic cigarette for a long time, To avoid inhaling more cold air and increasing the overall amount of smoke due to the more cold air occupied by the air passage Smaller and less smoky, causing discomfort to the user's mouth and the inability to achieve the taste and amount of smoke.
  • the simulated smoke effect and user experience are poor.
  • the button module Press the button module first, the atomizing component will preheat and then smoke, the user does not need to use the pumping only single
  • the air intake module's intake of electronic cigarettes allows the user to not need too much inspiratory volume. Because the button module is pressed, The atomizing component has been preheated, and the atomization of the smoke liquid starts to generate smoke. The user smokes again, as long as one smokes a little. Small breath can produce a lot of smoke, which brings good smoking effect and gives users a good smoking. Experience.
  • the controller controls the atomization assembly to stop preheating according to a pulse signal sent by the timing module to prevent the fog
  • the components are over-fired to effectively protect the electronic cigarette from damage.
  • the button module is further used for the user to press the button according to the set number of times within the set time interval.
  • the module or the user keeps pressing the button module for a set period of time, the button module is
  • the microcontroller issues a pulse signal, the microcontroller stops the electronic cigarette, and when the user is set Press the button module or the user for a set period of time according to the set number of times within a predetermined time interval. Pressing and holding the button module does not move, the button module sends a pulse signal to the microcontroller,
  • the microcontroller can operate the electronic cigarette according to the pulse signal to return to normal. This can be passed
  • the button module controls the electronic cigarette. In this way, the user can turn off the electronic cigarette and prevent the electronic cigarette when not smoking. Malfunction, or accidentally touch the button module while carrying, causing the electronic cigarette to work, causing damage to the electronic cigarette.
  • FIG. 1 is a schematic overall view of an electronic cigarette according to the present invention.
  • FIG. 2 is a circuit diagram of an embodiment of an electronic cigarette according to the present invention.
  • FIG. 3 is a voltage stabilizing circuit diagram of an embodiment of an electronic cigarette according to the present invention.
  • Figure 5 is an overall flow chart of the method for providing atomization according to the present invention.
  • Figure 6 is a flow chart showing an embodiment of the atomization method of the present invention.
  • Figure 7 is a flow chart showing another embodiment of the atomization method of the present invention.
  • Figure 8 is a flow chart showing another embodiment of the atomization method of the present invention.
  • Figure 9 is a flow chart of another embodiment of the present invention providing an atomization method.
  • the invention provides an electronic cigarette capable of switching between a button and an air flow sensing, as shown in FIG.
  • the utility model comprises: an electronic cigarette body; an airflow sensing module 12 and an atomizing component are arranged inside the electronic cigarette body 14.
  • the pulse signal sent by the button module 11 and the timing module 16 is transmitted according to the airflow.
  • a pulse signal sent by the sensing module 12, the button module 11 and the timing module 16 to the electronic cigarette a microcontroller 13 that sends a control signal to the internal component of the body;
  • the airflow sensing module 12 is electrically connected to the microcontroller 13 and is configured to detect an electronic cigarette according to the The internal air pressure change sends a pulse signal to the microcontroller 13; the button module 11 and the micro The controller 13 is electrically connected for transmitting a pulse signal to the microcontroller 13 according to a user's push, so that The atomizing assembly 14 performs preheating, and when the user is smoking the electronic cigarette, the amount of smoke can be increased;
  • the button module 11 is further configured for the user to press the set number of times within the set time interval.
  • the button module 11 or the user keeps pressing the button module 11 for a set period of time, the button
  • the key module 11 sends a pulse signal to the microcontroller 13, and the microcontroller 13 according to the pulse a signal that causes the electronic cigarette to stop working, and when the user sets the number of times within a set time interval Pressing the button module 11 or the user keeps pressing the button module 11 for a set period of time,
  • the button module 11 sends a pulse signal to the microcontroller 13, and the microcontroller 13 Said pulse signal, so that the electronic cigarette can return to normal operation;
  • the atomizing component 14 is electrically connected to the microcontroller 13 and is configured to receive the microcontroller 13 issued a control signal atomizing the smoke liquid to produce smoke;
  • the timing module 16 is electrically connected to the microcontroller 13 for when the user presses the button mode Block 11 causes the atomizing assembly 14 to preheat under the control of the microcontroller 13 and is timed by the The module 16 counts, the user does not smoke the electronic cigarette within the set time, and the timing module 16 goes to the micro control
  • the device 13 sends a pulse signal, and the microcontroller 13 controls according to the pulse signal sent by the timing module 16.
  • the atomizing assembly 14 is stopped from preheating to prevent the atomizing assembly 14 from being over-fired;
  • the battery assembly 15 is used to give the microcontroller 13, the airflow sensing module 12, the fog The component 14 and the internal components of the electronic cigarette provide electrical energy.
  • the button module 11 and the airflow sensing module 12 are assembled in an electronic cigarette, wherein
  • the user can directly smoke and trigger the atomizing component 14 by the airflow sensing module 12 to atomize the smoke liquid to generate smoke.
  • the button module 11 can also be pressed to smoke, that is, the atomization component 14 is triggered by the button module 11 to atomize the smoke liquid.
  • the production of smoke gives the user the convenience of use, such as smoking directly while driving, without the need to press, In normal times, the button module 11 can be used to smoke.
  • the user can press the button module first.
  • the atomizing assembly 14 enters a heating state, so that the airflow passage is heated, and the user re-sucks the electronic cigarette. Able to generate a lot of smoke, but also to avoid the user's suction in the case of low ambient temperature
  • more cold air is sucked in because the air passage is occupied by more cold air and Make the overall amount of smoke smaller and the smoke is thinner, causing discomfort to the user's mouth and failing to achieve smoking.
  • the taste and the amount of smoke, the simulated smoke effect and the user experience are poor.
  • the atomization group The piece 14 is preheated and then smoked, and the user does not need to use the electronic smoke of only a single airflow sensing module 12 The amount of inhalation allows the user to not need too much inspiratory volume. Since the button module 11 is pressed, the atomizing assembly 14 has Preheating, starting to atomize the smoke to produce smoke, the user smokes again, as long as a small mouthful of smoke can be produced A large amount of smoke is produced, which brings a good smoking effect and gives the user a good smoking experience.
  • the microcontroller 13 controls the atomization assembly 14 to stop pre-processing according to the pulse signal sent by the timing module 16. The heat is prevented from being over-fired, and the electronic cigarette is effectively protected from damage.
  • timing module 16 can be integrated with the microcontroller 13 so that the microcontroller can control both
  • the components inside the electronic cigarette also have a timing function, that is, the timing module 16 and the microcontroller 13 can It is realized by a single chip microcomputer, etc., and is not specifically limited herein.
  • the button module 11 is further configured for the user to press the button according to the set number of times within the set time interval.
  • the key module 11 or the user keeps pressing the button module 11 for a set period of time
  • the button mode Block 11 sends a pulse signal to the microcontroller 13, and the microcontroller 13 stops the electronic cigarette Working, and when the user presses the button module 11 or the set number of times within a set time interval
  • the user keeps pressing and holding the button module 11 for a set period of time
  • the button module 11 is
  • the microcontroller 13 emits a pulse signal, and the microcontroller 13 causes the electron according to the pulse signal
  • the smoke can return to normal and work. This allows the electronic cigarette to be controlled by the button module 11.
  • This user is When not smoking, you can turn off the electronic cigarette to prevent the electronic cigarette from malfunctioning, or accidentally touch the button module when carrying it. As a result, the electronic cigarette works, causing damage to the electronic cigarette.
  • the airflow sensing module 12 can adopt an airflow sensor or an integrated microphone.
  • the switch, specifically what type of airflow sensing module 12 is used is not limited herein.
  • the user presses the button module according to the set number of times within the set time interval. 11 or the user keeps pressing the button module 11 for a set period of time, the specific number of presses or Press and hold for a long time, you can set the e-cigarette before leaving the factory, the number of times can be two, or three times, etc. Etc., and the duration can be 3 seconds, 5 seconds, etc., the specific number of times and duration are not limited here.
  • the atomization assembly 14 is provided with a hair.
  • a heat assembly the heat generating component may be a heating wire, or an infrared heating device, or an ultrasonic heating device, The specific device is not limited herein.
  • the heating wire 31 is employed.
  • the electronic cigarette body is further provided with a switch control tube 21; the switch control tube 21 is respectively The microcontroller 13 and the heating wire 31 are electrically connected to the switch control tube 21 according to the The microcontroller 13 is controlled to be turned on, so that the battery assembly 15 supplies power to the heating wire 31 to atomize the smoke.
  • the liquid produces smoke.
  • the button module 11 is a button switch 32, and the airflow sensing module 12 uses an airflow.
  • the inductor 33 senses a change in the internal pressure of the body of the electronic cigarette.
  • the switch control tube 21 can adopt an N-channel
  • the field effect transistor can be a triode or the like. In this embodiment, an N-channel field effect transistor is used.
  • the electronic cigarette body is further provided with a display device 24; the display device The device 24 is electrically connected to the microcontroller 13 and is used to display an electronic cigarette operating state.
  • Display device 24 LED lights can also use LED screens and so on.
  • the user can first press the push button switch 32 to preheat the electric heating wire 31 of the electronic cigarette.
  • the air flow sensor 33 senses the internal pressure of the electronic cigarette body The change causes the heating wire 31 to atomize the smoke liquid to generate smoke.
  • the display device 24 displays the electronic cigarette entering the work. Status, such as the LED light shows red to enter the working state.
  • the user can also directly smoke the electronic cigarette flow sensor 33 to sense the electronic cigarette.
  • the change in the internal pressure of the body causes the heating wire 31 to atomize the smoke liquid to generate smoke.
  • the display device 24 displays the electronic The smoke enters the working state, such as the LED light indicates red to enter the working state. Specific smoking method There is no limit in it.
  • a battery protection module is further disposed inside the electronic cigarette body;
  • the protection module is provided with a charging protection unit 22 and a power protection unit 23; Detecting the charging voltage and charging current of the battery rod assembly 15, and when the charging voltage is too high or/and charging When the current is too large, the charging circuit is disconnected; the power protection unit 23 is used for the battery rod assembly 15 In supplying power to the internal components of the electronic cigarette body, when the voltage in the circuit is too high or/and the current is too large, Disconnect the power supply circuit.
  • the power protection unit 23 includes two field effect transistors, as shown in FIG. 4, two field effects. Should be connected to the drain electrical connection.
  • the charging protection unit 22 can adopt the S8241 circuit, and the function is to connect to the VDD-VSS through monitoring. Charge and discharge are controlled by the voltage between the battery and the voltage difference between VM and VSS.
  • Power protection unit 23 can use DT8205 circuit, DT8205 circuit is equivalent to two FETs.
  • Embodiment 2 is a diagrammatic representation of Embodiment 1:
  • the difference from the first embodiment is that the microcontroller 13 is provided with a counting unit;
  • the counting unit is used when the user presses the button module 11 or smokes the airflow sensing module 12 A pulse signal is sent to the microcontroller 13.
  • the counting unit in the microcontroller 13 can be based on the receiving pulse. The number of times the signal is rushed to count the number of users smoking. This will help users understand their smoking status.
  • the electronic cigarette body is provided with a display device; the display device and the micro control
  • the device is electrically connected, and the display device here can be used to display the number of users smoking.
  • the user passes the total number of ports, You can know how much cigarettes can be absorbed by the energy stored in the battery pack. Prevent battery power from running out The household cannot smoke.
  • the timing module 16 can protect the internal circuit of the electronic cigarette body and also The atomizing assembly 14 is prevented from being over-fired. Because when the user presses the button module 11, if the user does not smoke for a long time, The atomizing component 14 is always in a heated state, and when the smoke liquid stored inside the atomizing component 14 is burned out, When it is dry, it is easy to burn out the atomizing component 14, and it is easy to cause a short circuit of the circuit and burn out the circuit components. Place To use the timing module 16 when the user presses the button module 11 for a period of time without smoking, the microcontroller 13 can record the duration of the module recording, stop the atomizing component 14 to work, prevent over-burning and circuit short circuit.
  • the duration of the timing unit record can be set according to the factory factory settings. limited.
  • Embodiment 3 is a diagrammatic representation of Embodiment 3
  • the electronic cigarette body is also disposed inside.
  • a boosting module ; the boosting module and the microcontroller 13, the battery assembly 15, and the mist, respectively
  • the component 14 is electrically connected for increasing the voltage supplied by the battery component 15 to the atomizing component 14,
  • the atomizing assembly 14 is enabled to rapidly heat the soot to generate smoke.
  • the atomization voltage of the atomizing assembly 14 is increased, and the power of the heating liquid is increased.
  • the atomizing assembly 14 can quickly heat the smoke liquid to generate smoke, and can generate a large amount of smoke, thereby improving the user's suction. The feeling of e-cigarettes.
  • the boosting module can use a transformer or an amplifying circuit, etc., the specific form here Not limited.
  • the electronic cigarette body is further provided with a voltage stabilization module
  • the voltage stabilizing module is electrically connected to the microcontroller 13 and the battery component 15, respectively, and is used for The battery assembly 15 is enabled to provide a stable voltage to the microcontroller 13.
  • the voltage regulator module is set a diode 42 and a voltage regulator 41 are disposed; the diode 42 is connected in series with the voltage regulator 41; the diode
  • the anode of the tube 42 is electrically connected to the power supply end of the battery assembly 15, the cathode of the diode 42 and the voltage regulator
  • the input of the device 41 is electrically connected and is used for the diode 42 to prevent the current from being turned on.
  • the diode since the diode has the function of forward conduction and reverse cutoff, it can prevent The current stop direction is turned on.
  • the voltage regulator 41 plays a voltage stabilizing role.
  • Specific regulator The voltage regulator of the TLV70430 model can be used. The specific model is not limited here.
  • the microcontroller 13 can be of the STM32F030F6 type, and its specific model is here. Not limited.
  • S102 The microcontroller controls the atomization component atomizing smoke according to the first pulse signal sent by the button module Oil produces smoke;
  • S103 the user smokes the electronic cigarette, and the airflow sensing module senses the change of the internal pressure of the electronic cigarette body, and The microcontroller issues a second pulse signal;
  • S104 The microcontroller controls the atomization component according to the second pulse signal sent by the airflow sensing module Continued atomization of smoke oil produces smoke.
  • the button module and the airflow sensing module are assembled in one electronic cigarette, wherein
  • the user can directly smoke and trigger the atomizing component to atomize the smoke liquid to generate smoke by the airflow sensing module, or Pressing the button module to smoke, that is, the button module triggers the atomization component to atomize the smoke liquid to generate smoke, and brings the user Comes with the convenience of use, such as smoking directly when driving, no need to press, usually you can use the hand
  • the button module smokes.
  • the user can press the button first.
  • the button module, the atomizing component is preheated, enters the heating state, and then absorbs the electronic cigarette, which can generate a large amount of time.
  • the smoke can improve the user's feeling of smoking electronic cigarettes.
  • the atomization component is carried out Preheating and then smoking, the user does not need to use the amount of inhalation of the electronic cigarette like a single airflow sensing module. The user does not need much inspiratory capacity. Because the button module is pressed, the atomizing component has been preheated and begins to atomize. The smoke liquid produces smoke, and the user smokes again. As long as a small amount of cigarette smoke is used, a large amount of smoke can be generated. It has a good smoking effect and gives users a good smoking experience.
  • the microcontroller issues the first according to the button module
  • the pulse signal after controlling the atomization component to atomize the smoke oil to generate smoke, includes: see FIG.
  • S201 The microcontroller controls the timing module to start counting according to the first pulse signal sent by the button module. Time;
  • S202 The user does not smoke the electronic cigarette within the set time, and the timing module sends a fourth to the microcontroller. Pulse signal;
  • S203 The microcontroller controls the atomization component to stop atomization according to the fourth pulse signal.
  • the controller controls the atomization assembly to stop preheating according to a pulse signal sent by the timing module to prevent the fog
  • the components are over-fired to effectively protect the electronic cigarette from damage.
  • the method further includes: referring to FIG.
  • S301 the user re-sucks the electronic cigarette, and the airflow sensing module senses the change of the internal pressure of the electronic cigarette body, and Sending a second pulse signal to the microcontroller;
  • S302 The microcontroller controls the atomization component according to the second pulse signal sent by the airflow sensing module Continued atomization of smoke oil produces smoke.
  • the button module is first pressed, and then the electronic cigarette is sucked each time. No need to press again, each time the electronic cigarette is smoked, the airflow sensing module senses the change of the internal pressure of the electronic cigarette body. To signal the microcontroller, the microcontroller controls the atomizing assembly to continuously atomize the smoke to produce smoke.
  • the method further includes: referring to FIG.
  • S401 The user presses the button module according to the set number of times within the set time interval, when the button is pressed After the number of times the setting is pressed, the microcontroller controls the electronic cigarette to stop working;
  • S402 The user presses the button module according to the set number of times in the set time interval, when the button is pressed After the number of times the setting is pressed, the microcontroller controls the electronic cigarette to resume normal operation.
  • the method further includes: referring to FIG.
  • S501 The user keeps pressing the button module for a set period of time, and the microcontroller controls the electronic The smoke stopped working;
  • S502 The user keeps pressing the button module for a set period of time, and the microcontroller controls the electronic cigarette. Resume normal work.
  • the sub-smoke prevents the electronic cigarette from malfunctioning, or accidentally touches the button module while carrying, and causes the electronic cigarette to work. Causes damage to the electronic cigarette.

Abstract

一种按键和气流感应可以同时控制雾化组件工作的电子烟及其雾化方法。该电子烟包括按键模块(11)和气流传感模块(12)。用户可直接抽烟并由气流传感模块(12)触发雾化组件(14)雾化烟液产生烟雾,也可按动按键模块(11)抽烟。通过按键模块与气流传感模块结合,用户可先按动按键模块,使雾化组件进入加热状态,使气流通道经过加热,用户再吸电子烟不仅能够产生大量的烟雾,而且在环境温度较低时,也可避免因气流通道内被较多的冷空气占据而吸入较多冷空气并使整体烟雾量较小及烟雾较稀薄,造成用户口腔不适的缺陷。

Description

一种电子烟及雾化方法 技术领域
本发明涉及电子烟领域,尤其涉及一种按键和气流感应可以同时控制雾化 组件工作的电子烟及其雾化方法。
背景技术
目前现有技术中的电子烟,一般通过气流传感器感应电子烟内部气压变化 来启动雾化器雾化烟液产生烟雾;还有一种方式是用户通过触动电子烟的按键 启动雾化器雾化烟液产生烟雾。
目前的电子烟气流启动和按键启动,只有单一形式启动雾化器雾化烟液。 而在气流启动的电子烟,当有气流流过时才开始启动加热,而电子烟内部气流 通道内的气体在用户吸烟时便直接进入用户的口腔内,而因温度较低的空气进 入用户口腔造成不适,且开始吸烟时因气流通道内被较多的空气占据而使整体 烟雾量较小及烟雾较稀薄,无法实现按键的提前加热再抽烟的口感和烟雾量, 仿真烟效果及用户体验差。而按键启动加热的电子烟,因用户在双手进行使用 电脑或开车等工作环境中时此类电子烟不便于使用,这两种启动方式都存在缺 陷。
发明内容
基于上述技术问题,本发明提供了一种按键和气流感应可以切换的电子 烟,包括:电子烟本体;
所述电子烟本体内部设置有气流传感模块、雾化组件、按键模块、电池组 件、计时模块以及用于接收所述气流传感模块、所述按键模块和所述计时模块 发出的脉冲信号,并根据所述气流传感模块、所述按键模块和计时模块发出的 脉冲信号,向所述电子烟本体内部元件发出控制信号的微控制器;
所述气流传感模块与所述微控制器电连接,且用于根据检测电子烟本体内 气压变化向所述微控制器发送脉冲信号;
所述按键模块与所述微控制器电连接,用于根据用户的按动向所述微控制 器发送脉冲信号,使所述雾化组件进行预热,且当用户在吸电子烟时,能够增 加烟雾量;
所述按键模块还用于用户在设定的时间间隔内按照设定的次数按动所述 按键模块或用户在设定的时长内持续按住所述按键模块不动,所述按键模块向 所述微控制器发出脉冲信号,所述微控制器根据所述脉冲信号,使所述电子烟 停止工作,且当用户在设定的时间间隔内按照设定的次数按动所述按键模块或 用户在设定的时长内持续按住所述按键模块不动,所述按键模块向所述微控制 器发出脉冲信号,所述微控制器根据所述脉冲信号,使所述电子烟恢复正常可 以工作;
所述雾化组件与所述微控制器电连接,且用于接收所述微控制器发出的控 制信号雾化烟液产生烟雾;
所述计时模块与所述微控制器电连接,用于当用户按动所述按键模块使所 述雾化组件在所述微控制器控制下进行预热,并由所述计时模块计时,用户在 设定时间内未吸电子烟,所述计时模块向所述微控制器发出脉冲信号,所述微 控制器根据计时模块发出的脉冲信号,控制所述雾化组件停止预热,防止所述 雾化组件过烧;
所述电池组件用于给所述微控制器、所述气流传感模块、所述雾化组件以 及所述电子烟内部元件提供电能。
优选的,所述气流传感模块为气流感应器,或集成式咪头开关。
优选的,所述雾化组件设置有发热组件;
所述电子烟本体内部还设置有开关控制管;
所述开关控制管分别与所述微控制器和所述发热组件电连接,用于所述开 关控制管根据所述微控制器控制而导通,使所述电池组件给予所述发热组件供 电,来雾化烟液产生烟雾。
优选的,所述电子烟本体内部还设置有电池保护模块;
所述电池保护模块设置有充电保护单元和供电保护单元;
所述充电保护单元用于检测所述电池杆组件充电电压和充电电流,且当充 电电压过高或/和充电电流过大时,断开充电回路;
所述供电保护单元用于所述电池杆组件在给所述电子烟本体内部元件供 电中,当电路中电压过高或/和电流过大时,断开供电回路。
优选的,所述供电保护单元包括两个场效应管,且两个场效应管漏极电连 通。
优选的,所述电子烟本体内部还设置有显示装置;
所述显示装置与所述微控制器电连接,且用于显示电子烟工作状态。
优选的,所述电子烟本体内部还设置有升压模块;
所述升压模块分别与所述微控制器、所述电池组件和所述雾化组件电连 接,用于提高所述电池组件提供给所述雾化组件的电压,使所述雾化组件能够 快速加热烟液产生烟雾。
优选的,所述电子烟本体内部还设置有稳压模块;
所述稳压模块分别与所述微控制器和所述电池组件电连接,且用于使所述 电池组件能够给所述微控制器提供稳定的电压。
优选的,所述稳压模块设置有二极管、稳压器;
所述二极管与所述稳压器串联;
所述二极管阳极与所述电池杆供电端电连接,所述二极管阴极与所述稳压 器输入端电连接,且用于所述二极管防止电流方向导通。
一种电子烟的雾化方法,包括:
按动按键模块,按键模块向微控制器发出第一脉冲信号;
微控制器根据按键模块发出的第一脉冲信号,控制雾化组件雾化烟油产生 烟雾;
用户吸电子烟,气流传感模块感应电子烟本体内部气压变化,并向微控制 器发出第二脉冲信号;
微控制器根据气流传感模块发出的第二脉冲信号,控制雾化组件持续雾化 烟油产生烟雾。
优选的,微控制器根据按键模块发出的第一脉冲信号,控制计时模块开始 计时;
在设定的时间内,用户未吸电子烟,计时模块向微控制器发出第四脉冲信 号;
微控制器根据第四脉冲信号,控制雾化组件停止雾化。
优选的,用户再吸电子烟,气流传感模块感应电子烟本体内部气压变化, 并向微控制器发出第二脉冲信号;
微控制器根据气流传感模块发出的第二脉冲信号,控制雾化组件持续雾化 烟油产生烟雾。
优选的,用户在设定的时间间隔内按照设定的次数按动按键模块,当按动 次数不少于设定按动的次数后,微控制器控制电子烟停止工作;
用户在设定的时间间隔内按照设定的次数按动按键模块,当按动次数不少 于设定按动的次数后,微控制器控制电子烟恢复正常工作。
优选的,用户在设定的时长内持续按住按键模块不动,微控制器控制电 子烟停止工作;
用户在设定的时长内持续按住按键模块不动,微控制器控制电子烟恢复正 常工作。
从以上技术方案可以看出,本发明具有以下优点:
在本发明中,将按键模块与气流传感模块集合在一个电子烟中,其中,用 户可以直接抽烟并由气流传感模块触发雾化组件雾化烟液产生烟雾,也可以按 动按键模块抽烟,即由按键模块触发雾化组件雾化烟液产生烟雾,给用户带来 了使用上的便利,如在开车时可以直接抽烟,不需手按,而平时可以采用手按 动按键模块抽烟。
通过按键模块与气流传感模块二者结合,用户可以先按动按键模块,雾化 组件进入加热状态,使气流通道经过加热,用户再吸电子烟不仅能够产生大量 的烟雾,而且在环境温度较低的情况下,用户吸搁置时间长的电子烟时,还可 以避免因气流通道内被较多的冷空气占据而吸入较多冷空气并使整体烟雾量 较小及烟雾较稀薄,造成用户口腔造成不适,且无法实现抽烟的口感和烟雾量, 仿真烟效果及用户体验差。
先按动按键模块,雾化组件进行预热再抽烟,用户不需要用像抽只有单一 气流传感模块电子烟的吸气量,使用户不需要太大吸气量。因为按动按键模块, 雾化组件已经进行预热,开始雾化烟液产生烟雾,用户再抽烟,只要稍稍吸一 小口气就能产生大量烟雾,这样带来很好的吸烟效果,给用户带来很好的吸烟 体验。
在电子烟本体上设置计时模块,用户在设定时间内未吸电子烟,所述微控 制器根据计时模块发出的脉冲信号,控制所述雾化组件停止预热,防止所述雾 化组件过烧,有效的保护电子烟损坏。
按键模块还用于用户在设定的时间间隔内按照设定的次数按动所述按键 模块或用户在设定的时长内持续按住所述按键模块不动,所述按键模块向所述 微控制器发出脉冲信号,所述微控制器使所述电子烟停止工作,且当用户在设 定的时间间隔内按照设定的次数按动所述按键模块或用户在设定的时长内持 续按住所述按键模块不动,所述按键模块向所述微控制器发出脉冲信号,所述 微控制器根据所述脉冲信号,使所述电子烟恢复正常可以工作。这样可以通过 按键模块来控制电子烟。这样用户在不吸烟时,可以关闭电子烟,防止电子烟 误动作,或在携带时误碰到按键模块,而导致电子烟工作,造成电子烟的损坏。
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为本发明提供电子烟的整体示意图;
图2为本发明提供电子烟的一个实施例的电路图;
图3为本发明提供电子烟的一个实施例的稳压电路图;
图4为本发明提供电子烟的两个场效应管等效电路图;
图5为本发明提供雾化方法的整体流程图;
图6为本发明提供雾化方法的一个实施例的流程图;
图7为本发明提供雾化方法的另一个实施例的流程图;
图8为本发明提供雾化方法的另一个实施例的流程图;
图9为本发明提供雾化方法的另一个实施例的流程图。
附图标记说明:11按钮模块,12气流感应模块,13微控制器,14雾化组 件,15电池组件,16计时模块,21开关控制管,22充电保护单元,23供电 保护单元,24显示装置,31电热丝,32按钮开关,33气流感应器,41稳压 器,42二极管。
具体实施方式
本发明提供了一种按键和气流感应可以切换的电子烟,请参阅图1所示, 包括:电子烟本体;所述电子烟本体内部设置有气流传感模块12、雾化组件 14、按键模块11、电池组件15、计时模块16以及用于接收所述气流传感模块 12、所述按键模块11和所述计时模块16发出的脉冲信号,并根据所述气流传 感模块12、所述按键模块11和计时模块16发出的脉冲信号,向所述电子烟 本体内部元件发出控制信号的微控制器13;
所述气流传感模块12与所述微控制器13电连接,且用于根据检测电子烟 本体内气压变化向所述微控制器13发送脉冲信号;所述按键模块11与所述微 控制器13电连接,用于根据用户的按动向所述微控制器13发送脉冲信号,使 所述雾化组件14进行预热,且当用户在吸电子烟时,能够增加烟雾量;
所述按键模块11还用于用户在设定的时间间隔内按照设定的次数按动所 述按键模块11或用户在设定的时长内持续按住所述按键模块11不动,所述按 键模块11向所述微控制器13发出脉冲信号,所述微控制器13根据所述脉冲 信号,使所述电子烟停止工作,且当用户在设定的时间间隔内按照设定的次数 按动所述按键模块11或用户在设定的时长内持续按住所述按键模块11不动, 所述按键模块11向所述微控制器13发出脉冲信号,所述微控制器13根据所 述脉冲信号,使所述电子烟恢复正常可以工作;
所述雾化组件14与所述微控制器13电连接,且用于接收所述微控制器 13发出的控制信号雾化烟液产生烟雾;
所述计时模块16与所述微控制器13电连接,用于当用户按动所述按键模 块11使所述雾化组件14在所述微控制器13控制下进行预热,并由所述计时 模块16计时,用户在设定时间内未吸电子烟,所述计时模块16向所述微控制 器13发出脉冲信号,所述微控制器13根据计时模块16发出的脉冲信号,控 制所述雾化组件14停止预热,防止所述雾化组件14过烧;
所述电池组件15用于给所述微控制器13、所述气流传感模块12、所述雾 化组件14以及所述电子烟内部元件提供电能。
具体的,将按键模块11与气流传感模块12集合在一个电子烟中,其中, 用户可以直接抽烟并由气流传感模块12触发雾化组件14雾化烟液产生烟雾, 也可以按动按键模块11抽烟,即由按键模块11触发雾化组件14雾化烟液产 生烟雾,给用户带来了使用上的便利,如在开车时可以直接抽烟,不需手按, 而平时可以采用手按动按键模块11抽烟。
通过按键模块11与气流传感模块12二者结合,用户可以先按动按键模块 11,雾化组件14进入加热状态,使气流通道经过加热,用户再吸电子烟不仅 能够产生大量的烟雾,而且还可以避免在环境温度较低的情况下,用户吸搁置 时间较长的电子烟时,因气流通道内被较多的冷空气占据而吸入较多冷空气并 使整体烟雾量较小及烟雾较稀薄,造成用户口腔造成不适,且无法实现抽烟的 口感和烟雾量,仿真烟效果及用户体验差。而且先按动按键模块11,雾化组 件14进行预热再抽烟,用户不需要用像抽只有单一气流传感模块12电子烟的 吸气量,使用户不需要太大吸气量。因为按动按键模块11,雾化组件14已经 进行预热,开始雾化烟液产生烟雾,用户再抽烟,只要稍稍吸一小口烟就能产 生大量烟雾,这样带来很好的吸烟效果,给用户带来很好的吸烟体验。
在电子烟本体上设置计时模块16,用户在设定时间内未吸电子烟,所述 微控制器13根据计时模块16发出的脉冲信号,控制所述雾化组件14停止预 热,防止所述雾化组件14过烧,有效的保护电子烟损坏。
当然计时模块16可以与微控制器13集成为一体,使微控制器可以既控制 电子烟内部的元件,还具有计时功能,即所述计时模块16和微控制器13可以 用单片机等实现,在此不作具体限定。
按键模块11还用于用户在设定的时间间隔内按照设定的次数按动所述按 键模块11或用户在设定的时长内持续按住所述按键模块11不动,所述按键模 块11向所述微控制器13发出脉冲信号,所述微控制器13使所述电子烟停止 工作,且当用户在设定的时间间隔内按照设定的次数按动所述按键模块11或 用户在设定的时长内持续按住所述按键模块11不动,所述按键模块11向所述 微控制器13发出脉冲信号,所述微控制器13根据所述脉冲信号,使所述电子 烟恢复正常可以工作。这样可以通过按键模块11来控制电子烟。这样用户在 不吸烟时,可以关闭电子烟,防止电子烟误动作,或在携带时误碰到按键模块, 而导致电子烟工作,造成电子烟的损坏。
在本发明中,所述气流传感模块12可以采用气流感应器,或集成式咪头 开关,具体采用什么类型的气流传感模块12这里不做限定。
在本发明中,用户在设定的时间间隔内按照设定的次数按动所述按键模块 11或用户在设定的时长内持续按住所述按键模块11不动,具体的按动次数或 按住不动的时长,可以在电子烟出厂前设置,具体次数可以为两次,或三次等 等,而时长可以为3秒,5秒等等,具体次数和时长这里不做限定。
为使得本发明的发明目的、特征、优点能够更加的明显和易懂,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,下面所描述的实施例仅仅是本发明一部分实施例,而非全部的实施 例。基于本专利中的实施例,本领域普通技术人员在没有做出创造性劳动前提 下所获得的所有其它实施例,都属于本专利保护的范围。
实施例一,请参阅图2所示,在本实施例中,所述雾化组件14设置有发 热组件;所述发热组件可以为电热丝,或红外线加热装置,或超声波加热装置, 具体的装置这里不做限定。在本实施例中,采用电热丝31。
所述电子烟本体内部还设置有开关控制管21;所述开关控制管21分别与 所述微控制器13和所述电热丝31电连接,用于所述开关控制管21根据所述 微控制器13控制而导通,使所述电池组件15给予电热丝31供电,来雾化烟 液产生烟雾。
在本实施例中,按键模块11为按钮开关32,气流传感模块12采用气流 感应器33来感应电子烟本体内部气压变化。开关控制管21可以采用N沟道 的场效应管,可以采用三极管等等,本实施例采用的是N沟道的场效应管。
在本实施例中,所述电子烟本体内部还设置有显示装置24;所述显示装 置24与所述微控制器13电连接,且用于显示电子烟工作状态。显示装置24 采用LED灯,当然也可以采用LED屏幕等等。
在本实施例中,用户可以先按动按钮开关32是电子烟的电热丝31预热, 开始工作加热烟液,在抽电子烟,气流感应器33感应到电子烟本体内部气压 变化使电热丝31雾化烟液产生烟雾。同时,显示装置24显示电子烟进入工作 状态,如LED灯显示红色表示进入工作状态。
在本实施例中,也可以用户直接抽电子烟气流感应器33感应到电子烟本 体内部气压变化使电热丝31雾化烟液产生烟雾。同时,显示装置24显示电子 烟进入工作状态,如LED灯显示红色表示进入工作状态。具体的抽烟方式这 里不做限定。
在本实施例中,所述电子烟本体内部还设置有电池保护模块;所述电池保 护模块设置有充电保护单元22和供电保护单元23;所述充电保护单元22用 于检测所述电池杆组件15充电电压和充电电流,且当充电电压过高或/和充电 电流过大时,断开充电回路;所述供电保护单元23用于所述电池杆组件15 在给所述电子烟本体内部元件供电中,当电路中电压过高或/和电流过大时, 断开供电回路。
而所述供电保护单元23包括两个场效应管,请参阅图4所示,两个场效 应管漏极电连通。
充电保护单元22可采用S8241电路,作用是通过监视连接在VDD-VSS 间的电池的电压及VM-VSS间的电压差而控制充电和放电。供电保护单元 23可采用DT8205电路,DT8205电路等效两个场效应管。
实施例二:
本实施例中,与实施例一不同之处在于所述微控制器13设置有计数单元; 所述计数单元用于当用户的按动所述按键模块11,或吸烟时气流感应模块12 向微控制器13发送脉冲信号。这时微控制器13中的计数单元可以根据接收脉 冲信号的次数,来统计用户的吸烟口数。这样有利于用户了解自身吸烟的情况。
在本实施例中,电子烟本体设置有显示装置;所述显示装置与所述微控制 器电连接,这里的显示装置可以用来显示用户吸烟的口数。用户通过总口数, 可以了解电池组件所储存的电能可以吸多少口烟。防止电池电量不足,导致用 户无法吸烟。
在本实施例中,计时模块16可以起到保护电子烟本体内部电路作用和还 防止雾化组件14过烧。因为当用户按动按键模块11后,如果长时间未吸烟, 而雾化组件14一直在加热状态,当把雾化组件14内部储存的烟液烧尽后,引 起干烧,容易烧坏雾化组件14,而且容易导致电路短路,烧坏电路元件。所 以采用计时模块16当用户在一段时间内按下按键模块11而未吸烟,微控制器 13可以计时模块记录的时长,停止雾化组件14工作,防止过烧和电路短路。
当然计时单元记录的时长这里可以根据厂家出厂设置,具体时长这里不做 限定。
实施例三:
本实施例采用实施例一和实施例二的同时,还在所述电子烟本体内部设置 升压模块;所述升压模块分别与所述微控制器13、所述电池组件15和所述雾 化组件14电连接,用于提高所述电池组件15提供给所述雾化组件14的电压, 使所述雾化组件14能够快速加热烟液产生烟雾。
可以理解的是,提升雾化组件14的雾化电压,提高加热烟液的功率,使 雾化组件14可以快速加热烟液产生烟雾,且能够产生大量烟雾,提高用户吸 电子烟的感受。
在本实施例中,升压模块可以采用变压器或放大电路等等,具体形式这里 不做限定。
在本实施例中,请参阅图3所示,所述电子烟本体内部还设置有稳压模块;
所述稳压模块分别与所述微控制器13和所述电池组件15电连接,且用于 使所述电池组件15能够给所述微控制器13提供稳定的电压。所述稳压模块设 置有二极管42、稳压器41;所述二极管42与所述稳压器41串联;所述二极 管42阳极与所述电池组件15供电端电连接,所述二极管42阴极与所述稳压 器41输入端电连接,且用于所述二极管42防止电流方向导通。
可以理解的是,由于二极管具有正向导通,反向截止的作用,所以能够防 止电流方向导通。而在稳压电路中稳压器41起到了稳压作用。具体的稳压器 可以采用TLV70430型号的稳压器,具体的型号这里不做限定。
在本发明中,微控制器13可以采用STM32F030F6型,其具体型号这里 不做限定。
在本发明中,还提供一种电子烟的雾化方法,包括:请参阅图5所示,
S101:按动按键模块,按键模块向微控制器发出第一脉冲信号;
S102:微控制器根据按键模块发出的第一脉冲信号,控制雾化组件雾化烟 油产生烟雾;
S103:用户吸电子烟,气流传感模块感应电子烟本体内部气压变化,并向 微控制器发出第二脉冲信号;
S104:微控制器根据气流传感模块发出的第二脉冲信号,控制雾化组件持 续雾化烟油产生烟雾。
由此可以看出,将按键模块与气流传感模块集合在一个电子烟中,其中, 用户可以直接抽烟并由气流传感模块触发雾化组件雾化烟液产生烟雾,也可以 按动按键模块抽烟,即由按键模块触发雾化组件雾化烟液产生烟雾,给用户带 来了使用上的便利,如在开车时可以直接抽烟,不需手按,平时可以采用手按 按键模块抽烟。而且通过按键模块与气流传感模块二者结合,用户可以先按动 按键模块,雾化组件进行预热,进入加热状态,再吸电子烟这时能够产生大量 的烟雾,可以提高用户吸电子烟的感受。而且先按动按键模块,雾化组件进行 预热再抽烟,用户不需要用像抽只有单一气流传感模块电子烟的吸气量,使用 户不需要太大吸气量。因为按动按键模块,雾化组件已经进行预热,开始雾化 烟液产生烟雾,用户再抽烟,只要稍稍吸一小口烟就能产生大量烟雾,这样带 来很好的吸烟效果,给用户带来很好的吸烟体验。
在本发明所述的电子烟的雾化方法中,微控制器根据按键模块发出的第一 脉冲信号,控制雾化组件雾化烟油产生烟雾之后还包括:请参阅图6所示,
S201:微控制器根据按键模块发出的第一脉冲信号,控制计时模块开始计 时;
S202:在设定的时间内,用户未吸电子烟,计时模块向微控制器发出第四 脉冲信号;
S203:微控制器根据第四脉冲信号,控制雾化组件停止雾化。
在电子烟本体上设置计时模块,用户在设定时间内未吸电子烟,所述微控 制器根据计时模块发出的脉冲信号,控制所述雾化组件停止预热,防止所述雾 化组件过烧,有效的保护电子烟损坏。
在本发明所述的电子烟的雾化方法中,还包括:请参阅图7所示,
S301:用户再吸电子烟,气流传感模块感应电子烟本体内部气压变化,并 向微控制器发出第二脉冲信号;
S302:微控制器根据气流传感模块发出的第二脉冲信号,控制雾化组件持 续雾化烟油产生烟雾。
可以理解的是,用户吸电子烟时,先按动了按键模块,之后每次吸电子烟, 无需再次按动,每次吸电子烟是由气流传感模块感应电子烟本体内部气压变化 来向微控制器发出信号,使微控制器控制雾化组件持续雾化烟油产生烟雾。
在本发明所述的电子烟的雾化方法中,还包括:请参阅图8所示,
S401:用户在设定的时间间隔内按照设定的次数按动按键模块,当按动次 数不少于设定按动的次数后,微控制器控制电子烟停止工作;
S402:用户在设定的时间间隔内按照设定的次数按动按键模块,当按动次 数不少于设定按动的次数后,微控制器控制电子烟恢复正常工作。
在本发明所述的电子烟的雾化方法中,还包括:请参阅图9所示,
S501:用户在设定的时长内持续按住按键模块不动,微控制器控制电子 烟停止工作;
S502:用户在设定的时长内持续按住按键模块不动,微控制器控制电子烟 恢复正常工作。
这样可以通过按键模块来控制电子烟。这样用户在不吸烟时,可以关闭电 子烟,防止电子烟误动作,或在携带时误碰到按键模块,而导致电子烟工作, 造成电子烟的损坏。
本说明书中各个实施例采用递进的方式描述,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 发明。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发明的精神或范围的情况下,在 其它实施例中实现。因此,本发明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 (14)

  1. 一种电子烟,其特征在于,包括:电子烟本体;
    所述电子烟本体内部设置有气流传感模块、雾化组件、按键模块、电池组 件、计时模块以及用于接收所述气流传感模块、所述按键模块和所述计时模块 发出的脉冲信号,并根据所述气流传感模块、所述按键模块和计时模块发出的 脉冲信号,向所述电子烟本体内部元件发出控制信号的微控制器;
    所述气流传感模块与所述微控制器电连接,且用于根据检测电子烟本体内 气压变化向所述微控制器发送脉冲信号;
    所述按键模块与所述微控制器电连接,用于根据用户的按动向所述微控制 器发送脉冲信号,使所述雾化组件进行预热,且当用户在吸电子烟时,能够增 加烟雾量;
    所述按键模块还用于用户在设定的时间间隔内按照设定的次数按动所述 按键模块或用户在设定的时长内持续按住所述按键模块不动,所述按键模块向 所述微控制器发出脉冲信号,所述微控制器根据所述脉冲信号,使所述电子烟 停止工作,且当用户在设定的时间间隔内按照设定的次数按动所述按键模块或 用户在设定的时长内持续按住所述按键模块不动,所述按键模块向所述微控制 器发出脉冲信号,所述微控制器根据所述脉冲信号,使所述电子烟恢复正常可 以工作;
    所述雾化组件与所述微控制器电连接,且用于接收所述微控制器发出的控 制信号雾化烟液产生烟雾;
    所述计时模块与所述微控制器电连接,用于当用户按动所述按键模块使所 述雾化组件在所述微控制器控制下进行预热,并由所述计时模块计时,用户在 设定时间内未吸电子烟,所述计时模块向所述微控制器发出脉冲信号,所述微 控制器根据计时模块发出的脉冲信号,控制所述雾化组件停止预热,防止所述 雾化组件过烧;
    所述电池组件用于给所述微控制器、所述气流传感模块、所述雾化组件以 及所述电子烟内部元件提供电能。
  2. 根据权利要求1所述的电子烟,其特征在于,
    所述气流传感模块为气流感应器,或集成式咪头开关。
  3. 根据权利要求1所述的电子烟,其特征在于,
    所述雾化组件设置有发热组件;
    所述电子烟本体内部还设置有开关控制管;
    所述开关控制管分别与所述微控制器和所述发热组件电连接,用于所述开 关控制管根据所述微控制器控制而导通,使所述电池组件给予所述发热组件供 电,来雾化烟液产生烟雾。
  4. 根据权利要求3所述的电子烟,其特征在于,
    所述电子烟本体内部还设置有电池保护模块;
    所述电池保护模块设置有充电保护单元和供电保护单元;
    所述充电保护单元用于检测所述电池杆组件充电电压和充电电流,且当充 电电压过高或/和充电电流过大时,断开充电回路;
    所述供电保护单元用于所述电池杆组件在给所述电子烟本体内部元件供 电中,当电路中电压过高或/和电流过大时,断开供电回路。
  5. 根据权利要求4所述的电子烟,其特征在于,
    所述供电保护单元包括两个场效应管,且两个场效应管漏极电连通。
  6. 根据权利要求1所述的电子烟,其特征在于,
    所述电子烟本体内部还设置有显示装置;
    所述显示装置与所述微控制器电连接,且用于显示电子烟工作状态。
  7. 根据权利要求1所述的电子烟,其特征在于,
    所述电子烟本体内部还设置有升压模块;
    所述升压模块分别与所述微控制器、所述电池组件和所述雾化组件电连 接,用于提高所述电池组件提供给所述雾化组件的电压,使所述雾化组件能够 快速加热烟液产生烟雾。
  8. 根据权利要求1所述的电子烟,其特征在于,
    所述电子烟本体内部还设置有稳压模块;
    所述稳压模块分别与所述微控制器和所述电池组件电连接,且用于使所述 电池组件能够给所述微控制器提供稳定的电压。
  9. 根据权利要求8所述的电子烟,其特征在于,
    所述稳压模块设置有二极管、稳压器;
    所述二极管与所述稳压器串联;
    所述二极管阳极与所述电池杆供电端电连接,所述二极管阴极与所述稳压 器输入端电连接,且用于所述二极管防止电流方向导通。
  10. 一种电子烟的雾化方法,其特征在于,包括:
    按动按键模块,按键模块向微控制器发出第一脉冲信号;
    微控制器根据按键模块发出的第一脉冲信号,控制雾化组件雾化烟油产生 烟雾;
    用户吸电子烟,气流传感模块感应电子烟本体内部气压变化,并向微控制 器发出第二脉冲信号;
    微控制器根据气流传感模块发出的第二脉冲信号,控制雾化组件持续雾化 烟油产生烟雾。
  11. 根据权利要求10所述的电子烟的雾化方法,其特征在于,微控制器 根据按键模块发出的第一脉冲信号,控制雾化组件雾化烟油产生烟雾之后还包 括:
    微控制器根据按键模块发出的第一脉冲信号,控制计时模块开始计时;
    在设定的时间内,用户未吸电子烟,计时模块向微控制器发出第四脉冲信 号;
    微控制器根据第四脉冲信号,控制雾化组件停止雾化。
  12. 根据权利要求10所述的电子烟的雾化方法,其特征在于,还包括:
    用户再吸电子烟,气流传感模块感应电子烟本体内部气压变化,并向微控 制器发出第二脉冲信号;
    微控制器根据气流传感模块发出的第二脉冲信号,控制雾化组件持续雾化 烟油产生烟雾。
  13. 根据权利要求10所述的电子烟的雾化方法,其特征在于,还包括:
    用户在设定的时间间隔内按照设定的次数按动按键模块,当按动次数不少 于设定按动的次数后,微控制器控制电子烟停止工作;
    用户在设定的时间间隔内按照设定的次数按动按键模块,当按动次数不少 于设定按动的次数后,微控制器控制电子烟恢复正常工作。
  14. 根据权利要求10所述的电子烟的雾化方法,其特征在于,还包括:
    用户在设定的时长内持续按住按键模块不动,微控制器控制电子烟停止 工作;
    用户在设定的时长内持续按住按键模块不动,微控制器控制电子烟恢复正 常工作。
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