Vaporization device
Abstract
A vaporization device includes a mouthpiece, an inner shell, a first pod, a second pod, a one-way valve, and a carbon monoxide sensor. The mouthpiece has first opening. The inner shell is disposed in the mouthpiece. The inner shell has a second opening in fluid communication with the first opening. The first pod is disposed in the inner shell. The first pod is configured to hold a nicotine-containing liquid. The second pod is disposed in the inner shell. The second pod is configured to hold a non-nicotine-containing liquid. The one-way valve is positioned over the second opening. The one-way valve is configurable between an open position and a closed position. The carbon monoxide sensor is disposed in the mouthpiece.
Claims
exact text as granted — not AI-modified1 . A vaporization device, comprising:
a mouthpiece having a first opening; an inner shell disposed in the mouthpiece, the inner shell having a second opening in fluid communication with the first opening; a first pod disposed in the inner shell, the first pod configured to hold a nicotine-containing liquid; a second pod disposed in the inner shell, the second pod configured to hold a non-nicotine-containing liquid; a one-way valve positioned over the second opening, the one-way valve configurable between an open position and a closed position, the one way valve directing two airflow pathways defined in the mouthpiece; and a carbon monoxide sensor disposed in the vaporization device.
2 . The vaporization device of claim 1 , further comprising:
a first activation element disposed in the first pod, the first activation element configured to heat the nicotine-containing liquid to form a first vapor; and a second activation element disposed in the second pod, the second activation element configured to heat the non-nicotine-containing liquid to form a second vapor.
3 . The vaporization device of claim 2 , further comprising:
a microcontroller in communication with the first activation element and the second activation element, the microcontroller configured to vary an amount of power applied to the first activation element and the second activation element.
4 . The vaporization device of claim 3 , wherein the microcontroller stores a dosage plan that defines the amount of power to be applied to the first activation element and the second activation element.
5 . The vaporization device of claim 1 , wherein the carbon monoxide sensor is configured to measure an amount of carbon monoxide and/or carbon monoxide present in a user's breath.
6 . The vaporization device of claim 2 , wherein the inner shell defines a channel in the mouthpiece, wherein the first vapor mixes with the second vapor in the channel to form a vapor mixture to be delivered to a user.
7 . The vaporization device of claim 1 , further comprising:
an indicator, wherein the indicator is configured to emit a light gradient.
8 . The vaporization device of claim 1 , wherein the one-way valve is configurable to the open position when negative pressure is created in the mouthpiece.
9 . The vaporization device of claim 1 , further comprising:
one or more air passages, the one or more air passages configured to allow air to exit the mouthpiece.
10 . A vaporization device, comprising:
a mouthpiece having a first opening; an inner shell disposed in the mouthpiece, the inner shell having a second opening in fluid communication with the first opening; a first pod disposed in the inner shell, the first pod configured to hold a medication-containing liquid; a second pod disposed in the inner shell, the second pod configured to hold a non-medication-containing liquid; a one-way valve positioned over the second opening, the one-way valve configurable between an open position and a closed position; and a vapor filtration mesh disposed in the mouthpiece.
11 . The vaporization device of claim 10 , further comprising:
a first activation element disposed in the first pod, the first activation element configured to heat the medication-containing liquid to form a first vapor; and a second activation element disposed in the second pod, the second activation element configured to heat the non-medication-containing liquid to form a second vapor.
12 . The vaporization device of claim 11 , further comprising:
a microcontroller in communication with the first activation element and the second activation element, the microcontroller configured to vary an amount of power applied to the first activation element and the second activation element.
13 . The vaporization device of claim 12 , wherein the microcontroller stores a dosage plan that defines the amount of power to be applied to the first activation element and the second activation element.
14 . The vaporization device of claim 10 , wherein the vapor filtration mesh is configured to filter contaminants.
15 . The vaporization device of claim 10 , further comprising:
one or more air passages, the one or more air passages configured to allow air to exit the mouthpiece.
16 . The vaporization device of claim 15 , wherein the one-way valve is configurable to the open position when negative pressure is created in the mouthpiece.
17 . The vaporization device of claim 15 , wherein the one-way valve is configurable to the closed position when a user exhales into the mouthpiece, wherein, in the closed position, the one-way valve forces an exhale of the user to pass through the vapor filtration mesh, towards the one or more air passages.
18 . A computer-implemented method, comprising:
generating an initial smoking cessation plan based on one or more inputs provided by a client device in communication with a vaporization device, the initial smoking cessation plan comprising one or more phases, wherein each phase is associated with a predefined ratio of a vapor mixture for the vaporization device to deliver to a user; loading the initial smoking cessation plan onto the client device; receiving one or more streams of usage statistics associated with the user's use of the vaporization device; receiving a carbon monoxide and/or carbon monoxide reading from a carbon monoxide sensor disposed in the vaporization device; analyzing the one or more streams of usage statistics and the carbon monoxide and/or carbon monoxide reading to determine whether the user's use of the vaporization device is in accordance with the initial smoking cessation plan; determining that the user's use of the vaporization device deviates from the initial smoking cessation plan; and modifying the initial smoking cessation plan based on the determining.
19 . The computer-implemented method of claim 18 , wherein the carbon monoxide and/or carbon monoxide reading indicates a level of nicotine present in the user's breath.
20 . The computer-implemented method of claim 18 , wherein the usage statistics comprise one or more uses of the vaporization device and a duration associated with each use of the one or more uses.Join the waitlist — get patent alerts
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