WO2016201606A1 - Inhalateur et ensemble batterie et ensemble d'atomisation correspondants - Google Patents
Inhalateur et ensemble batterie et ensemble d'atomisation correspondants Download PDFInfo
- Publication number
- WO2016201606A1 WO2016201606A1 PCT/CN2015/081471 CN2015081471W WO2016201606A1 WO 2016201606 A1 WO2016201606 A1 WO 2016201606A1 CN 2015081471 W CN2015081471 W CN 2015081471W WO 2016201606 A1 WO2016201606 A1 WO 2016201606A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- battery
- atomizing
- assembly
- outer tube
- atomizing assembly
- Prior art date
Links
Classifications
-
- 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
- A24F40/485—Valves; Apertures
-
- 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
Definitions
- the invention relates to the technical field of an instrument device for inputting an atomizing medium into a human body, and in particular to an inhaler, a battery assembly thereof and an atomizing assembly.
- the inhaler is a device for injecting liquid into the human body, and mainly includes an electronic cigarette for replacing cigarettes and a medical atomizing inhaler for treating upper respiratory diseases.
- the general electronic cigarette and the medical atomizing inhaler having similar structure need to open the air inlet hole for the intake air, which increases the processing cost and the process is complicated.
- An inhaler battery assembly detachably coupled to an atomizing assembly of an inhaler, the battery assembly including a housing;
- the housing includes a body and an extension, the body and the extension are fixedly coupled, and the extension is tubular, the extension being extended from the end of the body toward the body; the extension The portion is configured to receive at least a portion of the atomizing assembly, the extending portion is provided with a window for observing the amount of liquid in the atomizing assembly; and the first inlet is formed between the extending portion and the atomizing assembly a passage, the first intake passage communicating with the window and the atomization chamber of the atomizing assembly.
- the battery assembly further includes a battery connector and a battery thimble, the battery connector being located in the extension, the battery connector including at least two for snapping the atomization assembly a hook, a hook gap is formed between two adjacent hooks;
- the battery thimble is mounted on the battery connector, and the battery ejector is provided with a first ventilation slot; when the battery component is connected to the atomization component, the first ventilation slot passes the hook A gap is in communication with the first intake passage, the first venting groove being in communication with an atomizing chamber of the atomizing assembly.
- the battery assembly further includes a battery, the battery is located in the body, and the battery is used for electrical connection with the atomizing assembly;
- the battery connector further includes a connecting portion, the connecting portion is fixedly connected to the hook, the connecting portion is adjacent to the battery, the connecting portion is provided with a ejector slot, and the battery thimble is engaged with the The battery thimble is electrically connected to the battery in the ejector slot.
- the battery assembly further includes an end cover and a microphone; the end cover is provided with a cavity and an air inlet, and a second intake passage is formed between the battery and the housing.
- the air inlet is in communication with the second air inlet passage through the cavity; the end cover is connected to the body; the microphone head is located in the cavity;
- the connecting portion is further provided with a second venting groove, and the second intake passage is communicated to the atomizing chamber of the atomizing assembly through the second venting groove.
- An atomizing assembly of an inhaler detachably connected to the battery assembly;
- the atomization assembly includes an inner tube, an outer tube and an atomization seat, the inner portion of the inner tube forms an air flow passage, at least a portion of the inner tube is located in the outer tube, and the inner tube and the outer tube are formed a liquid storage chamber; the atomization seat is located at one end of the liquid storage chamber, and an atomization chamber is opened in the atomization seat, and the air flow channel is in communication with the atomization chamber;
- At least a portion of the atomizing assembly is located within the extension, at least a portion of the outer tube being transparent for viewing an amount of liquid within the reservoir through the window; the outer tube and the extension A first intake passage is formed, the first intake passage communicating with the window and the atomization chamber.
- the atomization assembly further includes a connection structure and a plugging structure
- the connecting structure includes a connecting plate and a positioning protrusion, the inner tube and the outer tube are fixedly connected by the connecting plate, and the positioning protrusion is fixedly connected to one end of the connecting plate away from the atomizing seat;
- the occlusion structure is connected to an end of the outer tube away from the atomization seat, and the occlusion structure seals an end of the liquid storage chamber; the occlusion structure is provided with a positioning groove, and the positioning protrusion Snap into the positioning slot.
- the plugging structure is further provided with an annular groove, and an end of the outer tube is located in the annular groove;
- a through hole is formed in the outer tube adjacent to the tube wall of the plugging structure, and the plugging structure is formed in an end portion of the outer tube and the through hole by injection molding.
- the atomizing assembly further includes a suction nozzle; the nozzle is sleeved on the inner tube, and one end of the suction nozzle is tightly engaged with the sealing structure.
- the atomizing assembly further includes an atomizing core, a liquid guiding sheet and a liquid storage layer;
- the atomizing core is located in the atomization chamber;
- the liquid guiding piece is located between the inner tube and the outer tube, and the liquid guiding piece is provided with a liquid guiding hole;
- the liquid storage layer is located between the inner tube and the outer tube, one side of the liquid storage layer is in contact with the liquid guiding piece, and the other side of the liquid storage layer is respectively associated with the atomizing core and The atomizing seat abuts;
- the atomization seat is further provided with an air flow hole, and the air flow hole is respectively connected to the atomization chamber and the first air inlet channel.
- the atomization assembly further includes an atomization connection seat fixedly coupled to an end of the outer tube adjacent to the atomization seat, the atomization connection base including a base portion And a latching portion, the base portion is fixedly coupled to the engaging portion; the base portion is coupled to the outer tube, and the base portion is located at an end portion of the outer tube near the atomizing seat; the engaging portion The portion is located outside the outer tube, The engaging portion has a tubular shape, and the engaging portion is provided with a connecting cavity, the connecting cavity is in communication with the airflow hole, and an outer wall of the engaging portion is provided with a snap groove for engaging with the battery component .
- the base is further provided with a convex ring portion
- the convex ring portion is configured to abut against an inner wall of the extending portion, and the convex ring portion is provided with a third ventilation groove.
- the atomizing assembly further includes a negative electrode connector, an insulating sleeve, and an atomizer ejector;
- At least a part of the negative electrode connecting member is located in the connecting cavity, and is connected to the engaging portion, and the negative connecting member is provided with a connecting hole that cooperates with the insulating sleeve;
- At least a portion of the insulating sleeve is located in the connecting hole, and is connected to the negative electrode connecting member, and the insulating sleeve is provided with a thimble hole that cooperates with the atomizer ejector pin;
- At least a portion of the atomizer thimble is located in the thimble hole and connected to the insulating sleeve; the insulating sleeve is located between the negative electrode connector and the atomizer ejector pin, such that the negative electrode connector
- the atomizer thimble is insulated;
- the atomizer ejector is provided with a gas collecting hole, and the gas collecting hole is in communication with the ventilation chamber.
- An inhaler comprising the battery assembly of the inhaler and the atomizing assembly of the inhaler, the battery assembly being detachably coupled to the atomizing assembly;
- the length of the atomizing component located within the extension is greater than or equal to half the total length of the atomizing component.
- the inhaler and the battery assembly thereof and the atomizing assembly, the battery assembly of the inhaler and the atomizing assembly are detachably connected, and at least a part of the atomizing assembly is received in the extension of the battery assembly to prevent the atomizing assembly from shaking relative to the battery assembly, and inhaling
- the battery assembly and the atomizing assembly are not easily separated and damaged.
- a window is opened on the extension portion for the user to observe the amount of liquid in the atomization assembly, and the window is used for intake air, and the gas enters the first intake passage between the extension portion and the atomization assembly through the window through the first intake passage. Entering the atomization chamber of the atomization assembly eliminates the need for additional air inlets and reduces processing costs.
- Figure 1 is a perspective view of an inhaler in an embodiment
- Figure 2 is a cross-sectional view of the inhaler of Figure 1;
- Figure 3 is a partially enlarged schematic cross-sectional view of the inhaler of Figure 2;
- Figure 4 is a perspective view of the battery assembly of the inhaler of Figure 1;
- Figure 5 is an exploded view of the battery assembly of the inhaler shown in Figure 4.
- FIG. 6 is a perspective view of the battery connector of the inhaler of Figure 1;
- Figure 7 is a perspective view of the atomizing assembly of Figure 1;
- Figure 8 is an exploded view of the atomizing assembly of the inhaler of Figure 7;
- Figure 9 is a perspective view showing the connection of the inner tube and the outer tube of the inhaler shown in Figure 1;
- Figure 10 is a perspective view of the atomizing connector of the inhaler of Figure 1.
- the inhaler and its battery assembly and atomizing assembly will be described more fully hereinafter with reference to the associated drawings.
- a preferred embodiment of the inhaler and its battery assembly and atomizing assembly is given in the drawings.
- the inhaler and its battery and atomizing assembly can be implemented in many different forms and are not limited to the embodiments described herein. Rather, the purpose of providing these embodiments is to make the disclosure of the inhaler, its battery assembly, and the atomizing assembly more thorough and comprehensive.
- an inhaler 10 of an embodiment includes a battery assembly 100 and an atomizing assembly 200 that is detachably coupled to the atomizing assembly 200.
- the battery assembly 100 includes a housing 110.
- the housing 110 includes a body 112 and an extension 114, the body 112 and the extension 114 are fixedly coupled, and the extension 114 is tubular, and the extension 114 extends from the end of the body 112 away from the body 112.
- the extension portion 114 is configured to receive at least a portion of the atomization assembly 200, and the extension portion 114 is provided with a window 1142 for observing the amount of liquid in the atomization assembly 200.
- a first intake passage 1144 is formed between the extension portion 114 and the atomizing assembly 200, and the first intake passage 1144 communicates with the window 1142 and the atomization chamber 232 of the atomizing assembly 200.
- At least a portion of the atomizing assembly 200 is received in the extension 114 of the battery assembly 100 to prevent the atomizing assembly 200 from shaking relative to the battery assembly 100.
- the battery assembly 100 and the atomizing assembly 200 are not easily separated and damaged.
- a window 1142 is defined in the extending portion 114 for the user to observe the amount of liquid in the atomizing assembly 200, while the window 1142 is used for intake air, and the gas enters the first inlet passage between the extending portion 114 and the atomizing assembly 200 through the window 1142.
- 1144 entering the atomization chamber 232 of the atomization assembly 200 via the first intake passage 1144 eliminates the need for an additional air inlet, reducing processing costs.
- the battery assembly 100 further includes a battery connector 120 and a battery thimble 130.
- the battery connector 120 is located in the extension 114.
- the battery connector 120 includes at least Two hooks 122 for snapping the atomizing assembly 200 are formed, and a hook gap 1222 is formed between the adjacent two hooks 122.
- the battery ejector pin 130 is mounted on the battery connector 120, and the battery ejector pin 130 is provided with a first venting groove 132.
- the first venting groove 132 communicates with the first intake passage 1144 through the hook gap 1222, and the first venting groove 132 communicates with the atomizing chamber 232 of the atomizing assembly 200.
- the gas enters through the window 1142 and passes through the hook gap 1222 along the first air inlet passage 1144, enters the atomization chamber 232 through the first ventilation slot 132 to atomize, and the inhaler 10 is passed through. Window 1142 intake.
- the battery assembly 100 further includes a battery 140 and a first sleeve 150.
- the battery 140 is located in the first sleeve 150.
- the first sleeve 150 is located in the body 112, and the first sleeve 150 functions to protect the battery 140 for electrically connecting to the atomizing assembly 200.
- the battery connector 120 further includes a connecting portion 124.
- the connecting portion 124 is fixedly connected to the hook 122.
- the connecting portion 124 is adjacent to the battery 140.
- the connecting portion 124 is provided with a ejector slot 1242, and the battery ejector pin 130 is connected. In the ejector slot 1242, the battery ejector pin 130 and the battery 140 are electrically connected.
- the battery assembly 100 further includes an end cap 160 and a microphone 170.
- the end cap 160 defines a cavity 162 and an air inlet 164, and the end cover 160 is coupled to the body 112.
- a second intake passage 1122 is formed between the battery 140 and the body 112, and the intake port 164 communicates with the second intake passage 1122 through the cavity 162.
- the end cover 160 is provided with a first step 166 and a second step 168.
- the first step 166 is fixedly connected to the second step 168.
- the first step 166 is connected to the first sleeve 150, and the second step 168 is coupled to the body 112.
- the connection makes the connection of the end cover 160 and the body 112 more stable, and the end cover 160 of the inhaler 10 is not easily separated and broken when the battery assembly 100 is dropped.
- the microphone head 170 is located in the cavity 162, and the connecting portion 124 is further provided with a second ventilation groove 1244.
- the second air inlet channel 1122 is communicated to the atomization chamber 232 of the atomization assembly 200 through the second ventilation groove 1244.
- the first intake passage 1144 Relative to the first intake passage 1144, only a small amount of gas enters the second intake passage 1122, the first intake passage 1144 is the primary intake passage, and the second intake passage 1122 is primarily used to control the operation of the inhaler 10.
- the gas enters the inhaler 10 from the window 1142, respectively, and the second intake passage 1122 forms a negative pressure, and the microphone 170 can detect the air flow signal, thereby driving the working circuit of the inhaler 10 to start, the inhaler 10 started working.
- the microphone 170 does not detect airflow, the operating circuit of the inhaler 10 is turned off, and the inhaler 10 stops operating.
- the atomization assembly 200 includes an inner tube 210 , an outer tube 220 and an atomization seat 230 .
- the inner portion of the inner tube 210 forms an air flow passage 212 , and at least a portion of the inner tube 210 is located in the outer tube 220 .
- a liquid storage chamber 240 is formed between the inner tube 210 and the outer tube 220.
- the liquid storage chamber 240 is used for storing liquid. If the inhaler 10 is electronic cigarette, the liquid in the liquid storage chamber 240 may be smoke liquid. If the inhaler 10 is a medical atomizing inhaler, the liquid in the liquid storage chamber 240 may be It is a liquid drug.
- the atomization seat 230 is located at one end of the liquid storage chamber 240.
- the atomization chamber 230 is opened in the atomization seat 230, and the air flow channel 212 is in communication with the atomization chamber 232.
- At least a portion of the atomizing assembly 200 is located within the extension 114, and at least a portion of the outer tube 220 is transparent for viewing the amount of liquid within the reservoir 240 through the window 1142.
- a first intake passage 1144 is formed between the outer tube 220 and the extension portion 114. The first intake passage 1144 communicates with the window 1142 and the atomization chamber 232. When the user uses the inhaler 10, the airflow enters the window 1142 and follows. The first intake passage 1144 enters the atomization chamber 232 for atomization, and the atomized gas enters the user's mouth through the air flow passage 212.
- the atomizing assembly 200 further includes a connection structure 250 and a plug structure 260.
- the connecting structure 250 includes a connecting plate 252 and a positioning protrusion 254.
- the inner tube 210 and the outer tube 220 are fixedly connected by a connecting plate 252, and the positioning protrusion 254 is fixedly connected to one end of the connecting plate 252 away from the atomizing seat 230.
- the sealing structure 260 is connected to one end of the outer tube 220 away from the atomizing seat 230, and the sealing structure 260 seals the end of the liquid storage chamber 240, and the sealing structure 260 can be sleeved on the inner tube 210.
- the sealing structure is provided with a positioning groove 262. The positioning protrusion 254 is locked into the positioning groove 262 to prevent the sealing structure 260 from rotating, and the sealing structure 260 is reliably connected to the outer tube 220.
- the plugging structure 260 is a material having a sealing and restoring deformation property, such as silica gel.
- the liquid can be injected into the reservoir 128 through the injection needle insertion plugging structure 160.
- the sealing structure 260 is further provided with an annular groove 264.
- One end of the outer tube 220 connected to the sealing structure 260 is provided with a third step 222, and the third step 222 is located in the annular groove 264.
- a through hole 224 is defined in the tube wall of the outer tube 220 near the sealing structure 260.
- the sealing structure 260 is formed in the end portion of the outer tube 220 and the through hole 224 by injection molding, and the sealing structure 260 and the outer tube 220 can be added. The strength of the bond between the blocks prevents the plugging structure 260 from being pulled out during the filling.
- the atomizing assembly 200 further includes a suction nozzle 270.
- the suction nozzle 270 is sleeved on the inner tube 210, and one end of the suction nozzle 270 is tightly engaged with the sealing structure 260, and the suction nozzle 270 and the outer tube 220 are clamped to the sealing structure 260, and the sealing structure 260 is elastically deformed when being pressed. Thereby, the sealing structure 260 is more tightly coupled to the outer tube 220.
- the atomizing assembly 200 further includes an atomizing core 280, a liquid guiding sheet 290, and a reservoir layer 310.
- the atomizing core 280 is located in the atomizing chamber 232.
- the liquid guiding sheet 290 is located between the inner tube 210 and the outer tube 220, and the liquid guiding sheet 290 is provided with a liquid guiding hole 292.
- the liquid storage layer 310 is located between the inner tube 210 and the outer tube 220. One end of the liquid storage layer 310 abuts the liquid guiding sheet 290, and the other end of the liquid storage layer 310 abuts the atomizing core 280 and the atomizing seat 230, respectively.
- the atomizing seat 230 is further provided with an air flow hole 234, and the air flow hole 234 is respectively connected with the atomizing chamber 232 and the first air inlet channel 1144.
- the gas enters through the window 1142, along the first An intake passage 1144 passes through the hook gap 1222 and enters the atomization chamber 232 via the air flow hole 234 for atomization.
- the atomizing assembly 200 further includes an atomizing connector 320 and a second sleeve 330.
- the atomizing connector 320 and the second sleeve 330 are located in the extending portion 114.
- the atomizing connector 320 is fixedly connected to the end of the outer tube 220 near the atomizing seat 230.
- the atomizing connector 320 includes a base portion 322 and an engaging portion 324.
- the base 322 is fixedly coupled to the engaging portion 324.
- the base 322 is coupled to the outer tube 220 and the base 322 is located at an end of the outer tube 220 adjacent the atomizing seat 230.
- the base portion 322 is provided with a fourth step 3222.
- the outer tube 220 is disposed on the outer wall of one end of the battery assembly 100, and is provided with a fifth step 226.
- the fourth step 3222 and the fifth step 226 are both connected to the second sleeve 330 to make the atomization connector.
- the connection between the 320 and the outer tube 220 is reliable, and the inhaler 10 is not easily separated and damaged after falling.
- the engaging portion 324 is located outside the outer tube 220, the engaging portion 324 is tubular, and the engaging portion 324 is provided with a connecting cavity 3242.
- the connecting cavity 3242 is in communication with the airflow hole 234, and the engaging portion 324 is
- the outer wall is provided with a snap groove 3244 for engaging with the battery assembly 100.
- the base 322 is also provided with a convex ring portion 3224.
- the convex ring portion 3224 is for abutting against the inner wall of the extending portion 114, and the convex ring portion 3224 abuts against the inner wall of the extending portion 114, so that the structural strength of the atomizing assembly 200 can be improved, and the inhaler 10 is less likely to be damaged after falling.
- the convex ring portion 3224 is provided with a third ventilation groove 3225 to ensure that the first intake passage 1144 is unobstructed.
- the atomizing assembly 200 further includes a negative connector 340, an insulating sleeve 350, and an atomizer thimble 360. At least a portion of the negative electrode connector 340 is located in the connecting cavity 3242 and is connected to the engaging portion 324.
- the negative connecting member 340 is provided with a connecting hole 332 that cooperates with the insulating sleeve 350. At least a portion of the insulating sleeve 350 is located in the connecting hole 332, and is connected to the negative connecting member 340.
- the insulating sleeve 350 is provided with a thimble hole 352 that cooperates with the atomizer thimble 360.
- At least a portion of the atomizer thimble 360 is located within the thimble hole 352 and is coupled to the insulating sleeve 350.
- the insulating sleeve 350 is located between the negative electrode connector 340 and the atomizer ejector pin 360 to insulate the negative electrode connector 340 from the atomizer ejector pin 360.
- the atomizer ejector 360 is provided with a gas collecting hole 362, and the gas collecting hole 362 is in communication with the connecting cavity 3242.
- the hook 122 is engaged with the latching slot 3244 to achieve detachable and secure connection between the atomizing assembly 200 and the battery assembly 100, and the battery ejector pin 130 and the atomizer The thimble 360 abuts to achieve electrical connection.
- the hook gap 1222 communicates with the air collection hole 362 through the first ventilation slot 132.
- the gas entering from the window 1142 passes through the first intake passage 1144 and the third ventilation slot 3225 in sequence.
- the hook gap 1222, the first ventilation groove 132, the air collection hole 362, the connection cavity 3242, and the air flow hole 234 reach the atomization chamber 232, and then reach the user's mouth through the air flow path 212.
- the second intake passage 1122 communicates with the air collection hole 362 through the second ventilation groove 1244, the gas entering from the air inlet 164 sequentially passes through the cavity 162, the second intake passage 1122, the second ventilation groove 1244, and the first ventilation.
- the slot 132, the plenum 362, the connecting cavity 3242, the airflow hole 234, the atomizing cavity 232, the air flow channel 212 finally reach the user's mouth, and when the airflow passes through the cavity 162, the microphone 170 detects the airflow signal, and drives the inhaler.
- the working circuit of 10 is activated, causing the atomizing assembly 200 to start atomizing work, atomizing the gas of the atomizing chamber 232, and the atomizing gas passes through the air flow passage 212 to reach the user's mouth.
- the length of the atomizing assembly 200 located within the extension 114 can be greater than or equal to half the total length of the atomizing assembly 200.
- the reservoir 240 may be housed entirely within the extension 114.
- the plugging structure 260 and the nozzle 270 can also be received within the extension 114.
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Abstract
L'invention concerne un inhalateur (10) et un ensemble batterie (100) et un ensemble d'atomisation (200) correspondants. L'ensemble batterie (100) de l'inhalateur (10) est relié amovible à l'ensemble d'atomisation (200) de l'inhalateur (10). L'ensemble batterie (100) comprend un boîtier (110). Le boîtier (110) comprend un corps (112) et une partie d'extension (114), le corps (112) et la partie d'extension (114) étant reliés de manière fixe, et la partie d'extension (114) ayant une forme tubulaire et s'étendant à l'opposé du corps (112) depuis une partie d'extrémité de ce dernier. La partie d'extension (114) est destinée à loger au moins une partie de l'ensemble d'atomisation (200). La partie d'extension (114) comprend une fenêtre de visualisation (1142) pour visualiser une quantité de liquide dans l'ensemble d'atomisation (200). Un premier passage d'admission d'air (1144) est formé entre la partie d'extension (114) et l'ensemble d'atomisation (200). Le premier passage d'admission d'air (1144) est en communication avec la fenêtre de visualisation (1142) et une chambre d'atomisation (232) de l'ensemble d'atomisation (200), ce qui permet de résoudre le problème dans lequel l'inhalateur (10) est facilement rompu et l'aspiration d'air n'est pas commode.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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PCT/CN2015/081471 WO2016201606A1 (fr) | 2015-06-15 | 2015-06-15 | Inhalateur et ensemble batterie et ensemble d'atomisation correspondants |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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PCT/CN2015/081471 WO2016201606A1 (fr) | 2015-06-15 | 2015-06-15 | Inhalateur et ensemble batterie et ensemble d'atomisation correspondants |
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PCT/CN2015/081471 WO2016201606A1 (fr) | 2015-06-15 | 2015-06-15 | Inhalateur et ensemble batterie et ensemble d'atomisation correspondants |
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USD943159S1 (en) | 2019-11-14 | 2022-02-08 | Juul Labs, Inc. | Component for a vaporizer cartridge |
USD943158S1 (en) | 2019-11-14 | 2022-02-08 | Juul Labs, Inc. | Vaporizer cartridge |
WO2023124444A1 (fr) * | 2021-12-30 | 2023-07-06 | 深圳市艾溹技术研究有限公司 | Atomiseur, base d'atomisation, noyau d'atomisation et procédé de fabrication s'y rapportant |
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