WO2019170032A1 - 电子烟、电子烟的控制方法和装置 - Google Patents
电子烟、电子烟的控制方法和装置 Download PDFInfo
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- WO2019170032A1 WO2019170032A1 PCT/CN2019/076539 CN2019076539W WO2019170032A1 WO 2019170032 A1 WO2019170032 A1 WO 2019170032A1 CN 2019076539 W CN2019076539 W CN 2019076539W WO 2019170032 A1 WO2019170032 A1 WO 2019170032A1
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- Prior art keywords
- liquid
- valve
- controlling
- cigarette
- heating
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Classifications
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- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24F—SMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
- A24F40/00—Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
- A24F40/50—Control or monitoring
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- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24F—SMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
- A24F40/00—Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
- A24F40/40—Constructional details, e.g. connection of cartridges and battery parts
- A24F40/48—Fluid transfer means, e.g. pumps
- A24F40/485—Valves; Apertures
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- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24F—SMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
- A24F40/00—Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
- A24F40/10—Devices using liquid inhalable precursors
Definitions
- the invention relates to the field of simulated smoking technology, in particular to a method and a device for controlling electronic cigarettes and electronic cigarettes.
- the electronic cigarette is an electronic product that imitates cigarettes.
- the electronic cigarette heats the liquid guiding member by controlling the heating of the heating element in the atomizer, so that the liquid guiding material sucks the liquid smoke sucked from the liquid storage member to atomize, thereby generating smoke.
- Smoke can be inhaled from the mouthpiece by the user of the electronic cigarette to achieve the purpose of simulating smoking.
- the atomizing head (including the liquid guiding member and the heating member) in the atomizer is directly immersed in the liquid storage member, and the atomizing head continuously performs the hot and cold cycle during the working process of the electronic cigarette, which easily causes the smoke in the liquid storage member.
- the liquid deteriorates.
- the embodiment of the invention provides a method and a device for controlling the electronic cigarette and the electronic cigarette.
- the technical solution is as follows:
- the electronic cigarette includes: a control assembly, a heating member, and a liquid storage member for storing the liquid smoke, wherein:
- a liquid outlet is disposed at a lower end of the liquid storage member, a valve is disposed at the liquid outlet, the valve is electrically connected to the control component, and the heating component is located below the valve;
- heating member is in contact with the liquid guiding member.
- the electronic cigarette further includes a liquid smoke collecting device, the smoke liquid collecting device is located below the heating member, and the liquid collecting device is a collecting chamber or a porous liquid collecting member.
- the electronic cigarette further comprises a liquid smoke collecting device, the smoke liquid collecting device is located below the heating member, and the liquid collecting device is a collecting chamber or a porous liquid collecting member.
- a method for controlling an electronic cigarette is provided, the method being applied to the electronic cigarette according to the first aspect and the optional embodiment of the first aspect, the method comprising:
- the opening size of the valve is controlled according to the detection result, and the heating member is controlled according to the detection result.
- controlling the opening size of the valve according to the detection result, and controlling the heating component according to the detection result includes:
- the smoke droplets in the liquid storage member are dropped onto the liquid guiding member by controlling the valve; the duration of the cigarette light signal reaches the If the cigarette light signal is not detected after the first time period, the heating element is controlled to generate heat, and the smoke droplets in the liquid storage member are dropped onto the liquid guiding member by controlling the valve.
- controlling the opening size of the valve according to the detection result, and controlling the heating component according to the detection result includes:
- the reference information when receiving the cigarette light signal, the reference information including at least one of humidity, resistance, and gravity of a predetermined component, the predetermined component being the heating member or the liquid guiding member;
- the smoke liquid in the liquid storage member is discharged by controlling the valve; After the duration of the signal reaches the second duration, if the cigarette signal interruption is not detected, the heating element is controlled to generate heat, and the smoke liquid in the liquid storage member is discharged by controlling the valve;
- controlling the opening size of the valve according to the detection result, and controlling the heating component according to the detection result includes:
- the output reference information including at least one of humidity, resistance, and gravity of the predetermined component, the predetermined component being the heating member or the liquid guiding member;
- the opening size of the valve is controlled based on the output reference information.
- the controlling the opening size of the valve according to the detection result, and controlling the heating element according to the detection result includes:
- the smoke liquid in the liquid storage member is caused to flow out by controlling the valve for a preset fourth time period; when the cigarette light signal is interrupted to reach the fourth time period, the control station Said valve is closed; or,
- the reference information comprising at least one of humidity, electrical resistance and gravity of a predetermined component, the predetermined component being the heating member or the liquid guiding member
- the valve is closed if the reference information is not below the reference threshold.
- controlling the opening size of the valve according to the detection result, and controlling the heating component according to the detection result includes:
- a control device for an electronic cigarette comprising:
- the processor by loading and executing the at least one program instruction, implements the control method of the electronic cigarette according to the second aspect and any alternative embodiment of the second aspect.
- a computer readable storage medium having stored therein one or more instructions that are implemented when executed by a processor within an electronic cigarette The method for controlling an electronic cigarette according to any of the alternative embodiments of the second aspect.
- the electronic cigarette comprises: a control component, a heating component and a liquid storage member for storing the liquid smoke, wherein: the lower end of the liquid storage member is provided with a liquid outlet, and the valve is provided at the liquid outlet; the valve Electrically connected to the control component, the heating element is located below the valve; the smoke droplets flowing out from the liquid outlet when the valve is opened fall on the heating element or the liquid guiding member; wherein all or part of the heating element is in contact with the liquid guiding member; That is, the outflow of the smoke liquid is controlled by the valve, and only the outflowing smoke liquid is heated each time atomization, thereby solving the problem that the smoke liquid in the liquid storage part in the prior art is easily deteriorated, and the smoke liquid in the liquid storage part can be reduced. The possibility of deterioration.
- FIG. 1 is a schematic structural view of an electronic cigarette according to an embodiment of the present invention.
- FIG. 2 is a schematic structural view of an electronic cigarette according to another embodiment of the present invention.
- FIG. 3 is a flow chart of a method for controlling an electronic cigarette according to an embodiment of the present invention.
- the electronic cigarette includes a control component (not shown), a heating component 11 and a liquid storage component 12 for storing the liquid smoke.
- the lower end of the liquid storage member 12 is provided with a liquid outlet 13 at which a valve 14 is disposed; the valve 14 is electrically connected to the control assembly, and the heating member 11 is located below the valve 14; when the valve 14 is opened, the liquid outlet is opened The smoke droplets flowing out of 13 fall on the heating member 11.
- the heating member 11 in the electronic cigarette when the heating member 11 in the electronic cigarette generates heat, the liquid smoke dripping on the heating member 11 can be atomized to generate smoke.
- the electronic cigarette further comprises a liquid smoke collecting device 15 , the smoke liquid collecting device 15 is located below the heating member 11 , and the liquid collecting device 15 is a collecting chamber or a porous liquid collecting member for collecting the drops from the heating member 11 . Falling smoke liquid.
- the porous liquid absorbing member is used to adsorb the liquid smoke dripping on the heating member 11. Moreover, the electronic cigarette is placed at any angle, and the liquid smoke in the porous liquid-absorbent member will not leak any more.
- the liquid smoke collecting device 15 is further provided with a liquid discharge port (not shown), and the liquid discharge pipe connected to the liquid discharge port can extend outside the electronic cigarette outer casing.
- the other end of the drain tube is provided with a plug. The user can discharge the smoke liquid collected by the liquid smoke collecting device 15 from the liquid discharge pipe by moving the plug out of the liquid discharge pipe.
- the liquid smoke collecting device 15 is further provided with a liquid level detector (not shown), and the liquid level detector user detects the liquid level of the liquid smoke in the liquid collecting device 15.
- the prompt message is displayed, and the prompt message is used to prompt the user to have too much liquid in the liquid collecting device 15, so please clean the cigarette in time.
- the heating member 11, the liquid storage member 12, and the liquid smoke collecting device 15 are all disposed on the upper portion of the electronic cigarette, and the battery 16 and the printed circuit board (PCB) in the electronic cigarette are disposed on the electronic cigarette.
- the lower part, and the upper part of the electronic cigarette is separated from the lower part of the electronic cigarette.
- the bottom of the heating chamber where the heating element 11 is located is provided with an air inlet 18, which is also in communication with the cigarette holder 19 of the electronic cigarette.
- the electronic cigarette includes a control component (not shown), a heating component 21, and a liquid storage member 22 for storing the liquid smoke.
- the lower end of the liquid storage member 22 is provided with a liquid outlet 23, and the liquid outlet 23 is provided with a valve 24; the valve 24 is electrically connected with the control assembly, and the heating member 21 is located below the valve 24.
- the electronic cigarette further includes a liquid guiding member 25, and all or a portion of the heating member 21 is in contact with the liquid guiding member 25.
- the heating member 21 may wrap the liquid guiding member 25, and the liquid guiding member 25 may also wrap the heating member 21; for example, in the case where the liquid guiding member 25 is in the form of a sheet, The liquid member 25 can cover the heating member 21.
- the heating member 21 in the electronic cigarette when the heating member 21 in the electronic cigarette generates heat, the liquid smoke dripping on the liquid guiding member 25 can be atomized to generate smoke.
- the liquid guide 25 is provided with a sensor assembly 26 that can be used to detect the temperature and/or humidity of the liquid guide 25.
- the sensor assembly 26 herein may be a temperature and humidity sensor, a temperature sensor, or a humidity sensor.
- the heating element 21, the liquid storage member 22, and the liquid guiding member 25 are all disposed on the upper portion of the electronic cigarette, and the battery 26 and the printed circuit board (PCB) in the electronic cigarette are disposed on the electronic cigarette.
- the lower part, and the upper part of the electronic cigarette is separated from the lower part of the electronic cigarette.
- the bottom of the heating chamber where the heating element 21 is located is provided with an air inlet 28, which is also in communication with the cigarette holder 29 of the electronic cigarette.
- the embodiment of the present invention provides an electronic cigarette
- the electronic cigarette includes: a control component, a heating component, and a liquid storage member for storing the liquid smoke
- the lower end of the liquid storage component is provided with a liquid outlet
- a valve is arranged at the liquid outlet
- the valve is electrically connected with the control component
- the heating component is located below the valve; when the valve is opened, the smoke droplets flowing out from the liquid outlet are dropped on the heating member or the liquid guiding member; wherein all of the heating member Or partially contacting the liquid guiding member; that is, controlling the outflow of the liquid smoke through the valve, and heating only the outflowing liquid liquid during each atomization, thereby solving the problem that the tobacco liquid in the liquid storage member in the prior art is easily deteriorated, and It can reduce the possibility of deterioration of the liquid in the liquid storage.
- FIG. 3 is a flowchart of a method for controlling an electronic cigarette according to an embodiment of the present invention.
- the method for controlling the electronic cigarette can be applied to the electronic cigarette shown in FIG. 1 or FIG.
- the method for controlling the electronic cigarette may include:
- Step 310 Detect whether a cigarette light signal is received.
- the cigarette light signal involved in the present application may be an operation signal generated when the key of the electronic cigarette is pressed, or may be an air flow signal detected by the airflow sensor in the electronic cigarette, and the airway and the electronic cigarette where the airflow sensor is located
- the mouthpieces are connected.
- the airflow sensor can detect the change of the airflow in the airway, such as the change of the air pressure, the change of the airflow velocity, and the like. This embodiment does not specifically limit the airflow signal.
- Step 320 controlling the opening size of the valve according to the detection result, and controlling the heating member according to the detection result.
- This step can be achieved in the following ways:
- the heating element is controlled to generate heat, and the smoke liquid in the liquid storage member is discharged from the liquid outlet by controlling the valve.
- the user presses the key of the electronic cigarette for 5 seconds, and the electronic cigarette controls the heating member to continue to heat and the valve continues to open during the 5 seconds.
- the smoke liquid in the liquid storage member flows out from the liquid outlet through mode S1, mode S2, mode S3 and mode S4:
- the output reference information is obtained, and the output reference information includes at least one of an output power, an output voltage, and an output temperature of the heating member; and the opening size of the valve is controlled according to the output reference information.
- the correspondence between the output reference information and the target opening of the valve is pre-stored in the electronic cigarette, and the opening of the control valve is a target opening corresponding to the output reference information.
- the opening mentioned herein may be 0 or non-zero, which is not limited thereto. Moreover, when the opening is 0, the valve is closed, and when the opening is non-zero, the valve is open.
- control valve is continuously opened and the opening size of the valve is a predetermined size.
- the predetermined size can be set by the system developer or can be customized by the user. If the electronic cigarette works in the power mode, the predetermined size may be a size corresponding to the target power set by the user, and the relationship between the size of the valve opening and the target power is pre-stored in the electronic cigarette; if the electronic cigarette works in the temperature control In the mode, the predetermined size may be a size corresponding to the target temperature set by the user, and the relationship between the size of the valve opening and the target temperature is pre-stored in the electronic cigarette.
- the electronic cigarette can control the valve to continuously open the T1 duration and control the valve to close the T2 duration in a unit time period (the duration is T).
- T1+T2 T; the values of T1 and T2 are fixed, T1 and T2 can be set by the system developer, or can be set by the user; or, T1 and T2 are determined according to the output parameters.
- the opening of the valve is usually adjusted to a predetermined size.
- the predetermined size can be set by the system developer or can be customized by the user.
- the user continuously presses the key for 4 seconds, and the output temperature of the electronic cigarette rises to 165 degrees Celsius; after that, the user continues to press the key for 2 seconds.
- the valve opening time in each unit time period is the same, and is greater than or equal to the length of time in which the valve is opened in the fourth unit time period in the first 4 seconds.
- the implementation of the step may also be: before the duration of the cigarette light signal reaches the first time period, the smoke in the liquid storage member is controlled by the control valve.
- the liquid flows out from the liquid outlet to the liquid guiding member, and the heating member does not generate heat; the duration of the cigarette signal reaches the first time period, and if the cigarette signal is not detected to be interrupted, the heating element is controlled to be heated, and The smoke liquid in the liquid storage member is dripped from the liquid outlet to the liquid guiding member by controlling the valve.
- the first duration is usually set by the system developer.
- the heating element does not generate heat in the first 1 second, but the smoke liquid in the liquid storage member is discharged from the liquid through the control valve.
- the mouth is dripped onto the liquid guiding member; the heating element is controlled to heat up within 3 seconds, and the smoke liquid in the liquid storage member is dripped from the liquid outlet to the liquid guiding member by controlling the valve.
- the smoke liquid is first discharged, and after a period of time, the heating element is controlled to generate heat, thereby avoiding the possibility of dry burning due to less smoke liquid attached to the heat generating part when directly heated after the cigarette is smoked. problem.
- the reference information when receiving the cigarette light signal, the reference information is acquired, the reference information includes at least one of humidity, resistance and gravity of the predetermined component, and the predetermined component is a heating component or a liquid guiding member; the reference information is lower than the first In the case of the threshold, if the duration of the cigarette signal does not reach the second length, the smoke liquid in the liquid storage member is discharged from the liquid outlet through the control valve, and the heating element is controlled to not generate heat; the duration of the cigarette signal is After the second time period is reached, if the cigarette signal is not detected to be interrupted, the heating element is controlled to generate heat, and the smoke liquid in the liquid storage member is discharged from the liquid outlet through the control valve.
- the first threshold and the second duration may be set by a system developer or may be customized by a user. If the reference information of the heating element is lower than the first threshold, it indicates that the smoke liquid on the heating element is less; if the reference information corresponding to the liquid guiding member is lower than the first threshold, it indicates that the heating liquid has less smoke liquid; therefore, in order to prevent Dry burning, at the beginning of the cigarette, first control the outflow of the smoke liquid in the liquid storage member without controlling the heating of the heating member.
- the heating element is controlled to generate heat, and the smoke liquid in the liquid storage member is discharged from the liquid outlet by controlling the valve.
- the second threshold may be set by the system developer or may be customized by the user, and the second threshold is greater than the first threshold.
- the duration of the cigarette signal reaches a third duration before the heating element is controlled to heat, and the control valve is closed; the duration of the cigarette signal reaches a third duration After the interruption of the cigarette light signal is not detected, the heating element is controlled to generate heat, and the smoke liquid in the liquid storage member is discharged from the liquid outlet through the control valve.
- the third duration can be set by the system developer or can be customized by the user. If the reference information of the heating member is higher than the second threshold, it indicates that there is more smoke liquid on the heating member; if the reference information corresponding to the liquid guiding member is higher than the second threshold, it indicates that there is more smoke liquid on the heating member; Preventing excess liquid in the heating element from causing leakage, and when the reference information is higher than the second threshold, it is possible to control only the heating of the heating element and no longer control the outflow of the liquid in the liquid storage member.
- the smoke liquid in the liquid storage member is discharged through the control valve for a predetermined fourth time period; when the cigarette signal interruption reaches the fourth time period, the control valve is closed.
- the fourth time period can be set by the system developer to enable the electronic cigarette to drip the liquid or the heating element when the cigarette is finished, thereby avoiding the dry burning due to the residual heat of the heating element after the end of the cigarette.
- the method provided by the embodiment of the present invention detects whether a cigarette light signal is received, and controls the opening size of the valve according to the detection result to drop the smoke droplets in the liquid storage member on the liquid guiding member or the heating member, and according to The detection result controls the heating element; that is, the outflow of the smoke liquid is controlled by the valve, and only the outflowing smoke liquid is heated each time atomization, thereby solving the problem that the smoke liquid in the liquid storage part in the prior art is easily deteriorated, and the problem is achieved. It can reduce the possibility of deterioration of the liquid in the liquid storage.
- the electronic cigarette can stop the atomizing operation in the following manner when detecting the interruption of the cigarette light signal.
- control valve is closed when the cigarette light signal is not received.
- the user continuously presses the key for 4 seconds, and the electronic cigarette is controlled to be turned on and off after the control valve is continuously turned on for 4 seconds.
- the residual heat may cause dry burning of the liquid guiding member in order to avoid this problem. If it is detected that the cigarette light signal is interrupted, the heating element is controlled to stop heating, and the smoke liquid in the liquid storage member is discharged from the liquid outlet through the control valve within a preset fifth time period; when the cigarette light signal is interrupted for the fifth time period, The control valve is closed.
- the fifth duration can be set by the system developer or can be customized by the user.
- the heat dissipation speed can be determined according to the material of the current heating member, and then the valve is determined according to the heat dissipation speed and the temperature of the heating member when the heating is stopped. The size of the opening.
- the residual heat may cause dry burning of the liquid guiding member in order to avoid this problem.
- the heating temperature of the heating element is obtained, and the reference threshold corresponding to the heating temperature is obtained; when the reference information is lower than the reference threshold, the tobacco liquid attached to the current heating element may be insufficient to meet the consumption.
- the smoke liquid in the liquid storage member flows out from the liquid outlet through the control valve in the sixth time; when the reference information is not lower than the reference threshold, the amount of the smoke liquid attached to the heating member may be To meet the consumption, in order to prevent leakage of liquid due to excessive liquid smoke, the valve can be closed.
- the correspondence between the heating temperature and the reference threshold is pre-stored in the electronic cigarette, and the correspondence may be set by the system developer or may be customized by the user.
- the developer can set the reference threshold corresponding to each heating temperature to be realized by determining the amount of the smoke liquid consumed by the heating element from the natural cooling of the heating temperature by a plurality of tests to obtain a reference threshold.
- the residual heat may cause dry burning of the liquid guiding member in order to avoid this problem.
- the output power of the heating element is obtained, the cumulative heating time after the startup, and the accumulated non-heating time after the startup, according to the output power of the heating element, the cumulative heating time after the startup, and the cumulative non-heating duration control valve opening size To control the amount of smoke outflow in the liquid storage.
- the residual temperature when the heating element stops heating may be calculated according to the output power of the heating element, the cumulative heating time after the startup, and the accumulated non-heating time, and the opening size of the valve is controlled according to the residual temperature to control the liquid smoke in the liquid storage member. Outflow.
- the opening size of the valve can be controlled according to the remaining temperature and the accumulated length of time after the end of the cigarette.
- a correspondence relationship between the residual temperature and the accumulated duration after the end of the cigarette is stored in advance, and the opening size of the valve is determined according to the correspondence. In the case where the residual temperature is determined, that is, in the case where the initial value of the valve opening is determined, the longer the cumulative length, the smaller the opening of the valve.
- An embodiment of the present invention further provides a computer readable storage medium having stored therein one or more instructions that are implemented by a processor within an electronic cigarette A method of controlling an electronic cigarette according to any of the above embodiments.
- the electronic cigarette of the present invention may include a processor and a memory for executing a computer program instruction to execute a processor of various processes and methods for storing program instructions, the processor being capable of being implemented by executing the program instruction A method of controlling an electronic cigarette according to any of the above embodiments.
- An embodiment of the present invention further provides a control device for an electronic cigarette, the control device comprising: a memory and a processor; the memory storing at least one program instruction; the processor, by loading and executing the at least one piece
- the program instructions are to implement the control method of the electronic cigarette involved in any of the above embodiments.
- first and second are used for descriptive purposes only and are not to be construed as indicating or implying a relative importance or implied number of technical features indicated. Thus, the defined “first”, “second” features may include one or more of the features, either explicitly or implicitly. In the description of the present invention, “a plurality” means two or more unless otherwise stated.
- a person skilled in the art may understand that all or part of the steps of implementing the above embodiments may be completed by hardware, or may be instructed by a program to execute related hardware, and the program may be stored in a computer readable storage medium.
- the storage medium mentioned may be a read only memory, a magnetic disk or an optical disk or the like.
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Abstract
本发明公开了一种电子烟、电子烟的控制方法和装置,属于模拟吸烟技术领域。所述电子烟包括:控制组件、加热件以及用于储存烟液的储液件,其中:所述储液件的下端设置有出液口,所述出液口处设置有阀门;所述阀门与所述控制组件电连接,所述加热件位于所述阀门的下方;所述阀门打开时从所述出液口流出的烟液滴落在加热件或者导液件上;其中,所述加热件中的全部或者部分与所述导液件接触。解决了现有技术中储液件中烟液易变质的问题,达到了降低储液件中烟液变质的可能性。
Description
本发明涉及模拟吸烟技术领域,特别涉及一种电子烟、电子烟的控制方法和装置。
电子烟是一种模仿卷烟的电子产品,电子烟通过控制雾化器中加热件发热来对导液件进行加热,使导液件从储液件中吸取的烟液雾化从而产生烟雾,该烟雾可以被电子烟的使用者从烟嘴吸入体内,从而达到模拟吸烟的目的。
目前,雾化器中的雾化头(包括导液件、加热件)直接浸泡在储液件中,而电子烟工作过程中雾化头不断地进行冷热循环,容易导致储液件内烟液变质。
发明内容
为了解决现有技术中储液件中烟液易变质的问题,本发明实施例提供了一种电子烟、电子烟的控制方法和装置。所述技术方案如下:
第一方面,提供了一种所述电子烟包括:控制组件、加热件以及用于储存烟液的储液件,其中:
所述储液件的下端设置有出液口,所述出液口处设置有阀门;所述阀门与所述控制组件电连接,所述加热件位于所述阀门的下方;
所述阀门打开时从所述出液口流出的烟液滴落在所述加热件或者导液件上;
其中,所述加热件中的全部或者部分与所述导液件接触。
所述电子烟还包括烟液收集装置,所述烟液收集装置位于所述加热件的下方,所述烟液收集装置为收集腔或者多孔吸液件。
可选的,所述电子烟还包括烟液收集装置,所述烟液收集装置位于所述加热件的下方,所述烟液收集装置为收集腔或者多孔吸液件。
第二方面,提供了一种电子烟的控制方法,所述方法应用于第一方面以及 第一方面任一可选实施方式所涉及的电子烟中,所述方法包括:
检测是否接收到点烟信号;
根据检测结果控制所述阀门的开口大小,以及根据所述检测结果控制所述加热件。
可选的,所述根据检测结果控制所述阀门的开口大小,以及根据所述检测结果控制所述加热件,包括:
在接收到所述点烟信号时,控制所述加热件发热,以及通过控制所述阀门使所述储液件中的烟液从流出;
或者,
在所述点烟信号的持续时长达到第一时长之前,通过控制所述阀门使所述储液件中烟液滴落至所述导液件上;在所述点烟信号的持续时长达到所述第一时长后如果未检测到所述点烟信号中断,则控制所述加热件发热,以及通过控制所述阀门使所述储液件中烟液滴落至所述导液件上。
可选的,所述根据检测结果控制所述阀门的开口大小,以及根据所述检测结果控制所述加热件,包括:
在接收到所述点烟信号时获取参考信息,所述参考信息包括预定元件的湿度、电阻以及重力中的至少一种,所述预定元件为所述加热件或所述导液件;
在所述参考信息低于第一阈值的情况下,所述点烟信号的持续时长未达到第二时长之前,通过控制所述阀门使所述储液件中的烟液流出;所述点烟信号的持续时长达到所述第二时长后如果未检测到所述点烟信号中断,则控制所述加热件发热,以及通过控制所述阀门使所述储液件中的烟液流出;
在所述参考信息不低于所述第一阈值且低于第二阈值的情况下,如果未检测到所述点烟信号中断,则控制所述加热件发热,以及通过控制所述阀门使所述储液件中的烟液流出;
在所述参考信息高于所述第二阈值的情况下,所述点烟信号的持续时长达到第三时长之前控制所述加热件发热,以及控制所述阀门关闭;所述点烟信号的持续时长达到所述第三时长后如果未检测到所述点烟信号中断,则控制所述加热件发热,以及通过控制所述阀门使所述储液件中的烟液流出。
可选的,所述根据检测结果控制所述阀门的开口大小,以及根据所述检测结果控制所述加热件,包括:
获取输出参考信息,所述输出参考信息包括预定元件的湿度、电阻以及重力中的至少一种,所述预定元件为所述加热件或所述导液件;
根据所述输出参考信息控制所述阀门的开口大小。
可选的,
所述根据检测结果控制所述阀门的开口大小,以及根据所述检测结果控制所述加热件,包括:
如果检测到所述点烟信号中断,则在预设的第四时长内通过控制所述阀门使所述储液件中的烟液流出;所述点烟信号中断达到第四时长时,控制所述阀门关闭;或者,
如果检测到所述点烟信号中断,则控制所述阀门关闭;或者,
在检测到所述点烟信号中断时,获取所述加热件的发热温度,以及获取所述发热温度对应的参考阈值;在参考信息低于所述参考阈值的情况下,在第六时长内通过控制所述阀门使所述储液件中的烟液流出,所述参考信息包括预定元件的湿度、电阻以及重力中的至少一种,所述预定元件为所述加热件或所述导液件;在所述参考信息不低于所述参考阈值的情况下,关闭所述阀门。
可选的,所述根据检测结果控制所述阀门的开口大小,以及根据所述检测结果控制所述加热件,包括:
在检测到所述点烟信号中断后获取所述加热件的输出功率以及开机后累计加热时长,根据所述加热件的输出功率以及所述开机后累计加热时长控制所述阀门的开口大小,以控制所述储液件中烟液的流出量。
第三方面,提供了一种电子烟的控制装置,所述控制装置包括:
存储器和处理器;
所述存储器中存储有至少一条程序指令;
所述处理器,通过加载并执行所述至少一条程序指令以实现第二方面以及第二方面任一可选实施方式所涉及的电子烟的控制方法。
第四方面,提供了一种计算机可读存储介质,所述计算机可读存储介质中存储有一个或一个以上的指令,所述一个或一个以上的指令被电子烟内的处理器执行时实现第二方面以及第二方面任一可选实施方式所涉及的电子烟的控制方法。
本发明实施例提供的技术方案带来的有益效果是:
通过提供一种电子烟,该电子烟包括:控制组件、加热件以及用于储存烟液的储液件,其中:储液件的下端设置有出液口,出液口处设置有阀门;阀门与控制组件电连接,加热件位于阀门的下方;阀门打开时从出液口流出的烟液滴落在加热件或者导液件;其中,加热件中的全部或者部分与导液件接触;也即通过阀门来控制烟液的流出,每次雾化时仅加热流出的烟液,解决了现有技术中储液件中的烟液容易变质的问题,达到了可以降低储液件中烟液变质的可能性。
为了更清楚地说明本发明实施例中的技术方案,下面将对实施例描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是本发明一个实施例提供的一种电子烟的结构示意图;
图2是本发明另一个实施例提供的一种电子烟的结构示意图;
图3是本发明一个实施例提供的电子烟的控制方法的方法流程图。
为使本发明的目的、技术方案和优点更加清楚,下面将结合附图对本发明实施方式作进一步地详细描述。
请参见图1,本发明一个实施例提供的一种电子烟的结构示意图,该电子烟包括控制组件(图中未示出)、加热件11以及用于储存烟液的储液件12,其中:储液件12的下端设置有出液口13,出液口13处设置有阀门14;阀门14与控制组件电连接,加热件11位于阀门14的下方;阀门14打开时,从出液口13流出的烟液滴落在加热件11上。
需要说明的一点是,电子烟内加热件11发热时,可雾化滴落在加热件11上的烟液从而产生烟雾。
可选的,该电子烟还包括烟液收集装置15,烟液收集装置15位于加热件11的下方,烟液收集装置15为收集腔或者多孔吸液件,用于收集从加热件11 上滴落的烟液。
在烟液收集装置15为多孔吸液件时,多孔吸液件用于吸附加热件11上滴落的烟液。而且,电子烟以任意角度放置,多孔吸液件内的烟液也不会再漏出。
进一步的,烟液收集装置15上还设置有排液口(图中未示出),与该排液口相连接的排液管能够伸出电子烟外壳的外部。可选的,该排液管的另一端设置有堵头。用户可通过将该堵头移出排液管,使烟液收集装置15收集的烟液从该排液管排出。
再进一步的,该烟液收集装置15中还设置有液位检测器(图中未示出),该液位检测器用户检测烟液收集装置15中烟液的液位。可选的,在液位检测器检测到的液位达到烟液收集装置15的报警值时,展示提示消息,该提示消息用于提示用户液收集装置15中烟液过多,请及时清理烟液收集装置15中烟液。
可选的,加热件11、储液件12以及烟液收集装置15均设置在电子烟的上部,电子烟中的电池16、印制电路板17(Printed Circuit Board,PCB)均设置在电子烟的下部,而且电子烟的上部与电子烟的下部隔开。
可选的,加热件11所在的加热腔的底部设置有进气口18,该加热腔还与电子烟的烟嘴19连通。
请参见图2,本发明另一个实施例提供的一种电子烟的结构示意图,该电子烟包括控制组件(图中未示出)、加热件21以及用于储存烟液的储液件22,其中:储液件22的下端设置有出液口23,出液口23处设置有阀门24;阀门24与控制组件电连接,加热件21位于阀门24的下方。该电子烟中还包括导液件25,加热件21中的全部或者部分与导液件25接触。例如,在加热件21为螺旋状的情况下,加热件21可包裹导液件25,导液件25也可包裹加热件21;再例如,在导液件25为片状的情况下,导液件25可覆盖加热件21。
当阀门24被打开时,从出液口23流出的烟液滴落在阀门24打开时,从出液口23流出的烟液滴落在导液件25上。
需要说明的一点是,电子烟内加热件21发热时,可雾化滴落在导液件25上的烟液从而产生烟雾。
在一种可能的实施方式中,导液件25上设置有传感器组件26,传感器组件26可用于检测导液件25的温度和/或湿度。例如,这里的传感器组件26可以为 温湿度传感器,也可以为温度传感器,也可以为湿度传感器。
可选的,加热件21、储液件22、导液件25均设置在电子烟的上部,电子烟中的电池26、印制电路板27(Printed Circuit Board,PCB)均设置在电子烟的下部,而且电子烟的上部与电子烟的下部隔开。
可选的,加热件21所在的加热腔的底部设置有进气口28,该加热腔还与电子烟的烟嘴29连通。
综上所述,本发明实施例通过提供一种电子烟,该电子烟包括:控制组件、加热件以及用于储存烟液的储液件,其中:储液件的下端设置有出液口,出液口处设置有阀门;阀门与控制组件电连接,加热件位于阀门的下方;阀门打开时从出液口流出的烟液滴落在加热件或者导液件;其中,加热件中的全部或者部分与导液件接触;也即通过阀门来控制烟液的流出,每次雾化时仅加热流出的烟液,解决了现有技术中储液件中的烟液容易变质的问题,达到了可以降低储液件中烟液变质的可能性。
请参考图3,其示出了本发明一个实施例提供的电子烟的控制方法的方法流程图,该电子烟的控制方法可应用于如图1或如图2所示的电子烟中。如图3所示,该电子烟的控制方法可以包括:
步骤310,检测是否接收到点烟信号。
其中,本申请所涉及的点烟信号可以为电子烟上开关键被按压时产生的操作信号,也可以为电子烟中气流传感器检测到的气流信号,该气流传感器所在的气道与电子烟的烟嘴相连接,当用户通过电子烟的烟嘴进行抽吸时,由于气流传感器设置在与烟嘴相连的气道中,气流传感器可检测到气道内的气流变化情况,例如气压变化、气流流速变化等等,本实施例不对气流信号做具体限定。
步骤320,根据检测结果控制阀门的开口大小,以及根据该检测结果控制加热件。
本步骤可通过以下几种方式实现:
第一种,在接收到点烟信号时,控制加热件发热,以及通过控制阀门使储液件中烟液从出液口流出。
举例来讲,电子烟开机后,用户长按电子烟上开关键5秒,则电子烟在这5s内控制加热件持续发热且阀门持续开启。
其中,通过控制阀门使储液件中烟液从出液口流出可通过方式S1、方式S2、方式S3以及方式S4实现:
方式S1,获取输出参考信息,该输出参考信息包括加热件的输出功率、输出电压以及输出温度中的至少一种;根据输出参考信息控制阀门的开口尺寸。
电子烟中预先存储有输出参考信息与阀门的目标开口之间的对应关系,控制阀门的开口为输出参考信息对应的目标开口。其中,此处所说的开口可以为0也可以为非0,对此并不做限定。并且,在开口为0时,则阀门为关闭,开口为非0时阀门为开启状态。
方式S2,控制阀门持续开启且阀门的开口尺寸为预定尺寸。
其中,预定尺寸可以由系统开发人员设定,也可由用户自定义。如果电子烟工作于功率模式,则预定尺寸可以为用户设定的目标功率所对应的尺寸,电子烟中预先存储有阀门开口的尺寸与目标功率之间对应的关系;如果电子烟工作于温控模式,则预定尺寸可以为用户设定的目标温度所对应的尺寸,电子烟中预先存储有阀门开口的尺寸与目标温度之间对应的关系。
方式S3,电子烟可在一个单位时间段(时长为T)内控制阀门持续开启T1时长、控制阀门关闭T2时长。其中,T1+T2=T;T1和T2的取值均固定,T1、T2可以由系统开发人员设定,也可由用户设定;或者,T1和T2为根据输出参数确定
需要说明一点是,控制阀门从关闭状态切换至开启状态时,通常将阀门的开口调整至预定尺寸。其中,预定尺寸可以由系统开发人员设定,也可由用户自定义。
以电子烟工作于温控模式、目标温度为165摄氏度来举例说明,电子烟开机后用户持续按压开关键4秒,电子烟的输出温度升高至165摄氏度;此后用户继续按压开关键2秒。则在前4秒对应的4个单位时间段内,第n+1个单位时间段中阀门打开的时长高于第n个单位时间段中阀门打开的时长(n=1,2,3);在后2秒对应的两个单位时间段内,每个单位时间段中阀门打开的时长相同、且大于或等于前4秒中第4个单位时间段中阀门打开的时长。
第二种,在该控制方法应用于如图2所示的电子烟中时,本步骤的实现还可以为:点烟信号的持续时长达到第一时长之前,通过控制阀门使储液件中烟液从出液口流出滴落至导液件上,此时加热件不发热;该点烟信号的持续时长 达到第一时长后如果未检测到该点烟信号中断,则控制加热件发热,以及通过控制阀门使储液件中烟液从出液口流出滴落至导液件上。
其中,第一时长通常由系统开发人员设定。
以第一时长为1秒来举例说明,电子烟开机后用户仅持续按压开关键4秒,则在前1秒内控制加热件不发热、但通过控制阀门使储液件中烟液从出液口流出滴落至导液件上;在后3秒内控制加热件发热,并且通过控制阀门使储液件中烟液从出液口流出滴落至导液件上。通过在点烟之后,先使烟液流出,并在一段时间之后控制发热件发热,避免了在点烟之后直接加热时,由于发热件附着的烟液较少而导致的可能会发生干烧的问题。
第三种,在接收到点烟信号时获取参考信息,该参考信息包括预定元件的湿度、电阻以及重力中的至少一种,预定元件为加热件或导液件;该参考信息低于第一阈值的情况下,如果该点烟信号的持续时长未达到第二时长,则通过控制阀门使储液件中烟液从出液口流出,以及控制加热件不发热;该点烟信号的持续时长达到第二时长后如果未检测到该点烟信号中断,则控制加热件发热,以及通过控制阀门使储液件中烟液从出液口流出。
其中,第一阈值、第二时长可以由系统开发人员设定,也可由用户自定义。如果加热件的参考信息低于第一阈值,则表明加热件上烟液较少;如果导液件对应的参考信息低于第一阈值,则表明加热件上烟液较少;因此,为了防止干烧,在点烟起始时先控制储液件中的烟液流出而不控制加热件加热。
可选的,在该参考信息不低于第一阈值且低于第二阈值的情况下,如果未检测到点烟信号中断,则说明烟液的留出量和当前烟液的消耗量基本平衡,此时控制加热件发热,以及通过控制阀门使储液件中烟液从出液口流出。
其中、第二阈值可以由系统开发人员设定,也可由用户自定义,第二阈值大于第一阈值。
可选的,在该参考信息高于第二阈值的情况下,该点烟信号的持续时长达到第三时长之前控制加热件发热,以及控制阀门关闭;该点烟信号的持续时长达到第三时长后如果未检测到点烟信号中断,则控制加热件发热,以及通过控制阀门使储液件中烟液从出液口流出。
其中,第三时长可以由系统开发人员设定,也可由用户自定义。如果加热件的参考信息高于第二阈值,则表明加热件上烟液较多;如果导液件对应的参 考信息高于第二阈值,则表明加热件上烟液较多;此时,为了防止加热件中的烟液过剩而导致漏液,在参考信息高于第二阈值时,可以仅控制加热件加热而不再控制储液件中的烟液流出。
第四种,如果检测到点烟信号中断,则在预设的第四时长内通过控制阀门使储液件中的烟液流出;在该点烟信号中断达到第四时长时,控制阀门关闭。
其中,第四时长可以由系统开发人员设定,以使电子烟在结束点烟时向导液件或加热件滴液,避免了由于点烟结束之后由于加热件存在余热而导致发生干烧。
综上所述,本发明实施例提供的方法,通过检测是否接收到点烟信号;根据检测结果控制阀门的开口大小将储液件中烟液滴落在导液件或者加热件上,以及根据该检测结果控制加热件;也即通过阀门来控制烟液的流出,每次雾化时仅加热流出的烟液,解决了现有技术中储液件中的烟液容易变质的问题,达到了可以降低储液件中烟液变质的可能性。
在上述任一实施例的一个示例中,电子烟在检测到点烟信号中断时可通过以下几种方式停止雾化工作。
第一种,在未接收到点烟信号时,控制阀门关闭。
举例来讲,电子烟开机后用户持续按压开关键4秒,则电子烟在这4s秒内控制阀门持续开启后关闭。
第二种,由于加热件停止工作后还有余热,余热可能会导致导液件的干烧,为了避免这一问题。如果检测到点烟信号中断,则控制加热件停止发热,以及在预设的第五时长内通过控制阀门使储液件中烟液从出液口流出;点烟信号中断达到第五时长时,控制阀门关闭。
其中,第五时长可以由系统开发人员设定,也可由用户自定义。并且,为了更好的平衡烟液的流出速度以及烟液的消耗速度,实际实现时,可以根据当前加热件的材质确定散热速度,进而根据散热速度以及停止加热时加热件的温度来确定阀门的开口大小。
第三种,由于加热件停止工作后还有余热,余热可能会导致导液件的干烧,为了避免这一问题。在检测到点烟信号中断时,获取加热件的发热温度,以及获取发热温度对应的参考阈值;在参考信息低于参考阈值的情况下,说明当前 加热件上附着的烟液可能不足以满足消耗,此时为了避免干烧在第六时长内通过控制阀门使储液件中烟液从出液口流出;在参考信息不低于参考阈值的情况下,说明加热件附着的烟液的量可以满足消耗,此时为了防止烟液过多而导致漏液,可以关闭阀门。
其中,电子烟中预先存储有发热温度与参考阈值之间的对应关系,该对应关系可以由系统开发人员设定,也可由用户自定义。开发人员设定每个发热温度对应的参考阈值的实现可以为:通过多次试验确定加热件由该发热温度自然冷却所消耗的烟液量得到参考阈值。
第四种,由于加热件停止工作后还有余热,余热可能会导致导液件的干烧,为了避免这一问题。在检测到点烟信号中断后获取加热件的输出功率、开机后累计加热时长、开机后累计不加热时长,根据加热件的输出功率、开机后累计加热时长、累计不加热时长控制阀门的开口大小,以控制储液件中的烟液流出量。
具体的,可根据加热件的输出功率、开机后累计加热时长、累计不加热时长计算出加热件停止发热时的余温,根据余温控制阀门的开口大小,以控制储液件中的烟液流出量。当然实际实现时,由于随着点烟结束的时间推移,加热件的余热越来越低,因此,还可以根据余温以及点烟结束后的累计时长控制阀门的开口大小。比如,电子烟中预先存储有余温和点烟结束后的累计时长的对应关系,根据该对应关系确定阀门的开口大小。其中在余温确定的情况下,也即阀门开口的起始值确定的情况下,累计时长越长,阀门的开口越小。
本发明一个实施例还提供的一种计算机可读存储介质,该计算机可读存储介质中存储有一个或一个以上的指令,所述一个或一个以上的指令被电子烟内的处理器执行时实现上述任一实施例中所涉及的电子烟的控制方法。
本发明中的电子烟可以包括处理器和存储器,该处理器用于执行计算机程序指令以完成各种流程和方法的处理器,该存储器用于存储程序指令,该处理器通过执行该程序指令能够实现上述任一实施例中所涉及的电子烟的控制方法。
本发明一个实施例还提供一种电子烟的控制装置,所述控制装置包括:存储器和处理器;所述存储器中存储有至少一条程序指令;所述处理器,通过加 载并执行所述至少一条程序指令以实现上述任一实施例中所涉及的电子烟的控制方法。
术语“第一”、“第二”仅用于描述目的,而不能理解为指示或暗示相对重要性或隐含所指示的技术特征的数量。由此,限定的“第一”、“第二”的特征可以明示或隐含地包括一个或者更多个该特征。在本发明的描述中,除非另有说明,“多个”的含义是两个或两个以上。
上述本发明实施例序号仅仅为了描述,不代表实施例的优劣。
本领域普通技术人员可以理解实现上述实施例的全部或部分步骤可以通过硬件来完成,也可以通过程序来指令相关的硬件完成,所述的程序可以存储于一种计算机可读存储介质中,上述提到的存储介质可以是只读存储器,磁盘或光盘等。
以上所述仅为本发明的较佳实施例,并不用以限制本发明,凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。
Claims (10)
- 一种电子烟,其特征在于,所述电子烟包括:控制组件、加热件以及用于储存烟液的储液件,其中:所述储液件的下端设置有出液口,所述出液口处设置有阀门;所述阀门与所述控制组件电连接,所述加热件位于所述阀门的下方;所述阀门打开时从所述出液口流出的烟液滴落在所述加热件或者导液件上;其中,所述加热件中的全部或者部分与所述导液件接触。
- 根据权利要求1所述的电子烟,其特征在于,所述电子烟还包括烟液收集装置,所述烟液收集装置位于所述加热件的下方,所述烟液收集装置为收集腔或者多孔吸液件。
- 一种电子烟的控制方法,其特征在于,所述方法应用于如权利要求1或2所述的电子烟中,所述方法包括:检测是否接收到点烟信号;根据检测结果控制所述阀门的开口大小,以及根据所述检测结果控制所述加热件。
- 根据权利要求3所述的方法,其特征在于,所述根据检测结果控制所述阀门的开口大小,以及根据所述检测结果控制所述加热件,包括:在接收到所述点烟信号时,控制所述加热件发热,以及通过控制所述阀门使所述储液件中的烟液从流出;或者,在所述点烟信号的持续时长达到第一时长之前,通过控制所述阀门使所述储液件中烟液滴落至所述导液件上;在所述点烟信号的持续时长达到所述第一时长后如果未检测到所述点烟信号中断,则控制所述加热件发热,以及通过控制所述阀门使所述储液件中烟液滴落至所述导液件上。
- 根据权利要求3所述的方法,其特征在于,所述根据检测结果控制所述阀门的开口大小,以及根据所述检测结果控制所述加热件,包括:在接收到所述点烟信号时获取参考信息,所述参考信息包括预定元件的湿度、电阻以及重力中的至少一种,所述预定元件为所述加热件或所述导液件;在所述参考信息低于第一阈值的情况下,所述点烟信号的持续时长未达到第二时长之前,通过控制所述阀门使所述储液件中的烟液流出;所述点烟信号的持续时长达到所述第二时长后如果未检测到所述点烟信号中断,则控制所述加热件发热,以及通过控制所述阀门使所述储液件中的烟液流出;在所述参考信息不低于所述第一阈值且低于第二阈值的情况下,如果未检测到所述点烟信号中断,则控制所述加热件发热,以及通过控制所述阀门使所述储液件中的烟液流出;在所述参考信息高于所述第二阈值的情况下,所述点烟信号的持续时长达到第三时长之前控制所述加热件发热,以及控制所述阀门关闭;所述点烟信号的持续时长达到所述第三时长后如果未检测到所述点烟信号中断,则控制所述加热件发热,以及通过控制所述阀门使所述储液件中的烟液流出。
- 根据权利要求3所述的方法,其特征在于,所述根据检测结果控制所述阀门的开口大小,以及根据所述检测结果控制所述加热件,包括:获取输出参考信息,所述输出参考信息包括预定元件的湿度、电阻以及重力中的至少一种,所述预定元件为所述加热件或所述导液件;根据所述输出参考信息控制所述阀门的开口大小。
- 根据权利要求3所述的方法,其特征在于,所述根据检测结果控制所述阀门的开口大小,以及根据所述检测结果控制所述加热件,包括:如果检测到所述点烟信号中断,则在预设的第四时长内通过控制所述阀门使所述储液件中的烟液流出;所述点烟信号中断达到第四时长时,控制所述阀门关闭;或者,如果检测到所述点烟信号中断,则控制所述阀门关闭;或者,在检测到所述点烟信号中断时,获取所述加热件的发热温度,以及获取所述发热温度对应的参考阈值;在参考信息低于所述参考阈值的情况下,在第六 时长内通过控制所述阀门使所述储液件中的烟液流出,所述参考信息包括预定元件的湿度、电阻以及重力中的至少一种,所述预定元件为所述加热件或所述导液件;在所述参考信息不低于所述参考阈值的情况下,关闭所述阀门。
- 根据权利要求3所述的方法,其特征在于,所述根据检测结果控制所述阀门的开口大小,以及根据所述检测结果控制所述加热件,包括:在检测到所述点烟信号中断后获取所述加热件的输出功率以及开机后累计加热时长,根据所述加热件的输出功率以及开机后累计加热时长控制所述阀门的开口大小,以控制所述储液件中烟液的流出量。
- 一种电子烟的控制装置,其特征在于,所述控制装置包括:存储器和处理器;所述存储器中存储有至少一条程序指令;所述处理器,通过加载并执行所述至少一条程序指令以实现权利要求1至8中任一所述的电子烟的控制方法。
- 一种计算机可读存储介质,所述计算机可读存储介质中存储有一个或一个以上的指令,其特征在于,所述一个或一个以上的指令被电子烟内的处理器执行时实现权利要求1至8中任一所述的电子烟的控制方法。
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| CN110916252B (zh) * | 2018-09-18 | 2022-07-05 | 常州市派腾电子技术服务有限公司 | 发热件的管理方法和装置 |
| CN113289161B (zh) * | 2020-02-24 | 2023-08-01 | 深圳麦克韦尔科技有限公司 | 医疗雾化器及其控制方法 |
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