Patent classifications
A24F13/00
Devices, systems, and methods for sensing temperature in induction heating systems
Provided is a system for sensing temperature in an induction heating system. The system includes an induction element, a susceptor element, and a temperature sensor circuit in thermal contact with the susceptor element. The temperature sensor circuit includes a capacitor having a capacitance value equal to C and an inductor having an inductance value equal to L. A resonant frequency of the temperature sensor circuit changes based on a temperature of the susceptor element and the induction element is electromagnetically coupled to the temperature sensor. The resonant frequency of the temperature sensor circuit is equal to ½π√LC.
Re-charging pack for an e-cigarette
Various embodiments provide a pack for holding and re-charging an e-cigarette. The pack comprises a pack battery; a body portion including a tube for receiving an e-cigarette; a re-charging mechanism for re-charging the e-cigarette received into the tube using the pack battery; and a lid attached to the body portion. The lid can be opened to allow the e-cigarette to be received into the tube, and closed to retain the e-cigarette in the tube. The pack is configured to transition from a higher power state to a lower power state a predetermined period of time after the lid is opened and before the lid has been shut.
Aerosol-generating system with charging device and aerosol-generating device with side coupling
An electrically operable aerosol-generating system is provided, including a charging device including a primary power source; and an elongated aerosol-generating device including a secondary power source and having a proximal end, a distal end, and a body extending between the proximal end and the distal end, the charging device having a docking arrangement configured to engage with the elongated aerosol-generating device and to charge the secondary power source by the primary power source, in which a first coupling member disposed on the body of the elongated aerosol-generating device is configured to engage with a second coupling member disposed on a wall of the charging device.
Aerosol generating device, method of controlling aerosol generating device, and program
An aerosol generating device which is capable of generating an aerosol at an appropriate timing includes: a power source which supplies power in order to atomize an aerosol source and/or heat a flavor source; a sensor which outputs a measurement value for controlling the power supplied; and a controller which controls the power supplied on the basis of the measurement value. The controller controls a power supply amount from the power source to be a first value when the measured value is equal to or larger than a first threshold and smaller than a second threshold larger than the first threshold, and the power supply amount to be larger than the first value when the measured value is equal to or larger than the second threshold.
Induction heating assembly for a vapour generating device
An induction heating assembly for a vapour generating device includes an induction coil and a low-pass filter positioned adjacent to the induction coil. The low-pass filter is electrically connected to the induction coil to act as a low-pass filter for the induction coil and is shaped to extend substantially across at least one side of the induction coil to provide an electromagnetic shield for the induction coil.
Induction heatable cartridge for a vapour generating device
An induction heatable cartridge for use with an induction heating assembly includes a solid vaporisable substance and at least one ring-shaped induction heatable susceptor held within and surrounded by the vaporisable substance. The susceptors are held in position such that, when the cartridge is positioned in an induction circuit in use, different regions of the outer edge of the one or more susceptors are at different distances from the induction circuit to provide different heating characteristics in the different regions. The centres of each of the at least one susceptors are aligned along a common axis.
Atomizer cartridge with integrally formed internal fluid reservoir and mouthpiece portion
Systems and techniques are provided for an atomizer assembly comprising a mouthpiece portion, a longitudinal vapor channel, an internal fluid reservoir, and an atomizer. An outer surface of the mouthpiece portion includes a vapor outlet, coupled to a first distal end of the longitudinal vapor channel. The internal fluid reservoir is integrally formed with the mouthpiece portion as a single-piece construction, wherein the internal fluid reservoir comprises an empty volume disposed between an outer surface of the longitudinal vapor channel and an inner surface of the mouthpiece portion. The atomizer is configured to receive a fluid stored in the internal fluid reservoir of the mouthpiece portion, wherein the atomizer includes at least one heating element for vaporizing the fluid received from the internal fluid reservoir of the mouthpiece portion.
Cartridge without dry burn and metal polution and atomizer having same
A cartridge and an atomizer having the cartridge are disclosed, the cartridge includes a micro-porous body with an absorption surface and an atomization surface; a heating element embedded in the micro-porous body; the heating element disposed between the absorption surface and the atomization surface; the heating element includes a first surface and a second surface; the heating element is bored with multiple spaced through holes, the through holes are extending from the first surface to the second surface.
Smokeless Vaporizer Device
The present invention relates to a smokeless vaporizer device primarily comprised of a housing with a transparent viewing window, a main reservoir, a CBD vape reservoir, at least one button, an inhale hose, an exhale hose, and at least one battery. The main reservoir and CBD vape reservoir can house cannabis and CBD products that can be vaporized via a heating element within the housing. The vapor can then be inhaled through the inhale hose by the user. After being inhaled, the user can then blow into the exhale hose to exhale the vapor back into the housing.
Aerosol-generating article, device and system with optimized substrate usage
The present invention relates to a rod-shaped aerosol-generating article for use with an electrically heated aerosol-generating device. The article comprises a substrate core and a filler sleeve surrounding the substrate core. The substrate core comprises an aerosol-forming substrate and has a non-circular outer cross-section. The invention further relates to electrically heated aerosol-generating device and an aerosol-generating system for use with an aerosol-generating article.