Patent classifications
A24F13/00
Aerosol generation device and heater for aerosol generation device
Provided according to an exemplary embodiment is a heater for an aerosol generation device, the heater comprising a plurality of segments combined together to form an insertion portion into which an object-to-be-heated is inserted; one or more electrically conductive tracks printed on one surface of each of the plurality of segments and disposed toward the object-to-be-heated; and an elastic member configured to surround at least a part of the plurality of segments.
Aerosol generation device including mainstream smoke passage and pressure detection passage
An aerosol generation device includes a case into which a cigarette is inserted, a heater disposed in the case and configured to heat the cigarette inserted into the case, a mainstream smoke passage connecting an end portion of the cigarette to the outside, and a pressure detection sensor configured to detect a change in a pressure of air inhaled to pass through the cigarette.
Aerosol generating device having heater
Provided is an aerosol generating apparatus including: a heater configured to generate aerosol by heating a cigarette, the heater including a first electrically conductive heating element formed along a first path on an electrically insulating substrate, a second electrically conductive heating element formed along a second path on the electrically insulating substrate, and a temperature sensor track formed along a third path in a region between the first path and the second path; a battery configured to supply power to the heater; and a controller configured to control the power supplied from the battery to the heater and monitor a temperature sensed using the temperature sensor track.
Electronic cigarette having leakproof device for preventing leakage of e-liquid
An electronic cigarette including an atomization assembly and a base assembly. The atomization assembly is disposed on the battery assembly. The atomization assembly includes an e-liquid tank; a first seal ring; a limit cover; a second seal ring; a piece of cotton; a heating wire; a third seal ring; a seal plug; a base; a joint; an insulation sleeve; and a connection sleeve. The battery assembly includes a pair of electrodes; a magnet; a fourth seal ring; an indicator light; a secondary support; a pneumatic switch; a silicone sleeve; a primary support; a battery; a USB plate; a housing. The piece of cotton wraps the heating wire. The piece of cotton and the heating wire are disposed on the base. The limit cover is disposed on the piece of cotton. The first seal ring and the second seal ring are disposed on two ends of the limit cover.
Aerosol generating system with multiple susceptors
An aerosol-generating system is provided, including: an aerosol-generating device, including a housing, a heating chamber defining a heating zone and being sized to receive at least a portion of an aerosol-forming substrate within the heating zone, an induction element disposed around, or adjacent to, the heating zone, a power supply, and a controller connected to the induction element and configured to provide an alternating electric current to the induction element to generate an alternating magnetic field within the heating zone, the induction element being configured to be controlled to sequentially provide a first alternating magnetic field having a first frequency for a first period of time followed by a second alternating magnetic field having a second frequency for a second period of time.
Aerosol generating device having heater
Provided is an aerosol generating apparatus including: a heater configured to generate aerosol by heating a cigarette, the heater including a first electrically conductive heating element formed along a first path on an electrically insulating substrate, a second electrically conductive heating element formed along a second path on the electrically insulating substrate, and a temperature sensor track formed along a third path in a region between the first path and the second path; a battery configured to supply power to the heater; and a controller configured to control the power supplied from the battery to the heater and monitor a temperature sensed using the temperature sensor track.
Electronic smoking device with a heating element having a modified surface
It is provided an electronic smoking device (10) which comprises a liquid reservoir (34), a battery (18) and a heating element (28) adapted to atomize liquid of the liquid reservoir (34). The heating element (28) has a modified surface (50) that comprises a plurality of structures (51) adapted to provide a capillary force on liquid of the liquid reservoir (34) when applied onto the heating element (28).
Heater assembly and aerosol generation device comprising same
A heater assembly includes a heater extending to correspond to at least a part of a length of a cigarette and comprising one end to be inserted into the cigarette and configured to generate heat when electricity is applied; a first cover coupled to the heater to maintain a position with respect to the heater and comprising one surface that faces toward the end of the heater and extends outward from the heater; and a second cover coupled to another end of the heater and supporting another surface of the first cover facing toward the other end of the heater.
Eco-Friendly Personal Exhalant Filter
As an accessory to cannabis and other smokers, an increased capacity, environmental and ecological friendly, sustainable solution personal air filter is disclosed. The solution effectively and efficiently combines passive filter medium and properties of fluid mechanics to achieve the increased capacity. Additionally, a specific order of passive filter elements is provided to increase filtering efficiency. Wherever possible, biodegradable materials are employed such a biodegradable PLA polymers.
Eco-Friendly Personal Exhalant Filter
As an accessory to cannabis and other smokers, an increased capacity, environmental and ecological friendly, sustainable solution personal air filter is disclosed. The solution effectively and efficiently combines passive filter medium and properties of fluid mechanics to achieve the increased capacity. Additionally, a specific order of passive filter elements is provided to increase filtering efficiency. Wherever possible, biodegradable materials are employed such a biodegradable PLA polymers.