WO2015149647A1 - 电子烟和电子烟雾化控制方法 - Google Patents

电子烟和电子烟雾化控制方法 Download PDF

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Publication number
WO2015149647A1
WO2015149647A1 PCT/CN2015/075101 CN2015075101W WO2015149647A1 WO 2015149647 A1 WO2015149647 A1 WO 2015149647A1 CN 2015075101 W CN2015075101 W CN 2015075101W WO 2015149647 A1 WO2015149647 A1 WO 2015149647A1
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WO
WIPO (PCT)
Prior art keywords
electronic cigarette
signal
atomizing
oil storage
atomization
Prior art date
Application number
PCT/CN2015/075101
Other languages
English (en)
French (fr)
Inventor
刘秋明
Original Assignee
吉瑞高新科技股份有限公司
刘秋明
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, 刘秋明 filed Critical 吉瑞高新科技股份有限公司
Priority to EP15773823.8A priority Critical patent/EP3127442A4/en
Publication of WO2015149647A1 publication Critical patent/WO2015149647A1/zh
Priority to US15/346,421 priority patent/US9756878B2/en

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    • 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
    • A24F40/30Devices using two or more structurally separated inhalable precursors, e.g. using two liquid precursors in two cartridges
    • 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
    • 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
    • GPHYSICS
    • G10MUSICAL INSTRUMENTS; ACOUSTICS
    • G10LSPEECH ANALYSIS OR SYNTHESIS; SPEECH RECOGNITION; SPEECH OR VOICE PROCESSING; SPEECH OR AUDIO CODING OR DECODING
    • G10L15/00Speech recognition
    • G10L15/22Procedures used during a speech recognition process, e.g. man-machine dialogue
    • 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
    • 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 invention relates to the field of electronic cigarette technology, and in particular to an electronic cigarette and electronic aerosolization control method.
  • E-cigarettes are a new type of electronic product that has the same appearance as ordinary cigarettes and the same taste as cigarettes, but e-cigarettes are healthier and more environmentally friendly than traditional cigarettes.
  • E-cigarettes control the amount of smoke output and working conditions through high-tech silicon chips and sensors. The smoke is atomized and the solution containing nicotine and essence is atomized into particles. E-cigarettes do not contain tar and other harmful components in ordinary cigarettes, nor do they produce second-hand smoke.
  • the user can only smoke one type of liquid smoke, and if it wants to smoke other flavors, it is necessary to carry a plurality of electronic cigarettes of different tastes.
  • the invention provides an electronic cigarette and electronic aerosolization control method, which enables a user to select different flavors of smoke liquid in an electronic cigarette by using voice.
  • the invention discloses an electronic cigarette, comprising:
  • the electronic cigarette body is provided with a smoking end, a voice recognition module and an atomization module for generating different selection signals according to the received voice, and the different selection signals include a first selection signal or a second selection signal, and the atomization
  • the module includes at least a first atomizing component and a second atomizing component, wherein the first atomizing component and the second atomizing component are respectively provided with a first oil storage space and a second oil storage body loaded with different liquid smokes space;
  • a micro controller connected to the voice recognition module, configured to communicate with the first atomization component according to the first selection signal, or communicate with the second atomization component according to the second selection signal;
  • the electronic cigarette body is further provided with an air flow sensor connected to the microcontroller for generating a first pulse signal, and for the micro controller, the first atomizing component and the second fog Group Piece of powered battery module;
  • the microcontroller is further configured to generate a first control signal according to the first pulse signal, and an atomization component connected to the microcontroller is configured to atomize a corresponding oil storage space according to the first control signal Smoke liquid.
  • the voice recognition module is further configured to generate a third selection signal according to the received voice
  • the microcontroller is further configured to simultaneously communicate with the first atomizing component and the second atomizing component according to the third selection signal.
  • the first atomizing assembly further includes a first heating wire assembly for atomizing the liquid smoke in the first oil storage space;
  • the first atomizing assembly further includes a second heating wire assembly for atomizing the liquid smoke in the second oil storage space;
  • Two ends of the first oil storage space are respectively adjacent to both ends of the second oil storage space, so that the first oil storage space and the second oil storage space are arranged side by side in parallel in the electronic cigarette body. .
  • the first atomizing component further includes:
  • a first atomizer holder a first thread segment is disposed adjacent to one end of the battery module, and a first matching thread is disposed at an end of the battery module adjacent to the first atomizer bracket.
  • the first atomizer and the battery module are detachably connected by cooperation of the first thread segment and the first matching thread;
  • the first oil storage space is disposed on the first atomizer bracket
  • the second atomizing component further includes:
  • a second atomizer holder a second threaded section is disposed adjacent to one end of the battery module, and a second matching thread is further disposed at an end of the battery module adjacent to the second atomizer bracket
  • the second atomizer and the battery module are detachably connected by cooperation of the second thread segment and the second matching thread;
  • the second oil storage space is disposed on the second atomizer bracket.
  • the voice recognition module includes a voice receiver and a voice recognition unit
  • the voice receiver is configured to receive a voice signal and convert the received voice signal into an electrical signal
  • the voice recognition unit is configured to generate a corresponding first selection signal or the selection second signal according to the electrical signal, and send the selection first signal or the second selection signal to the microcontroller.
  • the battery module further includes:
  • a micro-touch switch for generating an activation signal according to the operation instruction
  • micro-touch switch is coupled to the voice receiver such that the voice receiver accepts a voice signal according to the activation signal.
  • the electronic cigarette body is further provided with a low voltage protection module
  • the outer surface of the electronic cigarette is further provided with a first reminding device connected to the low-voltage protection module;
  • the low voltage protection module is configured to control an operating state of the first reminding device.
  • An overcurrent protection module is further disposed in the electronic cigarette body
  • the outer surface of the electronic cigarette is further provided with a second reminding device connected to the overcurrent protection module;
  • the overcurrent protection module is configured to control an operating state of the second reminding device.
  • the invention also discloses an electronic aerosolization control method, comprising:
  • the electronic cigarette is provided with at least two atomizing components, wherein different atomizing components are respectively provided with different oil storage spaces, wherein different oil storage spaces are loaded with different smoke liquids;
  • the electronic cigarette acquires a voice signal
  • the electronic cigarette generates different selection signals according to the voice signal, wherein the different selection signals correspond to the different atomization components;
  • the electronic cigarette selects a corresponding atomizing component according to the generated selection signal
  • the electronic cigarette controls the selected atomizing assembly to operate when an internal pressure change is detected.
  • the electronic cigarette includes a first atomizing component and a second atomizing component
  • the selecting, by the electronic cigarette, the corresponding atomization component according to the generated selection signal specifically includes:
  • the selection signal is the first selection signal, selecting the first atomization component
  • the electrical signal is the second selected electrical signal, selecting the second atomizing component
  • the electrical signal is a third selected electrical signal, the first atomizing component and the second atomizing component are simultaneously selected.
  • the electronic cigarette provided by the invention is provided with at least two atomization components, wherein different atomization components are provided with oil storage spaces loaded with different smoke liquids, and the electronic cigarettes are further provided with interconnected voice recognition modules. And a microcontroller, wherein the voice recognition module issues different selection signals according to the received different voices, and the microcontroller selects a corresponding atomization component to work according to the different selection signals, so that the user can
  • the electronic cigarette smokes the smoke liquid of different flavors, avoids the inconvenience caused by the user carrying a plurality of electronic cigarettes or the inconvenience of assembly by using complicated mechanical structures; in addition, the user can use the voice in an electronic cigarette.
  • the choice of different flavors of smoke liquid is convenient and fast, greatly reducing the probability of the smoke liquid leaking to the surface of the electronic cigarette caused by the replacement of the smoke liquid to soil the user or sucking the leaked smoke liquid, thereby improving the user experience.
  • FIG. 1 is a schematic overall structural view of an embodiment of an electronic cigarette provided by the present invention.
  • FIG. 2 is a schematic cross-sectional structural view of the electronic cigarette shown in FIG. 1;
  • FIG. 3 is a schematic structural view of an embodiment of a circuit connection in an electronic cigarette according to the present invention.
  • FIG. 4 is a cross-sectional structural view showing an embodiment of an atomization module in the electronic cigarette shown in FIG. 1;
  • FIG. 5 is a schematic diagram of an embodiment of a voice recognition module in the electronic cigarette shown in FIG. 1;
  • Figure 6 is a flow chart of one embodiment of an electronic aerosolization control method of the present invention.
  • the invention discloses an electronic cigarette, which enables a user to select different flavors of smoke liquid in an electronic cigarette by using voice.
  • FIG. 1 is a schematic diagram of an overall structure of an embodiment of an electronic cigarette according to the present invention.
  • the electronic cigarette 100 includes:
  • the electronic cigarette body is provided with a smoking end 101 through which the user can smoke.
  • An atomization module 102 and a battery module 103 are also disposed in the electronic cigarette body.
  • FIG. 2 is a schematic cross-sectional structural view of the electronic cigarette shown in FIG. 1
  • FIG. 3 is a schematic structural view of an embodiment of a circuit connection in the electronic cigarette according to the present invention.
  • the electronic cigarette body is further provided with a voice recognition module 301 for accepting voice and generating different selection signals according to the received voice, wherein the different selection signals include the first selection. Signal or second selection signal.
  • the atomization module 102 in the electronic cigarette body is provided with at least two atomization components, which are a first atomization component 201 and a second atomization component 203 respectively, wherein the first atomization component 201 is provided with a first storage
  • the oil space 202, the second atomizing assembly 203 is provided with a second oil storage space 204, and the first oil storage space 202 and the second oil storage space 204 are respectively loaded with different liquid smoke.
  • oil storage cotton is disposed in the first oil storage space 202 and the second oil storage space 204, respectively.
  • other oil storage media may be disposed in the first oil storage space 202 and the second oil storage space 204, which are not limited herein.
  • the electronic cigarette body is further provided with a microcontroller 302 connected to the voice recognition module 301. If the voice recognition module 301 generates a first selection signal according to the received voice, the microcontroller 302 is configured to communicate with the first atomization component 201 according to the first selection signal. If the voice recognition module 301 generates a second selection signal according to the received voice, the microcontroller 302 is configured to communicate with the second atomization component 203 according to the second selection signal.
  • the speech recognition module 301 can generate two or more selection signals according to the received speech, wherein the number of selection signals generated is equal to the number of atomization components, and each atomization component is in one-to-one correspondence with each selection signal.
  • the number of selection signals generated by the speech recognition module 301 according to the received speech may be greater than the number of the atomization components, so that the selection signals of the excess portions correspond to at least two atomizations respectively.
  • the microcontroller 302 is configured to communicate with the atomization component corresponding to the selection signal according to the selection signal generated by the speech recognition module 301.
  • the electronic cigarette body is further provided with an air flow sensor 303 connected to the microcontroller 302 for generating a first pulse signal, and the air flow sensor detects a pressure change in a smoke passage in the electronic cigarette body.
  • the airflow sensor 303 is disposed at a position closer to the smoking end, so that the sensitivity of the airflow sensor 303 to sense the user's smoking action is increased, so that the user can use the electronic cigarette more effectively.
  • the battery module 103 is configured to supply power to the microcontroller 302, the airflow sensor 303, the first atomizing component 201, and the second atomizing component 203.
  • the micro control is further configured to receive a first pulse signal generated by the airflow sensor 303, and generate a first control signal according to the first pulse signal. And the atomization component in communication with the micro control controls the atomization of the smoke liquid in the oil storage space disposed in the atomization assembly according to the first control signal.
  • the microcontroller 302 when the voice recognition module 301 generates the first selection signal according to the received voice, the microcontroller 302 is configured to communicate with the first atomization component 201 according to the first selection signal. The microcontroller 302 is also operative to generate a first control signal when the microcontroller 302 receives the first pulse signal from the airflow sensor 303. The first atomizing component 201 communicating with the microcontroller 302 controls the atomization of the smoke liquid in the first oil storage space according to the first control signal.
  • the microcontroller 302 When the voice recognition module 301 generates a second selection signal according to the received voice, the microcontroller 302 is configured to communicate with the second atomizing component 203 according to the second selection signal. The microcontroller 302 is also operative to generate a first control signal when the microcontroller 302 receives the first pulse signal from the airflow sensor 303. The second atomizing component 203 communicating with the microcontroller 302 controls the atomization of the smoke liquid in the second oil storage space according to the first control signal.
  • the voice recognition module 301 can further generate a third selection signal according to the received voice, and the microcontroller 302 is further configured to simultaneously cooperate with the first atomizing component 201 and the second fog according to the third selection signal.
  • the component 203 is in communication.
  • the microcontroller 302 is also operative to generate a first control signal when the microcontroller 302 receives the first pulse signal from the airflow sensor 303.
  • the first atomizing component 201 communicating with the microcontroller 302 controls the atomization of the soot in the first oil storage space according to the first control signal, and the second mist that is also in communication with the microcontroller 302.
  • the component 203 is also based on the first control
  • the signal controls the atomization of the smoke liquid in the second oil storage space, so that the user can suck the mixed smoke generated by the simultaneous atomization of the two different smoke liquids, giving the user a choice of smoke for the third taste.
  • the voice recognition module 301 may not generate the third selection signal. The above are only examples and are not limiting.
  • a smoke passage for circulating the atomized smoke liquid is also formed in the electronic cigarette body, so that the user sucks the smoke liquid flowing through the smoke passage through the smoking end 101.
  • At least two kinds of atomization components are disposed in the body of the electronic cigarette, wherein different atomization components are provided with oil storage spaces loaded with different smoke liquids, and the electronic cigarettes are also connected with each other.
  • a voice recognition module and a microcontroller wherein the voice recognition module issues different selection signals according to different voices received, and the microcontroller selects a corresponding atomization component according to the different selection signals, so that the user
  • the ability to smoke different flavors of smoke on an electronic cigarette avoids the inconvenience caused by the user having to carry multiple electronic cigarettes.
  • the user can use voice to select different flavors of smoke in an electronic cigarette, and the selection method is convenient. Fast and improved user experience.
  • each atomizing component in the atomizing module 102 in the electronic cigarette body has various structural realization modes.
  • a specific structure of the atomization module of the electronic cigarette will be described in detail below with reference to FIG. Please refer to FIG. 4.
  • FIG. 4 is a cross-sectional structural diagram of an embodiment of an atomization module in the electronic cigarette shown in FIG. 1.
  • the atomization module 102 includes:
  • a first atomizing assembly 201 of the first heating wire assembly 401 and a second atomizing assembly 203 further including a second heating wire assembly 403 are also included.
  • the first heating wire assembly 401 of the first atomizing assembly 201 is used to atomize the liquid smoke in the first oil storage space 202.
  • the first oil storage space 202 is surrounded by the hollow first yellow tube 402, and the first yellow tube 402 is opened with a through hole, and the through hole is perpendicular to the first yellow
  • the tube 402 is oriented such that the first heating wire assembly 401 can pass through the through hole and be fixed to the first yellow tube 402; meanwhile, the first heating wire assembly 401 is further inserted into the first storage In the oil space 202, the liquid smoke in the first oil storage space 202 can be atomized.
  • the first oil storage space and the first electric heating wire assembly in the first atomizing assembly may also be disposed by other means, and are not limited to the above description.
  • the structure of the second atomizing assembly 203 is the same as that of the first atomizing assembly 201. Or, in actual use, The structure of the second atomizing component 203 may be different from that of the first atomizing component 201.
  • the second oil storage space 204 and the second heating wire component 403 in the second atomizing component 203 may also adopt other structures. There are no restrictions here.
  • the first oil storage space 202 and the second oil storage space 204 are arranged side by side in parallel in the electronic cigarette body, wherein two ends of the first oil storage space 202 are respectively adjacent to both ends of the second oil storage space 204, so that the first fog
  • the chemical component 201 and the second atomization component 203 are arranged side by side in parallel in the electronic cigarette body, and one end of the two atomizing components is adjacent to the battery module 103.
  • the atomization components in the atomization module 102 adopt the above arrangement manner, which can make the structure of the atomization module 102 compact and reduce the volume of the electronic cigarette body.
  • the first atomizing assembly 201 further includes a first atomizer bracket 404, and the first oil storage space 202 is disposed on the first atomizer bracket 404.
  • a first threaded section 405 for detachable connection with the battery module 103 is disposed at one end of the first atomizer holder 404 adjacent to the battery module 103.
  • the first thread segment 405 is an external thread.
  • one end of the battery module 103 adjacent to the first atomizer holder 404 is provided with a first matching thread, and the first atomizer holder 404 and the battery module 103 pass the first thread segment 405 and
  • the first matching threads are mated for detachable connection.
  • the first matching thread is an internal thread.
  • the first thread segment may also be an internal thread
  • the first matching thread may also be an external thread, which is not limited herein.
  • a first atomizer electrode 406 is fixedly disposed on the first atomizer holder 404 inside the first thread segment 405.
  • the first atomizer electrode 406 is connected to the battery electrode in the battery module 103 such that the microcontroller is in communication with the first atomizing assembly 201.
  • the battery module 103 can supply power to the first atomizing assembly 201.
  • the second atomizing assembly 203 further includes a second atomizer bracket 407, and the first oil storage space 202 is disposed on the second atomizer bracket 407.
  • a second threaded section 408 for detachably connecting with the battery module 103 is disposed at one end of the second atomizer holder 407 adjacent to the battery module 103.
  • the second thread segment 408 is an external thread.
  • a second matching thread is disposed at one end of the battery module 103 adjacent to the second atomizer bracket 407, and the second atomizer bracket 407 and the battery module 103 pass through the second thread segment 408 and The cooperation of the second matching thread can be Disassemble the connection.
  • the second matching thread is an internal thread.
  • the second thread segment may also be an internal thread
  • the second matching thread may also be an external thread, which is not limited herein.
  • a second atomizer electrode 409 is fixedly disposed on the second atomizer holder 407 inside the second thread segment 408.
  • the second atomizer electrode 407 is connected to the battery electrode in the battery module 103 such that the microcontroller 302 is in the second atomizing assembly 203
  • the battery module 103 can supply power to the second atomizing assembly 203 when connected.
  • first atomizing assembly and the second atomizing assembly are detachably connected to the battery module 103 through the threaded segments, respectively, to facilitate the user to replace the atomizing assembly.
  • each atomizing unit and the battery module are illustrated by a threaded connection as an example.
  • other detachable connections such as cards and connections, may also be employed between each atomizing assembly and the battery module.
  • the connection structure on each atomizer holder is not a threaded section but a resilient card and spring.
  • the above is merely an example and is not limiting. Even a non-removable connection manner can be adopted between each atomizing component and the battery module, which is not limited herein.
  • FIG. 5 is a schematic diagram of an embodiment of a speech recognition module 301 in the electronic cigarette shown in FIG. 1.
  • the voice recognition module 301 includes a voice receiver 205 (see FIG. 2) and a voice recognition unit 501.
  • the voice receiver 205 is configured to receive a voice signal and convert the received voice signal into an electrical signal.
  • the voice receiver can be a microphone.
  • the voice receiver 205 can be located at one end of the battery module 103 facing away from the atomizing assembly 102 (please refer to FIG. 2), and is electrically connected to the battery in the battery module 103.
  • the above is only an example of the location of the voice receiver 205, and is not limited.
  • the voice recognition unit 501 is configured to generate a corresponding first selection signal or the selection second signal according to the electrical signal, and send the selected first signal or the second selection signal to the microcontroller 302.
  • the voice recognition unit 501 in the voice recognition module 301 can preset a one-to-one correspondence between each preset electrical signal and each selection signal before leaving the factory.
  • the voice receiver receives the voice signal and converts it to an electrical signal for transmission to the voice recognition unit 501.
  • the speech recognition module 301 determines whether the electrical signal is a preset electrical signal, and if so, generates a selection signal corresponding to the electrical signal, and if not, does not generate a selection signal.
  • the electrical signal corresponding to each selection signal in the voice recognition unit 501 may not be set by the manufacturer, and may also be set by the user himself, which is not limited herein.
  • the electronic cigarette body is further provided with a button for controlling the opening and closing of the voice receiver 205 in the voice recognition module 301.
  • a button for controlling the opening and closing of the voice receiver 205 in the voice recognition module 301.
  • the battery module 103 of the electronic cigarette body is further provided with a button 206 for receiving a user operation command, and the button 206 is connected with a micro-touch switch 207 for generating a start signal according to the operation command.
  • the micro-touch switch 207 is electrically connected to the voice receiver 205 to enable the voice receiver 205 to accept a voice signal according to the activation signal.
  • the voice receiver can always be in a state of receiving a voice signal, which causes frequent misoperations, and can also save battery power in the battery module.
  • the electronic cigarette body is further provided with a low voltage protection module 304 (see FIG. 3), and the outer surface of the electronic cigarette is further provided with the low voltage protection module 304.
  • the first reminder device (not shown) is set.
  • the low voltage protection module 304 is configured to control an operating state of the first reminding device.
  • the first prompting device may be a liquid crystal panel, an LED light or a generator, which is not limited herein.
  • the first prompting device is an LED light
  • the low voltage protection module 304 can control the first prompting device to illuminate or blink at a certain frequency when the battery power of the electronic cigarette is lower than a preset threshold.
  • the electronic cigarette body is further provided with an overcurrent protection module 305 (please refer to FIG. 3); and the external surface of the electronic cigarette is further provided with the overcurrent protection module 305 is connected to the second reminder device (not shown).
  • the overcurrent protection module 305 is configured to control an operating state of the second reminding device.
  • the second prompting device may be a liquid crystal panel, an LED light or a generator, which is not limited herein.
  • the second prompting device is an LED light
  • the overcurrent protection module 305 controls the second prompting device to illuminate or flash at a certain frequency when the electronic cigarette line is short-circuited; When the line of the electronic cigarette is normal, the second prompting device is controlled to be extinguished.
  • an embodiment of the electronic aerosolization control method of the present invention includes:
  • the electronic cigarette acquires a voice signal
  • a voice receiver is disposed on the electronic cigarette, and the voice signal can be accepted.
  • at least two atomizing components are further disposed in the electronic cigarette, wherein different atomizing components are respectively connected with different oil storage spaces, wherein different oil storage spaces are loaded with different smoke liquids.
  • the electronic cigarette generates different selection signals according to the voice signal, where the different selection signals correspond to different atomization components.
  • the electronic cigarette can generate two or more selection signals according to the received voice, wherein the number of selection signals generated is equal to the number of atomization components disposed in the electronic cigarette, and each atomization component is in one-to-one correspondence with each selection signal.
  • the number of selection signals generated by the electronic cigarette according to the received voice is greater than the number of the atomization components disposed in the electronic cigarette, such that the selection signals of the excess portions correspond to the at least two atomization components respectively.
  • not all voice signals allow the electronic cigarette to generate a selection signal.
  • Each preset voice signal corresponding to each selection signal is preset in the electronic cigarette, and only when the voice signal received by the electronic cigarette is consistent with a preset voice signal of each preset voice signal set, the electronic The smoke can generate a corresponding selection signal according to the received speech signal. If not, the electronic cigarette does not generate a selection signal.
  • the preset voice signals corresponding to the respective selection signals in the electronic cigarette may be preset before the electronic cigarette is shipped. Alternatively, it may be set by the user himself, and is not limited herein.
  • the electronic cigarette selects a corresponding atomization component according to the generated selection signal
  • the atomizing component corresponding to each selection signal is preset in the electronic cigarette. It should be noted that, in this embodiment, one selection signal may correspond to one atomizing component, or may correspond to at least two atomizing components. After the electronic cigarette generates a corresponding selection signal according to the received voice signal, the electronic cigarette selects one or at least two atomizing components corresponding to the selection signal according to the generated selection signal, that is, the one or at least The two atomizing components enter a state to be operated.
  • one of the two electrodes of each atomizing component of the electronic cigarette is respectively connected to the battery for power supply, and the other electrode is disconnected from the circuit and is not connected. status.
  • the electronic cigarette When the electronic cigarette generates a selection signal according to the received speech signal, the electronic cigarette connects the electrode of the atomization component corresponding to the selection signal to the circuit to be connected to the circuit, so that the corresponding atomization component is in operation. status.
  • the electronic cigarette comprises a first atomizing component and a second atomizing component; if the selection signal is a first selection signal, the first atomizing component is selected; and if the electrical signal is a second selected electrical signal, Then, the second atomizing component is selected; if the electrical signal is the third selected electrical signal, the first atomizing component and the second atomizing component are simultaneously selected.
  • the selection signal is a first selection signal
  • the first atomizing component is selected
  • the electrical signal is a second selected electrical signal
  • the electronic cigarette controls the selected atomizing component to work when an internal pressure change is detected
  • the internal pressure of the electronic cigarette changes.
  • the electronic cigarette control internal circuit starts to work, that is, controls the selected atomizing component to start working, so that the smoke liquid in the atomizing component starts to be atomized, and is then sucked by the user.

Abstract

一种电子烟(100)和电子烟(100)雾化控制方法,该电子烟(100)包括:吸烟端(101)、用于根据接收到的语音产生不同选择信号的语音识别模块(301)和雾化模块(102),不同选择信号包括第一或第二选择信号,雾化模块(102)包括第一和第二雾化组件(201,203),分别装载不同烟液的第一和第二储油空间(202,204);与语音识别模块(301)连接的微控制器(302),用于根据第一选择信号与第一雾化组件(201)连通,或根据第二选择信号与第二雾化组件(203)连通;还包括用于产生第一脉冲信号的、与微控制器(302)连接的气流感应器(303),和电池模块(103);微控制器(302)还用于根据第一脉冲信号生成第一控制信号,与微控制器(302)连通的雾化组件(201,203)用于根据第一控制信号雾化相应的储油空间(202,204)内的烟液。该电子烟(100)能够让用户采用语音在一个电子烟(100)内选择不同口味的烟液。

Description

电子烟和电子烟雾化控制方法
本申请要求于2014年4月3日提交中国专利局、申请号为201410133757.8、发明名称为“电子烟和电子烟雾化控制方法”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本发明涉及电子烟技术领域,尤其涉及一种电子烟和电子烟雾化控制方法。
背景技术
电子烟是一种新型的电子产品,其与普通的香烟有着相同的外观,以及与香烟相同的味道,但是电子烟相对于传统的香烟更为的健康以及环保。
电子烟是通过高科技硅芯片和感应器控制烟雾输出量以及工作状态,烟雾被雾化,将含有烟碱和香精的溶液雾化成颗粒。电子烟中不含普通香烟中的焦油和其他有害成分,也不会产生二手烟。
现有的电子烟中,但现有的电子烟中,用户只能吸食到一种口味的烟液,若想吸食到其他口味的烟液,需携带多支不同口味的电子烟。
发明内容
本发明提供了一种电子烟和电子烟雾化控制方法,能够让用户采用语音在一个电子烟内选择不同口味的烟液。
本发明公开了一种电子烟,包括:
电子烟本体;
所述电子烟本体设置有吸烟端、用于根据接收到的语音产生不同选择信号的语音识别模块和雾化模块,所述不同选择信号包括第一选择信号或者第二选择信号,所述雾化模块至少包括第一雾化组件和第二雾化组件,所述第一雾化组件内和所述第二雾化组件内分别设置有装载不同烟液的第一储油空间和第二储油空间;
与所述语音识别模块相连接的微控制器,用于根据所述第一选择信号与所述第一雾化组件连通,或根据所述第二选择信号与所述第二雾化组件连通;
所述电子烟本体还设置有用于产生第一脉冲信号的、与所述微控制器相连接的气流感应器,和用于给所述微控制器、所述第一雾化组件以及第二雾化组 件供电的电池模块;
所述微控制器还用于根据所述第一脉冲信号生成第一控制信号,与所述微控制器连通的雾化组件用于根据所述第一控制信号雾化相应的储油空间内的烟液。
本发明所述的电子烟中,其中,
所述语音识别模块还用于根据接收到的语音产生第三选择信号;
所述微控制器还用于根据所述第三选择信号同时与所述第一雾化组件和所述第二雾化组件连通。
本发明所述的电子烟中,其中,
所述第一雾化组件还包括用于雾化所述第一储油空间内的烟液的第一电热丝组件;
所述第一雾化组件还包括用于雾化所述第二储油空间内的烟液的第二电热丝组件;
所述第一储油空间的两端分别和所述第二储油空间的两端相邻,以使所述第一储油空间和第二储油空间平行并排设置在所述电子烟本体内。
本发明所述的电子烟中,其中,
所述第一雾化组件还包括:
第一雾化器支架,所述第一雾化器支架靠近所述电池模块的一端设置第一螺纹段,所述电池模块靠近所述第一雾化器支架的一端设有第一匹配螺纹,所述第一雾化器和所述电池模块通过所述第一螺纹段和所述第一匹配螺纹的配合来可拆卸连接;
所述第一储油空间设于所述第一雾化器支架上;
所述第二雾化组件还包括:
第二雾化器支架,所述第二雾化器支架靠近所述电池模块的一端设置第二螺纹段,所述电池模块靠近所述第二雾化器支架的一端还设有第二匹配螺纹,所述第二雾化器和所述电池模块通过所述第二螺纹段和所述第二匹配螺纹的配合来可拆卸连接;
所述第二储油空间设于所述第二雾化器支架上。
本发明所述的电子烟中,其中,
所述语音识别模块包括语音接收器和语音识别单元;
所述语音接收器用于接收语音信号,并将接收到的语音信号转换为电信号;
所述语音识别单元用于根据所述电信号生成相应的所述第一选择信号或者所述选择第二信号,并将所述选择第一信号或者第二选择信号发送至所述微控制器。
本发明所述的电子烟中,其中,所述电池模块还包括:
用于接收用户操作指令的按键;
与所述按键连接设置有用于根据所述操作指令生成启动信号的微触开关;
且所述微触开关与所述语音接收器连接,以使所述语音接收器根据所述启动信号接受语音信号。
本发明所述的电子烟中,其中,
所述电子烟本体内还设置有低压保护模块;
所述电子烟本体外表面还设有与所述低压保护模块连接设置的第一提醒装置;
所述低压保护模块用于控制所述第一提醒装置的工作状态。
本发明所述的电子烟中,其中,
所述电子烟本体内还设置有过流保护模块;
所述电子烟本体外表面还设有与所述过流保护模块连接设置的第二提醒装置;
所述过流保护模块用于控制所述第二提醒装置的工作状态。
本发明还公开了一种电子烟雾化控制方法,包括:
所述电子烟内设有至少两个雾化组件,其中不同的雾化组件分别设置有不同的储油空间,其中不同储油空间上装载有不同的烟液;
所述电子烟获取语音信号;
所述电子烟根据所述语音信号生成不同的选择信号,其中所述不同的选择信号对应着所述不同的雾化组件;
所述电子烟根据所生成的选择信号选定对应的雾化组件;
所述电子烟当检测到内部压力变化时,控制所述选定的雾化组件工作。
本发明所述的电子烟雾化控制方法,其中,
所述电子烟包括第一雾化组件和第二雾化组件;
所述电子烟根据所生成的选择信号选定对应的雾化组件具体包括:
若所述选择信号为第一选择信号,则选定第一雾化组件;
若所述电信号为第二选择电信号,则选定第二雾化组件;
若所述电信号为第三选择电信号,则同时选定第一雾化组件和第二雾化组件。
从以上技术方案可以看出,本发明实施例具有以下优点:
本发明所提供的电子烟中设有至少两种雾化组件,其中不同的雾化组件中设有装载着不同烟液的储油空间,且该电子烟上还设有相互连接的语音识别模块和微控制器,其中该语音识别模块根据接收到不同的语音来发出不同的选择信号,而该微控制器根据该不同的选择信号来选择相对应的雾化组件工作,这样,用户能够在一支电子烟上吸食到不同口味的烟液,避免了用户需携带多支电子烟而造成的不便或通过使用复杂的机械结构而造成组装不便等问题;另外,用户可以采用语音在一个电子烟内选择不同口味的烟液,选择方式方便快捷,极大地降低了因更换烟液造成的烟液泄露到电子烟表面而弄脏用户或吸食到泄露的烟液的概率,提高了用户体验。
附图说明
图1为本发明所提供的电子烟的一种实施例整体结构示意图;
图2为图1所示电子烟的剖面结构示意图;
图3为本发明所提供的电子烟内的电路连接的一种实施例的结构示意图;
图4为图1所示电子烟中的雾化模块的一个实施例的剖面结构示意图;
图5为图1所示电子烟中的语音识别模块的一个实施例的示意图;
图6为本发明中电子烟雾化控制方法的一个实施例的流程图。
具体实施方式
本发明公开了一种电子烟,能够让用户采用语音在一个电子烟内选择不同口味的烟液。
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。
请参阅图1,图1为本发明所提供的电子烟的一种实施例整体结构示意图。
本实施例中,电子烟100包括:
电子烟本体,且所述电子烟本体设置有吸烟端101,用户通过该吸烟端101即可进行吸烟。
所述电子烟本体内还设置雾化模块102和电池模块103。
请参阅图2和图3,图2为图1所示电子烟的剖面结构示意图,图3为本发明所提供的电子烟内的电路连接的一种实施例的结构示意图。
如图2和图3所示,所述电子烟本体内还设置有语音识别模块301,用于接受语音,并根据接收到的语音产生不同的选择信号,其中该不同的选择信号包括第一选择信号或者第二选择信号。
所述电子烟本体内的雾化模块102内设置有至少两个雾化组件,分别为第一雾化组件201和第二雾化组件203,其中第一雾化组件201内设置有第一储油空间202,第二雾化组件203内设置有第二储油空间204,且第一储油空间202和第二储油空间204分别装载有不同的烟液。具体地,该第一储油空间202内和第二储油空间204内分别设置有储油棉。当然,实际运用中,该第一储油空间202内和第二储油空间204内也可以设置有其他储油介质,在此不作限制。
所述电子烟本体内还设置有与所述语音识别模块301相连接的微控制器302。若所述语音识别模块301根据接收到的语音产生第一选择信号,则所述微控制器302用于根据所述第一选择信号与所述第一雾化组件201连通。若所述语音识别模块301根据接收到的语音产生第二选择信号,则所述微控制器302用于根据所述第二选择信号与所述第二雾化组件203连通。
当然,实际运用中,电子烟本体内可以设置两个以上的雾化组件。相应地,语音识别模块301可以根据接收到的语音产生两个以上的选择信号,其中所产生的选择信号的数量等于雾化组件的数量,且各雾化组件与各选择信号一一对应。或者,还可以是语音识别模块301根据接收到的语音所产生的选择信号的数量大于雾化组件的数量,使得多余部分的选择信号分别对应着至少两个雾化 组件。而微控制器302则用于根据该语音识别模块301所产生的选择信号与该选择信号所对应的雾化组件相连通。
所述电子烟本体内还设置有用于产生第一脉冲信号的、与所述微控制器302相连接的气流感应器303,该气流感应器在检测到电子烟本体内的烟雾通道中的压强变小时,即用户吸烟时会生成脉冲信号。优选地,气流感应器303设置在离吸烟端较近的位置,使得气流感应器303的感应用户吸烟动作的灵敏度提高,以使用户更为有效的使用电子烟。
所述电池模块103用于给所述微控制器302、所述气流感应器303、所述第一雾化组件201以及第二雾化组件203供电。
所述微控制还用于接收气流感应器303产生的第一脉冲信号,并根据该第一脉冲信号生成第一控制信号。而与所述微控制相连通的雾化组件则根据该第一控制信号控制该雾化组件内所设置的储油空间内的烟液雾化。
具体举例来说,当语音识别模块301根据接收到的语音产生第一选择信号时,微控制器302用于根据第一选择信号与第一雾化组件201连通。在微控制器302接收到来自气流感应器303的第一脉冲信号时,所述微控制器302还用于产生第一控制信号。而与所述微控制器302相连通的第一雾化组件201根据该第一控制信号控制第一储油空间内的烟液雾化。
当语音识别模块301根据接收到的语音产生第二选择信号时,微控制器302用于根据第二选择信号与第二雾化组件203连通。在微控制器302接收到来自气流感应器303的第一脉冲信号时,所述微控制器302还用于产生第一控制信号。而与所述微控制器302相连通的第二雾化组件203根据该第一控制信号控制第二储油空间内的烟液雾化。
优选的,语音识别模块301还可以根据接收到的语音产生第三选择信号,而微控制器302还用于根据该第三选择信号同时与所述第一雾化组件201和所述第二雾化组件203连通。在微控制器302接收到来自气流感应器303的第一脉冲信号时,所述微控制器302还用于产生第一控制信号。而与所述微控制器302相连通的第一雾化组件201根据该第一控制信号控制第一储油空间内的烟液雾化,且与所述微控制器302也连通的第二雾化组件203也根据该第一控制 信号控制第二储油空间内的烟液雾化,以使用户能够吸食到由两种不同烟液同时雾化后产生的混合烟雾,给用户第三种口味的烟雾选择。当然,实际运用中,也可以是语音识别模块301不产生第三种选择信号。以上仅为举例,并不作限制。
在该电子烟本体内还形成有用于流通已雾化的烟液的烟雾通道,使得用户通过吸烟端101吸食流经该烟雾通道内的烟液。
本发明实施例中,由于电子烟本体中设有至少两种雾化组件,其中不同的雾化组件中设有装载着不同烟液的储油空间,且该电子烟上还设有相互连接的语音识别模块和微控制器,其中该语音识别模块根据接收到不同的语音来发出不同的选择信号,而该微控制器根据该不同的选择信号来选择相对应的雾化组件工作,这样,用户能够在一支电子烟上吸食到不同口味的烟液,避免了用户需携带多支电子烟而造成的不便;另外,用户可以采用语音在一个电子烟内选择不同口味的烟液,选择方式方便快捷,提高了用户体验。
本发明中,电子烟本体内的雾化模块102中的各雾化组件有多种结构实现方式。下面结合图4对该电子烟的雾化模块的一种具体结构进行详细说明。请参阅图4,图4为图1所示电子烟中的雾化模块的一个实施例的剖面结构示意图。雾化模块102包括:
还包括第一电热丝组件401的第一雾化组件201和还包括第二电热丝组件403的第二雾化组件203。
第一雾化组件201的第一电热丝组件401用于雾化所述第一储油空间202内的烟液。具体地,本实施例中,第一储油空间202环绕在中空的第一黄纳管402上,且第一黄纳管402上开有通孔,该通孔的走向垂直于第一黄纳管402的走向,以使得第一电热丝组件401能穿过该通孔,与所述第一黄纳管402相互固定;同时,该第一电热丝组件401的两端还分别插入第一储油空间202中,以能够将第一储油空间202内的烟液雾化。当然,实际运用中,第一雾化组件内的第一储油空间和第一电热丝组件也可以通过其他方式设置,并不局限于以上描述。
第二雾化组件203的结构与第一雾化组件201相同。或者,实际运用中, 第二雾化组件203的结构与第一雾化组件201也可以不相同,第二雾化组件203内的第二储油空间204和第二电热丝组件403也可以采用其他结构方式。在此不作限制。
第一储油空间202和第二储油空间204平行并排设置在电子烟本体内,其中第一储油空间202的两端分别和第二储油空间204的两端相邻,使得第一雾化组件201和第二雾化组件203平行并排设置在电子烟本体内,且该两个雾化组件的一端均与电池模块103相邻。
本实施例中,雾化模块102内的各雾化组件采用上述排列方式,能够使得雾化模块102内结构紧凑,减小电子烟本体的体积。
优选地,本实施例中,第一雾化组件201还包括第一雾化器支架404,所述第一储油空间202设于所述第一雾化器支架404上。所述第一雾化器支架404靠近所述电池模块103的一端设置有用于与所述电池模块103可拆卸连接的第一螺纹段405。具体地,该第一螺纹段405为外螺纹。相对应地,电池模块103靠近所述第一雾化器支架404的一端设有第一匹配螺纹,所述第一雾化器支架404和所述电池模块103通过所述第一螺纹段405和所述第一匹配螺纹的配合来可拆卸连接。具体地,该第一匹配螺纹为内螺纹。当然,实际运用中,该第一螺纹段也可以是内螺纹,该第一匹配螺纹也可以是外螺纹,在此不作限制。
进一步地,第一雾化器支架404上还在所述第一螺纹段405内部固定设置有第一雾化器电极406。当第一雾化组件201和电池模块103通过螺纹连接时,该第一雾化器电极406与电池模块103中的电池电极相连接,以使得在微控制器在与第一雾化组件201连通时电池模块103能够为第一雾化组件201供电。
同样地,第二雾化组件203还包括第二雾化器支架407,所述第一储油空间202设于所述第二雾化器支架407上。所述第二雾化器支架407靠近所述电池模块103的一端设置有用于与所述电池模块103可拆卸连接的第二螺纹段408。具体地,该第二螺纹段408为外螺纹。相对应地,电池模块103靠近所述第二雾化器支架407的一端设有第二匹配螺纹,所述第二雾化器支架407和所述电池模块103通过所述第二螺纹段408和所述第二匹配螺纹的配合来可 拆卸连接。具体地,该第二匹配螺纹为内螺纹。当然,实际运用中,该第二螺纹段也可以是内螺纹,该第二匹配螺纹也可以是外螺纹,在此不作限制。
进一步地,第二雾化器支架407上还在所述第二螺纹段408内部固定设置有第二雾化器电极409。当第二雾化组件203和电池模块103通过螺纹连接时,该第二雾化器电极407与电池模块103中的电池电极相连接,以使得在微控制器302在与第二雾化组件203连通时电池模块103能够为第二雾化组件203供电。
这样,第一雾化组件和第二雾化组件分别通过螺纹段与电池模块103可拆卸地连接,以方便用户更换雾化组件。
在上面所描述的各雾化组件中,各雾化组件和所述电池模块之间均通过螺纹连接为例进行说明。实际运用中,各雾化组件和所述电池模块之间也可以采用其他可拆卸的连接方式,例如卡和连接。那么,各个雾化器支架上的连接结构不是螺纹段,而是具有弹性的卡和弹片。当然,上述仅为举例,并不作限制。甚至,各个雾化组件和电池模块之间也可以采用不可拆卸的连接方式,在此不作限制。
本发明中,电子烟本体内的语音识别模块301有多种实现方式。下面结合图5对该电子烟的语音识别模块301的一种具体实现方式进行详细说明。请参阅图5,图5为图1所示电子烟中的语音识别模块301的一个实施例的示意图。
如图5所示,所述语音识别模块301包括语音接收器205(参见图2)和语音识别单元501。
所述语音接收器205用于接收语音信号,并将接收到的语音信号转换为电信号。例如,该语音接收器可以是话筒。当然,上述举例仅为说明,并不作限制。具体地,语音接收器205可位于电池模块103背向雾化组件102的一端(请参阅图2),与电池模块103中的电池电连接。当然,上述仅为语音接收器205的位置举例,并不作限制。
所述语音识别单元501用于根据所述电信号生成相应的所述第一选择信号或者所述选择第二信号,并将所述选择第一信号或者第二选择信号发送至所述微控制器302。
实际运用中,语音识别模块301中的语音识别单元501在出厂前可以预先设置好各预置电信号与各选择信号的一一对应关系。在使用中,当用户说出相应的语音时,语音接收器接收该语音信号并转为电信号发送至语音识别单元501。语音识别模块301判断该电信号是否为预置电信号,若是,则生成与该电信号相对应的选择信号,若不是,则不生成选择信号。
当然,实际运用中,语音识别单元501中与各选择信号所对应的电信号也可以不是由厂家来设定,还可以由用户自己来设定,在此不作限制。
优选地,电子烟本体上还设有用于控制语音识别模块301中语音接收器205的开启和关闭的按键。下面进行详细描述。
请参阅图2,电子烟本体的电池模块103上还设有用于接收用户操作指令的按键206,与所述按键206连接设置有用于根据所述操作指令生成启动信号的微触开关207。且所述微触开关207与所述语音接收器205电连接,以使所述语音接收器205能够根据所述启动信号接受语音信号。
采用该种设置方式可避免语音接收器一直处于接收语音信号的状态而导致经常误操作,同时也能够节省使用电池模块中的电池电量。
在本发明的电子烟中,优选地,所述电子烟本体内还设置有低压保护模块304(请参见图3),且所述电子烟本体外表面还设有与所述低压保护模块304连接设置的第一提醒装置(图未示)。所述低压保护模块304用于控制所述第一提醒装置的工作状态。所述第一提示装置可以为液晶屏,LED灯或发生器,这里不作限定。具体地,第一提示装置为LED灯,低压保护模块304可在该电子烟的电池电量低于预先设置的阀值时,控制第一提示装置点亮或者以一定频率进行闪烁。
在本发明的电子烟中,优选地,所述电子烟本体内还设置有过流保护模块305(请参见图3);且所述电子烟本体外表面还设有与所述过流保护模块305连接设置的第二提醒装置(图未示)。所述过流保护模块305用于控制所述第二提醒装置的工作状态。所述第二提示装置可以为液晶屏,LED灯或发生器,这里不作限定。具体地,第二提示装置为LED灯,过流保护模块305在该电子烟的线路发生短路时,控制第二提示装置点亮或者以一定频率进行闪烁;在 电子烟的线路正常时,控制该第二提示装置熄灭。
上面对本发明实施例中的电子烟进行了描述,下面对本发明实施例中的电子烟雾化控制方法进行描述。请参阅图6,本发明中电子烟雾化控制方法的一个实施例包括:
601、电子烟获取语音信号;
本实施例中,电子烟上设置有语音接收器,可以接受语音信号。而且,电子烟内还设有至少两个雾化组件,其中不同的雾化组件分别连接设置有不同的储油空间,其中不同储油空间上装载有不同的烟液。
602、电子烟根据所述语音信号生成不同的选择信号,其中所述不同的选择信号对应着不同的雾化组件;
电子烟可以根据接收到的语音产生两个以上的选择信号,其中所产生的选择信号的数量等于电子烟内所设置的雾化组件的数量,且各雾化组件与各选择信号一一对应。或者,还可以是电子烟根据接收到的语音所产生的选择信号的数量大于电子烟内所设置的雾化组件的数量,使得多余部分的选择信号分别对应着至少两个雾化组件。
本实施例中,并不是所有的语音信号都能让电子烟生成选择信号。电子烟内预先设置好与各选择信号相对应的各预置语音信号,只有当电子烟所接受到的语音信号与其所设置好的各预置语音信号中的一个预置语音信号一致时,电子烟才能根据所接受到的语音信号生成相对应的选择信号,若不一致,则电子烟不生成选择信号。
电子烟内与各选择信号相对应的各预置语音信号可以在电子烟出厂前预先设置好。或者,也可以由用户自己来设定,在此不作限制。
603、电子烟根据所生成的选择信号选定对应的雾化组件;
电子烟内预先设置好与各选择信号所对应的雾化组件。值得注意的是,本实施例中,一个选择信号可以对应着一个雾化组件,也可以对应着至少两个雾化组件。当电子烟根据所接受到的语音信号生成对应的选择信号后,电子烟再根据该生成的选择信号选定与该选择信号相对应的一个或者至少两个雾化组件,即使得这一个或者至少两个雾化组件进入待工作的状态。
具体举例来说,在电子烟内的电路中,电子烟的每个雾化组件的两个电极中的一个分别与用于供电的电池相连接,而另一个电极与电路断开,处于未连通的状态。当电子烟根据接受到语音信号生成选择信号时,电子烟将该选择信号所对应的雾化组件的与电路断开的电极连通到电路中去,以使得该对应的雾化组件处于待工作的状态。
优选地,电子烟包括第一雾化组件和第二雾化组件;若所述选择信号为第一选择信号,则选定第一雾化组件;若所述电信号为第二选择电信号,则选定第二雾化组件;若所述电信号为第三选择电信号,则同时选定第一雾化组件和第二雾化组件。这样,电子烟内只设置有两种雾化组件却能让用户吸食到三种口味的烟液。
604、电子烟当检测到内部压力变化时,控制所述选定的雾化组件工作;
当用户开始吸食电子烟时,电子烟的内部压力发生变化。而当电子烟检测到内部压力变化时,电子烟控制内部电路开始工作,即控制所选定的雾化组件开始工作,使得该雾化组件内的烟液开始雾化,进而被用户所吸食。
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 (10)

  1. 一种电子烟,其特征在于,包括:
    电子烟本体;
    所述电子烟本体设置有吸烟端、用于根据接收到的语音产生不同选择信号的语音识别模块和雾化模块,所述不同选择信号包括第一选择信号或者第二选择信号,所述雾化模块至少包括第一雾化组件和第二雾化组件,所述第一雾化组件内和所述第二雾化组件内分别设置有装载不同烟液的第一储油空间和第二储油空间;
    与所述语音识别模块相连接的微控制器,用于根据所述第一选择信号与所述第一雾化组件连通,或根据所述第二选择信号与所述第二雾化组件连通;
    所述电子烟本体还设置有用于产生第一脉冲信号的、与所述微控制器相连接的气流感应器,和用于给所述微控制器、所述第一雾化组件以及第二雾化组件供电的电池模块;
    所述微控制器还用于根据所述第一脉冲信号生成第一控制信号,与所述微控制器连通的雾化组件用于根据所述第一控制信号雾化相应的储油空间内的烟液。
  2. 根据权利要求1所述的电子烟,其特征在于,
    所述语音识别模块还用于根据接收到的语音产生第三选择信号;
    所述微控制器还用于根据所述第三选择信号同时与所述第一雾化组件和所述第二雾化组件连通。
  3. 根据权利要求1所述的电子烟,其特征在于,
    所述第一雾化组件还包括用于雾化所述第一储油空间内的烟液的第一电热丝组件;
    所述第一雾化组件还包括用于雾化所述第二储油空间内的烟液的第二电热丝组件;
    所述第一储油空间的两端分别和所述第二储油空间的两端相邻,以使所述第一储油空间和第二储油空间平行并排设置在所述电子烟本体内。
  4. 根据权利要求3所述的电子烟,其特征在于,
    所述第一雾化组件还包括:
    第一雾化器支架,所述第一雾化器支架靠近所述电池模块的一端设置第一螺纹段,所述电池模块靠近所述第一雾化器支架的一端设有第一匹配螺纹,所述第一雾化器和所述电池模块通过所述第一螺纹段和所述第一匹配螺纹的配合来可拆卸连接;
    所述第一储油空间设于所述第一雾化器支架上;
    所述第二雾化组件还包括:
    第二雾化器支架,所述第二雾化器支架靠近所述电池模块的一端设置第二螺纹段,所述电池模块靠近所述第二雾化器支架的一端还设有第二匹配螺纹,所述第二雾化器和所述电池模块通过所述第二螺纹段和所述第二匹配螺纹的配合来可拆卸连接;
    所述第二储油空间设于所述第二雾化器支架上。
  5. 根据权利要求1所述的电子烟,其特征在于,
    所述语音识别模块包括语音接收器和语音识别单元;
    所述语音接收器用于接收语音信号,并将接收到的语音信号转换为电信号;
    所述语音识别单元用于根据所述电信号生成相应的所述第一选择信号或者所述选择第二信号,并将所述选择第一信号或者第二选择信号发送至所述微控制器。
  6. 根据权利要求5所述的电子烟,其特征在于,所述电池模块还包括:
    用于接收用户操作指令的按键;
    与所述按键连接设置有用于根据所述操作指令生成启动信号的微触开关;
    且所述微触开关与所述语音接收器连接,以使所述语音接收器根据所述启动信号接受语音信号。
  7. 根据权利要求1所述的电子烟,其特征在于,
    所述电子烟本体内还设置有低压保护模块;
    所述电子烟本体外表面还设有与所述低压保护模块连接设置的第一提醒装置;
    所述低压保护模块用于控制所述第一提醒装置的工作状态。
  8. 根据权利要求1所述的电子烟,其特征在于,
    所述电子烟本体内还设置有过流保护模块;
    所述电子烟本体外表面还设有与所述过流保护模块连接设置的第二提醒装置;
    所述过流保护模块用于控制所述第二提醒装置的工作状态。
  9. 一种电子烟雾化控制方法,其特征在于,包括:
    所述电子烟内设有至少两个雾化组件,其中不同的雾化组件分别设置有不同的储油空间,其中不同储油空间上装载有不同的烟液;
    所述电子烟获取语音信号;
    所述电子烟根据所述语音信号生成不同的选择信号,其中所述不同的选择信号对应着所述不同的雾化组件;
    所述电子烟根据所生成的选择信号选定对应的雾化组件;
    所述电子烟当检测到内部压力变化时,控制所述选定的雾化组件工作。
  10. 根据权利要求9所述的电子烟雾化控制方法,其特征在于,
    所述电子烟包括第一雾化组件和第二雾化组件;
    所述电子烟根据所生成的选择信号选定对应的雾化组件具体包括:
    若所述选择信号为第一选择信号,则选定第一雾化组件;
    若所述电信号为第二选择电信号,则选定第二雾化组件;
    若所述电信号为第三选择电信号,则同时选定第一雾化组件和第二雾化组件。
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US20170049155A1 (en) 2017-02-23
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US9756878B2 (en) 2017-09-12
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