An upstream plug shields the susceptor’s distal end, preventing displacement during handling while preserving inductive heating and draw resistance.
A segmented cavity combines snug article retention with an air gap that limits heat loss for faster, steadier aerosol production.
A movable heater adjusts along the article to deliver tailored heating profiles, reducing energy use and external heat.
Planar barriers with apertures and optional flaps ease heater insertion, limit material loss, and help seal aerosol-generating material.
Onboard sensors, local memory, and wireless communication record puff and battery data during natural electronic smoking use.
A pre-breakable wrapper separates peelable tobacco before heating, exposing the aroma area for fast transfer and pure volatilization.
Magnetic particles trigger inductance changes for article differentiation and heating-profile control, helping deter counterfeits.
A paper tube with circumferential perforations supports cooling, stable menthol transfer, and reduced thermal deformation in filters.
This aerosol device uses inclined retention sides to position heating plates, reduce thermal conduction, and extend battery autonomy.
This case combines susceptor heating, distributed heat paths, and condensation chambers to reduce energy waste and combustion byproducts.
This case balances direct contact and airflow in star anise substrates using strand density and heating-element width ratios.
A reservoir, susceptor, and vaporization chamber adapt solid-substrate devices to liquid aerosol generation with sealed vapor transport.
This case combines support and cooling in one hollow tube, reducing extra elements and manufacturing complexity.
A dimpled chamber zone promotes airflow while localized protrusions retain the article, reducing heat transfer, friction, and condensate.
A plug element retains the susceptor and supports consistent inductive heating.
A porous aerosol-forming strand is twisted with susceptor material to transfer heat quickly and deliver aerosol consistently.
This case integrates a folded flap into the tobacco rod closure to block fragments, simplify assembly, and reduce oven cleaning.
This dispenser advances sheet material with a wheel and cuts custom lengths, replacing multiple pre-cut sizes.
A sectioned consumable uses added mass and cooling structures to sustain pressure drop while reducing aerosol-generating material.
This case balances phenol adsorption with filter integrity by tuning PEG 600 and TEC ratios in lyocell tow.
A continuously denser upstream section raises pressure drop, improving aerosol consistency while using less generating material.
This case integrates ceramic capillary wicking into a cartridge heater to improve fluid delivery, robustness, and aerosol consistency.
Specific hollow-core geometry raises fiber rigidity, helping reduce material use while maintaining filter structure and production quality.
This case uses a wrapper surface with emissivity above 0.85 to absorb heater radiation and improve tobacco-substrate heating.
This case balances lower aerosol material mass with required pressure drop by separating airflow resistance from the generating section.
Heated airflow through a channel improves aerosol material exposure and delivery.
Applying flavoring liquid inside the hollow tube filter increases loading, limits menthol migration, and simplifies manufacturing.
A transverse support structure limits filter rod deformation while channels create aerosol vortices for more homogeneous mixing.
A light source and sensor analyze reflected light to distinguish used cigarettes and limit heater operation before reuse.
This case combines vanilla materials and cigar fibers in a smoking wrapper to reduce sidestream smell while preserving paper stability.
A cylindrical spiral wick combines rigidity and capillary transport to reduce leakage through reservoir wall openings.
Linear motor retraction separates the heating assembly from the cigarette, preventing breakage and residue during removal.
This case uses a supported wrapper structure and vortex-forming channels to preserve filter rod shape and improve aerosol homogeneity.
Hollow-core cellulose acetate fibers preserve filter hardness and pressure drop while reducing fiber mass and manufacturing defects.
A bundled tobacco cut-filler substrate and internal susceptor improve heat transfer while maintaining acceptable draw resistance.
A funnel-shaped resilient seal eases insertion, maintains alignment, and preserves hermetic sealing as article dimensions change.
A rod-based identifier lets the control unit authenticate aerosol articles and apply tailored heating profiles.
A chamber spacer preserves heating and volatile release while blocking air leakage and gelatinized substances from escaping.
This case shows how a pre-formed conical shell and integrated ridge retain a frangible capsule while simplifying custom filling.
A conductive loop creates a reverse magnetic field, reducing user exposure while inductive susceptors rapidly heat the aerosol substrate.
A hollow tubular ventilation zone cools aerosol downstream while limiting upstream filtration loss and preserving nicotine delivery.
When incorrect insertion activates a heated compound region, sensory effects alert users and support proper aerosol generation.
A temperature-permeable polymeric cover retains volatile compounds at room temperature and releases them during aerosol generation.
This case uses precise aperture dimensions and geometry to balance airflow resistance and reduce condensate leakage.
Lyocell tow prevents mouthpiece melting and reduces heat sensation.
This case replaces cellulose acetate with lyocell tow to resist deformation, limit moisture transfer, and improve aerosol cooling.
A lyocell tow front-end filter blocks liquefied aerosol, resists melting, and helps preserve smoking article performance.
This case replaces cellulose acetate tow with lyocell to preserve support shape and cooling during heated smoke transfer.
This case uses moisture-affine lyocell tow to cool smoke, limit deformation, and preserve tobacco component concentration.
Static ignitor contacts and an access door secure cartridges while supporting consistent aerosol generation and reduced scorching.