WO2020174629A1 - Dispositif de commande de génération de composant d'arôme, dispositif de génération de composant d'arôme, procédé de commande et programme - Google Patents
Dispositif de commande de génération de composant d'arôme, dispositif de génération de composant d'arôme, procédé de commande et programme Download PDFInfo
- Publication number
- WO2020174629A1 WO2020174629A1 PCT/JP2019/007673 JP2019007673W WO2020174629A1 WO 2020174629 A1 WO2020174629 A1 WO 2020174629A1 JP 2019007673 W JP2019007673 W JP 2019007673W WO 2020174629 A1 WO2020174629 A1 WO 2020174629A1
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- WO
- WIPO (PCT)
- Prior art keywords
- flavor component
- control unit
- control device
- identification information
- component generation
- Prior art date
- Legal status (The legal status 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 status listed.)
- Ceased
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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
- A24F40/30—Devices using two or more structurally separated inhalable precursors, e.g. using two liquid precursors in two cartridges
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- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24F—SMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
- A24F40/00—Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
- A24F40/40—Constructional details, e.g. connection of cartridges and battery parts
- A24F40/42—Cartridges or containers for inhalable precursors
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- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24F—SMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
- A24F40/00—Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
- A24F40/40—Constructional details, e.g. connection of cartridges and battery parts
- A24F40/48—Fluid transfer means, e.g. pumps
-
- 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
- A24F40/53—Monitoring, e.g. fault detection
-
- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24F—SMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
- A24F40/00—Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
- A24F40/10—Devices using liquid inhalable precursors
-
- 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
- A24F40/51—Arrangement of sensors
Definitions
- the present invention relates to a flavor component generation control device, a flavor component generation device, a control method, and a program.
- Flavor component generation devices such as electronic cigarettes and nebulizers, that generate gas to which a flavor component that is inhaled by the user is added are widely used.
- the flavor component generation device for example, an aerosol source for generating an aerosol or a flavor source for imparting a flavor to the aerosol, such as an element that contributes to the production of a gas to which a flavor component is imparted is attached, and The contents accumulated in the element are consumed at each gas production.
- the user can taste the flavor with the gas by sucking the gas to which the flavor component is added, which is generated by these flavor component generating devices (hereinafter, also referred to as puff).
- the present invention has been made in view of the above problems, and an object of the present invention is to provide a mechanism capable of further improving the quality of the suction experience provided by the flavor component generation device. Especially.
- an element configured to contribute to the generation of a gas to which a flavor component is added becomes detachable.
- a flavor component generation control device for controlling a flavor component generation device having a mounting portion to be mounted, wherein, for each of the plurality of elements that have been mounted on the mounting portion, identification information of the element and a flavor component. And a parameter indicating the consumption amount of the content consumed in the generation of the added gas, and a control unit that controls the process of storing the parameter in a storage unit in association with each other, flavor component generation A controller is provided.
- control unit may control a process of notifying information indicating that the element has reached the replacement timing. ..
- control unit stops the supply of electric power to the gas generation unit that generates the gas to which the flavor component is added by the element. You may control the process to do.
- the control unit may control a process of canceling attachment of the element to the attachment unit when the parameter stored in association with the identification information of the element reaches a threshold value.
- the control unit may control a process of opening an electric circuit included in the element when the parameter stored in association with the identification information of the element reaches a threshold value.
- control unit may delete the identification information and the parameter stored for the element from the storage unit.
- the control unit deletes the identification information and the parameter stored for the element from the storage unit after a predetermined time has elapsed since the parameter stored in association with the identification information of the element reached a threshold value. May be.
- control unit associates the identification information of the element with information indicating that the element has been used, and the storage unit May be stored in.
- the control unit may set the threshold value based on the elapsed time from the time when the content of the element is first consumed.
- the control unit may set the threshold to a smaller value as the elapsed time is longer.
- the control unit may control the amount of decrease in the threshold value per unit time based on the history of the environment surrounding the element.
- the control unit may acquire the identification information of the element based on the reading result of the information code attached to the element.
- the control unit may acquire the identification information of the element based on a reading result of information stored in a storage medium attached to the element.
- the control unit may acquire the identification information of the element based on the detection result of the shape of the element.
- the control unit may acquire the identification information of the element based on the detection result of the component included in the element.
- the control unit may acquire the identification information of the element based on the detection result of the flavor component contained in the flavor source of the element.
- the element may include an aerosol source.
- the element may include a flavor source having a flavor component imparted to the gas.
- the parameter may be the cumulative number of times the content has been consumed.
- the parameter may be a cumulative consumption time of the contents.
- the parameter indicates the total amount of consumption of the contents consumed in the production of the gas to which the flavor component is added, in a state where the element is mounted on the flavor component generation device and another flavor component generation device. May be.
- the storage unit may be included in an external device connected to the flavor component generation control device via a network.
- the storage unit may be included in the element.
- a plurality of the elements can be mounted on the mounting section, and the control section is a gas in which a flavor component is added to a part of the elements selected from the plurality of the elements mounted on the mounting section. May contribute to the generation of
- a flavor component generation device comprising: a control unit that controls a process of storing a parameter indicating a consumption amount of a substance in association with each other in a storage unit.
- an element configured to contribute to the production of gas to which the flavor component is added
- an element configured to contribute to the production of gas to which the flavor component is added
- a computer that controls a flavor component generation device having a mounting portion that is detachably mounted is provided with identification information of the element and a flavor component for each of the plurality of elements that have been mounted in the mounting portion.
- a program is provided to function as a control unit that controls a process of associating a parameter indicating the consumption amount of the content consumed in the generation of the gas with the storage unit in association with each other.
- a mechanism capable of further improving the quality of the suction experience provided by the flavor component generation device.
- the proposed technique relates to a flavor component generation control device.
- the flavor component generation control device is a device that controls the generation of the gas to which the flavor component is added by the flavor component generation device.
- the flavor component generation device has a mounting portion to which an element configured to contribute to the generation of the gas to which the flavor component is added by consuming the accumulated contents is mounted, and is mounted to the mounting portion.
- the gas accumulated with the flavor component is generated by consuming the contents accumulated in the element.
- the flavor component generation control device for each of the plurality of elements that have been attached to the flavor component generation device, the identification information of the element and the consumption of the content consumed in the generation of the gas to which the flavor component is added.
- the process of storing the storage unit in association with the parameter indicating the amount is controlled. As a result, the consumption amount of the contents consumed in the generation of the gas to which the flavor component is added is managed for each element.
- the consumption amount of the content of the element after replacement is It is managed separately from the consumption of the contents of the element before replacement. Therefore, when the element is exchanged, it is possible to prevent the quality of the suction experience from being deteriorated such that the content of the element after the exchange remains but the exchange is promoted. Then, the replacement can be promoted at the timing when the content of the replaced element is completely consumed.
- FIG. 1 is a diagram showing a configuration example of a suction device 100 according to an embodiment of the present invention.
- the suction device 100 includes a first member 110 and a second member 120.
- the first member 110 may include a notification unit 111, a battery 112, a sensor 113, a storage unit 114, and a control unit 115.
- the second member 120 may include a reservoir 121, an atomizing unit 122, an air intake flow path 123, an aerosol flow path 124, and a suction port 125.
- Some of the components included in first member 110 may be included in second member 120.
- Some of the components included in second member 120 may be included in first member 110.
- the second member 120 may be configured to be attachable to and detachable from the first member 110. Alternatively, all the components included in the first member 110 and the second member 120 may be included in the same housing instead of the first member 110 and the second member 120.
- the suction device 100 includes a third member 130.
- the third member 130 may include a flavor source 131.
- the flavor source 131 may include the flavor and taste component contained in the cigarette.
- the third member 130 may be configured to be attachable to and detachable from the second member 120. Alternatively, all the components included in the second member 120 and the third member 130 may be included in the same housing instead of the second member 120 and the third member 130. Further, some of the constituent elements included in the first member 110 or the second member 120 may be included in the third member 130.
- the reservoir 121 holds an aerosol source.
- the reservoir 121 is made of a fibrous or porous material, and holds an aerosol source as a liquid in the spaces between the fibers or the pores of the porous material.
- the fibrous or porous material described above for example, cotton, glass fiber, or tobacco raw material can be used.
- the reservoir 121 may be configured as a tank that stores a liquid.
- the aerosol source is, for example, a polyhydric alcohol such as glycerin or propylene glycol, or a liquid such as water. If the inhalation device 100 is a medical inhaler, such as a nebulizer, the aerosol source may also include medication for inhalation by the patient.
- the aerosol source may include a tobacco raw material or an extract derived from a tobacco raw material that releases a flavor component by heating. In this case, even if the third member 130 is not attached, the aerosol containing the flavor component is generated.
- the reservoir 121 may have a configuration that can replenish the consumed aerosol source.
- the reservoir 121 may be configured such that the reservoir 121 itself can be replaced when the aerosol source is consumed.
- the aerosol source is not limited to the liquid and may be a solid. When the aerosol source is a solid, the reservoir 121 may be, for example, a hollow container that does not use a fibrous or porous material.
- the atomization unit 122 is configured to atomize an aerosol source to generate an aerosol.
- the atomizing unit 122 When the suction operation is detected by the sensor 113, the atomizing unit 122 generates an aerosol.
- a wick (not shown) may be provided to connect the reservoir 121 and the atomizing unit 122. In this case, a portion of the wick communicates with the interior of the reservoir 121 and contacts the aerosol source. Another part of the wick extends to the atomizing section 122.
- the aerosol source is carried from the reservoir 121 to the atomizer 122 by the capillary effect of the wick.
- the atomizing unit 122 includes a heater electrically connected to the battery 112. The heater is placed in contact with or in close proximity to the wick.
- the control unit 115 controls the heater of the atomizing unit 122 and heats the aerosol source carried through the wick to atomize the aerosol source.
- the atomizing unit 122 may be an ultrasonic atomizer that atomizes an aerosol source by ultrasonic vibration.
- An air intake passage 123 is connected to the atomizing unit 122, and the air intake passage 123 communicates with the outside of the suction device 100.
- the aerosol generated in the atomizing unit 122 is mixed with the air taken in via the air intake passage 123.
- the mixed fluid of aerosol and air is delivered to the aerosol flow path 124, as indicated by arrow 126.
- the aerosol flow path 124 has a tubular structure for transporting the mixed fluid of aerosol and air generated in the atomizing section 122 to the suction port 125.
- the flavor source 131 is a component for imparting flavor to the aerosol.
- the flavor source 131 is arranged in the middle of the aerosol flow path 124.
- a mixed fluid of the aerosol and air generated by the atomizing unit 122 (note that the mixed fluid may be simply referred to as an aerosol hereinafter) flows through the aerosol flow path 124 to the suction port 125.
- the flavor source 131 is provided downstream of the atomizing unit 122 with respect to the flow of the aerosol.
- the flavor source 131 is located closer to the suction port 125 in the aerosol flow path 124 than the atomization unit 122. Therefore, the aerosol generated by the atomizing unit 122 reaches the suction port 125 after passing through the flavor source 131.
- the flavor source 131 may be derived from tobacco, such as chopped tobacco, or a processed product obtained by shaping a tobacco raw material into a granular, sheet-shaped, or powder form.
- the flavor source 131 may also be non-tobacco derived from plants other than tobacco (eg, mint, herbs, etc.).
- the flavor source 131 includes a nicotine component.
- the flavor source 131 may contain a flavor component such as menthol.
- the reservoir 121 may also have a substance containing a flavor component.
- the suction device 100 may be configured such that the flavor source 131 holds a flavor substance derived from tobacco and the reservoir 121 contains a flavor substance derived from a non-tobacco.
- the suction port 125 is located at the end of the aerosol flow path 124 and is configured to open the aerosol flow path 124 to the outside of the suction device 100. As shown, the aerosol channel 124 extends across the second member 120 and the third member 130. The mouthpiece portion 125 is provided in the third member 130.
- the user can take the air containing the flavored aerosol into the oral cavity by holding the mouthpiece 125 and sucking.
- the notification unit 111 may include a light emitting element such as an LED (Light Emitting Diode), a display, a speaker, and a vibrator.
- the notification unit 111 is configured to notify the user by light emission, display, utterance, vibration, or the like as necessary.
- the notification unit 111 may include a communication device, may transmit information to another device such as a smartphone and notify the user of the information via the other device.
- the battery 112 is a power source that stores electric power and supplies the electric power to each component of the suction device 100 such as the notification unit 111, the sensor 113, the storage unit 114, and the atomization unit 122.
- the battery 112 may be rechargeable by connecting to an external power source via a predetermined port (not shown) of the suction device 100. Only the battery 112 may be removable from the first member 110 or the suction device 100, or may be replaced with a new battery 112. It may also be possible to replace the battery 112 with a new battery 112 by replacing the entire first member 110 with a new first member 110.
- the sensor 113 may include a pressure sensor that detects fluctuations in pressure in the air intake flow path 123 and/or the aerosol flow path 124 or a flow rate sensor that detects a flow rate.
- the sensor 113 may also include a weight sensor that detects the weight of components such as the reservoir 121.
- the sensor 113 may also be configured to count the number of puffs by a user using the suction device 100.
- the sensor 113 may also be configured to integrate the energization time to the atomizing unit 122.
- Sensor 113 may also be configured to detect the height of the liquid level in reservoir 121.
- the sensor 113 may also be configured to detect attachment/detachment of the second member 120 to/from the first member 110 or attachment/detachment of the third member 130 to/from the second member 120.
- the sensor 113 may also be configured to detect the SOC (State of Charge, state of charge), integrated current value, voltage, etc. of the battery 112.
- the integrated current value may be obtained by a current integration method, an SOC-OCV (Open Circuit Voltage, open circuit voltage) method, or the like.
- the sensor 113 may also be an operation button or the like that can be operated by the user.
- the control unit 115 may be an electronic circuit module configured as a microprocessor or a microcomputer.
- the control unit 115 may be configured to control the operation of the suction device 100 according to computer-executable instructions stored in the storage unit 114.
- the storage unit 114 is a storage medium such as a ROM (Read Only Memory), a RAM (Random Access Memory), and a flash memory.
- the storage unit 114 may store setting data and the like necessary for controlling the suction device 100.
- the storage unit 114 may store various data such as a control method of the notification unit 111 (a mode such as light emission, utterance, vibration, etc.), a value detected by the sensor 113, a heating history of the atomizing unit 122, and the like. Good.
- the control unit 115 reads data from the storage unit 114 as needed and uses it for controlling the suction device 100, and stores the data in the storage unit 114 as needed.
- the first member 110 is also referred to as a power supply unit 110
- the second member 120 is also referred to as a cartridge 120
- the third member 130 is also referred to as a capsule 130.
- FIG. 2 is a diagram showing an example of an external configuration of the suction device 100 according to the present embodiment.
- each of the power supply unit 110, the cartridge 120, and the capsule 130 has a cylindrical shape.
- the power supply unit 110 has a male connector 116 at one end.
- the male connector 116 has a spiral protrusion extending along the circumferential direction.
- the cartridge 120 has a female connector 127 at one end.
- the female connector 127 has a spiral groove extending along the circumferential direction.
- the cartridge 120 and the power supply unit 110 are connected by screwing the male connector 116 and the female connector 127 together. That is, the cartridge 120 is detachably attached to the power supply unit 110.
- the cartridge 120 has an accommodating portion 128 that forms a cylindrical space at the end opposite to the end having the female connector 127.
- the capsule 130 includes a suction portion 132 having the same or substantially the same diameter as the power supply unit 110 and the cartridge 120, and an insertion portion 133 having a smaller diameter than the suction portion 132.
- the insertion portion 133 is inserted and fitted into the accommodation portion 128. That is, the capsule 130 is detachably attached to the cartridge 120.
- the user loads the cartridge 120 on the power supply unit 110, and while holding the capsule 130 on the cartridge 120, holds the suction portion 132 and sucks the air, thereby taking in air containing the flavored aerosol into the oral cavity. be able to.
- the flavor component generation device is configured such that the element that contributes to the generation of the gas to which the flavor component is added by consuming the accumulated contents is detachably attached. Have. Then, the flavor component generation device generates the gas to which the flavor component is added according to the control by the flavor component generation control device.
- the capsule 130 may correspond to the element.
- the power supply unit 110 corresponds to the flavor component generation control device
- the cartridge 120 corresponds to the flavor component generation device.
- the flavor component contained in the flavor source 131 corresponds to the content
- the housing portion 128 corresponds to the mounting portion
- the aerosol corresponds to gas.
- the flavor component generation device may include a flavor component generation control device, and in that case, the power supply unit 110 and the cartridge 120 correspond to the flavor component generation device.
- the power supply unit 110 and the cartridge 120 are collectively referred to as a suction device 100, and the capsule 130 is detachably attached to the suction device 100.
- the control unit 115 authenticates the element attached to the suction device 100. Specifically, the control unit 115 authenticates the capsule 130 attached to the cartridge 120. Authentication here refers to obtaining identification information for identifying the attached element. An example of the element authentication method will be described below with reference to FIGS. 3 to 5. 3 to 5 are diagrams for explaining an example of the element authentication method according to the present embodiment.
- the control unit 115 may acquire the identification information of the element based on the reading result of the information code attached to the element.
- FIG. 3 shows the capsule 130A with the information code 134 attached to the outer wall of the insertion portion 133.
- the information code 134 stores identification information unique to the capsule 130A.
- the information code 134 may be a bar code or the like other than the two-dimensional code shown in FIG.
- an image sensor for reading the information code 134 is provided on the inner wall of the housing portion 128 of the cartridge 120, and the information code 134 of the capsule 130A attached to the housing portion 128 is read. Then, the control unit 115 acquires the identification information of the capsule 130A based on the reading result of the information code 134.
- the control unit 115 may acquire the identification information of the element based on the reading result of the information stored in the storage medium attached to the element.
- FIG. 4 shows the capsule 130B in which the storage medium 135 is attached to the outer wall of the insertion portion 133.
- the storage medium 135 is, for example, an RF tag in RFID (Radio Frequency Identifier) technology, and is capable of reading and writing information using near field communication (for example, NFC (Near Field Communication)).
- the power supply unit 110 or the cartridge 120 is provided with a wireless communication device, and the wireless communication device receives the identification information from the storage medium 135 of the capsule 130 ⁇ /b>B mounted in the housing portion 128. Then, the control unit 115 acquires the identification information of the capsule 130B based on the reception result from the storage medium 135.
- the capsule 130 is uniquely identified. That is, according to the identification information described above, the capsule 130 can be uniquely identified.
- the capsule 130 may be replaced with a capsule 130 having another type of flavor before the end of its life in order to taste a different type of flavor.
- replacement with the capsule 130 having the same flavor is unlikely to occur. Therefore, even if the capsule 130 is not uniquely identified, it is sufficient if the flavor type of the capsule 130 (hereinafter, also referred to as the type of the capsule 130) is identified and the consumption amount of the content is managed for each flavor type. It can be said that there is.
- the type of the capsule 130 a method of identifying the capsule 130 according to the type of flavor will be described. That is, according to the identification information described below, it is possible to identify the type of flavor that the capsule 130 has.
- the control unit 115 may acquire the identification information of the capsule 130 based on the detection result of the shape of the capsule 130.
- FIG. 5 shows capsules 130C and 130D in which the shape of the insertion portion 133 is different for each flavor type.
- the insertion portion 133 of the capsule 130C has a cylindrical shape
- the insertion portion 133 of the capsule 130D has a shape including a cylindrical shape and a truncated cone whose diameter decreases toward the end.
- the shape of the capsule 130 is determined by, for example, the pressure applied to the inner wall of the housing portion 128 or the inner wall of the housing portion 128 and the outer wall of the insertion portion 133, which is detected by a pressure sensor (for example, a microphone condenser) provided in the housing portion 128.
- a pressure sensor for example, a microphone condenser
- the control unit 115 acquires the identification information of the capsule 130 based on the detection result of the shape of the capsule 130.
- the shape of the capsule 130 may be detected by the sensor 113 (for example, a microphone capacitor) included in the power supply unit 110.
- the power supply unit 110 and the cartridge 120 are provided with a space that allows the sensor 113 and the housing portion 128 to communicate with each other, and the shape of the capsule 130 can be detected based on the atmospheric pressure of the space.
- the control unit 115 may acquire the identification information of the capsule 130 based on the detection result of the component contained in the capsule 130.
- the components contained in the capsule 130 are detected by, for example, a chemical sensor that is provided in the container 128 and can detect a chemical substance. Then, the control unit 115 acquires the identification information of the capsule 130 based on the detection result of the chemical substance.
- the chemical substance may be a flavor component
- the chemical sensor may be an odor sensor
- the control unit 115 may identify the capsule 130 based on the detection result of the flavor component included in the flavor source 131 of the capsule 130. May be obtained.
- the flavor component (that is, odor) contained in the flavor source 131 differs depending on the type of the capsule 130.
- the flavor component contained in the flavor source 131 is detected by, for example, an odor sensor provided in the container 128.
- the chemical substance detected by the chemical sensor is not limited to the flavor component, and may be a substance without flavor.
- the component included in the capsule 130 eg, the flavor component included in the flavor source 131) may be detected by the sensor 113 (eg, a chemical sensor or an odor sensor) included in the power supply unit 110.
- the power supply unit 110 and the cartridge 120 are provided with a space that communicates the sensor 113 and the housing portion 128, and a component contained in the capsule 130 can be detected based on a chemical substance detected from the space.
- the authentication method of the capsule 130 is not limited to the example described above, and any authentication method may be adopted. Also, a plurality of authentication methods may be used in combination.
- the control unit 115 for each of the plurality of elements that have been mounted on the mounting unit, the identification information of the element and the content consumed in the generation of the gas to which the flavor component is added. And a parameter indicating the consumption amount (hereinafter, also referred to as a consumption amount parameter) are stored in the storage unit in association with each other. For example, when the capsule 130 is attached to the suction device 100, the control unit 115 acquires the identification information of the attached capsule 130, and then refers to the acquired identification information to the storage unit to consume the capsule 130. Get the quantity parameter.
- the consumption parameter indicates the amount of the content of the capsule 130 that has already been consumed.
- the control unit 115 adds the consumption parameter indicating the consumption amount of the content consumed in the puff operation to the acquired consumption parameter, and the consumption parameter after the addition. Is stored in the storage unit. In this way, the control unit 115 updates the consumption amount parameter stored in the storage unit every time the puff operation is performed.
- the consumption parameter may be the cumulative number of times of consumption of the contents accumulated in the element.
- the consumption parameter may be the cumulative number of suctions (puffs) by the user.
- the consumption parameter indicates the total consumption of the contents consumed in the production of the gas to which the flavor component is added, in a state where the element is attached to the flavor component generation device and the other flavor component generation device.
- Good it is assumed that the capsule 130 is attached to a certain suction device 100, the puff operation is performed, and then removed, and then the capsule 130 is attached to a different suction device 100 and the suction operation is performed.
- the storage unit stores the total of the consumption parameter related to the suction operation performed while the capsule 130 is attached to each suction device 100. Thereby, for example, even when the puff operation is performed while exchanging the capsule 130 between friends, the consumption of the content performed across the plurality of suction devices 100 is traced and the consumption parameter is updated. It becomes possible to do.
- the storage medium is attached to the element, the consumption parameter is stored in the storage medium, and the consumption parameter stored in the storage medium is stored every time the puff operation is performed. It is desirable to be updated. As a result, even if the consumption parameter related to the suction operation performed while being attached to a certain suction device 100 is not shared with another suction device 100 by communication or the like, it is performed across a plurality of suction devices 100. It becomes possible to easily trace the consumption of the contents that are described.
- Table 1 An example of the table stored in the storage unit is shown in Table 1 below.
- the cumulative puff count is stored for each capsule 130.
- the storage unit may be built in the power supply unit 110. That is, the storage unit 114 may store the consumption amount parameter.
- the storage unit may be included in an external device connected to the suction device 100 via a network.
- the storage unit is included in a server on the cloud.
- the suction device 100 communicates with the server on the cloud to update the consumption parameter. From the viewpoint of reducing the communication amount, the communication may be performed every time the puff operation is performed a predetermined number of times.
- the storage unit may be configured as a storage medium that can be inserted into and removed from the power supply unit 110.
- a storage medium such as a flash memory such as a card type memory can be mentioned.
- carrying a spare power supply unit 110 can be considered. Even when the power supply unit 110 is replaced due to battery exhaustion, by inserting a removable storage medium into the replaced power supply unit 110, it is possible to continuously manage consumption parameters before and after replacement. Becomes
- the storage unit may be included in the element.
- the storage medium 135 may be attached to the element, and the consumption parameter may be stored in the storage medium. In this case, as described above, it becomes possible to easily trace the consumption of the contents performed across the plurality of suction devices 100.
- the control unit 115 controls the process according to the consumption parameter of the capsule 130 attached to the suction device 100. Specifically, the control unit 115 determines whether or not the consumption parameter stored in the storage unit in association with the identification information of the capsule 130 attached to the suction device 100 reaches the threshold value, and the process according to the determination result. To control.
- the threshold value here is a value that indicates that the content accumulated in the element can be depleted if it is above that value. For example, if the cumulative puff count is less than the life determination threshold, it is determined that the life has not been reached, and if the cumulative puff count is greater than or equal to the life determination threshold, it is determined that the life has been reached. That is, the threshold is the cumulative number of puffs required to use up the contents accumulated in the element.
- the threshold may be set according to the identification information of the element. Hereinafter, such a threshold is also referred to as a life determination threshold.
- determining whether or not the consumption parameter has reached the lifetime determination threshold is also referred to as lifetime determination.
- the control unit 115 When the consumption parameter does not reach the life judgment threshold (for example, the consumption parameter is less than the life judgment threshold), the control unit 115 generates the aerosol. And the consumption parameter is updated according to the generation of the aerosol. For example, the control unit 115 supplies electric power to the atomizing unit 122 (corresponding to a gas generating unit), causes the atomizing unit 122 to generate aerosol, and increments (+1) the cumulative puff count.
- the control unit 115 supplies electric power to the atomizing unit 122 (corresponding to a gas generating unit), causes the atomizing unit 122 to generate aerosol, and increments (+1) the cumulative puff count.
- the control unit 115 causes the aerosol Do not generate.
- the control unit 115 stops the supply of electric power to the atomization unit 122.
- the flavor component is not added even if aerosol is generated.
- by stopping the supply of electric power to the atomizing unit 122 it is possible to prevent the aerosol to which the flavor component is not added from being sucked by the user, and prevent wasteful consumption of the aerosol source, which is wasteful. It becomes possible to prevent power consumption.
- the control unit 115 may control the process of notifying the information that the capsule 130 has reached the replacement timing.
- the control unit 115 controls the notification unit 111 to cause the LED to emit light in a predetermined light emission pattern, display a predetermined image on the display, or vibrate the vibration element.
- the control unit 115 may notify the user of such information via another device by transmitting information indicating that the capsule 130 has reached the replacement timing to another device such as a smartphone. Such a notification can prompt the user to replace the capsule 130 at an appropriate timing.
- FIG. 6 is a diagram for explaining an example of a process for canceling the mounting of the capsule 130 in the housing portion 128 according to the present embodiment.
- the insertion portion 133 of the capsule 130 is inserted into the accommodation portion 128.
- a state in which the suction port portion 132 contacts the edge portion 128A of the housing portion 128 is also referred to as a mounted state.
- the state in which the suction port portion 132 is separated from the edge portion 128A of the accommodation portion 128 is also referred to as a non-attached state.
- the bottom portion 128B of the housing portion 128 slides in the direction of the internal space of the housing portion 128, and accordingly the capsule 130 holds the housing portion 128. Is extruded from. In this way, the mounting of the capsule 130 in the housing portion 128 is canceled.
- the sliding of the bottom portion 128B of the accommodating portion 128 is realized, for example, by the elastic member provided on the back side of the bottom portion 128B exerting an elastic force in the direction of the internal space of the accommodating portion 128. With such a configuration, the capsule 130 can be forcibly replaced.
- the control unit 115 stores the identification information and the consumption parameter stored for the capsule 130 in question in the storage unit. May be deleted from. As a result, it becomes possible to secure a free space in the storage unit.
- the control unit 115 may delete the identification information and the consumption amount parameter stored for the capsule 130 from the storage unit after a lapse of a predetermined time after the consumption amount parameter reaches the life determination threshold value.
- the predetermined time is set to a sufficient time, for example, about one week, as the time it takes for the user to use up the capsule 130 and then to discard it.
- the control unit 115 may store the identification information of the capsule 130 and the information indicating that it has been used in the storage unit in association with each other. Then, when the identification information of the capsule 130 attached to the suction device 100 is stored in the storage unit in association with the information indicating that it has been used, the control unit 115 determines that the consumption parameter described above is The first process is executed when the life judgment threshold value is reached. As a result, even when the user accidentally attaches the used capsule 130 to the suction device 100, it is possible to execute the above-described first process when the consumption parameter reaches the life determination threshold value. Further, since the capsule 130 that has been used once becomes unusable, it is possible to prevent illegal use such as illegally replacing and reusing the contents of the capsule 130 (that is, the flavor source 131).
- the control unit 115 may control the process of notifying the information based on the consumption parameter stored in the storage unit in association with the identification information of the capsule 130 attached to the suction device 100.
- the control unit 115 controls the notification unit 111 to notify the user of information based on the consumption amount parameter.
- the information based on the consumption parameter include the consumption parameter itself or information indicating the remaining amount of the content calculated from the consumption parameter.
- the former is the cumulative number of puffs (that is, the number of puffs so far), and the latter is the number of remaining puffs until the life judgment threshold value is reached. Accordingly, the user can perform the puff operation while checking the usage status of the capsule 130 at any time.
- FIG. 7 is a flowchart showing an example of the flow of aerosol generation processing executed in the suction device 100 according to this embodiment.
- the control unit 115 first acquires the identification information of the capsule 130 attached to the suction device 100 (step S102). Next, the control unit 115 acquires the consumption amount parameter stored in the storage unit in association with the identification information of the capsule 130 attached to the suction device 100 (step S104). The control unit 115 waits for the process while the puff operation is not performed (step S106/NO). On the other hand, when the puff operation is performed (step S106/YES), the control unit 115 determines whether the consumption parameter has reached the life determination threshold value (step S108). When it is determined that the consumption parameter has reached the lifetime determination threshold value (step S108/YES), the control unit 115 does not generate aerosol (step S110).
- control unit 115 when it is determined that the consumption parameter has not reached the life determination threshold value (step S108/NO), the control unit 115 generates an aerosol (step S112). Then, the control unit 115 updates the information by incrementing the consumption parameter stored in the storage unit (step S114).
- the capsule 130 corresponds to the element, but the present invention is not limited to this example.
- the cartridge 120 may correspond to the element.
- the control unit 115 corresponds to the flavor component generation control device
- the other configuration of the power supply unit 110 corresponds to the flavor component generation device.
- the aerosol source included in the reservoir 121 corresponds to the contents
- the male connector 116 corresponds to the mounting portion
- the aerosol corresponds to gas.
- the flavor component generation device may include a flavor component generation control device, and in that case, the power supply unit 110 corresponds to the flavor component generation device.
- the control unit 115 authenticates the cartridge 120 by the same method as the above-described authentication method for the capsule 130. For example, the control unit 115 may acquire the identification information of the cartridge 120 based on the reading result of the information code attached to the cartridge 120. Further, the control unit 115 may acquire the identification information of the cartridge 120 based on the reading result of the information stored in the storage medium attached to the cartridge 120. The information code and the storage medium may be provided in the female connector 127 of the cartridge 120, for example.
- the authentication method of the cartridge 120 is not limited to the example described above, and any authentication method may be adopted.
- the control unit 115 manages the consumption parameter of the cartridge 120 by the same method as the management method of the consumption parameter described for the capsule 130. For example, the control unit 115 displays, for each of the plurality of cartridges 120 that have been mounted in the mounting unit, the identification information of the cartridge 120 and the consumption amount of the content consumed in the generation of the gas to which the flavor component is added. A process of storing the consumption parameter shown in the storage unit in association with the consumption parameter is controlled.
- Table 2 An example of the table stored in the storage unit in this modification is shown in Table 2 below.
- the cumulative puff count is stored for each cartridge 120 and each capsule 130.
- the control unit 115 controls processing according to the consumption parameter of the cartridge 120 mounted in the power supply unit 110. Specifically, the control unit 115 determines whether or not the consumption parameter stored in the storage unit in association with the identification information of the cartridge 120 attached to the power supply unit 110 reaches the life determination threshold value, and depending on the determination result. Control processing. The details of the processing according to the determination result are as described above.
- the control unit 115 sets the life judgment threshold value based on the elapsed time from the time when the content of the element is first consumed.
- the time when the content of the element is first consumed is, for example, the time when the puff operation is first performed while the capsule 130 is attached to the suction device 100.
- the control unit 115 sets the life determination threshold to a smaller value as the elapsed time is longer.
- the cartridge 120 and the capsule 130 may deteriorate over time as the elapsed time from the first use increases. Then, as the deterioration over time progresses, the number of times the aerosol can be generated and the number of times the flavor component can be applied to the aerosol can decrease. In this respect, by setting the life judgment threshold to a smaller value as the elapsed time becomes longer, it becomes possible to judge the life with a smaller number of cumulative puffs as the element deteriorates over time.
- the control unit 115 In order to add the aging deterioration to the life determination, the control unit 115, for each of the plurality of elements that have been mounted in the mounting unit, element identification information, information regarding the elapsed time from the first use, and the life.
- the determination threshold value and the determination threshold value are stored in the storage unit in association with each other.
- the information about the elapsed time from the first use may be information indicating the elapsed time itself or information indicating the date and time at the first use.
- the life determination threshold value an initial value is initially stored, and thereafter the value is updated to a smaller value as the elapsed time from the first use becomes longer.
- the control unit 115 reads the life judgment threshold value stored in the storage unit and uses it for life judgment, or updates the life judgment threshold value according to the elapsed time from the first use.
- Table 3 An example of the table stored in the storage unit in this modification is shown in Table 3 below.
- the cumulative puff count, the number of days elapsed from the first use, and the life judgment threshold are stored for each cartridge 120 and each capsule 130.
- the lifetime judgment threshold value of the capsule C which has been used for 30 days or more since the first use, is updated from the initial value of 50 to 45.
- the life determination threshold value is updated from the initial value of 250 to 240.
- the control unit 115 may set the life judgment threshold value based on the history of the environment surrounding factors such as humidity, temperature, atmospheric pressure, and weather. For example, the control unit 115 may set a life determination threshold value that takes into account the speed of progress of aging deterioration, which may be different for each environment, based on the history of the environment surrounding the element. Specifically, the control unit 115 may control the amount of decrease in the life determination threshold value per unit time based on the history of the environment surrounding the element. For example, the control unit 115 increases the reduction range of the life determination threshold value per unit time when the element is placed in a hot and humid environment, and the life per unit time when the element is placed in a low temperature dry environment. Decrease the reduction range of the judgment threshold.
- control unit 115 increases the range of decrease in the life determination threshold value per unit time when placed in a low-pressure environment such as a mountain.
- control unit 115 increases the decrease range of the life determination threshold value of the capsule 130 per unit time in an environment in which the flavor component leaks even if the wind is strong and the user does not inhale.
- the information detected by the sensor 113 while the element is attached to the suction device 100 is stored in the storage unit 114 in association with the identification information of the element.
- the consumption parameter is described as the cumulative number of times of consumption of the content accumulated in the element, but the present invention is not limited to this example.
- the consumption parameter may be a cumulative consumption time of the contents accumulated in the element. More simply, the life of the element may be determined not only by the number of times the content is consumed, but also by the consumption time of the content (corresponding to the suction time by the user).
- the control unit 115 may determine that the capsule 130 has reached the end of life when the total energization time has reached 100 seconds, and may determine that the cartridge 120 has reached the end of life when it has reached 500 seconds.
- the cartridge 120 may include a fuse in the electric circuit to which the atomizing unit 122 is connected.
- the fuse blows when a current of a predetermined value or more flows. In that case, the electric circuit to which the atomizing unit 122 is connected is opened, and it becomes impossible to supply power to the atomizing unit 122.
- the control unit 115 may make the cartridge 120 permanently unusable by controlling the process of blowing a large current to blow the fuse. As a result, it is possible to prevent illegal use such as illegally replacing and reusing the contents of the used cartridge 120 (that is, the aerosol source).
- a plurality of capsules 130 may be attachable to the housing portion 128.
- the control unit 115 generates a gas in which the flavor component to be sucked by the user is added to a selected part (one or more) of the plurality of capsules 130 mounted on the suction device 100.
- the selection of the capsule 130 may be performed by the user or the control unit 115.
- the control unit 115 allows the aerosol generated by the cartridge 120 to pass through only some of the capsules 130 selected by the user among the plurality of capsules 130 mounted on the suction device 100.
- the suction device 100 may impart the flavor component to the aerosol.
- an independent aerosol channel 124 having the number of attachable capsules 130 and an opening/closing valve capable of opening/closing each aerosol channel 124 are provided in the cartridge 120, and the opening/closing valve is opened and closed. Control may be realized.
- the opening/closing of the on-off valve may be performed by the user. In this case, the user can easily enjoy a plurality of types of flavors without replacing the capsule 130.
- the process according to the consumption parameter is executed and the consumption parameter is updated only for some of the capsules 130 in which the flavor component is added to the aerosol.
- the element configured to contribute to the generation of the gas to which the flavor component is added by consuming the accumulated contents is detachably attached.
- a flavor component generation control device for controlling a flavor component generation device having a portion.
- the flavor component generation control device for each of the plurality of capsules 130 that have been mounted in the mounting portion, the identification information and the contents consumed in the generation of the gas to which the flavor component is added. And a parameter indicating the consumption amount of the.
- the consumption amount of the contents consumed in the generation of the gas to which the flavor component is added is managed for each element.
- the element is the capsule 130. Even if the capsule 130 once mounted is replaced with another capsule 130 before it is used up, the consumption parameter of the capsule 130 after replacement is managed separately from the consumption parameter of the capsule 130 before replacement. It Therefore, it is possible to prevent deterioration of the quality of the suction experience, such as prompting the replacement even though the contents remain in the capsule 130 after the replacement. Then, the replacement of the capsule 130 can be prompted at the timing when the content of the capsule 130 after the replacement is completely consumed. The same is true when the element is the cartridge 120.
- the consumption parameter used for life determination has been described as a parameter that directly indicates the consumption amount, but the present invention is not limited to such an example.
- the consumption amount parameter may be a parameter indirectly indicating the consumption amount, and specifically, may be a parameter indicating the remaining amount of the content accumulated in the element.
- the parameter indicating the remaining amount of the content accumulated in the element includes, for example, the number of remaining puffs until the end of the life, or the remaining energization time until the end of the life.
- the life determination threshold value in this case is a value indicating that the content accumulated in the element can be depleted if the value is equal to or less than that value, and is 0, for example.
- the life determination threshold For example, if the remaining puff count exceeds the life determination threshold, it is determined that the life has not been reached, and if the remaining puff count is less than or equal to the life determination threshold, it is determined that the life has been reached.
- the initial value of the remaining amount can be set based on the element identification information. Further, the life determination threshold value may be gradually updated to a large value according to deterioration over time.
- the gas generated by the flavor component generation device and to which the flavor component is added is an aerosol
- the present invention is not limited to this example.
- the gas generated by the flavor component generating device and to which the flavor component is added may be invisible vapor.
- the suction device 100 described in the present specification may be realized as a single device, or part or all may be realized as separate devices.
- the function of the control unit 115 may be installed in an information processing device such as a smartphone or a server connected to the suction device 100 via a network or the like. Good.
- the suction device 100 transmits various information such as a reading result of the information code attached to the element and a detection result of the puff operation to the information processing device.
- the information processing device authenticates the element based on the received information, updates the consumption parameter according to the puff operation, and further determines whether the consumption parameter has reached the life determination threshold value.
- the information processing device provides control information (for example, an instruction to execute the first process when the consumption parameter reaches the life determination threshold) depending on whether the consumption parameter reaches the life determination threshold.
- control information for example, an instruction to execute the first process when the consumption parameter reaches the life determination threshold
- the generated control information is transmitted to the suction device 100.
- the suction device 100 executes the process instructed in the control information received from the information processing device.
- each device described in this specification may be realized using any of software, hardware, and a combination of software and hardware.
- the programs forming the software are stored in advance in a storage medium (non-transitory media) provided inside or outside each device, for example. Then, each program is read into the RAM when it is executed by a computer, and executed by a processor such as a CPU.
- the storage medium is, for example, a magnetic disk, an optical disk, a magneto-optical disk, a flash memory, or the like.
- the above computer program may be distributed, for example, via a network without using a storage medium.
- Suction Device 110 First Member, Power Supply Unit 111 Notification Unit 112 Battery 113 Sensor 114 Storage Unit 115 Control Unit 116 Male Connector 120 Cartridge 120 Second Member 121 Reservoir 122 Atomization Unit 123 Air Intake Flow Path 124 Aerosol Flow Path 125 mouthpiece 127 female connector 128 housing 128A edge 128B bottom 130 third member, capsule 131 flavor source 132 mouthpiece 133 insert 134 information code 135 storage medium
Landscapes
- Disinfection, Sterilisation Or Deodorisation Of Air (AREA)
Abstract
L'invention a pour but de fournir un mécanisme qui permet d'améliorer davantage la qualité de l'expérience d'inhalation fournie par un dispositif de génération de composant d'arôme. La solution selon l'invention porte sur un dispositif de commande de génération de composant d'arôme destiné à commander un dispositif de génération de composant d'arôme comprenant une section de fixation sur laquelle est fixé de façon détachable un élément conçu de façon à consommer des contenus stockés et contribuer ainsi à la génération d'un gaz auquel un composant d'arôme est ajouté, ledit dispositif de commande de génération de composant d'arôme étant caractérisé en ce qu'il comprend une unité de commande qui commande le traitement dans lequel, pour chaque élément d'une pluralité d'éléments qui ont été fixés à la section de fixation dans le passé, des informations d'identification de l'élément sont associées à un paramètre indiquant la quantité de consommation des contenus consommés lors de la génération du gaz auquel le composant d'arôme est ajouté, et le résultat est stocké dans une unité de stockage.
Priority Applications (5)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| PCT/JP2019/007673 WO2020174629A1 (fr) | 2019-02-27 | 2019-02-27 | Dispositif de commande de génération de composant d'arôme, dispositif de génération de composant d'arôme, procédé de commande et programme |
| JP2021501471A JP7158557B2 (ja) | 2019-02-27 | 2019-02-27 | 香味成分生成制御装置、香味成分生成装置、制御方法及びプログラム |
| EP19916857.6A EP3932228A4 (fr) | 2019-02-27 | 2019-02-27 | Dispositif de commande de génération de composant d'arôme, dispositif de génération de composant d'arôme, procédé de commande et programme |
| TW108118402A TW202031146A (zh) | 2019-02-27 | 2019-05-28 | 香味成分生成控制裝置、香味成分生成裝置、控制方法及程式 |
| US17/396,196 US20210360976A1 (en) | 2019-02-27 | 2021-08-06 | Flavor component generation control device, flavor component generation device, control method, and program |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| PCT/JP2019/007673 WO2020174629A1 (fr) | 2019-02-27 | 2019-02-27 | Dispositif de commande de génération de composant d'arôme, dispositif de génération de composant d'arôme, procédé de commande et programme |
Related Child Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US17/396,196 Continuation US20210360976A1 (en) | 2019-02-27 | 2021-08-06 | Flavor component generation control device, flavor component generation device, control method, and program |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2020174629A1 true WO2020174629A1 (fr) | 2020-09-03 |
Family
ID=72239565
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/JP2019/007673 Ceased WO2020174629A1 (fr) | 2019-02-27 | 2019-02-27 | Dispositif de commande de génération de composant d'arôme, dispositif de génération de composant d'arôme, procédé de commande et programme |
Country Status (5)
| Country | Link |
|---|---|
| US (1) | US20210360976A1 (fr) |
| EP (1) | EP3932228A4 (fr) |
| JP (1) | JP7158557B2 (fr) |
| TW (1) | TW202031146A (fr) |
| WO (1) | WO2020174629A1 (fr) |
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| CN112137182A (zh) * | 2020-09-25 | 2020-12-29 | 深圳麦克韦尔科技有限公司 | 电池杆、雾化器、电子雾化装置及其使用方法 |
| CN113243573A (zh) * | 2021-04-30 | 2021-08-13 | 惠州市新泓威科技有限公司 | 防止重复注液使用的电子雾化设备及其控制方法 |
| JPWO2022130448A1 (fr) * | 2020-12-14 | 2022-06-23 | ||
| WO2022269280A1 (fr) * | 2021-06-25 | 2022-12-29 | Nicoventures Trading Limited | Système de fourniture d'aérosol |
| JP2023515830A (ja) * | 2021-02-08 | 2023-04-14 | ケーティー アンド ジー コーポレイション | エアロゾル生成装置 |
| JP2023544346A (ja) * | 2020-10-02 | 2023-10-23 | ニコベンチャーズ トレーディング リミテッド | 非燃焼型エアロゾル供給システムのためのコントローラ、非燃焼型エアロゾル供給システムのための装置、並びに非燃焼型エアロゾル供給デバイス及び非燃焼型エアロゾル供給システム |
| JP2024524918A (ja) * | 2021-06-25 | 2024-07-09 | ニコベンチャーズ トレーディング リミテッド | エアロゾル供給システム |
| WO2025004180A1 (fr) * | 2023-06-27 | 2025-01-02 | 日本たばこ産業株式会社 | Système de génération d'aérosol, procédé de traitement d'informations et programme |
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| Publication number | Priority date | Publication date | Assignee | Title |
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| WO2024094558A1 (fr) * | 2022-10-31 | 2024-05-10 | Jt International Sa | Dispositif de génération d'aérosol, article de génération d'aérosol, système et procédé de génération d'aérosol |
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| CN112137182A (zh) * | 2020-09-25 | 2020-12-29 | 深圳麦克韦尔科技有限公司 | 电池杆、雾化器、电子雾化装置及其使用方法 |
| CN112137182B (zh) * | 2020-09-25 | 2024-06-28 | 深圳麦克韦尔科技有限公司 | 电池杆、雾化器、电子雾化装置及其使用方法 |
| JP2023544346A (ja) * | 2020-10-02 | 2023-10-23 | ニコベンチャーズ トレーディング リミテッド | 非燃焼型エアロゾル供給システムのためのコントローラ、非燃焼型エアロゾル供給システムのための装置、並びに非燃焼型エアロゾル供給デバイス及び非燃焼型エアロゾル供給システム |
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| CN113243573A (zh) * | 2021-04-30 | 2021-08-13 | 惠州市新泓威科技有限公司 | 防止重复注液使用的电子雾化设备及其控制方法 |
| CN113243573B (zh) * | 2021-04-30 | 2024-04-02 | 惠州市新泓威科技有限公司 | 防止重复注液使用的电子雾化设备及其控制方法 |
| WO2022269280A1 (fr) * | 2021-06-25 | 2022-12-29 | Nicoventures Trading Limited | Système de fourniture d'aérosol |
| JP2024524918A (ja) * | 2021-06-25 | 2024-07-09 | ニコベンチャーズ トレーディング リミテッド | エアロゾル供給システム |
| WO2025004180A1 (fr) * | 2023-06-27 | 2025-01-02 | 日本たばこ産業株式会社 | Système de génération d'aérosol, procédé de traitement d'informations et programme |
Also Published As
| Publication number | Publication date |
|---|---|
| EP3932228A1 (fr) | 2022-01-05 |
| JPWO2020174629A1 (ja) | 2021-11-25 |
| TW202031146A (zh) | 2020-09-01 |
| EP3932228A4 (fr) | 2022-11-02 |
| US20210360976A1 (en) | 2021-11-25 |
| JP7158557B2 (ja) | 2022-10-21 |
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