WO2022116006A1 - 一种气溶胶产生方法及装置 - Google Patents

一种气溶胶产生方法及装置 Download PDF

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Publication number
WO2022116006A1
WO2022116006A1 PCT/CN2020/133153 CN2020133153W WO2022116006A1 WO 2022116006 A1 WO2022116006 A1 WO 2022116006A1 CN 2020133153 W CN2020133153 W CN 2020133153W WO 2022116006 A1 WO2022116006 A1 WO 2022116006A1
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WO
WIPO (PCT)
Prior art keywords
power supply
atomizing
supply device
atomization
atomizing device
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PCT/CN2020/133153
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English (en)
French (fr)
Inventor
王健
陈梓杰
郭美玲
朱伟
周波
汪微
Original Assignee
昂纳自动化技术(深圳)有限公司
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Priority to PCT/CN2020/133153 priority Critical patent/WO2022116006A1/zh
Publication of WO2022116006A1 publication Critical patent/WO2022116006A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/40Constructional 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

Definitions

  • the present invention relates to the technical field of aerosol generation, and more particularly, to an aerosol generation method and device.
  • the aerosol generating devices on the market usually include an atomizer and a power supply device.
  • the atomizer is powered by the power supply device, and can turn the smoke liquid in the atomizer into smoke for the user to use.
  • the composition of e-liquid varies greatly (concentration varies greatly), and the material of each component of the atomizer is different.
  • the material of each component of the atomizer is different.
  • the atomizer injects thick/thin e-liquid
  • the The thinner atomizing liquid is not easy/easy to guide the oil to the heating body, that is, the material of the atomizer components in contact with the different e-liquid has a great influence on the smoke and the taste of the atomizer.
  • different e-liquid and different materials are atomized Using the same power supply device control method for the device components will lead to problems such as large differences in the amount of smoke and poor taste experience, which will bring a bad user experience to consumers.
  • the technical problem to be solved by the present invention is to provide an aerosol generating method and device aiming at the above-mentioned defects of the prior art.
  • the technical solution adopted by the present invention to solve the technical problem is: constructing an aerosol generating method, including:
  • the power supply device determines whether to connect to the atomizing device
  • the power supply device is connected to the atomizing device for communication
  • the power supply device determines whether the communication connection with the atomization device is successful
  • the power supply device identifies the type of the atomizing device
  • the power supply device controls the atomization device to atomize the aerosol-forming substrate according to the type of the atomization device, so as to generate the aerosol.
  • the power supply device controlling the atomizing device to perform atomization on the aerosol-forming substrate according to the type of the atomizing device includes:
  • the power supply device obtains control information corresponding to the type of the atomization device according to the type of the atomization device;
  • the power supply device controls the atomizing device to atomize the aerosol-forming substrate according to the control information.
  • identifying the type of the atomizing device by the power supply device includes:
  • the power supply device identifies the type of the atomizing device according to the identification code of the atomizing device.
  • the power supply device and the atomizing device communicate with the atomizing device through a wired connection or a wireless connection.
  • the power supply device obtains control information corresponding to the type of the atomizing device, including:
  • the power supply device reads control information corresponding to the type of the atomization device from the storage module according to the type of the atomization device.
  • the storage module is provided in the power supply device or in the atomization device.
  • control information includes: the heating mode of the atomizing device, the optimum temperature, the temperature for preventing dry burning, and the initial value of the atomizer.
  • the present invention also provides an aerosol generating device, comprising: a power supply device and an atomizing device;
  • the atomizing device is used for atomizing the aerosol-forming substrate to generate an aerosol
  • the power supply device After the power supply device is successfully connected to the atomizing device, it identifies the type of the atomizing device, and controls the temperature of the atomizing device according to the type of the atomizing device.
  • the power supply device is further configured to acquire control information of the atomization device according to the type of the atomization device, and to control the temperature of the atomization device according to the control information of the atomization device.
  • it also includes: a storage module for storing control information of the atomizing device.
  • the storage module is provided in the power supply device or in the atomizing device.
  • control information includes: the heating mode of the atomizing device, the optimum temperature, the temperature for preventing dry burning, and the initial value of the atomizer.
  • Implementing the aerosol generating method and device of the present invention has the following beneficial effects: comprising: the power supply device determines whether to connect to the atomizing device; if so, the power supply device is connected to the atomizing device for communication; Success; if so, the power supply device identifies the type of the atomizing device; the power supply device controls the atomizing device to atomize the aerosol-forming substrate according to the type of the atomizing device, so as to generate an aerosol.
  • the present invention can identify different atomizing devices, and perform corresponding power supply control according to the types of different atomizing devices, so as to avoid uneven aerosol and taste experience caused by different atomizing devices adopting the same power supply control method. Poor problems, to provide consumers with a better user experience.
  • FIG. 1 is a schematic flow diagram of a method for generating an aerosol provided by an embodiment of the present invention
  • FIG. 2 is a schematic structural diagram of an aerosol generating device provided by an embodiment of the present invention.
  • FIG. 1 is a schematic flowchart of an optional embodiment of each embodiment of the aerosol generation method provided by the embodiment of the present invention.
  • the aerosol generation method includes:
  • Step S101 the power supply device determines whether to connect to the atomizing device.
  • the determination by the power supply device whether the atomizing device is in contact can be realized by means of hardware triggering or software triggering.
  • the judgment can be realized by hardware such as shrapnel arranged on the power supply device.
  • the shrapnel is pressed or squeezed to generate a corresponding deformation signal. Therefore, the atomization device can be judged based on the deformation signal. whether to access.
  • the judgment can be realized by the interface provided on the power supply device and connected to the atomizing device.
  • the port on the atomizing device and the power supply device are correspondingly connected with the interface on the power supply device. At this time, The interface on the power supply device generates a corresponding connection signal. Therefore, it can be determined whether the atomizing device is connected or not based on the connection signal.
  • Step S102 If yes, the power supply device is connected to the atomizing device for communication.
  • the power supply device is in communication connection with the atomizing device.
  • the communication connection includes that the power supply device and the atomizing device can communicate.
  • the power supply device and the atomizing device need to be set with the same communication protocol, at this time, the power supply device can communicate with the atomizing device, otherwise, the power supply device and the atomizing device cannot communicate.
  • Step S103 the power supply device determines whether the communication connection with the atomizing device is successful.
  • the power supply device and the atomizing device are respectively provided with the same protocol mode. Therefore, when the atomizing device is inserted into the power supply device, the power supply device and the atomizing device shake hands through the same protocol mode. If the handshake is successful, it can be judged that The communication connection between the power supply device and the atomizing device is successful, otherwise the communication connection is unsuccessful.
  • Step S104 if yes, the power supply device identifies the type of the atomizing device.
  • the power supply device identifies the type of the atomizing device, including: after the power supply device and the atomizing device are successfully connected in communication, obtaining the identification code of the atomizing device;
  • the identification code identifies the type of atomizing device.
  • the identification code of the atomizing device includes, but is not limited to, an ID code, a MAC address, a serial number, and the like.
  • the types of atomizing devices can be distinguished from the differences in e-liquid, heating body, heating components, component materials, etc., to distinguish different types of atomizing devices, such as ceramic atomizers, organic cotton atomizers, and e-liquid mist. atomizer, tobacco atomizer, etc. Among them, atomizing devices of different materials have different temperature control methods.
  • Step S105 the power supply device controls the atomization device to perform atomization on the aerosol forming substrate according to the type of the atomization device, so as to generate the aerosol.
  • controlling the atomizing device to atomize the aerosol-forming substrate according to the type of the atomizing device includes: the power supply device obtains control information corresponding to the type of the atomizing device according to the type of the atomizing device; The information controls the atomizing device to atomize the aerosol-forming substrate.
  • obtaining the control information corresponding to the type of the atomization device by the power supply device according to the type of the atomization device includes: the power supply device reads the control information corresponding to the type of the atomization device from the storage module according to the type of the atomization device. .
  • control information includes: the heating mode of the atomization device, the optimum temperature, the temperature for preventing dry burning, and the initial value of the atomizer.
  • the heating method of the atomizing device includes but is not limited to an infrared heating method, an ultrasonic atomization method, a heating wire heating method, and the like.
  • Different e-liquid flavors of the atomization device (such as mint, tobacco, apple, banana, compound flavor, etc.) have slightly different atomization temperatures (generally 230-280°, etc.), so the corresponding flavor can be set according to the corresponding flavor. temperature.
  • different types of atomization devices such as ceramic core atomizers, cotton core atomizers, etc., also use different flavors of e-liquids, and each type has its corresponding optimum temperature.
  • the anti-dry burning temperature is generally 10-20° on the basis of the suitable temperature.
  • the anti-dry burning is realized by controlling the output (stopping the output).
  • the power supply device can match atomizing devices with different initial resistance values, including but not limited to atomizing devices of 0.6-2.0 ⁇ , wherein these atomizing devices can be but are not limited to ceramic cores, Different conductive liquid atomizers such as cotton wick.
  • the power supply device and the atomizing device are connected in communication with the atomizing device through a wired connection or a wireless connection.
  • the storage module is provided in the power supply.
  • the power supply device shakes hands and communicates with the atomizing device through wired or wireless means, and after successful communication, obtains the type of the atomizing device, and then according to the atomizing device
  • the type of the atomizer is retrieved in the storage module in the power supply device.
  • the control information hereating method, optimum temperature, anti-dry burning recorded in the power supply device of this type is followed. temperature, initial value of atomizing device) for temperature control control output.
  • the atomization devices whose various control information is stored on the power supply device can be temperature-controlled by the power supply device according to the preset best atomization methods and parameters, so that the power supply device can be compatible with various control information stored in the power supply device. on the atomizing device.
  • the power supply device does not perform the atomization work (that is, does not provide the atomization device with electrical energy required for the atomization work), so as to achieve the atomization device anti-counterfeiting purpose.
  • the appearance and shape of the atomizing device match the power supply device, but it is not from the original factory, the chip and the handshake protocol do not conform, and the handshake will not succeed if it is a fake and inferior product.
  • the power supply device does not provide the required power to the atomizing device. .
  • the compatibility of the atomizing device can also be improved, and the most suitable temperature control method can be provided according to different types of atomizing devices, thereby giving the user a predetermined optimal experience.
  • the chips in the atomizing device carry less information
  • the communication of the atomizing device can be relatively simple, and only the transmission of the identification code of one atomizing device type can obtain the atomizing information of this type on the battery rod.
  • the storage module may be provided in the atomizing device.
  • the storage module can be built into the chip of the atomizing device.
  • various contents required by the atomization device are stored on the chip of the atomization device, including but not limited to the name of the e-liquid, the structure name of the atomization device, the heating method, the optimum temperature, the anti-dry burning temperature, the atomization device initial value, etc.
  • a protocol for handshake communication with the atomizing device is set on the power supply device.
  • the power supply device shakes hands and communicates with the chip of the atomizing device through wired or wireless means. After the communication is successful, the power supply device obtains various contents of the atomizing device, and then controls the atomization according to these contents. device output.
  • the power supply device does not need to set up a storage module for storing the control information of the atomizing device, and the storage size of the power supply device is not high;
  • the control information of the atomizing device can be directly obtained from the atomizing device, and the atomizer can be temperature-controlled according to the obtained control information and according to predetermined parameters and methods.
  • the aerosol generating method of the present invention can perform corresponding temperature control according to different types of atomizing devices, so that after the atomizing device is atomized, the generated aerosol is uniform and has a good taste experience, thereby improving the user experience.
  • FIG. 2 is a schematic structural diagram of the aerosol generating device provided by the present invention.
  • the aerosol generating device includes: a power supply device and an atomizing device.
  • the atomizing device is used to atomize the aerosol-forming substrate to generate an aerosol.
  • the power supply device After the power supply device is successfully connected with the atomizing device, it identifies the type of the atomizing device, and controls the temperature of the atomizing device according to the type of the atomizing device.
  • the power supply device is also used for acquiring control information of the atomizing device according to the type of the atomizing device, and performing temperature control on the atomizing device according to the control information of the atomizing device.
  • control information includes but is not limited to: the heating mode of the atomizing device, the optimum temperature, the temperature for preventing dry burning, and the initial value of the atomizer.
  • the power supply device identifies the type of the atomizing device, including: after the power supply device and the atomizing device are successfully connected in communication, obtaining the identification code of the atomizing device;
  • the identification code identifies the type of atomizing device.
  • the identification code of the atomizing device includes, but is not limited to, an ID code, a MAC address, a serial number, and the like.
  • the types of atomizing devices can be distinguished from the differences in e-liquid, heating body, heating components, component materials, etc., to distinguish different types of atomizing devices, such as ceramic atomizers, organic cotton atomizers, and e-liquid mist. atomizer, tobacco atomizer, etc. Among them, atomizing devices of different materials have different temperature control methods (control information).
  • the heating method of the atomizing device includes but is not limited to an infrared heating method, an ultrasonic atomization method, a heating wire heating method, and the like.
  • Different e-liquid flavors of the atomization device (such as mint, tobacco, apple, banana, compound flavor, etc.) have slightly different atomization temperatures (generally 230-280°, etc.), so the corresponding flavor can be set according to the corresponding flavor. temperature.
  • different types of atomization devices such as ceramic core atomizers, cotton core atomizers, etc., also use different flavors of e-liquids, and each type has its corresponding optimum temperature.
  • the anti-dry burning temperature is generally 10-20° on the basis of the suitable temperature.
  • the anti-dry burning is realized by controlling the output (stopping the output).
  • the power supply device can match atomizing devices with different initial resistance values, including but not limited to atomizing devices of 0.6-2.0 ⁇ , wherein these atomizing devices can be but are not limited to ceramic cores, Different conductive liquid atomizers such as cotton wick.
  • the power supply device and the atomizing device are connected in communication with the atomizing device through a wired connection or a wireless connection.
  • the aerosol generating device further includes: a storage module for storing control information of the atomizing device.
  • the storage module is provided in the power supply.
  • the power supply device shakes hands and communicates with the atomizing device through wired or wireless means, and after successful communication, obtains the type of the atomizing device, and then according to the atomizing device
  • the type of the atomizer is retrieved in the storage module in the power supply device.
  • the control information hereating method, optimum temperature, anti-dry burning recorded in the power supply device of this type is followed. temperature, initial value of atomizing device) for temperature control control output.
  • the atomization devices whose various control information is stored on the power supply device can be temperature-controlled by the power supply device according to the preset best atomization methods and parameters, so that the power supply device can be compatible with various control information stored in the power supply device. on the atomizing device.
  • the power supply device does not perform the atomization work (that is, does not provide the atomization device with electrical energy required for the atomization work), so as to achieve the atomization device anti-counterfeiting purpose.
  • the appearance and shape of the atomizing device match the power supply device, but it is not from the original factory, the chip and the handshake protocol do not conform, and the handshake will not succeed if it is a fake and inferior product.
  • the power supply device does not provide the required power to the atomizing device. .
  • the compatibility of the atomizing device can also be improved, and the most suitable temperature control method can be provided according to different types of atomizing devices, thereby giving the user a predetermined optimal experience.
  • the chips in the atomizing device carry less information
  • the communication of the atomizing device can be relatively simple, and only the transmission of the identification code of one atomizing device type can obtain the atomizing information of this type on the battery rod.
  • the storage module may be provided in the atomizing device.
  • the storage module can be built into the chip of the atomizing device.
  • various contents required by the atomization device are stored on the chip of the atomization device, including but not limited to the name of the e-liquid, the structure name of the atomization device, the heating method, the optimum temperature, the anti-dry burning temperature, the atomization device initial value, etc.
  • a protocol for handshake communication with the atomizing device is set on the power supply device.
  • the power supply device shakes hands and communicates with the chip of the atomizing device through wired or wireless means. After the communication is successful, the power supply device obtains various contents of the atomizing device, and then controls the atomization according to these contents. device output.
  • the power supply device does not need to set up a storage module for storing the control information of the atomizing device, and the storage size of the power supply device is not high;
  • the control information of the atomizing device can be directly obtained from the atomizing device, and the atomizer can be temperature-controlled and atomized according to the obtained control information and predetermined parameters and methods.
  • the aerosol generating method of the present invention can perform corresponding temperature control according to different types of atomizing devices, so that after the atomizing device is atomized, the generated aerosol is uniform and has a good taste experience, thereby improving the user experience.

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Abstract

一种气溶胶产生方法及装置,方法包括:供电装置判断是否接入雾化装置(S101);若是,供电装置与雾化装置进行通讯连接(S102);供电装置判断是否与雾化装置通讯连接成功(S103);若是,供电装置识别雾化装置的类型(S104);供电装置根据雾化装置的类型控制雾化装置对气溶胶形成基材进行雾化处理(S105),以产生气溶胶。该方法可以识别不同的雾化装置,并根据不同的雾化装置的类型进行相应的供电控制,可避免因不同的雾化装置采用相同的供电控制方式导致所产生的气溶胶不均匀、口感体验不佳的问题,给消费者提供更好的使用体验。

Description

一种气溶胶产生方法及装置 技术领域
本发明涉及气溶胶产生的技术领域,更具体地说,涉及一种气溶胶产生方法及装置。
背景技术
目前市面上的气溶胶产生装置通常包括雾化器和供电装置,雾化器由供电装置供电,能够把雾化器内的烟液变成烟雾,供使用者使用。
随着烟液种类增加,烟液成份差异较大(浓度差异很大),再加上雾化器各组件材质差异,如当雾化器注入浓稠/较稀的烟液时,浓稠/较稀的雾化液不易/易导油到加热体上,即不同烟油与接触的雾化器组件材质对雾化器抽吸烟雾及口感影响很大,如果不同烟液和不同材质雾化器组件使用相同的供电装置控制方式,会导致抽吸烟雾量差异大,口感体验不佳等问题,给消费者带来不好的使用体验。
技术问题
本发明要解决的技术问题在于,针对现有技术的上述缺陷,提供一种气溶胶产生方法及装置。
技术解决方案
本发明解决其技术问题所采用的技术方案是:构造一种气溶胶产生方法,包括:
供电装置判断是否接入雾化装置;
若是,所述供电装置与所述雾化装置进行通讯连接;
所述供电装置判断是否与所述雾化装置通讯连接成功;
若是,所述供电装置识别所述雾化装置的类型;
所述供电装置根据所述雾化装置的类型控制所述雾化装置对气溶胶形成基材进行雾化处理,以产生气溶胶。
优选地,所述供电装置根据所述雾化装置的类型控制所述雾化装置对气溶胶形成基材进行雾化处理包括:
所述供电装置根据所述雾化装置的类型,获取与所述雾化装置的类型对应的控制信息;
所述供电装置根据所述控制信息控制所述雾化装置对气溶胶形成基材进行雾化处理。
优选地,所述供电装置识别所述雾化装置的类型包括:
所述供电装置与所述雾化装置通讯连接成功后,获取所述雾化装置的识别码;
所述供电装置根据所述雾化装置的识别码识别所述雾化装置的类型。
优选地,所述供电装置与所述雾化装置通过有线连接方式或者无线连接方式与所述雾化装置进行通讯连接。
优选地,所述供电装置根据所述雾化装置的类型,获取与所述雾化装置的类型对应的控制信息包括:
所述供电装置根据所述雾化装置的类型,从存储模块中读取与所述雾化装置的类型对应的控制信息。
优选地,所述存储模块设置在所述供电装置中或者所述雾化装置中。
优选地,所述控制信息包括:雾化装置的加热方式、最适温度、防干烧温度、雾化器初始值。
本发明还提供一种气溶胶产生装置,包括:供电装置和雾化装置;
所述雾化装置用于对气溶胶形成基材进行雾化处理,以产生气溶胶;
所述供电装置在与所述雾化装置通讯连接成功后,识别所述雾化装置的类型,并根据所述雾化装置的类型对所述雾化装置进行温度控制。
优选地,所述供电装置还用于根据所述雾化装置的类型获取所述雾化装置的控制信息,并根据所述雾化装置的控制信息对所述雾化装置进行温度控制。
优选地,还包括:用于存储所述雾化装置的控制信息的存储模块。
优选地,所述存储模块设置在所述供电装置中或者设置在所述雾化装置中。
优选地,所述控制信息包括:雾化装置的加热方式、最适温度、防干烧温度、雾化器初始值。
有益效果
实施本发明的气溶胶产生方法及装置,具有以下有益效果:包括:供电装置判断是否接入雾化装置;若是,供电装置与雾化装置进行通讯连接;供电装置判断是否与雾化装置通讯连接成功;若是,供电装置识别雾化装置的类型;供电装置根据雾化装置的类型控制雾化装置对气溶胶形成基材进行雾化处理,以产生气溶胶。本发明可以识别不同的雾化装置,并根据不同的雾化装置的类型进行相应的供电控制,可避免因不同的雾化装置采用相同的供电控制方式导致所产生的气溶胶不均匀、口感体验不佳的问题,给消费者提供更好的使用体验。
附图说明
下面将结合附图及实施例对本发明作进一步说明,附图中:
图1是本发明实施例提供的气溶胶产生方法的流程示意图;
图2是本发明实施例提供的气溶胶产生装置的结构示意图。
本发明的实施方式
为了对本发明的技术特征、目的和效果有更加清楚的理解,现对照附图详细说明本发明的具体实施方式。
参考图1,图1为本发明实施例提供的气溶胶产生方法各实施例一可选实施例的流程示意图。
如图1所示,该气溶胶产生方法包括:
步骤S101、供电装置判断是否接入雾化装置。
具体的,供电装置判断雾化装置是否接触可以通过硬件触发或者软件触发的方式实现。例如,可以通过设置在供电装置上的弹片等硬件实现判断,当雾化装置插入供电装置时,弹片被按压或者挤压而产生相应的形变信号,因此,基于该形变信号即可判断雾化装置是否接入。或者,可以通过设置在供电装置上与雾化装置连接的接口实现判断,当雾化装置插入供电装置时,雾化装置上与供电装置上的端口与供电装置上的接口对应连接,此时,供电装置上的接口即产生相应的连接信号,因此,基于该连接信号即可判断雾化装置是否接入。
步骤S102、若是,供电装置与雾化装置进行通讯连接。
具体的,若雾化装置插入供电装置中时,供电装置即与雾化装置进行通讯连接。其中,通讯连接包括供电装置与雾化装置可进行通讯。其中,供电装置与雾化装置需设置有相同的通讯协议,此时,供电装置才能与雾化装置进行通讯,否则,供电装置与雾化装置不能进行通讯。
步骤S103、供电装置判断是否与雾化装置通讯连接成功。
具体的,供电装置和雾化装置中分别设有相同的协议方式,因此,当雾化装置插入供电装置时,供电装置和雾化装置通过相同的协议方式进行握手,如果握手成功,则可判断供电装置与雾化装置通讯连接成功,否则通讯连接不成功。
步骤S104、若是,供电装置识别雾化装置的类型。
具体的,若供电装置与雾化装置通讯连接成功,则供电装置识别雾化装置的类型包括:供电装置与雾化装置通讯连接成功后,获取雾化装置的识别码;供电装置根据雾化装置的识别码识别雾化装置的类型。可选的,雾化装置的识别码包括但不限于ID编码、MAC地址、序列号等。
可选的,雾化装置的类型可从烟油、发热体、发热组件、组件材质等差异不同来区分不同类型的雾化装置,例如,陶瓷雾化器、有机棉雾化器、烟油雾化器、烟丝雾化器等。其中,不同材质的雾化装置具有不同的温度控制方式。
步骤S105、供电装置根据雾化装置的类型控制雾化装置对气溶胶形成基材进行雾化处理,以产生气溶胶。
具体的,根据雾化装置的类型控制雾化装置对气溶胶形成基材进行雾化处理包括:供电装置根据雾化装置的类型,获取与雾化装置的类型对应的控制信息;供电装置根据控制信息控制雾化装置对气溶胶形成基材进行雾化处理。
进一步地,供电装置根据雾化装置的类型,获取与雾化装置的类型对应的控制信息包括:供电装置根据雾化装置的类型,从存储模块中读取与雾化装置的类型对应的控制信息。
可选的,控制信息包括:雾化装置的加热方式、最适温度、防干烧温度、雾化器初始值。
其中,雾化装置的加热方式包括但不限于红外加热方式、超声雾化方式、发热丝加热方式等。
雾化装置的不同烟油口味(如薄荷、烟草、苹果、香蕉、复合口味等),雾化温度略有差异(一般为230-280°等),因此,根据对应的口味可以设定相应的温度。进一步地,不同类型的雾化装置如陶瓷芯雾化器、棉芯雾化器等所选用烟油口味温度也有差异,每一种类型均设有其对应的最适温度。
可选的,防干烧温度一般是在适合温度的基础上加10-20°,当温度达到时通过控制输出(停止输出)实现防干烧。
进一步地,本发明实施例中,该供电装置可以匹配不同初始阻值的雾化装置,包括但不限于0.6-2.0Ω的雾化装置,其中,这些雾化装置可以是且不限于陶瓷芯、棉芯等不同导液体雾化器。
进一步地,本发明实施例中,供电装置与雾化装置通过有线连接方式或者无线连接方式与雾化装置进行通讯连接。
在一个实施例中,存储模块设置在供电装置中。
该实施例中,当雾化装置连接供电装置,供电装置通过有线或者无线的手段和雾化装置进行握手、通讯,并在通讯成功后,获取该雾化装置的类型,进而根据该雾化装置的类型在供电装置中的存储模块中进行检索,当检索到该类型的雾化装置内容的时候,便按照该类型在供电装置里所记录的控制信息(加热方式、最适温度、防干烧温度、雾化装置初始值)进行温控控制输出。从而达到各类控制信息存储在供电装置上的雾化装置都能被供电装置按照预设的最好雾化方式和参数进行温控控制,进而使供电装置能兼容各类控制信息存储在供电装置上的雾化装置。
该实施例中,如果握手不成功或者该供电装置程序没有该种类的雾化器,供电装置不进行雾化工作(即不向雾化装置提供雾化工作所需电能),从而达到雾化装置防伪的目的。例如,鞭该雾化装置外观形状匹配该供电装置,但不是出自原厂,芯片及握手协议不符合,属假冒伪劣产品时不会握手成功,此时,供电装置不对雾化装置提供所需电能。
进一步地,还可以提高雾化装置兼容性,可根据不同种类的雾化装置提供最适合的温控方式,从而给与用户预定的最优体验。
进一步地,雾化装置中的芯片自己带的信息较少,雾化装置通讯可以较简单,可以只有一个雾化装置种类的标志码的传输即可在电池杆上获得该种类雾化信息。
或者,在其他一些实施例中,该存储模块可以设置在雾化装置中。可选的,该存储模块可以内置于雾化装置的芯片中。具体的,雾化装置的芯片上存储该雾化装置所需要的各种内容,包括但不限于烟油名称、雾化装置结构名称、加热方式、最适温度、防干烧温度、雾化装置初始值等内容。其中,供电装置上设定与该雾化装置握手通讯的协议。
当雾化装置连接供电装置,供电装置通过有线或者无线的方式和雾化装置的芯片进行握手、通讯,通讯成功后,供电装置获取该雾化装置的各种内容,然后按照这些内容控制雾化装置输出。
该实施例中,供电装置不需要设置存储雾化装置的控制信息的存储模块,对供电装置的存储大小要求不高;进一步地,当更新雾化装置后,不需要再重新烧录,供电装置可直接从雾化装置中获取雾化装置的控制信息,即可按照所获取的控制信息按照预定参数和方法进行温控雾化雾化器。
本发明的气溶胶产生方法可以根据不同种类的雾化装置进行对应的温控,从而使得雾化装置经过雾化处理后,所产生的气溶胶均匀、口感体验好,提升用户使用体验。
参考图2,图2为本发明提供的气溶胶产生装置的结构示意图。
如图2所示,该气溶胶产生装置包括:供电装置和雾化装置。
雾化装置用于对气溶胶形成基材进行雾化处理,以产生气溶胶。
供电装置在与雾化装置通讯连接成功后,识别雾化装置的类型,并根据雾化装置的类型对雾化装置进行温度控制。
进一步地,该供电装置还用于根据雾化装置的类型获取雾化装置的控制信息,并根据雾化装置的控制信息对雾化装置进行温度控制。
可选的,控制信息包括但不限于:雾化装置的加热方式、最适温度、防干烧温度、雾化器初始值。
具体的,若供电装置与雾化装置通讯连接成功,则供电装置识别雾化装置的类型包括:供电装置与雾化装置通讯连接成功后,获取雾化装置的识别码;供电装置根据雾化装置的识别码识别雾化装置的类型。可选的,雾化装置的识别码包括但不限于ID编码、MAC地址、序列号等。
可选的,雾化装置的类型可从烟油、发热体、发热组件、组件材质等差异不同来区分不同类型的雾化装置,例如,陶瓷雾化器、有机棉雾化器、烟油雾化器、烟丝雾化器等。其中,不同材质的雾化装置具有不同的温度控制方式(控制信息)。
其中,雾化装置的加热方式包括但不限于红外加热方式、超声雾化方式、发热丝加热方式等。
雾化装置的不同烟油口味(如薄荷、烟草、苹果、香蕉、复合口味等),雾化温度略有差异(一般为230-280°等),因此,根据对应的口味可以设定相应的温度。进一步地,不同类型的雾化装置如陶瓷芯雾化器、棉芯雾化器等所选用烟油口味温度也有差异,每一种类型均设有其对应的最适温度。
可选的,防干烧温度一般是在适合温度的基础上加10-20°,当温度达到时通过控制输出(停止输出)实现防干烧。
进一步地,本发明实施例中,该供电装置可以匹配不同初始阻值的雾化装置,包括但不限于0.6-2.0Ω的雾化装置,其中,这些雾化装置可以是且不限于陶瓷芯、棉芯等不同导液体雾化器。
进一步地,本发明实施例中,供电装置与雾化装置通过有线连接方式或者无线连接方式与雾化装置进行通讯连接。
进一步地,该气溶胶产生装置还包括:用于存储雾化装置的控制信息的存储模块。
在一个实施例中,存储模块设置在供电装置中。
该实施例中,当雾化装置连接供电装置,供电装置通过有线或者无线的手段和雾化装置进行握手、通讯,并在通讯成功后,获取该雾化装置的类型,进而根据该雾化装置的类型在供电装置中的存储模块中进行检索,当检索到该类型的雾化装置内容的时候,便按照该类型在供电装置里所记录的控制信息(加热方式、最适温度、防干烧温度、雾化装置初始值)进行温控控制输出。从而达到各类控制信息存储在供电装置上的雾化装置都能被供电装置按照预设的最好雾化方式和参数进行温控控制,进而使供电装置能兼容各类控制信息存储在供电装置上的雾化装置。
该实施例中,如果握手不成功或者该供电装置程序没有该种类的雾化器,供电装置不进行雾化工作(即不向雾化装置提供雾化工作所需电能),从而达到雾化装置防伪的目的。例如,鞭该雾化装置外观形状匹配该供电装置,但不是出自原厂,芯片及握手协议不符合,属假冒伪劣产品时不会握手成功,此时,供电装置不对雾化装置提供所需电能。
进一步地,还可以提高雾化装置兼容性,可根据不同种类的雾化装置提供最适合的温控方式,从而给与用户预定的最优体验。
进一步地,雾化装置中的芯片自己带的信息较少,雾化装置通讯可以较简单,可以只有一个雾化装置种类的标志码的传输即可在电池杆上获得该种类雾化信息。
或者,在其他一些实施例中,该存储模块可以设置在雾化装置中。可选的,该存储模块可以内置于雾化装置的芯片中。具体的,雾化装置的芯片上存储该雾化装置所需要的各种内容,包括但不限于烟油名称、雾化装置结构名称、加热方式、最适温度、防干烧温度、雾化装置初始值等内容。其中,供电装置上设定与该雾化装置握手通讯的协议。
当雾化装置连接供电装置,供电装置通过有线或者无线的方式和雾化装置的芯片进行握手、通讯,通讯成功后,供电装置获取该雾化装置的各种内容,然后按照这些内容控制雾化装置输出。
该实施例中,供电装置不需要设置存储雾化装置的控制信息的存储模块,对供电装置的存储大小要求不高;进一步地,当更新雾化装置后,不需要再重新烧录,供电装置可直接从雾化装置中获取雾化装置的控制信息,即可按照所获取的控制信息按照预定参数和方法进行温控雾化雾化器。
本发明的气溶胶产生方法可以根据不同种类的雾化装置进行对应的温控,从而使得雾化装置经过雾化处理后,所产生的气溶胶均匀、口感体验好,提升用户使用体验。
以上实施例只为说明本发明的技术构思及特点,其目的在于让熟悉此项技术的人士能够了解本发明的内容并据此实施,并不能限制本发明的保护范围。凡跟本发明权利要求范围所做的均等变化与修饰,均应属于本发明权利要求的涵盖范围。 

Claims (12)

  1. 一种气溶胶产生方法,其特征在于,包括:
    供电装置判断是否接入雾化装置;
    若是,所述供电装置与所述雾化装置进行通讯连接;
    所述供电装置判断是否与所述雾化装置通讯连接成功;
    若是,所述供电装置识别所述雾化装置的类型;
    所述供电装置根据所述雾化装置的类型控制所述雾化装置对气溶胶形成基材进行雾化处理,以产生气溶胶。
  2. 根据权利要求1所述的气溶胶产生方法,其特征在于,所述供电装置根据所述雾化装置的类型控制所述雾化装置对气溶胶形成基材进行雾化处理包括:
    所述供电装置根据所述雾化装置的类型,获取与所述雾化装置的类型对应的控制信息;
    所述供电装置根据所述控制信息控制所述雾化装置对气溶胶形成基材进行雾化处理。
  3. 根据权利要求1所述的气溶胶产生方法,其特征在于,所述供电装置识别所述雾化装置的类型包括:
    所述供电装置与所述雾化装置通讯连接成功后,获取所述雾化装置的识别码;
    所述供电装置根据所述雾化装置的识别码识别所述雾化装置的类型。
  4. 根据权利要求1所述的气溶胶产生方法,其特征在于,所述供电装置与所述雾化装置通过有线连接方式或者无线连接方式与所述雾化装置进行通讯连接。
  5. 根据权利要求2所述的气溶胶产生方法,其特征在于,所述供电装置根据所述雾化装置的类型,获取与所述雾化装置的类型对应的控制信息包括:
    所述供电装置根据所述雾化装置的类型,从存储模块中读取与所述雾化装置的类型对应的控制信息。
  6. 根据权利要求5所述的气溶胶产生方法,其特征在于,所述存储模块设置在所述供电装置中或者所述雾化装置中。
  7. 根据权利要求1-6任一项所述的气溶胶产生方法,其特征在于,所述控制信息包括:雾化装置的加热方式、最适温度、防干烧温度、雾化器初始值。
  8. 一种气溶胶产生装置,其特征在于,包括:供电装置和雾化装置;
    所述雾化装置用于对气溶胶形成基材进行雾化处理,以产生气溶胶;
    所述供电装置在与所述雾化装置通讯连接成功后,识别所述雾化装置的类型,并根据所述雾化装置的类型对所述雾化装置进行温度控制。
  9. 根据权利要求8所述的气溶胶产生装置,其特征在于,所述供电装置还用于根据所述雾化装置的类型获取所述雾化装置的控制信息,并根据所述雾化装置的控制信息对所述雾化装置进行温度控制。
  10. 根据权利要求9所述的气溶胶产生装置,其特征在于,还包括:用于存储所述雾化装置的控制信息的存储模块。
  11. 根据权利要求10所述的气溶胶产生装置,其特征在于,所述存储模块设置在所述供电装置中或者设置在所述雾化装置中。
  12. 根据权利要求8-11任一项所述的气溶胶产生装置,其特征在于,所述控制信息包括:雾化装置的加热方式、最适温度、防干烧温度、雾化器初始值。
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