CA3154135A1 - Drug delivery system with stackable substrates - Google Patents
Drug delivery system with stackable substrates Download PDFInfo
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- CA3154135A1 CA3154135A1 CA3154135A CA3154135A CA3154135A1 CA 3154135 A1 CA3154135 A1 CA 3154135A1 CA 3154135 A CA3154135 A CA 3154135A CA 3154135 A CA3154135 A CA 3154135A CA 3154135 A1 CA3154135 A1 CA 3154135A1
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- herbal
- sheet
- coated substrate
- substrate
- coating
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- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24F—SMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
- A24F40/00—Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
- A24F40/40—Constructional details, e.g. connection of cartridges and battery parts
- A24F40/42—Cartridges or containers for inhalable precursors
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- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24F—SMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
- A24F40/00—Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
- A24F40/20—Devices using solid inhalable precursors
-
- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24F—SMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
- A24F40/00—Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
- A24F40/40—Constructional details, e.g. connection of cartridges and battery parts
- A24F40/46—Shape or structure of electric heating means
-
- 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
- A24F40/70—Manufacture
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61M—DEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
- A61M11/00—Sprayers or atomisers specially adapted for therapeutic purposes
- A61M11/04—Sprayers or atomisers specially adapted for therapeutic purposes operated by the vapour pressure of the liquid to be sprayed or atomised
- A61M11/041—Sprayers or atomisers specially adapted for therapeutic purposes operated by the vapour pressure of the liquid to be sprayed or atomised using heaters
- A61M11/042—Sprayers or atomisers specially adapted for therapeutic purposes operated by the vapour pressure of the liquid to be sprayed or atomised using heaters electrical
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61M—DEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
- A61M2205/00—General characteristics of the apparatus
- A61M2205/02—General characteristics of the apparatus characterised by a particular materials
- A61M2205/0233—Conductive materials, e.g. antistatic coatings for spark prevention
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61M—DEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
- A61M2205/00—General characteristics of the apparatus
- A61M2205/02—General characteristics of the apparatus characterised by a particular materials
- A61M2205/0238—General characteristics of the apparatus characterised by a particular materials the material being a coating or protective layer
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- Health & Medical Sciences (AREA)
- Life Sciences & Earth Sciences (AREA)
- General Health & Medical Sciences (AREA)
- Biomedical Technology (AREA)
- Heart & Thoracic Surgery (AREA)
- Hematology (AREA)
- Engineering & Computer Science (AREA)
- Animal Behavior & Ethology (AREA)
- Anesthesiology (AREA)
- Public Health (AREA)
- Veterinary Medicine (AREA)
- Disinfection, Sterilisation Or Deodorisation Of Air (AREA)
- Medicines Containing Plant Substances (AREA)
- Agricultural Chemicals And Associated Chemicals (AREA)
- Medical Preparation Storing Or Oral Administration Devices (AREA)
Abstract
Description
CLAIM OF PRIORITY
[0001] This patent application claims the benefit of priority to U.S.
Provisional Application Serial No. 63/023,998, filed May 13, 2020, and also claims the benefit of U.S.
Provisional Application Serial No. 62/901,073, filed September 16, 2019, which applications are both incorporated by reference herein in their entireties.
BACKGROUND
Patent No.
9,408,986. The Vapor Cartridge can be constructed from an extruded aluminum substrate.
Liquid aluminum can be extruded to create a conductive substrate which consists of multiple parallel electrical circuits defined by parallel, low resistance, conductors on either side of a high resistance heating elements as shown in Fig's. 2A and 2B. When a current is driven through one of the parallel conductors through the high resistance heating element section returning to the other parallel conductor, that element heats up and volatizes the coating of cannabinoids previously deposited.
SUMMARY
The multiple conductors are present so as to section the sheet and coating and/or mesh and coating into separate sections. In a preferred embodiment, the sections of mesh are arranged so that multiple conductors of another sheet may fit in the spaces between the sections of mesh. In this embodiment, the conductor and corresponding mesh space arrangement enables fitting together multiple sheets in a stacked arrangement.
BRIEF DESCRIPTION OF DRAWINGS
Fig. 1 discloses a prior art thermal distillation process.
Fig's. 2A and 2B disclose a prior art coated substrate with sections of herbal essence coatings.
Fig. 3 discloses a prior art vapor cartridge Fig. 4 discloses a prior art process for making the vapor cartridge of Fig. 3.
Fig. 5 discloses a prior art sealed vapor cartridge.
Fig. 6 discloses a prior art sketch showing the use of the vapor device.
Fig's. 7A and 7B disclose a prior art drug (herbal essence) delivery device.
Fig. 8 discloses a prior art block diagram of a volatilizing chamber.
Fig's. 9A and 9B discloses the prior art process for conversion of plant material into herbal essence vapors for inhalation with cannabinoid essences being exemplified.
Fig's. 10A, 10B and 10C disclose front and side views of a coated substrate with mesh sections.
Fig's. 11A, 11B and 11C disclose front and top views of the coated substrate with sections of coating but without mesh sections.
Fig' s.12A and 12B disclose the coated substrate with and without mesh, both having one section spanning the width of the coated substrate.
Fig. 13A discloses stacking to give stacked multiple coated substrates of Fig.
10A.
Fig. 13B discloses the stacked, multiple coated substrates of Fig. 11A.
Fig. 13C discloses the side view of stacking to give stacked multiple coated substrates of Fig.
10A.
Fig. 14 discloses a vaporization process for coating mesh sections of a substrate with mesh sections.
Fig. 15 discloses a stacked vapor cartridge.
Fig. 16 discloses a delivery device with vapor cartridge of stacked coated substrates according to Fig. 15.
Fig. 17A discloses a process for production of coated substrate with coating sections and a holding frame, no mesh.
Fig's. 17B, 17C and 17D disclose template use to form reservoir sections of herbal extract on a conductive substrate of Fig 18B.
Fig. 17E discloses a process for production of the coating substrate of Fig 18B from a liquid mixture of herbal essence in volatile solvent.
Fig's. 18A, 18B and 18C disclose detail of template/mask technique for preparation of a coated substrate.
Fig's. 19A and 19B disclose a coated substrate with non-conductive holding frame.
Fig. 20 discloses a combination of a coated substrate of Fig 18B with holding frame.
Fig. 21 discloses a package of the stack of Fig. 20.
Fig. 22 discloses a grid with conductive rails.
Fig. 23 discloses the combination of a coated substrate of Fig. 18B and grid with conductive rails of Fig. 22.
Fig. 24 discloses technique for powering the combination of Fig. 23.
Fig. 25 discloses technique for powering a stack of the coated substrates of Fig. 18B
according to the technique of Fig. 24.
.. Fig. 26A and 26B disclose air flow direction and section vaporization from a stack according to the technique of Fig. 25.
Fig. 27 discloses side view of stack with section vaporization depicted by Fig's. 26A and 26B.
Fig. 28 discloses a device for use with a vapor cartridge.
DEFINITIONS
Preferably, these parts may be selected to provide only the plant part containing the desired herbal extract if appropriate. The term "herbaceous plant material" is understood to mean comminuted herbaceous plant material unless in context this term describes a whole plant.
includes any of the phrases "one or more herbal extracts/essences" an "herbal extract or extracts or essence or essences", and herbal extract or essence, in other words, the singular herbal extract/essence and the plural herbal extracts/essences, i.e., multiple herbal extracts/essences.
and/or "volatilization" are understood to mean vaporization of an herbal extract/essence from a material, which is either a liquid or a solid and can be vaporized to a gas or vapor phase. In an example, one or more herbal extracts/essences described herein may start as a solid or an oil and be heated such that the one or more herbal extracts/essences vaporize.
The one or more herbal extracts/essences may transition directly from the solid to the gas phase, a sublimation process, or the one or more herbal extracts may become a liquid and then vaporize to a gas. In an example, the one or more herbal extracts/essences described herein may be in a liquid or solid form prior to heating.
The entrainment does not require the herbal extract to vaporize into a gaseous state but instead to form an aerosol.
following a noun designates both the plural and singular forms of that noun.
In addition, where features or aspects of the invention are described in terms of Markush groups, it is intended, and those skilled in the art will recognize, that the invention embraces and is also thereby described in terms of any individual member and any subgroup of members of the Markush group, and the right is reserved to revise the application or claims to refer specifically to any individual member or any subgroup of members of the Markush group.
DETAILED DESCRIPTION
Essences serving as volatilization material include herbal essences obtained from comminuted material by extracting techniques. In an example, the one or more essences can include one or more herbal extracts of one or more herbaceous plants. In an example, the one or more essences can include at least one extract comprised of tetrahydrocannabinol (THC), cannabidiol (CBD), menthol, peppermint, hops, echinacea and similar herbal materials formulated as an oil or extract. Multiple coated substrates can be stacked together to form a .. Vapor Cartridge for use in a drug delivery device.
PRIOR ART SUBSTRATE
3. The process for forming the substrate with coating of an herbal essence such as a cannabinoid is illustrated by Fig. 1. The thermal chamber 100 contains source material as finely and uniformly chopped botanical herbs 104 with cannabinoids TCH, CBDA and DBNA illustrated as being produced from the herb. A controlled heat source 102 heats the botanical herb particulates 104 and vaporizes the herbal essences as vapors 106. A screen 108 captures any particulate floating on the current of vapor 106. Cooling bar 114 is maintained at a low temperature so as to keep substrate 112 (e.g. aluminum sheet) cold. Vapors 106 condense on the surface of cold substrate 112.
1 is illustrated by Fig's 2A and 2B. The aluminum substrate is divided into sections 204, 206, 210 and 208 by low resistance conductors 202. Herbal coating 218 forms a continuous coating on the substrate side opposite the conductors 202. Electrical current 222 (Fig 2B) from source 214 powers electrodes 212 (Fig 2A) and heats section 210 of the aluminum substrate. The heat volatilizes the section 216 of coating 218. Coated substrate 200 of Fig 2A
may be rolled into a vapor cartage 300 Fig 3. Non-conductive spacers 304 on top of combined herbal essence coating and aluminum substrate 314. Low resistance conductors 302 divide the aluminum substrate into sections 306, 308, 310 and 312. Sections 306, 308, 310 and 312 are the same as sections 204, 206, 208 and 210 of Fig's 2A and 2B.
7 include an air intake nozzle 704 for entry of air flow 702, air intake filter 707, vapor cartridge 708 inserted into vaporizing chamber 710 in reservoir chamber 709. Chamber 710 includes connections for the low resistance conductors of vapor cartridge 708 and the connection is indicated by LED
indicators 728. Dose of vaporized herbal essence 714 is passed through vortex chamber 711and venturi 712 and through misting ring 718 and injected mist 722 to produce herbal vapor 724 mixed with mist 720. the misted vapor 724 is drawn into the patient's lungs through mouthpiece 730. An expanded view of interface connector 726 with mist and controls is shown in Fig. 7B. The interface connectors 726 are connected to dose selection switch 742 and on/off control button 746. Mist reservoir 744 is connected by delivery tube (not shown) to misting ring 718. Functional block diagram 800 of Fig. 8 illustrates the operation of a device of Fig. 7. Electronics 824 delivers current to electrodes 810 and 812 to volatize coating 816 to produce vapor 818. Vapor 818 mixes with water mist to produce vapor 820 in mixing chamber 822. Electrodes 808 and 806 may be activated by electronics 824 to volatilize coating 814. Air intake filter 804 filters air 802 coming through air intake in filter 804.
9B. Raw cannabis 952 is converted to by thermal distillation to a coating on a substrate 954. The coated substrate is converted into a vapor cartridge 956 regulated by the FDA
958. The vapor cartridge is loaded into a drug delivery device 700 as described above for Fig. 7A.
STACKABLE SUBSTRATES
and 18A-C illustrate these components as a single article coated substrate, 1000, 1100 (Fig -- 10A, 11A) and 1800 (Fig 18A-C). The single article coated substrate may comprise a substantially inflexible flat sheet of electrically conductive material 1002 combined with mesh 1006 as shown by Fig's 10A-C. Alternatively, the single article coated substrate 1100 and 1802 Figs 11A and 18A-C may at least comprise a substantially inflexible, flat sheet of electrically conductive material alone shown as 1002 Fig 11A and 1802 of Fig's 18A-C.
When the single article coated substrate includes a mesh as shown by Fig 10A-C
1006, the mesh is attached to and combined with one side of the flat sheet 1002 and has a three-dimensional shape formed of filaments configured like a net forming the sides, bottom and top of an internally empty three-dimensional shape having a length, width and thickness. In a preferred configuration, the sheet 1002 and mesh 1006 are co-terminus so that their length and width dimensions are the same. One function of the mesh 1006 is to enable air flow appurtenant to the sheet 1002. Air flows through the openings in the net-like sides and bottom of the mesh. For the single article coated substrate configuration 1000 comprising the flat sheet 1002 combined with the mesh 1006, the herbal essence may comprise a film, layer and/or coating on the surface of the side of the sheet opposite the mesh, depicted by Fig 10A
with coating between conductors as section1008 on side of substrate 1002 opposite mesh 1006. Alternatively, substrate 1000 may comprise a film, layer and/or coating on the side of the sheet 1002 with the mesh 1006 so that the film, layer and/or coating of herbal essence covers the filaments of the mesh 1006 and corresponding surface of the sheet 1002. When the substrate 1000 has a film, layer and/or coating of herbal essence on the mesh and sheet surface, the mesh net openings remain substantially open so that air flow is enabled through the mesh even though a film, layer or coating of herbal essence on the mesh filaments is present. When the substrate comprises the flat sheet alone as shown by 1100 and 1800, Fig's 11A and 18B, the herbal essence may be a film, layer and/or coating 1120 and 1806 on the surface of one side of the flat sheet 1002, 1802. The coating 1120 1806 may be divided into sections separated by spaces 1130, 1808, Fig's 11A, 18B or by non-conductive temporary dividers 1804, Fig 18A, which may be cardboard or other nonconductive material.
and 18B and the sheet-mesh combination 1002/1006 of the single article substrate 1000, Fig 10A may be comprised of a malleable metal including but not limited to aluminum or copper or may comprise an electrically conductive polymeric material formed of an electrically conductive composition of a heat conductive polymer containing conductible metal particulates or a polymer and metal sheet laminate. deformable or plastically deformable.
silicone) polymers. The resistive potential of the sheet and sheet/mesh will be sufficient to generate heat and volatilize or cause air flow entrainment of the herbal extract(s).
also comprise conductors (1004, Fig 10A, 11A) that are formed of low electric resistance material such as copper or aluminum or other conductive metal or conductive polymer. The conductors are positioned on and connected to the sheet 1002 or sheet-mesh 1002/1006 so that .. an electric current applied to a pair of conductors will pass through the sheet or sheet-mesh and these features of the sheet or sheet-mesh are sufficiently resistive so that the current passing through these features will generate heat. The conductors can be attached to the sheet or sheet-mesh prior to coating with the one or more herbal essences to form the single article coated substrates. The conductors can be mill pressed into appropriate shapes along with mill .. pressing or molding the flat sheet feature of the substrate 1000, 1100 such that the conductors are thicker portions of the sheet feature of the substrate. Alternatively, separate low resistance material can be shaped into separate conductors 1004 and may be attached to the sheet feature 1002 of the substrate 1000 and 1100 by spot welding, soldering, adhesive bonding with electrically conductive adhesive, mechanically clamping and/or by otherwise forming an .. electrically conductive bond between the conductors 1004 and the sheet feature 1002 of the substrate 1000 and 1100. For single article coated substrate 1800, conductors comprise a separate part described below. The separate conductors mate with conductor contacts of the spaces 1808 of 1800 Fig 18B. The conductor contacts at spaces 1808 may be exposed sheet surface 1802 or may be conductor material described above formed into space 1808 fitting conductor contact shapes with slight to moderate thickness but less than the coating 1806 thickness. These conductor contacts may be bonded to the sheet at spaces 1808 as described above. The conductors and conductor contacts function as electrodes to electrify the sheet 1002 or the sheet-mesh 1002-1006 configurations of the substrate 1000 and 1100 so that electrification of the substrate 1000 and/or 1100 through the conductors and separate conductors with the conductor contacts will heat the coating and volatilize the one or more coated herbal essences to form an aerosol for inhalation. The conductors of substrates 1000 and 1100 may also function to separate multiple stacked, coated substrates 1000 and 1100 and provide structural support to the stacked substrates as depicted in Fig 13A
for a stack of substrate 1000's and Fig 13B for a stack of substrate 1100's. The stacks of Figs 13A and 13B
are supported by a non-conductive frame 1016 on which the stacks rest. For coated substrates 1100 (no mesh) and optionally for coated substrates 1000 (with mesh), the lengths of the conductors are preferably adjusted so that the stack of substrates has spaces between the layers of substrates thus providing air channels through and between the stacked substrates.
The lower sheet mesh conductor electrically connect with the corresponding mesh sections of the upper sheet-mesh thereby providing a second pathway for current conduction.
illustrates the multiple combination of single article coated substrates 1100 as segmented sheet configurations (no mesh) with conductors produced as described according to Fig 11A.
Conductors 1004 can be formed as part of the conductive sheet 1002 or can be attached to the conductive sheet 1002. In an example for coated substrate 1000 (Fig 10A), a conductive mesh material 1006 may be attached to an underside of the conductive sheet. As discussed above, one or more herbal essences can be coated onto the substrate 1000 by application of a composition of herbal essence and volatile solvent onto sections of the conductive sheet or onto sections of the conductive mesh.
and B (1612A, 1612B) of the stackable Vapor Cartridge 1500 causes current to flow through the bottom section of the Cartridge indicated by the arrow for air flow 1609.
The current heats this section of the Cartridge and volatilizes the herbal essence of the bottom section. The herbal essence delivery device can be reused with one or more replacement vapor cartridges after the first Vapor Cartridge is used and discarded.
STACKABLE SUBSTRATES IN A REUSABLE CARTRIDGE
The separations 1708 between sections 1710 of one or more herbal essences are free of any herbal essence so that the surface of the flat sheet 1702 is exposed at these separations. The separations 1708 and sections 1706 are best shown as 1808 and 1806 respectively on Fig. 18B.
Application of the one or more herbal essences to sections 1706 of the flat sheet 1702 defined by the template 1704 produces the coated flat sheet removably connected to the template (Fig 17C). The template may be separated from the coated sheet/template combination to provide the single article coated substrate 1700 shown in Fig 17D. The template may be repeatedly used to form additional flat sheets coated with separated sections of one or more herbal essences.
The delivery of mixture 1752 is coordinated with the movement of the combination so that mixture 1752 is applied to the sections 1706 of flat sheet 1702 outlined by the template rows 1710 (Fig 17C). The combination is dried as it exits the conveyer 1756 to volatilize solvent form mixture 1752 and produce solid sections 1706 of herbal essence (Fig 17C).
The single article coated substrates 1700 with disposable templates1704 may be stacked together for storage as shown at the right side of Fig 17E.
In this embodiment, the holding frame has a border and bars and is open in frame regions corresponding to the sections 1806 of herbal essence coatings on substrate 1802 (Fig 19A).
The combination of section coated substrate 1800 with post prep holding frame 1902 may be arranged into a group of framed, single article coated substrates for packaging into a container for use by a consumer. A package of single article coated substrates with post prep holding frames is depicted by Figs. 20 and 21. FIG. 21 shows an example of a packaged product ready for shipment. The package shown by Fig 21 is not a Vapor Cartridge directly insertable and operable in an herbal essence delivery device because the frames do not have bars of electrically conductor material.
22, 23, 24, 27 and 28 to receive the single article coated substrates. The delivery device depicted by Fig 28 .. incorporates an activation grid 2200 (Fig 22) which includes a conductor plate 2204 constructed with multiple power rails 2206 mounted on nonelectrically conductive bottom 2204 for applying current 2010 to the single article coated substrate 1800 (Fig 23). Once the single article coated substrate 1800 is secured to the activation grid 2200, one or more sections of the substrate 1800 between rails 2206 can be electrified through the power rails 2206 of the .. activation grid 2200 driving an electrical current through corresponding sections of the conductive substrate 1800. The electrification of the power rail sections heats the one or more sections 1806 of herbal essence coating and causes the coating on that particular section or sections to volatilize into a vapor. FIG. 24 shows an example of activation chamber having four sections (2208A-B, 2208B-C, 2208C-D and 2208D-E) with section 2208D-E
being electrified. The power rails 2206 of the activation grid 2200 fit into the spaces between the separate sections 1808 of herbal essence coatings on the single article coated substrate 1800 as shown by Fig. 24. As shown by Fig 23, the electrically conductive channels 1808 of the .. coated substrate 1800 are the uncoated portions of the substrate 1802.
These channels 1808 are in direct contact with the power rails 2206. Current may be applied to pairs of power rails such as is shown for rails 2208D and 2208E of Fig's 22 and 24. The flat sheet is electrically conductive and generates resistive heating when a current is applied. Electric activation of rails 2208D and 2208E (Fig. 24) generates resistive heating only at the section 2402 of the single article coated substrate between the conductive channels of the coated substrate corresponding to rails 2208D and 2208E. The heating in turn volatilizes the corresponding section of herbal essence coating as shown by the mist 2404 of Fig 24.
The conductor plate 2204 of the activation grid 2200 is constructed of non-electrically conductive material so that only the rails mounted on the bottom conduct electricity. In this manner a circuit between two rails is formed only when the two rails are connected by the sheet 1802 of coated substrate 1800. The activation grid 2200 of Fig. 22 is permanently positioned underneath the "vapor cartridge" 100 of Fig. 28. The outer case 2802 of the device of Fig. 28 can be opened by a hinge at the bottom of the device. Upon opening the outer case, the single article coated substrate1800 appearing as the vapor cartridge 100 of Fig. 28 can be removed and a new single article 1800 placed onto the power rails 2206.
Closing the outer case and activating the power and electronics bar 2804 enables operation of the device. An air flow gate 2806 corresponding to the section of herbal essence coating to be volatilized (dotted line 2808) is opened either manually or electronically. Volatilized herbal essence is carried by the air flow in the direction indicated by the arrow 2808 and is carried through the air flow tube 2810 to the mouthpiece 1818 to be inhaled by the consumer.
The activation chamber and case of the device 2800 (Fig 28) may be arranged with one set of sides of the activation grid 2200 (Fig 25) permanently attached to one side of the case housing 2802 (Fig 28) and the other sides of the multiple activation grid are open and spaced so that the multiple activation grids form slots 2530 between them. The plates 2204 of the activation grids 2200 are constructed of non-electrically conductive material so that only the rails mounted in the plates conduct electricity. In this manner a circuit between two rails is formed only when the two rails are connected by the coated substrate sheet1800. The multiple single .. article coated substrates 1800 may be inserted into the slots 2530 so that the rails 2206 of each conductor plate 2200 (Fig 25) fit onto the spaces 1808 between the sections 1806 of herbal essence coating substrates 1800. Closing the outer case enables the device with multiple single article coated substrates 1800 in the slots 2530 and mated with the rails 2206 of multiple activation grids 2200. The electric wire connections 2208A-E (Fig 25) are made separately for each activation grid so that with three activation grids, there are fifteen A-E
connections. Generally, with an appropriate multiple conductor plate arrangement in the housing case, the attachment between the activation grids 2200 and the housing is designed so that the single article coated substrates 1800 can be inserted onto the rails 2206 so as to sandwich the single articles coated substrates 1800 into the slots between the stacked multiple conductor plates. In one such embodiment, the sides of the activation grids 2200 to which the electrical connections A-E are made are also the sides permanently attached to the case housing 2802 (Fig 28). In another embodiment, the two sides of the activation grids perpendicular to the side with the electrical connections A-E may be permanently attached to the case housing. When the case housing is open, the sides of the activation grids opposite the electrical connections are open so that the single article coated substrates 1800 may be fitted onto the rails of the activation grids by sliding the single article coated substrates into the slots between the activation grids.
Activation and selective powering of the rails of the conductor plates operates as described above.
Extraction of Herbal Essences for Preparation of Coated Substrate
The most useful forms of such herbal substances or extracts and semi-synthetic compounds are the free base or free acid forms or neutral, un-complexed forms. These forms lend themselves to volatilization and/or molecular entrainment as vapors and/or aerosols. The salt forms of bases and acids as well as complexed forms of neutral compounds can preferably be converted into the non-salt and/or non-complexed forms for use according to the invention.
While specific processing techniques for production of herbal essences are not a limitation of the invention, the thermal and extractive techniques set forth in the following discussion provide exemplary processes for such production.
These techniques are presented in US Patent No's 9,220,294 and 10,661,036, the disclosures of which are incorporated herein by reference. For heat volatilization, the purification can include heating the pre-processed plant material to volatilize the herbal extract(s). Specific steps can depend on the form of the herbaceous plant material. The volatilized herbal extract(s) can then be condensed directly onto a substrate such as a flat sheet to form a substrate coated with the herbal extract(s) or may be condensed and deposited in a storage container for subsequent coating on a substrate. In an example of direct condensation, the condensation of volatilized herbal extract(s) onto a substrate can be accomplished through cooled absorption or cooled adsorption of the volatilized herbal extract. In an example of storage condensation, the volatilized herbal extract(s) may be transported as vapors to a condenser apparatus which condenses the vapors to liquids, oils and/or solids and deposits the liquids, oils and/or solids in a storage container. The stored herbal essences may be re-volatilized by heat techniques at a later time to deposit the volatilized herbal extract on a substrate. Alternatively, herbal essences manufactured by third parties may be employed similarly to form herbal essence coatings on substrates by heat volatilization and cooled absorption or cooled adsorption o the volatized herbal extract(s) on the substrate(s). The purification and coating steps can also be practiced multiple times or simultaneously practiced with multiple apparatuses to produce multiple herbal extracts deposited as overlapping layers or segregated layers on the substrate.
Application may be made by spray nozzles, jet fingers or a film applicator. With the vapor, the transport and delivery features may be heated to preserve at least in part the vapor phase of the herbal substances.
Miscellaneous Statements
or "one or more." In this document, the term "or" is used to refer to a nonexclusive or, such that "A or B" includes "A but not B," "B but not A," and "A and B," unless otherwise indicated. In this document, the terms "including" and "in which" are used as the plain-English equivalents of the respective terms "comprising" and "wherein." Also, in the following claims, the terms "including" and "comprising" are open-ended, that is, a system, device, article, or process that includes elements in addition to those listed after such a term in a claim are still deemed to fall within the scope of that claim. Moreover, in the following claims, the terms "first," "second," and "third," etc. are used merely as labels, and are not intended to impose numerical requirements on their objects.
Rather, inventive subject matter may lie in less than all features of a particular disclosed embodiment. Thus, the following claims are hereby incorporated into the Detailed Description, with each claim standing on its own as a separate embodiment, and it is contemplated that such embodiments can be combined with each other in various combinations or permutations. The scope of the invention should be determined with reference to the appended claims, along with the full scope of equivalents to which such claims are entitled.
Claims (31)
providing the electrically conductive sheet with multiple conductors;
depositing one or more herbal essences onto the sheet to form the coated substrate; and stacking multiple coated substrates to form the cartridge.
depositing one or more herbal essences onto the sheet with multiple mesh structures so as to form the sections of coatings on the sheet side opposite the mesh structures or on the mesh structures to form the coated substrate; and, stacking multiple coated substrates to form the cartridge.
providing the electrically conductive sheet;
depositing one or more herbal essences onto the sheet to form the coated substrate;
combining the coated substrate with the grid to form the grid-substrate combination; and stacking multiple grid-substrate combinations and joining the solid support structures to the sides of the plates to form the cartridge.
providing an electrically conductive sheet;
depositing one or more herbal essences onto the conductive sheet as separate coating sections thereby producing the coated substrate;
combining the coated substrate and the non-conductive holding frame to form the coated substrate with frame; and stacking a multiple of the coated sheets with frames to provide the package.
Applications Claiming Priority (5)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US201962901073P | 2019-09-16 | 2019-09-16 | |
| US62/901,073 | 2019-09-16 | ||
| US202063023998P | 2020-05-13 | 2020-05-13 | |
| US63/023,998 | 2020-05-13 | ||
| PCT/US2020/041446 WO2021055079A1 (en) | 2019-09-16 | 2020-07-09 | Drug delivery system with stackable substrates |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CA3154135A1 true CA3154135A1 (en) | 2021-03-25 |
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ID=71895225
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
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| US (1) | US11497249B2 (en) |
| EP (1) | EP4030941A1 (en) |
| CA (1) | CA3154135A1 (en) |
| MX (1) | MX2022003189A (en) |
| WO (1) | WO2021055079A1 (en) |
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| EP4687528A1 (en) * | 2023-03-29 | 2026-02-11 | Nicoventures Trading Limited | Article |
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-
2020
- 2020-07-09 EP EP20750054.7A patent/EP4030941A1/en active Pending
- 2020-07-09 MX MX2022003189A patent/MX2022003189A/en unknown
- 2020-07-09 CA CA3154135A patent/CA3154135A1/en active Pending
- 2020-07-09 WO PCT/US2020/041446 patent/WO2021055079A1/en not_active Ceased
- 2020-07-09 US US17/597,710 patent/US11497249B2/en active Active
Also Published As
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| MX2022003189A (en) | 2022-06-08 |
| EP4030941A1 (en) | 2022-07-27 |
| US11497249B2 (en) | 2022-11-15 |
| WO2021055079A1 (en) | 2021-03-25 |
| US20220256921A1 (en) | 2022-08-18 |
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