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WO2015176210A1 - Cigarette électronique et son procédé de commande - Google Patents

Cigarette électronique et son procédé de commande Download PDF

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Publication number
WO2015176210A1
WO2015176210A1 PCT/CN2014/077797 CN2014077797W WO2015176210A1 WO 2015176210 A1 WO2015176210 A1 WO 2015176210A1 CN 2014077797 W CN2014077797 W CN 2014077797W WO 2015176210 A1 WO2015176210 A1 WO 2015176210A1
Authority
WO
WIPO (PCT)
Prior art keywords
touch
microcontroller
electronic cigarette
voice
module
Prior art date
Legal status (The legal status 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 status listed.)
Ceased
Application number
PCT/CN2014/077797
Other languages
English (en)
Chinese (zh)
Inventor
刘秋明
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Kimree Hi-Tech Inc
Original Assignee
Kimree Hi-Tech Inc
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 Kimree Hi-Tech Inc filed Critical Kimree Hi-Tech Inc
Priority to PCT/CN2014/077797 priority Critical patent/WO2015176210A1/fr
Priority to CN201480000231.0A priority patent/CN105377063A/zh
Publication of WO2015176210A1 publication Critical patent/WO2015176210A1/fr
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • 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
    • A24F40/60Devices with integrated user interfaces
    • 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 present invention relates to the field of electronic cigarettes, and more particularly to an electronic cigarette and a method of controlling the same.
  • Electronic cigarettes also known as virtual cigarettes and electronic cigarettes, are mainly used to quit smoking and replace cigarettes. It has the same appearance as a cigarette, a taste similar to that of a cigarette, and even more than the taste of a typical cigarette. It also absorbs smoke and tastes and feels like a cigarette.
  • E-cigarettes do not contain other harmful components such as tar and aerosols in cigarettes. Therefore, if the user slowly transfers the time of smoking cigarettes to the electronic cigarette, the purpose of quitting smoking is achieved, and the user is kept away from harmful health such as nicotine. substance.
  • the habit of using e-cigarettes and using cigarettes is usually the same, that is, the cigarettes are usually sucked by two fingers.
  • the electronic cigarette is provided with an electronic component such as a battery, and the weight thereof is several times heavier than that of the cigarette made of tobacco. If the electronic cigarette is held by a certain two fingers for smoking for a long time, the finger is easily fatigued.
  • the user experience is poor, which is not conducive to the use of electronic cigarettes and is not conducive to smoking cessation; in addition, the existing electronic cigarettes do not have some entertainment functions, can only be used for smoking, have a single function, can not effectively attract users, and are boring to use, which is not conducive to The promotion of electronic cigarettes has a poor effect on smoking cessation.
  • the technical problem to be solved by the present invention is that the electronic cigarette of the prior art is easy to cause fatigue of the user's fingers and has a poor smoking cessation effect, and provides an electronic cigarette capable of alleviating finger fatigue and a control method thereof.
  • the technical solution adopted by the present invention to solve the technical problem is: constructing an electronic cigarette, comprising an electronic cigarette body, the electronic cigarette body is provided with a microcontroller, a voice module and a touch module, and the surface of the electronic cigarette body has a plurality of a touch area, wherein: the voice module and the touch module are both connected to the microcontroller;
  • the touch module is configured to detect touch signals in different touch regions and convert corresponding touch signals of the different touch regions into corresponding electrical signals and send the signals to the microcontroller;
  • the microcontroller After analyzing the electrical signal sent by the touch module, the microcontroller controls the voice module to emit a voice corresponding to the touch area.
  • the touch module includes a touch sensing chip and a plurality of touch buttons, wherein: each touch area is correspondingly provided with one touch button, and each touch button is respectively connected to a touch input corresponding to the touch sensor chip. a port, an output port of the touch sensing chip is connected to the microcontroller;
  • Each touch button is used to sense a touch action when the user touches the corresponding touch area and send a corresponding touch signal to the touch sensor chip, and the touch sensor chip converts the touch signal into a corresponding first electrical signal and sends the touch signal to the corresponding first electrical signal.
  • the microcontroller ;
  • the microcontroller When receiving the first electrical signal corresponding to different touch regions sent by the touch sensing chip, the microcontroller converts the first electrical signal into a corresponding voice control signal and sends the signal to the voice module; The voice module issues a voice corresponding to the touch area according to the received voice control signal.
  • the microcontroller activates a playing function of the electronic cigarette or a function of playing different music.
  • the voice includes a plurality of scales, and the user may emit a scale corresponding to the touch area by contacting a touch area corresponding to a different touch button; or the voice includes a plurality of music
  • the user touches the touch area corresponding to the different touch buttons, and the voice module plays the music corresponding to the touch area.
  • the electronic cigarette further includes an indication unit connected to the plurality of the micro controllers, each of the indication units corresponding to one touch button, when the user contacts a touch area corresponding to different touch buttons, The microcontroller controls the corresponding indicator unit to work.
  • each indicating unit includes a light emitting diode and a resistor connected in series between the microcontroller and the ground, and the microcontroller controls when a user touches a touch area corresponding to a different touch button. The corresponding LED is lit.
  • the function of playing the electronic cigarette or the function of playing different music is turned off.
  • the model of the touch sensor chip is JG606, and the model of the microcontroller is SN8P2711B.
  • the number of the touch buttons is six, which are respectively K1 to K6, and the six touch buttons K1 to K6 are respectively connected to the KEY5 to KEY0 of the touch sensing chip.
  • Pins, the OUT0 to OUT2 pins of the touch sensing chip are respectively connected to the P4.4 pin, the P4.3 pin and the P0.1 pin of the microcontroller, and the microcontroller a P4.0 pin and a P4.1 pin are connected to the voice module;
  • Each of the touch buttons is used to sense a touch action when the user touches the corresponding touch area, and the corresponding touch signal is sent to the touch sensor chip.
  • a KEY5 to KEY0 pin and outputting a first electrical signal corresponding to each touch area through the OUT0 to OUT2 pins of the touch sensing chip, and transmitting the same to the microcontroller, by the microcontroller
  • the P4.4 pin, the P4.3 pin and the P0.1 pin are received, and the microcontroller converts the corresponding electrical control signal into a corresponding voice control signal according to the received P4.0 pin and P4.1.
  • the pin is sent to the voice module, and the voice module sends a voice corresponding to the touch area according to the received voice control signal; wherein the first electrical signal is a BCD code.
  • the touch module includes a plurality of photosensitive sensors connected to the microcontroller, wherein: each touch area is correspondingly provided with a photosensitive sensor;
  • Each photosensitive sensor is configured to detect a touch signal of a different touch area and convert the corresponding second electrical signal to the microcontroller;
  • the microcontroller is configured to send a corresponding voice control signal to the voice module according to the received second electrical signal, and the voice module sends a voice corresponding to the touch area according to the received voice control signal.
  • each photosensor includes a diode and a photoresistor connected in series between the power supply module and the microcontroller, an anode of the diode is connected to the power supply module, a cathode of the diode and the photosensitive One end of the resistor is connected, and the other end of the photoresistor is connected to the microcontroller.
  • each photosensor further includes a current limiting resistor, and one end of the current limiting resistor is connected to a connection point of the microcontroller, and the other end of the current limiting resistor is grounded.
  • the electronic cigarette further includes a switch unit connected to the microcontroller for activating and deactivating a playing function of the electronic cigarette or a function of playing different music.
  • the voice includes a plurality of scales, the user contacts or approaches a touch area corresponding to a different photosensitive sensor, the voice module emits a scale corresponding to the touch area; or the voice includes a plurality of music, The user touches or approaches a touch area corresponding to a different photosensitive sensor, and the voice module plays music corresponding to the touch area.
  • the model of the microcontroller is SN8P1808
  • the number of the photosensitive sensors is six, and the signal output ends of each photosensitive sensor are respectively connected to the P4.0 to P4.5 pins of the microcontroller, and the P5.3 of the microcontroller Pin and P5.4 a pin connected to the voice module;
  • the photosensor When the user touches or approaches a touch area corresponding to a different photosensor, the photosensor will detect the touch signal and convert it into a corresponding second signal and send it to the microcontroller, by the microcontroller P4.0 ⁇ P4.5 pin reception, the microcontroller converts the received second electrical signal into a corresponding voice control signal and passes P5.3 pin and P5.4 A pin is sent to the voice module, and the voice module issues a voice corresponding to the touch area according to the received voice control signal.
  • An electronic cigarette control method is further provided, the electronic cigarette includes: a microcontroller, a voice module and a touch module disposed in the electronic cigarette body, the electronic cigarette body having a plurality of touch regions on the surface, the method comprising:
  • S1 the touch module detects touch signals in different touch regions and converts them into corresponding electrical signals and sends the signals to the microcontroller;
  • the voice module controls the voice module to emit a voice corresponding to the touch area.
  • step S2 is specifically:
  • the microcontroller analyzes an electrical signal sent by the touch module and a smoking status of the user, and if the user is in a smoking state, controls the voice module to emit a voice corresponding to the touch area; wherein the smoking The state is that the electronic cigarette is atomizing the state of the smoke oil or / and the scheduled time after atomizing the smoke oil.
  • the touch module includes a plurality of touch buttons and a touch sensor chip, wherein: each touch button is respectively connected to a touch input port corresponding to the touch sensor chip, and an output port of the touch sensor chip is connected to The microcontroller; the method specifically includes:
  • Each touch button senses a touch action when the user touches the corresponding touch area and sends a corresponding touch signal to the touch sensor chip, and the touch sensor chip converts the touch signal into a corresponding first electrical signal and sends it to the Microcontroller;
  • the microcontroller converts the first electrical signal into a corresponding voice control signal and sends the voice signal to the voice module; the voice module sends a voice corresponding to the touch area according to the received voice control signal.
  • the voice is a plurality of scales or a plurality of music
  • the step S1' further includes:
  • the voice is a plurality of scales or a plurality of music
  • the method further includes:
  • the touch module includes a plurality of photosensors connected to the microcontroller, wherein: each touch area is correspondingly provided with a photosensor, the voice includes a plurality of scales or a plurality of music,
  • the electronic cigarette further includes a switch unit connected to the microcontroller for activating and deactivating a playing function of the electronic cigarette or a function of playing different music, the method specifically comprising:
  • each photosensitive sensor detects a touch signal of a different touch area and converts it into a corresponding second electrical signal and sends the signal to the microcontroller;
  • the micro controller is configured to send, according to the received second electrical signal, a corresponding voice control signal to the voice module, where the voice module sends a voice corresponding to the touch area according to the received voice control signal;
  • S3'' Disconnect the switch unit, turn off the function of playing the electronic cigarette or play different music.
  • the electronic cigarette and the control method thereof of the invention have the following beneficial effects: when the user touches different touch buttons or the touch area corresponding to the photosensitive sensor by the finger, the electronic cigarette emits different scales, thereby realizing the imitation of the electronic organ bomb.
  • the function of playing, or playing different music (the music here can refer to songs, natural sounds, or animal sounds, etc.), through the guidance of music, the user usually replaces different fingers with the electronic cigarette when smoking, that is, constantly The replacement finger applies a force on the electronic cigarette to clamp the electronic cigarette, thereby avoiding the situation in which the finger is temporarily restrained by the finger holding the electronic cigarette in the prior art, thereby alleviating the finger fatigue of the user.
  • the user experience is improved, and the electronic cigarette has more entertainment functions, which makes the electronic cigarette more humanized, and can also make the electronic cigarette as a musical toy, which increases the interest and benefits the user's physical and mental health.
  • FIG. 1 is a schematic block diagram of a first embodiment of an electronic cigarette according to the present invention.
  • Figure 2 is a circuit diagram of the electronic cigarette of Figure 1;
  • Figure 3 is another circuit diagram of the electronic cigarette of Figure 1;
  • FIG. 4 is a schematic block diagram of a second embodiment of an electronic cigarette according to the present invention.
  • Figure 5 is a circuit diagram of the electronic cigarette of Figure 4.
  • FIG. 6 is a schematic structural view of a first embodiment of an electronic cigarette according to the present invention.
  • FIG. 7 is a schematic structural view of a second embodiment of an electronic cigarette according to the present invention.
  • FIG. 1 is a schematic block diagram of a first embodiment of an electronic cigarette according to the present invention.
  • the electronic cigarette includes a power supply module 1 and an atomizer module 2 , smoking sensor 3, microcontroller 4, voice module 5 and touch module 6 .
  • the smoking sensor 3 is used to send a smoking signal to the microcontroller 4 when the user smokes;
  • the microcontroller 4 When the smoking signal is received, the power supply module 1 and the power supply path of the atomizer module 2 are controlled to be turned on, thereby atomizing the smoke of the electronic cigarette.
  • the surface of the electronic cigarette body has a plurality of touch areas
  • the voice module 5 And the touch module 6 is connected to the microcontroller 4, and the touch module 6 is used for detecting touch signals in different touch areas and converting them into corresponding electrical signals and transmitting them to the microcontroller 4; the microcontroller 4 is further connected to the touch module 6 After the transmitted electrical signal is analyzed and processed, the voice module 5 blocks are controlled to emit a voice corresponding to the touch area. Therefore, through the voice module 5 and the touch module 6 So that the electronic cigarette can realize the function of imitating the keyboard to pop up beautiful music or playing some different sounds.
  • the touch module 6 includes a plurality of touch buttons 7 and a touch sensor chip 8, and each touch button 7 Connected to the touch input port of the touch sensitive chip 8, respectively, the output port of the touch sensitive chip 8 is connected to the microcontroller 4.
  • the user can turn on the electronic cigarette by pressing and touching the touch area corresponding to any one of the plurality of touch buttons for a long time. Playing the piano function or playing some different music functions, then the user touches the touch area corresponding to the different touch buttons, touches the button to sense the touch action and sends the corresponding touch signal to the touch sensor chip.
  • the touch sensor chip 8 converts it into a corresponding first electrical signal (ie, a touch sensing signal) and sends it to the microcontroller 4, and the microcontroller 4 And outputting a corresponding voice control signal to the voice module 5 according to the received different touch sensing signals, and the voice module 5 Then, the scale corresponding to the touch area different from the contact is output, that is, according to the different touch areas, the different scales are emitted, and the function of imitating the keyboard is played to play the beautiful music.
  • the voice module can be controlled to play different music.
  • the music here is not a scale, but refers to some songs or natural sounds, even animal sounds, etc. When touching different touch buttons, Play different songs, or different animal calls.
  • the function of the electronic cigarette no longer only has the function of smoking, which increases the interest, and when using the electronic cigarette to imitate the function of playing or playing music on the keyboard, if the user does not smoke, there is no need to hold the electronic cigarette, if the user is smoking
  • the user replaces the different fingers to contact the electronic cigarette, that is, the finger is continuously replaced to apply force on the electronic cigarette to clamp the electronic cigarette, thereby avoiding the fixed holding of some fingers in the prior art.
  • the user's finger fatigue can be alleviated and the user experience can be improved.
  • FIG. 2 is a schematic circuit diagram of the electronic cigarette in FIG. 1 , wherein the power supply module 1 is specifically a battery, and the atomizer module 2 includes a field effect transistor Q1 and heating wire B1, smoking sensor 3 is the air flow sensor M1 of model number S087.
  • the circuit also includes resistor R1 and resistor R2, LED LED1, diode D1, capacitor C2, and the model number of the microcontroller 4 are preferably SN8P2711B.
  • the source of the FET Q1 is connected to the negative pole of the battery, and the drain of the FET Q1 is passed through the heating wire.
  • the B1 is connected to the positive terminal of the battery, the gate of the FET Q1 is connected to the P5.3 pin of the microcontroller SN8P2711B, and the gate of the FET Q1 is also connected to the FET via the resistor R2.
  • the output of the air flow sensor M1 is connected to the P0.2 pin of the microcontroller SN8P2711B, air flow sensor M1
  • the positive terminal and the negative terminal are respectively connected to the positive electrode and the negative electrode of the battery.
  • the VDD pin of the SN8P2711B is grounded via capacitor C2 and the VDD pin is also connected to diode D1.
  • the cathode, the anode of diode D1 is connected to the positive terminal of the battery.
  • the anode of the LED1 is connected to the positive pole of the battery, and the cathode of the LED1 is connected to the P5.4 of the microcontroller via resistor R1.
  • Pin, Microcontroller The VSS pin of the SN8P2711B is grounded.
  • LED LED1 is used to indicate that it is a microcontroller SN8P2711B Whether a smoking signal is received to prompt the user if they are smoking.
  • the P5.3 pin of the SN8P2711B of the microcontroller outputs a low level, the FET Q1 As a result, the battery and the heating wire B1 are not connected to each other.
  • the P5.4 pin of the microcontroller SN8P2711B outputs a high level, LED LED1 Cut off, no light.
  • the airflow sensor M1 When there is airflow, the airflow sensor M1 outputs a voltage signal to the P0.2 pin of the microcontroller SN8P2711B when it senses the airflow signal, so the microcontroller SN8P2711B The P5.3 pin outputs a high level, and the FET Q1 is turned on, so that the battery is connected to the power supply path of the heating wire B1, and the heating wire B1 generates heat and atomizes the smoke oil. Meanwhile, the microcontroller SN8P2711B The P5.4 pin outputs a low level, and the LED 1 is turned on.
  • the LED 1 is turned on only during the period in which the airflow sensor M1 sends a smoking signal, if the airflow sensor When M1 stops sending the smoking signal, LED LED1 stops emitting light, and FET Q1 can be turned on for the same time as LED LED1, or it can be extended appropriately.
  • the touch module 6 may preferably be a 6-key touch integrated circuit.
  • the plurality of touch buttons 7 are respectively K1 ⁇ K6, the model number of the touch sensor chip 8 is preferably JG606 It can be understood that each touch button corresponds to one touch area on the surface of the electronic cigarette body, and corresponds to six touch buttons respectively corresponding to six touch panels (in this embodiment, the touch area is defined as a touch panel), six The touch panels are vertically distributed on the surface of the cigarette body of the electronic cigarette, and are conveniently located.
  • the voice module 5 Includes the voice control chip HT86A72 and the speaker M connected to the voice control chip.
  • the six touch buttons K1 to K6 and the touch button input pin of the touch sensor chip JG606 are respectively KEY5 ⁇
  • the KEY0 pin is connected, and the output pins of the touch sensing chip JG606, namely OUT0 to OUT2 pins, are respectively connected to the microcontroller's P4.4, P4.3 and P0.1.
  • the pin is connected, and the P4.0 pin and P4.1 pin of the microcontroller are connected to the voice control chip HT86A72.
  • the internal portion includes a storage module (not shown) that pre-stores a touch sensing signal and a corresponding voice control signal.
  • the voice control signals corresponding to the touch sensing signals stored by the storage module in the microcontroller at this time represent six different scales respectively.
  • Do re mi fa sol la That is, when the playing function of the electronic cigarette is turned on, the user receives different touch sensing signals by touching different touch buttons, thereby outputting different voice control signals, and then controlling the speaker through the voice control chip. Different scales are emitted to simulate the function of playing the keyboard.
  • the electronic cigarette can also play different music by touching different touch buttons, and the music can be a song, a natural sound or an animal call.
  • the voice control signals corresponding to the touch sensing signals stored by the storage module at this time may respectively represent different songs, or some natural sounds, or sounds of various animals.
  • the touch time of the touch button K1 can be set by the microcontroller 4, for example, when the touch time exceeds 3s, it can be regarded as a long time touch, less than 3s. It is a short time touch (normal situation). If the user touches the corresponding touch panel of the button K1, touch the button K1 The corresponding signal is sent to the microcontroller through the touch sensor chip. When the microcontroller detects that the received signal lasts longer than 3 seconds, the function of playing the electronic cigarette is activated. At this time, the user touches the touch button K1 through the finger.
  • the corresponding control panel can simulate the playing function of the keyboard, each touch button corresponds to a scale, and the microcontroller sends a matching voice control signal according to the detected touch sensing signals corresponding to different touch panels to The voice control chip, the voice control chip then controls the speaker according to the received voice control signals representing different scales M emits the corresponding scale.
  • the touch signals corresponding to the touch buttons K1 to K6 are signals 1 to 6
  • the scale of the voice control signal corresponding to the microcontroller is do re mi fa sol la Therefore, when the user touches the touch area corresponding to the different touch buttons with the finger, each touch button is used to sense the touch action when the user touches the corresponding touch area, and sends a corresponding touch signal and respectively touches the touch button of the touch sensor chip.
  • the microcontroller converts the corresponding voice control signal according to the received touch sensing signal and passes P4.0 pin and P4.1
  • the pin is sent to the voice module, and the voice module sends a voice corresponding to the touch area according to the received voice control signal; wherein, in this embodiment, the touch sensing signal is a BCD code, for example, when the user touches the touch button K1 When the corresponding touch area is used, the corresponding BCD code is 001, and so on, and will not be described here.
  • the electronic cigarette can play beautiful music according to the different scales emitted.
  • the touch button K1 When the user needs to turn off the playing function of the electronic cigarette, and then touch the touch button K1 for a long time. This function can be turned off, and when the touch button is touched, the electronic cigarette does not realize the function of playing the piano.
  • the electronic cigarette can not only play the piano function, but also play different music when contacting the touch area corresponding to different touch buttons, and the music can be a song, a natural sound or an animal call.
  • the touch button can be touched for a long time. K1 (ie, the touch time exceeds a preset time), and then when the finger touches the touch area corresponding to the different touch buttons, different songs can be played; or as a toy for the child, when the user touches different touch buttons Play different animal calls when touching the area. When you don't need this function, touch the touch button for a long time. K1 can turn this feature off.
  • the number of touch buttons in the above is not limited, and can be set according to the needs of the user, for example, it can also be 8 A touch-sensitive touch chip or two or more touch sensing chips are formed to form a plurality of touch buttons, which are not described herein again.
  • each indicating unit includes a serial connection in the microcontroller 4 Light-emitting diodes and resistors between the negative pole of the battery.
  • the present invention is not limited thereto, and is consistent with the number of touch buttons, wherein the LEDs and resistors included in each indicating unit are respectively LED1.
  • each of the light-emitting diodes corresponds to one touch button, and the light-emitting diodes LED1 to LED6 and the touch buttons K1 to K6
  • all LEDs can be the same color or different colors.
  • the touch button senses the touch action and sends a touch signal to the touch sensor chip.
  • JG606 its output pins OUT0 ⁇ OUT2 will output the corresponding touch sensing signal
  • the microcontroller will receive the touch sensing signal corresponding to the touch area, then the corresponding P2.0 ⁇ P2.5
  • the pin outputs a high level signal to control the corresponding LED to illuminate.
  • the BCD code representing the touch sensing signal output from OUT0 to OUT2 of the touch sensing chip is 001, P1.4, P1.5 of the microcontroller SN8P2614 and
  • the P1.6 pin receives the BCD code and controls the P2.0 pin to output a high level signal according to the BCD code.
  • LED LED1 It is lit, and so on, and will not be repeated here.
  • the above six light-emitting diodes are disposed on the electronic cigarette body and are respectively on the same ring surface as the six touch buttons.
  • the touch button When the user's finger touches different touch buttons to realize the function of playing music or directly playing different music, the touch button The corresponding LEDs on the side will also be illuminated, giving the user a more intuitive experience, increasing the fun of playing, and being easy to use in a dark environment and for the user to recognize the touch buttons.
  • FIG. 4 it is a schematic block diagram of a second embodiment of the electronic cigarette of the present invention.
  • the touch module 6 in FIG. A plurality of photosensors 9 are included, each photosensor 9 for outputting different voltage signals to the microcontroller 4 according to the intensity of the received light, and the microcontroller 4
  • the voltage signal is detected to determine whether a finger touches the photosensitive surface (ie, the touch area) on the electronic cigarette body.
  • the user smokes through the microcontroller 4
  • the process of controlling the heating of the heating wire is the same as that of the first embodiment, and will not be described herein.
  • the model of the microcontroller 4 is preferably SN8P1808, and the touch module 6 includes six photosensitive sensors.
  • Each photosensitive sensor comprises a diode connected in series, a photoresistor and a current limiting resistor, specifically, diodes D1 to D6, photoresistors RCT1 to RCT6, and current limiting resistor R4 ⁇ R9, wherein: the anodes of the diodes D1 to D6 are connected to the anode of the battery, and the cathodes of the diodes D1 to D6 are respectively connected with one ends of the photoresistors RCT1 to RCT6, and the photoresistor The other ends of RCT1 to RCT6 are connected to the P4.0 to P4.5 pins of the microcontroller SN8P1808, respectively, and also with resistors R4 to R9. One end of the resistor is connected, and the other ends of the resistors R4 to R9 are connected to the negative pole of the battery and grounded.
  • the touch module 6 further includes a switch unit, and the switch unit specifically includes a switch K and a resistor R3, and the switch K Connected in series with resistor R3 between the P0.1 pin of the microcontroller SN8P1808 and the negative terminal of the battery.
  • the switch unit specifically includes a switch K and a resistor R3, and the switch K Connected in series with resistor R3 between the P0.1 pin of the microcontroller SN8P1808 and the negative terminal of the battery.
  • the photosensitive sensors in this embodiment are preferably six, but are not limited thereto, and the number thereof may be increased or decreased according to requirements.
  • six photosensitive sensors are distributed on the same vertical section of the electronic cigarette, that is, in the same vertical row, and each photosensitive sensor corresponds to a photosensitive surface (touch area) on the surface of the electronic cigarette, and the size of the photosensitive surface is about 5mm
  • the circular surface clearly indicates the photosensitive area on the body of the cigarette.
  • the corresponding photosensitive sensor can sense the change of the illumination, and thus the output voltage changes, and the user can be judged to contact at this time. Or close to which photosensitive surface corresponds to the photosensitive surface.
  • a switch is also added in this embodiment.
  • the switch K is used to start the operation of the touch module 6, that is, when the user needs to use the trigger photosensitive module to realize the function of the electronic cigarette playing or the function of playing different music, press the switch K, and at the same time increase the switch K Prevents irregular changes in the photosensitive sensor caused by changes in the external environment.
  • the user is guided to perform work simultaneously with the fingers of both hands during use, thereby not only better solving the problem of finger fatigue, but also improving the user experience.
  • the specific working process of the second embodiment of the electronic cigarette of the present invention is as follows.
  • the function of the electronic cigarette mimicking the electronic organ is taken as an example.
  • the microcontroller's P0.1 pin is at a high level.
  • the microcontroller SN8P1808 can pass P4.0 to P4.5.
  • the pin detects an output voltage signal (ie, a second electrical signal) corresponding to each photosensor.
  • the microcontroller SN8P1808 When the user touches or approaches the corresponding photosensitive surface of the photosensor with his finger, the output voltage changes, the microcontroller SN8P1808 According to the change of the detected voltage, it is judged that the user has pressed the corresponding photosensitive surface, and then passes P5.3 and P5.4.
  • the pin sends a corresponding voice control signal to the voice control chip, and the voice control chip sends a corresponding scale according to the corresponding voice control signal, so that different scales can be issued according to the contact surface of the user contacting or approaching different photosensitive sensors, thereby Realize the function of playing the beautiful music playing the keyboard, that is, realize the effect of playing the piano.
  • press the switch again. K you can turn off this function. After turning off, even if the user touches or approaches the photosensitive surface corresponding to different photosensors, the microcontroller will not detect the voltage signal sent by the photo sensor.
  • the electronic cigarette in addition to the function of simulating the playing of the electronic piano, the electronic cigarette can also realize the function of playing different music by the electronic cigarette by contacting or approaching the photosensitive surface corresponding to different photosensitive sensors, the music can be a song, or a natural The sound, or the sound of an animal.
  • the switch is pressed.
  • K the microcontroller determines the photosensitive surface corresponding to the photosensitive sensor that the user touches or approaches at this time according to the detected voltage output value, and simultaneously outputs the corresponding voice.
  • the control signal is sent to the voice control chip, and the voice control chip controls the speaker to play the corresponding song according to the received voice control signal, or the corresponding animal call.
  • the process of the microcontroller controlling the voice module to emit voice is: the microcontroller outputs a serial signal to the voice control chip, and each voice has a serial signal corresponding thereto, and the voice control chip according to the string
  • the line signal is selected and stored in the voice control chip, and the voice code corresponding to the serial signal is synthesized and passed
  • the A/D conversion output is output to the speaker M.
  • the process in which the voice control chip synthesizes the speech output is not the focus of the present invention and will not be described in detail herein.
  • FIG. 6 is a schematic structural view of a first embodiment of an electronic cigarette according to the present invention, in which a plurality of touch regions are disposed on the surface of the electronic cigarette battery rod 11
  • the touch area 11 It is a round face, but its shape is not limited thereto, and may be a square or other shape, which belongs to the prior art and will not be described in detail.
  • the touch module includes a plurality of touch buttons and a touch sensor chip connected to the plurality of touch buttons, each touch region 11 (only three touch areas are shown in the figure, but not limited thereto) are respectively provided with a touch button;
  • each touch area 11 A photosensor is provided correspondingly.
  • the touch module is a plurality of photosensitive sensors connected to the microcontroller, and each touch area 11 (There are only three touch areas shown in the figure, but not limited to this), and a photosensor is provided correspondingly.
  • a plurality of light-emitting diodes corresponding to the touch area are provided at the smoking end of the electronic cigarette (not shown).
  • the corresponding photosensitive sensor outputs different voltage signals to the microcontroller according to the intensity of the received light, and the microcontroller detects the voltage signal thereof to determine whether there is a finger touching the electron.
  • the touch area on the cigarette base controls the voice module to emit a corresponding voice, so in the present embodiment, the electronic cigarette can be used to mimic the function of playing or playing different music even in dark conditions.
  • the electronic cigarette according to the embodiment it is also possible to touch a plurality of the touch areas on the electronic cigarette base without directly touching the finger. 11 It can also be controlled by touching other areas on the surface of the electronic cigarette, as long as it can block the light emitted by the light-emitting diode corresponding to the smoking end and the touch area, thereby improving the user experience.
  • the light emitted by the light emitting diode is preferably monochromatic light such as red light, green light or blue light, so as to imitate the strings and facilitate the user to observe the touch position, thereby improving the user experience.
  • the present invention also provides a method for controlling the electronic cigarette.
  • the structure of the electronic cigarette has been specifically described in the above embodiment.
  • the electronic cigarette control method of the embodiment of the present invention includes the following steps:
  • the touch module detects a touch signal in different touch regions and converts the corresponding touch signal into a corresponding electrical signal and sends the signal to the microcontroller;
  • the voice module is controlled to emit a voice corresponding to the touch area.
  • the touch module includes a plurality of touch buttons and a touch sensor chip, wherein: each touch area is correspondingly provided with one touch button, and each touch button is respectively connected to a touch input port corresponding to the touch sensor chip, and the touch sensor
  • the output port of the chip is connected to the microcontroller; the voice may be a scale or music, and the above method specifically includes:
  • the user touches the corresponding touch area of different touch buttons to sense the touch action, and sends a corresponding touch signal to the touch sensor chip, and the touch sensor chip converts the touch signal into a corresponding first electrical signal and sends the signal to the microcontroller. ;
  • the microcontroller When receiving the first electrical signal corresponding to the different touch regions sent by the touch sensing chip, the microcontroller converts the first electrical signal into a corresponding voice control signal and sends the signal to the voice module; the voice module according to the received voice
  • the control signal emits a scale corresponding to the touch area, thereby realizing the function of simulating the playing of the keyboard; or playing different music (such as a song, a natural sound or a sound of an animal, etc.) according to the received voice control signal to realize the electronic cigarette Different songs, some natural sounds, or different animal sounds are played by touching the touch areas corresponding to different touch buttons.
  • S3' The user touches a touch area for starting the function of playing the electronic cigarette or playing the function of different music, and after the touch time exceeds the preset time, the function of playing the electronic cigarette or playing different music is turned off.
  • the touch module includes a plurality of photosensitive sensors and a switch unit connected to the microcontroller, and the voice may be a scale or a music, and the method specifically includes:
  • S1'' the user contacts or approaches a different photosensitive sensor, and the photosensitive sensor detects the corresponding touch signal and converts it into a corresponding second electrical signal and sends it to the microcontroller;
  • the micro controller sends a corresponding voice control signal to the voice module according to the received second electrical signal, and the voice module sends a scale corresponding to the touch area according to the received voice control signal, thereby realizing the function of simulating the keyboard playing or receiving according to The voice control signal to play different music (such as songs, natural sounds or animal calls, etc.) to enable the electronic cigarette to play different songs, some natural sounds or different animal calls by touching different touch buttons. Sound, etc.
  • different music such as songs, natural sounds or animal calls, etc.
  • S3'' Disconnect the switch unit, turn off the function of playing the electronic cigarette or play different music.
  • the above-mentioned microcontroller needs to analyze the smoking status of the user. If the user is in a smoking state, the voice module can be controlled at this time, that is, the electronic cigarette mimicking the electronic keyboard is turned on. The function of playing or playing different music (consistent with the above implementation method), and then emitting a voice corresponding to the touch area by contacting different touch areas.
  • the smoking status here is the state in which the electronic cigarette is atomizing the smoke oil or /
  • the predetermined time after the atomizing of the smoke oil may be 2 minutes, or may be extended as appropriate, and is not limited herein.
  • an electronic cigarette and a control method thereof embodying the present invention When smoking, the user can make the electronic cigarette emit different scales by touching different touch buttons or the touch area corresponding to the photosensitive sensor, thereby realizing the function of playing the keyboard playing, or playing different music (the music here can refer to the song)
  • the music here can refer to the song
  • the user through the guidance of the music, the user usually replaces the different fingers to contact the electronic cigarette when smoking, that is, constantly replacing the finger to apply force on the electronic cigarette to clamp the electronic cigarette.
  • the situation that the finger is clamped to the electronic cigarette by a certain number of fingers and the finger is easily fatigued is avoided, thereby alleviating the user's finger fatigue, improving the user experience, and making the electronic cigarette have more entertainment functions.
  • To make the electronic cigarette more humanized it can also make the electronic cigarette as a musical toy, which increases its interest and benefits the user's physical and mental health.

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  • Engineering & Computer Science (AREA)
  • Human Computer Interaction (AREA)
  • Toys (AREA)

Abstract

L'invention concerne une cigarette électronique, comprenant un corps de cigarette électronique, et son procédé de commande. Le corps de la cigarette électronique est pourvu d'un microcontrôleur (4), d'un module vocal (5) et d'un module tactile (6). De multiples zones tactiles (11) sont présentes sur la surface du corps de la cigarette électronique. Le module vocal (5) et le module tactile (6) sont reliés au microcontrôleur (4). Le module tactile (6) est utilisé pour détecter des signaux tactiles au niveau des différentes zones tactiles (11) et pour convertir ces signaux en signaux électriques correspondants destinés à être transmis au microcontrôleur (4). Lorsque les signaux électriques transmis par le module tactile (6) sont analysés par le microcontrôleur (4), celui-ci donne l'ordre au module vocal (5) d'émettre des données vocales correspondant aux zones tactiles (11). La cigarette électronique produit différentes notes de musique lorsqu'un utilisateur touche le module tactile (6 ) ou s'en approche, la musique guide l'utilisateur afin que celui-ci tienne sa cigarette électronique avec certains doigts, puis d'autres, lorsqu'il vapote, si bien que cela lui évite de fatiguer certains doigts plus que d'autres en n'utilisant que certains doigts pour tenir sa cigarette électronique, avec pour résultat une amélioration de l'expérience utilisateur.
PCT/CN2014/077797 2014-05-19 2014-05-19 Cigarette électronique et son procédé de commande Ceased WO2015176210A1 (fr)

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CN201480000231.0A CN105377063A (zh) 2014-05-19 2014-05-19 一种电子烟及其控制方法

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CN115175507A (zh) * 2022-06-08 2022-10-11 深圳国投物联网络股份有限公司 一种智能开关的控制面板

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US10512282B2 (en) 2014-12-05 2019-12-24 Juul Labs, Inc. Calibrated dose control
US10865001B2 (en) 2016-02-11 2020-12-15 Juul Labs, Inc. Fillable vaporizer cartridge and method of filling
US10405582B2 (en) 2016-03-10 2019-09-10 Pax Labs, Inc. Vaporization device with lip sensing
USD929036S1 (en) 2016-06-16 2021-08-24 Pax Labs, Inc. Vaporizer cartridge and device assembly
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CN111449297A (zh) * 2020-04-22 2020-07-28 深圳市湃科集成技术有限公司 一种电子烟咪头及电子烟
CN111449297B (zh) * 2020-04-22 2023-09-05 深圳市湃科集成技术有限公司 一种电子烟咪头及电子烟
CN114903433A (zh) * 2021-02-10 2022-08-16 海信视像科技股份有限公司 电子设备
CN115175507A (zh) * 2022-06-08 2022-10-11 深圳国投物联网络股份有限公司 一种智能开关的控制面板

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