A shuttle valve controls liquid flow to prevent leaks, while an SFAP insert reduces air bubbles and improves particle size.
A smoking substitute apparatus manages aerosol particle size through a dedicated airflow path and delivery conduit configuration.
Oblique bubble guiding element directs gas away from porous e-liquid absorption surface, preventing accumulation that blocks continuous liquid flow.
Integrating authentication into supply lines reduces mechanical complexity and manufacturing costs for electronic inhalation devices.
A movable cavity bottom adjusts its position along a heating element to align with aerosol-forming substrates of varying lengths.
Segmented threaded engagement creates discrete airflow channels that prevent condensate buildup while maintaining liquid restriction at the interface.
Segmenting the activation system into a hardware key and QR code resolves the security versus complexity trade-off in controlled devices.
Segmented clearomizer bodies insert into a cartridge cavity to prevent e-liquid leakage and short circuits.
Dynamic positioning of atomizing core separates fluid passage from storage tank to prevent e-liquid leakage.
A movable tobacco pot protrudes from the main body to enable direct access for cleaning, preventing water accumulation that damages internal components.
Silicone sealing rings replace cotton to prevent leakage while enabling radial liquid infiltration for faster conveyance rates.
A vaporizer absorber combines large and small pores to rapidly absorb e-liquid while maintaining structural integrity.
A mouthpiece cap with a movable member controls separate aerosol outlets for selective inhalation of flavored and heated e-liquid streams.
Embeds a conductive base frame and electrical connector within an insulating support frame to simplify aerosol device assembly.
A non-combustible aerosol provision system tracks usage characteristics to predict remaining supply length.
Atomizer merges air inlet, outlet, and injector into a unified base structure with nested channels to resolve poor airflow efficiency in conventional designs.
A ceramic atomizer integrates a temperature sensing element with a PCB board to adjust heating power for precise thermal management.
A porous wick coated with a light-switchable amphiphilic layer prevents e-liquid leakage during storage by maintaining impermeability in the dark.
An exhaust channel between the seal member and vent tube discharges compressed air, preventing liquid leakage from substrate squeeze-out.
A helical spring maintains stable contact pressure to prevent lead detachment, short-circuits, and liquid leakage in aerosol cartridges.
An atomizer housing with specific length and width ratios creates an ultra-thin profile while maintaining sufficient air volume in the atomizing chamber.
Segmented apertures in a planar aerosol generating component normalize airflow and control particle size distribution without complex adjustable mechanisms.
A movable sealing member isolates the liquid storage chamber from the atomizing core in electronic atomizers.
Downstream ventilation air inlet design cools aerosol delivery in heated cartridge systems.
A non-combustible aerosol provision device uses segmented retention members to accommodate consumables of varying dimensions.
Segmented air channels balance negative pressure in the liquid storage cavity, preventing excessive heating and harmful substance generation.
Detection apparatus signals a controller to drive the cover, eliminating manual operation and improving user experience.
A sheath flow insert buffers aerosol with air to prevent condensation losses on inner surfaces while reducing particle size.
Integrating a conductive cover on the liquid delivery means improves vaporization efficiency while reducing unvaporized liquid droplets in the output.
A porous plug enables gas exchange within an atomizer base to maintain fluid communication.
Staggering the atomizing core assembly and ventilation hole in the width direction resolves the contradiction between miniaturization and inhaling resistance.
A detachable base assembly holds the atomizing core outside the housing for quick removal.
Segmenting the receiving cavity into a universal socket resolves the trade-off between manufacturing simplicity and multi-cartridge versatility.
A liquid storage part with a protrusion guides airflow through a segmented vaporization element to prevent dry burning.
A movable adjusting member on the sealing base regulates airflow, resolving sensor triggering reliability issues caused by fixed intake holes.
An induction heater heats a cartridge plate to vaporize liquid while keeping electrical components isolated from leakage risks.
Staggered aerogel and foam layers form a uniform tubular insulation structure that prevents overheating while maintaining high formation efficiency.
Segmented dual cartridges resolve the contradiction between flavor variety and device complexity in e-cigarettes.
A ventilation channel with a gradually increasing diameter guides leaked aerosol generating substrate into an installation groove.
A vaping device uses a spring element to advance modular capsules toward the liquid channel for continuous vaporization.
Distinct engagement parts on opposite sides prevent inadvertent disengagement under localized forces while maintaining ease of operation.
An integrated airflow sensor manages power distribution using a switch transistor and diode.
Embedding heating body fixing parts in porous ceramic matrix eliminates screen printing defects, resolving non-uniform resistance distribution.
Seal portions on the vaporization assembly open and close vent channels to balance internal air pressure, preventing e-liquid leakage.
Protrusions on the heating member form airflow channels that balance conduction and convection, resolving uneven temperature distribution across the substrate.
A sliding elastic buckle engages a buckle slot to replace costly magnetic attraction, ensuring reliable attachment while lowering manufacturing costs.
Adjusting knob on liquid reservoir rotates to control air inflow for electronic cigarette vaporizers.
Segmenting atomizer from disposable cartridge via piercing guide tubes reduces resource waste by allowing independent replacement of e-liquid containers.
Lockout timer limits resource consumption and enhances security in non-combustible aerosol provision systems.
Inverting air inlet above base prevents precursor leakage while simplifying manufacturing.