WO2016074236A1 - 一种电子烟以及电子烟雾化控制方法 - Google Patents

一种电子烟以及电子烟雾化控制方法 Download PDF

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Publication number
WO2016074236A1
WO2016074236A1 PCT/CN2014/091163 CN2014091163W WO2016074236A1 WO 2016074236 A1 WO2016074236 A1 WO 2016074236A1 CN 2014091163 W CN2014091163 W CN 2014091163W WO 2016074236 A1 WO2016074236 A1 WO 2016074236A1
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WIPO (PCT)
Prior art keywords
sleeve
conductive
electronic cigarette
atomizing
atomizer
Prior art date
Application number
PCT/CN2014/091163
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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 CN201480079378.3A priority Critical patent/CN106686993A/zh
Priority to PCT/CN2014/091163 priority patent/WO2016074236A1/zh
Priority to US15/150,632 priority patent/US9943110B2/en
Publication of WO2016074236A1 publication Critical patent/WO2016074236A1/zh

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    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B1/00Details of electric heating devices
    • H05B1/02Automatic switching arrangements specially adapted to apparatus ; Control of heating devices
    • H05B1/0227Applications
    • 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
    • A24F40/60Devices with integrated user interfaces
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B3/00Ohmic-resistance heating
    • H05B3/0014Devices wherein the heating current flows through particular resistances
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B3/00Ohmic-resistance heating
    • H05B3/40Heating elements having the shape of rods or tubes
    • H05B3/42Heating elements having the shape of rods or tubes non-flexible
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/10Devices using liquid inhalable precursors
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B2203/00Aspects relating to Ohmic resistive heating covered by group H05B3/00
    • H05B2203/014Heaters using resistive wires or cables not provided for in H05B3/54
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B2203/00Aspects relating to Ohmic resistive heating covered by group H05B3/00
    • H05B2203/021Heaters specially adapted for heating liquids
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B2203/00Aspects relating to Ohmic resistive heating covered by group H05B3/00
    • H05B2203/022Heaters specially adapted for heating gaseous material

Definitions

  • the invention relates to the field of electronic cigarettes, in particular to an electronic cigarette and an electronic aerosolization control method.
  • E-cigarettes are a new type of electronic product that has the same appearance as ordinary cigarettes and the same taste as cigarettes, but e-cigarettes are healthier and more environmentally friendly than traditional cigarettes.
  • the electronic cigarettes of the prior art generally consist of an atomizing assembly for atomizing the smoke oil and a battery assembly for powering the atomizing assembly.
  • an existing electronic cigarette adopts a control circuit integrated with an air flow sensor to control the electronic cigarette, and when the user smokes the electronic cigarette, the air pressure in the electronic cigarette changes, thereby causing the film capacitance of the air flow sensor to occur. deformation.
  • a trigger signal is sent to the microprocessor in the control circuit to cause the microprocessor to control the battery assembly to power the atomizing assembly to atomize the smoke to generate smoke.
  • Another type of electronic cigarette in the prior art controls the electronic cigarette by replacing the air flow sensor with a mechanical button switch to realize atomized smoke oil. Since the frequency of pressing the button during smoking of the electronic cigarette is high, the button switch is prone to failure during the long-term pressing process, and thus the electronic cigarette is controlled by using a touch switch instead of the above-mentioned button switch on some electronic cigarettes.
  • the above-mentioned electronic cigarette controlled by the push button switch or the touch switch also has the situation that the electronic cigarette automatically works due to the pressing, the touch of the packaging person or the touch of the transporter during the packaging or transportation, and if the user needs to smoke Smoking fog, the need to press the button switch or touch switch, increases the user's step of smoking smoke, thereby improving the user's operation complexity in the process of pumping the electronic cigarette, reducing the user experience in the process of smoking smoke.
  • Embodiments of the present invention provide an electronic cigarette and an electronic aerosolization control method.
  • An electronic cigarette comprising an atomizer and a battery rod assembly detachably coupled to the atomizer, wherein the battery rod assembly is provided with a device for supplying power to the atomizer to atomize the atomizer a battery of smoky oil, the electronic cigarette further comprising a control unit electrically connected to the atomizer and the battery rod assembly;
  • the atomizer includes an oil cup assembly, a suction nozzle and an atomizing core, the oil cup assembly including an oil storage sleeve and a vent tube inserted in the oil storage sleeve, the oil cup assembly facing away from the battery rod
  • One end of the assembly is provided with the nozzle made of a conductive material
  • the other end of the oil cup assembly is provided with the atomizing core for atomizing the smoke oil detachably connected to the oil cup assembly.
  • the atomizing core is provided with a smoke passage and an elastic conductive arm extending into the smoke passage, and the vent pipe made of a conductive material is inserted into the smoke passage and elastically resists the elastic conductive arm.
  • the elastic conductive arm is electrically connected to the control unit, and the elastic conductive arm is electrically connected to the nozzle through the vent tube, and an outer peripheral surface of the battery rod assembly is provided with a conductive connection electrically connected to the control unit set;
  • the user can contact the nozzle and the conductive sleeve through the skin when smoking, so that the nozzle and the conductive sleeve are turned on, and the control unit detects that the nozzle and the conductive sleeve are turned on.
  • the battery is controlled to power the atomizer to atomize the smoke oil.
  • the control unit is disposed in the battery rod assembly, and one end of the atomization core is provided with a conductive ring sleeved on the smoke passage, and an inner circumferential surface of the conductive ring is away from the nozzle
  • One or more of the elastic conductive arms are formed obliquely to the direction, and the other end of the atomizing core is provided with an atomizing electrode assembly for electrically connecting with the battery rod assembly and the control unit, the vent tube is inserted
  • the elastic conductive arm is elastically held on the side wall of the vent pipe, and one of the elastic conductive arms is electrically connected to the atomizing electrode assembly through a wire.
  • the sidewall of the atomizing core is provided to be connected to the outer surface of the atomizer and the smoke passage An air inlet opening, the atomizing electrode assembly is blocked at one end of the smoke passage to isolate the smoke passage from the battery rod assembly.
  • the atomization core comprises a hollow atomization seat, a smoke passage is formed in the atomization seat, and an oil storage chamber is disposed between the smoke passage and the inner peripheral wall of the oil storage sleeve, and the atomization
  • the side wall of the seat is provided with an oil inlet passage communicating with the oil storage chamber, and the atomization electrode assembly is inserted into one end of the atomization seat, and the smoke passage is provided with a passage for the oil passage a smoke adsorbing member for adsorbing the smoke oil in the oil storage chamber; and a heating wire for atomizing the smoke oil on the oil adsorbing member, the atomizing electrode assembly comprising the atomizing seat a first insulating sleeve, a first electrode inserted in the first insulating sleeve, a second insulating sleeve inserted in the first electrode, and a second inserted in the second insulating sleeve
  • An electrode, the second electrode is a solid cylindrical structure
  • the electronic cigarette further comprises a wire for electrically connecting the elastic conductive arm and the atomizing electrode assembly, wherein one end of the wire is welded to the elastic conductive arm, and the other end of the wire Clamped between the second electrode and the second insulating sleeve.
  • the atomizing core further comprises an atomizing cover disposed on an end of the atomizing seat facing away from the battery rod assembly, and an insulating member disposed in the atomizing cover and sleeved on the venting tube and An elastic sealing member, wherein two ends of the elastic sealing member respectively abut the end wall of the atomizing cover and the insulating member, and two ends of the insulating member respectively correspond to the elastic sealing member and the atomizing seat One end abuts, and the conductive ring is sandwiched between the insulating member and the elastic seal.
  • the oil storage sleeve is made of a light-transmissive non-metal material
  • the suction nozzle is made of a metal material and is fixed at one end of the oil storage sleeve, and the oil storage sleeve faces away from the suction nozzle.
  • a connecting sleeve for detachably connecting with the atomizing core is fixedly disposed at one end.
  • the battery rod assembly comprises the conductive sleeve made of a metal material, the battery inserted in the conductive sleeve, and the one end of the conductive sleeve inserted for the atomizer
  • the connecting connector is inserted into the end cover of the conductive sleeve facing away from the end of the connecting head, and the control unit is disposed in the battery rod assembly.
  • the connector includes a connection sleeve electrically connected to the control unit, and a first elastic electrode and a second elastic electrode interposed in the connection sleeve, wherein the first elastic electrode is located in the battery rod assembly The first elastic electrode and the second elastic electrode elastically abut the atomizing core at an axial line position And electrically connected.
  • the first elastic electrode comprises a fixing sleeve, an electrode column movably inserted in the fixing sleeve and extending outside the fixing sleeve, and two ends respectively elastically resisting the fixing sleeve and the electrode column In the upper elastic member, an end of the electrode column facing away from the elastic member elastically abuts against the atomizing core.
  • control unit comprises a microprocessor, a filtering unit electrically connected to the conductive sleeve for filtering an input signal, and a connection with the filtering unit for transmitting a signal output by the filtering unit to the a first transistor switching unit of the microprocessor, a second transistor switching unit electrically connected to the microprocessor and the atomizer, the microprocessor configured to control the first signal according to a signal input by the first transistor switching unit
  • the two-transistor switching unit is turned on and off to control whether the atomizer atomizes the smoke oil.
  • control module includes a microprocessor, a filtering unit electrically connected to the conductive sleeve for filtering an input signal, and an electrical connection with the filtering unit for comparing signals output by the filtering unit and Comparing the result to a comparison circuit unit of the microprocessor, a third transistor switch unit electrically connected to the microprocessor and the atomizer, the microprocessor for controlling the signal according to the signal input by the comparison circuit unit
  • the third transistor switching unit is turned on and off to control whether the atomizing component atomizes the smoke oil.
  • An electronic aerosolization control method comprising:
  • the control unit disposed inside the electronic cigarette detects whether the nozzle and the conductive sleeve are turned on, and the electronic cigarette is further provided with a battery rod assembly for supplying power to the atomizer, and the conductive sleeve is disposed on the outer peripheral surface of the battery rod assembly.
  • the nozzle and the conductive sleeve are both made of a conductive material, and the nozzle and the conductive sleeve are electrically connected to the control unit;
  • control unit controls the battery rod assembly to power the atomizer to atomize the soot.
  • the invention provides an electronic cigarette and an electronic aerosolization control method, the electronic cigarette comprising an atomizer and a battery rod assembly, the atomizer being detachable by the oil cup assembly and the atomizing core
  • the connection is formed, that is, when the atomizer is assembled, the atomizing core is inserted at one end of the oil cup assembly away from the nozzle, thereby simplifying the assembly process, improving assembly efficiency, and if atomizing If the core or oil cup assembly is damaged, only the damaged atomizing core or the oil cup assembly can be replaced, and the atomizer is not required to be replaced as a whole, thereby reducing the maintenance cost of the subsequent use of the electronic cigarette, and the atomizing core is inserted in the
  • the vent pipe is inserted into the smoke passage so that the snorkel is located in the smoke passage
  • the side wall abuts the elastic conductive arm extending into the smoke passage, so that the elastic conductive arm is in a compressed state, which can effectively improve the stability of the electrical connection relationship between the atom
  • the battery casing is provided with an electrically conductive conductive sleeve, and the user can contact the nozzle and the conductive sleeve through the skin when smoking, so that the nozzle and the conductive sleeve are turned on, and the control unit detects Controlling the battery to supply power to the atomizer to atomize the smoke oil when the nozzle and the conductive sleeve are turned on, and effectively avoiding the automatic atomizer without increasing the redundant operation of the user.
  • the work is convenient for the user to operate, and the waste of the oil and the waste of the electric energy can be avoided, the service life of the electronic cigarette is improved, and the transportation process and the safety during use are improved.
  • FIG. 1 is a schematic diagram of an explosive connection structure of a preferred embodiment of an electronic cigarette according to an embodiment of the present invention
  • FIG. 2 is a schematic diagram of an explosive cross-sectional connection structure of an electronic cigarette according to an embodiment of the present invention
  • FIG. 3 is a schematic cross-sectional structural view of a preferred embodiment of an electronic cigarette according to an embodiment of the present invention.
  • FIG. 4 is a schematic partial cross-sectional structural view of an electronic cigarette according to an embodiment of the present invention.
  • FIG. 5 is a schematic partial cross-sectional structural view of an electronic cigarette according to an embodiment of the present invention.
  • FIG. 6 is a schematic diagram of an explosive connection structure of an atomizing core according to an embodiment of the present invention.
  • FIG. 7 is a schematic diagram of an overall structure of an atomizing core according to an embodiment of the present invention.
  • FIG. 8 is a schematic cross-sectional structural view of an atomizer according to an embodiment of the present invention.
  • FIG. 9 is a schematic cross-sectional structural view of a battery rod assembly according to an embodiment of the present invention.
  • FIG. 10 is a schematic diagram of an explosive connection structure of a battery rod assembly according to an embodiment of the present invention.
  • FIG. 11 is a schematic cross-sectional structural view of a first elastic electrode according to an embodiment of the present invention.
  • FIG. 12 is a schematic overall structural view of a battery rod assembly according to an embodiment of the present invention.
  • FIG. 13 is a schematic structural diagram of a circuit connection of a control unit according to an embodiment of the present invention.
  • FIG. 14 is a schematic diagram of another circuit connection structure of a control unit according to an embodiment of the present invention.
  • FIG. 15 is a schematic diagram of another circuit connection structure of a control unit according to an embodiment of the present invention.
  • FIG. 16 is a schematic diagram of another circuit connection structure of a control unit according to an embodiment of the present invention.
  • FIG. 17 is a schematic diagram of another circuit connection structure of a control unit according to an embodiment of the present invention.
  • FIG. 18 is a flow chart of steps of an electronic aerosolization control method according to an embodiment of the present invention.
  • Embodiment 1 This embodiment describes in detail the specific structure of the electronic cigarette capable of preventing the electronic cigarette from automatically working and improving the user's operating experience:
  • FIG. 1 is a schematic diagram of an explosive connection structure of an electronic cigarette according to an embodiment of the present invention
  • FIG. 2 is an electronic cigarette provided by an embodiment of the present invention
  • FIG. 3 is a schematic cross-sectional structural view of a preferred embodiment of an electronic cigarette according to an embodiment of the present invention.
  • the electronic cigarette includes:
  • a battery rod assembly 200 disposed in connection with the atomizer
  • the battery rod assembly 200 includes a battery 210 for powering the atomizer 100 to cause the atomizer 100 to atomize smoke oil to form smoke;
  • the electronic cigarette provided in this embodiment is assembled by the atomizer 100 and the battery rod assembly 200 to form an electronic cigarette body, and the atomizer 100 and The battery rod assembly 200 is coaxially disposed, the atomizer 100 is located at an upper end of the electronic cigarette body, and the battery rod assembly 200 is located at a lower end of the electronic cigarette body.
  • the electronic cigarette as a whole mimics the shape of the real cigarette, which is more in line with the user's usage habits, and the atomizer 100 is disposed close to the suction nozzle 300 for sucking the smoke, thereby avoiding the condensation of the mist atomized by the atomizer 100. The situation arises to prevent the user from pumping smoke oil.
  • a control unit is disposed in electrical connection with the atomizer 100 and the battery rod assembly 200, and the specific structure and specific setting position of the control unit are not limited in this embodiment, as long as the control unit can be operated according to a user corresponding operation.
  • the battery rod assembly 200 can supply power to the atomizer 100.
  • the atomizer 100 includes: an oil cup assembly 110, an atomizing core 120, and a suction nozzle 300;
  • the oil cup assembly 110 specifically includes:
  • Oil storage jacket 111
  • One end of the oil cup assembly 110 facing away from the battery rod assembly 200 is provided with the nozzle 300 made of a conductive material, and the nozzle 300 is electrically connected to the vent tube 112 to make the atomization
  • the mist atomized by the device 100 can be conducted to the suction nozzle 300 via the vent pipe 112 to enable the user to draw the smoke through the suction nozzle 300.
  • the nozzle 300 can be fixedly connected or detachably connected to the oil storage sleeve 111.
  • the detachable connection can be a threaded connection, a snap connection, or the like.
  • the detachable connection between the suction nozzle 300 and the oil storage sleeve 111 is convenient for the user to replace the suction nozzle 300 by using a detachable connection, thereby improving the hygiene in the process of using the electronic cigarette.
  • the other end of the oil cup assembly 110 is provided with an atomizing core 120 for detachably connecting the oil cup assembly 110 for atomizing the smoke oil;
  • connection structure of the oil cup assembly 110 and the atomization core 120 is shown in FIG. 3 , and the specific structure of the atomization core 120 is shown in FIG. 5 ;
  • One end of the atomizing core 120 is connected to the vent tube 112, and the other end of the atomizing core 120 is connected to the battery rod assembly 200 (as shown in FIG. 3).
  • the atomizer 100 is formed by detachably connecting the oil cup assembly 110 and the atomizing core 120, that is, when the atomizer 100 is assembled, the atomizing core 120 is inserted.
  • the oil cup assembly 110 is located away from the end of the suction nozzle 300, thereby simplifying the assembly process, improving the assembly efficiency, and if the atomization core 120 or the oil cup assembly 110 is damaged, only the damaged atomization core is replaced. 120 or the oil cup assembly 110 can be used without the need to replace the atomizer 100 as a whole, thereby reducing the maintenance cost of the subsequent use of the electronic cigarette, and the user only needs to replace the atomizing core 120 or the oil cup assembly 110 when replacing the atomizing core 120 or the oil cup assembly 110.
  • the atomizing core 120 is inserted into one end of the oil cup assembly 110 away from the suction nozzle 300, and does not require complicated operations, thereby avoiding the occurrence of a situation in which the assembled atomizer 100 is inoperable due to insufficient operation precision.
  • the atomizing core 120 is provided with a smoke passage 121 and an elastic conductive arm 122 extending into the smoke passage 121.
  • the elastic conductive arm 122 is electrically connected to the control unit.
  • the vent pipe 112 made of a conductive material is inserted into the smoke passage 121 (as shown in FIG. 3 ), and the elastic conductive arm 122 elastically abuts against the sidewall of the vent pipe 112 .
  • the elastic conductive arm 122 is electrically connected to the suction nozzle 300 through the vent pipe 112.
  • the specific number of the elastic conductive arms 122 is not limited in this embodiment, and may be one or more;
  • the elastic conductive arms 122 are preferably disposed in pairs, and the elastic conductive arms 122 are disposed in pairs.
  • the axial direction of the vent pipe 112 is symmetrically disposed in the center.
  • the vent pipe 112 is inserted into the smoke passage 121 such that the side wall of the vent pipe 112 located in the smoke passage 121 abuts the elasticity extending into the smoke passage 121.
  • the conductive arm 122 is disposed such that the elastic conductive arm 122 is in a compressed state, and the elastic conductive arm 122 in a compressed state is tightly pressed against the sidewall of the snorkel 112 located in the smoke passage 121.
  • the elastic conductive arm 122 is made of a conductive material, and the elastic conductive arm 122 is electrically connected to the control unit, and the atomization core can be effectively lifted by the specific structure of the atomizer 100 shown in this embodiment.
  • the side wall in the smoke passage 121 can be used without unnecessary Step to achieve electrical connection relationship of the control unit and the nozzle 300, effectively enhance the production efficiency.
  • the electronic cigarette provided in this embodiment further includes:
  • the outer peripheral surface of the battery rod assembly 200 is provided with a conductive sleeve 220 electrically connected to the control unit;
  • the conductive sleeve 220 can be sleeved on the battery 210, so that the conductive sleeve 220 completely accommodates the battery 210.
  • the specific material of the conductive sleeve 220 is not limited in this embodiment, as long as the conductive sleeve 220 can be electrically conductive.
  • the nozzle 300 and the conductive sleeve 220 are both electrically conductive and electrically connected to the control unit, the user can contact the nozzle 300 and the conductive sleeve 220 through the skin when smoking. , the nozzle 300 and the conductive sleeve 220 are turned on, and the control unit detects the suction When the nozzle 300 and the conductive sleeve 220 are turned on, the battery 210 is controlled to supply power to the atomizer 100 to atomize the smoke oil.
  • the specific structure of the electronic cigarette shown in this embodiment is advantageous in that, when the user uses the electronic cigarette shown in this embodiment, the nozzle 300 can be naturally contacted through the oral cavity, and the conductive sleeve 220 is contacted by the finger. In the process of turning on the nozzle 300 and the conductive sleeve 220, the user's usage habits are met, and the user is more convenient to use, and the automatic operation of the atomizer 100 can be effectively avoided without increasing the redundant operation of the user.
  • the work is convenient for the user to operate, and the waste of the oil and the waste of the electric energy can be avoided, the service life of the electronic cigarette is improved, and the transportation process and the safety during use are improved.
  • the electronic cigarette shown in this embodiment when the user does not smoke, the nozzle 300 and the conductive sleeve 220 are disconnected, and the battery rod assembly 200 cannot supply power to the atomizer 100.
  • the control unit cannot enable the battery rod assembly 200 to supply power to the atomizer 100, thereby effectively preventing the electronic cigarette from automatically working when the user does not perform corresponding operations.
  • the waste of the smoky oil and the unnecessary shortening of the service life of the electronic cigarette, the electronic cigarette of the embodiment effectively avoids accidents, such as a fire or explosion caused by the automatic operation of the electronic cigarette for a long time, compared with the prior art. The danger of this can improve safety and can effectively reduce the probability that the atomizer 100 is falsely triggered to atomize the smoke oil.
  • the control unit can control the battery rod assembly 200 to supply power to the atomizer 100.
  • the nozzle 300 and the conductive sleeve 220 can be touched at the same time, without the user's suction or pressing operation, thereby reducing the operation steps and difficulty of the user, and improving The user experience of smoking the smoke.
  • an airflow sensing switch for sensing the user's action of sucking smoke is disposed inside the electronic cigarette, the smoke will inevitably condense into the smoke oil during the internal circulation of the electronic cigarette, and the condensed smoke oil will flow into the airflow sensing.
  • the airflow sensing switch will not work properly, so that the atomizer cannot work normally even if the user smokes the electronic cigarette, thereby greatly reducing the electronic cigarette.
  • the service life of the electronic cigarette provided in this embodiment does not need to be internally provided with the air flow sensing switch, and the internal liquefied smoke oil does not affect the electrical connection relationship inside the electronic cigarette, as long as the user touches the suction nozzle 300 at the same time.
  • the conductive sleeve 220 can make The battery rod assembly 200 supplies power to the atomizer 100, prolongs the service life of the electronic cigarette, and effectively reduces the cost of the electronic cigarette by eliminating the need to provide the air flow sensing switch, and avoids airflow when the smoking intensity is small.
  • the sensor does not detect the smoking signal, the problem that the smoke oil enters the battery assembly from the airflow path and causes a short circuit.
  • Embodiment 2 This embodiment further describes the specific structure of the electronic cigarette in further detail:
  • the control unit is disposed in the battery rod assembly 200, and the specific position is not limited;
  • one end of the atomizing core 120 is provided with a conductive ring 123 sleeved on the smoke passage, and an inner circumferential surface of the conductive ring 123 is inclined away from the nozzle 300 . Extending to form one or more of the elastic conductive arms 122;
  • FIG. 6 is a mist provided by an embodiment of the present invention.
  • the conductive ring 123 is sleeved at the end of the smoke channel 121, so that the elastic conductive arm 122 on the conductive ring 123 extends to the In the smoke passage 121, the user is assembled and the reliability of the electrical connection relationship is improved.
  • the other end of the atomizing core 120 is provided with an atomizing electrode assembly 126 for electrically connecting with the battery rod assembly 200 and the control unit, and the vent tube 112 is inserted into the smoke passage 121,
  • the elastic conductive arm 122 is elastically resisted on the sidewall of the vent pipe 112;
  • one of the elastic conductive arms 122 is electrically connected to the atomizing electrode assembly 126 by a wire.
  • FIG. 7 is a schematic diagram of an overall structure of an atomizing core according to an embodiment of the present invention.
  • the sidewall of the atomizing core 120 is provided with an air inlet hole 130 communicating with the outer surface of the atomizer 100 and the smoke passage 121.
  • the electrode assembly 126 is blocked at an end of the smoke passage 121 adjacent to the battery rod assembly 200 to isolate the smoke passage 121 from the battery rod assembly 200.
  • the atomizing core 120 includes:
  • the smoke passage 121 is formed in the atomization seat 124, and an oil storage chamber is disposed between the smoke passage 121 and the inner peripheral wall of the oil storage sleeve 111, so that the oil is stored in the oil storage chamber.
  • the inside of the atomizer 100 is described.
  • the oil storage sleeve 111 is permeable to light, in order to prevent the user from being able to grasp the amount of the oil stored in the oil storage chamber at any time, and to prevent the atomizer from working normally due to insufficient amount of the oil.
  • the nozzle 300 shown in this embodiment is made of a metal material and fixed to one end of the oil storage sleeve 111, and the oil storage sleeve 111 faces away from one end of the suction nozzle 300.
  • a connecting sleeve 113 for detachably connecting with the atomizing core 120 is fixedly disposed.
  • the inner peripheral wall of the connecting sleeve 113 may be provided with a threaded section, a slide rail or a buckle for detachably connecting with the atomizing core 120, and the specific detachable connection manner is implemented in the present embodiment. Do not repeat in the middle.
  • the side wall of the atomization seat 124 is provided with an oil inlet passage 125 (shown in FIG. 6) communicating with the oil reservoir;
  • An atomizing electrode assembly 126 for electrically connecting to the battery rod assembly 200 is connected to one end of the atomizing base 124, that is, the atomizer 100 is electrically connected to the battery rod assembly 200 through the atomizing electrode assembly 126. connection.
  • the smoke passage is provided with a smoke adsorbing member 127 for adsorbing the oil in the oil storage chamber 125 from the oil inlet passage 125;
  • the heating wire 128 for atomizing the smoke oil on the oil adsorbing member 127
  • the heating wire 128 has a spiral structure, and is wound around the oil adsorbing member 127 so that the heating wire 128 It is in sufficient contact with the smoke oil adsorbing member 127, thereby ensuring that a sufficient amount of smoke oil is transmitted to the heating wire 128, so that the smoke atomized by the heating wire 128 is uniformly and constant, and the user is encouraged to smoke the smoke.
  • the smoking wire 128 has a spiral structure, and is wound around the oil adsorbing member 127 so that the heating wire 128 It is in sufficient contact with the smoke oil adsorbing member 127, thereby ensuring that a sufficient amount of smoke oil is transmitted to the heating wire 128, so that the smoke atomized by the heating wire 128 is uniformly and constant, and the user is encouraged to smoke the smoke.
  • the smoke adsorbing member 127 is made of a fiberglass material to enhance the efficiency of the smoke adsorbing member 127 to transfer the oil to the heating wire 128.
  • the atomizing electrode assembly 126 includes a first insulating sleeve 1261 inserted in the atomizing base 124, and a first electrode 1262 inserted in the first insulating sleeve 1261.
  • the first electrode is inserted in the first electrode.
  • the atomizing core 120 further includes an atomizing cover 129 disposed on the end of the atomizing base 124 away from the battery rod assembly 200;
  • the two ends of the elastic sealing member 601 are respectively abutted against the end wall of the atomizing cover 129 and the insulating member 602, and the two ends of the insulating member 602 are respectively associated with the elastic sealing member 601 and the One end of the atomizing seat 124 abuts, and the conductive ring 123 is sandwiched between the insulating member 602 and the elastic sealing member 601.
  • the conductive ring 123 is clamped and fixed between the elastic seal 601 and the insulating member 602 to prevent the conductive ring 123 from being detached during use of the electronic cigarette, thereby avoiding the conductive ring 123 and the
  • the electrical connection relationship of the vent pipe 112 is interrupted, thereby effectively ensuring stable operation of the atomizer 100.
  • One end of the heating wire 128 is electrically connected to the atomizing seat 124;
  • one end of the heating wire 128 is inserted between the atomizing base 124 and the elastic conductive arm 122, that is, fixed by the atomizing seat 124 and the elastic conductive arm 122.
  • One end of the heating wire 128; the elastic conductive arm 122 and the vent tube 112 are each made of a conductive material such that one end of the heating wire 128 sequentially passes through the elastic conductive arm 122 and the snorkel 112 is electrically connected to the nozzle 300. It can be seen that in the electrical connection process, only one end of the heating wire 128 can be inserted between the atomizing seat 124 and the elastic conductive arm 122 during the electrical connection process. , which facilitates assembly to improve assembly efficiency.
  • the other end of the heating wire 128 is electrically connected to the first electrode 1262 to be electrically connected to the battery 210;
  • the electronic cigarette further includes a wire 801 for electrically connecting the elastic conductive arm 122 and the atomizing electrode assembly 126, wherein one end of the wire 801 is soldered to the elastic conductive arm 122, and the wire 801 The other end is clamped between the second electrode 1262 and the second insulating sleeve 1263 The other end of the wire 801 is clamped and fixed by the second electrode 1262 and the second insulating sleeve 1263 so that the second electrode 1262 passes through the wire 801 and the elastic conductive arm 122 in sequence.
  • the vent pipe 112 is electrically connected to the suction nozzle 300.
  • the atomizing electrode assembly 126 is electrically connected to the battery rod assembly 200 and the control unit, it can be seen from the above that if the user touches the nozzle 300, both ends of the heating wire 128 are The atomizing electrode assembly 126 is electrically connected. As shown in the first embodiment, if the user touches the conductive sleeve 220 and the nozzle 300 at the same time, the control unit can control the battery 210 to supply power to the heating wire 128.
  • the heating wire 128 is atomized with smoke oil to generate smoke.
  • the battery rod assembly 200 includes the conductive sleeve 220 made of a metal material, the battery 210 inserted in the conductive sleeve 220, and the battery rod assembly 200 further includes a conductive sleeve 220 One end is used for the connector 201 connected to the atomizer 100. As shown in FIG. 9, the inner peripheral wall of the connector 201 is provided with a thread segment for detachably connecting with the atomizer 100, The atomizer 100 is connected to the battery rod assembly 200 through the threaded portion.
  • the specific structure of the connector 201 shown in FIG. 9 is illustrated by way of example and not limited thereto.
  • a buckle is disposed at an end of the atomizer 100 near the battery rod assembly 200, so that the buckle can slide along the guide of the slide rail, and when The snap-fit connection of the atomizer 100 and the battery rod assembly 200 is achieved when the buckle slides into the card slot.
  • the conductive sleeve 220 in the embodiment is made of a conductive metal material
  • the battery 210 inserted in the conductive sleeve 220;
  • the end cover 901 is inserted into the conductive sleeve 220 away from the end of the connector 201, and the control unit is disposed in the battery rod assembly 200.
  • the end cover 901 is disposed to be light transmissive, and a light emitting element electrically connected to the control unit is disposed inside the end cover 901, so that the control unit can control when the user smokes smoke.
  • the light emitting element emits light, or the light emitting element can also be used to indicate other indication information such as the state of charge of the battery 210 or whether the remaining power is sufficient.
  • a PCB board 902 is further disposed between the connector 201 and the battery 210, and the control unit may be disposed on the PCB board 902, or as shown in FIG.
  • the end of the battery rod assembly 200 remote from the atomizer 100 is provided for placing the control sheet A PCB board 1001, wherein FIG. 10 is a schematic diagram of an exploded connection structure of the battery rod assembly 200.
  • the connector 201 includes a connection sleeve 1002 electrically connected to the control unit;
  • first elastic electrode 1003 and the second elastic electrode 1004 inserted in the connecting sleeve 1002;
  • the first elastic electrode 1003 is located at an axial line position of the battery rod assembly 200, and the first elastic electrode 1003 is entirely annular, and the axial line of the first elastic electrode 1003 and the battery rod The axis of the assembly 200 coincides.
  • the first elastic electrode 1003 is disposed coaxially with the second elastic electrode 1004.
  • the first elastic electrode 1003 and the second elastic electrode 1004 are elastically abutted and electrically connected to the atomizing core 120.
  • the first elastic electrode 1003 abuts the first electrode 1262 for electrical connection
  • the second elastic electrode 1004 The second electrode 1264 abuts to make an electrical connection, thereby achieving electrical connection between the atomizer 100 and the battery rod assembly 200.
  • FIG. 11 is a schematic cross-sectional structural view of the first elastic electrode 1003 provided by the present invention.
  • the first elastic electrode 1003 includes a fixing sleeve 1101, an electrode column 1102 that is inserted into the fixing sleeve 1101 and extends outside the fixing sleeve 1101;
  • an elastic member 1103 which is elastically abutted on the fixing sleeve 1101 and the electrode post 1102, and an end of the electrode post 1102 facing away from the elastic member 1103 elastically abuts against the atomizing core 120.
  • the advantage of the arrangement of the first elastic electrode 1003 shown in this embodiment is that when the atomizer 100 is connected to the battery rod assembly 200, the elastic member 1103 is in a compressed state, thereby ensuring the protection.
  • the reliable electrical connection between the first elastic electrode 1003 and the atomizing core 120 can ensure that the electrical connection relationship is not interrupted and the electrical connection is avoided even if the electronic cigarette is shaken for a long time or during transportation. Abnormal, the occurrence of the case where the atomizer 100 is not working properly.
  • FIG. 9 the specific structure of the battery rod assembly 200 shown in FIG. 9, FIG. 10 and FIG. 11 is as follows.
  • the specific structure of the battery rod assembly 200 can also be seen in FIG. 12;
  • the connecting head 201 is provided with two mounting holes, and the first elastic electrode 1201 and the second elastic electrode 1202 are respectively disposed on the two mounting holes, and the first elastic electrode 1201 and the second elastic layer are respectively disposed.
  • the electrodes 1202 are arranged side by side.
  • the first elastic electrode 1201 abuts the first electrode 1262
  • the second elastic electrode 1202 abuts the second electrode 1264 .
  • An advantage of this arrangement is that when the atomizer 100 is connected to the battery rod assembly 200, the first elastic electrode 1201 abuts the first electrode 1262, and the second elastic electrode 1202 When the second elastic electrode 1201 and the second elastic electrode 1202 are in a compressed state, the first elastic electrode 1201 and the first electrode 1262 and the second elastic electrode can be secured.
  • the reliable electrical connection between the 1202 and the second upper electrode second electrode 1264 can ensure the electrical connection relationship even if the electronic cigarette is shaken for a long time or during transportation, and the atomizer 100 is prevented from being abnormal due to the electrical connection. The occurrence of a situation that is not working properly.
  • Embodiment 3 This embodiment describes the specific structure of the control unit in detail:
  • control unit may be as follows. The following is a description of the structure of the control unit shown in this embodiment, which is not limited;
  • control unit includes:
  • a filtering unit 1302 electrically connected to the conductive sleeve for filtering an input signal
  • the microprocessor 1301 and the second transistor switching unit 1305 electrically connected to the atomizer;
  • the microprocessor 1301 is configured to: when the nozzle and the conductive sleeve are turned on, the microprocessor 1301 sequentially turns on the first transistor switching unit 1303 and the second transistor switching unit 1305 to The atomizer is atomized with smoke oil.
  • J4 is connected to the conductive sleeve as shown in FIG. 14, and J3 is connected to the nozzle as an example for description.
  • the outer surface of the electronic cigarette may be separately disposed with J1.
  • J5, J7 one or more electrical conductors electrically connected.
  • the filtering unit 1302 includes a seventh resistor R7, an eighth resistor R8, a first capacitor C1, and a second capacitor C2;
  • one end of the seventh resistor R7 is grounded, and the other end of the seventh resistor R7 is electrically connected to the nozzle;
  • One end of the first capacitor C1 is connected to the nozzle, and the other end of the first capacitor C1 is grounded;
  • One end of the eighth resistor R8 is connected to the nozzle, the other end of the eighth resistor R8 is connected to the first transistor switch unit 1303, and one end of the second capacitor C2 is connected to the eighth resistor.
  • the other end of the second capacitor C2 is grounded at an end of the R8 away from the nozzle.
  • the first transistor switching unit 1303 includes a first transistor Q1 and a first resistor R1;
  • the base of the first transistor Q1 is connected to the filtering unit 1302, that is, as shown in FIG. 14, the other end of the eighth resistor R8 is connected to the base of the first transistor Q1.
  • the connection between the filtering unit 1302 and the first transistor switching unit 1303 is implemented.
  • the emitter of the first transistor Q1 is grounded, the collector of the first transistor Q1 is connected to the first resistor R1 and the microprocessor 1301, and the other end of the first resistor R1 is The positive pole of the battery is electrically connected.
  • the heating wire is connected between P1 and P2 to realize electrical connection between the heating wire and the microprocessor 1301.
  • the microprocessor 1301 is implemented by the chip MC32P7010A0I, and of course, other chips may be used, which are not limited in this embodiment;
  • the second transistor switch unit 1305 is electrically connected to the heating wire and the microprocessor 1301, respectively;
  • the second transistor switching unit 1305 includes a fourth transistor Q4;
  • the second type is shown in FIG. 15.
  • the following is shown in FIG. 15 that J4 is connected to the conductive sleeve, and J3 is connected to the nozzle as an example for description.
  • J4 is connected to the conductive sleeve
  • J3 is connected to the nozzle as an example for description.
  • One or more electrical conductors and the like electrically connected to J1, J5, and J7, respectively, are disposed on the outer surface of the electronic cigarette.
  • the filtering unit 1302 For the specific structure of the filtering unit 1302, refer to the first setting mode of the control unit shown in FIG. 15, which is not described in this embodiment.
  • the first transistor switching unit 1303 in the control unit includes a second transistor Q2, a third transistor Q3, a second resistor R2, a third resistor R3 and a fourth resistor R4;
  • the base of the second transistor Q2 is connected to the filtering unit 1302;
  • the other end of the eighth resistor R8 is connected to the base of the second transistor Q2 to implement connection between the filtering unit 1302 and the first transistor switching unit 1303.
  • the emitter of the second transistor Q2 is grounded, and the collector of the second transistor Q2 is connected to the second resistor R2 and the third resistor R3;
  • the other end of the second resistor R2 is electrically connected to the anode of the battery, and the other end of the third resistor R3 is connected to the base of the third transistor Q3;
  • the emitter of the third transistor Q3 is electrically connected to the anode of the battery, the collector of the third transistor Q3 is electrically connected to the fourth resistor R4 and the microprocessor 1301, and the fourth resistor R4 is further One end is grounded.
  • heating wire is connected between P1 and P2 to realize the heating wire and the microprocessor Electrical connection to 1301.
  • microprocessor 1301 The specific implementation structure of the microprocessor 1301 is shown in FIG. 15 , and details are not described in this embodiment.
  • the microprocessor 1301 and the second transistor switching unit 1305 electrically connected to the atomizer;
  • the microprocessor 1301 is configured to: when the nozzle and the conductive sleeve are turned on, the microprocessor 1301 sequentially turns on the first transistor switching unit 1303 and the second transistor switching unit 1305 to The atomizer is atomized with smoke oil.
  • control unit includes:
  • the microprocessor 1501 is electrically connected to the conductive sleeve, and the filtering unit 1502 for filtering the input signal is electrically connected to the filtering unit 1502 for comparing the signals output by the filtering unit 1502 and transmitting the comparison result to the a comparison circuit unit 1503 of the microprocessor 1501, a third transistor switch unit 1504 electrically connected to the microprocessor 1501 and the atomizer, the microprocessor 1501 for using the comparison circuit unit 1503
  • the input signal controls the on and off of the third transistor switching unit 1504 to control whether the atomizing assembly atomizes the smoke oil.
  • the J4 shown in FIG. 17 is connected to the conductive sleeve, and the J3 is connected to the nozzle as an example for description.
  • the outer surface of the electronic cigarette may be respectively disposed with J1, J5, J7 is electrically connected to one or more electrical conductors, and the like.
  • the filtering unit 1502 includes a ninth resistor R9 and a third capacitor C3;
  • One end of the ninth resistor R9 is grounded, and the other end of the ninth resistor R9 is electrically connected to the nozzle;
  • One end of the third capacitor C3 is connected to the nozzle and the comparison single channel unit 1503, and the other end of the third capacitor C3 is grounded.
  • the comparison single channel unit 1503 includes a comparator U2, a fifth resistor R5, and a sixth resistor R6 connected in series with the fifth resistor R5;
  • the one end of the third capacitor C3 of the filtering unit 1502 is connected to the nozzle and the non-inverting input end of the comparator U2 to implement the connection between the filtering unit 1502 and the comparison single channel unit 1503. .
  • An end of the fifth resistor R5 remote from the sixth resistor R6 is electrically connected to a positive pole of the battery;
  • An end of the sixth resistor R6 remote from the fifth resistor R5 is grounded, a non-inverting input end of the comparator U2 is electrically connected to the nozzle, and an inverting input end of the comparator U2 is opposite to the fifth R5 of the resistor is connected to an end adjacent to the sixth resistor R6.
  • the filtering unit 1502 and the comparison single-channel unit 1503 it is possible to avoid a large fluctuation of the signal transmitted by the conductive sleeve when the different users use or use in different places, resulting in the fog.
  • the phenomenon of unstable atomization of smoke oil is possible to avoid a large fluctuation of the signal transmitted by the conductive sleeve when the different users use or use in different places, resulting in the fog.
  • the heating wire is connected between P1 and P2 to realize electrical connection between the heating wire and the microprocessor 1501.
  • microprocessor 1501 The specific implementation structure of the microprocessor 1501 is shown in the embodiment shown in FIG. 17, and details are not described in this embodiment.
  • the third transistor switching unit 1504 is electrically connected to the heating wire and the microprocessor 1501, respectively;
  • the third transistor switching unit 1504 includes a fourth transistor Q4;
  • the nozzle is disposed at the nozzle end, and the conductive sleeve is disposed at the lower middle end of the outer surface of the electronic cigarette, and the user can normally smoke the smoke. Simultaneously touching the nozzle and the conductive sleeve;
  • the signal is first filtered by the filtering unit 1502, and the comparator U2 receives the filtered conduction signal from the forward input terminal and compares it with the reference voltage signal of the inverting input terminal, and the output terminal of the comparator U2 outputs a comparison result signal as a trigger signal to the
  • the microprocessor U1 is described.
  • Embodiment 4 This embodiment provides an electronic aerosolization control method:
  • control method includes:
  • a control unit disposed inside the electronic cigarette detects whether the nozzle and the conductive sleeve are turned on;
  • the inside of the electronic cigarette is further provided with a battery rod assembly for supplying power to the atomizer, the conductive sleeve is disposed on an outer peripheral surface of the battery rod assembly, and the nozzle and the conductive sleeve are both made of a conductive material. And the nozzle and the conductive sleeve are electrically connected to the control unit;
  • control unit controls the battery rod assembly to supply power to the atomizer to atomize the smoke oil.
  • An advantage of the electronic aerosolization control method provided by the embodiment is that the user does not have a pair In the case of operating (simultaneously touching the nozzle and the conductive sleeve located on the outer surface of the electronic cigarette), the nozzle and the conductive sleeve are disconnected, and the electronic cigarette is in the process of packaging and transportation.
  • the utility model can effectively avoid the waste of the smoke oil caused by the automatic operation of the electronic cigarette when the user does not perform the corresponding operation and the unnecessary shortening of the service life of the electronic cigarette, thereby improving the safety and effectively reducing the electric heating wire being mistaken.
  • the probability of triggering to atomize the smoke oil and if the user wishes to smoke the smoke, the nozzle and the conductive sleeve can be touched at the same time, without the user's suction or pressing operation, thereby reducing the user's operation steps and difficulty, and improving The user experience of smoking the smoke.
  • the airflow sensing switch is not required to be disposed, the cost of the electronic cigarette is effectively reduced, and the problem that the airflow sensor does not detect the smoking signal and the smoke oil enters the battery component from the airflow passage to cause a short circuit is avoided when the smoking intensity is small.
  • the nozzle and the conductive sleeve are naturally touched at the same time, which simplifies the step of the user to smoke the smoke, and avoids the situation that the heating wire cannot work without touching.

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Abstract

一种电子烟以及电子烟雾化控制方法,该电子烟包括雾化器(100)以及电池杆组件(200),该雾化器(100)由该油杯组件(110)和该雾化芯(120)可拆卸连接形成,且与该雾化器(100)及电池杆组件(200)电连接设置的控制单元,在电池外套设有可导电的导电套,且该吸嘴(300)和该导电套能够导通,该控制单元检测到该吸嘴(300)和该导电套导通时控制该电池(210)为该雾化器(100)供电以雾化烟油。且在组装该雾化器(100)时,将该雾化芯(120)插设在该油杯组件(110)远离吸嘴(300)的一端即可,从而简化的装配过程,提升了装配效率。

Description

一种电子烟以及电子烟雾化控制方法 技术领域
本发明涉及电子烟领域,尤其涉及的是一种电子烟以及电子烟雾化控制方法。
背景技术
电子烟是一种新型的电子产品,其与普通的香烟有着相同的外观,以及与香烟相同的味道,但是电子烟相对于传统的香烟更为的健康以及环保。
现有技术中的电子烟一般都是由用于雾化烟油的雾化组件和用于给所述雾化组件供电的电池组件两部分组成。其中,现有的一种电子烟中采用集成有气流感应器的控制电路对电子烟进行控制,在用户吸食电子烟时,电子烟内的气压会产生变化,进而导致气流感应器的薄膜电容发生形变。当该薄膜电容的形变量达到阈值时,向控制电路中的微处理器发送触发信号以使微处理器控制所述电池组件给所述雾化组件供电以雾化烟油以生成烟雾。
然而,这样的电子烟在包装或者运输的过程中,容易出现电子烟内的气压发生变化的情况,进而导致电子烟自动工作。而电子烟长时间的自动工作会容易造成起火和爆炸的危险,同时电子烟长时间的自动工作会导致雾化后的烟油因被空气多次反复氧化而使其变质和变味的情况,且现有技术的电子烟中为使得气流感应器感应到电子烟内的气压的变化,则与所述气流感应器连通设置有通气道,而在电子烟的工作过程中,烟油极容易顺着通气道流到电池组件和气流感应器上,会损坏气流感应器和电池组件,造成电子烟电池短路或不工作等现象,极大的影响了电子烟的使用寿命。
现有中的另一种电子烟为通过机械按键开关替代气流感应器来对电子烟进行控制,以实现雾化烟油。而由于电子烟吸烟时按压按键的频率较高,这样按键开关在长期的按压过程中容易失灵,因而在有些电子烟上通过利用触摸开关代替上述按键开关以对电子烟进行控制。
但是,上述通过按键开关或触摸开关进行控制的电子烟同样存在因包装或运输过程中,因受按压、包装人员的触摸或运输人员的触摸而导致电子烟自动工作的情况,而且若用户需要抽吸烟雾,则需要按压按键开关或触摸开关,则增加了用户抽吸烟雾的步骤,从而提升了用户抽吸所述电子烟过程中的操作复杂度,降低了用户抽吸烟雾过程中的体验。
发明内容
本发明实施例提供一种电子烟以及电子烟雾化控制方法。
一种电子烟,包括雾化器及与所述雾化器进行可拆卸连接的电池杆组件,所述电池杆组件内设置有用于为所述雾化器供电以使所述雾化器雾化烟油的电池,所述电子烟还包括与所述雾化器及电池杆组件电连接设置的控制单元;
所述雾化器包括油杯组件、吸嘴及雾化芯,所述油杯组件包括储油套及插设在所述储油套内的通气管,所述油杯组件背离所述电池杆组件的一端设置有由导电材料制成的所述吸嘴,所述油杯组件的另一端设置有与所述油杯组件可拆卸连接的用于雾化烟油的所述雾化芯,所述雾化芯设置有烟雾通道及延伸至所述烟雾通道内的弹性导电臂,由导电材料制成的所述通气管插设于所述烟雾通道内并与所述弹性导电臂弹性抵持,所述弹性导电臂与所述控制单元电连接,所述弹性导电臂通过所述通气管与所述吸嘴电连接,所述电池杆组件的外周面设置有与所述控制单元电连接的导电套;
用户吸烟时能够通过肌肤与所述吸嘴和所述导电套接触,以使所述吸嘴和所述导电套导通,所述控制单元检测到所述吸嘴和所述导电套导通时控制所述电池为所述雾化器供电以雾化烟油。
优选的,所述控制单元设置于所述电池杆组件内,所述雾化芯的一端设置有套设在所述烟雾通道上的导电环,所述导电环的内周面沿远离吸嘴的方向倾斜延伸形成有一个或多个所述弹性导电臂,所述雾化芯的另一端设置有用于与所述电池杆组件及所述控制单元电连接的雾化电极组件,所述通气管插设于所述烟雾通道内,所述弹性导电臂弹性抵持在所述通气管的侧壁上,且其中一个所述弹性导电臂通过导线与所述雾化电极组件电连接。
优选的,所述雾化芯的侧壁设有与所述雾化器外表面及所述烟雾通道相连 通的进气孔,所述雾化电极组件堵塞在所述烟雾通道的一端,以使所述烟雾通道与所述电池杆组件相互隔离。
优选的,所述雾化芯包括中空的雾化座,所述雾化座内形成有烟雾通道,所述烟雾通道与所述储油套内周壁之间设置有储油腔,所述雾化座的侧壁设置有与所述储油腔相连通的进油通道,所述雾化座的一端插设有所述雾化电极组件,所述烟雾通道内设置有用于从所述进油通道中吸附所述储油腔内的烟油的烟油吸附件及用以雾化所述烟油吸附件上的烟油的电热丝,所述雾化电极组件包括插设在所述雾化座内的第一绝缘套、插设在所述第一绝缘套内的第一电极、插设在所述第一电极内的第二绝缘套以及插设在所述第二绝缘套内的第二电极,所述第二电极为实心柱体结构并与所述弹性导电臂电连接,所述电热丝两端分别与所述雾化座及所述第一电极电连接以电连接至所述电池。
优选的,所述电子烟还包括用于电连接所述弹性导电臂和所述雾化电极组件的导线,其中,所述导线的一端与所述弹性导电臂焊接相连,所述导线的另一端夹持在所述第二电极与所述第二绝缘套之间。
优选的,所述雾化芯还包括套设在所述雾化座背离所述电池杆组件一端的雾化盖及位于在雾化盖内并均套设在所述通气管上的绝缘件及弹性密封件,所述弹性密封件的两端分别与所述雾化盖端壁及所述绝缘件抵接,所述绝缘件的两端分别与所述弹性密封件及所述雾化座的一端抵接,所述导电环夹持在所述绝缘件及所述弹性密封件之间。
优选的,所述储油套由可透光的非金属材料制成,所述吸嘴由金属材料制成并固定在所述储油套的一端,所述储油套背离所述吸嘴的一端固定设置有用于与所述雾化芯进行可拆卸连接的连接套。
优选的,所述电池杆组件包括由金属材料制成的所述导电套、插设在所述导电套内的所述电池、插设在所述导电套一端的用于与所述雾化器连接的连接头、插设在所述导电套背离所述连接头一端的端盖,所述控制单元设置于所述电池杆组件内。
优选的,所述连接头包括与所述控制单元电连接的连接套及插设在所述连接套内的第一弹性电极和第二弹性电极,所述第一弹性电极位于所述电池杆组件的轴向线位置处,所述第一弹性电极和第二弹性电极与所述雾化芯弹性抵接 并电连接。
优选的,所述第一弹性电极包括固定套、活动插设在所述固定套内并延伸至所述固定套外的电极柱及两端分别弹性抵持在所述固定套及所述电极柱上的弹性件,所述电极柱的背离所述弹性件的一端与所述雾化芯弹性抵接。
优选的,所述控制单元包括微处理器、与所述导电套电连接用于对输入的信号进行滤波的滤波单元、与所述滤波单元电连接用于将滤波单元输出的信号输送给所述微处理器的第一晶体管开关单元、与所述微处理器及雾化器电连接的第二晶体管开关单元,所述微处理器用于根据所述第一晶体管开关单元输入的信号控制所述第二晶体管开关单元的通断,以控制雾化器是否雾化烟油。
优选的,所述控制模块包括微处理器、与所述导电套电连接用于对输入的信号进行滤波的滤波单元、与所述滤波单元电连接用于将滤波单元输出的信号进行比较并将比较结果输送给所述微处理器的比较电路单元、与所述微处理器及雾化器电连接的第三晶体管开关单元,所述微处理器用于根据所述比较电路单元输入的信号控制所述第三晶体管开关单元的通断,以控制雾化组件是否雾化烟油。
一种电子烟雾化控制方法,其中,包括:
电子烟内部设置的控制单元检测吸嘴和导电套是否导通,所述电子烟内部还设置有用于为雾化器供电的电池杆组件,所述导电套套设在所述电池杆组件的外周面,所述吸嘴和所述导电套均由导电材质制成,且所述吸嘴和所述导电套均与所述控制单元电连接;
若是,则所述控制单元控制所述电池杆组件为所述雾化器供电以雾化烟油。
本发明所提供了一种一种电子烟以及电子烟雾化控制方法,所述电子烟包括雾化器以及电池杆组件,所述雾化器由所述油杯组件和所述雾化芯可拆卸连接形成,即在组装所述雾化器时,将所述雾化芯插设在所述油杯组件远离吸嘴的一端即可,从而简化的装配过程,提升了装配效率,而且若雾化芯或油杯组件损坏,则只更换损坏的雾化芯或油杯组件即可,无需整体更换雾化器,从而减少了后续使用电子烟的维修费用,且将所述雾化芯插设在所述油杯组件上时,即可使得通气管插设于烟雾通道内,以使所述通气管位于所述烟雾通道内 的侧壁抵持延伸至所述烟雾通道内的所述弹性导电臂,以使所述弹性导电臂呈压缩状态,可有效的提升所述雾化芯与所述通气管的电连接关系的稳固性,从而有效的避免电连接关系的中断,避免所述电池杆组件无法为所述雾化器正常供电,且在装配所述雾化器时,只需要将将所述雾化芯插设在所述油杯组件远离所述吸嘴的一端,以使所述弹性导电臂紧紧抵持所述通气管位于所述烟雾通道内的侧壁即可,无需多余步骤即可实现所述控制单元与所述吸嘴的电连接关系,有效的提升了生产效率。而且在电池外套设有可导电的导电套,则用户吸烟时能够通过肌肤与所述吸嘴和所述导电套接触,以使所述吸嘴和所述导电套导通,所述控制单元检测到所述吸嘴和所述导电套导通时控制所述电池为所述雾化器供电以雾化烟油,在不增加用户多余操作的前提下,即可有效的避免雾化器的自动工作,方便用户操作的同时,还可避免烟油的浪费以及电量的浪费,提升了电子烟的使用寿命,以及提升了运输过程以及使用过程中的安全。
附图说明
图1为本发明实施例所提供的电子烟的一种较佳实施例爆炸连接结构示意图;
图2为本发明实施例所提供的电子烟的一种爆炸剖面连接结构示意图;
图3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4为本发明实施例所提供的电子烟的一种局部剖面连接结构示意图;
图5为本发明实施例所提供的电子烟的另一种局部剖面结构示意图;
图6为本发明实施例所提供的雾化芯的一种爆炸连接结构示意图;
图7为本发明实施例所提供的雾化芯的一种整体结构示意图;
图8为本发明实施例所提供的雾化器的一种剖面结构示意图;
图9为本发明实施例所提供的电池杆组件的一种剖面结构示意图;
图10为本发明实施例所提供的电池杆组件的一种爆炸连接结构示意图;
图11为本发明实施例所提供的第一弹性电极的一种剖面结构示意图;
图12为本发明实施例所提供的电池杆组件的一种整体结构示意图;
图13为本发明实施例所提供的控制单元的一种电路连接结构示意图;
图14为本发明实施例所提供的控制单元的另一种电路连接结构示意图;
图15为本发明实施例所提供的控制单元的另一种电路连接结构示意图;
图16为本发明实施例所提供的控制单元的另一种电路连接结构示意图;
图17为本发明实施例所提供的控制单元的另一种电路连接结构示意图;
图18为本发明实施例所提供的电子烟雾化控制方法的一种步骤流程图。
具体实施方式
实施例一,本实施例对能够防止电子烟自动工作,且可提升用户操作体验的电子烟的具体结构进行详细说明:
具体请结合图1、图2以及图3所示,图1为本发明实施例所提供的电子烟的一种较佳实施例爆炸连接结构示意图,图2为本发明实施例所提供的电子烟的一种爆炸剖面连接结构示意图,图3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。
结合图1、图2以及图3所示,所述电子烟包括:
用于存储烟油并根据用户的操作将所述烟油雾化成可供用户吸食的烟雾的雾化器100;
与所述雾化器连接设置的电池杆组件200;
所述电池杆组件200包括用于为所述雾化器100供电,以使所述雾化器100雾化烟油以形成烟雾的电池210;
由图1、图2以及图3所示可知,本实施例所提供的电子烟由所述雾化器100和所述电池杆组件200装配以形成电子烟本体,且所述雾化器100以及所述电池杆组件200同轴设置,雾化器100位于所述电子烟本体的上端,所述电池杆组件200位于所述电子烟本体的下端,采用本种电子烟的设置方式的优势在于,电子烟整体上模仿了真实香烟的形状,更为符合用户的使用习惯,且雾化器100设置的位置靠近用于抽吸烟雾的吸嘴300,则避免雾化器100所雾化的烟雾冷凝情况的出现,避免用户抽吸到烟油。
与所述雾化器100及电池杆组件200电连接设置有控制单元,且本实施例对所述控制单元的具体结构和具体设置位置不作限定,只要所述控制单元可根据用户对应的操作使得所述电池杆组件200为所述雾化器100供电即可。
具体的,所述雾化器100包括:油杯组件110、雾化芯120以及吸嘴300;
以下结合图4所示对所述油杯组件110的具体结构进行详细说明,所述油 杯组件110具体包括:
储油套111;
及插设在所述储油套111内的通气管112;
所述油杯组件110背离所述电池杆组件200的一端设置有由导电材料制成的所述吸嘴300,且所述吸嘴300与所述通气管112导通,以使所述雾化器100所雾化的烟雾能够经由所述通气管112导通至所述吸嘴300,以使用户能够通过吸嘴300抽吸到烟雾。
本实施例中所述吸嘴300可与所述储油套111固定连接或可拆卸连接,其中可拆卸连接的方式可为螺纹连接,卡扣连接等方式,本实施例较佳的以所述吸嘴300与所述储油套111可拆卸连接为例,因采用可拆卸连接的方式便于用户更换吸嘴300,提升使用电子烟过程中的卫生。
所述油杯组件110的另一端设置有与所述油杯组件110可拆卸连接的用于雾化烟油的雾化芯120;
其中,所述油杯组件110与所述雾化芯120的连接结构请见图3所示,所述雾化芯120的具体结构请见图5所示;
所述雾化芯120的一端与所述通气管112相连,所述雾化芯120的另一端与所述电池杆组件200相连(如图3所示)。
本实施例中,所述雾化器100由所述油杯组件110和所述雾化芯120可拆卸连接形成,即在组装所述雾化器100时,将所述雾化芯120插设在所述油杯组件110远离所述吸嘴300的一端即可,从而简化的装配过程,提升了装配效率,而且若雾化芯120或油杯组件110损坏,则只更换损坏的雾化芯120或油杯组件110即可,无需整体更换雾化器100,从而减少了后续使用电子烟的维修费用,且用户在更换所述雾化芯120或油杯组件110时,只需要将所述雾化芯120插设在所述油杯组件110远离所述吸嘴300的一端即可,无需复杂的操作,避免用户因操作精度不够而使得装配的雾化器100无法工作的情况的出现。
以下具体说明所述雾化芯120的具体结构;
结合图3和图5所示,所述雾化芯120设置有烟雾通道121及延伸至所述烟雾通道121内的弹性导电臂122,所述弹性导电臂122与所述控制单元电连 接,由导电材料制成的所述通气管112插设于所述烟雾通道121内(如图3所示),所述弹性导电臂122弹性抵持在所述通气管112的侧壁上,以使所述弹性导电臂122通过所述通气管112与所述吸嘴300电连接。
本实施例对所述弹性导电臂122的具体数目不作限定,可为一个或多个;
较佳的,为实现所述控制单元与所述吸嘴300的稳定的电连接,则所述弹性导电臂122较佳的为成对设置,且成对设置的所述弹性导电臂122以所述通气管112的轴向为中心对称设置。
具体的,即所述通气管112插设于所述烟雾通道121内,以使所述通气管112位于所述烟雾通道121内的侧壁抵持延伸至所述烟雾通道121内的所述弹性导电臂122,以使所述弹性导电臂122呈压缩状态,且呈压缩状态的所述弹性导电臂122紧紧抵持所述通气管112位于所述烟雾通道121内的侧壁上,因所述弹性导电臂122由导电材料制成,且所述弹性导电臂122与所述控制单元电连接,则通过本实施例所示的雾化器100的具体结构可有效的提升所述雾化芯120与所述通气管112的电连接关系的稳固性,从而有效的避免电连接关系的中断,避免所述电池杆组件200无法为所述雾化器100正常供电,且在装配所述雾化器100时,只需要将将所述雾化芯120插设在所述油杯组件110远离所述吸嘴300的一端,以使所述弹性导电臂122紧紧抵持所述通气管112位于所述烟雾通道121内的侧壁即可,无需多余步骤即可实现所述控制单元与所述吸嘴300的电连接关系,有效的提升了生产效率。
本实施例中,为避免所述电子烟自动工作,则本实施例所提供的电子烟还包括:
如图2和图3所示,所述电池杆组件200的外周面设置有与所述控制单元电连接的导电套220;
所述导电套220可套设在所述电池210上,以使所述导电套220完全包容设置所述电池210,本实施例对所述导电套220的具体材质不作限定,只要所述导电套220能够导电即可。
因本实施例中所述吸嘴300以及所述导电套220均可导电,且均与所述控制单元电连接,则用户吸烟时能够通过肌肤与所述吸嘴300和所述导电套220接触,以使所述吸嘴300和所述导电套220导通,所述控制单元检测到所述吸 嘴300和所述导电套220导通时控制所述电池210为所述雾化器100供电以雾化烟油。
采用本实施例所示的电子烟的具体结构的优势在于,因用户在使用本实施例所示的电子烟时,可自然的通过口腔接触吸嘴300,通过手指接触所述导电套220,在使得所述吸嘴300和所述导电套220导通的过程中,符合用户的使用习惯,较方便用户使用,在不增加用户多余操作的前提下,即可有效的避免雾化器100的自动工作,方便用户操作的同时,还可避免烟油的浪费以及电量的浪费,提升了电子烟的使用寿命,以及提升了运输过程以及使用过程中的安全。
且本实施例所示的电子烟,在用户没有吸烟时,所述吸嘴300和所述导电套220是断开的,则所述电池杆组件200无法为所述雾化器100供电,则电子烟在包装和运输的过程中,所述控制单元也无法使得电池杆组件200为所述雾化器100供电,从而有效的避免电子烟在用户没有进行对应操作时就自动进行工作所造成的烟油的浪费以及电子烟使用寿命的不必要的减短,相对于现有技术,本实施例的电子烟有效的避免意外事故,例如因电子烟长时间的自动工作所带来的起火或爆炸的危险,从而可提升安全,且可有效降低雾化器100被误触发以雾化烟油的概率。
当然,用户还可通过其他可导电的材料同时接触所述吸嘴300和所述导电套220,则所述控制单元即可控制所述电池杆组件200为所述雾化器100供电。
较佳的,本实施例中若用户希望抽吸烟雾,则同时触摸所述吸嘴300和所述导电套220即可,无需用户抽吸或按压操作,减少了用户的操作步骤和难度,提升了用户抽吸烟雾过程的体验。
因现有技术中在电子烟内部设置有用于感应用户抽吸烟雾动作的气流感应开关,则烟雾在电子烟内部流通过程中难免会冷凝成烟油,则冷凝的烟油会流入所述气流感应开关内部,若气流感应开关中的烟油量累积到一定程度,则会使得所述气流感应开关无法正常工作,使得即便用户抽吸电子烟也雾化器也无法正常工作,从而大大降低电子烟的使用寿命,而本实施例所提供的电子烟无需在内部设置有所述气流感应开关,内部液化的烟油不会影响电子烟内部的电连接关系,只要用户同时触摸所述吸嘴300和所述导电套220,即可使得所 述电池杆组件200为所述雾化器100供电,延长了电子烟的使用寿命,且因无需设置所述气流感应开关,则有效的降低了电子烟的成本,且避免在吸烟力度较小时气流感应器检测不到吸烟信号、烟油从气流通道进入电池组件造成短路等问题。
实施例二,本实施例对所述电子烟的具体结构进行进一步的详细说明:
所述控制单元设置于所述电池杆组件200内,具体位置不作限定;
以下结合图5和图6所示,所述雾化芯120的一端设置有套设在所述烟雾通道上的导电环123,所述导电环123的内周面沿远离吸嘴300的方向倾斜延伸形成一个或多个所述弹性导电臂122;
本实施例以所述弹性导电臂122为两个为例进行说明,且两个所述弹性导电臂122位置相对设置,还可参见图6所示,图6为本发明实施例所提供的雾化芯的一种爆炸连接结构示意图。
即在装配所述雾化芯120的过程中,将所述导电环123套设在所述烟雾通道121端部,即可使得所述导电环123上的所述弹性导电臂122延伸至所述烟雾通道121内,便于用户装配且提升了电连接关系的可靠性。
所述雾化芯120的另一端设置有用于与所述电池杆组件200及所述控制单元电连接的雾化电极组件126,所述通气管112插设于所述烟雾通道121内,所述弹性导电臂122弹性抵持在所述通气管112的侧壁上;
具体的,其中一个所述弹性导电臂122通过导线与所述雾化电极组件126电连接。
更具体的,如图7所示,其中,图7为本发明实施例所提供的雾化芯的一种整体结构示意图;
结合图5、图6以及图7所示,所述雾化芯120的侧壁设有与所述雾化器100外表面及所述烟雾通道121相连通的进气孔130,所述雾化电极组件126堵塞在所述烟雾通道121的靠近所述电池杆组件200的一端,以使所述烟雾通道121与所述电池杆组件200相互隔离。采用本种设置方式的优势在于,可有效的防止雾化器100内所存储的烟油泄漏到电池杆组件200中以损坏所述电池210,避免因电池210出现损坏而使得电子烟无法正常使用的弊端,有效的提升了电子烟的使用寿命。
以下对所述雾化芯120的具体结构进行进一步的详细说明:
所述雾化芯120包括:
中空的雾化座124;
所述雾化座124内形成有所述烟雾通道121,所述烟雾通道121与所述储油套111内周壁之间设置有储油腔,以使烟油通过所述储油腔存储在所述雾化器100内部。
为便于用户能够随时掌握储油腔所存储的烟油量,避免因烟油量不足而使得所述雾化器无法正常工作,则本实施例中,所述储油套111由可透光的非金属材料制成。
较佳的,如图4所示,本实施例所示的吸嘴300由金属材料制成并固定在所述储油套111的一端,所述储油套111背离所述吸嘴300的一端固定设置有用于与所述雾化芯120进行可拆卸连接的连接套113。
本实施例如图4所示,所述连接套113内周壁可设置有用于与所述雾化芯120可拆卸连接的螺纹段,滑轨或卡扣等结构,具体可拆卸连接方式在本实施了中不做赘述。
所述雾化座124的侧壁设置有与所述储油腔相连通的进油通道125(如图6所示);
所述雾化座124的一端连接有用于与所述电池杆组件200电连接的雾化电极组件126,即所述雾化器100通过所述雾化电极组件126与所述电池杆组件200电连接。
所述烟雾通道内设置有用于从所述进油通道125中吸附所述储油腔内的烟油的烟油吸附件127;
及用以雾化所述烟油吸附件127上的烟油的电热丝128,所述电热丝128呈螺旋形结构,且缠绕设置在所述烟油吸附件127,以使所述电热丝128与所述烟油吸附件127充分接触,从而保障了有足量的烟油传导至所述电热丝128上,从而使得所述电热丝128所雾化的烟雾均匀恒定,提升用户抽吸烟雾过程的体验。
较佳的,所述烟油吸附件127可由玻纤材质编制而成,以提升所述烟油吸附件127将所述烟油传送至所述电热丝128上的效率。
所述雾化电极组件126包括插设在所述雾化座124内的第一绝缘套1261、插设在所述第一绝缘套1261内的第一电极1262、插设在所述第一电极1262内的第二绝缘套1263以及插设在所述第二绝缘套1263内的第二电极1264;
更佳的,继续参见图5至图6所示,所述雾化芯120还包括套设在所述雾化座124背离所述电池杆组件200一端的雾化盖129;
及位于在雾化盖129内并均套设在所述通气管112上的绝缘件602及弹性密封件601;
具体的,所述弹性密封件601的两端分别与所述雾化盖129端壁及所述绝缘件602抵接,所述绝缘件602的两端分别与所述弹性密封件601及所述雾化座124的一端抵接,所述导电环123夹持在所述绝缘件602及所述弹性密封件601之间。
通过所述弹性密封件601和所述绝缘件602之间夹持固定所述导电环123,以防止所述导电环123在电子烟的使用过程中脱离,进而避免所述导电环123与所述通气管112的电连接关系中断,从而有效的保障雾化器100的稳定工作。
以下结合图8所示对所述雾化器100的电连接关系进行详细说明:
所述电热丝128一端与所述雾化座124电连接;
具体的,由图8所示可知,所述电热丝128的一端插入所述雾化座124和所述弹性导电臂122之间,即通过所述雾化座124和所述弹性导电臂122固定所述电热丝128的一端;因所述弹性导电臂122以及所述通气管112均由导电材料制成,以使所述电热丝128的一端依次经过所述弹性导电臂122和所述通气管112与所述吸嘴300电连接,可见采用本实施例所示的结构在电连接过程中,只要将电热丝128的一端插入所述雾化座124和所述弹性导电臂122之间即可,从而便于装配,以提升装配效率。
所述电热丝128另一端与所述第一电极1262电连接以电连接至所述电池210;
所述电子烟还包括用于电连接所述弹性导电臂122和所述雾化电极组件126的导线801,其中,所述导线801的一端与所述弹性导电臂122焊接相连,所述导线801的另一端夹持在所述第二电极1262与所述第二绝缘套1263之 间,以通过所述第二电极1262与所述第二绝缘套1263夹持固定所述导线801的另一端,以使所述第二电极1262依次通过所述导线801、所述弹性导电臂122以及所述通气管112与所述吸嘴300电连接。
因所述雾化电极组件126与所述电池杆组件200以及所述控制单元电连接,由以上所示可知若用户触摸所述吸嘴300,则使得所述电热丝128的两端与所述雾化电极组件126电连接,由实施例一所示可知,若用户同时触摸导电套220以及所述吸嘴300,所述控制单元即可控制所述电池210为所述电热丝128供电,以使所述电热丝128雾化烟油以生成烟雾。
以下结合图9所示对所述电池杆组件的具体结构进行详细说明:
所述电池杆组件200包括由金属材料制成的所述导电套220、插设在所述导电套220内的所述电池210、所述电池杆组件200还包括插设在所述导电套220一端用于与所述雾化器100连接的连接头201,由图9所示可知,所述连接头201的内周壁上设置有用于与所述雾化器100可拆卸连接的螺纹段,以使所述雾化器100通过该螺纹段与所述电池杆组件200连接,当然图9所示的连接头201的具体结构为举例进行说明,不作限定,还可在所述连接头201上设置有滑轨以及卡槽,在所述雾化器100靠近所述电池杆组件200的端部设置有卡扣,以使所述卡扣可沿所述滑轨的导向进行滑动,且当所述卡扣滑动至所述卡槽内时,实现所述雾化器100和所述电池杆组件200的卡合连接。
具体的,本实施例中所述导电套220由可导电的金属材料制成;
插设在所述导电套220内的所述电池210;
插设在所述导电套220背离所述连接头201一端的端盖901,所述控制单元设置于所述电池杆组件200内。
较佳的,所述端盖901设置为透光的,在所述端盖901内部设置有与所述控制单元电连接的发光元件,以使用户在抽吸烟雾时,所述控制单元可控制所述发光元件发光,或者所述发光元件还可用于指示所述电池210的充电状态或者剩余电量是否充足等其他指示信息。
进一步参见图9所示可知,所述连接头201与所述电池210之间还包括PCB板902,可将所述控制单元设置在所述PCB板902上,或如图10所示,在所述电池杆组件200远离所述雾化器100的端部设置有用于放置所述控制单 元的PCB板1001,其中,图10为所述电池杆组件200的爆炸连接结构示意图。
以下参见图10所示对所述电池杆组件200的具体结构进行进一步的详细说明;
所述连接头201包括与所述控制单元电连接的连接套1002;
及插设在所述连接套1002内的第一弹性电极1003和第二弹性电极1004;
所述第一弹性电极1003位于所述电池杆组件200的轴向线位置处,且所述第一弹性电极1003整体呈环形,且所述第一弹性电极1003的轴心线与所述电池杆组件200的轴心线重合。
具体的,所述第一弹性电极1003与所述第二弹性电极1004同轴设置。
所述第一弹性电极1003和第二弹性电极1004与所述雾化芯120弹性抵接并电连接。
具体的,即将所述电池杆组件200连接至所述雾化器100上时,所述第一弹性电极1003与所述第一电极1262抵接以进行电连接,所述第二弹性电极1004与所述第二电极1264抵接以进行电连接,进而实现所述雾化器100与所述电池杆组件200的电连接。
以下结合图11所示对所述第一弹性电极1003的具体结构进行详细说明,图11为本发明所提供的第一弹性电极1003的一种剖面结构示意图。
所述第一弹性电极1003包括固定套1101、活动插设在所述固定套1101内并延伸至所述固定套1101外的电极柱1102;
及两端分别弹性抵持在所述固定套1101及所述电极柱1102上的弹性件1103,所述电极柱1102的背离所述弹性件1103的一端与所述雾化芯120弹性抵接。
采用本实施例所示的第一弹性电极1003的设置方式的优势在于,将所述雾化器100连接至所述电池杆组件200上时,所述弹性件1103呈压缩状态,则可保障所述第一弹性电极1003与所述雾化芯120之间的可靠的电连接,即便电子烟在长时间使用或运输过程晃动,也能够保障该电连接关系不会出现故障中断,避免因电连接异常,则所述雾化器100无法正常工作的情况的出现。
需明确的是,图9、图10和图11所示的电池杆组件200的具体结构为举 例进行说明,不作限定,所述电池杆组件200的具体结构还可参见图12所示;
即所述连接头201上设置有两个安装孔,两个所述安装孔上分别安置有第一弹性电极1201和第二弹性电极1202,且所述第一弹性电极1201和所述第二弹性电极1202并列设置。
所述第一弹性电极1201与第一电极1262相抵接,所述第二弹性电极1202与第二电极1264相抵接。
采用本种设置方式的优势在于,将所述雾化器100连接至所述电池杆组件200上时,即所述第一弹性电极1201与第一电极1262相抵接,所述第二弹性电极1202与第二电极1264相抵接时,所述第一弹性电极1201以及所述第二弹性电极1202呈压缩状态,则可保障所述第一弹性电极1201与第一电极1262、所述第二弹性电极1202与第二上电极第二电极1264之间的可靠的电连接,即便电子烟在长时间使用或运输过程晃动,也能够保障电连接关系,避免因电连接异常,则所述雾化器100无法正常工作的情况的出现。
实施例三,本实施例对所述控制单元的具体结构进行详细说明:
本实施例中,所述控制单元的具体结构可有如下几种设置方式,需明确的是,以下为对本实施例所示的控制单元的结构进行举例说明,不作限定;
第一种,如图13所示,所述控制单元包括:
微处理器1301;
与所述导电套电连接用于对输入的信号进行滤波的滤波单元1302;
所述吸嘴和所述导电套的具体结构和设置方式请见上述实施例所示,在本实施例中不做赘述。
与所述滤波单元1302电连接用于将滤波单元1302输出的信号输送给所述微处理器1301的第一晶体管开关单元1303;
所述微处理器1301及所述雾化器电连接的第二晶体管开关单元1305;
所述雾化器的具体结构请见上述实施例所示,在实施例中不做赘述。
所述微处理器1301用于若所述吸嘴和所述导电套导通,则所述微处理器1301依次导通所述第一晶体管开关单元1303和所述第二晶体管开关单元1305,以使所述雾化器雾化烟油。
以下结合图14所示,对所述控制单元的具体结构进行进一步的详细说明: 以下以图14所示J4连接至所述导电套,J3连接至吸嘴为例进行说明,当然,为更便于用户操作以及便于用户抽吸烟雾,还可以在电子烟外表面设置分别与J1、J5、J7电连接的一个或多个导电体等。
所述滤波单元1302包括第七电阻R7、第八电阻R8、第一电容C1及第二电容C2;
其中,所述第七电阻R7的一端接地,所述第七电阻R7的另一端与所述吸嘴电连接;
所述第一电容C1的一端与所述吸嘴相连,所述第一电容C1的另一端接地;
所述第八电阻R8的一端与所述吸嘴相连,所述第八电阻R8的另一端与所述第一晶体管开关单元1303相连,所述第二电容C2的一端连接于所述第八电阻R8的远离所述吸嘴的一端,所述第二电容C2的另一端接地。
进一步的,所述第一晶体管开关单元1303包括第一三极管Q1及第一电阻R1;
其中,所述第一三极管Q1的基极与所述滤波单元1302相连,即如图14所示,所述第八电阻R8的另一端与所述第一三极管Q1的基极相连,以实现所述滤波单元1302与所述第一晶体管开关单元1303的相连。
所述第一三极管Q1的发射极接地,所述第一三极管Q1的集电极与所述第一电阻R1及所述微处理器1301相连,所述第一电阻R1的另一端与电池的正极电连接。
其中,电热丝连接在P1和P2之间,以实现所述电热丝与所述微处理器1301的电连接。
较佳的,所述微处理器1301由芯片MC32P7010A0I实现,当然还可采用其他芯片,具体在本实施例中不作限定;
所述第二晶体管开关单元1305分别与所述电热丝和所述微处理器1301电连接;
具体的,所述第二晶体管开关单元1305包括第四三极管Q4;
以下对图14所示的控制单元的具体工作流程进行详细说明:
若无人触摸所述吸嘴和所述导电套,或,没有同时触摸所述吸嘴和所述导 电套,则所述第一晶体管开关单元1303的所述第一三极管Q1的集电极输出低电平,即信号SIG=逻辑0,即所述第一三极管Q1的集电极与所述微处理器1301的第“3”引脚电连接,则所述微处理器1301确定其通过第“3”引脚接收到的信号SIG=逻辑0,则不为所述电热丝供电;
若用户同时触摸到吸嘴和导电套,信号首先经过滤波单元1302滤波,之后流过所述第一三极管Q1使之导通,使SIG信号变为高电平,即SIG=逻辑1。
所述微处理器1301确定其通过第“3”引脚接收到的信号SIG=逻辑1,则控制所述电池为所述电热丝供电;
则所述微处理器1301确定其通过第“3”引脚接收到的信号SIG=逻辑1时,则所述微处理器1301控制所述第四三极管Q4导通,从而使得所述电热丝两端通电,继而使得所述电热丝雾化烟油以形成烟雾。
第二种请参见图15所示,以下以图15所示J4连接至所述导电套,J3连接至吸嘴为例进行说明,当然,为更便于用户操作以及便于用户抽吸烟雾,还可以在电子烟外表面设置分别与J1、J5、J7电连接的一个或多个导电体等。
所述滤波单元1302的具体结构请参见图15所示的所述控制单元的第一种设置方式,在本种设置方式中不做赘述。
如图15所示,本种控制单元中的所述第一晶体管开关单元1303包括第二三极管Q2、第三三极管Q3、第二电阻R2、第三电阻R3以及第四电阻R4;
所述第二三极管Q2的基极与所述滤波单元1302相连;
具体的,即所述第八电阻R8的另一端与所述第二三极管Q2的基极相连,以实现所述滤波单元1302与所述第一晶体管开关单元1303的相连。
所述第二三极管Q2的发射极接地,所述第二三极管Q2的集电极与所述第二电阻R2及第三电阻R3相连;
所述第二电阻R2的另一端与电池的正极电连接,所述第三电阻R3的另一端与所述第三三极管Q3的基极相连;
所述第三三极管Q3的发射极与电池的正极电连接,所述第三三极管Q3的集电极与第四电阻R4及微处理器1301电连接,所述第四电阻R4的另一端接地。
其中,电热丝连接在P1和P2之间,以实现所述电热丝与所述微处理器 1301的电连接。
所述微处理器1301的具体实现结构请见图15所示,在本种设置方式中不做赘述。
所述微处理器1301及所述雾化器电连接的第二晶体管开关单元1305;
所述雾化器的具体结构请见上述实施例所示,在实施例中不做赘述。
所述微处理器1301用于若所述吸嘴和所述导电套导通,则所述微处理器1301依次导通所述第一晶体管开关单元1303和所述第二晶体管开关单元1305,以使所述雾化器雾化烟油。
以下对图15所示的电子烟控制电路的具体工作流程进行详细说明:
若无人触摸所述吸嘴和所述导电套,或,没有同时触摸所述吸嘴和所述导电套,则所述第一晶体管开关单元1303的所述第三三极管Q3的集电极输出低电平,即信号SIG=逻辑0,即所述第三三极管Q3的集电极与所述微处理器1301的第“3”引脚电连接,则所述微处理器1301确定其通过第“3”引脚接收到的信号SIG=逻辑0,则不为所述电热丝供电;
若用户同时触摸到吸嘴和导电套,则信号首先经过滤波单元1302滤波,之后流过所述第二三极管Q2使之导通,随即该信号流过所述第三三极管Q3使之导通,使SIG信号变为高电平,即SIG=逻辑1。
所述微处理器1301确定其通过第“3”引脚接收到的信号SIG=逻辑1,则控制所述电池为所述电热丝供电;
具体的,所述微处理器1301确定其通过第“3”引脚接收到的信号SIG=逻辑1时,则所述微处理器1301控制所述第四三极管Q4导通,从而使得所述电热丝两端通电,继而使得所述电热丝雾化烟油以形成烟雾。
第三种请见图16所示,所述控制单元包括:
微处理器1501、与所述导电套电连接用于对输入的信号进行滤波的滤波单元1502、与所述滤波单元1502电连接用于将滤波单元1502输出的信号进行比较并将比较结果输送给所述微处理器1501的比较电路单元1503、与所述微处理器1501及所述雾化器电连接的第三晶体管开关单元1504,所述微处理器1501用于根据所述比较电路单元1503输入的信号控制所述第三晶体管开关单元1504的通断,以控制雾化组件是否雾化烟油。
以下以图17所示对图16所示的控制单元的电路结构进行详细说明:
图17所示J4连接至所述导电套,J3连接至吸嘴为例进行说明,当然,为更便于用户操作以及便于用户抽吸烟雾,还可以在电子烟外表面设置分别与J1、J5、J7电连接的一个或多个导电体等。
所述滤波单元1502包括第九电阻R9及第三电容C3;
所述第九电阻R9的一端接地,所述第九电阻R9的另一端与所述吸嘴电连接;
所述第三电容C3的一端与所述吸嘴及所述比较单路单元1503连接,所述第三电容C3的另一端接地。
进一步的,所述比较单路单元1503包括比较器U2、第五电阻R5以及与所述第五电阻R5相互串联的第六电阻R6;
其中,所述滤波单元1502的所述第三电容C3的一端与所述吸嘴及所述比较器U2的同相输入端相连,以实现所述滤波单元1502与所述比较单路单元1503的相连。
所述第五电阻R5的远离所述第六电阻R6的一端与所述电池的正极电连接;
所述第六电阻R6的远离所述第五电阻R5的一端接地,所述比较器U2的同相输入端与所述吸嘴电连接,所述比较器U2的反相输入端与所述第五电阻的R5与所述第六电阻R6相邻的一端相连。
较佳的,通过所述滤波单元1502与所述比较单路单元1503的配合,可以避免不同的用户使用或在不同的场所中使用时所述导电套传过来的信号大幅度波动导致所述雾化器雾化烟油不稳定的现象。
其中,电热丝连接在P1和P2之间,以实现所述电热丝与所述微处理器1501的电连接。
所述微处理器1501的具体实现结构请见图17所示的实施例,在本种设置方式中不做赘述。
所述第三晶体管开关单元1504分别与所述电热丝和所述微处理器1501电连接;
具体的,所述第三晶体管开关单元1504包括第四三极管Q4;
以下对图17所示的电子烟控制电路的具体工作流程进行详细说明:
若无人触摸所述吸嘴和所述导电套,或,没有同时触摸所述吸嘴和所述导电套,则所述比较器U2的输出端输出低电平,即信号SIG=逻辑0,即所述比较器U2的输出端与所述微处理器1501的第“3”引脚电连接,则所述微处理器1501确定其通过第“3”引脚接收到的信号SIG=逻辑0,则不为所述电热丝供电;
若用户同时触摸到吸嘴和导电套,其中较佳的,所述吸嘴设置在吸嘴端,所述导电套设置在电子烟外表面的中下端,则用户正常抽吸烟雾时,即可同时触摸所述吸嘴和所述导电套;
信号首先经过滤波单元1502滤波,比较器U2正向输入端接收滤波后的导通信号与反向输入端基准电压信号进行比较,比较器U2的输出端输出一作为触发信号的比较结果信号至所述微处理器U1。
所述微处理器U1确定其通过第“3”引脚接收到的信号SIG=逻辑1,则控制所述电池为所述电热丝供电;
具体的,即所述微处理器1501确定其通过第“3”引脚接收到的信号SIG=逻辑1时,则所述微处理器1501控制所述第四三极管Q4导通,从而使得所述电热丝两端通电,继而使得所述电热丝雾化烟油以形成烟雾。
实施例四,本实施例提供了一种电子烟雾化控制方法:
如图18所示,该控制方法包括:
1801、电子烟内部设置的控制单元检测吸嘴和导电套是否导通;
所述电子烟内部还设置有用于为雾化器供电的电池杆组件,所述导电套套设在所述电池杆组件的外周面,所述吸嘴和所述导电套均由导电材质制成,且所述吸嘴和所述导电套均与所述控制单元电连接;
上述器件的具体结构和设置方式请见上述实施例,在本实施例中不做赘述。
1802、若是,则所述控制单元控制所述电池杆组件为所述雾化器供电以雾化烟油。
所述控制单元的具体电连接结构请见上述实施例,具体在本实施例中不做赘述。
通过实施例所提供的电子烟雾化控制方法的优势在于,使得在用户没有对 应操作(同时触摸位于电子烟外表面的所述吸嘴和所述导电套)的情况下,所述吸嘴和所述导电套之间是断开的,则电子烟在包装和运输的过程中,有效的避免电子烟在用户没有进行对应操作时就自动进行工作所造成的烟油的浪费以及电子烟使用寿命的不必要的减短,从而可提升安全,且可有效降低电热丝被误触发以雾化烟油的概率,且若用户希望抽吸烟雾,则同时触摸所述吸嘴和所述导电套即可,无需用户抽吸或按压操作,减少了用户的操作步骤和难度,提升了用户抽吸烟雾过程的体验。且因无需设置所述气流感应开关,则有效的降低了电子烟的成本,且避免在吸烟力度较小时气流感应器检测不到吸烟信号、烟油从气流通道进入电池组件造成短路等问题。更佳的是,用户在抽吸烟雾时,会自然的同时触摸吸嘴和导电套,简化了用户抽吸烟雾的步骤,且避免触摸不到而使得电热丝无法工作的情况。
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 (13)

  1. 一种电子烟,包括雾化器及与所述雾化器进行可拆卸连接的电池杆组件,所述电池杆组件内设置有用于为所述雾化器供电以使所述雾化器雾化烟油的电池,其特征在于,所述电子烟还包括与所述雾化器及电池杆组件电连接设置的控制单元;
    所述雾化器包括油杯组件、吸嘴及雾化芯,所述油杯组件包括储油套及插设在所述储油套内的通气管,所述油杯组件背离所述电池杆组件的一端设置有由导电材料制成的所述吸嘴,所述油杯组件的另一端设置有与所述油杯组件可拆卸连接的用于雾化烟油的所述雾化芯,所述雾化芯设置有烟雾通道及延伸至所述烟雾通道内的弹性导电臂,由导电材料制成的所述通气管插设于所述烟雾通道内并与所述弹性导电臂弹性抵持,所述弹性导电臂与所述控制单元电连接,所述弹性导电臂通过所述通气管与所述吸嘴电连接,所述电池杆组件的外周面设置有与所述控制单元电连接的导电套;
    用户吸烟时能够通过肌肤与所述吸嘴和所述导电套接触,以使所述吸嘴和所述导电套导通,所述控制单元检测到所述吸嘴和所述导电套导通时控制所述电池为所述雾化器供电以雾化烟油。
  2. 根据权利要求1所述的电子烟,其特征在于,所述控制单元设置于所述电池杆组件内,所述雾化芯的一端设置有套设在所述烟雾通道上的导电环,所述导电环的内周面沿远离吸嘴的方向倾斜延伸形成有一个或多个所述弹性导电臂,所述雾化芯的另一端设置有用于与所述电池杆组件及所述控制单元电连接的雾化电极组件,所述通气管插设于所述烟雾通道内,所述弹性导电臂弹性抵持在所述通气管的侧壁上,且其中一个所述弹性导电臂通过导线与所述雾化电极组件电连接。
  3. 根据权利要求2所述的电子烟,其特征在于,所述雾化芯的侧壁设有与所述雾化器外表面及所述烟雾通道相连通的进气孔,所述雾化电极组件堵塞在所述烟雾通道的一端,以使所述烟雾通道与所述电池杆组件相互隔离。
  4. 根据权利要求2或3所述的电子烟,其特征在于,所述雾化芯包括中空的雾化座,所述雾化座内形成有烟雾通道,所述烟雾通道与所述储油套内周壁之间设置有储油腔,所述雾化座的侧壁设置有与所述储油腔相连通的进油通 道,所述雾化座的一端插设有所述雾化电极组件,所述烟雾通道内设置有用于从所述进油通道中吸附所述储油腔内的烟油的烟油吸附件及用以雾化所述烟油吸附件上的烟油的电热丝,所述雾化电极组件包括插设在所述雾化座内的第一绝缘套、插设在所述第一绝缘套内的第一电极、插设在所述第一电极内的第二绝缘套以及插设在所述第二绝缘套内的第二电极,所述第二电极为实心柱体结构并与所述弹性导电臂电连接,所述电热丝两端分别与所述雾化座及所述第一电极电连接以电连接至所述电池。
  5. 根据权利要求4所述的电子烟,其特征在于,所述电子烟还包括用于电连接所述弹性导电臂和所述雾化电极组件的导线,其中,所述导线的一端与所述弹性导电臂焊接相连,所述导线的另一端夹持在所述第二电极与所述第二绝缘套之间。
  6. 根据权利要求4所述的电子烟,其特征在于,所述雾化芯还包括套设在所述雾化座背离所述电池杆组件一端的雾化盖及位于在雾化盖内并均套设在所述通气管上的绝缘件及弹性密封件,所述弹性密封件的两端分别与所述雾化盖端壁及所述绝缘件抵接,所述绝缘件的两端分别与所述弹性密封件及所述雾化座的一端抵接,所述导电环夹持在所述绝缘件及所述弹性密封件之间。
  7. 根据权利要求4所述的电子烟,其特征在于,所述储油套由可透光的非金属材料制成,所述吸嘴由金属材料制成并固定在所述储油套的一端,所述储油套背离所述吸嘴的一端固定设置有用于与所述雾化芯进行可拆卸连接的连接套。
  8. 根据权利要求1所述的电子烟,其特征在于,所述电池杆组件包括由金属材料制成的所述导电套、插设在所述导电套内的所述电池、插设在所述导电套一端的用于与所述雾化器连接的连接头、插设在所述导电套背离所述连接头一端的端盖,所述控制单元设置于所述电池杆组件内。
  9. 根据权利要求8所述的电子烟,其特征在于,所述连接头包括与所述控制单元电连接的连接套及插设在所述连接套内的第一弹性电极和第二弹性电极,所述第一弹性电极位于所述电池杆组件的轴向线位置处,所述第一弹性电极和第二弹性电极与所述雾化芯弹性抵接并电连接。
  10. 根据权利要求9所述的电子烟,其特征在于,所述第一弹性电极包括 固定套、活动插设在所述固定套内并延伸至所述固定套外的电极柱及两端分别弹性抵持在所述固定套及所述电极柱上的弹性件,所述电极柱的背离所述弹性件的一端与所述雾化芯弹性抵接。
  11. 根据权利要求1所述的电子烟,其特征在于,所述控制单元包括微处理器、与所述导电套电连接用于对输入的信号进行滤波的滤波单元、与所述滤波单元电连接用于将滤波单元输出的信号输送给所述微处理器的第一晶体管开关单元、与所述微处理器及雾化器电连接的第二晶体管开关单元,所述微处理器用于根据所述第一晶体管开关单元输入的信号控制所述第二晶体管开关单元的通断,以控制雾化器是否雾化烟油。
  12. 根据权利要求1所述的电子烟,其特征在于,所述控制模块包括微处理器、与所述导电套电连接用于对输入的信号进行滤波的滤波单元、与所述滤波单元电连接用于将滤波单元输出的信号进行比较并将比较结果输送给所述微处理器的比较电路单元、与所述微处理器及雾化器电连接的第三晶体管开关单元,所述微处理器用于根据所述比较电路单元输入的信号控制所述第三晶体管开关单元的通断,以控制雾化组件是否雾化烟油。
  13. 一种电子烟雾化控制方法,其特征在于,包括:
    电子烟内部设置的控制单元检测吸嘴和导电套是否导通,所述电子烟内部还设置有用于为雾化器供电的电池杆组件,所述导电套套设在所述电池杆组件的外周面,所述吸嘴和所述导电套均由导电材质制成,且所述吸嘴和所述导电套均与所述控制单元电连接;
    若是,则所述控制单元控制所述电池杆组件为所述雾化器供电以雾化烟油。
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