System and method for dispensing plant essences, botanical fluids, isolates, and other distillates
Abstract
A system that atomizes one or more plant essences, botanical fluids, isolates, and other plant distillates to be administered by inhalation is provided. The system generally comprises a fluid, distributer, computing entity, processor operably connected to the computing entity and distributer, and non-transitory computer-readable medium coupled to the processor. Air furnished by the air supply may move through the manifold and into the cartridge where it is manipulated into a stream of fast-moving air. This stream of fast-moving air is then combined with fluid within the cartridge to create atomized fluid, which moves through the cartridge to an atomization outlet where it is dispersed within the environment. In some embodiments, a user may control the system via a user interface of the computing entity.
Claims
exact text as granted — not AI-modified1 ) A system for dispensing fluid comprising,
a fluid,
wherein said fluid has at least one of a physiological and psychological effect on a user,
a distributer having a casing, at least one cartridge, manifold, and air supply,
wherein said at least one cartridge and manifold are contained within said casing,
wherein said at least one cartridge contains said fluid within an internal reservoir,
wherein air pushed through said manifold and into said at least one cartridge by said air supply collides with said fluid to create atomized fluid,
wherein said atomized fluid is propelled out of said at least one cartridge through an atomization outlet,
wherein said atomized fluid is propelled out of said casing through a vent of said casing,
a computing device operably connected to said distributer,
wherein said computing device allows a user to control said distributer, and
a processor operably connected to said computing device and said distributer.
2 ) The system of claim 1 , wherein said distributer further comprises a suction device configured to remove said atomized fluid from said casing via said vent.
3 ) The system of claim 2 , wherein said distributer further comprises an inhalation tube secured to said vent, wherein said inhalation tube is connected at a first end to said vent, wherein said atomized fluid is pushed through said inhalation tube from said first end to a second end.
4 ) The system of claim 3 , wherein said distributer further comprises an inhalation member connected to a second end of said inhalation tube, wherein said inhalation member assists with inhalation of said atomized fluid.
5 ) The system of claim 1 , wherein said air supply pushes air through airways of said manifold and into a duct of said at least one cartridge, wherein a chokepoint of said duct causes said air to become a stream of fast-moving air, wherein said stream of fast-moving air collides with said fluid to create said atomized fluid.
6 ) The system of claim 5 , wherein said stream of fast-moving air creates a zone of lower pressure over a vacuum channel connecting said internal reservoir to said duct.
7 ) The system of claim 1 , further comprising a user interface of said computing device, wherein said user interface allows a user to input instructions that allow said user to create an effects profile, wherein said effects profile specifies an amount of fluid contained within said atomized fluid.
8 ) The system of claim 7 , further comprising a non-transitory computer-readable medium coupled to said processor, wherein said non-transitory computer-readable medium contains instructions stored thereon, which, when executed by said processor, cause said processor to perform operations comprising:
receiving said effects profile from said computing device, choosing said at least one cartridge from a plurality of cartridges secured to said manifold based on said effects profile, causing said air supply to provide said air to said manifold,
wherein an amount of air directed into said at least one cartridge via said manifold correlates to said amount of fluid contained within said atomized fluid and emitted from said at least one cartridge, and
stopping said air provided to said manifold when said amount of fluid is obtained.
9 ) The system of claim 1 , wherein said vent of said casing is operably connected to furniture configured to distribute said atomized fluid.
10 ) The system of claim 1 , further comprising audio/image data and an effects track,
wherein said effects track is associated with said audio/image data, wherein instructions of said effects track cause said distributer to create said atomized fluid and propel said atomized fluid out said vent while said audio/image data is presented via an output device of said computing device.
11 ) A system for dispensing fluid comprising,
a distributer having a casing, first cartridge containing a first fluid, second cartridge containing a second fluid, manifold, and air supply,
wherein said first fluid and said second fluid have at least one of a physiological and psychological effect on a user,
wherein said first cartridge, second cartridge, and manifold are contained within said casing,
wherein said first cartridge and said second cartridge are removably secured to said manifold,
wherein air pushed by said air supply through said manifold and into said first cartridge and said second cartridge collides with said fluid and said second fluid to create a first atomized fluid and a second atomized fluid,
wherein said first atomized fluid is propelled out of said first cartridge and said second atomized fluid is propelled out of said second cartridge via an atomization outlet,
wherein said first atomized fluid and said second atomized fluid are combined to create a mixed atomized fluid,
a computing device operably connected to said distributer,
wherein said computing device allows a user to control said distributer, and
a processor operably connected to said computing device and said distributer.
12 ) The system of claim 11 , wherein said distributer further comprises a suction device configured to remove said mixed atomized fluid from said casing.
13 ) The system of claim 12 , wherein said distributer further comprises an inhalation tube connected at a first end to said distributer, wherein said mixed atomized fluid is pushed through said inhalation tube from said first end to a second end.
14 ) The system of claim 13 , wherein said distributer further comprises an inhalation member connected to said second end of said inhalation tube, wherein said inhalation member assists with inhalation of said mixed atomized fluid.
15 ) The system of claim 11 , wherein said air supply pushes air through airways of said manifold and into a first duct of said first cartridge and a second duct of said second cartridge, wherein a chokepoint of said first duct and said second duct causes said air to become a first stream of fast-moving air and a second stream of fast moving air, wherein said first stream of fast-moving air and said second stream of fast-moving air collide with said first fluid and said second fluid to create said first atomized fluid and said second atomized fluid.
16 ) The system of claim 15 , wherein said first stream of fast-moving air creates a zone of lower pressure within said first duct, wherein said second stream of fast-moving air creates said zone of lower pressure within said second duct.
17 ) The system of claim 11 , further comprising a user interface of said computing device, wherein said user interface allows said user to input instructions that allow said user to create an effects profile, wherein said effects profile specifies an amount of first fluid and an amount of second fluid contained within said mixed atomized fluid.
18 ) The system of claim 17 , further comprising a non-transitory computer-readable medium coupled to said processor, wherein said non-transitory computer-readable medium contains instructions stored thereon, which, when executed by said processor, cause said processor to perform operations comprising:
receiving said effects profile from said computing device, choosing said first cartridge from a plurality of cartridges based on said effects profile, choosing said second cartridge from said plurality of cartridges based on said effects profile, causing said air supply to provide said air to said manifold,
wherein an amount of air directed into said first cartridge via said manifold correlates to said amount of first fluid contained within said mixed atomized fluid and emitted from said first cartridge,
wherein said amount of air directed into said second cartridge via said manifold correlates to said amount of second fluid contained within said mixed atomized fluid and emitted from said second cartridge, and
stopping said air provided to said manifold when said mixed atomized fluid is obtained.
19 ) The system of claim 11 , wherein a vent of said casing is operably connected to furniture configured to distribute said mixed atomized fluid.
20 ) The system of claim 11 , further comprising audio/image data and an effects track,
wherein said effects track is associated with said audio/image data, wherein instructions of said effects track cause said distributer to create said mixed atomized fluid while said audio/image data is presented via an output device of said computing device.
21 ) A system for dispensing fluid comprising,
a distributer having a casing, plurality of cartridges, manifold, and air supply,
wherein each cartridge of said plurality of cartridges contains a chemically distinct fluid,
wherein said chemically distinct fluid has at least one of a physiological and psychological effect on a user,
wherein said plurality of cartridges and said manifold are contained within said casing,
wherein air pushed by said air supply through said manifold and into said plurality of cartridges collides with said chemically distinct fluid contained within said plurality of cartridges to create a plurality of atomized fluids,
wherein said plurality of atomized fluids are combined within said casing to create a mixed atomized fluid,
a computing device operably connected to said distributer and having a user interface,
wherein said user interface allows a user to input instructions that create an effects profile, wherein said effects profile specifies which cartridges of said plurality of cartridges are used to create said mixed atomized fluid,
a processor operably connected to said computing device and said distributer, and a non-transitory computer-readable medium coupled to said processor, wherein said non-transitory computer-readable medium contains instructions stored thereon, which, when executed by said processor, cause said processor to perform operations comprising:
receiving said effects profile from said computing device,
choosing said cartridge of said plurality of cartridges based on said effects profile,
causing said air supply to provide said air to said manifold and into said cartridge of said plurality of cartridges used to create said mixed atomized fluid identified by said effects profile, and
stopping said air provided to said manifold when said mixed atomized fluid is obtained.
22 ) The system of claim 21 , wherein said distributer further comprises a suction device configured to remove said mixed atomized fluid from said casing.
23 ) The system of claim 22 , wherein said distributer further comprises an inhalation tube connected at a first end to said casing, wherein said mixed atomized fluid is pushed through said inhalation tube from said first end to a second end.
24 ) The system of claim 23 , wherein said distributer further comprises an inhalation member connected to said second end of said inhalation tube, wherein said inhalation member assists with inhalation of said mixed atomized fluid.
25 ) The system of claim 21 , further comprising audio/image data and an effects track,
wherein said effects track is associated with said audio/image data, wherein instructions of said effects track cause said distributer to create said mixed atomized fluid while said audio/image data is presented via an output device of said computing device.Join the waitlist — get patent alerts
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