Aerosol Delivery System

The aerosol delivery system addresses the lack of flexibility in aerosol production by integrating a control circuit that allows for customizable aerosolization modes and periods, significantly enhancing user experience and system performance.

JP7675237B2Active Publication Date: 2025-05-12NICOVENTURES TRADING LTD
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Patent Information

Application Number
JP2024026404
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2019-11-29
Filing Date
2024-02-26
Publication Date
2025-05-12
Estimated Expiration
2040-11-27

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Abstract

To provide a user with flexibility over the aerosol produced by an aerosol provision system to improve the user experience of the aerosol provision system.SOLUTION: There is provided an aerosol provision system 100 comprising: a power source 110; an aerosol generating component 120; and a control circuit 130, wherein the control circuit is disposed to control the power source and the aerosol generating component to provide a selection between at least a predetermined aerosolization profile and a variable aerosolization period, to be applied to the aerosol generating material.SELECTED DRAWING: Figure 1
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Description

[Technical field]

[0001] The present invention relates to an aerosol delivery system, a method for producing an aerosol from an aerosol delivery system, and an aerosol delivery means. [Background technology]

[0002] Aerosol delivery systems are known. Some aerosol delivery systems include an aerosol generating component for generating an aerosol from an aerosol-generating material. Modern devices operate on demand, either by a user pressing a button or as a result of the user inhaling on the device before a puff is delivered to the user. Such devices deliver energy from a power source to the aerosol generating component. This settling process is repeated to provide more aerosol to the user.

[0003] It is desirable to provide users with flexibility over the aerosol generated by an aerosol delivery system to enhance the user experience with the aerosol delivery system.

[0004] The present invention is directed to solving some of the problems mentioned above. Summary of the Invention

[0005] Various aspects of the invention are set out in the following claims.

[0006] In some embodiments described herein, an aerosol delivery system is provided that includes a power source, an aerosol generating component, and a control circuitry configured to control the power source and the aerosol generating component to provide a selection of at least a predetermined aerosolization regime and a variable aerosolization duration to be applied to an aerosol generating material.

[0007] In some embodiments described herein, a method of generating an aerosol from an aerosol delivery system is provided, the method including providing a power source, providing an aerosol generating component, providing control circuitry configured to control the power source and the aerosol generating component, providing options consisting of at least a predetermined aerosolization regime and a variable aerosolization duration to be applied to the aerosol generating material, and applying the selected one of the predetermined aerosolization regime and the variable aerosolization duration to the aerosol generating material.

[0008] In some embodiments described herein, an aerosol delivery means is provided that includes a power means, an aerosol generating means, and a control circuitry, the control circuitry being arranged to control the power means and the aerosol generating means to provide a selection of at least a predetermined aerosolization regime and a variable aerosolization duration applied to the aerosol-generating material.

[0009] The present teachings are illustrated, by way of example only, with reference to the following figures: [Brief description of the drawings]

[0010] [Figure 1] 1 is a longitudinal cross-sectional view of an example aerosol delivery system. [Diagram 2] 1 is a longitudinal cross-sectional view of an example aerosol delivery system. [Figure 3A] 1 is a longitudinal cross-sectional view of an example aerosol delivery system. [Figure 3B] 1 is a longitudinal cross-sectional view of an example aerosol delivery system. [Figure 4] 1 is a simplified flow chart of a method for generating an aerosol according to one example.

[0011] While the invention is susceptible to various modifications and alternative forms, specific embodiments have been shown by way of example in the drawings and are herein described in detail. It is to be understood, however, that the drawings and detailed description thereof are not intended to limit the scope of the invention to the particular forms disclosed, but on the contrary, the scope of the invention is intended to cover all modifications, equivalents, and alternatives falling within the spirit and scope as defined by the appended claims. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS

[0012] Aspects and features of particular examples and embodiments are described and illustrated herein. Aspects and features of particular examples and embodiments may be conventionally implemented and will not be detailed or illustrated for the sake of brevity. It is understood that aspects and features of the apparatus and methods described herein that are not detailed may be implemented in accordance with any conventional technique for implementing such aspects and features.

[0013] The present disclosure relates to aerosol delivery systems, also referred to as aerosol delivery systems, such as e-cigarettes. In this disclosure, a "non-combustion based" aerosol delivery system is one that does not burn or combust the constituent aerosolizable materials of the aerosol delivery system (or its components) to facilitate delivery to a user. Throughout the following description, the terms "e-cigarette" or "electronic cigarette" are sometimes used, but it should be understood that these terms are used interchangeably with aerosol delivery system / device and electronic aerosol delivery system / device. Additionally, the terms "aerosol" and "vapor" and the related terms "vaporize", "volatilize" and "aerosolize" are commonly used interchangeably in the art.

[0014] 1, an aerosol delivery system 100 is shown. The aerosol delivery system 100 includes a power source 110. The aerosol delivery system 100 includes an aerosol-generating component 120. The aerosol delivery system 100 includes a control circuit 130. The control circuit 130 is arranged to control the power source 110 and the aerosol-generating component 120 to provide a selection of at least a predetermined aerosolization regime and a variable aerosolization duration applied to the aerosol-generating material.

[0015] The power source 110 is shown connected to the aerosol generation component 120. The connection may be an electrical connection that allows the power source 110 to provide an electrical signal to the aerosol generation component 120. The power source 110 may provide energy to the aerosol generation component 120 for aerosolization of the aerosol-generating material.

[0016] The power source 110 is shown connected to a control circuit 130. The control circuit 130 may control the delivery of energy from the power source 110 to the aerosol-generating component 120. The control circuit 130 may operate to control the delivery of energy from the power source 110 to the aerosol-generating component 120 to aerosolize a predetermined amount from the aerosol-generating material.

[0017] Power source 110 may be, in one example, a battery, etc. Power source 110 may include chemical energy that can be converted and distributed as electrical energy.

[0018] In the example shown in FIG. 1, aerosol delivery system 100 includes a housing 140 within which a power source 110, aerosol generating components 120, and control circuitry 130 are disposed.

[0019] The predetermined aerosolization regime may include multiple aerosolization phases and multiple non-aerosolization phases. The aerosolization phases may be phases in which the aerosol-generating component 120 is energized by the power source 110 under the control of the control circuitry 130. The non-aerosolization phases may be phases in which the aerosol-generating component 120 is not energized by the power source 110. The predetermined aerosolization regime may be a regime selected by a user who desires to deliver aerosol over an extended "smoking session." The predetermined aerosolization regime may thus have a series of active and inactive periods, the timing of which may be predetermined and different (or the same) for each period, thereby generating aerosol for inhalation at specific times over a predetermined period.

[0020] The variable aerosolization period is a continuous period of time, the length of which is variable, and is supplied to the aerosol generating component 120 by the power source 110 under the control of the control circuitry 130. The variable aerosolization period is a period of time during which aerosol is generated, and may be controlled by the user so that the user can select a relatively long or short length for the period. Thus, the variable aerosolization period does not have a non-aerosolization phase in parallel with an aerosolization phase. The variable aerosolization period is rather an on or off mode of use for the system 100. In one example, the maximum length of the variable aerosolization period is capped to prevent misuse of this setting. For example, the longest single use may be capped at around 30 seconds. This serves as a safety feature to protect the system 100.

[0021] Illustrated in example Figure 2 is an aerosol delivery system 200. Aerosol delivery system 200 has similar features to example aerosol delivery system 100 shown in Figure 1. Similar features have similar numbers increased by 100 and need not be discussed at length here.

[0022] The aerosol delivery system 200 shown in the example of FIG. 2 includes a control circuit 230 having an activation element 232 for controlling the power source 210 and the aerosol generating material 220. The activation element 232 may be a user-activated element (such as a button or switch), a user interface (such as a touch screen, a graphical user interface, etc.), and / or a sensor (such as a fingerprint scanner, a puff sensor, a QR code reader, a barcode reader, etc.). The activation element 232 may be activated following condition detection. The condition detection may be, for example, an RFID sensor detecting an RFID that is known to be enabled (e.g., by cross-referencing with a database of enabled RFIDs) such that the aerosol delivery system 200 is controlled to provide energy from the power source 210 to the aerosol generating component 220. The activation element may thus be user-activated or non-user-activated.

[0023] A puff detector may activate system 200 with a puff. The puff detector may detect when a user inhales on system 200 and therefore activate system 200 as a result. System 200 may be activated to provide a predetermined aerosolization regime or a variable aerosolization period, for example, based on the length of inhalation time or strength of inhalation. For example, a short inhalation (less than 2 seconds) will cause system 200 to provide an aerosolization period, and a long inhalation (greater than 2 seconds) will cause system 200 to provide a predetermined aerosolization regime. Those skilled in the art will recognize implementations that may utilize puff activation.

[0024] The control circuitry 230 may be configured to determine the state of the activation element 232 and determine whether to apply a predetermined aerosolization regime or a variable aerosolization duration to the aerosol-generating material based on the state of the activation element 232. This may be, for example, that the fingerprint scanner detects movement in a first direction that results in the selection and application of a predetermined aerosolization regime, or alternatively, that the fingerprint scanner detects movement in a second direction that results in the selection and application of a variable aerosolization duration.

[0025] 3A and 3B, an aerosol delivery system 300 is shown. The aerosol delivery system 300 has similar features to the example aerosol delivery system 200 of FIG 2. Similar features have similar numbers increased by 100. These need not be discussed at length here.

[0026] FIG. 3A illustrates an aerosol delivery system 300 including a control circuit 330 having an activation element 332. The activation element 332 is shown in a first state. The activation element 332 is shown as a physical component such as a button or switch, but could be any of the options discussed above. The activation element 332 merely illustrates the different states it may be placed in as implemented by a touch screen. The activation element 332 is placed in a first state and communicates to the control circuit 330 that it is in the first state. The control circuit 330 then controls the power source 310 to energize the aerosol generation component 320 in a first manner. FIG. 3B illustrates an example aerosol delivery system 300 with the activation element 332 in a second state, which is a state that causes the control circuit to control the power source 310 to energize the aerosol generation component 320 in a second manner. The activation element 332 is shown on the housing 340 of the aerosol delivery system 300, but may be located inside the aerosol delivery system 300.

[0027] In one example, therefore, activation element 322 may be a user-activated element, which may be a switch that acts in a first manner to subject the aerosol-generating material to a predetermined aerosolization regime and the switch that acts in a second manner to subject the aerosol-generating material to a variable aerosolization period. In the example of Figure 3, switch 332 is moved toward one end of system housing 340 for the first manner and toward the other end of system housing 340 for the second manner. In another example, it may be a push button that is slightly depressed for the first manner and more deeply / fully depressed for the second manner.

[0028] The control circuitry 330 may include a database or the like that stores the predetermined aerosolization modalities. The control circuitry 330 may thus provide a selection of a plurality of predetermined aerosolization modalities and variable aerosolization durations to be applied to the aerosol generating material, thereby allowing the aerosol delivery system 300 to provide an aerosol that is tailored to the user's preference. A first predetermined aerosolization modality may provide slightly more nicotine (for example) in the aerosol than a second predetermined aerosolization modality. The user may select a preferred selection of the predetermined aerosolization modality. The user may select from an activation element 332, such as a graphical user interface on a touch screen of the aerosol delivery system 300.

[0029] In another example, the predetermined aerosolization regime provided by the control circuitry may be based on the identity of the consumable. A consumable containing a particular aerosol generating material (or combination of aerosol generating materials) may be inserted into the aerosol delivery system 300 prior to use. The consumable may have a detectable element, such as a bar code, a QR code, or the like, which may be detected by the control circuitry 330 (or the activation element 332). This may enable the control circuitry 330 to provide a predetermined aerosolization regime to the consumable based on the particular aerosol generating material or materials present in the consumable when detected and recognized by the control circuitry 330. In this manner, a preferred predetermined aerosolization regime may be provided to any particular consumable of a wide range of consumables. This allows a user of the aerosol delivery system 300 greater flexibility in using the system.

[0030] The predetermined aerosolization regimes provided by the control circuitry 330 may differ from one another by any suitable factor. These regimes include the number of aerosolization stages, the intensity of the aerosolization stages, and the frequency of the aerosolization stages. In one example, a predetermined aerosolization regime for use with a consumable having a majority of the aerosol-generating material in menthol may have a lower intensity of the aerosolization stages (e.g., a lower operating temperature to generate aerosol from the aerosol-generating material) than a consumable having a majority of the aerosol-generating material in tobacco. This is based on the operating temperatures at which the menthol consumable and the tobacco consumable generate aerosol.

[0031] The consumable may have a number of different sections, each containing one or more aerosol-generating materials. A first section may be provided with a first predetermined aerosolization modality and a second section may be provided with a second predetermined aerosolization modality. The second predetermined aerosolization modality may be different from the first predetermined aerosolization modality.

[0032] In a specific example, the consumable has three sections. A first section may be heated to a low operating temperature (e.g., to release menthol). A second section may be heated to a high operating temperature (e.g., to release nicotine). A third section may be heated to an intermediate operating temperature (e.g., to release a humectant such as propylene glycol). A user may select which sections to use and in what order to tailor the aerosol or flavor preferences to the user.

[0033] This consumable product allows the user to take 10 puffs, so the frequency of variation in pattern may be with each puff being about every 30 seconds or so, as desired by the user.

[0034] The aerosol delivery system 300 may provide continuous aerosolization to any consumable provided to the aerosol delivery system 300 as a result of interaction with the activation element 332 in a predetermined manner. In one example, the activation element 332 is a button that, when fully depressed, results in continuous aerosolization being applied to the aerosol-generating material. In one example, the activation element 332 is biased against being depressed. In this example, the user depresses the button for as long as desired to generate aerosol and then releases it to stop the supply of energy from the power source 310 to the aerosol-generating component 320. In one example, the aerosol delivery system 300 is configured such that the aerosol delivery system 300 generates aerosol within about 2-3 seconds of activation.

[0035] The aerosol-generating component 320 may be a heating element. The aerosol-generating component 320 may be a heating mechanism or part of a heating mechanism. In one example, the aerosol-generating component 320 may be a heater for providing heat to the aerosol-generating material. The aerosol-generating component 320 may be a resistive heater that provides heat to the aerosol-generating material from an electrical current passed through the aerosol-generating material by the electrically connected power source 310. The aerosol-generating component 320 may be made of metal, ceramic, or the like.

[0036] In one example, the predetermined aerosolization modality may be a predetermined heating modality and the variable aerosolization duration may be a heating duration, in which activation of activation element 332 causes control circuit 330 to control the supply of energy from power source 310 to heater 320 to cause heating via the electrical resistance of heater 320.

[0037] Alternatively or additionally, the aerosol-generating component 320 may be part of an induction heater or induction heating system for providing heat to the consumables. In this example, the heating mechanism may be part of an induction heater that rapidly heats the aerosol-generating material.

[0038] The heater may have an operating temperature of about 160° C. to about 300° C. for aerosolization of the aerosol-generating material. Operating temperature is used herein to mean the temperature at which the aerosol is generated from the aerosol-generating material. This may vary based on the aerosol-generating material at which the aerosol is generated.

[0039] A simplified flow chart of a method for generating an aerosol is shown in Figure 4. The method 400 is shown in three steps 410, 420, 430. The first step 410 includes providing a power source, an aerosol generation component and a control circuit. The aerosol generation component may be in the form of a heater. Energy may be supplied to the aerosol generation component by a power source (or energy storage). The power source may be a battery or the like. The energy supplied to the aerosol generation component may be controlled by the control circuit. The control circuit may be arranged to control the power source and the aerosol generation component. The energy supplied to the aerosol generation component may be sufficient for the aerosol generation component to reach an operating condition, such as an operating temperature, for generating an aerosol from the aerosol-generating medium.

[0040] A second step 420 includes providing a selection of a predetermined aerosolization modality and a variable aerosolization duration, which is to be applied to the aerosol-generating material to generate an aerosol. A third step 430 includes applying the selected one of the predetermined aerosolization modality and the variable aerosolization duration to the aerosol-generating material. As described above, this selection occurs as a result of activation or a change in state of an activation element.

[0041] The aerosol delivery systems disclosed herein may include an aerosol-generating material disposed inside the housing, or the aerosol-generating material may be removably inserted into the housing. The aerosol-generating material may be in the form of a consumable product having a carrier support and an aerosol-generating material. The consumable product may include a number of different aerosol-generating materials.

[0042] The aerosol-generating component and the aerosol-generating medium may be positioned adjacent to one another prior to use or during thermal contact. The aerosol-generating component and the aerosol-generating medium may be positioned in a heater and wick combination. Thus, the aerosol-generating medium may be a liquid that is provided to the wick and then aerosolized by energy from the aerosol-generating component. The aerosol-generating medium may be contained in a liquid container or the like. The aerosol-generating component may be part of a cartomizer or the like.

[0043] In some embodiments, the non-combustion based aerosol delivery system is an e-cigarette, also known as a vaping device or electronic nicotine delivery system (END), although it should be noted that the presence or absence of nicotine in the aerosol generating material is not a requirement.

[0044] In some embodiments, the non-combustion based aerosol delivery system is a tobacco heating system, also known as a non-combustion heating system.

[0045] In some embodiments, the non-combustion based aerosol delivery system is a hybrid system that uses a combination of aerosolizable materials, one or more of which are heated to generate an aerosol. Each of the aerosolizable materials may be, for example, in the form of a solid, liquid, or gel, and may or may not contain nicotine. In some embodiments, the hybrid system includes a liquid or gel aerosolizable material and a solid aerosolizable material. The solid aerosolizable material may include, for example, tobacco or a non-tobacco product.

[0046] Typically, a non-combustion aerosol delivery system may include a non-combustion aerosol delivery device and an article for use with the non-combustion aerosol delivery device, however, it is also envisioned that an article that itself includes a means for powering an aerosol generating member may itself form a non-combustion aerosol delivery system.

[0047] In some embodiments, the non-combustion based aerosol delivery device may include a power source and a controller. The power source may be, for example, an electrical power source.

[0048] In some embodiments, an article for use in a non-combustion based aerosol sharing device may include an aerosolizable material, an aerosol-generating member, an aerosol-generating region, and a mouthpiece and / or a region for receiving the aerosolizable material.

[0049] In some embodiments, the aerosol generating component is a heater that can interact with an aerosolizable material to release one or more volatile substances from the aerosolizable material to form an aerosol.

[0050] In some embodiments, the substance to be delivered may be an aerosolizable material. An aerosolizable material, also referred to herein as an aerosol-generating material, is a material that can generate an aerosol when activated, for example, by heating, irradiation, or in some other way. The aerosolizable material may be in the form of a solid, liquid, or gel, for example, with or without nicotine and / or flavorants. In some embodiments, the aerosolizable material may include an "amorphous solid," alternatively referred to as a "monolithic solid" (i.e., non-fibrous). In some embodiments, the amorphous solid may be a dry gel. An amorphous solid is a solid material that holds a fluid, such as a liquid, within it. In some embodiments, the aerosolizable material may include, for example, about 50 wt%, 60 wt%, or 70 wt% amorphous solid to about 90 wt%, 95 wt%, or 100 wt% amorphous solid.

[0051] In some embodiments, the amorphous solid is formed from a gelling agent. In some embodiments, the amorphous solid comprises a gelling agent. The gelling agent may comprise one or more compounds selected from cellulosic gelling agents, non-cellulosic gelling agents, guar gum, acacia gum, and mixtures thereof.

[0052] In some embodiments, the cellulosic gelling agent comprises hydroxymethylcellulose, hydroxyethylcellulose, hydroxypropylcellulose, carboxymethylcellulose (CMC), hydroxypropylmethylcellulose (HPMC), methylcellulose, ethylcellulose, cellulose acetate (CA), cellulose acetate butyrate (CAB), cellulose acetate propionate (CAP), and combinations thereof. is selected from the group.

[0053] In some embodiments the gelling agent comprises (or is) one or more of hydroxyethyl cellulose, hydroxypropyl cellulose, hydroxypropyl methylcellulose (HPMC), carboxymethyl cellulose, guar gum or acacia gum.

[0054] In some embodiments, the gelling agent comprises (or is) one or more non-cellulosic gelling agents, including, but not limited to, agar, xanthan gum, gum arabic, guar gum, locust bean gum, pectin, carrageenan, starch, alginate, and combinations thereof, In some embodiments, the non-cellulosic gelling agent is alginate or agar.

[0055] The aerosolizable material may contain one or more active ingredients, one or more carrier components, and optionally one or more other functional ingredients. The amorphous solid may contain one or more active ingredients, one or more carrier components, and optionally one or more other functional ingredients.

[0056] The active ingredient may include one or more physiologically and / or olfactorily active ingredients included in the aerosolizable material to achieve a physiological and / or olfactory response in the user. The active ingredient may be selected from, for example, dietary supplements, nootropics, and psychotropic drugs. The active ingredient may be naturally occurring or synthetically obtained. The active ingredient may include, for example, nicotine, caffeine, taurine, or any other suitable ingredient. The active ingredient may include tobacco or other plant ingredients, derivatives, or extracts. In some embodiments, the active ingredient is a physiologically active ingredient and is selected from nicotine, nicotine salts (e.g., nicotine bitartrate / nicotine tartrate), nicotine-free tobacco substitutes, other alkaloids such as caffeine, or mixtures thereof.

[0057] In some embodiments, the aerosolizable material and / or amorphous solid is selected from one or more cannabinoid compounds selected from the group consisting of cannabidiol (CBD), tetrahydrocannabinol (THC), tetrahydrocannabinolic acid (THCA), cannabidiol acid (CBDA), cannabinol (CBN), cannabigerol (CBG), cannabichromene (CBC), cannabicyclol (CBL), cannabivarin (CBV), tetrahydrocannabivarin (THCV), cannabidivarin (CBDV), cannabichromevarin (CBCV), cannabigerovarin (CBGV), cannabigerol monomethyl ether (CBGM), cannabiersoin (CBE), and cannabicitran (CBT).

[0058] The aerosolizable material and / or amorphous solid may comprise one or more cannabinoid compounds selected from the group consisting of cannabidiol (CBD) and THC (tetrahydrocannabinol).

[0059] The aerosolizable material and / or the amorphous solid may include cannabidiol (CBD).

[0060] The aerosolizable material and / or amorphous solid may include nicotine and cannabidiol (CBD).

[0061] The aerosolizable material and / or amorphous solid may include nicotine, cannabidiol (CBD) and THC (tetrahydrocannabinol).

[0062] In some embodiments, the active ingredient is an olfactory active ingredient and is selected from "flavorants" and / or "flavoring agents," which, where local regulations permit, are used to create a desired taste, aroma, or other somatic sensation in a product for adult consumers. In some instances, such ingredients may be referred to as flavorants, flavoring agents, cooling agents, heating agents, and / or sweetening agents.They may be naturally occurring flavoring materials, plants, plant extracts, synthetically derived materials, or combinations thereof (e.g., tobacco, cannabis, licorice, hydrangea, eugenol, magnolia leaf, chamomile, fenugreek, clove, maple, matcha, menthol, Japanese peppermint, aniseed, cinnamon, turmeric, Indian spices, Asian spices, herbs, wintergreen, cherry, berry, red berry, cranberry, peach, apple, orange, mango, clementine, lemon, lime, tropical fruit, raspberry ... Roots, papaya, rhubarb, grapes, durian, dragon fruit, cucumber, blueberry, mulberry, citrus, Drambuie, bourbon, scotch, whiskey, gin, tequila, rum, spearmint, peppermint, lavender, aloe, cardamom, celery, cascarilla, nutmeg, sandalwood, bergamot, geranium, khat, naswar, betel quid, shisha, pine, honey extract, rose oil, vanilla, lemon oil, orange oil, orange blossom, cherry blossom, cassia, caraway, cognac, jasmine, ylang ylang, Sage, fennel, wasabi, pimento, ginger, coriander, coffee, hemp, peppermint oil from any species of the genus Mentha, eucalyptus, burdock, cocoa, lemongrass, rooibos, flax, ginkgo, hazel, hibiscus, bay, yerba mate, orange peel, rose, tea such as green or black tea, thyme, juniper, elderflower, basil, bay leaf, cumin, oregano, paprika, rosemary, saffron, lemon peel, mint, scutellaria, curcuma, cilantro, myrtle, black currant, valerian, pimento, melon. sucrose, damien, origanum, olive, lemon balm, lemon basil, chives, fennel, verbena, tarragon, limonene, thymol, camphene), flavor enhancers, bitter receptor site blockers, sensory receptor site activators or stimulants, sugars and / or sugar substitutes (e.g., sucralose, acesulfame potassium, aspartame, saccharin, cyclamate, lactose, sucrose, glucose, fructose, sorbitol, mannitol, etc.) and other additives such as charcoal, chlorophyll, minerals, botanicals or breath fresheners.They may be mimetics, synthetic or natural ingredients or blends thereof. They may be in any suitable form, for example liquids such as oils, solids such as powders, gases, or one or more extracts (e.g., licorice, hydrangea, magnolia leaf, chamomile, fenugreek, clove, menthol, peppermint, anise, cinnamon, herbs, wintergreen, cherry, berry, peach, apple, Drambuie, bourbon, Scotch, whiskey, spearmint, peppermint, lavender, cardamom, celery, cascarilla, nutmeg, sandalwood, bergamot, geranium, honey essence, rose oil, vanilla, lemon oil, orange oil, cassia, caraway, etc.). The ingredients may be imitation, synthetic or natural ingredients, or blends thereof. The ingredients may be in any suitable form, such as oils, liquids, powders, etc. The ingredients may be any suitable form, such as oils, liquids, powders, etc. The ingredients may be any suitable form, such as oils, liquids, powders, etc.

[0063] In some embodiments, the flavoring agent includes menthol, spearmint, and / or peppermint. In some embodiments, the flavoring agent includes cucumber, blueberry, citrus, and / or red berry flavorings. In some embodiments, the flavoring agent includes eugenol. In some embodiments, the flavoring agent includes flavorings extracted from tobacco. In some embodiments, the flavoring agent may include a sensory elicitor, which is chemically induced and recognized by stimulation of the fifth cranial nerve (trigeminal nerve) in addition to or instead of the aroma or taste nerves, and which may include agents that provide heating, cooling, tingling, and numbing sensations. A suitable heating agent is, but is not limited to, vanillyl ethyl ether, and a suitable cooling agent is, but is not limited to, eucalyptol, WS-3.

[0064] The carrier component may include one or more components capable of forming an aerosol. In some embodiments, the carrier component may include one or more of glycerin, glycerol, propylene glycol, diethylene glycol, triethylene glycol, tetraethylene glycol, 1,3-butylene glycol, erythritol, mesoerythritol, ethyl vanillate, ethyl laurate, diethyl suberate, triethyl citrate, triacetin, diacetin mixture, benzyl benzoate, benzyl phenyl acetate, tributyrin, lauryl acetate, lauric acid, myristic acid, and propylene carbonate.

[0065] In some embodiments, the carrier component comprises one or more polyhydric alcohols, such as propylene glycol, triethylene glycol, 1,3-butanediol, and glycerin, esters of polyhydric alcohols, such as glycerol mono-, di-, or triacetate, and / or aliphatic esters of mono-, di-, or polycarboxylic acids, such as dimethyl dodecanedioate and dimethyl tetradecanedioate.

[0066] The one or more other functional ingredients may include one or more pH adjusters, colorants, preservatives, binders, fillers, stabilizers, and / or antioxidants.

[0067] The aerosolizable material and / or the amorphous solid may include an acid. The acid may be an organic acid. In some of these embodiments, the acid may be at least one of a monobasic acid, a dibasic acid, and a tribasic acid. In some such embodiments, the acid may include at least one carboxylic acid functional group. In some such embodiments, the acid may be at least one of an alpha-hydroxy acid, a carboxylic acid, a dicarboxylic acid, a tricarboxylic acid, and a keto acid. In some such embodiments, the acid may be an alpha-keto acid.

[0068] In some such embodiments, the acid may be at least one of succinic acid, lactic acid, benzoic acid, citric acid, tartaric acid, fumaric acid, levulinic acid, acetic acid, malic acid, formic acid, sorbic acid, benzoic acid, propanoic acid, and pyruvic acid.

[0069] A suitable acid is lactic acid. In other embodiments, the acid is benzoic acid. In other embodiments, the acid may be an inorganic acid. In some of these embodiments, the acid may be a mineral acid. In some such embodiments, the acid may be at least one of sulfuric acid, hydrochloric acid, boric acid, and phosphoric acid. In some embodiments, the acid is levulinic acid.

[0070] An acid may be included in some embodiments where the aerosolizable material includes nicotine. In such embodiments, the presence of the acid stabilizes dissolved species in the slurry from which the aerosol-generating material is formed. The presence of the acid reduces or substantially prevents evaporation of the nicotine upon drying of the slurry, thereby reducing the loss of nicotine during production.

[0071] In certain embodiments, the amorphous solid comprises a gelling agent comprising a cellulosic and / or non-cellulosic gelling agent, an active agent, and an acid.

[0072] The amorphous solid material may include a colorant. The appearance of the amorphous solid may be altered by adding a colorant. The presence of a colorant in the amorphous solid may enhance the appearance of the amorphous solid and the aerosol-generating material. A colorant may be added to the amorphous solid to match the color of the amorphous solid to other components of the aerosol-generating material or article that includes the amorphous solid.

[0073] Various coloring agents may be used depending on the desired color of the amorphous solid. The color of the amorphous solid may be, for example, white, green, red, purple, blue, brown, or black. Other colors are also contemplated. Natural or synthetic coloring agents may be used, such as natural or synthetic dyes, food grade coloring agents, and pharmaceutical grade coloring agents. In certain embodiments, the coloring agent is caramel, which gives the amorphous solid a brown appearance. In such embodiments, the color of the amorphous solid may be similar to the color of other components in the aerosol-generating material that includes the amorphous solid, such as tobacco material. In some embodiments, the coloring agent is added to the amorphous solid to allow visual differentiation of other components of the aerosol-generating material.

[0074] The colorant may be incorporated into the amorphous solid during its formation (e.g., during the formation of a slurry containing the material that will form the amorphous solid) or may be applied to the amorphous solid after it has been formed. (e.g., by spraying onto an amorphous solid).

[0075] In some embodiments, an article for use with a non-combustion based aerosol delivery device may include an aerosolizable material or an area for receiving an aerosolizable material. In some embodiments, an article for use with a non-combustion based aerosol delivery device may include a mouthpiece. The area for receiving an aerosolizable material may be a storage area for storing the aerosolizable material. In some embodiments, the area for receiving an aerosolizable material may be separate from the aerosol generation area or may be incorporated into the aerosol generation area. They may be combined.

[0076] Thus, there has been described an aerosol delivery system that includes a power source, an aerosol generating component, and a control circuit, the control circuit arranged to control the power source and the aerosol generating component to provide a selection of at least predetermined aerosolization modes and variable aerosolization durations to be applied to an aerosol generating material.

[0077] The aerosol delivery system may be used in tobacco industry products, such as non-combustion based aerosol delivery systems.

[0078] In one embodiment, the tobacco industry product includes one or more components of a non-combustion based aerosol delivery system, such as a heater and an aerosolizable substrate.

[0079] In one embodiment, the aerosol delivery system is an e-cigarette, also known as a vaping device.

[0080] In one embodiment, an electronic cigarette includes a heater, a power source capable of powering the heater, an aerosolizable substrate such as a liquid or gel, a housing, and optionally a mouthpiece.

[0081] In one embodiment, the aerosolizable substrate is contained within or on a substrate container, hi one embodiment, the substrate container is combined with or includes a heater.

[0082] In one embodiment, the tobacco industry product is a heating product that releases one or more compounds by heating, but not burning, a substrate. The substrate can be an aerosolizable material, such as tobacco or other non-tobacco products, with or without nicotine. In one embodiment, the heating device product is a tobacco heating product.

[0083] In one embodiment, the heating product is an electronic device.

[0084] In one embodiment, the tobacco heating product includes a heater, a power source capable of powering the heater, and an aerosolizable substrate, such as a solid or gel material.

[0085] In one embodiment, the heated product is a non-electronic item.

[0086] In one embodiment, the heating product includes an aerosolizable substrate, such as a solid or gel material, and a heat source capable of providing thermal energy to the aerosolizable substrate without electronic means, such as by burning a combustible material, such as charcoal.

[0087] In one embodiment, the heating product also includes a filter capable of filtering the aerosol generated by heating the aerosolizable substrate.

[0088] In some embodiments, the aerosolizable substrate may include an aerosol or aerosol generating agent or a humectant such as glycerol, propylene glycol, triacetin, or diethylene glycol.

[0089] In one embodiment, the tobacco industry product is a hybrid system that generates an aerosol by heating, without burning, a combination of substrates. The substrates may, for example, comprise a solid, liquid, or gel, which may or may not contain nicotine. In one embodiment, the hybrid system may comprise a liquid or gel substrate and a solid substrate. The solid substrate may, for example, be tobacco or a non-tobacco product, which may or may not contain nicotine. In one embodiment, the hybrid system may comprise a liquid or gel substrate and tobacco.

[0090] To address various problems and advance the technology, the entire disclosure exemplarily illustrates various embodiments in which the claimed invention may be practiced to provide an improved electronic aerosol delivery system. The advantages and features of the disclosure are merely representative examples of embodiments, and are not exhaustive or exclusive. They are provided merely to aid in the understanding and teaching of the claimed features. It is to be understood that the advantages, embodiments, examples, functions, features, structures, and / or other aspects of the disclosure should not be construed as limiting the disclosure to the exact scope of the claims or to the equivalents of the claims, and that other embodiments may be utilized or modified without departing from the scope and / or spirit of the disclosure. Various embodiments may suitably comprise, consist of, or consist essentially of the disclosed elements, components, features, parts, steps, means, or other combinations. The disclosure also includes other inventions not currently claimed but which may be claimed in the future.

Claims

1. A power source; An aerosol-generating component; and a control circuit, the control circuitry is arranged to control the power source and the aerosol generating component to provide a selection between at least a predetermined aerosolization regime and a variable aerosolization duration applied to the aerosol generating material; The aerosol delivery system further includes a puff detector that detects when a user is inhaling on the system, and a choice between the predetermined aerosolization regime and the variable aerosolization period is provided based on the length of time or strength of inhalation.

2. 2. The aerosol delivery system of claim 1, wherein a short inhalation results in providing the system with the variable aerosolization period, and a long inhalation results in providing the system with the predetermined aerosolization pattern.

3. 3. The aerosol delivery system of claim 1, wherein the predetermined aerosolization regime comprises multiple aerosolization stages.

4. 4. The aerosol delivery system of claim 1, wherein the control circuitry includes an activation element for controlling the power source and the aerosol generating components.

5. 5. The aerosol delivery system of claim 1, wherein the control circuit is arranged to control the power source and the aerosol generating components to provide a selection between a plurality of predetermined aerosolization regimes and a variable aerosolization duration applied to the aerosol generating material.

6. The plurality of predetermined aerosolization modalities are different predetermined aerosolization modalities, the predetermined aerosolization modalities comprising: the number of aerosolization stages, the intensity of the aerosolization phase, and 6. The aerosol delivery system of claim 5, wherein the frequency of the aerosolization step is at least one of:

7. 7. The aerosol delivery system of claim 1, wherein the variable aerosolization period is a period of continuous aerosolization.

8. 8. The aerosol delivery system of claim 1, wherein the predetermined aerosolization regime includes periods of aerosolization and periods of non-aerosolization.

9. the aerosol-generating component is a heater; the predetermined aerosolization regime is a predetermined heating regime; 9. The aerosol delivery system of claim 1, wherein the variable aerosolization period is a heating period.

10. 10. The aerosol delivery system of claim 9, wherein the heater is an induction heater.

11. 11. The aerosol delivery system of claim 9 or 10, wherein the heater has an operating temperature of about 160°C to about 300°C.

12. For aerosol delivery systems, Providing a power source; Providing an aerosol-generating component; providing a control circuit configured to control the power source and the aerosol generating component; providing a choice between at least a predetermined aerosolization regime and a variable aerosolization duration applied to the aerosol-generating material; applying a selected one of the predetermined aerosolization regime and the variable aerosolization duration to the aerosol-generating material; further providing the system with a puff detector that detects when a user is inhaling on the system; and providing an option between the predetermined aerosolization regime and the variable aerosolization period based on the length of time or strength of inhalation.

13. 13. The method of claim 12, wherein the predetermined aerosolization regime comprises multiple aerosolization stages.

14. 14. The method of claim 12 or 13, further comprising activating an activation element to select the predetermined aerosolization regime and the variable aerosolization duration.

15. 15. The method of generating an aerosol according to any one of claims 12 to 14, wherein providing the predetermined aerosolization pattern comprises providing a predetermined number of aerosolization steps, providing aerosolization steps of a predetermined intensity, and providing aerosolization steps of a predetermined frequency.

16. 16. The method of claim 12, wherein providing a variable aerosolization period comprises providing a continuous aerosolization period.

17. Providing a choice between at least a predetermined aerosolization modality and a variable aerosolization duration includes: A plurality of predetermined aerosolization regimes including at least a plurality of aerosolization stages; 17. The method of any one of claims 12 to 16, further comprising providing a choice between a variable aerosolization period.

18. A power means; An aerosol generating means; and a control circuit, the control circuitry is arranged to control the power means and the aerosol generating means to provide a selection between at least a predetermined aerosolization regime and a variable aerosolization duration applied to the aerosol generating material; The aerosol delivery means further includes a puff detector that detects when a user is inhaling on the aerosol delivery means, and a choice between the predetermined aerosolization regime and the variable aerosolization period is provided based on the length of time of inhalation or the strength of inhalation.

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