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WO2024060718A1 - 气溶胶生成装置的控制方法 - Google Patents

气溶胶生成装置的控制方法 Download PDF

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Publication number
WO2024060718A1
WO2024060718A1 PCT/CN2023/100753 CN2023100753W WO2024060718A1 WO 2024060718 A1 WO2024060718 A1 WO 2024060718A1 CN 2023100753 W CN2023100753 W CN 2023100753W WO 2024060718 A1 WO2024060718 A1 WO 2024060718A1
Authority
WO
WIPO (PCT)
Prior art keywords
generating device
aerosol generating
time
child lock
aerosol
Prior art date
Application number
PCT/CN2023/100753
Other languages
English (en)
French (fr)
Inventor
邱伟华
姚礼灼
Original Assignee
常州市派腾电子技术服务有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 常州市派腾电子技术服务有限公司 filed Critical 常州市派腾电子技术服务有限公司
Publication of WO2024060718A1 publication Critical patent/WO2024060718A1/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
    • A24F40/50Control or monitoring
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts
    • A24F40/49Child proofing
    • 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
    • A24F40/51Arrangement of sensors

Definitions

  • the present invention relates to the technical field of locking control, and in particular to a control method of an aerosol generating device.
  • a disposable aerosol generating device refers to an aerosol generating device that does not require charging or replacement of cartridges and can be discarded after one use. It has the advantages of being more convenient to carry, more stable performance, more e-liquid, and stronger batteries.
  • it is often used to install a child lock device on the aerosol generating device, or to keep the aerosol generating device in a standby state at any time so that the aerosol generating device can be sensed at any time. The user's pumping action.
  • the aerosol generating devices with child locks on the market are generally reloadable aerosol generating devices.
  • the child lock can be set by plugging and unplugging cigarette cartridges, buttons, Bluetooth APP, etc.
  • disposable aerosol generating devices are in terms of price and structure. It is impossible to meet the reloading method to set the child lock, which makes the disposable aerosol generating device prone to children's aspiration.
  • embodiments of the present invention provide a control method for an aerosol generating device, which method includes: detecting whether the aerosol generating device is in a suction state; In response to the aerosol generating device being in the suction state, detecting the child lock open state of the aerosol generating device; in response to the aerosol generating device being in the child lock open state, determining that the aerosol generating device is in the first Whether the number of suction puffs within a preset time is greater than the first threshold; in response to the number of suction puffs of the aerosol generating device within the first preset time being greater than the first threshold, the aerosol generating device is placed in child lock closure state; in response to the aerosol generating device being in the child lock closed state, determining whether the single atomization time of the aerosol generating device is greater than the second time threshold; in response to the single atomizing time of the aerosol generating device being greater than the second time threshold 2 time threshold
  • the aerosol generating device includes a microphone assembly, and the microphone assembly is used to monitor the Whether the aerosol generating device has a suction action, and is used to count the number of puffs and the time when there is a suction action.
  • placing the aerosol generating device in a child lock off state includes: in response to the aerosol generating device being in the child lock off state, the aerosol generating device issues a child lock off prompt.
  • the step includes: in response to the aerosol generation device being in the child lock closed state.
  • the child lock is closed, the undervoltage state and load short-circuit state of the battery of the aerosol generating device are detected; when the battery and load are in normal working condition, the aerosol generating device atomizes normally; when the battery and load are in normal working condition, the aerosol generating device atomizes normally; When the load is in an abnormal working state, the aerosol generating device issues a fault prompt.
  • the method further includes: starting when the aerosol generation device stops atomization. Timing; judging whether the time after the aerosol generating device stops atomizing is greater than the third time threshold; when the time is greater than the third time threshold, the aerosol generating device is placed in the child lock open state; when the time When it is less than the third threshold, stop timing.
  • placing the aerosol generating device in a child lock open state includes: when the time is greater than a third time threshold, placing the aerosol generating device in a child lock open state. standby mode.
  • stopping the timing when the time is less than the third threshold includes: stopping the timing when it is detected that the aerosol generating device is in a suction state within the third time threshold period; When the aerosol generating device is in the non-sucking state, restart the timer.
  • the method further includes: starting when the aerosol generation device stops atomization. Timing; judging whether the number of puffs of the aerosol generating device within a predetermined time period is greater than a preset threshold;
  • the aerosol generating device When the number of puffs within the predetermined time period is greater than the preset threshold, the aerosol generating device is placed in the child lock open state.
  • an embodiment of the present invention provides a control device for an aerosol generating device, the device comprising:
  • a detection unit used to detect the suction state of the aerosol generating device and the opening state of the child lock
  • a judgment unit used to judge whether the number of suction ports and atomization duration of the aerosol generating device are greater than a threshold
  • a control unit for controlling the child lock and atomization state of the aerosol generating device.
  • the detection unit includes: a suction state detection module, used to detect whether the aerosol generation device is in a suction state; a child lock open state module, used in response to the aerosol generation device being in a suction state.
  • the judgment unit includes: a first judgment module, configured to determine the aerosol generation in response to the child lock open state of the aerosol generating device.
  • the control unit includes: a first control module, configured to cause the aerosol to respond to the number of suction ports of the aerosol generating device within a first preset time being greater than the first threshold; The generation device is in the child lock closed state; the second control module is configured to stop atomization by the aerosol generation device in response to the single atomization time of the aerosol generation device being greater than the second time threshold.
  • embodiments of the present invention provide a computer-readable storage medium in which one or more instructions are stored.
  • the computer instructions are used to cause the computer to perform the above-mentioned aerosol generation.
  • Device control method
  • embodiments of the present invention provide an electronic device, including: a memory and a processor; at least one program instruction is stored in the memory; and the processor implements the above by loading and executing the at least one program instruction. Control method of aerosol generating device.
  • a control method for an aerosol generation device which includes: detecting whether the aerosol generation device is in a suction state; responding to whether the aerosol generation device is in a suction state; When in the inhalation state, detect the child lock open state of the aerosol generating device; in response to the child lock open state of the aerosol generating device, determine whether the number of suction puffs of the aerosol generating device within the first preset time is Greater than the first threshold; in response to the number of suction ports of the aerosol generation device within the first preset time being greater than the first threshold, placing the aerosol generation device in the child lock closed state; in response to the aerosol generation device In the child lock closed state, it is determined whether the single atomization time of the aerosol generating device is greater than the second time threshold; in response to the single atomizing time of the aerosol generating device being greater than the second time threshold, the aerosol generating device Stop fogging.
  • the aerosol generating device can prevent children from aspiration without increasing the number of children. Without increasing the cost and adding complicated structural parts, the original technical design is maintained, the child lock function is added to prevent misuse by children, and the manufacturing cost is greatly reduced. And by setting the timeout protection function, it can also effectively assist users in healthy smoking.
  • Figure 1 is a flow chart of a control method of an aerosol generating device provided by an embodiment of the present invention
  • FIG2 is a flow chart of a control method of an aerosol generating device provided by another embodiment of the present invention.
  • Figure 3 is a flow chart of a control method of an aerosol generating device provided by another embodiment of the present invention.
  • Figure 4 is a microphone circuit diagram of an aerosol generating device provided in another embodiment of the present invention.
  • FIG5 is a schematic diagram of a control device for an aerosol generating device provided in yet another embodiment of the present invention.
  • Figure 6 is a partial block diagram of an electronic device provided by an embodiment of the present invention.
  • FIG. 1 a flow chart of a control method of an aerosol generating device provided by an embodiment of the present invention is shown.
  • the methods include:
  • detecting whether the aerosol generation device is in a suction state includes: the aerosol generation device includes a microphone assembly, and the microphone assembly is used to monitor whether the aerosol generation device takes a suction action, And it is used to count the number of puffs and the time when there is a puff action.
  • an airflow sensor/pneumatic switch, etc. can be integrated into the microphone of the aerosol generation device to detect the user's suction and/or blowing actions, and output different electrical signals based on the suctioning and/or blowing actions. Signal.
  • the sensor that converts the blowing and/or inhaling action into an electrical signal can also be implemented by other sensors.
  • the airflow sensor/pneumatic switch is given as an example. Relevant technicians can also modify the above hardware based on actual needs during the design process.
  • a counting function can be integrated into the microphone of the aerosol generating device to count the number of puffs taken by the user.
  • the counting function can be implemented through a counter.
  • the counter counts when it receives a high level signal. Each time it receives a high level signal, it increases the unit value based on the base number and updates the base number.
  • the unit value can be 1 and the base number can be Set to 0. Among them, when it is detected that the user has a suction action, a high level is sent to the counter.
  • the counting function can also be realized by writing the counting program into the microphone or in other ways.
  • the present invention does not impose any restrictions on the implementation of the counting function, and technicians can change the design according to the actual situation; at the same time, the unit value and There is no limit to the number of benchmarks here, and technicians can change the settings according to actual conditions.
  • a timing function can be integrated into the microphone of the aerosol generation device to start timing when the first high level is received, wherein a high level is sent when the user's suction action is detected; and /or used to start timing when the aerosol generating device atomizes normally; and/or to start timing when the aerosol generating device stops working.
  • the timing function can be implemented by a timer, or by writing the timing program into the microphone, etc. , the present invention does not limit the implementation of the timing function here, and technicians can Make design changes based on actual circumstances.
  • detecting the child lock open state of the aerosol generating device includes: when it is detected that the user makes a suction action on the aerosol generating device, first To detect whether the aerosol generating device is in the child lock state.
  • whether the aerosol generating device is in the child lock open state can be directly obtained by reading the control status of the controller of the aerosol generating device.
  • the aerosol generating device is in the child lock open state, the user is normal. The suction action cannot start the atomization operation of the aerosol generating device.
  • determining whether the number of suction puffs of the aerosol generating device within the first preset time is greater than a first threshold includes: when the aerosol generating device is in the When the child lock is on, it counts whether the user's puffs on the aerosol generating device within a certain period of time meet the preset conditions.
  • the first preset time can be set to 2s and the first threshold can be set to 3, that is, when the aerosol generating device is in the child lock open state, when the user's suction of the aerosol generating device is detected
  • the timer starts timing by sending a high level to the timer integrated in the microphone, and sends a high level to the counter integrated in the microphone, so that the counter starts counting, and based on the values counted by the timer and counter Determine whether the user has puffed 3 times within 2 seconds.
  • first preset time and first threshold are not limited here, and relevant technical personnel can independently select different first preset times and first thresholds during the design process.
  • placing the aerosol generating device in the child lock closed state includes: when the aerosol generating device is in the first When the number of puffs within a preset time is greater than the first threshold, the aerosol generation is automatically unlocked device, that is, the aerosol generating device is in the child lock closed state.
  • the aerosol generating device is in the child lock closed state, when the user's suction action on the aerosol generating device is detected, the aerosol generating device will atomize normally.
  • the aerosol generating device when the aerosol generating device is in the child lock off state, after detecting the user's puffing action on the aerosol generating device, it is counted whether the user's puffing action meets the requirement of 3 consecutive puffs within a 2s time period. If so, the aerosol generating device is unlocked, the child lock is turned off, and the aerosol generating device atomizes normally.
  • the user may be prompted for the child lock state of the aerosol generating device.
  • prompts can be provided through LED, motor vibration, voice broadcast, text, pictures, etc. This allows the user to promptly confirm the current working status of the aerosol generating device.
  • determining whether the aerosol generating device's single atomization time is greater than the second time threshold includes: when the aerosol generating device is in the child lock closed state , then at this time, the user inhales the aerosol generating device to cause it to atomize normally.
  • the timer starts to determine whether the single atomizing time of the aerosol generating device is greater than the second time threshold.
  • a single atomization time can be understood as the duration of a single output of the aerosol generating device.
  • the second time threshold can be set to 3-30s, and 10s is preferred here.
  • the aerosol generating device stopping atomization includes: when the aerosol generating device single atomization time is greater than the second time threshold, controlling the aerosol generating device to shut down.
  • the aerosol generating device is controlled to be in a shutdown state.
  • the above method achieves the function of preventing child aspiration of the aerosol generating device by integrating the child lock on the microphone of the aerosol generating device, and maintains the original technology without increasing the cost or adding complicated structural parts.
  • the design adds a child lock function to prevent misuse by children and greatly reduces manufacturing costs. And by setting the timeout protection function, it can also effectively assist users to smoke reasonably.
  • FIG. 2 a flow chart of a control method of an aerosol generating device provided by yet another embodiment of the present invention is shown.
  • Steps S210-S260 are the same as the above-mentioned steps S110-S160, and will not be described again here.
  • step S250 it also includes:
  • the user when the user inhales the aerosol generating device, if the current aerosol generating device is in the child lock closed state, the user can use the aerosol generating device normally and will continue to detect the battery of the aerosol generating device. Undervoltage status and load short circuit status.
  • battery undervoltage means that the battery voltage is too low, which affects normal operation. The reason may be that the battery has been used for too long, causing the memory to consume more power and cause the voltage to drop.
  • Load short circuit refers to the failure of most links caused by problems with the internal components of the load itself, eventually causing the entire load to be paralyzed and short-circuited. Therefore, during the normal use of the aerosol generating device, by detecting the battery undervoltage state and the load short circuit state, on the one hand, the normal operation of the aerosol generating device can be effectively ensured, and on the other hand, it can also prevent the use of the aerosol generating device. In case of accidents during the process, the safety of users is further ensured.
  • the aerosol generating device when the battery and load are in normal working conditions, the aerosol generating device atomizes normally; when the battery and load are in abnormal working conditions, the aerosol generating device issues a fault prompt.
  • the fault prompting methods can be LED, motor vibration, voice broadcast, text, pictures, etc. In this way, the user can grasp the working status of the aerosol generating device in a timely manner, so that the user can perform operations such as replacement or repair of the aerosol generating device based on the prompt, which further improves user efficiency. users’ experience.
  • FIG. 3 a flow chart of a control method of an aerosol generating device provided by another embodiment of the present invention is shown.
  • Steps S310-S390 are the same as the above-mentioned steps S210-S290, and will not be described again here.
  • step S360 it also includes:
  • starting the timing when the aerosol generating device stops atomizing includes: the aerosol generating device stops atomizing when the user stops inhaling while the aerosol generating device is outputting smoke, or when the user stops atomizing once.
  • the aerosol generating device stops atomizing when the inhalation duration is greater than the second time threshold.
  • the timing function integrated in the microphone starts timing.
  • determining whether the time after the aerosol generating device stops atomizing is greater than a third time threshold includes determining whether the time is greater than the third time threshold based on statistics of a timing function integrated in the microphone, where the third time threshold is determined.
  • Three time thresholds can be set to 20s.
  • the child lock opening time will be calculated according to the preset time, where the preset time is the third time. Threshold 20s.
  • placing the aerosol generating device in the child lock open state includes: when the time is greater than the third time threshold, placing the aerosol generating device in standby. state.
  • the aerosol generation device when the accumulated time since the aerosol generation device stops atomizing is greater than the third time threshold, the aerosol generation device is in a standby state and the child lock function is turned on.
  • the way to turn on the child lock function can also be: based on the counter integrated in the microphone, which starts counting when it receives a high level, and adds units on the basis of the base number each time it receives a high level. value and update the base times, where the unit value can be 1 and the base times can be set to 0. It should be noted that the unit value and basic times are not limited here, and technicians can change the settings according to the actual situation.
  • the aerosol generating device activates the child lock function. Specifically, the number of puffs within 3 seconds can be 5 times. It should be noted that there is no limit to the preset time and preset threshold here.
  • stopping the timing when the time is less than the third threshold includes: stopping the timing when detecting that the aerosol generating device is in a suction state within the third time threshold period; Restart the timer when the aerosol-generating device is in a non-suction state.
  • the child lock opening time will be calculated according to the preset time. If there is no suction action before the time is completed, the child lock will be automatically activated. Turn on the child lock. If there is suction before the timing is completed, the timing will be stopped. After the suction is completed, the timing will start again according to the preset time. Specifically, if the user's suction action on the aerosol generating device is not detected within a cumulative period of 20 seconds after the aerosol generating device stops outputting smoke, the child lock function will be automatically turned on. If the user's suction action is detected within 20 seconds, the timing will be stopped and the timer will be restarted after the user's suction is completed.
  • the above method can greatly improve power utilization by starting the timer after stopping suction and timeout protection.
  • the timer When the timer is completed, it automatically enters standby and turns on the child lock function.
  • FIG. 4 shows a microphone circuit diagram of an aerosol generating device provided by yet another embodiment of the present invention.
  • the microphone circuit is relatively simple and is implemented by a SOT23-6 package IC.
  • the pins are connected to the LED indicator light, the load heating element, the air pressure microphone, and the electricity.
  • the core is positive, 1 pin is the charging positive, and the remaining pin is the common terminal GND for the first five functions.
  • FIG. 5 shows a schematic diagram of a control device of an aerosol generating device provided by one embodiment of the present invention.
  • the device includes:
  • the detection unit 510 is used to detect the suction state of the aerosol generating device and the opening state of the child lock;
  • the judgment unit 520 is used to judge whether the number of suction puffs and the atomization duration of the aerosol generating device are greater than a threshold;
  • the control unit 530 is used to control the child lock and atomization state of the aerosol generating device.
  • the detection unit 510 includes:
  • the suction state detection module 5101 is used to detect whether the aerosol generating device is in the suction state
  • a child lock opening state detection module 5102 is used to detect the child lock opening state of the aerosol generating device in response to the aerosol generating device being in the inhalation state;
  • the judgment unit 520 includes:
  • the first determination module 5201 is configured to determine whether the number of suction puffs of the aerosol generation device within a first preset time is greater than a first threshold in response to the child lock being on.
  • the second determination module 5202 is used to determine whether the single atomization time of the aerosol generation device is greater than the second time threshold in response to the child lock closed state of the aerosol generation device;
  • control unit 530 includes:
  • the first control module 5301 is configured to place the aerosol generating device in a child lock closed state in response to the number of suction puffs of the aerosol generating device within a first preset time being greater than a first threshold;
  • the second control module 5302 is configured to stop atomization by the aerosol generating device in response to the single atomization time of the aerosol generating device being greater than the second time threshold.
  • Embodiments of the present invention also provide a storage medium on which a method for controlling an aerosol generating device is stored.
  • the program for controlling the aerosol generating device is executed by a processor, the aerosol generating device as described above is implemented. steps of the control method. Since this storage medium adopts all the technical solutions of all the above embodiments, it has at least all the beneficial effects brought by the technical solutions of the above embodiments, which will not be described again here.
  • an embodiment of the present invention also provides an electronic device, including: a memory and a processor; at least one program instruction is stored in the memory; and the processor loads and executes the at least one program instruction to Implement the control method of the aerosol generating device provided in Embodiment 1.
  • the memory 602 and the processor 601 are connected using a bus.
  • the bus may include any number of interconnected buses and bridges.
  • the bus connects various circuits of one or more processors 601 and the memory 602 together.
  • the bus can also connect various other devices such as peripherals, voltage regulators, and power management circuits.
  • the circuits connected together are well known in the art and therefore will not be described further herein.
  • the bus interface provides the interface between the bus and the transceiver.
  • a transceiver may be one element or may be multiple elements, such as multiple receivers and transmitters, providing a unit for communicating with various other devices over a transmission medium.
  • the data processed by the processor 601 is transmitted on the wireless medium through the antenna. Furthermore, the antenna also receives the data and transmits the data to the processor 601.
  • the processor 601 is responsible for managing the bus and general processing, and can also provide various functions, including timing, peripheral interfaces, voltage regulation, power management and other control functions.
  • the memory 602 can be used to store data used by the processor 601 when performing operations.

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Abstract

一种气溶胶生成装置的控制方法,包括:检测气溶胶生成装置是否处于抽吸状态(S110);检测气溶胶生成装置的童锁开启状态(S120);判断气溶胶生成装置在第一预设时间内的抽吸口数是否大于第一阈值(S130);使气溶胶生成装置处于童锁关闭状态(S140);判断气溶胶生成装置单次雾化时间是否大于第二时间阈值(S150);气溶胶生成装置停止雾化(S160)。通过将童锁集成在气溶胶生成装置的咪头上以实现气溶胶生成装置的防儿童误吸的功能,而且在不增加成本和不增加复杂的结构件的情况下,保持原来的技术设计,增加童锁功能,防止儿童误用,极大的减少了制造成本。

Description

气溶胶生成装置的控制方法 技术领域
本发明涉及锁定控制技术领域,特别涉及一种气溶胶生成装置的控制方法。
背景技术
一次性气溶胶生成装置就是指不需要充电,不需要更换烟弹,一次使用即丢弃的气溶胶生成装置,其具有携带更方便、性能更稳定、烟液更多、电池更强等优点。现有技术中在对气溶胶生成装置进行童锁的设置时,多用在气溶胶生成装置上安装一个童锁装置,或者让气溶胶生成装置随时处于待机状态以使得气溶胶生成装置随时能够感应到用户的抽吸动作。目前市场上带童锁的气溶胶生成装置,普遍为换弹式气溶胶生成装置,通过插拔烟弹、按键、蓝牙APP等方式进行设置童锁,而一次性气溶胶生成装置在价格、结构上无法满足换弹式的方法去设置童锁,这就使得一次性气溶胶生成装置很容易发生儿童误吸的现象。
发明内容
为了解决现有技术中至少其中一个技术问题,第一方面,本发明实施例提供了一种气溶胶生成装置的控制方法,所述方法包括:检测所述气溶胶生成装置是否处于抽吸状态;响应于所述气溶胶生成装置处于抽吸状态时,检测所述气溶胶生成装置的童锁开启状态;响应于所述气溶胶生成装置处于童锁开启状态,判断所述气溶胶生成装置在第一预设时间内的抽吸口数是否大于第一阈值;响应于所述气溶胶生成装置在第一预设时间内的抽吸口数大于第一阈值,使所述气溶胶生成装置处于童锁关闭状态;响应于所述气溶胶生成装置处于童锁关闭状态,判断所述气溶胶生成装置单次雾化时间是否大于第二时间阈值;响应于所述气溶胶生成装置单次雾化时间大于第二时间阈值,所述气溶胶生成装置停止雾化。
可选的,所述气溶胶生成装置包括咪头组件,所述咪头组件用于监测所述 气溶胶生成装置是否发生抽吸动作,并且用于在具有抽吸动作时统计抽吸次数以及统计时间。
可选的,所述响应于所述气溶胶生成装置在第一预设时间内的抽吸口数大于第一阈值,使所述气溶胶生成装置处于童锁关闭状态之后包括:响应于所述气溶胶生成装置处于童锁关闭状态,所述气溶胶生成装置进行童锁关闭提示。
可选的,所述响应于所述气溶胶生成装置处于童锁关闭状态,判断所述气溶胶生成装置单次雾化时间是否大于第二时间阈值之前包括:响应于所述气溶胶生成装置处于童锁关闭状态,检测所述气溶胶生成装置的电池的欠压状态和负载短路状态;当所述电池和负载处于正常工作状态时,所述气溶胶生成装置正常雾化;当所述电池和负载处于非正常工作状态时,所述气溶胶生成装置进行故障提示。
可选的,所述响应于所述气溶胶生成装置单次雾化时间大于第二时间阈值,所述气溶胶生成装置停止雾化之后还包括:在所述气溶胶生成装置停止雾化时开始计时;判断所述气溶胶生成装置停止雾化后的时间是否大于第三时间阈值;当所述时间大于第三时间阈值时,使所述气溶胶生成装置处于童锁开启状态;当所述时间小于第三阈值时,停止计时。
可选的,所述当所述时间大于第三时间阈值时,使所述气溶胶生成装置处于童锁开启状态包括:当所述时间大于第三时间阈值时,使所述气溶胶生成装置处于待机状态。
可选的,所述当所述时间小于第三阈值时,停止计时包括:当在第三时间阈值时间段内检测到所述气溶胶生成装置处于抽吸状态,则停止计时;当检测到所述气溶胶生成装置处于非抽吸状态时,重新计时。
可选的,所述响应于所述气溶胶生成装置单次雾化时间大于第二时间阈值,所述气溶胶生成装置停止雾化之后还包括:在所述气溶胶生成装置停止雾化时开始计时;判断所述气溶胶生成装置在预定时间段内的抽吸次数是否大于预设的阈值;
当所述预定时间段内的抽吸次数大于预设的阈值时,使所述气溶胶生成装置处于童锁开启状态。
第二发面,本发明实施例提供了一种气溶胶生成装置的控制装置,所述装置包括:
检测单元,用于检测所述气溶胶生成装置的抽吸状态及童锁开启状态;
判断单元,用于判断所述气溶胶生成装置抽吸口数和雾化时长是否大于阈值;
控制单元,用于控制所述气溶胶生成装置童锁和雾化状态。
可选的,所述检测单元包括:检测抽吸状态模块,用于检测所述气溶胶生成装置是否处于抽吸状态;检测童锁开启状态模块,用于响应于所述气溶胶生成装置处于抽吸状态时,检测所述气溶胶生成装置的童锁开启状态;所述判断单元包括:第一判断模块,用于响应于所述气溶胶生成装置处于童锁开启状态,判断所述气溶胶生成装置在第一预设时间内的抽吸口数是否大于第一阈值;第二判断模块,用于响应于所述气溶胶生成装置处于童锁关闭状态,判断所述气溶胶生成装置单次雾化时间是否大于第二时间阈值;所述控制单元包括:第一控制模块,用于响应于所述气溶胶生成装置在第一预设时间内的抽吸口数大于第一阈值,使所述气溶胶生成装置处于童锁关闭状态;第二控制模块,用于响应于所述气溶胶生成装置单次雾化时间大于第二时间阈值,所述气溶胶生成装置停止雾化。
第三方面,本发明实施例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计算机指令用于使所述计算机执行上述的气溶胶生成装置的控制方法。
第四方面,本发明实施例提供了一种电子设备,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的气溶胶生成装置的控制方法。
本发明实施例提供的技术方案带来的有益效果是:一种气溶胶生成装置的控制方法,包括:检测所述气溶胶生成装置是否处于抽吸状态;响应于所述气溶胶生成装置处于抽吸状态时,检测所述气溶胶生成装置的童锁开启状态;响应于所述气溶胶生成装置处于童锁开启状态,判断所述气溶胶生成装置在第一预设时间内的抽吸口数是否大于第一阈值;响应于所述气溶胶生成装置在第一预设时间内的抽吸口数大于第一阈值,使所述气溶胶生成装置处于童锁关闭状态;响应于所述气溶胶生成装置处于童锁关闭状态,判断所述气溶胶生成装置单次雾化时间是否大于第二时间阈值;响应于所述气溶胶生成装置单次雾化时间大于第二时间阈值,所述气溶胶生成装置停止雾化。通过将童锁集成在气溶胶生成装置的咪头上以实现气溶胶生成装置的防儿童误吸的功能,而且在不增 加成本和不增加复杂的结构件的情况下,保持原来的技术设计,增加童锁功能,防止儿童误用,极大的减少了制造成本。并且通过设置超时保护功能,也可以有效的协助用户健康抽吸。
附图说明
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气溶胶生成装置的控制方法流程图;
图2是本发明又一个实施例提供的一种气溶胶生成装置的控制方法流程图;
图3是本发明另一个实施例提供的一种气溶胶生成装置的控制方法流程图;
图4是本发明另一个实施例中提供一种气溶胶生成装置的咪头电路图;
图5是本发明又一个实施例中提供一种气溶胶生成装置的控制装置示意图;
图6是本发明实施例所提供的电子设备的部分框图。
具体实施方式
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。
除非另有定义,本文所使用的所有技术和科学术语与属于本发明技术领域的技术人员通常理解的含义相同;本文在说明书中所使用的术语只是为了描述具体的实施例的目的,不是旨在于限制本发明,例如,术语“长度”、“宽度”、“上”、“下”、“左”、“右”、“前”、“后”、“竖直”、“水平”、“顶”、“底”、“内”、“外”等指示的方位或位置为基于附图所示的方位或位置,仅是便于描述,不能理解为对本技术方案的限制。
本发明的说明书和权利要求书及上述附图说明中的术语“包括”和“具有”以及它们的任何变形,意图在于覆盖不排他的包含;本发明的说明书和权利要求书或上述附图中的术语“第一”、“第二”等是用于区别不同对象,而不是用于描述特定顺序。“多个”的含义是两个或两个以上,除非另有明确具体的限定。
此外,在本文中提及“实施例”意味着,结合实施例描述的特定特征、结构或特性可以包含在本发明的至少一个实施例中。在说明书中的各个位置出现该短语并不一定均是指相同的实施例,也不是与其它实施例互斥的独立的或备选的实施例。本领域技术人员显式地和隐式地理解的是,本文所描述的实施例可以与其它实施例相结合。
参考图1,其示出了本发明一个实施例提供的一种气溶胶生成装置的控制方法流程图。所述方法包括:
S110、检测所述气溶胶生成装置是否处于抽吸状态。
作为示例,所述检测所述气溶胶生成装置是否处于抽吸状态包括:所述气溶胶生成装置包括咪头组件,所述咪头组件用于监测所述气溶胶生成装置是否发生抽吸动作,并且用于在具有抽吸动作时统计抽吸次数以及统计时间。
可选的,可以通过在气溶胶生成装置的咪头中集成气流传感器/气动开关等,对用户的抽吸和/或吹气动作进行检测,并根据抽吸和/或吹气动作输出不同电信号。
需要说明的是,根据吹气和/或吸气动作转换为电信号的传感器也可以采用其他传感器进行实现,在本实施例中仅仅例举气流传感器/气动开关,相关技术人员在设计的过程中也可以基于实际需求对上述硬件进行改动。
可选的,可以通过在气溶胶生成装置的咪头中集成计数功能,用于统计用户的抽吸次数。计数功能可以通过计数器实现,计数器在收到高电平时进行计数,每收到一个高电平信号就在基准次数的基础上增加单元数值并更新基准次数,其中单元数值可以为1,基准次数可以设置为0。其中,当检测到用户有抽吸动作时,向计数器发送高电平。需要说明的是,计数功能还可以通过将计数程序写入咪头中或者其他方式实现,本发明对计数功能实现在此处不作限制,技术人员可以根据实际情况进行更改设计;同时,单元数值和基准次数在此处不作限制,技术人员可以根据实际情况进行更改设置。
可选的,可以通过在气溶胶生成装置的咪头中集成计时功能,用于在收到首个高电平时,就开始计时,其中当检测到用户有抽吸动作时发送高电平;和/或用于在气溶胶生成装置正常雾化时开始计时;和/或在气溶胶生成装置停止工作时开始计时,计时功能可以采用计时器实现,还可以通过将计时程序写入咪头等方式实现,本发明对计时功能实现在此处不作限制,技术人员可以根据实 际情况进行更改设计。
S120、响应于所述气溶胶生成装置处于抽吸状态时,检测所述气溶胶生成装置的童锁开启状态。
作为示例,所述响应于所述气溶胶生成装置处于抽吸状态时,检测所述气溶胶生成装置的童锁开启状态包括:当检测到用户对该气溶胶生成装置产生抽吸动作时,首先要检测气溶胶生成装置是否处于童锁开启状态。
可选的,可以通过读取气溶胶生成装置的控制器的控制状态直接获得气溶胶生成装置是否处于童锁开启状态。
可选的,可以通过检测用户的抽吸动作是否引起气溶胶生成装置的雾化操作来确定当前气溶胶生成装置是否处于童锁开启状态,当气溶胶生成装置处于童锁开启状态时,用户正常的抽吸动作不能够开启气溶胶生成装置的雾化操作。
S130、响应于所述气溶胶生成装置处于童锁开启状态,判断所述气溶胶生成装置在第一预设时间内的抽吸口数是否大于第一阈值。
作为示例,所述响应于所述气溶胶生成装置处于童锁开启状态,判断所述气溶胶生成装置在第一预设时间内的抽吸口数是否大于第一阈值包括:当气溶胶生成装置处于童锁开启状态时,统计用户在一定时间段内的对气溶胶生成装置的抽吸次数是否满足预设的条件。
可选的,第一预设时间可以设置为2s、第一阈值可以设置为3,也即,当气溶胶生成装置处于童锁开启状态时,当检测到用户对该气溶胶生成装置的抽吸动作后,通过向在咪头集成的计时器发送高电平,使计时器开始计时,并且向在咪头集成的计数器发送高电平,使计数器开始计数,并基于计时器和计数器统计的数值判断在2s内用户的抽吸次数达是否3次。
需要说明的是,上述的第一预设时间和第一阈值的具体数值在此处不作限制,相关技术人员在设计的过程中可以自主的选择不同的第一预设时间和第一阈值。
S140、响应于所述气溶胶生成装置在第一预设时间内的抽吸口数大于第一阈值,使所述气溶胶生成装置处于童锁关闭状态。
作为示例,所述响应于所述气溶胶生成装置在第一预设时间内的抽吸口数大于第一阈值,使所述气溶胶生成装置处于童锁关闭状态包括:当气溶胶生成装置在第一预设时间内的抽吸口数大于第一阈值时,自动解锁所述气溶胶生成 装置,也即使得气溶胶生成装置处于童锁关闭状态。当气溶胶生成装置处于童锁关闭状态时,当检测到用户对该气溶胶生成装置的抽吸动作后,会使气溶胶生成装置正常雾化。
可选的,以第一预设时间为2s、第一阈值为3次为例,当气溶胶生成装置处于童锁关闭状态时,当检测到用户对该气溶胶生成装置的抽吸动作后,统计用户的抽吸动作是否满足在2s的时间段内连续抽吸了3次,如果满足,则解锁气溶胶生成装置,关闭童锁,使气溶胶生成装置正常雾化。
可选的,当气溶胶生成装置由开启童锁状态变更为关闭童锁状态时,可以向用户提示当前气溶胶生成装置所处的童锁状态。具体地,可以通过LED、马达振动、语音播报、文字、图片等方式进行提示。这样可以使得用户能够及时的确认气溶胶生成装置当前所处的工作状态。
S150、响应于所述气溶胶生成装置处于童锁关闭状态,判断所述气溶胶生成装置单次雾化时间是否大于第二时间阈值。
作为示例,所述响应于所述气溶胶生成装置处于童锁关闭状态,判断所述气溶胶生成装置单次雾化时间是否大于第二时间阈值包括:当气溶胶生成装置处于童锁关闭状态时,则此时用户抽吸气溶胶生成装置会使其正常雾化,当正常雾化时开始计时,判断气溶胶生成装置单次雾化时间是否大于第二时间阈值。
可选的,单次雾化时间可以理解为气溶胶生成装置单次输出的持续时长,如用户在对气溶胶生成装置进行抽吸时,用户单次抽吸时长过长时,可能会使得用户的抽吸量过大,不利于用户的健康,因此通过控制气溶胶生成装置单次输出的持续时长可以有助于用户合理抽吸。其中第二时间阈值可以设置为3-30s,此处优选10s。
S160、响应于所述气溶胶生成装置单次雾化时间大于第二时间阈值,所述气溶胶生成装置停止雾化。
作为示例,所述响应于所述气溶胶生成装置单次雾化时间大于第二时间阈值,所述气溶胶生成装置停止雾化包括:当气溶胶生成装置单次雾化时间大于第二时间阈值时,则控制所述气溶胶生成装置关断。
可选的,以第二时间阈值为10s为例,当检测出用户的单次抽吸时长大于10s时,控制所述气溶胶生成装置处于关断状态。
这样通过基于用户的单次抽吸时长控制气溶胶生成装置的关断,可以为用 户的合理抽吸提供良好的促进作用。
上述方法通过将童锁集成在气溶胶生成装置的咪头上以实现气溶胶生成装置的防儿童误吸的功能,而且在不增加成本和不增加复杂的结构件的情况下,保持原来的技术设计,增加童锁功能,防止儿童误用,极大的减少了制造成本。并且通过设置超时保护功能,也可以有效的协助用户合理抽吸。
参考图2,示出了本发明又一个实施例提供的一种气溶胶生成装置的控制方法流程图。
步骤S210-S260与上述S110-S160步骤相同,在此处不作赘述。
在步骤S250之前还包括:
S270、响应于所述气溶胶生成装置处于童锁关闭状态,检测所述气溶胶生成装置的电池的欠压状态和负载短路状态。
作为示例,当用户对气溶胶生成装置进行抽吸时,若当前的气溶胶生成装置处于童锁关闭状态,则用户可以正常使用该气溶胶生成装置,并且会继续检测气溶胶生成装置的电池的欠压状态和负载短路状态。
可选的,电池欠压是指电池电压过低进而影响正常工作,原因可能是电池使用过久,引起内存耗电较多而电压下降。负载短路是指负载本身内部零部件出现问题而引起的大部分环节失效,最终造成整个负载瘫痪至短路。因此,在正常使用气溶胶生成装置的过程中通过检测电池欠压状态和负载短路状态,一方面可以有效的保证气溶胶生成装置的正常运行,另一方面还可以预防使用该气溶胶生成装置的过程中发生事故的情况,进一步的保证了用户的安全性。
S280、当所述电池和负载处于正常工作状态时,所述气溶胶生成装置正常雾化。
S290、当所述电池和负载处于非正常工作状态时,所述气溶胶生成装置进行故障提示,无法正常雾化。
作为示例,当电池和负载处于正常工作状态时,所述气溶胶生成装置正常雾化;当电池和负载处于非正常工作状态时,所述气溶胶生成装置进行故障提示。其中,进行故障提示的方式可以为LED、马达振动、语音播报、文字、图片等方式。这样可以是用户及时的掌握该气溶胶生成装置的工作情况,以便用户基于该提示对该气溶胶生成装置作出更换或维修等操作,进一步的提高了用 户的体验感。
参考图3,示出了本发明另一个实施例提供的一种气溶胶生成装置的控制方法流程图。
步骤S310-S390与上述S210-S290步骤所述相同,在此处不作赘述。
在步骤S360之后还包括:
S3100、在所述气溶胶生成装置停止雾化时开始计时。
作为示例,所述在所述气溶胶生成装置停止雾化时开始计时包括:在气溶胶生成装置输出烟雾的过程中用户停止抽吸时该气溶胶生成装置停止雾化,或者在用户的单次抽吸时长大于第二时间阈值时气溶胶生成装置停止雾化。当气溶胶生成装置停止雾化时,利用集成在咪头中的计时功能开始计时。
S3110、判断所述气溶胶生成装置停止雾化后的时间是否大于第三时间阈值。
作为示例,所述判断所述气溶胶生成装置停止雾化后的时间是否大于第三时间阈值包括,基于集成在咪头中的计时功能统计的时长判断该时长是否大于第三时间阈值,其中第三时间阈值可以设置为20s。
可选的,在气溶胶生成装置输出烟雾的过程中停止抽烟或单次输出烟雾10秒的抽烟时间计时完成,则开始按照预设时间计算开启童锁时间,其中预设的时间为第三时间阈值20s。
需要说明的是,在此处不对第三时间阈值做限制,相关技术人员在设计的过程中可以基于实际需求对第三时间阈值配置不同的时间。
S3120、当所述时间大于第三时间阈值时,使所述气溶胶生成装置处于童锁开启状态。
作为示例,所述当所述时间大于第三时间阈值时,使所述气溶胶生成装置处于童锁开启状态包括:当所述时间大于第三时间阈值时,使所述气溶胶生成装置处于待机状态。
可选的,当气溶胶生成装置停止雾化后开始计时的累计时长大于第三时间阈值时,气溶胶生成装置处于待机状态并开启童锁功能。
可选的,开启童锁功能的方式还可以为:基于集成在咪头上的计数器,该计数器在收到高电平时开始计数,每接收到一次高电平即在基准次数的基础上增加单元数值并更新基准次数,其中单元数值可以为1,基础次数可以设置为0, 需要说明的是,单元数值和基础次数在此处不作限制,技术人员可以根据实际情况进行更改设置。基于集成在咪头上的计时器进行计时,当在预定时间段内的抽吸次数达到预设的阈值时,该气溶胶生成装置启动童锁功能。具体地,可以为在3s内抽吸次数为5次。需要说明的是,在此处不对预设的时间和预设的阈值做限制。
S3130、当所述时间小于第三阈值时,停止计时。
作为示例,所述当所述时间小于第三阈值时,停止计时包括:当在第三时间阈值时间段内检测到所述气溶胶生成装置处于抽吸状态,则停止计时;当检测到所述气溶胶生成装置处于非抽吸状态时,重新计时。
可选的,在气溶胶生成装置输出烟雾的过程中用户停止抽吸或者10秒的抽烟时间计时完成,则开始按照预设时间计算开启童锁时间,若计时完成之前无抽吸动作,则自动开启童锁,若计时完成前有抽吸动作,则停止计时,等待抽吸完成后重新按照预设时间开始计时。具体地,若在气溶胶生成装置停止输出烟雾后,累计时长为20s内均没有检测到用户对该气溶胶生成装置的抽吸动作,则自动开启童锁功能。若在20s内检测到用户的抽吸动作,则停止计时,并在用户的抽吸完成后重新计时。
上述方法通过在停止抽吸和超时保护后开始计时,当计时完成时自动进入待机并开启童锁功能,可以极大地提高电量利用率。
请参考图4,示出了本发明又一个实施例提供的一种气溶胶生成装置的咪头电路图。
作为示例,该咪头电路较为简单,由SOT23-6封装IC实现,脚位分别1个脚接LED指示灯、1个脚接负载发热件、1个脚接气压咪头、1个脚接电芯正极、1个脚位充电正极、剩下一个脚位是前5个功能的公共端GND。
实施例2
请参阅图5,示出了本发明一个实施例提供的一种气溶胶生成装置控制装置示意图。所述装置包括:
检测单元510,用于检测所述气溶胶生成装置的抽吸状态及童锁开启状态;
判断单元520,用于判断所述气溶胶生成装置抽吸口数和雾化时长是否大于阈值;
控制单元530,用于控制所述气溶胶生成装置童锁和雾化状态。
作为示例,所述检测单元510包括:
检测抽吸状态模块5101,用于检测所述气溶胶生成装置是否处于抽吸状态;
检测童锁开启状态模块5102,用于响应于所述气溶胶生成装置处于抽吸状态时,检测所述气溶胶生成装置的童锁开启状态;
作为示例,所述判断单元520包括:
第一判断模块5201,用于响应于所述气溶胶生成装置处于童锁开启状态,判断所述气溶胶生成装置在第一预设时间内的抽吸口数是否大于第一阈值;
第二判断模块5202,用于响应于所述气溶胶生成装置处于童锁关闭状态,判断所述气溶胶生成装置单次雾化时间是否大于第二时间阈值;
作为示例,所述控制单元530包括:
第一控制模块5301,用于响应于所述气溶胶生成装置在第一预设时间内的抽吸口数大于第一阈值,使所述气溶胶生成装置处于童锁关闭状态;
第二控制模块5302,用于响应于所述气溶胶生成装置单次雾化时间大于第二时间阈值,所述气溶胶生成装置停止雾化。
实施例3
本发明实施例还提出一种存储介质,所述存储介质上存储有气溶胶生成装置的控制方法,所述控制气溶胶生成装置的程序被处理器执行时实现如上文所述的气溶胶生成装置的控制方法的步骤。由于本存储介质采用了上述所有实施例的全部技术方案,因此至少具有上述实施例的技术方案所带来的所有有益效果,在此不再一一赘述。
实施例4
请参阅图6,本发明实施例还提供了一种电子设备,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实施例1所提供的气溶胶生成装置的控制方法。
存储器602和处理器601采用总线方式连接,总线可以包括任意数量的互联的总线和桥,总线将一个或多个处理器601和存储器602的各种电路连接在一起。总线还可以将诸如外围设备、稳压器和功率管理电路等之类的各种其他 电路连接在一起,这些都是本领域所公知的,因此,本文不再对其进行进一步描述。总线接口在总线和收发机之间提供接口。收发机可以是一个元件,也可以是多个元件,比如多个接收器和发送器,提供用于在传输介质上与各种其他装置通信的单元。经处理器601处理的数据通过天线在无线介质上进行传输,进一步,天线还接收数据并将数据传送给处理器601。
处理器601负责管理总线和通常的处理,还可以提供各种功能,包括定时,外围接口,电压调节、电源管理以及其他控制功能。而存储器602可以被用于存储处理器601在执行操作时所使用的数据。
以上所述的仅是本发明的实施例,方案中公知的具体结构及特性等常识在此未作过多描述,所属领域普通技术人员知晓申请日或者优先权日之前发明所属技术领域所有的普通技术知识,能够获知该领域中所有的现有技术,并且具有应用该日期之前常规实验手段的能力,所属领域普通技术人员可以在本申请给出的启示下,结合自身能力完善并实施本方案,一些典型的公知结构或者公知方法不应当成为所属领域普通技术人员实施本申请的障碍。应当指出,对于本领域的技术人员来说,在不脱离本实用新型结构的前提下,还可以作出若干变形和改进,这些也应该视为本实用新型的保护范围,这些都不会影响本发明实施的效果和专利的实用性。本申请要求的保护范围应当以其权利要求的内容为准,说明书中的具体实施方式等记载可以用于解释权利要求的内容。

Claims (10)

  1. 一种气溶胶生成装置的控制方法,其特征在于,所述方法包括:
    检测所述气溶胶生成装置是否处于抽吸状态;
    响应于所述气溶胶生成装置处于抽吸状态时,检测所述气溶胶生成装置的童锁开启状态;
    响应于所述气溶胶生成装置处于童锁开启状态,判断所述气溶胶生成装置在第一预设时间内的抽吸口数是否大于第一阈值;
    响应于所述气溶胶生成装置在第一预设时间内的抽吸口数大于第一阈值,使所述气溶胶生成装置处于童锁关闭状态;
    响应于所述气溶胶生成装置处于童锁关闭状态,判断所述气溶胶生成装置单次雾化时间是否大于第二时间阈值;
    响应于所述气溶胶生成装置单次雾化时间大于第二时间阈值,所述气溶胶生成装置停止雾化。
  2. 根据权利要求1所述的气溶胶生成装置的控制方法,其特征在于,所述气溶胶生成装置包括咪头组件,所述咪头组件用于监测所述气溶胶生成装置是否发生抽吸动作,并且用于在具有抽吸动作时统计抽吸次数以及统计时间。
  3. 根据权利要求1所述的气溶胶生成装置的控制方法,其特征在于,所述响应于所述气溶胶生成装置在第一预设时间内的抽吸口数大于第一阈值,使所述气溶胶生成装置处于童锁关闭状态之后包括:
    响应于所述气溶胶生成装置处于童锁关闭状态,所述气溶胶生成装置进行童锁关闭提示。
  4. 根据权利要求1所述的气溶胶生成装置的控制方法,其特征在于,所述响应于所述气溶胶生成装置处于童锁关闭状态,判断所述气溶胶生成装置单次雾化时间是否大于第二时间阈值之前包括:
    响应于所述气溶胶生成装置处于童锁关闭状态,检测所述气溶胶生成装置的电池的欠压状态和负载短路状态;
    当所述电池和负载处于正常工作状态时,所述气溶胶生成装置正常雾化;
    当所述电池和负载处于非正常工作状态时,所述气溶胶生成装置进行故障提示。
  5. 根据权利要求1所述的气溶胶生成装置的控制方法,其特征在于,所述响应于所述气溶胶生成装置单次雾化时间大于第二时间阈值,所述气溶胶生成装置停止雾化之后还包括:
    在所述气溶胶生成装置停止雾化时开始计时;
    判断所述气溶胶生成装置停止雾化后的时间是否大于第三时间阈值;
    当所述时间大于第三时间阈值时,使所述气溶胶生成装置处于童锁开启状态;
    当所述时间小于第三阈值时,停止计时。
  6. 根据权利要求5所述的气溶胶生成装置的控制方法,其特征在于,所述当所述时间大于第三时间阈值时,使所述气溶胶生成装置处于童锁开启状态包括:
    当所述时间大于第三时间阈值时,使所述气溶胶生成装置处于待机状态。
  7. 根据权利要求5所述的气溶胶生成装置的控制方法,其特征在于,所述当所述时间小于第三阈值时,停止计时包括:
    当在第三时间阈值时间段内检测到所述气溶胶生成装置处于抽吸状态,则停止计时;
    当检测到所述气溶胶生成装置处于非抽吸状态时,重新计时。
  8. 根据权利要求1所述的气溶胶生成装置的控制方法,其特征在于,所述响应于所述气溶胶生成装置单次雾化时间大于第二时间阈值,所述气溶胶生成装置停止雾化之后还包括:
    在所述气溶胶生成装置停止雾化时开始计时;
    判断所述气溶胶生成装置在预定时间段内的抽吸次数是否大于预设的阈值;
    当所述预定时间段内的抽吸次数大于预设的阈值时,使所述气溶胶生成装置处于童锁开启状态。
  9. 一种气溶胶生成装置的控制装置,其特征在于,所述装置包括:
    检测单元,用于检测所述气溶胶生成装置的抽吸状态及童锁开启状态;
    判断单元,用于判断所述气溶胶生成装置抽吸口数和雾化时长是否大于阈值;
    控制单元,用于控制所述气溶胶生成装置童锁和雾化状态。
  10. 根据权利要求9所述的气溶胶生成装置的控制装置,其特征在于,所述检测单元包括:
    检测抽吸状态模块,用于检测所述气溶胶生成装置是否处于抽吸状态;
    检测童锁开启状态模块,用于响应于所述气溶胶生成装置处于抽吸状态时,检测所述气溶胶生成装置的童锁开启状态;
    所述判断单元包括:
    第一判断模块,用于响应于所述气溶胶生成装置处于童锁开启状态,判断所述气溶胶生成装置在第一预设时间内的抽吸口数是否大于第一阈值;
    第二判断模块,用于响应于所述气溶胶生成装置处于童锁关闭状态,判断所述气溶胶生成装置单次雾化时间是否大于第二时间阈值;
    所述控制单元包括:
    第一控制模块,用于响应于所述气溶胶生成装置在第一预设时间内的抽吸口数大于第一阈值,使所述气溶胶生成装置处于童锁关闭状态;
    第二控制模块,用于响应于所述气溶胶生成装置单次雾化时间大于第二时间阈值,所述气溶胶生成装置停止雾化。
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CN114680395A (zh) * 2022-04-29 2022-07-01 拓尔微电子股份有限公司 一种具有童锁功能的电子烟的解锁和锁定方法及装置
CN115039924A (zh) * 2022-05-18 2022-09-13 杭州一芯微科技有限公司 一种带童锁功能的电子烟电路
CN115336817A (zh) * 2022-09-22 2022-11-15 深圳市卓尔悦电子科技有限公司 气溶胶生成装置的控制方法
CN116268628A (zh) * 2023-03-28 2023-06-23 深圳市卓尔悦电子科技有限公司 一种气溶胶生成装置控制方法、装置和气流传感器电路

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