WO2016008067A1 - 一种吸烟控制方法、吸烟控制电路以及电子烟 - Google Patents

一种吸烟控制方法、吸烟控制电路以及电子烟 Download PDF

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Publication number
WO2016008067A1
WO2016008067A1 PCT/CN2014/082139 CN2014082139W WO2016008067A1 WO 2016008067 A1 WO2016008067 A1 WO 2016008067A1 CN 2014082139 W CN2014082139 W CN 2014082139W WO 2016008067 A1 WO2016008067 A1 WO 2016008067A1
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WO
WIPO (PCT)
Prior art keywords
electronic cigarette
audio
atomizer
module
oil
Prior art date
Application number
PCT/CN2014/082139
Other languages
English (en)
French (fr)
Inventor
刘秋明
Original Assignee
惠州市吉瑞科技有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 惠州市吉瑞科技有限公司 filed Critical 惠州市吉瑞科技有限公司
Priority to PCT/CN2014/082139 priority Critical patent/WO2016008067A1/zh
Priority to CN201480001108.0A priority patent/CN105431059A/zh
Publication of WO2016008067A1 publication Critical patent/WO2016008067A1/zh

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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
    • A24F40/65Devices with integrated communication means, e.g. wireless communication means
    • 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
    • A24F40/50Control 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
    • A24F40/10Devices using liquid inhalable precursors

Definitions

  • the present invention relates to the field of electronic cigarettes, and more particularly to a smoking control method, a smoking control circuit and an electronic cigarette which can improve the sounding effect.
  • the electronic cigarette in the prior art generally includes an atomizer for atomizing the smoke oil and a battery rod assembly for supplying the atomizer, one end of the atomizer serves as a nozzle for the user to smoke, and the other end is
  • the battery rod assembly is connected, and the atomizer is provided with a fiberglass tube for venting and fixing the electric heating wire assembly disposed along the axial direction of the atomizer and communicating with the suction nozzle, the glass fiber tube Externally coated with oil storage cotton for storing smoke oil;
  • the battery rod assembly is provided with an air flow sensor for controlling the battery rod assembly to supply power to the atomizer according to the user's smoking action, and is connected to the fiberglass tube and the air flow sensor Ventilation channel.
  • the length of the electronic cigarette is generally equal to or less than the length of the actual cigarette, so that the size of the battery in the battery rod assembly is rather limited, thereby making the battery of limited size
  • the amount of power that can be stored is also limited.
  • the existing electronic cigarette is usually provided with a receiving cavity for accommodating the horn at the end of the battery rod assembly remote from the nozzle, the battery and the battery The horn is electrically connected to cause the battery to supply power to the horn, thereby enabling the horn to sound.
  • the disadvantages of the above-mentioned prior art electronic cigarette are as follows: 1. Since the oil storage cotton for storing the tobacco oil is provided in the atomizer of the electronic cigarette, the smoke oil in the oil storage cotton is easily passed by the gravity. The venting passage leaks into the accommodating cavity, or leaks into the accommodating cavity by capillary action, so that the smog is adhered to the horn, which greatly reduces the sounding effect of the horn, and even breaks the sound, and the cleaning is inconvenient. If it is replaced, it will greatly increase the cost of the user; 2. Because the battery stores limited power, the speaker will consume a considerable amount of electricity when working, which greatly reduces the atomization inside the electronic cigarette for atomizing the smoke oil to generate smoke.
  • the working time of the device in order to ensure the normal operation of the atomizer, requires the user to frequently charge the battery, which reduces the service life of the battery, and is not convenient for the user; 3. Due to the prior art At the end of the electronic cigarette, the sounding position is single and limited by the structure of the electronic cigarette, and the sound transmission direction can only be set to be perpendicular to the direction of the electronic cigarette or along the side away from the nozzle.
  • the present invention provides a smoking control method, a smoking control circuit, and an electronic cigarette that can improve the sounding effect.
  • a smoking control method comprising: sending a microprocessor to an electronic cigarette;
  • the microprocessor generates a control signal according to the trigger signal
  • the battery of the electronic cigarette supplies power to the atomizer according to the control signal, so that the atomizer atomizes the smoke oil to generate smoke;
  • the microprocessor converts an audio file for simulating underwater sound into an audio signal according to the trigger signal and sends the audio file to an audio transmitting module of the electronic cigarette;
  • the audio transmitting module receives the audio signal and transmits the audio signal to an external audio playback device at a preset distance from the electronic cigarette in a wireless transmission manner, so that the external audio playback device plays the audio signal.
  • the smoking control method wherein the storage module of the electronic cigarette stores the audio file for simulating underwater sound; the microprocessor converts an audio file for simulating underwater sound into an audio signal according to the trigger signal and
  • the audio transmitting module sent to the electronic cigarette includes:
  • the microprocessor acquires the audio file for simulating underwater sound stored in the storage module according to the trigger signal
  • the microprocessor converts the audio file into the audio signal and sends it to the audio transmitting module.
  • the audio transmitting module is a WIFI module, a ZigBee module, an infrared module, a microwave module, a Bluetooth module, an FM broadcasting module, or a radio frequency interface for data transmission using 2.4 GHz.
  • a smoking control circuit comprising: a smoking switch for generating an electronic cigarette according to a smoking action of a user, generating a control signal according to the trigger signal, and for The trigger signal converts an audio file for simulating underwater sound into an audio signal, a battery, a atomizer for atomizing the smoke oil to generate smoke, and transmitting the audio signal to the wireless transmission
  • the e-cigarette is spaced apart by a preset distance of an audio transmitting module of an external audio playback device;
  • the smoking switch, the battery, the atomizer, and the audio transmitting module are respectively electrically connected to the microprocessor.
  • smoking control circuit wherein the smoking control circuit further comprises:
  • a storage module electrically connected to the microprocessor for storing an audio file simulating underwater sound
  • a charging interface electrically connected to the microprocessor for charging the battery
  • a battery protection module electrically connected to the battery for protecting the battery
  • a low voltage detecting module electrically connected to the battery and the microprocessor for detecting the battery voltage
  • a voltage adjustment module electrically connected to the battery protection module and the microprocessor for adjusting the battery voltage
  • a voltage detecting module electrically connected to the atomizer and the microprocessor for detecting a voltage output to the atomizer
  • a current detecting module electrically connected to the atomizer and the microprocessor for detecting a current output to the atomizer.
  • An electrical connection to the microprocessor is provided with at least one light emitting element.
  • the smoking control circuit wherein the audio transmitting module is a WIFI module, a ZigBee module, an infrared module, a microwave module, a Bluetooth module, an FM broadcasting module, or a radio frequency interface for transmitting data at 2.4 GHz.
  • the audio transmitting module is a WIFI module, a ZigBee module, an infrared module, a microwave module, a Bluetooth module, an FM broadcasting module, or a radio frequency interface for transmitting data at 2.4 GHz.
  • An electronic cigarette comprising: an electronic cigarette body, wherein the electronic cigarette body comprises the above smoking control circuit;
  • the electronic cigarette body is provided with a smoking end, an oil storage bottle for accommodating the smoke oil, the atomizer, and a battery rod assembly provided with the battery;
  • the atomizer, the oil storage bottle and the battery rod assembly are disposed coaxially, and the oil storage bottle is disposed on an end of the electronic cigarette body away from the smoking end;
  • the atomizer is located between the battery rod assembly and the oil storage bottle, and one end is inserted into the oil storage bottle to guide and atomize the oil in the oil storage bottle.
  • the oil storage bottle is detachably connected to the atomizer
  • the atomizer is detachably coupled to the battery rod assembly.
  • the electronic cigarette wherein the atomizer comprises:
  • An atomizer electrode for electrically connecting to the heating wire and the battery rod assembly
  • An oil guiding mechanism for conducting the oil in the oil storage bottle to the electric heating wire is provided with a sleeve inserted in the oil storage bottle and sleeved in the sleeve a smoke oil latch made of an oil absorbing material, the oil guiding rope abutting the cigarette oil latch, and the atomizer electrode is inserted at one end of the sleeve.
  • the electronic cigarette, wherein the battery rod assembly comprises:
  • a battery rod electrode electrically connected to the atomizer electrode
  • the battery electrically connected to the battery rod electrode
  • a smoking switch for the electronic cigarette that generates the trigger signal according to a smoking action of a user.
  • the electronic cigarette wherein the oil storage bottle is a transparent container.
  • the electronic cigarette wherein the oil storage bottle is a glass bottle.
  • the invention provides a smoking control method, a smoking control circuit and an electronic cigarette, and the smoking controller generates a control signal according to the trigger signal, and the battery of the electronic cigarette supplies power to the atomizer according to the control signal, so that the fog
  • the atomizer atomizes the smoke oil to generate smoke;
  • the microprocessor converts the audio file for simulating the underwater sound into an audio signal according to the trigger signal and sends it to the audio transmitting module of the electronic cigarette, and the audio transmitting module receives the
  • the audio signal is transmitted and transmitted to the external audio playback device at a preset distance from the electronic cigarette in a wireless transmission manner to cause the external audio playback device to play the audio signal.
  • the electronic cigarette shown in the invention does not need to have a speaker inside to play an audio file, thereby effectively preventing the smoke oil from contaminating the speaker, and thus there is no breakage situation, and the solution is solved.
  • the battery does not need to supply power to the speaker, thereby increasing the usage time of the electronic cigarette atomizer, playing the audio file through the external audio playback device, and the audio signal can be stereoscopic through a plurality of the external audio playback devices.
  • the way to play, and can guarantee the volume during playback can control the volume during playback according to the needs of the user, to avoid the playback volume is too small to meet the needs of users.
  • FIG. 1 is a flow chart showing the steps of a preferred embodiment of a smoking control method according to an embodiment of the present invention
  • FIG. 2 is a flow chart showing another preferred embodiment of a smoking control method according to an embodiment of the present invention.
  • FIG. 3 is a schematic diagram of a circuit connection structure of a preferred embodiment of a smoking control circuit according to an embodiment of the present invention
  • FIG. 4 is a schematic diagram of a circuit connection structure of another preferred embodiment of a smoking control circuit according to an embodiment of the present invention.
  • FIG. 5 is a schematic structural view of a preferred embodiment of an electronic cigarette according to an embodiment of the present invention
  • FIG. 6 is a cross-sectional structural view of a preferred embodiment of an electronic cigarette according to an embodiment of the present invention
  • Embodiment 1 The smoking control method provided in this embodiment is described in detail in conjunction with FIG. 1 :
  • the smoking control method specifically includes: transmitting a signal to a microprocessor in the electronic cigarette;
  • the smoke switch of the electronic cigarette senses that the decrease of the air pressure corresponds to generating a trigger signal; or, the user presses a button as a smoking switch to send the trigger signal
  • the microprocessor in the electronic cigarette is not specifically limited herein. 102.
  • the microprocessor generates a control signal according to the trigger signal.
  • the microprocessor is disposed inside the electronic cigarette, that is, the microprocessor receives the trigger signal sent by the smoking switch of the electronic cigarette, and generates a power supply battery according to the trigger signal to supply power to the atomizer. Control signal.
  • the battery of the electronic cigarette supplies power to the atomizer according to the control signal
  • a battery and an atomizer located inside the electronic cigarette are electrically connected to the microprocessor, and the battery supplies power to the atomizer according to the control signal to cause the atomizer to atomize the smoke oil to generate smoke.
  • the specific structure of the atomizer is not limited in this embodiment, as long as the atomizer can atomize the smoke oil to generate smoke in the case where the battery is powered.
  • the microprocessor converts an audio file for simulating underwater sound into an audio signal according to the trigger signal, and sends the audio file to an audio transmitting module of the electronic cigarette;
  • the microprocessor is also electrically coupled to the audio transmitting module.
  • the microprocessor pre-acquires an audio file of the module water sound, converts the audio file into an audio signal according to the trigger signal, and transmits the audio signal to the audio transmitting module.
  • the microprocessor specifically converts the audio file into an audio signal is a prior art, which is not described in detail in this embodiment.
  • the audio transmitting module receives the audio signal and sends the audio signal to a external audio playback device at a preset distance from the electronic cigarette in a wireless transmission manner.
  • the audio transmitting module can transmit the audio signal it has received to the external audio playback device.
  • the external audio playing device is disposed outside the electronic cigarette.
  • the external audio playing device is not limited in this embodiment, and only needs an external speaker, such as a separate external speaker and a speaker.
  • Music playback devices such as computers, mobile phones, etc.
  • the audio transmitting module is not limited, as long as the audio transmitting module can send the audio signal to the external audio playing device in a wireless transmission manner.
  • the external audio playback device can receive the audio signal and play the audio signal it receives.
  • the preset distance between the external audio playback device and the electronic cigarette is not limited, as long as the audio transmitting module of the electronic cigarette can send the audio signal to the interval separated by the preset distance.
  • the external audio playback device can be described. To better illustrate the positional relationship between the electronic cigarette and the external audio playback device, please refer to the figure.
  • the specific number of the external audio playback device 702 is not limited in this embodiment.
  • the external audio playback device 702 shown in this embodiment is at least one, preferably, The number of the external audio playback devices 702 is multiple, and a plurality of the external audio playback devices 702 can be placed at different locations, and the plurality of external audio playback devices 702 simultaneously receive the electronic cigarettes 701.
  • the audio signal transmitted by wireless transmission mode plays the audio signal at the same time, thereby presenting a stereoscopic playback effect for the user.
  • the electronic cigarette shown in this embodiment does not need to have a speaker inside to play an audio file, thereby effectively preventing the smoke oil from contaminating the speaker, and thus there is no occurrence of breakage.
  • the battery inside the electronic cigarette in this embodiment does not need to supply power to the battery, thereby increasing the length of use of the electronic cigarette atomizer.
  • the audio file is played by the external audio playing device, and the audio signal can be played in a stereoscopic manner by using the plurality of external audio playing devices, and the volume during the playing process can be guaranteed, and the user can Need to control the volume during playback, to avoid the playback volume is too small to meet the needs of users.
  • Embodiment 2 in conjunction with FIG. 2, a detailed description of a smoking control method for controlling different audio playback by an external audio playback device is provided: signaling to a microprocessor in the electronic cigarette;
  • the microprocessor generates a control signal according to the trigger signal.
  • the battery of the electronic cigarette supplies power to the atomizer according to the control signal
  • step 201 to step 203 shown in this embodiment is shown in step 101 to step 103 shown in FIG. 1 and will not be described in detail in this embodiment.
  • the microprocessor acquires, according to the trigger signal, the audio file used to simulate underwater sound stored in a storage module;
  • the storage module is electrically connected to the microcontroller, and the storage module stores the audio file for simulating underwater sound.
  • the audio file for simulating the underwater sound may be pre-stored by the storage module, or the user may import an external audio file for simulating underwater sound into the storage module, in this embodiment. Do not repeat in the middle.
  • the microprocessor converts the audio file into the audio signal and sends the audio file to the audio transmitting module.
  • the microprocessor transmits the audio signal to the audio transmitting module of the electronic cigarette.
  • the audio transmitting module is a WIFI module, a ZigBee module, an infrared module, a microwave module, a Bluetooth module, an FM broadcasting module, or a radio frequency interface for data transmission using 2.4 GHz.
  • the audio transmitting module is not limited in this embodiment as long as it can transmit the audio signal in a wireless manner.
  • the audio transmitting module receives the audio signal and sends the audio signal to an external audio playing device at a preset distance from the electronic cigarette in a wireless transmission manner.
  • the step 206 shown in this embodiment is the same as the step 105 shown in FIG. 1, and will not be described in detail in this embodiment.
  • Embodiment 3 a smoking control circuit capable of improving the sounding effect is described in detail. As shown in FIG. 3, the smoking control circuit includes:
  • a smoking switch 301 for generating an electronic cigarette according to a user's smoking action
  • the smoking switch 301 can detect that the air pressure inside the electronic cigarette is lowered due to the smoking action of the user, and correspondingly generate a trigger signal;
  • a microprocessor 302 for generating a control signal according to the trigger signal and for converting an audio file for simulating underwater sound into an audio signal according to the trigger signal;
  • the battery 303 is configured to supply power to the atomizer 304 according to the control signal to cause the atomizer 304 to atomize the smoke oil to generate smoke;
  • An audio transmitting module 305 for transmitting the audio signal to an external audio playing device; the audio transmitting module 305 is configured to send the audio signal to the external device at a preset distance from the electronic cigarette by wireless transmission Audio playback device
  • the smoking switch 301, the battery 303, the atomizer 304, and the audio transmitting module 305 are electrically connected to the microprocessor 302, respectively.
  • the smoking control circuit shown in this embodiment it is not necessary to provide a horn, so that the battery 303 does not need to supply power to the horn, thereby increasing the length of use of the atomizer 304.
  • the audio file is played by the external audio playing device, and the audio signal can be played in a stereoscopic manner by using the plurality of external audio playing devices, and the volume during the playing process can be guaranteed, and the user can Need to control the volume during playback, to avoid the playback volume is too small to meet the needs of users.
  • Embodiment 4 This embodiment further details the specific structure of the smoking control circuit as shown in FIG. 4:
  • the smoking switch 401, the battery 403, the atomizer 404, and the audio transmitting module 405 are electrically connected to the microprocessor 402, respectively;
  • the smoking switch 401, the battery 403, the atomizer 404, the audio transmitting module 405, and the microprocessor 402 are specifically shown in the embodiment shown in FIG. 3, and are not in this embodiment. Make a statement;
  • the audio transmitting module 405 is a WIFI module, a ZigBee module, an infrared module, a microwave module, a Bluetooth module, an FM broadcast module, or a radio frequency interface for data transmission using 2.4 GHz.
  • the smoking control circuit further includes:
  • a storage module electrically connected to the microprocessor 402 for storing an audio file simulating underwater sound
  • the storage module 406 stores an audio file for simulating underwater sound so that the electronic cigarette can simulate the sounding effect of the hookah.
  • a charging interface for electrically charging the battery 403 electrically coupled to the microprocessor 402
  • the charging interface 407 is a USB interface as an example.
  • a battery protection module 408 for electrically protecting the battery 403, which is electrically connected to the charging interface 407 and the battery 403, respectively;
  • the battery protection module 408 is prevented from overshooting the battery 403 by an external power source to ensure the life of the battery 403.
  • a voltage detection module 409 for detecting the voltage of the battery 403, which is electrically connected to the battery 403 and the microprocessor 402, respectively;
  • the microprocessor 402 controls the battery 403 to no longer supply power to the atomizer 404 to extend the life of the battery 403.
  • a voltage adjustment module 410 for electrically adjusting the battery voltage, respectively, electrically connected to the battery protection module 408 and the microprocessor 402;
  • the atomizer 404 is prevented from being burned by the voltage adjustment module 410 so that the voltage output by the battery 403 satisfies the requirement.
  • a voltage detecting module 411 for electrically detecting the voltage output to the atomizer 404, which is electrically connected to the atomizer 404 and the microprocessor 402, respectively;
  • a current detecting module 412 for electrically detecting the current output to the atomizer 404 is electrically coupled to the atomizer 404 and the microprocessor 402, respectively.
  • the light-emitting element 413 is electrically connected to the microprocessor 402.
  • the microprocessor 402 controls the battery 403 to supply power to the atomizer 404
  • the microprocessor 402 controls the light-emitting element 413 to emit light to simulate a luminous effect of real smoking;
  • the microprocessor 402 can control the light-emitting element 413 to flash light at a certain frequency or the plurality of light-emitting elements 413 to emit light of a marquee.
  • the light-emitting element 413 can be illuminated to instruct the user to charge the battery 403 or the like through an external power source.
  • Embodiment 6 as shown in FIG. 5, this embodiment provides an electronic cigarette
  • the electronic cigarette includes an electronic cigarette body, and the inside of the electronic cigarette body is disposed as in the third embodiment
  • the smoking control circuit of the fourth embodiment does not describe the specific circuit connection structure of the smoking control circuit in this embodiment.
  • the electronic cigarette body is provided with a smoking end 501; that is, the user can suck the smoke through the smoking end 501.
  • the electronic cigarette body further includes: an atomizer 503 for atomizing the smoke oil, a battery rod assembly 502 for supplying the atomizer 503;
  • the electronic cigarette body further includes: an oil storage bottle 504 for storing the smoke oil.
  • the oil storage bottle 504 is disposed on the electronic cigarette body away from the smoking end 501. One end.
  • the oil storage bottle 504 is far from the position of the smoking end 501, so as to effectively prevent the smoke stored in the oil storage bottle 504 from leaking to the smoking end 501 to be sucked by the user.
  • the atomizer 503 is located between the battery rod assembly 502 and the oil storage bottle 504, and the battery rod assembly 502, the atomizer 503 and the oil storage bottle 504 are coaxial Settings.
  • FIG. 6 is a schematic cross-sectional structural view of the electronic cigarette provided in the embodiment.
  • the battery rod assembly 502 is further provided with a smoke passage 601 for circulating smoke to conduct the mist atomized by the atomizer 503 to the smoking end 501.
  • the direction of the airflow inside the electronic cigarette body is referred to the direction of the arrow shown in FIG. 6.
  • the atomizer 503 is inserted into the oil storage bottle 504 to discharge and atomize the oil in the oil storage bottle 504.
  • the oil storage bottle 504 is disposed on one end of the electronic cigarette body away from the smoking end 501.
  • the advantage of using such an arrangement is that the oil storage bottle 504 is provided. Positioned away from the smoking end 501, such that the smoke passage 601 located in the battery rod assembly 502 does not pass through the oil storage bottle 504, so that the un-atomized oil in the oil storage bottle 504 does not leak into the smoke passage 601. Therefore, the user does not smoke the un-atomized smoke oil, thereby effectively avoiding the leakage of the smoke oil.
  • the smoke passage 601 which does not flow through the oil storage bottle 504 can also prevent the smoke from condensing in the smoke passage 601, thereby effectively preventing the condensed smoke oil from clogging the smoke passage 601.
  • the battery rod assembly 502, the smoking end 501, and the atomizer 503 are coaxial Setting, ⁇ This kind of setting method can make the shape of the electronic cigarette intuitively simulate the real cigarette, conform to the user's usage habits, and make the overall smoke passage 601 straight, which can effectively reduce the phenomenon of oil accumulation.
  • the atomizer 503 is located between the battery rod assembly 502 and the oil storage bottle 504, that is, the position of the atomizer 503 is far from the smoking end 501, and the user uses the present embodiment.
  • the position of the atomizer 503 is far from the position of the user's mouth, so that the heat generated when the atomizer 503 atomizes the smoke oil does not burn the user, effectively improving the electron.
  • the use of the smoke is safe, and the user usually holds the battery rod assembly 502 for smoking during smoking, and avoids the smoking of the atomizer 503 that is hot in the prior art, so that the user uses the electrons provided by the embodiment.
  • the smoke is smoked, there is no burn in the hand, which effectively simulates the temperature of the real cigarette and improves the user experience during smoking.
  • oil storage bottle 504 is detachably connected to the atomizer 503 and/or the atomizer 503 is detachably connected to the battery rod assembly 502.
  • the detachable connection manner between the oil storage bottle 504 and the atomizer 503 and/or the atomizer 503 and the battery rod assembly 502 may be a screw connection or a snap connection, etc., specifically The connection manner is not limited in this embodiment, as long as the oil storage bottle 504 and the atomizer 503 and/or the atomizer 503 are detachably connected to the battery rod assembly 502.
  • connection between the oil reservoir 504 and the atomizer 503 and/or the atomizer 503 and the battery rod assembly 502 may be non-removable, which is not limited herein.
  • the overall structure of the electronic cigarette shown in this embodiment mimics a cigarette.
  • the length of the electronic cigarette is equivalent to the length of the cigarette, and in order to reduce the charging frequency and increase the service life of the battery rod assembly 502, the length of the battery rod assembly 502 can at least occupy the electrons. More than half of the overall length of the cigarette, when the user uses the electronic cigarette shown in this embodiment to smoke, the position of the upper middle portion of the electronic cigarette near the smoking end 501 is naturally clamped, because the oil storage bottle 504 in this embodiment is set.
  • the oil storage bottle 504 is protected from the user's clamping force, so that the oil storage bottle 504 outputs a relatively uniform amount of smoke to the atomizer 503, which effectively ensures the stability of the smoke and improves the user.
  • the amount of smoke oil supplied is different due to the difference in the force applied to the end of the oil reservoir by the user, which results in a large amount of smoke when the amount of smoke is large.
  • the atomizer 503 includes:
  • An atomizer electrode 603 for electrically connecting the heating wire 602 and the battery rod assembly 502; an oil guiding mechanism 604 for conducting the oil in the oil storage bottle 504 to the heating wire 602,
  • the oil guiding mechanism 604 is provided with a sleeve inserted in the oil storage bottle and a smoke oil latch 605 made of an oil absorbing material sleeved in the sleeve, the oil guiding rope and the oil guiding rope
  • the smoke oil latch 605 is connected to the phase, and the atomizer electrode 603 is inserted at one end of the sleeve.
  • the sleeve is made of an oil absorbing material.
  • the oil absorbing material is not limited, for example, a glass fiber material is used, and the squeegee latch 605 is made of a material such as cotton or glass fiber, and is not specifically limited herein.
  • a through hole is further formed in the sleeve.
  • at least one end of the oil guiding rope is inserted into the smoke oil latch 605, so that the smoke oil latch 605
  • the stored soot oil can be uniformly and constantly conducted to the heating wire 602.
  • the cross-sectional area of the oil guiding rope is smaller than the cross-sectional area of the smoke oil latch 605, and the outer circumferential surface of the oil-oil latch 605 is attached to the inner circumferential surface of the sleeve and elastically abuts to Better transport of smoke oil and avoid oil spills.
  • the structure makes the tobacco oil conveying path have a stepped structure, the oil absorption state of the smoke oil latch 605 is substantially saturated, and the oil suction state of the oil guiding rope is basically in a moderate state, thereby ensuring that the oil guiding rope can be at any time.
  • the smoke oil latch 605 obtains the required smoke oil, which not only can further improve the amount of smoke, prevent the heating wire 602 from being dry, and can prevent the smoke in the oil storage bottle 504 from leaking out, thereby ensuring the electrons. Smoke can produce a steady amount of smoke.
  • the specific structure of the heating wire is set as an example, which is not limited.
  • a fiberglass cloth is also disposed on the end surface of the smoke oil latch 605 near the smoking end 501.
  • the fiberglass cloth is provided with a heating wire which is pressed into a sheet shape and wound into a spiral shape, and the plane on which the heating wire is located is perpendicular or at an angle to the axial direction of the electronic cigarette, so that the heating wire can be further prevented from being dry.
  • the battery rod assembly 502 includes:
  • a battery rod electrode 606 electrically connected to the atomizer electrode 603;
  • the battery 607 electrically connected to the battery rod electrode 606;
  • Smoking switch for the electronic cigarette for generating the trigger signal according to a smoking action of a user
  • the oil storage bottle 504 is a transparent container, that is, the user can grasp the remaining amount of the smoke of the electronic cigarette through the transparent oil storage bottle 504, which is convenient. The user replaces the oil storage bottle 504 in time.
  • the oil storage bottle 504 is a glass bottle. Due to the stable nature of the glass material, it is avoided to affect the smell of smoke due to chemical reactions.
  • the outer wall of the oil storage bottle 504 made of glass is provided with a scale, so that the user can estimate the amount of time that the remaining amount of oil can be used for smoking, which is convenient for the user.
  • a protective cover (not shown) is disposed on the oil storage bottle 504 to prevent the glass oil storage bottle 504 from being broken due to dropping.
  • the protective cover is provided with a smoke oil observation window for the user to observe the smoke oil.

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  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Toys (AREA)
  • Charge And Discharge Circuits For Batteries Or The Like (AREA)

Abstract

一种吸烟控制方法、吸烟控制电路以及电子烟,该吸烟控制方法包括:电子烟的吸烟开关根据用户的吸烟动作生成触发信号(101),微处理器根据所述触发信号生成控制信号(102),电池根据所述控制信号为雾化器供电(103),所述微处理器根据所述触发信号将用于模拟水声的音频文件转换为音频信号并发送给电子烟的音频发射模块(104),所述音频发射模块将所述音频信号以无线传输方式发送给与所述电子烟间隔预设距离的外置音频播放装置(105)。该电子烟无需在内部设置有喇叭即可播放音频文件,有效的避免了烟油污染所述喇叭,且所述电池无需为喇叭供电,从而提升了雾化器的使用时长,而且可以保障播放过程中的音量,避免播放音量过小无法满足用户的需求。

Description

一种吸烟控制方法、 吸烟控制电路以及电子烟 技术领域
本发明涉及电子烟领域,尤其涉及的是一种可提升发声效果的吸烟控制方 法、 吸烟控制电路以及电子烟。
背景技术
现有技术中的电子烟通常包括用于雾化烟油的雾化器及为所述雾化器供 电的电池杆组件, 所述雾化器的一端作为供用户吸烟的吸嘴, 另一端与所述电 池杆组件相连,所述雾化器内设置有沿雾化器的轴向设置并与所述吸嘴相连通 的用于通气及固定电热丝组件的玻纤管,所述玻纤管外包覆有用于存储烟油的 储油棉;所述电池杆组件设置有用于根据用户的吸烟动作控制电池杆组件为雾 化器供电的气流传感器及与所述玻纤管和气流传感器相连通的通气通道。
为尽可能符合用户的使用习惯,则电子烟的长度一般与真实的香烟长度相 等或差异不太大, 因而所述电池杆组件内的电池尺寸会相当的受限, 进而使得 尺寸受限的电池所能够存储的电量也有限。 为了模仿水烟,使吸烟时产生水声 以提升用户使用电子烟过程中的体验,现有的电子烟通常在远离吸嘴的电池杆 组件的一端端部开设有用于容纳喇叭的容纳腔, 电池与该喇叭电连接, 以使所 述电池为所述喇八供电, 进而使得所述喇叭可以发声。
上述现有技术的电子烟的缺点为: 1、 因在电子烟的雾化器内设有用于存 储烟油的储油棉,所述储油棉内的烟油容易因受重力作用通过所述通气通道泄 漏到该容纳腔内, 或通过毛细作用泄露至该容纳腔内,从而使得喇叭上粘有烟 油, 则会大大降低喇叭的发声效果, 甚至会出现破音的情况, 且清洗不便, 若 更换则大大提升了用户使用的成本; 2、 因电池所存储的电量有限, 所述喇叭 工作时会耗费相当的电量,则大大降低电子烟内部用于雾化烟油以生成烟雾的 雾化器的工作时长,从而为保障所述雾化器的正常工作, 则需要用户频繁的为 电池充电, 降低了电池的使用寿命, 而且不便于用户使用; 3、 因现有技术中 的喇八设置在电子烟端部, 发声位置单一, 且受到电子烟结构的限制, 声音传 输方向仅能设置为垂直于电子烟的方向或沿远离吸嘴的方向传输,因而无法让 用户体会到水烟的立体发声的感觉, 进而发声仿真性不好, 降低用户使用过程 中的体验, 而且电池存储的电量有限, 进而使得所述电池输出给所述喇叭的功 率有限, 使得喇叭的发声较小, 无法满足用户的对发声音量的需求。 发明内容
本发明提供了一种可提升发声效果的吸烟控制方法、吸烟控制电路以及电 子烟。
一种吸烟控制方法, 其中, 包括: 发送给电子烟内的微处理器;
所述微处理器根据所述触发信号生成控制信号;
电子烟的电池根据所述控制信号为雾化器供电,以使所述雾化器雾化烟油 以生成烟雾;
所述微处理器根据所述触发信号将用于模拟水声的音频文件转换为音频 信号并发送给电子烟的音频发射模块;
所述音频发射模块接收所述音频信号并将所述音频信号以无线传输方式 发送给与所述电子烟间隔预设距离的外置音频播放装置,以使所述外置音频播 放装置播放所述音频信号。
所述的吸烟控制方法, 其中, 电子烟的存储模块存储有用于模拟水声的所 述音频文件;所述微处理器根据所述触发信号将用于模拟水声的音频文件转换 为音频信号并发送给电子烟的音频发射模块包括:
所述微处理器根据所述触发信号获取存储在所述存储模块内的用于模拟 水声的所述音频文件;
所述微处理器将所述音频文件转换为所述音频信号并发送给所述音频发 射模块。
所述的吸烟控制方法, 其中, 所述音频发射模块为 WIFI模块、 ZigBee模 块、 红外线模块、 微波模块、 蓝牙模块、 调频广播模块或釆用 2.4GHz进行数 据传输的射频接口。
一种吸烟控制电路, 其中, 包括: 用于根据用户的吸烟动作生成触发信号 的电子烟的吸烟开关、用于根据所述触发信号生成控制信号以及用于根据所述 触发信号将用于模拟水声的音频文件转换为音频信号的微处理器、 电池、用于 雾化烟油以生成烟雾的雾化器、用于将所述音频信号以无线传输方式发送给与 所述电子烟间隔预设距离的外置音频播放装置的音频发射模块;
其中, 所述吸烟开关、 所述电池、 所述雾化器、 所述音频发射模块分别与 所述微处理器电连接。
所述的吸烟控制电路, 其中, 所述吸烟控制电路还包括:
与所述微处理器电连接的, 用于存储模拟水声的音频文件的存储模块; 与所述微处理器电连接的, 用于为所述电池进行充电的充电接口; 分别与所述充电接口和所述电池电连接的,用于对所述电池进行保护的电 池保护模块;
分别与所述电池和所述微处理器电连接的,用于检测所述电池电压的低压 检测模块;
分别与所述电池保护模块和所述微处理器电连接的,用于调整所述电池电 压的电压调整模块;
分别与所述雾化器和所述微处理器电连接的,用于检测输出给所述雾化器 电压的电压检测模块;
分别与所述雾化器和所述微处理器电连接的,用于检测输出给所述雾化器 电流的电流检测模块。
所述的吸烟控制电路, 其中,
与所述微处理器电连接设置有至少一个发光元件。
所述的吸烟控制电路, 其中, 所述音频发射模块为 WIFI模块、 ZigBee 模块、 红外线模块、 微波模块、 蓝牙模块、 调频广播模块或釆用 2.4GHz进行 数据传输的射频接口。
一种电子烟, 其中, 包括电子烟本体, 所述电子烟本体包括上述的吸烟控 制电路;
所述电子烟本体设置有吸烟端、用于容纳所述烟油的储油瓶、所述雾化器 以及设置有所述电池的电池杆组件;
所述雾化器、所述储油瓶和所述电池杆组件同轴设置,且所述储油瓶设置 于所述电子烟本体上远离所述吸烟端的一端; 所述雾化器位于所述电池杆组件和所述储油瓶之间,且一端插设在所述储 油瓶内以将所述储油瓶内的烟油导出并雾化。
所述的电子烟, 其中,
所述储油瓶与所述雾化器为可拆卸连接;
和 /或,
所述雾化器与所述电池杆组件为可拆卸连接。
所述的电子烟, 其中, 所述雾化器包括:
用于传送烟油的导油绳;
用于雾化烟油并缠绕在所述导油绳上的电热丝;
用于与所述电热丝及所述电池杆组件电连接的雾化器电极;
用于将所述储油瓶内的烟油传导给所述电热丝的导油机构,所述导油机构 设置有插设在所述储油瓶内的套管及套设在所述套管内的由吸油材料制成的 烟油锁存件, 所述导油绳与所述烟油锁存件相抵接, 所述雾化器电极插设在所 述套管的一端。
所述的电子烟, 其中, 所述电池杆组件包括:
与所述雾化器电极电连接的电池杆电极;
与所述电池杆电极电连接的所述电池;
用于根据用户的吸烟动作生成所述触发信号的所述电子烟的吸烟开关。 所述的电子烟, 其中, 所述储油瓶为透明容器。
所述的电子烟, 其中, 所述储油瓶为玻璃瓶。
本发明提供了一种吸烟控制方法、吸烟控制电路以及电子烟, 该吸烟控制 器根据所述触发信号生成控制信号,电子烟的电池根据所述控制信号为雾化器 供电, 以使所述雾化器雾化烟油以生成烟雾; 所述微处理器根据所述触发信号 将用于模拟水声的音频文件转换为音频信号并发送给电子烟的音频发射模块, 所述音频发射模块接收所述音频信号并将所述音频信号以无线传输方式发送 给与所述电子烟间隔预设距离的外置音频播放装置,以使所述外置音频播放装 置播放所述音频信号。本发明所示的电子烟无需在内部设置有喇叭即可播放音 频文件, 有效的避免了烟油污染所述喇叭, 进而不会有破音情况的出现, 解决 了本领域技术人员一直渴望解决但始终未能获得成功的难题。且所述电池无需 为喇叭供电,从而提升了电子烟雾化器的使用时长,通过外置音频播放装置播 放音频文件,还可通过多个所述外置音频播放装置可使得所述音频信号以立体 的方式进行播放, 而且可以保障播放过程中的音量, 可根据用户的需要控制播 放过程中的音量, 避免播放音量过小无法满足用户的需求。 附图说明
图 1 为本发明实施例所提供的吸烟控制方法的一种较佳实施例步骤流程 图;
图 2 为本发明实施例所提供的吸烟控制方法的另一种较佳实施例步骤流 程图;
图 3 为本发明实施例所提供的吸烟控制电路的一种较佳实施例电路连接 结构示意图;
图 4 为本发明实施例所提供的吸烟控制电路的另一种较佳实施例电路连 接结构示意图;
图 5为本发明实施例所提供的电子烟的一种较佳实施例结构示意图; 图 6为本发明实施例所提供的电子烟的一种较佳实施例剖面结构示意图; 图 7 为本发明实施例所提供的电子烟与外置音频播放装置一种较佳实施 例连接结构示意图。 具体实施方式
实施例一, 结合图 1 所示对本实施例所提供的吸烟控制方法进行详细说 明:
所述吸烟控制方法具体包括: 发信号发送给电子烟内的微处理器;
其中, 若用户通过电子烟吸烟, 则电子烟内部的气压降低, 所述电子烟的 吸烟开关感应到气压的降低则对应生成触发信号; 或者, 用户按压作为吸烟开 关的按键, 以将触发信号发送给电子烟内的微处理器, 在此不作具体限定。 102、 所述微处理器根据所述触发信号生成控制信号;
所述微处理器设置在所述电子烟内部,即所述微处理器接收所述电子烟的 吸烟开关发送的所述触发信号,并根据所述触发信号对应生成可供电电池为雾 化器供电的控制信号。
103、 电子烟的电池根据所述控制信号为雾化器供电;
位于电子烟内部的电池和雾化器与所述微处理器电连接,所述电池根据所 述控制信号为所述雾化器供电, 以使所述雾化器雾化烟油以生成烟雾。
本实施例对所述雾化器的具体结构不作限定,只要该雾化器能够在所述电 池供电的情况下雾化烟油以生成烟雾即可。
104、 所述微处理器根据所述触发信号将用于模拟水声的音频文件转换为 音频信号并发送给电子烟的音频发射模块;
所述微处理器还与所述音频发射模块电连接。
所述微处理器预先获取可模块水声的音频文件,并根据所述触发信号将所 述音频文件转换为音频信号, 并将该音频信号发送给所述音频发射模块。
其中,所述微处理器具体如何将所述音频文件转换为音频信号的为现有技 术, 在本实施例中不作详述。
105、 所述音频发射模块接收所述音频信号并将所述音频信号以无线传输 方式发送给与所述电子烟间隔预设距离的外置音频播放装置。
所述音频发射模块可将其已接收到的音频信号传输给外置音频播放装置。 其中, 所述外置音频播放装置设置在所述电子烟外部, 本实施例对所述外 置音频播放装置不作限定, 只要包括外置的喇叭即可, 例如单独的外置喇叭、 设置有喇叭的音乐播放装置, 如电脑, 手机等等。
本实施例对所述音频发射模块不作限定,只要该音频发射模块可将所述音 频信号以无线传输方式发送给外置音频播放装置即可。
所述外置音频播放装置即可接收所述音频信号,并播放其接收到的所述音 频信号。
本实施例对所述外置音频播放装置与所述电子烟间隔预设距离不作限定, 只要所述电子烟的所述音频发射模块能够将所述音频信号发送至间隔所述预 设距离的所述外置音频播放装置即可。 为更好的说明所述电子烟与所述外置音频播放装置的位置关系,请参见图
7所示;
即本实施例对所述外置音频播放装置 702的具体数目不作限定,进一步的 参见图 7所示, 即本实施例所示的所述外置音频播放装置 702至少为一个,较 佳的, 所述外置音频播放装置 702的数目为多个,且可将多个所述外置音频播 放装置 702放置于不同位置,且多个所述外置音频播放装置 702同时接收所述 电子烟 701通过无线传输方式发送的所述音频信号, 以同时播放该音频信号, 进而为用户呈现立体的播放效果。
本实施例所示的电子烟无需在内部设置有喇叭即可播放音频文件,有效的 避免了烟油污染所述喇叭, 进而不会有破音情况的出现。 本实施例中的电子烟 内部的电池无需为喇八供电,从而提升了电子烟雾化器的使用时长。且本实施 例通过外置音频播放装置播放音频文件,通过多个所述外置音频播放装置可使 得所述音频信号以立体的方式进行播放, 而且可以保障播放过程中的音量, 可 根据用户的需要控制播放过程中的音量,避免播放音量过小无法满足用户的需 求。
实施例二,结合图 2所示对可控制外置音频播放装置播放不同音频的吸烟 控制方法进行详细说明: 发信号发送给电子烟内的微处理器;
202、 所述微处理器根据所述触发信号生成控制信号;
203、 电子烟的电池根据所述控制信号为雾化器供电;
本实施例所示的步骤 201至步骤 203的具体过程请见图 1所示的步骤 101 至步骤 103所示, 在本实施例中不做赘述。
204、 所述微处理器根据所述触发信号获取存储在存储模块内的用于模拟 水声的所述音频文件;
其中,所述存储模块与所述微控制器电连接,且所述存储模块存储有用于 模拟水声的所述音频文件。
用于模拟水声的所述音频文件可为所述存储模块预先存储的,或用户将外 部的用于模拟水声的音频文件导入至所述存储模块内的,具体方式在本实施例 中不做赘述。
205、 所述微处理器将所述音频文件转换为所述音频信号并发送给所述音 频发射模块;
所述微处理器从将所述音频信号发送给电子烟的所述音频发射模块。 在本实施例中, 所述音频发射模块为 WIFI模块、 ZigBee模块、 红外线模 块、 微波模块、 蓝牙模块、 调频广播模块或釆用 2.4GHz进行数据传输的射频 接口。
需明确的是, 本实施例对所述音频发射模块不作限定, 只要其能够通过无 线的方式发送所述音频信号即可。
206、 所述音频发射模块接收所述音频信号并将所述音频信号以无线传输 方式发送给与所述电子烟间隔预设距离的外置音频播放装置;
本实施例所示的步骤 206与图 1所示的步骤 105过程相同,在本实施例中 不做赘述。
实施例三, 本实施例对可提升发声效果的吸烟控制电路进行详细说明: 如图 3所示, 所述吸烟控制电路包括:
用于根据用户的吸烟动作生成触发信号的电子烟的吸烟开关 301 ;
具体的,即所述吸烟开关 301可检测到因用户的吸烟动作使得所述电子烟 内部的气压降低, 则对应生成触发信号;
用于根据所述触发信号生成控制信号以及用于根据所述触发信号将用于 模拟水声的音频文件转换为音频信号的微处理器 302;
电池 303;
用于雾化烟油以生成烟雾的雾化器 304;
所述电池 303用于根据所述控制信号为所述雾化器 304供电,以使所述雾 化器 304雾化烟油以生成烟雾;
用于将所述音频信号发送给外置音频播放装置的音频发射模块 305; 所述音频发射模块 305 用于所述音频信号以无线传输方式发送给与所述 电子烟间隔预设距离的外置音频播放装置;
其中, 所述吸烟开关 301、 所述电池 303、 所述雾化器 304、 所述音频发 射模块 305分别与所述微处理器 302电连接。 本实施例所示的吸烟控制电路中无需设置喇叭,进而使得电池 303无需为 喇口八供电,从而提升了所述雾化器 304的使用时长。且本实施例通过外置音频 播放装置播放音频文件,通过多个所述外置音频播放装置可使得所述音频信号 以立体的方式进行播放, 而且可以保障播放过程中的音量, 可根据用户的需要 控制播放过程中的音量, 避免播放音量过小无法满足用户的需求。
实施例四,本实施例结合图 4所示对所述吸烟控制电路的具体结构进行进 一步详细说明:
如图 4所示, 所述吸烟开关 401、 所述电池 403、 所述雾化器 404、 所述 音频发射模块 405分别与所述微处理器 402电连接;
其中, 所述吸烟开关 401、 所述电池 403、 所述雾化器 404、 所述音频发 射模块 405以及所述微处理器 402具体请见图 3所示的实施例,在本实施例中 不做赘述;
其中, 所述音频发射模块 405为 WIFI模块、 ZigBee模块、 红外线模块、 微波模块、蓝牙模块、调频广播模块或釆用 2.4GHz进行数据传输的射频接口。
具体的, 所述吸烟控制电路还包括:
与所述微处理器 402电连接的,用于存储模拟水声的音频文件的存储模块
406;
所述存储模块 406存储有用于模拟水声的音频文件,以使电子烟能够模拟 水烟的发声效果。
与所述微处理器 402电连接的,用于为所述电池 403进行充电的充电接口
407;
本实施例中, 所述充电接口 407为 USB接口为例进行说明。
分别与所述充电接口 407和所述电池 403电连接的, 用于对所述电池 403 进行保护的电池保护模块 408;
通过所述电池保护模块 408以防止外部电源对所述电池 403进行过冲,以 保障所述电池 403的寿命。
分别与所述电池 403和所述微处理器 402 电连接的, 用于检测所述电池 403电压的氏压检测模块 409;
通过所述低压检测模块 409使得若所述低压检测模块 409确定所述电池 403所输出的电压不满足要求时, 则所述微处理器 402控制所述电池 403不再 为所述雾化器 404供电, 以延长电池 403的使用寿命。
分别与所述电池保护模块 408和所述微处理器 402电连接的,用于调整所 述电池电压的电压调整模块 410;
通过所述电压调整模块 410以使所述电池 403所输出的电压满足要求,防 止过高的电压烧坏所述雾化器 404。
分别与所述雾化器 404和所述微处理器 402电连接的,用于检测输出给所 述雾化器 404电压的电压检测模块 411 ;
通过所述电压检测模块 411以使所述微处理器 402能够确定输出给所述雾 化器 404的电压,以检测输出给所述雾化器 404的电压是否正常;若电压过高, 则所述雾化器 404停止所述电池 403为所述雾化器 404供电,以防止过大的电 压烧坏所述雾化器 404; 若电压过低, 则所述微处理器 402提醒用户充电。
分别与所述雾化器 404和所述微处理器 402电连接的,用于检测输出给所 述雾化器 404电流的电流检测模块 412。
通过所述电流检测模块 412以使所述微处理器 402确定输出给所述雾化器
404的电流是否正常。
为进一步的提升用户使用过程中的体验, 进一步参见图 4所示, 与所述微 处理器 402电连接设置有发光元件 413; 在具体应用本实施例所示的吸烟控制电路时,若所述微处理器 402控制所 述电池 403为所述雾化器 404供电的同时,所述微处理器 402控制所述发光元 件 413发光, 以模拟真实吸烟的发光效果;
具体的,所述微处理器 402可控制所述发光元件 413以一定频率闪烁发光 或多个所述发光元件 413呈跑马灯的发光效果。 可通过所述发光元件 413发光以指示用户通过外部电源为所述电池 403充电等 等。
实施例六, 如图 5所示, 本实施例提供了一种电子烟;
所述电子烟包括电子烟本体,在所述电子烟本体内部设置有如实施例三和 实施例四所述的吸烟控制电路,在本实施例中对所述吸烟控制电路的具体电路 连接结构不做赘述。
以下结合图 5所示对电子烟本体的具体结构进行详细说明:
所述电子烟本体设置有吸烟端 501 ; 即用户通过该吸烟端 501即可抽吸到 烟雾。
所述电子烟本体还包括: 用于雾化烟油的雾化器 503、 用于给所述雾化器 503供电的电池杆组件 502;
具体的, 所述电子烟本体还包括: 用于存储烟油的储油瓶 504, 由图 5所 示可知,所述储油瓶 504设置于所述电子烟本体上远离所述吸烟端 501的一端。
因本实施例中, 所述储油瓶 504距离所述吸烟端 501的位置较远,从而有 效的避免所述储油瓶 504所存储的烟油泄露到吸烟端 501以被用户吸食。
更具体的, 所述雾化器 503位于所述电池杆组件 502和所述储油瓶 504 之间, 且所述电池杆组件 502、 所述雾化器 503和所述储油瓶 504同轴设置。
为更好的说明本实施例所示的电子烟的具体结构, 请参见图 6所示, 图 6 为本实施例所提供的电子烟的剖面结构示意图;
在本种设置方式中, 所述电池杆组件 502内部还设置有用于流通烟雾, 以 将所述雾化器 503所雾化的烟雾导通至所述吸烟端 501的烟雾通道 601。
其中,所述烟雾在所述电子烟本体内部的气流方向请参见图 6所示的箭头 方向。
所述雾化器 503—端插设在所述储油瓶 504内以将所述储油瓶 504内的烟 油导出并雾化。
结合图 5和图 6所示可知,所述储油瓶 504设置于所述电子烟本体上远离 所述吸烟端 501的一端, 釆用此种设置方式的优势在于, 因储油瓶 504设置的 位置远离吸烟端 501, 使得位于所述电池杆组件 502内的烟雾通道 601不会经 过该储油瓶 504, 从而使得储油瓶 504内未经雾化的烟油不会泄露到烟雾通道 601内, 进而使得用户不会吸食到未经雾化的烟油, 从而有效的避免了烟油的 泄露。 而且不流经储油瓶 504的烟雾通道 601还可避免烟雾在烟雾通道 601 内冷凝, 从而有效的避免冷凝后的烟油堵塞烟雾通道 601。
具体的, 所述电池杆组件 502、 所述吸烟端 501以及所述雾化器 503同轴 设置, 釆用该种设置方式可使得电子烟的外形直观的模拟了真实的香烟,符合 用户的使用习惯, 且使整体的烟雾通道 601较直, 可有效减少积油的现象。
且在本实施例中,所述雾化器 503位于所述电池杆组件 502和所述储油瓶 504之间, 即雾化器 503离吸烟端 501的位置较远, 而用户釆用本实施例所提 供的电子烟进行吸烟时, 雾化器 503的位置离用户口腔的位置较远, 即可使得 雾化器 503雾化烟油时所产生的热量不会烫伤用户,有效的提升了电子烟的使 用安全, 而且用户吸烟过程中通常会夹持电池杆组件 502进行吸烟, 而避免了 现有技术中夹持发热的雾化器 503进行吸烟,使得用户在使用本实施例所提供 的电子烟进行吸烟时手部不会出现烫伤的情况, 有效的模拟了真实香烟的温 度, 提升用户吸烟过程中的使用体验。
进一步的, 所述储油瓶 504与所述雾化器 503为可拆卸连接和 /或所述雾 化器 503与所述电池杆组件 502为可拆卸连接。
具体的, 所述储油瓶 504与所述雾化器 503和 /或所述雾化器 503与所述 电池杆组件 502的可拆卸的连接方式可为螺纹连接或卡合连接等,具体的连接 方式在本实施例中不作限定, 只要使得所述储油瓶 504与所述雾化器 503和 / 或所述雾化器 503与所述电池杆组件 502的可拆卸连接即可。
釆用上述可拆卸的连接方式的优势在于, 方便用户随时更换雾化器 503 或以及随时拆卸储油瓶 504, 从而方便用户往储油瓶 504内加烟油或更换该储 油瓶 504。 当然, 所述储油瓶 504与所述雾化器 503之间和 /或所述雾化器 503 与所述电池杆组件 502的连接方式可为不可拆卸的连接方式, 在此不作限定。
本实施例所示的电子烟的整体结构模仿了香烟,电子烟的长度与香烟的长 度相当,且为了减少充电频率以及增加电池杆组件 502的使用寿命, 电池杆组 件 502的长度至少可占电子烟整体长度的一半以上,在用户使用本实施例所示 的电子烟进行吸烟时, 会自然的夹持电子烟的中上部靠近吸烟端 501的位置, 因本实施例中的储油瓶 504设置在远离吸烟端 501 的一端, 所以储油瓶 504 避免受到用户夹持力,从而使储油瓶 504向雾化器 503输出烟油量较为均衡的, 有效的保障了烟雾的稳定, 提高了用户体验。 避免了现有技术中, 因用户对储 油器端部的作用力不同, 而使烟油供给量不同, 导致烟雾量时大时小的情况。
进一步如图 6所示, 对所述雾化器 503的具体结构进行详细说明: 如图 6所示, 所述雾化器 503包括:
用于传送烟油的导油绳;
用于雾化烟油并缠绕在所述导油绳上的电热丝 602;
用于与所述电热丝 602及所述电池杆组件 502电连接的雾化器电极 603; 用于将所述储油瓶 504内的烟油传导给所述电热丝 602的导油机构 604, 所述导油机构 604设置有插设在所述储油瓶内的套管及套设在所述套管内的 由吸油材料制成的烟油锁存件 605,所述导油绳与所述烟油锁存件 605相 4氐接, 所述雾化器电极 603插设在所述套管的一端。
为更好使得位于所述储油瓶 504 内的烟油能够传导至所述烟油锁存件 605 , 则所述套管由可吸油材料制成。
本实施例对所述可吸油材料不作限定, 例如有玻纤材质制成等; 所述烟油 锁存件 605可由棉或玻璃纤维等材质制成, 在此不作具体限定。
或还在所述套管上开设有通孔,在本实施例中, 所述导油绳的至少一端插 设在所述烟油锁存件 605内,以使所述烟油锁存件 605所存储的烟油能够均匀、 恒定的传导至所述电热丝 602。 所述导油绳的横截面积小于所述烟油锁存件 605的横截面积, 所述烟油锁存件 605的外周面与所述套管的内周面相贴合并 弹性抵接, 以更好地输送烟油及避免漏油。 此外, 此种结构使得烟油输送路径 呈阶梯状结构,烟油锁存件 605的吸油状态基本为饱和状态而导油绳的吸油状 态基本为适中的状态,从而保证导油绳能够随时从所述烟油锁存件 605获取所 需的烟油, 不仅能够进一步较好地提高烟雾量, 防止电热丝 602干烧, 而且能 够防止所述储油瓶 504 内的烟油泄露出来, 保证了电子烟能产生稳定的烟雾 量。
本实施例对所述电热丝的具体结构的设置方式为举例进行说明, 不作限 定,例如还在所述烟油锁存件 605靠近所述吸烟端 501的端面覆盖设置有玻纤 布,在该玻纤布上设置有压制成片状且缠绕成螺旋形的电热丝,且该电热丝所 位于的平面与电子烟的轴向垂直或呈一定角度,从而可进一步的防止电热丝干 烧。
进一步如图 6所示, 所述电池杆组件 502包括:
与所述雾化器电极 603电连接的电池杆电极 606; 与所述电池杆电极 606电连接的所述电池 607;
用于根据用户的吸烟动作生成所述触发信号的所述电子烟的吸烟开关
608。
为使得用户能够掌握储油瓶 504 内部的烟油的剩余量, 则该储油瓶 504 为透明容器,即使得用户通过透明的储油瓶 504即可随时掌握电子烟的剩余烟 油量, 便于用户及时的更换储油瓶 504。
较佳的是, 所述储油瓶 504为玻璃瓶。 由于玻璃材质性质较稳定, 避免因 发生化学反应等情况而影响烟油味。
更佳的是,该玻璃制成的储油瓶 504的外周壁上设置有刻度,从而使得用 户可估计出剩余烟油量可供吸食的时长, 方便用户使用。
较佳的是, 在所述储油瓶 504套设有保护套(图中未示出), 以避免所述 玻璃材质的储油瓶 504因跌落而破碎的情况。
更佳的是, 所述保护套设置有烟油观察窗, 以供用户观察烟油。
所属领域的技术人员可以清楚地了解到, 为描述的方便和简洁, 上述描述 的系统,装置和单元的具体工作过程,可以参考前述方法实施例中的对应过程, 在此不再赘述。
以上实施例仅用以说明本发明的技术方案, 而非对其限制; 尽管参照前述 实施例对本发明进行了详细的说明, 本领域的普通技术人员应当理解: 其依然 可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进 行等同替换; 而这些修改或者替换, 并不使相应技术方案的本质脱离本发明各 实施例技术方案的精神和范围。

Claims

权 利 要 求
1、 一种吸烟控制方法, 其特征在于, 包括: 发送给电子烟内的微处理器;
所述微处理器根据所述触发信号生成控制信号;
电子烟的电池根据所述控制信号为雾化器供电,以使所述雾化器雾化烟油 以生成烟雾;
所述微处理器根据所述触发信号将用于模拟水声的音频文件转换为音频 信号并发送给电子烟的音频发射模块;
所述音频发射模块接收所述音频信号并将所述音频信号以无线传输方式 发送给与所述电子烟间隔预设距离的外置音频播放装置,以使所述外置音频播 放装置播放所述音频信号。
2、 根据权利要求 1所述的吸烟控制方法, 其特征在于, 电子烟的存储模 块存储有用于模拟水声的所述音频文件;所述微处理器根据所述触发信号将用 于模拟水声的音频文件转换为音频信号并发送给电子烟的音频发射模块包括: 所述微处理器根据所述触发信号获取存储在所述存储模块内的用于模拟 水声的所述音频文件;
所述微处理器将所述音频文件转换为所述音频信号并发送给所述音频发 射模块。
3、 根据权利要求 1或 2所述的吸烟控制方法, 其特征在于, 所述音频发 射模块为 WIFI模块、 ZigBee模块、 红外线模块、 微波模块、 蓝牙模块、 调频 广播模块或釆用 2.4GHz进行数据传输的射频接口。
4、 一种吸烟控制电路, 其特征在于, 包括: 用于根据用户的吸烟动作生 成触发信号的电子烟的吸烟开关、用于根据所述触发信号生成控制信号以及用 于根据所述触发信号将用于模拟水声的音频文件转换为音频信号的微处理器、 电池、用于雾化烟油以生成烟雾的雾化器、用于将所述音频信号以无线传输方 式发送给与所述电子烟间隔预设距离的外置音频播放装置的音频发射模块; 其中, 所述吸烟开关、 所述电池、 所述雾化器、 所述音频发射模块分别与 所述微处理器电连接。
5、 根据权利要求 4所述的吸烟控制电路, 其特征在于, 所述吸烟控制电 路还包括:
与所述微处理器电连接的, 用于存储模拟水声的音频文件的存储模块; 与所述微处理器电连接的, 用于为所述电池进行充电的充电接口; 分别与所述充电接口和所述电池电连接的,用于对所述电池进行保护的电 池保护模块;
分别与所述电池和所述微处理器电连接的,用于检测所述电池电压的低压 检测模块;
分别与所述电池保护模块和所述微处理器电连接的,用于调整所述电池电 压的电压调整模块;
分别与所述雾化器和所述微处理器电连接的,用于检测输出给所述雾化器 电压的电压检测模块;
分别与所述雾化器和所述微处理器电连接的,用于检测输出给所述雾化器 电流的电流检测模块。
6、 根据权利要求 4或 5所述的吸烟控制电路, 其特征在于,
与所述微处理器电连接设置有至少一个发光元件。
7、根据权利要求 4所述的吸烟控制电路, 其特征在于, 所述音频发射模 块为 WIFI模块、 ZigBee模块、 红外线模块、 微波模块、 蓝牙模块、 调频广播 模块或釆用 2.4GHz进行数据传输的射频接口。
8、 一种电子烟, 其特征在于, 包括电子烟本体, 所述电子烟本体包括权 利要求 4至 7任一项所述的吸烟控制电路;
所述电子烟本体设置有吸烟端、用于容纳所述烟油的储油瓶、所述雾化器 以及设置有所述电池的电池杆组件;
所述雾化器、所述储油瓶和所述电池杆组件同轴设置,且所述储油瓶设置 于所述电子烟本体上远离所述吸烟端的一端;
所述雾化器位于所述电池杆组件和所述储油瓶之间,且一端插设在所述储 油瓶内以将所述储油瓶内的烟油导出并雾化。
9、 根据权利要求 8所述的电子烟, 其特征在于,
所述储油瓶与所述雾化器为可拆卸连接; 和 /或,
所述雾化器与所述电池杆组件为可拆卸连接。
10、 根据权利要求 8或 9所述的电子烟, 其特征在于, 所述雾化器包括: 用于传送烟油的导油绳;
用于雾化烟油并缠绕在所述导油绳上的电热丝;
用于与所述电热丝及所述电池杆组件电连接的雾化器电极;
用于将所述储油瓶内的烟油传导给所述电热丝的导油机构,所述导油机构 设置有插设在所述储油瓶内的套管及套设在所述套管内的由吸油材料制成的 烟油锁存件, 所述导油绳与所述烟油锁存件相抵接, 所述雾化器电极插设在所 述套管的一端。
11、根据权利要求 10所述的电子烟,其特征在于, 所述电池杆组件包括: 与所述雾化器电极电连接的电池杆电极;
与所述电池杆电极电连接的所述电池;
用于根据用户的吸烟动作生成所述触发信号的所述电子烟的吸烟开关。
12、 根据权利要求 11所述的电子烟, 其特征在于, 所述储油瓶为透明容 哭 o
13、根据权利要求 12所述的电子烟, 其特征在于, 所述储油瓶为玻璃瓶。
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