CN204217894U - Control circuit and electronic cigarette - Google Patents

Control circuit and electronic cigarette Download PDF

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Publication number
CN204217894U
CN204217894U CN201320830877.4U CN201320830877U CN204217894U CN 204217894 U CN204217894 U CN 204217894U CN 201320830877 U CN201320830877 U CN 201320830877U CN 204217894 U CN204217894 U CN 204217894U
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China
Prior art keywords
comparison
control circuit
electronic cigarette
circuit
preset value
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Expired - Fee Related
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CN201320830877.4U
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Chinese (zh)
Inventor
刘秋明
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Jisheng Technology (Huizhou) Co., Ltd.
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Kimree Technology Co Ltd
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Abstract

The utility model provides control circuit and electronic cigarette, this control circuit comprises at least one pneumatic sensor, control module, at least two switch elements and the heating element heater that connect corresponding to switch element described in each, and described at least two switch elements and at least one pneumatic sensor described are connected with described control module respectively; Described pneumatic sensor collection sucks the airflow signal in described electronic cigarette at every turn and described airflow signal is sent to described control module, described control module sends Continuity signal at least one switch element in described at least two switch elements according to described airflow signal, after described switch element receives described Continuity signal, conducting is to make corresponding heating element heats, and described heating element heater is atomized to make it for the tobacco tar heated in corresponding oil storage part.The utility model has and can change smoking taste according to smoking dynamics, improves the beneficial effect of Consumer's Experience.

Description

Control circuit and electronic cigarette
Technical field
The utility model relates to daily electronics field, particularly relates to a kind of control circuit and electronic cigarette.
Background technology
In prior art, electronic cigarette is made up of atomizer and battery rod.Wherein be provided with in atomizer and store the oil storage part of tobacco tar and the heating element heater for heating tobacco tar.Tobacco tar when heating element generates heat in oil storage part can volatilize atomization, becomes smog and exports from suction nozzle, reach smoking effect.An air pressure driving switch and a supply module is had in battery rod.Air pressure driving switch senses the pressure that air circulation is formed when smoking the cigarette, triggers this supply module to heating elements, and this heating element heats tobacco tar forms smog.
Due in above-mentioned technology, user is when smoking regardless of the size of smoking dynamics, and the number of atomizer amount of smoke is all the same with taste.Therefore, user can not experience the change of amount of smoke when gently to take out when smoking true and heavily take out completely, and taste is single, automatically can not carry out seasoning according to the smoking habit of smoker, thus can not satisfy the demand.
Utility model content
The technical problems to be solved in the utility model is, for user in prior art can not experience completely smoke true time the smog taste defect that changes with smoking dynamics, a kind of control circuit and electronic cigarette of improvement are provided.
The technical scheme that the utility model technical solution problem adopts is: provide a kind of control circuit, for controlling electronic cigarette, comprise at least one pneumatic sensor, control module, at least two switch elements and the heating element heater that connect corresponding to switch element described in each, described at least two switch elements and at least one pneumatic sensor described are connected with described control module respectively;
Described pneumatic sensor collection sucks the airflow signal in described electronic cigarette at every turn and described airflow signal is sent to described control module, described control module sends Continuity signal at least one switch element in described at least two switch elements according to described airflow signal, after described switch element receives described Continuity signal, conducting is to make corresponding heating element heats, and described heating element heater is atomized to make it for the tobacco tar heated in corresponding oil storage part.
Preferably, described control circuit also comprises the supply module for providing power supply for described control module, switch element described in each and heating element heater described in each, and described supply module is connected with described control module and switch element described in each respectively.
Preferably, described control module is microprocessor.
Preferably, described control module comprises at least two-way comparison control circuit, the input of comparison control circuit described in each is connected with described pneumatic sensor respectively, described in each, the output of comparison control circuit has been connected respectively switch element described in, described at least two-way comparison control circuit arranges the described preset value increased successively, and described airflow signal triggers the comparison control circuit that preset value is less than described airflow signal;
When described in a road, comparison control circuit is triggered, described in this, the output of comparison control circuit exports described Continuity signal;
When comparison control circuit more than a road is triggered, all comparison control circuits be triggered sort by the size of preset value, in adjacent two comparison control circuits, the relatively large comparison control circuit of preset value suppresses the relatively little comparison control circuit of preset value to make it close, and the maximum described comparison control circuit of preset value exports described Continuity signal.
Preferably, comparison control circuit described in each comprises the first comparison circuit and the second comparison circuit, the comparative voltage input of described first comparison circuit is connected with described pneumatic sensor, the reference voltage terminal of described first comparison circuit with using described preset value as reference voltage, the reference voltage terminal of the second comparison circuit that the first comparison circuit that the output of the first comparison circuit that the preset value in adjacent two comparison control circuits is larger is less with preset value is corresponding connects; The comparative voltage input of described second comparison circuit is connected with the output of described first comparison circuit; Described first comparison circuit is used for described airflow signal to compare with preset value described in each respectively, and the output that preset value is less than described first comparison circuit of this airflow signal exports second voltage to the comparative voltage input of described second comparison circuit.
Preferably, described control circuit also comprises the amplifying unit for being amplified by described airflow signal, and described amplifying unit is connected between described pneumatic sensor and described control module.
The utility model additionally provides a kind of electronic cigarette, and described electronic cigarette comprises the control circuit described in above-mentioned any one.
Preferably, described electronic cigarette comprises at least two for storing the oil storage part of different tobacco tar, and heating element heater described in each is arranged in described oil storage part correspondingly.
Preferably, described electronic cigarette comprises at least two atomizers, at least two atomizers described in described at least two oil storage parts are separately positioned on.
Preferably, described electronic cigarette comprises an atomizer, and described at least two oil storage parts are all arranged in a described atomizer.
The control circuit that enforcement the utility model provides and electronic cigarette have following beneficial effect: the airflow signal that the control module that the utility model provides gathers according to air flow pressure sensor controls corresponding one or more switching means conductive, tobacco tar in the different oil storage part of the heating element heats making this switch element corresponding, to reach the object that smoking dynamics changes smog taste and amount of smoke, there is the beneficial effect improving Consumer's Experience; In addition, the smoker that smoking dynamics is different with smoking taste can realize a shared electronic cigarette, and it is inconvenient to carry convenience in the environment of more article in out on tours etc. comparatively obvious, brings comparatively convenience especially to the family with many people smoking.
Accompanying drawing explanation
Below in conjunction with drawings and Examples, the utility model is described in further detail, in accompanying drawing:
Fig. 1 is the theory diagram of the control circuit in the utility model one embodiment;
Fig. 2 is the theory diagram of the control module in the utility model first embodiment;
Fig. 3 is the theory diagram of the control circuit in the utility model second embodiment;
Fig. 4 is the circuit theory diagrams of the control circuit in the utility model second embodiment.
Detailed description of the invention
In order to solve user in prior art can not experience completely smoke true time smog taste and the defect that changes with smoking dynamics of amount of smoke, innovative point of the present utility model is, heavily can take out according to user's reality and, the airflow signal gently taken out and preset value compare, corresponding unlatching is connected to the switch element of different heating element, control the tobacco tar in the different oil storage part of heating element heats corresponding to this switch element, to reach the object that smoking dynamics changes smog taste and amount of smoke.
In order to there be understanding clearly to technical characteristic of the present utility model, object and effect, now contrast accompanying drawing and describe detailed description of the invention of the present utility model in detail.
As shown in Figure 1, a kind of control circuit, for controlling electronic cigarette, it comprises at least one pneumatic sensor 10, control module 20, at least two heating element heaters 30, at least two switch elements 40 and supply module 50.The control end of these at least two switch elements 40, pneumatic sensor 10 and supply module 50 are connected with this control module 20 respectively.Each switch element 40 is connected between each heating element heater 30 and supply module 50 respectively correspondingly.
Pneumatic sensor 10 sucks the airflow signal in electronic cigarette at every turn for gathering and airflow signal is sent to control module 20, control module 20 is for comparing each airflow signal and preset value, and select to send Continuity signal to the switch element of at least two switch elements 40 40 according to comparative result, switch element 40 heats to make corresponding heating element heater 30 for conducting after receiving Continuity signal, and heating element heater 30 is atomized to make it for the tobacco tar heated in corresponding oil storage part.The number of switch element and heating element heater is 3 in the present embodiment.The number of pneumatic sensor is 1.Switch element 40 can select conventional on-off circuit.Certainly, in other embodiments, the multiple switch elements 40 in described switch element 40 can simultaneously conducting, or all switch element also can conducting simultaneously, to realize the object automatically recalling multiple taste and change amount of smoke.Resistance value in described heating element heater 30 can be identical, also can be different, and it is arranged as required, in this no limit.Such as, in the present embodiment, the resistance value between described heating element heater 30 is different, and corresponding different oil storage parts.
This control circuit controls electronic cigarette and makes user generate heat to reach the taste of corresponding adjustment smoking to the heating element heater 30 controlled in corresponding oil storage part by adjusting each dynamics of smoking, described amount of smoke also can adjust according to smoking dynamics automatically, thus can improve Consumer's Experience, make this electronic cigarette more close to true cigarette; In addition, the smoker that smoking dynamics is different with smoking taste can realize a shared electronic cigarette, and it is inconvenient to carry convenience in the environment of more article in out on tours etc. comparatively obvious, brings comparatively convenience especially to the family with many people smoking.
In a first embodiment, this control module 20 adopts microprocessor, such as, model can be adopted to be the chip of MSP430F5529 or SN8P2711.As shown in Figure 2, this microprocessor comprises AD conversion unit 21, memory cell 22, comparing unit 23 and control unit 24.Comparing unit 23 is connected with pneumatic sensor 10 and control unit 24 respectively, and control unit 24 is connected with at least two switch elements 40 respectively, and memory cell 22 is connected with comparing unit 23, and AD conversion unit 21 is connected with comparing unit 23.
AD conversion unit 21 is for being converted to data signal by analog signal, memory cell 22 is for storing at least two preset values pre-set, comparing unit 23 is for comparing the peak value and each preset value that are converted to the airflow signal after data signal, select the maximum preset value of the peak value being less than this airflow signal at least two preset values, and sending a compare result signal to control unit 24 according to this maximum preset value, control unit 24 is selected to send Continuity signal to the switch element of at least two switch elements 40 40 according to compare result signal.
Understandably, this microprocessor can also comprise a timing unit 25, this timing unit 25 is connected with control unit 24, control unit 24 sends a triggering signal to this timing unit 25 while transmission Continuity signal is to switch element 40, timing unit 25 starts timing after receiving triggering signal, and transmission feeds back signal to control unit 24 after the timing scheduled time, control unit 24 sends shutdown signal according to this feedback signal and is in the switch element 40 of conducting state to this, close after this switch element 40 being in conducting state receives shutdown signal and make corresponding heating element heater 30 stop heating.
The ON time of this timing unit 25 corresponding switch element 40 by the setting scheduled time thus when controlling each smoking, and then amount of smoke when more accurately controlling each smoking.Further, after predetermined hold-time, automatically close this switch element 24 can also save tobacco tar and electric energy, in order to avoid cause unnecessary waste.Such as this scheduled time can be 2 seconds, 3 seconds or 4 seconds etc., and corresponding ON time is also 2 seconds, 3 seconds or 4 seconds.
When this comparing unit 23 receives another airflow signal within this scheduled time, and produce a compare result signal and pass to control unit 24, when that is to say that the interval receiving airflow signal for twice is less than the scheduled time of setting in timing unit 25:
If it is identical with previous compare result signal to receive compare result signal after this, control unit 24 sends a triggering signal to timing unit 25, reset after this timing unit 25 receives this triggering signal, and restart timing, and transmission feeds back signal to this control unit 24 after the timing scheduled time, control unit 24 sends shutdown signal again after receiving feedback signal makes it close to the switch element 40 being in conducting state.
If the compare result signal received after this is different from previous compare result signal, control unit 24 sends a shutdown signal makes it close to the switch element 40 being in conducting state, sends a Continuity signal simultaneously and makes its conducting to the switch element 40 corresponding with the compare result signal received after this.And send a triggering signal to timing unit 25, this timing unit 25 resets and restarts timing, send one after the timing scheduled time and feed back signal to control unit 24, control unit 24 sends shutdown signal makes it close to the switch element 40 being in conducting state.
In a second embodiment, as shown in Figure 3, control module 20 can comprise at least two-way comparison control circuit 20a, and the input of each comparison control circuit 20a is connected with pneumatic sensor 10 respectively, and the output of each comparison control circuit 20a is corresponding to be respectively connected with a switch element 40.These at least two preset values are separately positioned at least in two-way comparison control circuit 20a, and these at least two preset values raise successively.This airflow signal triggers the comparison control circuit 20a that preset value is less than airflow signal.When only having a road comparison control circuit 20a to be triggered, the output of this comparison control circuit 20a exports Continuity signal to the control end of switch element 40.When comparison control circuit 20a more than a road is triggered, all comparison control circuit 20a be triggered sort by the size of preset value, in adjacent two comparison control circuit 20a, the relatively large comparison control circuit 20a of preset value suppresses the relatively little comparison control circuit 20a of preset value to make it close, and the maximum comparison control circuit 20a of preset value exports Continuity signal.
Further, as shown in Figure 4, each comparison control circuit 20a comprises the first comparison circuit U2 and the second comparison circuit U3.First comparison circuit U2 and the second comparison circuit U3 comprises comparative voltage input, reference voltage terminal and output respectively.The operation principle of the first comparison circuit U2 and the second comparison circuit U3 is: when voltage higher than reference voltage terminal of the voltage of comparative voltage input, output exports a voltage.First comparison circuit U2, the second comparison circuit U3 are operational amplifier.And the reference voltage terminal of each operational amplifier and comparative voltage input are all connected with a divider resistance.Certainly can understand ground, this first comparison circuit U2 and the second comparison circuit U3 also can adopt other modes to realize, as chip or single-chip microcomputer etc.
The comparative voltage input of the first comparison circuit U2 is connected with pneumatic sensor 10, and the magnitude of voltage of the reference voltage terminal of the first comparison circuit U2 is set to one in these at least two preset values, as the reference voltage of the first comparison circuit U2.This reference voltage terminal is connected with supply module 50 after connecting divider resistance, is connected to the size of the divider resistance of this reference voltage terminal, to reach the object obtaining corresponding preset value by adjustment.The reference voltage terminal of the second comparison circuit U3 that the first comparison circuit U2 that the output of the first comparison circuit U2 that the preset value in adjacent two comparison control circuit 20a is larger is less with preset value is corresponding connects.It is adjacent that " adjacent " herein refers to when being sorted by the size of preset value by these at least two comparison control circuit 20a.The comparative voltage input of the second comparison circuit U3 is connected with the output of the first comparison circuit U2, ground connection after the reference voltage termination divider resistance of the second comparison circuit U3.Stream signal compares with each preset value by the first comparison circuit U2 respectively, and the output that preset value is less than the first comparison circuit U2 of this airflow signal exports second voltage to the comparative voltage input of the second comparison circuit U3.
When only having the preset value of a first comparison circuit U2 to be less than airflow signal, the output of this second comparison circuit U3 exports Continuity signal to corresponding switch element 40.When the preset value of more than one first comparison circuit U2 is less than airflow signal, be less than in the first comparison circuit U2 of airflow signal at all preset values, the second comparison circuit U3 that relatively maximum the first comparison circuit U2 of preset value is corresponding exports Continuity signal to corresponding switch element 40, and the second comparison circuit U3 corresponding to all the other first comparison circuit U2 is suppressed by the second voltage of the output of the first comparison circuit U2 be connected with the reference voltage terminal of this second comparison circuit U3 thus close respectively.
As the preferred version of the present embodiment, control module 20 can also comprise at least two delay units 200, and each delay unit 200 is connected between switch element 40 corresponding to each second comparison circuit U3 and this second comparison circuit U3.Delay unit 200 is for receiving the Continuity signal of the second comparison circuit U3 during at it, corresponding switch element 40 to continue to improve this Continuity signal in the given time, make switch element 40 conducting within the scheduled time that this continues, after this scheduled time terminates, this switch element 40 is closed automatically, and corresponding heating element heater 30 stops heating.
Preferably, between pneumatic sensor 10 and each the first comparison circuit U2, an amplifying unit U1 is also provided with.The airflow signal that this amplifying unit U1 is used for pneumatic sensor 10 to detect amplifies, and then the airflow signal after amplification is sent to each first comparison circuit U2 respectively.First amplifying unit U1 can adopt operational amplifier, can certainly adopt other conventional amplifying circuits.
In this enforcement, switch element 40 can be the common switch circuit etc. of metal-oxide-semiconductor or triode composition.
The utility model additionally provides a kind of electronic cigarette, and this electronic cigarette comprises the control circuit in above-mentioned any embodiment.Be provided with at least two in the atomizer of described electronic cigarette for storing the oil storage part of different tobacco tar, at least two heating element heaters 30 of control circuit are arranged in this oil storage part respectively correspondingly, and this electronic cigarette only has a pneumatic sensor 10.Pneumatic sensor 10 is arranged on the air inlet place of described electronic cigarette.
Or this electronic cigarette can also comprise at least two atomizers, at least two heating element heaters 30 of this control circuit are arranged in these at least two atomizers respectively correspondingly.Further, the number of this pneumatic sensor 10 is at least two, is preferably three.Each pneumatic sensor 10 is operated in different pressure stages respectively.When this pneumatic sensor 10 senses the air flow pressure signal airflow signal of corresponding pressure section, this pneumatic sensor is sent out 10 and is given this airflow signal to control module 20.In described embodiment of the present utility model, described airflow signal is the voltage signal that pneumatic sensor 10 produces according to variations in flow, and described preset value is the magnitude of voltage arranged according to airflow signal correspondence.
In sum, control module 20 of the present utility model controls corresponding heater element 30 according to the airflow signal that pneumatic sensor 10 gathers and generates heat, to make the tobacco tar in corresponding oil storage part be atomized, to reach the object that smoking dynamics changes smog taste.Further, this control module 20 can also control the duration that heating element heater 30 heats further, control the smoke generation of each smoking more accurately, according to smoking habit and the hobby of various smoking population, the amount of smoke of each smoking of reasonable disposition can make smoking effect reach best more, it can also save tobacco tar and electric energy, and closedown electronic cigarette makes electronic cigarette always in running order to prevent user from forgetting.
Should be understood that, for those of ordinary skills, can be improved according to the above description or convert, and all these improve and convert the protection domain that all should belong to the utility model claims.

Claims (9)

1. a control circuit, for controlling electronic cigarette, it is characterized in that, comprise at least one pneumatic sensor (10), control module (20), at least two switch elements (40) and the heating element heater (30) different from the corresponding resistance value connected of switch element described in each (40), described at least two switch elements (40) and at least one pneumatic sensor described (10) are connected with described control module (20) respectively;
Described pneumatic sensor (10) gathers the airflow signal in the described electronic cigarette of each suction and described airflow signal is sent to described control module (20), described control module (20) sends Continuity signal at least one switch element (40) in described at least two switch elements (40) according to described airflow signal, after described switch element (40) receives described Continuity signal, conducting is to make corresponding heating element heater (30) heating, and described heating element heater (30) is atomized to make it for the tobacco tar heated in corresponding oil storage part;
Wherein, described control module (20) comprises at least two-way comparison control circuit (20a), the input of comparison control circuit described in each (20a) is connected with described pneumatic sensor (10) respectively, the output of comparison control circuit described in each (20a) has been connected respectively switch element described in (40), the preset value that described at least two-way comparison control circuit (20a) setting increases successively, described airflow signal triggers the comparison control circuit (20a) that preset value is less than described airflow signal;
When described in a road, comparison control circuit (20a) is triggered, the output of comparison control circuit described in this (20a) exports described Continuity signal;
When comparison control circuit (20a) more than a road is triggered, all comparison control circuits (20a) be triggered sort by the size of preset value, in adjacent two comparison control circuits (20a), the relatively large comparison control circuit (20a) of preset value suppresses the relatively little comparison control circuit of preset value (20a) to make it close, and the maximum described comparison control circuit (20a) of preset value exports described Continuity signal.
2. control circuit according to claim 1, it is characterized in that, described control circuit also comprises the supply module (50) for providing power supply for described control module (20), switch element described in each (40) and heating element heater described in each (30), and described supply module (50) is connected with described control module (20) and switch element (40) described in each respectively.
3. control circuit according to claim 1, is characterized in that, described control module (20) is microprocessor.
4. control circuit according to claim 1, it is characterized in that, comparison control circuit described in each (20a) comprises the first comparison circuit (U2) and the second comparison circuit (U3), the comparative voltage input of described first comparison circuit (U2) is connected with described pneumatic sensor (10), the reference voltage terminal of described first comparison circuit (U2) is using described preset value as reference voltage, the reference voltage terminal of the second comparison circuit (U3) that the first comparison circuit (U2) that the output of the first comparison circuit (U2) that the preset value in adjacent two comparison control circuits (20a) is larger is less with preset value is corresponding connects, the comparative voltage input of described second comparison circuit (U3) is connected with the output of described first comparison circuit (U2), described first comparison circuit (U2) is for comparing described airflow signal with preset value described in each respectively, and the output that preset value is less than described first comparison circuit (U2) of this airflow signal exports second voltage to the comparative voltage input of described second comparison circuit (U3).
5. control circuit according to claim 1, it is characterized in that, described control circuit also comprises the amplifying unit (U1) for being amplified by described airflow signal, and described amplifying unit (U1) is connected between described pneumatic sensor (10) and described control module (20).
6. an electronic cigarette, is characterized in that, described electronic cigarette comprises the control circuit as described in any one of claim 1 to 5.
7. electronic cigarette according to claim 6, is characterized in that, described electronic cigarette comprises at least two for storing the oil storage part of different tobacco tar, and heating element heater described in each (30) is arranged in described oil storage part correspondingly.
8. electronic cigarette according to claim 7, is characterized in that, described electronic cigarette comprises at least two atomizers, at least two atomizers described in described at least two oil storage parts are separately positioned on.
9. electronic cigarette according to claim 7, is characterized in that, described electronic cigarette comprises an atomizer, and described at least two oil storage parts are all arranged in a described atomizer.
CN201320830877.4U 2013-12-16 2013-12-16 Control circuit and electronic cigarette Expired - Fee Related CN204217894U (en)

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CN104783332A (en) * 2015-03-29 2015-07-22 昆山祥维电子科技有限公司 Electronic cigarette capable of automatically controlling temperature
CN107404940A (en) * 2015-04-21 2017-11-28 惠州市吉瑞科技有限公司深圳分公司 Atomizer control circuit, electronic cigarette and its atomizer of a kind of electronic cigarette
CN107427066A (en) * 2015-04-03 2017-12-01 惠州市吉瑞科技有限公司深圳分公司 A kind of electronic cigarette control circuit and electronic cigarette atomizing control method
CN107529821A (en) * 2015-04-30 2018-01-02 惠州市吉瑞科技有限公司深圳分公司 A kind of atomizing component and electronic cigarette
CN108025150A (en) * 2015-07-17 2018-05-11 莱战略控股公司 The detection based on load of the aerosol delivery device of assembled arrangement
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CN104783332A (en) * 2015-03-29 2015-07-22 昆山祥维电子科技有限公司 Electronic cigarette capable of automatically controlling temperature
CN107427066A (en) * 2015-04-03 2017-12-01 惠州市吉瑞科技有限公司深圳分公司 A kind of electronic cigarette control circuit and electronic cigarette atomizing control method
CN107404940A (en) * 2015-04-21 2017-11-28 惠州市吉瑞科技有限公司深圳分公司 Atomizer control circuit, electronic cigarette and its atomizer of a kind of electronic cigarette
CN107529821A (en) * 2015-04-30 2018-01-02 惠州市吉瑞科技有限公司深圳分公司 A kind of atomizing component and electronic cigarette
CN111642805A (en) * 2015-06-29 2020-09-11 尼科创业控股有限公司 Electronic aerosol supply system
US11896055B2 (en) 2015-06-29 2024-02-13 Nicoventures Trading Limited Electronic aerosol provision systems
US10966460B2 (en) 2015-07-17 2021-04-06 Rai Strategic Holdings, Inc. Load-based detection of an aerosol delivery device in an assembled arrangement
US11684732B2 (en) 2015-07-17 2023-06-27 Rai Strategic Holdings, Inc. Load-based detection of an aerosol delivery device in an assembled arrangement
CN108025150A (en) * 2015-07-17 2018-05-11 莱战略控股公司 The detection based on load of the aerosol delivery device of assembled arrangement
CN108025150B (en) * 2015-07-17 2020-10-23 莱战略控股公司 Load-based detection of an aerosol delivery device in an assembled arrangement
CN108294363A (en) * 2017-01-12 2018-07-20 常州市派腾电子技术服务有限公司 The control method of electronic cigarette and electronic smoke atomizer power
CN108451036A (en) * 2018-03-20 2018-08-28 常州市派腾电子技术服务有限公司 Electronic cigarette control device, method, electronic cigarette and computer storage media
CN109043666A (en) * 2018-06-15 2018-12-21 芜湖启迪睿视信息技术有限公司 A kind of control method of intelligent low-temperature cigarette smoke chamber heating control system
CN109043666B (en) * 2018-06-15 2020-09-04 芜湖启迪睿视信息技术有限公司 Control method of intelligent low-temperature smoke cavity heating control system
CN110806767A (en) * 2018-08-06 2020-02-18 立锜科技股份有限公司 Heating device, temperature control circuit and temperature control method thereof
CN110806767B (en) * 2018-08-06 2021-06-29 立锜科技股份有限公司 Heating device, temperature control circuit and temperature control method thereof
CN109283867A (en) * 2018-08-24 2019-01-29 深圳市合元科技有限公司 A kind of ON-OFF control circuit, method of controlling switch and electronic cigarette
CN110269280A (en) * 2019-06-21 2019-09-24 东莞市阿尔法电子科技有限公司 Electronic cigarette and smoke grenade recognition methods
CN110269280B (en) * 2019-06-21 2024-01-02 东莞市阿尔法电子科技有限公司 Electronic cigarette and cartridge recognition method
WO2021088523A1 (en) * 2019-11-05 2021-05-14 深圳市康泓威科技有限公司 Electronic atomization apparatus chip with air-pressure sensing unit, and working method therefor
CN112205683A (en) * 2020-10-12 2021-01-12 北京航空航天大学云南创新研究院 Progressive heating circuit for heating non-combustion smoking set and control method
CN113841937A (en) * 2021-09-13 2021-12-28 深圳市太美亚电子科技有限公司 Electronic cigarette based on electromagnetic temperature control technology and control method thereof

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