Aerosol Generator
The aerosol generating device addresses the challenge of safely coupling the cartridge to the power source and effective heat transfer by using a pan coil to inductively heat the susceptor, improving safety and efficiency in aerosol generation.
Patent Information
- Application Number
- JP2024520598
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2022-03-10
- Filing Date
- 2022-10-18
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2042-10-18
AI Technical Summary
Existing aerosol generating devices face challenges in safely coupling the cartridge containing aerosol-forming material to a power source and effectively transferring heat to the absorbent member.
An aerosol generating device design that eliminates the electrical connection between the power source and the cartridge, using a pan coil to inductively heat a susceptor which is in contact with an absorbent member to vaporize or atomize the aerosol-forming material.
Improves safety by eliminating direct electrical connections and ensures effective heat transfer for aerosol generation, enhancing the device's operational efficiency and safety.
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Abstract
Description
[Technical Field]
[0001] The present disclosure relates to aerosol generating devices. [Background technology]
[0002] An aerosol generating device is used to extract a predetermined component from a medium or substance via an aerosol. The medium may contain a variety of components. The components contained in the medium may be flavorings of a variety of components. For example, the components contained in the medium may include nicotine, herbal, and / or coffee components. In recent years, much research has been conducted on such aerosol generating devices. Summary of the Invention [Problem to be solved by the invention]
[0003] The present disclosure is directed to solving the above-mentioned problems and other problems.
[0004] Another object of the present disclosure is to eliminate the structure that electrically couples the cartridge containing the aerosol generating material to a power source.
[0005] Yet another object of the present disclosure is to effectively transfer heat provided by the susceptor to an absorbent member carrying the aerosol-forming material. [Means for solving the problem]
[0006] According to one aspect of the present disclosure for achieving the above-mentioned object, there is provided an aerosol generating device including: a container having an outer wall that forms an internal storage space for storing an aerosol generating material; a member that forms at least a part of the outer wall of the container and absorbs the aerosol generating material; a susceptor that is arranged adjacent to the absorption member and heats the member; and a coil that includes a pan coil wound multiple times from the innermost turn to the outermost turn and is arranged adjacent to the susceptor and inductively heats the susceptor. [Effects of the Invention]
[0007] According to at least one of the embodiments of the present disclosure, the safety of the aerosol generating device can be improved by eliminating the electrical connection structure between the power source and the container.
[0008] According to at least one of the embodiments of the present disclosure, the coil for heating the susceptor is formed of a pan coil, so that the susceptor can be effectively induction heated.
[0009] In accordance with at least one embodiment of the present disclosure, an inductively heated susceptor can be maintained in contact with an absorbent member carrying the aerosol-forming material.
[0010] Further scope of applicability of the present disclosure will become apparent from the following detailed description. However, since various changes and modifications within the spirit and scope of the present disclosure will be apparent to those skilled in the art, it should be understood that the detailed description and specific examples, such as preferred embodiments of the present disclosure, are given by way of example only. [Brief explanation of the drawings]
[0011] [Figure 1] FIG. 1 illustrates an example of an aerosol generating device according to an embodiment of the present disclosure. [Figure 2] FIG. 1 illustrates an example of an aerosol generating device according to an embodiment of the present disclosure. [Figure 3] FIG. 1 illustrates an example of an aerosol generating device according to an embodiment of the present disclosure. [Figure 4] FIG. 1 illustrates an example of an aerosol generating device according to an embodiment of the present disclosure. [Figure 5] FIG. 1 illustrates an example of an aerosol generating device according to an embodiment of the present disclosure. [Figure 6] FIG. 1 illustrates an example of an aerosol generating device according to an embodiment of the present disclosure. [Figure 7] FIG. 1 illustrates an example of an aerosol generating device according to an embodiment of the present disclosure. DETAILED DESCRIPTION OF THE INVENTION
[0012] Hereinafter, the embodiments disclosed in this specification will be described in detail with reference to the accompanying drawings. For the sake of simplicity of description with reference to the drawings, identical or similar components will be given the same reference numerals, and redundant description thereof will be omitted.
[0013] The suffixes "module" and "section" for components used in the following description are for ease of description only and do not have any special meaning or role.
[0014] In this disclosure, those well known to those skilled in the art will be omitted for the sake of brevity. It should be understood that the accompanying drawings are intended to facilitate understanding of various technical features, and that the embodiments disclosed herein are not limited to the accompanying drawings. Therefore, the present disclosure should be construed as including all modifications, equivalents, and alternatives in addition to those specifically disclosed in the accompanying drawings.
[0015] Terms including ordinal numbers such as "first," "second," etc. may be used to describe various components, but it should be understood that the components are not limited by the terms. The terms are used only to distinguish one component from another.
[0016] When a component is said to be "connected" to another component, it will be understood that there may be other components in between, whereas when a component is said to be "directly connected" to another component, it will be understood that there are no other components in between.
[0017] The singular expression includes the plural expression unless the context clearly dictates otherwise.
[0018] 1 is a perspective view of an aerosol generating device 1 according to one embodiment of the present disclosure. Referring to FIG. 1, the aerosol generating device 1 may include a casing 30, a cap 20, a mouthpiece 10, a cartridge 40, and a main body 50.
[0019] The casing 30, together with the cap 20, may form the outer shape of the aerosol generation device 1. The casing 30 may include an upper part 31 and a lower part 32. The cartridge 40 and the main body 50 may be disposed inside the casing 30. The inner surface of the upper part 31 may be connected to the outer surface of the cartridge 40. The inner surface of the lower part 32 may be connected to the outer surface of the main body 50. The upper part 31 and the lower part 32 may form a continuous outer surface. A user can hold the aerosol generation device 1 by grasping the outer surface of the casing 30.
[0020] The cap 20 may be coupled to the upper part 31. The mouthpiece 10 may be rotatably coupled to the cap 20. The cap 20 may include a receiving portion 21 that receives the mouthpiece 10. The receiving portion 21 may be formed by being recessed inside the aerosol generation device 1. The mouthpiece 10 may be rotated and received in the receiving portion 21. The hollow mouthpiece 10 may include a flow path (not shown) inside through which air flows. A user can inhale the aerosol generated inside the aerosol generation device 1 through the mouthpiece 10.
[0021] Fig. 2 is a diagram showing a cartridge 40 and a main body 50 according to an embodiment of the present disclosure. Fig. 3 is a cross-sectional view of the cartridge 40 and the main body 50 according to an embodiment of the present disclosure. Referring to Figs. 2 and 3, the cartridge 40 may include an absorbent member 41 and a container 42. The aerosol generating device 1 may include a power source 100 and a controller 90.
[0022] The container 42 can contain an aerosol-generating substance 1. The container 42 can be detachably coupled to the main body 50. The container 42 can have an elongated shape. The container 42 can be covered by the casing 30.
[0023] The absorbing member 41 may form at least a portion of the outer wall of the cartridge 40. The absorbing member 41 may form an outer surface that is continuous with the outer surface of the container 42. The absorbing member 41 may absorb the aerosol-forming substance l contained in the container 42. The absorbing member 41 may hold a liquid l. For example, the absorbing member 41 may be made of a ceramic material. Meanwhile, the ceramic material may include gaps formed between the material. The liquid l may be contained in the gaps.
[0024] The absorbing member 41 may have a shape corresponding to the shape of the susceptor 56. For example, the absorbing member 41 and the susceptor 56 may be formed in a plate shape. When the cartridge 40 is attached to the main body 50, the absorbing member 41 may come into contact with the susceptor 56. The absorbing member 41 may penetrate a portion of the outer wall 422 of the container 42. The absorbing member 41 may come into contact with the container 42. One surface of the absorbing member 41 may be connected to the aerosol-generating material 1, and the other surface may be exposed to the outside of the cartridge 40.
[0025] On the other hand, the aerosol-generating substance l may be in a liquid state at room temperature. The aerosol-generating substance l may be referred to as a liquid. The liquid aerosol-generating substance l may be atomized and / or vaporized by heat.
[0026] The aerosol-generating material absorbed by the absorbing member 41 can be vaporized or atomized as an aerosol by the induction-heated susceptor 56 and flow (b) within the flow space 59. The aerosol can flow (c) to the outside through the mouthpiece 10 together with the external air A that has flowed into the flow space 59 through the through-holes 551.
[0027] The container 42 may include an outer wall 422 , a receiving space 424 , and a groove 425 .
[0028] The outer wall 422 may provide an interior storage space 424 for storing the aerosol-generating substance 1. The outer wall 422 may be elongated. When the cartridge 40 is mounted in the main body 50, a portion of the elongated outer wall 422 may be inserted into the mounting space 513. The outer wall 422 may be made of a translucent or transparent material. The outer wall 422 may be made of a non-conductive material.
[0029] A groove 425 may be formed on the outer surface of the container 42. The body 50 may include a protrusion 512 that is fastened to the groove 425 of the container 42. The grooves 425 of the container 42 and the protrusions 512 of the body 50 may be formed in plurality. The grooves 425 of the container 42 and the protrusions 512 of the body 50 may be disposed at corresponding positions so as to be fastened to each other. Meanwhile, unlike this embodiment, the container 42 may be provided with a protrusion, and the body 50 may be provided with a recess that receives the protrusion.
[0030] The body 50 can include a sidewall 51 , a column 52 , a coil housing 53 , a protrusion 54 , a body housing 55 , a susceptor 56 , a coil 57 , a mounting space 58 , and a flow space 59 .
[0031] A protrusion 54 may be arranged on the outer surface of the main body 50. The casing 30 may be fastened to the protrusion 54 of the main body 50. A plurality of protrusions 54 may be arranged. The protrusions 54 may be arranged on the outer surfaces of the side wall 51 and the column 52.
[0032] The main body housing 55 may have a mounting space 58 formed therein. The mounting space 58 may accommodate the control unit 90 and the power supply 100. The main body housing 55 may be connected to the coil housing 53. The main body housing 55 may be formed integrally with the coil housing 53. The main body housing 55 may include a through hole 551. The through hole 551 may communicate with the outside of the main body 50. A flow space 59 communicating with the through hole 551 may be formed inside the main body housing 55. The flow space 59 of the main body housing 55 may be separated from the mounting space 58. A side wall 51 and a column 52 may extend from the main body housing 55.
[0033] The sidewall 51 may be disposed on the outer surface of the main body housing 55. The sidewall 51 may protrude and extend from the outer surface of the main body housing 55. The sidewall 51 may define a mounting space 513 inside which a portion of the container 42 is mounted. A protrusion 512 may be formed on the inner surface of the sidewall 51. The protrusion 512 may protrude from the sidewall 51 toward the mounting space 513. The sidewall 51 may be connected to a column 52. A portion of the container 42 may be inserted into the mounting space 513 to be mounted on the main body 50. The groove 425 of the container 42 and the protrusion 512 of the sidewall 51 may be fastened to each other.
[0034] The column 52 may extend longitudinally in the direction in which the side wall 51 of the outer wall 422 protrudes. The column 52 may support the outer wall 422 of the container 42. A liquid volume sensor 62 may be provided inside the column 52. The column 52 may have a flow space 522 and a hole 521. The column 52 may have a hollow shape. The internal space of the column 52 may communicate with the flow space 59.
[0035] The hole 521 may communicate with the outside of the aerosol generating device 1. The hole 521 may communicate with a flow path (not shown) formed inside the mouthpiece 10. The hole 521 may be disposed at one end of the column 52.
[0036] The generated aerosol and the air outside the aerosol generator 1 can flow (c) to the outside of the aerosol generator 1 by passing through the through hole 551, the flow spaces 59 and 522, the hole 521, and the flow path inside the mouthpiece 10 in this order. The generated aerosol can flow together with the air outside the aerosol generator 1.
[0037] A coil 57 may be housed inside the coil housing 53. The coil housing 53 may protrude from the inner surface of the column 52. The coil housing 53 may be made of a non-conductive material. The coil housing 53 may be made of a material through which an induction magnetic field passes. The induction magnetic field generated by the coil 57 passes through the coil housing 53 and can inductively heat the susceptor 56.
[0038] The susceptor 56 may form a part of the outer wall of the column 52. The susceptor 56 may be attached to the column 52 through a hole 523 formed in the column 52. The susceptor 56 may extend in the longitudinal direction of the column 52. For example, the susceptor 56 may be formed in a plate shape. The susceptor 56 may be formed from a conductive material. The susceptor 56 may be inductively heated by a coil 57 to provide heat to the surrounding area. When the cartridge 40 is attached to the main body 50, the susceptor 56 is heated and can provide heat to the absorption member 41.
[0039] The coil 57 can be disposed to face the susceptor 56. The coil 57 can receive electricity from a power source 100. The coil 57 can form an induction magnetic field. The coil 57 can inductively heat the susceptor 56.
[0040] The power source 100 can supply electricity to the aerosol generating device 1. The power source 100 can supply electricity to the control unit 90 and the coil 57. The power source 100 can be a rechargeable battery or a disposable battery. For example, the power source 100 can be, but is not limited to, a lithium polymer (LiPoly) battery. The control unit 90 can control the amount of electricity supplied from the power source 100 to the coil 57.
[0041] 4 shows the arrangement relationship between the absorbing member 41, the susceptor 56, and the coil 57 according to one embodiment of the present disclosure. The absorbing member 41, the susceptor 56, and the coil 57 may be arranged in order. The absorbing member 41, the susceptor 56, and the coil 57 may face each other.
[0042] The coil 57 may be formed by being wound multiple times from an innermost turn 572 to an outermost turn 573. The innermost turn 572 and the outermost turn 573 may be wound in a circular shape. The innermost turn 572 may be located outside the outermost turn 573. The coil 57 may include a first wire 571 connecting the power source 100 to the innermost turn 572 and a second wire 574 connecting the outermost turn 573 to the power source 100.
[0043] When electricity is supplied to the coil 57 from the power source 100, the coil 57 can generate an induced magnetic field. The generated induced magnetic field can penetrate the susceptor 56. A portion of the generated induced magnetic field can penetrate the susceptor 56 vertically.
[0044] The susceptor 56 may include a through hole 561. A plurality of through holes 561 may be formed. The aerosol-generating substance held by the absorption member 41 may be atomized and / or vaporized by the susceptor 56 and flow into the flow path b through the through hole 561. The susceptor 56 may include outer surfaces 562 and 563 arranged in positions surrounding the through hole 561.
[0045] 5 shows the arrangement relationship between the absorbing member 41, the susceptor 56, and the coil 57' according to one embodiment of the present disclosure. The absorbing member 41, the susceptor 56, and the coil 57' may be arranged in order. The absorbing member 41, the susceptor 56, and the coil 57' may face each other.
[0046] The coil 57' may be formed by being wound multiple times from an innermost turn 572' to an outermost turn 573'. The innermost turn 572' and the outermost turn 573' may be wound in a rectangular shape. The innermost turn 572' may be located outside the outermost turn 573'. The coil 57' may include a third wire 571' connecting the innermost turn 572' to the power source 100 and a fourth wire 574' connecting the outermost turn 573' to the power source 100.
[0047] When electricity is supplied to the coil 57' from the power supply 100, the coil 57' can generate an induced magnetic field. The generated induced magnetic field can penetrate the susceptor 56. A portion of the generated induced magnetic field can penetrate the susceptor 56 vertically.
[0048] The susceptor 56 may include a through hole 561. A plurality of through holes 561 may be formed. The aerosol-forming substance held in the absorbing member 41 is atomized and / or vaporized by the susceptor 56 and can flow through the through hole 561 to the flow path b.
[0049] The susceptor 56 may include outer surfaces 562, 563 disposed in positions surrounding the through-hole 561. The susceptor 56 may be formed of a rectangular plate. The first outer surface 562 and the second outer surface 563 may be perpendicular to each other. The outer surfaces 562, 563 may give the susceptor 56 a rectangular cross section. The coil 57' may have a shape corresponding to the shape of the susceptor 56. An innermost turn 572' and an outermost turn 573' of the coil 57' may be wound along a rectangular path.
[0050] Figure 6 is an enlarged view of a portion of Figure 3. Referring to Figure 6, the outer wall 422 of the container 42 may include a first extension portion 422a, a second extension portion 422b, and a connecting portion 422c.
[0051] The connecting portion 422c of the outer wall 422 may connect the first extension portion 422a and the second extension portion 422b. The first extension portion 422a and the second extension portion 422b may extend in the longitudinal direction of the container 42. The first extension portion 422a may extend in a direction intersecting the longitudinal direction of the container 42. For example, the first extension portion 422a may extend inward from the outer wall 422 toward the main housing 55.
[0052] When the cartridge 40 is mounted in the main body 50, the first extension 422a may be located in the mounting space 513. When the cartridge 40 is mounted in the main body 50, the second extension 422b may be located outside the mounting space 513. The connecting portion 422c may extend in a direction intersecting the longitudinal direction of the outer wall 422. For example, the connecting portion 422c may extend in a direction perpendicular to the longitudinal direction of the outer wall 422. The connecting portion 422c may be supported by the protruding end 514 of the side wall 51.
[0053] The side wall 51 may include a contact portion 511 formed at a position facing the hole 523 of the column 52. The contact portion 511 may support the first extension portion 422a. The contact portion 511 may be in contact with the first extension portion 422a. The thickness of the contact portion 511 may gradually increase from the protruding end 514 of the side wall 51 to the main body housing 55. The inner surface of the contact portion 511 that contacts the first extension portion 422a may be inclined toward the inside of the mounting space 513 from the protruding end 514 of the contact portion 511 to the main body housing 55.
[0054] The thickness W1 of the protruding end 514 of the contact portion 511 may be smaller than the thickness W2 of the contact portion 511 at a position adjacent to the main body housing 55. When the cartridge 40 is attached to the main body 50, the contact portion 511 allows the container 42 to fit tightly against the column 52.
[0055] 7 shows an aerosol generating device according to an embodiment different from the embodiment of the present disclosure disclosed in FIGS. 1 to 6. Referring to FIG. 7, when the cartridge 40 is attached to the main body 50, a portion of the absorbing member 41′ can be inserted into the hole 523 of the column 52. The absorbing member 41′ can face the susceptor 56′.
[0056] The absorbing member 41 and the susceptor 56' may be formed in a plate shape and may face each other. The susceptor 56' may form a part of the outer wall of the coil housing 53. The susceptor 56' may be located inside the column 52. The susceptor 56' may be located between the hole 523 of the column 52 and the coil 57.
[0057] A flow path b may be formed between the absorbing member 41' and the susceptor 56'. Air A flowing in through the through hole 551 may flow into the flow path b'. The susceptor 56', which is inductively heated by the coil 57, may provide heat to the adjacent absorbing member 41'. The aerosol generated by atomization and / or vaporization due to the provided heat may flow through the flow path b' and then flow out of the aerosol generating device through the hole 521.
[0058] 1 to 7, an aerosol generating device 1 according to one embodiment of the present disclosure includes a container 42 having an outer wall 422 that forms an internal storage space 424 for storing an aerosol generating material l, an absorption member 41 that forms at least a portion of the outer wall 422 of the container 42 and absorbs the aerosol generating material l, a susceptor 56 that is disposed adjacent to the absorption member 41 and provides heat to the absorption member 41, and a coil 57 that is formed of a pan coil wound multiple times from an innermost turn 572 to an outermost turn 573, is disposed adjacent to the susceptor 56, and induction heats the susceptor 56.
[0059] According to another aspect of the present disclosure, the aerosol generating device further includes a flow path b formed between the susceptor 56 and the coil 57, and the susceptor 56 is disposed between the absorption member 41 and the coil 57 and may have a through hole 561 through which the aerosol generated by the absorption member 41 flows into the flow path b.
[0060] According to another aspect of the present disclosure, the aerosol generating device may further include a main body 50 including a main body housing 55 to which the container 42 is coupled and in which a power source 100 electrically connected to the coil 57 is disposed.
[0061] According to another aspect of the present disclosure, the outer wall 422 of the container 42 may be elongated, and the main body 50 may further include a column 52 extending from the main body housing 55 to support the outer wall 422 of the container 42, and a side wall 51 connected to the column 52 and protruding from the main body housing 55.
[0062] According to another aspect of the present disclosure, the column 52 can include a coil housing 53 that protrudes from an interior surface of the column 52 and houses the coil 57 .
[0063] According to another aspect of the present disclosure, the side wall 51 may protrude from the main housing 55 in the longitudinal direction of the column 52, forming a mounting space 513 inside which the container 42 is mounted, and a portion 511 of the side wall 51 facing the susceptor 56.
[0064] According to another aspect of the present disclosure, the side wall 51 includes a contact portion 511 that contacts a portion of the outer wall 422 of the container 42 when the container 42 is attached to the main body 50, and the thicknesses W1 and W2 of the contact portion 511 may increase from the protruding end 514 of the side wall 51 toward the main body housing 55.
[0065] According to another aspect of the present disclosure, the susceptor 56 forms part of the outer surface of the column 52 and faces the contact portion 511, and the absorbent member 41 can be positioned between the contact portion 511 and the susceptor 56 when the container 42 is attached to the body 50.
[0066] According to another aspect of the present disclosure, the susceptor 56 can contact the absorbent member 41 when the container 42 is attached to the body 50 .
[0067] According to another aspect of the present disclosure, the gas supply device may further include a flow path b' formed between the susceptor 56' and the absorbing member 41'.
[0068] The specific embodiments or other embodiments of the present disclosure described above are not mutually exclusive or distinct, and the structure or function of any or all elements of the embodiments of the present disclosure described above can be combined with other elements or combined with each other.
[0069] For example, configuration A described in one embodiment of the present disclosure and drawings and configuration B described in another embodiment of the present disclosure and drawings can be combined with each other. That is, even if a combination between configurations is not directly described, the combination is possible unless it is described that the combination is not possible.
[0070] While the embodiments have been described above in accordance with a number of exemplary embodiments, it should be understood that many other variations and embodiments are possible for those skilled in the art that fall within the scope of the principles of the present disclosure. More particularly, various modifications and variations are possible in the components and / or arrangements of the subject combinations within the scope of the present disclosure, the drawings, and the appended claims. In addition to the modifications and variations of the components and / or arrangements, other uses will also be apparent to those skilled in the art.
Claims
1. A main body, a container having an outer wall defining an internal storage space for storing an aerosol-generating substance, the container being detachably coupled to the main body; a material forming at least a portion of the outer wall of the container, the material absorbing the aerosol-forming material; a susceptor provided on the body and positioned adjacent to the member for heating the member; a coil including a pan coil wound multiple times from an innermost turn to an outermost turn, the coil being disposed adjacent to the susceptor and inductively heating the susceptor; The aerosol generating device, wherein the member faces the susceptor when the container is attached to the main body.
2. a flow path is located between the susceptor and the coil; The aerosol generating device according to claim 1 , wherein the susceptor is disposed between the member and the coil and has a through hole through which the aerosol generated by the member can flow into the flow path.
3. The aerosol generating device according to claim 2 , wherein the main body includes a main body housing having a power source disposed therein and electrically connected to the coil.
4. A container having an outer wall forming an internal storage space for storing an aerosol-generating substance; a material forming at least a portion of the outer wall of the container, the material absorbing the aerosol-forming material; a susceptor disposed adjacent to the member and configured to heat the member; a coil including a pan coil wound multiple times from an innermost turn to an outermost turn, the coil being disposed adjacent to the susceptor and inductively heating the susceptor; a body to which the container is coupled; The container has an outer wall extending elongately, The body includes: a main body housing having a power source disposed therein and electrically connected to the coil; a column extending from the main body housing and supporting an outer wall of the container; The aerosol generating device further includes a sidewall connected to the column and protruding from the main housing.
5. The aerosol generating device according to claim 4 , wherein the column includes a coil housing that protrudes from an inner surface of the column and houses the coil.
6. The aerosol generating device according to claim 4 , wherein the side wall protrudes from the main housing in the longitudinal direction of the column, defines a mounting space in which the container is mounted, and a portion of the side wall faces the susceptor.
7. the side wall includes a contact portion that contacts a portion of the outer wall of the container when the container is attached to the main body; The aerosol generating device according to claim 6 , wherein the contact portion of the side wall increases in thickness from the protruding end of the side wall to the main body housing.
8. the susceptor forms a portion of the outer surface of the column and faces the contact portion of the sidewall; The aerosol generating device according to claim 7 , wherein the member is disposed between the contact portion of the side wall and the susceptor when the container is attached to the main body.
9. The aerosol generating device according to claim 8 , wherein the susceptor contacts the member when the container is attached to the body.
10. The aerosol generating device according to claim 1 , wherein a flow path is located between the susceptor and the member.
Citation Information
Patent Citations
Electronic cigarette capable of preheating and guiding tar
CN111820462A
Cartridges for aerosol generation systems
JP2017507647A
Aerosol generation system with planar induction coil
JP2017519492A
Aerosol generating device and system
JP2021509579A
Nebulizers and aerosol delivery devices
JP2021524737A