WO2024066581A1 - Atomiseur électronique - Google Patents

Atomiseur électronique Download PDF

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Publication number
WO2024066581A1
WO2024066581A1 PCT/CN2023/104134 CN2023104134W WO2024066581A1 WO 2024066581 A1 WO2024066581 A1 WO 2024066581A1 CN 2023104134 W CN2023104134 W CN 2023104134W WO 2024066581 A1 WO2024066581 A1 WO 2024066581A1
Authority
WO
WIPO (PCT)
Prior art keywords
battery
assembly
atomizer
electronic
electronic atomizer
Prior art date
Application number
PCT/CN2023/104134
Other languages
English (en)
Chinese (zh)
Inventor
张志良
Original Assignee
爱奇迹(香港)有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from CN202222586424.3U external-priority patent/CN218650330U/zh
Priority claimed from CN202211206875.8A external-priority patent/CN115399510A/zh
Application filed by 爱奇迹(香港)有限公司 filed Critical 爱奇迹(香港)有限公司
Publication of WO2024066581A1 publication Critical patent/WO2024066581A1/fr

Links

Classifications

    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts

Definitions

  • the present application relates to the field of atomizers, and in particular to an electronic atomizer.
  • the atomizer core and airflow sensor of the electronic atomizer need to be connected to the positive and negative wires of the power supply battery respectively, and the airflow sensor needs to be connected to the atomizer core wire to control the working state of the atomizer core.
  • There are many wires inside the electronic atomizer and many wires are staggered in the electronic atomizer, which makes the wire arrangement complicated and easily causes faults such as short circuit or open circuit, affecting the working reliability of the electronic atomizer.
  • the present application provides an electronic atomizer, which can simplify the wiring arrangement inside the electronic atomizer.
  • An electronic atomizer comprises a shell, a nozzle, an atomizing assembly and an electronic control assembly, wherein the nozzle is mounted at one end of the shell, the atomizing assembly is accommodated in the nozzle, and the electronic control assembly is mounted at an opposite end of the shell away from the nozzle;
  • the electronic control assembly comprises a battery cell and an airflow sensor, wherein the battery cell is located between the atomizing assembly and the airflow sensor;
  • the battery cell is provided with a first battery and a second battery, wherein the first battery supplies power to the atomizing assembly and is located at one end close to the atomizing assembly, and the second battery supplies power to the airflow sensor and is located at an opposite end close to the airflow sensor; a spacing between projections of the first battery and the second battery on a plane parallel to the longitudinal direction of the shell in the longitudinal direction of the shell is greater than zero.
  • the beneficial effects of the above technical solution are as follows: the first battery and the second battery are provided to respectively supply power to the atomization assembly and the airflow sensor, and the first battery and the second battery are spaced apart in the longitudinal direction of the outer shell, thereby avoiding the power supply wires of the atomization assembly and the power supply wires of the airflow sensor from being intertwined inside the electronic atomizer, thereby simplifying the wire arrangement inside the electronic atomizer.
  • An electronic atomizer includes a shell, a nozzle, an atomizer assembly, and a battery module.
  • the nozzle is mounted on one end of the shell, the atomizer assembly is accommodated in the nozzle, and the battery module is mounted on the opposite end of the shell away from the nozzle;
  • the battery module includes a battery unit and a microphone, and the battery unit is located between the atomizer assembly and the microphone;
  • the battery unit is provided with a first battery and a second battery, the first battery supplies power to the atomizer assembly, and the positive and negative ears of the first battery are both located at one end close to the atomizer assembly, and the second battery supplies power to the microphone, and the positive and negative ears of the second battery are both located at one end close to the microphone;
  • the projected length of the distance between the positive and negative ears of the first battery and the atomizer assembly in the longitudinal direction of the shell is smaller than the projected length of the distance between the positive and negative ears of the second battery and the atomizer assembly in the longitudinal direction of the shell.
  • the beneficial effects of the above technical solution are: the first battery and the second battery are respectively provided to supply power to the atomizer assembly and the microphone, and the first battery and the second battery are both unidirectional bipolar ear batteries, which shortens the length of the connecting wires, avoids the power supply wires of the atomizer assembly and the power supply wires of the microphone being arranged in an interlaced manner, makes the power supply wires inside the electronic atomizer more regular, and simplifies the wire arrangement inside the electronic atomizer.
  • FIG1 is a schematic diagram of the assembly structure of an electronic atomizer according to a first embodiment of the technical solution
  • FIG2 is a schematic diagram of the assembly structure of an electronic atomizer embodiment provided by the technical solution 1 without the outer shell;
  • FIG3 is a schematic diagram of the exploded structure of an electronic atomizer according to a first embodiment of the technical solution
  • FIG4 is a schematic structural diagram of an embodiment of a cell support provided by technical solution 1;
  • FIG5 is a schematic structural diagram of an embodiment of a battery cell provided by technical solution 1;
  • FIG6 is a schematic diagram of the structure of an embodiment of a technical solution 1 in which a battery cell is powered by a single battery;
  • FIG7 is a schematic diagram of the assembly structure of an electronic atomizer according to a second technical solution
  • FIG8 is a schematic diagram of the assembly structure of an electronic atomizer embodiment provided by technical solution 2 without the outer shell;
  • FIG9 is a schematic diagram of the exploded structure of an electronic atomizer according to a second technical solution.
  • FIG10 is a schematic structural diagram of an embodiment of a battery unit box provided by technical solution 2;
  • FIG11 is a schematic structural diagram of an embodiment of a battery unit provided by technical solution 2;
  • FIG. 12 is a schematic diagram of the structure of an embodiment of a second technical solution in which a battery unit is powered by a single battery;
  • FIG13 is a schematic structural diagram of another embodiment of a battery unit provided by Technical Solution 2.
  • Figure 1 is a schematic diagram of the assembly structure of an embodiment of the electronic atomizer provided by the present application
  • Figure 2 is a schematic diagram of the assembly structure of an embodiment of the electronic atomizer provided by the present application without the shell
  • Figure 3 is a schematic diagram of the decomposition structure of an embodiment of the electronic atomizer provided by the present application.
  • the electronic atomizer 100 is used to heat and vaporize a liquid matrix to generate an aerosol for inhalation.
  • the electronic atomizer 100 includes a shell 10, a nozzle 20, an atomization assembly 30, and an electronic control assembly 40.
  • the nozzle 20 is installed at one end of the shell 10, the atomization assembly 30 is accommodated in the nozzle 20, and the electronic control assembly 40 is installed at the opposite end of the shell 10 away from the nozzle 20.
  • Openings 11 are provided at both ends of the housing 10 , and the nozzle 20 and the electronic control component 40 can be installed in the housing 10 through the openings 11 , so as to facilitate the assembly production of the electronic atomizer 100 .
  • the atomizer nozzle 20 is configured as a port for a user to inhale aerosol.
  • the atomizer assembly 30 includes a liquid storage chamber 31, a porous body 32, and a heating body 33.
  • the liquid storage chamber 31 is used to store a liquid matrix.
  • the porous body 32 is installed in the liquid storage chamber 31 to absorb the liquid matrix stored in the liquid storage chamber 31.
  • the heating body 33 is used to heat at least part of the liquid matrix to generate aerosol for the user to inhale.
  • the electric control component 40 includes a battery holder 41, a battery 42 and an airflow sensor 43.
  • the battery holder 41 is snapped into the housing 10, and the battery holder 41 is used to install the battery 42 and the airflow sensor 43; the battery 42 is located between the atomization component 30 and the airflow sensor 43, and the battery 42 provides power for the atomization component 30 and the airflow sensor 43.
  • the airflow flowing through the airflow sensor 43 triggers the control circuit of the airflow sensor 43, and the battery cell 42 supplies power to the heater 33 of the atomizer assembly 30, and the heater 33 starts working.
  • the heater 33 heats the liquid matrix stored in the liquid storage chamber 31 to generate an aerosol for the user to inhale; when the user stops inhaling, there is no airflow flowing through the airflow sensor 43, the battery cell 42 stops supplying power to the heater 33, and the heater 33 stops working.
  • FIG 4 is a schematic diagram of the structure of an embodiment of a battery holder provided by the present application.
  • the battery holder 41 includes a columnar box body 411, an upper cover 412 and a lower cover 413.
  • the upper cover 412 and the lower cover 413 are connected to the columnar box body 411 to form a receiving space for receiving the battery 42 and the airflow sensor 43.
  • the outer periphery of the columnar box body 411 is provided with an installation opening 414 for installing or removing the battery 42 and the airflow sensor 43, so as to facilitate the maintenance of the battery 42 and the airflow sensor 43.
  • Figure 5 is a schematic diagram of the structure of an embodiment of a battery cell provided in the present application.
  • the battery cell 42 is provided with a first battery 421 and a second battery 422.
  • the first battery 421 supplies power to the atomizer assembly 30, and the first battery 421 is located at one end close to the atomizer assembly 30.
  • the second battery 422 supplies power to the airflow sensor 43, and the second battery 422 is located at one end close to the airflow sensor 43.
  • the power supply wire of the atomizer assembly 30 can be led out from one end of the battery cell 42, and the power supply wire of the airflow sensor 43 is led out from the opposite end of the battery cell 42, so as to avoid the power supply wire of the atomizer assembly 30 and the power supply wire of the airflow sensor 43 from being interlaced inside the electronic atomizer 100, and simplify the wire arrangement.
  • an electrically connected wire is provided between the airflow sensor 43 and the heating body 33, but the wire is not interlaced with the power supply wire of the atomizer assembly 30 and the power supply wire of the airflow sensor 43.
  • the positive electrode of the first battery 421 is connected to the heating body 33 of the atomization assembly 30 via a heating positive electrode wire 331, and the connecting wire between the negative electrode of the first battery 421 and the heating body 33 is a heating negative electrode wire 332; accordingly, the positive electrode of the second battery 422 is connected to the airflow sensor 43 via an airflow sensor positive electrode wire 431, and the connecting wire between the negative electrode of the second battery 422 and the airflow sensor 43 is an airflow sensor negative electrode wire 432.
  • the distance d between the projections of the first battery 421 and the second battery 422 on a plane parallel to the longitudinal direction of the outer shell 10 in the longitudinal direction of the outer shell 10 is greater than zero, so that there is no overlapping area between the heating negative electrode wire 332 of the first battery 421 connected to the heating body 33 and the airflow sensor negative electrode wire 432 of the second battery 422 connected to the airflow sensor 43, thereby avoiding the staggered arrangement of the power supply wires of the atomization assembly 30 and the power supply wires of the airflow sensor 43, simplifying the wiring, reducing the possibility of faults such as short circuit or open circuit caused by the staggered arrangement of the wires, and improving the working reliability of the electronic atomizer 100.
  • FIG. 6 is a schematic diagram of the structure of an embodiment of the battery cell using a single battery for power supply. Since there is only one power supply battery 421, the power supply wires of the atomizer assembly 30 and the power supply wires of the airflow sensor 43 need to be led out from the power supply battery 421, resulting in the overlap of the heating negative electrode wire 332 of the atomizer assembly 30 and the positive electrode wire 431 of the airflow sensor in the range between the positive and negative ends of the power supply battery 421.
  • the connecting wires have a certain redundant length, so that the heating negative electrode wire 332 and the positive electrode wire 431 of the airflow sensor overlap in the range between the positive and negative ends of the power supply battery 421.
  • the wire 332 and the positive wire 431 of the airflow sensor will be arranged in a staggered manner, which makes the wiring complicated and easily causes faults such as short circuit or open circuit.
  • the first battery 421 and the second battery 422 are arranged in a straight line and installed in the battery holder 41. As shown in FIG5 , the first battery 421 is installed at one end close to the atomizer assembly 30, and the second battery 422 is installed at the opposite end close to the airflow sensor 43.
  • the first battery 421 and the second battery 422 arranged in a straight line in the longitudinal direction will not increase the cross-sectional area of the housing 10, making the housing 10 more slender and improving the appearance of the product.
  • the inner wall of the columnar box body 411 of the battery holder 41 is provided with a barrier protrusion 415, and the barrier protrusion 415 is used to isolate the first battery 421 and the second battery 422, so that the first battery 421 and the second battery 422 are stuck in the battery holder 41.
  • the electronic atomizer 100 provided in the present application has at least the following beneficial effects:
  • the electric control component 40 is provided with a battery holder 41 , the battery 42 and the airflow sensor 43 are integrated and installed in the battery holder 41 , and the battery holder 41 can be integrally snapped onto the housing 10 , which is convenient for the assembly production of the electronic atomizer 100 .
  • An installation opening 414 is provided on the outer periphery of the columnar box body 411 , and the battery cell 42 and the airflow sensor 43 can be detachably installed in the battery cell bracket 41 , so as to facilitate the maintenance of the battery cell 42 and the airflow sensor 43 .
  • Figure 7 is a schematic diagram of the assembly structure of an embodiment of the electronic atomizer provided by the present application
  • Figure 8 is a schematic diagram of the assembly structure of an embodiment of the electronic atomizer provided by the present application without the shell
  • Figure 9 is a schematic diagram of the exploded structure of an embodiment of the electronic atomizer provided by the present application.
  • the electronic atomizer 100 is used to heat and vaporize a liquid matrix to generate an aerosol for inhalation.
  • the electronic atomizer 100 includes a shell 10, a nozzle 20, an atomization assembly 30, and a battery module 40.
  • the nozzle 20 is installed at one end of the shell 10, the atomization assembly 30 is accommodated in the nozzle 20, and the battery module 40 is installed at the opposite end of the shell 10 away from the nozzle 20.
  • Openings 11 are formed at both ends of the housing 10 , and the nozzle 20 and the battery module 40 can be installed in the housing 10 through the openings 11 , so as to facilitate the assembly production of the electronic atomizer 100 .
  • the atomizer nozzle 20 is configured as a port for a user to inhale aerosol.
  • the atomizer assembly 30 includes an oil storage chamber 31 and a heating element 32.
  • the oil storage chamber 31 is used to store liquid matrix
  • the heating element 32 is used to heat at least part of the liquid matrix to generate aerosol for the user to inhale.
  • the battery module 40 includes a battery cell box 41, a battery cell 42 and a microphone 43.
  • the battery cell box 41 is snapped into the housing 10.
  • the battery cell box 41 is used to install the battery cell 42 and the microphone 43.
  • the battery cell 42 is located between the atomizer assembly 30 and the microphone 43.
  • the battery cell 42 supplies power to the atomizer assembly 30 and the microphone 43.
  • the airflow flowing through the microphone 43 triggers the control circuit of the microphone 43, and the battery unit 42 supplies power to the heating element 32 of the atomizer assembly 30, and the heating element 32 starts to work.
  • the heating element 32 heats the liquid matrix stored in the oil storage chamber 31 to generate an aerosol for the user to inhale; when the user stops inhaling, there is no airflow flowing through the microphone 43, the battery unit 42 stops supplying power to the heating element 32, and the heating element 32 stops working.
  • FIG 10 is a schematic diagram of the structure of an embodiment of a battery cell box provided by the present application.
  • the battery cell box 41 includes a columnar box body 411, an upper cover 412 and a lower cover 413.
  • the upper cover 412 and the lower cover 413 are connected to the columnar box body 411 to form a receiving space for receiving the battery cell 42 and the microphone 43.
  • the outer periphery of the columnar box body 411 is provided with an installation opening 414 for installing or removing the battery cell 42 and the microphone 43.
  • Figure 11 is a schematic diagram of the structure of an embodiment of a battery unit provided in the present application.
  • the battery unit 42 is provided with a first battery 421 and a second battery 422.
  • the first battery 421 supplies power to the atomizer assembly 30.
  • the first positive ear 4211 and the first negative ear 4212 of the first battery 421 are both located at one end close to the atomizer assembly 30.
  • the second battery 422 supplies power to the microphone 43.
  • the second positive ear 4221 and the second negative ear 4222 of the second battery 422 are both located at one end close to the microphone 43, that is, the first battery 421 and the second battery 422 are both unidirectional bipolar ear batteries.
  • This arrangement allows the power supply wire of the atomizer assembly 30 to be drawn out from one end of the battery unit 42, while the power supply wire of the microphone 43 is drawn out from the opposite end of the battery unit 42, so as to avoid the power supply wire of the atomizer assembly 30 and the power supply wire of the microphone 43 being arranged in an interlaced manner, so that the power supply wire inside the electronic atomizer 100 is more regular, which is convenient for the assembly production of the electronic atomizer 100. It is understandable that, in order for the microphone 43 to control the activation of the heating element 32 , an electrically connected wire is provided between the airflow sensor 43 and the heating element 32 , but the wire is not interlaced with the power supply wire of the atomizer assembly 30 and the power supply wire of the microphone 43 .
  • the first positive ear 4211 of the first battery 421 is connected to the heating element 32 of the atomizer assembly 30 via a heating positive electrode wire 321, and the connecting wire between the first negative ear 4212 of the first battery 421 and the heating element 32 is a heating negative electrode wire 322; accordingly, the second positive ear 4221 of the second battery 422 is connected to the microphone 43 via a microphone positive electrode wire 431, and the connecting wire between the second negative ear 4222 of the second battery 422 and the microphone 43 is a microphone negative electrode wire 432.
  • the projected length L1 of the distance between the first positive ear 4211 and the first negative ear 4212 of the first battery 421 and the atomizer assembly 30 in the longitudinal direction of the housing 10 is smaller than the projected length L2 of the distance between the second positive ear 4221 and the second negative ear 4222 of the second battery 422 and the atomizer assembly 30 in the longitudinal direction of the housing 10, so that there is no overlapping area between the heating positive wire 321 and the heating negative wire 322 of the first battery 421 connected to the heating element 32 and the microphone positive wire 431 and the microphone negative wire 432 of the second battery 422 connected to the microphone 43, thereby avoiding the staggered arrangement of the power supply wires of the atomizer assembly 30 and the power supply wires of the microphone 43, shortening the length of the power supply wires, simplifying the wiring, reducing the possibility of faults such as short circuit or open circuit caused by the staggered arrangement of the wires, and improving the working reliability of the electronic atomizer 100.
  • FIG. 12 is a schematic diagram of the structure of an embodiment in which the battery unit is powered by a single battery. Since there is only one power supply battery 421, the power supply wires of the atomizer assembly 30 and the power supply wires of the microphone 43 need to be led out from the power supply battery 421, resulting in the overlap of the heating negative electrode wire 322 of the atomizer assembly 30 and the microphone positive electrode wire 431 in the range between the positive and negative ends of the power supply battery 421.
  • the connecting wires have a certain redundant length, so there will be a staggered arrangement between the heating negative electrode wire 322 and the microphone positive electrode wire 431, which makes the wiring complicated and easily causes faults such as short circuit or open circuit.
  • the first battery 421 and the second battery 422 are arranged in a straight line and installed in the battery unit box 41. As shown in FIG11, the first battery 421 is installed at one end close to the atomizer assembly 30, and the second battery 422 is installed at the opposite end close to the microphone 43.
  • the longitudinal arrangement of the first battery 421 and the second battery 422 has little effect on the cross-sectional area of the outer shell 10, and can be used in products with a smaller cross-sectional area of the outer shell 10, such as products with a slender outer shell 10.
  • the inner wall of the columnar box body 411 of the battery unit box 41 is provided with a barrier protrusion 415, and the barrier protrusion 415 is used to isolate the first battery 421 and the second battery 422, so as to facilitate the first battery 421 and the second battery 422 to be clamped.
  • the barrier protrusion 415 is used to isolate the first battery 421 and the second battery 422, so as to facilitate the first battery 421 and the second battery 422 to be clamped.
  • FIG 13 is a schematic diagram of the structure of another embodiment of the battery unit provided by the present application.
  • the first battery 421 and the second battery 422 are installed side by side in the battery unit box 41.
  • the side-by-side arrangement of the first battery 421 and the second battery 422 has little effect on the length of the shell 10, and can be used in products with a wider cross-section of the shell 10, such as products with a flat cross-section of the shell 10.
  • the electronic atomizer 100 provided in the present application has at least the following beneficial effects:
  • the length of the connecting wires is shortened, and the power supply wires of the atomizer assembly 30 and the power supply wires of the microphone 43 are avoided to be arranged in an interlaced manner, so that the power supply wires inside the electronic atomizer 100 are more regular, which can simplify the wire arrangement inside the electronic atomizer 100 and facilitate the assembly production of the electronic atomizer 100.
  • the battery module 40 is provided with a battery unit box 41, the battery unit 42 and the microphone 43 are integrated and installed in the battery unit box 41, and the battery unit box 41 can be integrally snapped onto the housing 10, thereby improving the assembly efficiency of the electronic atomizer 100.
  • the first battery 421 and the second battery 422 can be installed in a straight line in the battery cell box 41, or can be installed side by side in the battery cell box 41, providing multiple options to meet different product requirements.

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  • Battery Mounting, Suspending (AREA)

Abstract

L'invention concerne un atomiseur électronique (100) appartenant au domaine des atomiseurs, et comprenant un boîtier (10), un embout buccal (20), un ensemble d'atomisation (30) et un ensemble de commande électrique (40). L'embout buccal (20) est monté au niveau d'une extrémité du boîtier (10) ; l'ensemble d'atomisation (30) est reçu dans l'embout buccal (20) ; l'ensemble de commande électrique (40) est monté au niveau de l'extrémité opposée du boîtier (10) à distance de l'embout buccal (20) ; l'ensemble de commande électrique (40) comprend un élément de batterie (42) et un capteur d'écoulement d'air (43), l'élément de batterie (42) est situé entre l'ensemble d'atomisation (30) et le capteur d'écoulement d'air (43), et l'élément de batterie (42) est pourvu d'une première batterie (421) et d'une seconde batterie (422) ; les saillies de la première batterie (421) et de la seconde batterie (422) sur un plan parallèle à la direction longitudinale du boîtier (10) ont un espacement supérieur à zéro dans la direction longitudinale du boîtier (10). Selon l'atomiseur électronique (100), la première batterie (421) et la seconde batterie (422) sont agencées à un certain intervalle dans la direction longitudinale du boîtier (10), de telle sorte qu'un fil d'alimentation électrique de l'ensemble d'atomisation (30) et un fil d'alimentation électrique du capteur d'écoulement d'air (43) sont empêchés d'être décalés à l'intérieur de l'atomiseur électronique (100), et l'agencement de fils dans l'atomiseur électronique (100) peut être simplifié.
PCT/CN2023/104134 2022-09-28 2023-06-29 Atomiseur électronique WO2024066581A1 (fr)

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
CN202211206875.8 2022-09-28
CN202222586424.3U CN218650330U (zh) 2022-09-28 2022-09-28 电子雾化器
CN202222586424.3 2022-09-28
CN202211206875.8A CN115399510A (zh) 2022-09-28 2022-09-28 电子雾化器

Publications (1)

Publication Number Publication Date
WO2024066581A1 true WO2024066581A1 (fr) 2024-04-04

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PCT/CN2023/104134 WO2024066581A1 (fr) 2022-09-28 2023-06-29 Atomiseur électronique

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WO (1) WO2024066581A1 (fr)

Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103989255A (zh) * 2014-04-30 2014-08-20 深圳市合元科技有限公司 电子烟和用于电子烟的电池装置、供电组件以及组装方法
CN108471810A (zh) * 2016-02-01 2018-08-31 菲利普莫里斯生产公司 具有多个电源的气溶胶生成装置
US20190133191A1 (en) * 2017-10-25 2019-05-09 Joyetech Europe Holding Gmbh Electronic cigarette
US20210204603A1 (en) * 2018-05-17 2021-07-08 Philip Morris Products S.A. Aerosol-generating device having improved inductor coil
CN113633030A (zh) * 2021-09-24 2021-11-12 张家港外星人新材料科技有限公司 一种口鼻协同使用的电子烟
WO2022064173A1 (fr) * 2020-09-22 2022-03-31 Nicoventures Trading Limited Système de fourniture d'aérosol
US20220232900A1 (en) * 2019-05-17 2022-07-28 Philip Morris Products S.A. An aerosol-generating system and haptic output element for an aerosol-generating system
CN115399510A (zh) * 2022-09-28 2022-11-29 爱奇迹(深圳)创新科技有限公司 电子雾化器
CN218650330U (zh) * 2022-09-28 2023-03-21 爱奇迹(深圳)技术有限公司 电子雾化器

Patent Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103989255A (zh) * 2014-04-30 2014-08-20 深圳市合元科技有限公司 电子烟和用于电子烟的电池装置、供电组件以及组装方法
CN108471810A (zh) * 2016-02-01 2018-08-31 菲利普莫里斯生产公司 具有多个电源的气溶胶生成装置
US20190133191A1 (en) * 2017-10-25 2019-05-09 Joyetech Europe Holding Gmbh Electronic cigarette
US20210204603A1 (en) * 2018-05-17 2021-07-08 Philip Morris Products S.A. Aerosol-generating device having improved inductor coil
US20220232900A1 (en) * 2019-05-17 2022-07-28 Philip Morris Products S.A. An aerosol-generating system and haptic output element for an aerosol-generating system
WO2022064173A1 (fr) * 2020-09-22 2022-03-31 Nicoventures Trading Limited Système de fourniture d'aérosol
CN113633030A (zh) * 2021-09-24 2021-11-12 张家港外星人新材料科技有限公司 一种口鼻协同使用的电子烟
CN115399510A (zh) * 2022-09-28 2022-11-29 爱奇迹(深圳)创新科技有限公司 电子雾化器
CN218650330U (zh) * 2022-09-28 2023-03-21 爱奇迹(深圳)技术有限公司 电子雾化器

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