A neural convolutional model adjusts temperatures across vaping heater segments to limit heat buildup and mouth burning.
This case uses an inlet extension, wrapping layer, filters, and a chamber to distribute heat and isolate combustion gases.
This case replaces cellulose acetate with lyocell tow to prevent high-temperature melting, reduce heat, and preserve smoke transfer.
A segmented carrier uses induction-responsive portions and thermal barriers to heat discrete smokable material quantities independently.
Flexible membranes route airflow while section-specific temperature profiles target components for consistent aerosol delivery.
An upstream filter element secures the substrate while hollow-tubular cooling balances aerosol temperature and nicotine delivery.
This case places a cooling layer downstream of the flavor source to cool inhaled gas while simplifying airflow design.
This case tunes capsule diameter and stress so users can feel a breakable capsule despite heat and humidity softening.
Locating members guide airflow around and through the consumable unit, improving heating uniformity and aerosol consistency.
A larger, thinner-walled downstream lumen cools aerosol by convection without smoke dilution, simplifying production.
Beveled optical-window extensions enable self-cleaning contact for reliable used-article detection without damaging new consumables.
Particulate coolant and tube filtration improve aerosol cooling and quality.
Separate row paths inspect rod ends optically, then reunite paired segments for aligned multi-segment assembly.
A columnar aerosol substrate with an embedded heating element addresses energy loss while simplifying consumable manufacturing.
A rotating exit aperture positions the susceptor to reduce cutting bend, material waste, and alignment variation.
A susceptor-integrated substrate tablet uses resonant induction heating to produce consistent aerosol with reduced combustion byproducts.
A movable covering member regulates cooling-rod perforation airflow, helping users adjust aerosol cooling and inhaled air.
A wear-resistant member protects the conveyor housing suction port from erosive tobacco particle damage.
Low-filling-rate cavity segments generate internal vortex mixing to resolve uneven heating and burnt taste in aerosol-generating articles.
A helical heating element inserts into aerosol material via screwing action.
Food-grade carriers dissolve cannabidiol before mixing with adhesives or depositing on filters, maintaining compactness and drying time.
A cigarette maker replaces multiple motors with a single spline shaft drive and swaps format parts as modules to reduce changeover downtime.
Aerosol provision device uses induction heating via flat spiral coils to generate aerosol from consumables without combustion.
Limiting the projection depth to under one millimeter prevents lifting and adhesive creep without reducing the viewing area.
A fibrous paper-like filter combines hydrophobic and hydrophilic fibers to maintain aerosol separation performance.
Green tea extract in the filter unit absorbs nicotine and pyridine, lowering lingering smoke smell on hands by up to 40%.
Light source penetrates consumable portion to illuminate indicia internally, eliminating external components that increase device complexity.
A heat-not-burn cigarette product balances total sucking resistance with individual component resistance to stabilize airflow.
A cup-shaped heat-transfer element isolates combustion products while improving conductive heating of the aerosol substrate.
Perforated smokeable receipt paper separates into rolling papers, replacing chemical inks with soy-based alternatives to reduce waste.
Pneumatic injection delivers precise API microdroplets to cannabis fill material, resolving potency variability in pre-assembled rolls.
A mouthpiece uses a high wet strength inner wrapper and porous outer wrapper to maintain structural integrity and aerosol flow.
A tubular element diverts aerosol flow through an internal path where it mixes with ventilation air, reducing temperature before reaching the mouth end section.
Natural cellulose fibres impregnated with triacetin reduce phenols, improving taste while maintaining biodegradability.
Segmented design with low-resistance hollow tube delivers nicotine efficiently while resolving cooling trade-offs.
Applying variable adhesive weight per unit area to tipping paper prevents member slipping and crease formation during composite segment wrapping.
Segmented base and high emissivity coating resolve durability trade-offs by reducing thermal stress during rapid heating cycles.
A method partially cuts a continuous susceptor band at predetermined positions to separate individual elements before substrate integration.
Adjusting content liquid viscosity prevents soakage through tipping paper, eliminating wrapper residue issues during mass production.
Segmented filter plugs and a flow constrictor reduce tar exposure by creating impaction zones, maintaining consistent tar ratios across FTC and MDPH protocols.
Aerosol generating device incorporates a cutting portion to sever the metal wrapper upon insertion.
Segmented wrapping with variable thickness and conductivity resolves the trade-off between mechanical strength and thermal efficiency in aerosol generation.
A conductor transfers heat from a heating apparatus to aerosol generating material, resolving lighting difficulties and excess heat management.
An inserter with a rotatable exit aperture positions a susceptor band to minimize bending during cutting, ensuring uniform induction heating.
Segmented sheet material defines internal edge spaces to secure aerosol-modifying agents, resolving positioning precision versus device complexity trade-offs.
Transverse deformation of a resilient element stabilizes an aerosol device closure against unwanted movement caused by manufacturing tolerances.
Treated wrapper portions eliminate metallic foils, reducing manufacturing complexity and environmental impact while preventing combustion.