WO2024250499A1 - Appareil d'atomisation électronique et son procédé de commande - Google Patents
Appareil d'atomisation électronique et son procédé de commande Download PDFInfo
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- WO2024250499A1 WO2024250499A1 PCT/CN2023/122112 CN2023122112W WO2024250499A1 WO 2024250499 A1 WO2024250499 A1 WO 2024250499A1 CN 2023122112 W CN2023122112 W CN 2023122112W WO 2024250499 A1 WO2024250499 A1 WO 2024250499A1
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- Prior art keywords
- atomizer
- interface
- signal
- circuit
- detection information
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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
- A24F40/90—Arrangements or methods specially adapted for charging batteries thereof
-
- 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
-
- 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
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E60/00—Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
- Y02E60/10—Energy storage using batteries
Definitions
- the present application relates to the field of electronic atomization technology, and in particular to an electronic atomization device and a control method thereof.
- An electronic atomization device is a product that atomizes an atomized matrix to be atomized to form an aerosol.
- An electronic atomization device generally includes an atomizer for storing the atomized matrix and a power supply for supplying power.
- the electronic atomization devices include an integrated design type and a replaceable atomizer type; the above two types of electronic atomization devices, as well as other types of electronic atomization devices, are not recommended for users to use while charging, that is, when the electronic atomization device is low on power, the user must wait until charging is completed before using it, which brings inconvenience to the user.
- the main technical problem solved by the present application is to provide an electronic atomization device and a control method thereof, which can solve the technical problem of the inconvenience of using the existing electronic atomization device.
- an electronic atomization device comprising:
- An atomizer used for storing an atomized matrix and atomizing the atomized matrix to form an aerosol, wherein the atomizer is provided with a first battery and a first circuit interface group;
- a power supply device is detachably connected to the atomizer, and is provided with a second circuit interface group and a second battery for connecting to the first circuit interface group.
- the power supply device is configured to determine whether to charge the atomizer based on detection information of the second circuit interface group.
- the first circuit interface group includes a first power interface, a second power interface and a first signal interface
- the second circuit interface group includes a third power interface, a fourth power interface and a second signal interface
- the first power interface is used to be electrically connected to the third power interface
- the second power interface is used to be electrically connected to the fourth power interface
- the first signal interface is electrically connected to the signal interface
- the power supply device is configured to determine whether to power on the first power interface and the second power interface through the third power interface and the fourth power interface based on detection information of the second signal interface.
- the atomizer includes an airflow sensor, and the airflow sensor generates a response signal in response to the user's puffing action on the atomizer, and the puffing signal is sent to the second circuit interface group through the first circuit interface group, and the detection information includes the puffing signal.
- the atomizer includes an airflow sensor, and the airflow sensor generates a response signal in response to the user's puffing action on the atomizer.
- the response signal is sent to the second circuit interface group through the first circuit interface group, and the detection information includes the number of times the second circuit interface group receives the response signal.
- the power supply device comprises a resistance measuring device
- the resistance measuring device detects the resistance of the second signal interface
- the detection information comprises the resistance of the second signal interface
- the power supply device includes a timing device, the timing device detects the second circuit interface group and the first The connection time of the circuit interface group, the detection information includes the connection time.
- the atomizer also includes a first circuit board, the first battery is electrically connected to the first circuit board, and the first circuit interface group is arranged on the first circuit board;
- the power supply device also includes a second circuit board, the second battery is electrically connected to the second circuit board, and the second circuit interface group is arranged on the second circuit board.
- the atomizer includes an airflow sensor, the airflow sensor generates a response signal in response to a user's puffing action on the atomizer, the detection information includes the puffing signal, and the step of determining whether to charge the electronic atomization device based on the detection information includes:
- the atomizer includes an airflow sensor, and the airflow sensor generates a response signal in response to the user's puffing action on the atomizer, and the detection information includes the number of times the second circuit interface group receives the puffing signal.
- the step of determining whether to charge the electronic atomization device based on the detection information includes:
- the power supply device includes a resistance measuring device
- the second circuit interface group includes a second signal interface connected to the atomizer
- the step of obtaining the detection information of the second circuit interface group includes:
- the step of determining whether to charge the electronic atomization device based on the detection information includes:
- the resistance value of the second signal interface is compared with a preset resistance value. If the resistance value of the second signal interface is equal to the preset resistance value, it is determined that the atomizer needs to be charged.
- the power supply device includes a timing device
- the step of obtaining the detection information of the second circuit interface group includes:
- the step of determining whether to charge the electronic atomization device based on the detection information includes:
- connection time is compared with a preset time, and if the connection time is greater than the preset time, it is determined that the atomizer needs to be charged.
- the electronic atomization device of the present application includes an atomizer and a power supply device, wherein the atomizer and the power supply device are detachably connected.
- the atomizer stores an atomization matrix, and the atomizer can independently atomize the atomization matrix to form an aerosol.
- the atomizer is provided with a first battery, and the atomizer and the power supply device can also be used alone when they are separated.
- the power supply device is provided with a second circuit interface group electrically connected to the first circuit interface group of the atomizer and a second battery, and the power supply device can determine whether to charge the atomizer based on the detection information of the second circuit interface group.
- the electronic atomization device of the present application The atomizer and the power supply device in the atomizer device are detachably connected, making the electronic atomizer device playable.
- the atomizer can atomize the atomization matrix alone, making the electronic atomizer device have a hot-swap function; when connected, the power supply device can judge the stability between the atomizer and the power supply device based on the detection information of the two circuit interface groups, and then judge whether to charge the atomizer, which improves the safety of the electronic atomizer device, and the atomizer can also be used while charging, which improves the convenience of using the electronic atomizer device.
- FIG1 is a schematic diagram of the structure of the electronic atomization device of the present application.
- FIG2 is a schematic diagram of the flow structure of the first embodiment of the control method of the electronic atomization device of the present application
- FIG3 is a schematic diagram of the flow structure of a second embodiment of a control method for an electronic atomization device of the present application
- FIG4 is a schematic diagram of the flow structure of a third embodiment of a control method for an electronic atomization device of the present application.
- FIG5 is a schematic diagram of the flow structure of a fourth embodiment of a control method for an electronic atomization device of the present application.
- FIG. 6 is a schematic diagram of the flow structure of the fifth embodiment of the control method of the electronic atomization device of the present application.
- FIG. 1 is a schematic diagram of the structure of the electronic atomization device of the present application.
- the electronic atomization device includes an atomizer 100 and a power supply device 200 .
- the nebulizer 100 stores an atomization matrix, and the nebulizer 100 can heat and atomize the atomization matrix to form an aerosol for the user to inhale.
- the atomizer 100 may include a first battery 150 and an atomizer assembly 130.
- the first battery 150 and the atomizer assembly 130 are electrically connected, the atomizer matrix is stored in the atomizer assembly 130, the atomizer assembly 130 heats the atomizer matrix and atomizes it to form an aerosol, and the aerosol flows out from the suction nozzle 160 provided on the atomizer 100.
- the power supply device 200 is detachably connected to the atomizer 100 , that is, the power supply device 200 can be fixedly connected to the atomizer 100 or can be separated from each other.
- the power supply device 200 can be detachably connected to the atomizer 100 by means of snap, magnetism, threaded connection, etc.
- the present application does not limit the connection method between the atomizer 100 and the power supply device 200, as long as the power supply device 200 and the atomizer 100 are detachably connected.
- the power supply device 200 includes a second battery 230 , and the second battery 230 stores electric energy.
- the controller 200 is connected to the second battery 230 , the second battery 230 in the power supply device 200 can charge the first battery 150 in the atomizer 100 .
- the atomizer 100 is provided with a first circuit interface group 110
- the power supply device 200 is provided with a second circuit interface group 210.
- the first circuit interface group 110 is electrically connected to the second circuit interface group 210.
- the first circuit interface group 110 and the second circuit interface group 210 are used for the atomizer 100 and the power supply device 200.
- the signal interaction can also be used for the power supply device 200 to charge the atomizer 100.
- the atomizer 100 has the function of storing and atomizing the atomized matrix, and the atomizer 100 is provided with a first battery 150, which can directly power the atomizer assembly 130, and the atomizer 100 can be used independently of the power supply device 200.
- the atomizer 100 and the power supply device 200 can be separated at will, so that the atomizer 100 and the power supply device 200 have the function of hot plugging, which improves the safety of the use of the atomizer 100.
- the detachability of the atomizer 100 and the power supply device 200 improves the playability of the electronic atomization device, so that the electronic atomization device has more ways to play and improves the user experience.
- the power supply device 200 can charge the atomizer 100.
- the atomizer 100 can perform atomization during charging, that is, the electronic atomization device under this embodiment can also be used for suction during the charging process of the atomizer 100, making the use of the electronic atomization device more convenient.
- the power supply device 200 in this embodiment can determine whether it is stably connected to the atomizer 100 based on the detection information of the second circuit interface group 210, and then determine whether to charge the atomizer 100, thereby further improving the safety of use of the electronic atomization device of the present application. Please refer to the following embodiments for details.
- the atomizer 100 includes a first circuit board 120 , the atomizer assembly 130 and the first battery 150 are electrically connected to the first circuit board 120 , respectively, and the first circuit interface group 110 is disposed on the first circuit board 120 .
- a control chip or a control circuit may be integrated on the first circuit board 120 , and the control chip or the control circuit may control the charging and discharging of the first battery 150 , so that the first battery 150 is charged or the atomization operation of the atomization assembly 130 is controlled.
- the power supply device 200 further includes a second circuit board 220 , and a second battery 230 is electrically connected to the second circuit board 220 .
- a control chip or a control circuit may be integrated on the second circuit board 220.
- the second circuit board 220 includes a control chip 240.
- the control chip 240 can control the charging and discharging of the second battery 230 to charge the second battery 230 , or control the second battery 230 to charge the first battery 150 through the first circuit interface group 110 and the second circuit interface group 210 .
- a charging interface 221 may be provided on the second circuit board 220.
- the charging interface 221 is used to connect other power sources to charge the second battery 230.
- the second circuit board 220 may also be provided with circuit elements such as a current conversion circuit and an indicator light.
- control chip 240 can obtain the detection information of the second circuit interface group 210, and then determine whether to charge the atomizer 100 based on the detection information. If the control chip 240 determines that the atomizer 100 needs to be charged, the control chip 240 controls the second battery 230 to charge the first battery 150.
- the first circuit interface group 110 includes a first signal interface 112 , a first power interface 111 and a second power interface 113
- the second circuit interface group 210 includes a second signal interface 212 , a third power interface 211 and a fourth power interface 213 .
- the first signal interface 112 is connected to the second signal interface 212, and the first signal interface 112 and the second signal interface 212 are used to transmit signals.
- the first power interface 111 is connected to the third power interface 211, and the second power interface 113 is connected to the fourth power interface 213.
- the first power interface 111, the second power interface 113, the third power interface 211 and the fourth power interface 213 are used to transmit electric energy and can be used to charge the first battery 150.
- the first power interface 111 and the second power interface 113 are connected to the third power interface 211, and the second power interface 113 is connected to the fourth power interface 213.
- One of the interfaces 113 is a positive electrode interface, and the other is a negative electrode interface, and the third power interface 211 and the fourth power interface 213 are the same.
- control chip 240 can obtain the detection information of the second signal interface 212, and then determine whether to charge the atomizer 100 based on the detection information. If the control chip 240 determines that the atomizer 100 needs to be charged, the control chip 240 controls the second battery 230 to charge the first battery 150, and the second battery 230 transmits power to the first power interface 111, the second power interface 113 and the first battery 150 through the third power interface 211 and the fourth power interface 213.
- the atomizer 100 further includes an airflow sensor 140, which is electrically connected to the first circuit board 120.
- the airflow sensor 140 may be disposed in the airflow channel of the atomizer assembly 130, and is used to detect the suction action. Under the suction action of the user on the atomizer assembly 130, the airflow sensor 140 generates a response signal in response to the user's suction action on the atomizer assembly 130, and the airflow sensor 140 sends the suction signal to the control circuit of the first circuit board, and the control circuit controls the first battery 150 to energize the atomizer assembly 130, so that the atomizer assembly 130 is atomized to generate aerosol.
- the airflow sensor 140 sends the suction signal to the second signal interface 212 through the first signal interface 112.
- the detection information of the second signal interface 212 at least includes the suction signal received by the second signal interface 212 from the first signal interface 112.
- the control chip 240 When the control chip 240 does not detect the suction signal received by the second signal interface 212, the control chip 240 controls the third power interface 211 and the fourth power interface 213 to be disconnected from the first power interface 111 and the second power interface 113, and the power supply device 200 is in a power-off state with the atomizer 100.
- the control chip 240 detects the suction signal received by the second signal interface 212, the control chip 240 controls the third power interface 211 and the fourth power interface 213 to be connected to the first power interface 111 and the second power interface 113, and the control chip 240 controls the second battery 230 to supply power to the first battery 150, and the power supply device 200 starts to charge the atomizer 100.
- control chip 240 in this embodiment determines whether the power supply device 200 is charging the atomizer 100 based on whether the second signal interface 212 receives the suction signal sent by the airflow sensor 140 in the atomizer 100, thereby preventing the power supply device 200 and the atomizer 100 from being powered on for a long time, thereby improving the connection safety between the power supply device 200 and the atomizer 100.
- the detection information of the second signal interface 212 includes at least the number of suction signals received by the second signal interface 212 from the first signal interface 112 .
- the control chip 240 detects the number of times the second signal interface 212 receives the puff signal. If the number of times the second signal interface 212 receives the puff signal is not greater than the preset number, the control chip 240 controls the third power interface 211 and the fourth power interface 213 to be disconnected from the first power interface 111 and the second power interface 113, and the power supply device 200 is in a power-off state with the atomizer 100.
- the control chip 240 controls the third power interface 211 and the fourth power interface 213 to be connected to the first power interface 111 and the second power interface 113, and the control chip 240 controls the second battery 230 to supply power to the first battery 150, and the power supply device 200 starts to charge the atomizer 100.
- the preset number of times may be 1 time, 2 times, 3 times, 4 times, 5 times, 6 times, 7 times, 8 times or other times.
- the control chip 240 in this embodiment is based on whether the second signal interface 212 receives the suction signal sent by the airflow sensor 140 in the atomizer 100, and after the second signal interface 212 receives the suction signal, The number of inhalation signals is recorded, and whether the power supply device 200 charges the atomizer 100 is determined based on the number of receptions, thereby preventing the power supply device 200 and the atomizer 100 from being powered on for a long time, thereby improving the connection safety between the power supply device 200 and the atomizer 100.
- the power supply device 200 further includes a resistance measuring device 250.
- the resistance measuring device 250 may be disposed on the second circuit board 220 and electrically connected to the second circuit board 220.
- the resistance measuring device 250 is used to measure the resistance of the second signal interface 212.
- the detection information of the second signal interface 212 at least includes the resistance of the second signal interface 212.
- the control chip 240 controls the resistance measuring device 250 to continuously measure the resistance of the second signal interface 212, and obtains the resistance of the second signal interface 212.
- the second signal interface 212 is in a suspended state when the power supply device 200 and the atomizer 100 are separated, and the resistance of the second signal interface 212 tends to infinity.
- the resistance of the second signal interface 212 is a fixed preset resistance, which is determined by the resistance of the materials of the second signal interface 212 and the first signal interface 112, and can be set by those skilled in the art according to actual conditions.
- the control chip 240 detects that the resistance of the second signal interface 212 is equal to the preset resistance within a certain period of time, the control chip 240 controls the third power interface 211, the fourth power interface 213 to be connected to the first power interface 111, and the second power interface 113, and the control chip 240 controls the second battery 230 to supply power to the first battery 150, and the power supply device 200 starts to charge the atomizer 100.
- the control chip 240 After the control chip 240 detects that the resistance of the second signal interface 212 changes, the control chip 240 immediately disconnects the third power interface 211, the fourth power interface 213 from the first power interface 111, and the second power interface 113, and controls the second battery 230 to stop charging the first battery 150.
- connection stability between the power supply device 200 and the atomizer 100 is determined by the resistance value of the second signal interface 212, and the charging circuit is opened only after the power supply device 200 and the atomizer 100 are stably connected. This prevents the third power interface 211 and the fourth power interface 213 of the power supply device 200 from being suspended and discharged, and also prevents the second signal interface 212 from being short-circuited with the third power interface 211 or the fourth power interface 213, thereby improving the safety of the electronic atomization device and the charging stability of the atomizer 100.
- the power supply device 200 further includes a timing device 260 .
- the timing device 260 may be disposed on the second circuit board 220 , and is used to detect the connection time between the second signal interface 212 and the first signal interface 112 .
- the control chip 240 controls the timing device 260 to record the connection time between the second signal interface 212 and the first signal interface 112 , obtains the connection time, and compares the connection time with the preset time.
- control chip 240 may determine whether the second signal interface 212 is connected to the first signal interface 112 by measuring the resistance of the second signal interface 212 , or may determine whether the second signal interface 212 is connected to the first signal interface 112 after receiving a specific signal.
- the preset time may be 3s, 4s, 5s, 6s, 7s, 8s, 9s, 10s or other time.
- control chip 240 controls the third power interface 211, the fourth power interface 213 to be connected to the first power interface 111, the second power interface 113, and the control chip 240 controls the second battery 230 to supply power to the first battery 150, and the power supply device 200 starts to charge the atomizer 100.
- connection stability between the power supply device 200 and the atomizer 100 can also be determined by the connection time between the second signal interface 212 and the first signal interface 112, thereby further improving the connection safety between the power supply device 200 and the atomizer 100.
- the present application also provides a control method of an electronic atomization device.
- the control method of an electronic atomization device is applied to the electronic atomization device provided in the above embodiment.
- the structural features of the electronic atomization device please refer to the description of the above embodiment.
- control method of this embodiment can be specifically applied to the control center of an electronic atomization device.
- control chip of the second circuit board is taken as an example.
- FIG. 2 is a schematic diagram of the flow structure of a first embodiment of a control method for an electronic atomization device of the present application, and the control method includes:
- the control chip in the power supply device obtains detection information of the second circuit interface group.
- the second circuit interface group is electrically connected to the first circuit interface group of the atomizer.
- the control chip can obtain the connection status of the second circuit interface group and the first circuit interface group through the detection information of the first circuit interface group, thereby judging the connection stability between the power supply device and the atomizer.
- the detection information of the second circuit interface group may include the resistance value of the second circuit interface group, whether the second circuit interface group receives a connection signal, the connection time between the second circuit interface group and the first circuit interface group, and the like.
- S12 Determine whether to charge the atomizer based on the detection information.
- control chip After the control chip obtains the detection information of the second circuit interface group, it determines the connection stability between the power supply device and the atomizer based on the detection information.
- control chip After the control chip confirms that the second circuit interface group is stably connected to the first circuit interface group, the control chip controls the second battery to charge the first battery, thereby enabling the power supply device to charge the atomizer.
- this embodiment can determine the connection stability between the power supply device and the atomizer through the detection information of the second circuit interface group, and after the connection between the power supply device and the atomizer is stable, the power supply device charges the atomizer. In this way, the connection safety between the power supply device and the atomizer is improved, and the charging stability of the atomizer is also improved.
- FIG. 3 is a schematic diagram of the flow structure of a second embodiment of a control method for an electronic atomization device of the present application.
- This embodiment includes:
- the control chip in the power supply device obtains detection information of the second circuit interface group.
- the atomizer further includes an airflow sensor, which generates a response signal in response to the user's suction action on the atomizing assembly. After the airflow sensor detects the suction action, the airflow sensor generates a suction signal, and the airflow sensor sends the suction signal to the second circuit interface group through the first circuit interface group.
- the detection information of the second circuit interface group acquired by the control chip includes whether the second circuit interface receives a suction signal.
- the power supply device determines whether the power supply device and the atomizer are stably connected based on whether the suction signal is received.
- the control chip obtains the second circuit
- the suction signal of the interface group is determined as the second circuit interface group has received the suction signal.
- control chip learns based on the detection information that the second circuit interface group has received the suction signal, it is determined that the atomizer needs to be charged.
- control chip learns based on the detection information that the second circuit interface group has not received the suction signal, it is determined that the atomizer is not charged.
- control chip After the control chip receives the suction signal and confirms that the second circuit interface group is stably connected to the first circuit interface group, the control chip controls the second battery to charge the first battery, thereby causing the power supply device to charge the atomizer.
- the power supply device charges the atomizer only after receiving the suction signal from the atomizer, which can prevent the power supply device and the atomizer from being powered on for a long time, thereby improving the connection safety between the power supply device and the atomizer.
- FIG. 4 is a schematic diagram of the flow structure of a third embodiment of a control method for an electronic atomization device of the present application.
- This embodiment includes:
- the control chip in the power supply device obtains detection information of the second circuit interface group.
- the atomizer further includes an airflow sensor, which generates a response signal in response to the user's suction action on the atomizing assembly. After the airflow sensor detects the suction action, the airflow sensor generates a suction signal, and the airflow sensor sends the suction signal to the second circuit interface group through the first circuit interface group.
- the detection information of the second circuit interface group acquired by the control chip includes the number of times the second circuit interface receives the puff signal.
- the power supply device determines whether the power supply device and the atomizer are stably connected based on the number of times the puff signal is received.
- S112 Record the number of times the second circuit interface group receives the suction signal.
- the control chip When the second circuit interface group receives the puff signal from the first circuit interface group, the control chip obtains the puff signal of the second circuit interface group and records the puff signal of this time. The control chip starts recording from the first time when recording the received puff signal, and clears it after the power supply device is in the process of charging the atomizer.
- the control chip After recording the suction signal of the second circuit interface group each time, the control chip compares the suction signal received by the second circuit interface group with the preset number of times to determine whether the number of times of receiving is greater than the preset number of times.
- the preset number of times may be 1 time, 2 times, 3 times, 4 times, 5 times, 6 times, 7 times, 8 times or other times.
- control chip learns based on the detection information that the number of times the second circuit interface group receives the suction signal is greater than a preset number, it is determined that the atomizer needs to be charged.
- control chip learns based on the detection information that the number of times the second circuit interface group receives the suction signal is not greater than a preset number, it is determined that the atomizer is not charged.
- the control chip After receiving the puff signal exceeding the preset number of times, the control chip confirms that the second circuit interface group is stably connected to the first circuit interface group, and the control chip controls the second battery to charge the first battery, thereby enabling the power supply device to charge the atomizer.
- the power supply device charges the atomizer only after receiving the puff signal of the atomizer for a certain number of times, thereby reducing the power supply device's misjudgment of the puff signal, preventing the power supply device and the atomizer from being powered on for a long time, and further improving the connection safety between the power supply device and the atomizer.
- FIG. 5 is a schematic diagram of the flow structure of a fourth embodiment of a control method for an electronic atomization device of the present application.
- This embodiment includes:
- S101 Controlling the resistance measuring device to continuously detect the resistance of the second signal interface.
- the first circuit interface group includes a first signal interface, a first power interface, and a second power interface
- the second circuit interface group includes a second signal interface, a third power interface, and a fourth power interface
- the power supply device also includes a resistance measuring device, which is used to measure the resistance of the second signal interface.
- the control chip controls the resistance measuring device to continuously detect the resistance of the second signal interface.
- the control chip obtains the detection information of the second circuit interface group.
- the detection information of the second circuit interface group obtained by the control chip includes the resistance value of the second signal interface.
- the power supply device determines whether the power supply device and the atomizer are stably connected based on the resistance value received from the second signal interface.
- S125 Determine whether the resistance value of the second signal interface is equal to a preset resistance value.
- the control chip compares the acquired resistance value of the second signal interface with the preset resistance value to determine whether the resistance value of the second signal interface is equal to the preset resistance value.
- the preset resistance has a specific value.
- the second signal interface is in a suspended state, and the resistance of the second signal interface tends to infinity.
- the second signal interface and the first signal interface are stably connected, and the resistance of the second signal interface is a fixed preset resistance.
- the preset resistance is determined by the resistance of the materials of the second signal interface and the first signal interface, and can be set by those skilled in the art according to actual conditions.
- the resistance value of the second signal interface of the control chip is equal to the preset resistance value, it is determined that the atomizer needs to be charged.
- control chip learns based on the detection information that the resistance of the second signal interface is equal to the preset resistance, for example, the resistance is infinite, less than the preset resistance, or the resistance is changing, it is determined that the atomizer is not charged.
- control chip After the control chip confirms that the second circuit interface is stably connected to the first circuit interface through the resistance value of the second signal interface, the control chip controls the second battery to charge the first battery, thereby allowing the power supply device to charge the atomizer.
- this embodiment determines the connection stability between the power supply device and the atomizer by the resistance value of the second signal interface.
- the second signal interface is suspended or short-circuited with the third power supply interface and the fourth power supply interface, no discharge is performed, thereby improving the safety of the electronic atomizer.
- FIG. 6 is a schematic diagram of the flow structure of the fifth embodiment of the control method of the electronic atomization device of the present application. Examples include:
- S102 Controlling the timing device to time the connection time between the second circuit interface group and the first circuit interface group.
- the first circuit interface group includes a first signal interface, a first power interface and a second power interface
- the second circuit interface group includes a second signal interface, a third power interface 211 and a fourth power interface.
- the power supply device further comprises a timing device, and the timing device is used to detect the connection time between the second signal interface and the first signal interface.
- the power supply device controls the timing device to time the connection time between the second circuit interface group and the first circuit interface group.
- control chip may determine whether the second signal interface is connected to the first signal interface by measuring the resistance of the second signal interface, or may determine whether the second signal interface is connected to the first signal interface after receiving a specific signal.
- the control chip obtains detection information of the second circuit interface group.
- the detection information includes the connection time between the second signal interface and the first signal interface
- the control chip determines the connection stability between the atomizer and the power supply device based on the connection time between the second signal interface and the first signal interface.
- S127 Determine whether the connection time is greater than a preset time.
- the control chip compares the connection time between the second signal interface and the first signal interface with the preset time to determine whether the connection time is greater than the preset time.
- the preset time may be 3s, 4s, 5s, 6s, 7s, 8s, 9s, 10s or other time.
- connection time is greater than the preset time, it is determined that the atomizer needs to be charged.
- control chip determines that the connection time between the second signal interface and the first signal interface is greater than the preset time, it is determined that the atomizer needs to be charged.
- the control chip controls the third power interface, the fourth power interface and the first power interface, the second power interface, the second battery supplies power to the first battery through the first circuit interface group and the second circuit interface group, and the power supply device is in a state of charging the atomizer.
- control chip determines that the connection time between the second signal interface and the first signal interface is not greater than the preset time, it is determined that the atomizer is not charged.
- control chip After the control chip confirms that the second circuit interface is stably connected to the first circuit interface through the connection time between the second signal interface and the first signal interface, the control chip controls the second battery to charge the first battery, thereby allowing the power supply device to charge the atomizer.
- this embodiment determines the stability of the power supply device and the atomizer based on the connection time between the second signal interface of the power supply device and the first signal interface of the atomizer, thereby improving the connection safety of the power supply device and the atomizer.
- the present application provides an electronic atomization device and a control method thereof.
- the electronic atomization device has the advantages of being hot-swappable, easy to play, having replaceable accessories, and being able to be puffed while charging.
- the control method of the electronic atomization device includes a variety of embodiments, and different control methods can be freely combined.
- the power supply device detects the resistance value of the second signal interface to determine the connection stability between the power supply device and the atomizer.
- the connection stability can be detected by itself, and the connection security is high.
- a first feature being “above” or “below” a second feature may include that the first and second features are in direct contact, or may include that the first and second features are not in direct contact but are in contact through another feature between them.
- a first feature being “above”, “above” and “above” a second feature includes that the first feature is directly above and obliquely above the second feature, or simply indicates that the first feature is higher in level than the second feature.
- a first feature being “below”, “below” and “below” a second feature includes that the first feature is directly below and obliquely below the second feature, or simply indicates that the first feature is lower in level than the second feature.
Landscapes
- Charge And Discharge Circuits For Batteries Or The Like (AREA)
Abstract
L'invention concerne un appareil d'atomisation électronique et son procédé de commande. Cet appareil d'atomisation électronique comprend un atomiseur (100) et un appareil source d'alimentation (200), l'atomiseur (100) étant utilisé pour stocker une matrice d'atomisation et atomiser la matrice d'atomisation pour former un aérosol, et l'atomiseur (100) étant pourvu d'une première batterie (150) et d'un premier groupe d'interfaces de circuit (110) ; et l'appareil source d'alimentation (200) est relié de manière détachable à l'atomiseur (100), l'appareil source d'alimentation (200) est pourvu d'un second groupe d'interfaces de circuit (210) pour une connexion au premier groupe d'interfaces de circuit (110), ainsi que d'une seconde batterie (230), et l'appareil source d'alimentation (200) est conçu pour déterminer, sur la base d'informations de détection du second groupe d'interfaces de circuit (210), s'il faut charger l'atomiseur (100).
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
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| CN202310685043.7A CN116530747A (zh) | 2023-06-09 | 2023-06-09 | 电子雾化装置及其控制方法 |
| CN202310685043.7 | 2023-06-09 |
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| Application Number | Title | Priority Date | Filing Date |
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| PCT/CN2023/122112 Pending WO2024250499A1 (fr) | 2023-06-09 | 2023-09-27 | Appareil d'atomisation électronique et son procédé de commande |
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| WO (1) | WO2024250499A1 (fr) |
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| CN116530747A (zh) * | 2023-06-09 | 2023-08-04 | 爱奇迹(香港)有限公司 | 电子雾化装置及其控制方法 |
| CN118749714A (zh) * | 2023-10-16 | 2024-10-11 | 深圳市斯科尔科技股份有限公司 | 雾化设备及其电源管理方法和存储介质 |
| CN118680343A (zh) * | 2023-10-16 | 2024-09-24 | 深圳市斯科尔科技股份有限公司 | 雾化设备及其控制方法和存储介质 |
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| CN107404937A (zh) * | 2015-11-06 | 2017-11-28 | 惠州市吉瑞科技有限公司深圳分公司 | 一种电子烟烟油雾化控制方法 |
| PL3760061T3 (pl) * | 2018-02-27 | 2023-11-20 | Imperial Tobacco Limited | Aparat do palenia |
| CN210726690U (zh) * | 2019-07-26 | 2020-06-12 | 深圳市沁园春科技有限公司 | 电子烟 |
| CN112315032B (zh) * | 2020-10-28 | 2025-03-14 | 深圳麦克韦尔科技有限公司 | 一种电子雾化装置 |
| CN220875958U (zh) * | 2023-06-09 | 2024-05-03 | 爱奇迹(香港)有限公司 | 电子雾化装置 |
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- 2023-06-09 CN CN202310685043.7A patent/CN116530747A/zh active Pending
- 2023-09-27 WO PCT/CN2023/122112 patent/WO2024250499A1/fr active Pending
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| WO2015035623A1 (fr) * | 2013-09-13 | 2015-03-19 | 吉瑞高新科技股份有限公司 | Tige-batterie, cigarette électronique, et procédé d'identification d'atomiseur |
| CN106132222A (zh) * | 2014-04-30 | 2016-11-16 | 菲利普莫里斯生产公司 | 电加热气溶胶生成系统 |
| US20160227840A1 (en) * | 2014-07-01 | 2016-08-11 | Huizhou Kimree Technology Co., Ltd | Electronic cigarette and atomizing method thereof |
| CN107427083A (zh) * | 2015-04-02 | 2017-12-01 | 菲利普莫里斯生产公司 | 包含模块和电操作气溶胶生成系统的成套装置 |
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