Patent classifications
A24F40/50
Systems, devices, and methods for administering cannabinoid mixtures
A nebulizer device for administering aerosol cannabinoid mixtures to a user includes a mouthpiece, a first reservoir, a second reservoir, and a nebulizer device. The nebulizer module is configured to receive a first dosage of the first liquid from the first reservoir and a second dosage of a second liquid from the second reservoir. The nebulizer module is also configured to transform the first liquid into an inhalant and the second liquid into an aerosol that are provided to the user through the mouthpiece. The device further includes a dosage module configured to independently control the delivery of the first liquid and the second liquid to the nebulizer module to set a ratio between the first dosage of the first liquid and the second dosage of the second liquid. The dosage module thereby controls a composition of an aerosol cannabinoid mixture administered to the user.
OPTICAL MODULE AND AEROSOL GENERATING DEVICE COMPRISING THEREOF
An optical module includes a transmitter configured to pass light from a light source; an emitter integrally formed with the transmitter, and configured to emit light that has passed through the transmitter to outside of the optical module; and a converter covering at least a portion of the emitter, and configured to change a wavelength of light that has passed through the transmitter such that light emitted from the converter and light emitted from the emitter have different wavelengths.
OPTICAL MODULE AND AEROSOL GENERATING DEVICE COMPRISING THEREOF
An optical module includes a transmitter configured to pass light from a light source; an emitter integrally formed with the transmitter, and configured to emit light that has passed through the transmitter to outside of the optical module; and a converter covering at least a portion of the emitter, and configured to change a wavelength of light that has passed through the transmitter such that light emitted from the converter and light emitted from the emitter have different wavelengths.
AEROSOL-GENERATING SYSTEM HAVING A CARTRIDGE AND A BYPASS AIR INLET
An aerosol-generating system (includes a cartridge, a liquid aerosol-forming substrate, and an aerosol-generating device. The cartridge includes a cartridge housing and a solid aerosol-forming substrate. The aerosol-generating device includes a cavity configured to receive at least a portion of the cartridge, an airflow inlet, and an airflow sensor. The airflow sensor is in fluid communication with the airflow inlet and the cavity). The aerosol-generating device includes a bypass air inlet in fluid communication with the cavity, an electric heater configured to heat the liquid aerosol-forming substrate, a power supply, and a controller. The aerosol-generating system is configured so that the cartridge housing substantially prevents airflow through the bypass air inlet when the cartridge is received within the cavity.
AEROSOL PROVISION DEVICE AND METHOD
An apparatus and a method is described comprising: charging a battery of an aerosol generating device in a first mode of operation when a charge level of the battery is below a first threshold; and charging the battery of the aerosol generating device in a second mode of operation when the charge level of the battery is above the first threshold.
AEROSOL PROVISION DEVICE AND METHOD
An apparatus and a method is described comprising: charging a battery of an aerosol generating device in a first mode of operation when a charge level of the battery is below a first threshold; and charging the battery of the aerosol generating device in a second mode of operation when the charge level of the battery is above the first threshold.
Aerosol Generation Device with a Valve Position Detector and a Drying Cycle
The present disclosure concerns an aerosol generation device comprising a wicking element, a heating assembly configured to heat the wicking element, a removable capsule configured to contain a vaporizable material and having an aperture through which the vaporizable material can flow. The device comprises a valve arranged on the removable capsule, the valve having a closed position in which the aperture is closed to retain the vaporizable material in the removable capsule and an open position in which the aperture is open to release the vaporizable material from the removable capsule toward the wicking element. The heating assembly is configured to operate a drying cycle of the wicking element upon detection of a valve position by a valve detector.
DISPLAY FOR AN AEROSOL-GENERATING DEVICE
A display is provided for an aerosol-generating device, the display including: a notification window; and a nano-photonic material extending over a front surface of the notification window, the nano-photonic material being configured to, in response to a light wave comprising at least one predetermined wavelength backlighting the notification window and being incident on the nano-photonic material, increase an amplitude of the at least one predetermined wavelength and emit therefrom a light wave comprising the at least one predetermined wavelength with the increased amplitude. An aerosol-generating device including the display is also provided.
DISPLAY FOR AN AEROSOL-GENERATING DEVICE
A display is provided for an aerosol-generating device, the display including: a notification window; and a nano-photonic material extending over a front surface of the notification window, the nano-photonic material being configured to, in response to a light wave comprising at least one predetermined wavelength backlighting the notification window and being incident on the nano-photonic material, increase an amplitude of the at least one predetermined wavelength and emit therefrom a light wave comprising the at least one predetermined wavelength with the increased amplitude. An aerosol-generating device including the display is also provided.
AEROSOL PROVISION DEVICE
An apparatus and a method for an aerosol generating device is described, the apparatus including a charging controller. The charging controller is configured to control charging of a battery using a power supply at a charging current dependent, at least in part, on power capabilities of the power supply.