See how an embedded pass-through chamber in a drinking glass secures a cigar, enabling one-hand
See how a cylindrical beverage container uses removable covers and pre-cut openings to convert
See how active cooling and airflow acceleration enhance aerosol mass and visibility in electric
See how a thermoelectric cooling device, water, and elongated path reduce ingestible gas temper
See how a compact container system uses peltier-based condensation and evaporation to regulate
An offset handle bridge mounts a vaping device as the cup handle, enabling one-handed drinking and vaping while maintaining stability.
A lever-linked valve and pump system meters liquid to a focused heater for repeatable vapor dosing without leakage or contamination in any orientation.
A servomotor-driven carousel presents exception vials only when needed, improving pharmacy retrieval access while keeping uncapped vials secure.
A nested cartridge bin and magnetic base secure e-cigarette cartridges during replacement while preserving airflow when passages face blockage.
A hand-rotated generator and capacitor power the atomizer without batteries, cutting charging hassle, accessories, and waste.
A rotary multi-chamber cartridge and side battery layout keep aerosol devices compact while preserving medium freshness and easy replacement.
A charging case with guided device orientation enables easier consumable replacement while recharging the aerosol generator on the go.
Connectable cartridges let one vaporizer heat multiple materials at once, enabling flavor blending without full cartridge replacement.
Modular cartridge connections let one battery module heat two vaporizable materials at once, enabling custom flavor or scent blends.
An upstream air-channel valve blocks aerosol backflow and leakage while preserving wick-fed liquid supply to the heating element.
A movable isolation structure switches between refill and vapor ports, keeping reservoir refilling separate from vapor generation.
An upstream air valve and separated flow paths limit cartridge leakage while keeping liquid supply stable and the heating element from overheating.
An upstream valve and separated flow paths limit cartridge leakage while keeping liquid fed to the heating element to avoid dry hits and overheating.
A movable isolation structure switches fluid ports during refilling, separating the reservoir from the vaporizer without cumbersome mechanisms.
An upstream air-channel valve limits cartridge leakage while maintaining liquid feed to the heating element to prevent dry-out and overheating.
An upstream air valve and sealed reservoir plug curb aerosol backflow and liquid leakage while maintaining consistent aerosol delivery.
Unique cartridge identifiers link ENDS use to verified users, blocking unauthorized access while keeping approved operation straightforward.
An upstream air valve and resilient plug seal the cartridge air path to limit liquid leakage while maintaining heater liquid supply.
Unique cartridge IDs linked to approved users block underage ENDS use while keeping authentication fast and reliable.
A movable isolation structure switches fluid ports during refill and vaporization, preventing leakage while maintaining stable vapor generation.
A thin-walled heating chamber with insulating PEEK washers localizes heat to the aerosol substrate while reducing heat leakage and energy use.
Electric coil heating powered by a car outlet or USB replaces charcoal in a vehicle hookah, cutting ash, emissions, and power-source limits.
A nested cartridge bin, mounting hole, and magnetic base secure the e-cigarette cartridge against falling while keeping replacement easy.
A rotating manual generator and capacitor power the atomizer without charging cables or replaceable batteries, reducing travel limits and waste.
A 510-type copper threaded ring expands atomizer compatibility while supporting over 1000 recharge cycles and stable battery capacity.
Serial assembly stations join, dose, and seal inhalation consumable units to raise throughput while keeping cartridge assembly precise.
A valve at the suction tube opening keeps the detachable container-housing joint airtight, improving handling, cleaning, and smoking safety.
Separating the mouthpiece into a body and connector eases demolding, lowers processing cost, and keeps the vent tube connection reliable.
A double bayonet closure secures the cover, headpiece, flange, and stand to prevent coal escape and accidental detachment.
A valve at the suction hose mouth seals the detachable receptacle-housing joint, reducing air leakage while easing cleaning and transport.
A radially compressing seal meters wick liquid flow to raise TPM output while limiting leakage and unwanted vaporization by-products.
A hinged folding kickstand keeps a vape pen upright to prevent oil leakage, while folding flat for easy pocket or purse transport.
A ring-shaped magnetic band adds secure on-device storage for lighters and utensils, reducing contamination and misplacement.
A movable refill valve opens the liquid channel without removing the mouthpiece, simplifying e-cigarette filling while keeping the atomizer sealed.
A compressible one-piece lid seals both the mouthpiece and bowl to contain water and odor during water pipe storage or transport.
A movable refill tube and exhaust gap balance cavity pressure during e-liquid filling, helping prevent leakage while limiting child access.
An exhaust gap and reset sealing member let e-cigarette atomizers refill without pressure-driven smoke oil overflow or child access.
A rotatable top-entry inlet assembly controls air and liquid flow to prevent e-cigarette atomizer leakage with a simpler sealed structure.
Nasal airflow passages split aerosol between mouth and nose to restore aromatic notes in heated smoking cartridges without added flavorings.
Motor-driven fluid circulation and bubble formation clean pipe resin faster than soaking or costly ultrasonic units.
A supported vibrator and conductor structure stabilizes aerosol atomization while limiting heat- and vibration-driven deformation in the cartridge.
A dual-glass tube layout separates e-liquid storage and vapor flow to raise heating efficiency, airflow, and vapor discharge.
A raised air inlet and liquid storage groove isolate leaked e-liquid and condensate from the sensor and control board to prevent burnout.
Discrete pillars and a sealed multiplane mouthpiece redirect condensation away from the aerosol stream while preserving delivery and comfort.
A tool-actuated cartridge closure blocks refill opening access to limit leakage and unauthorized handling of aerosolizable material.
A dual-mode aerosol assembly routes exhaled flow to a gas sensor, adding metabolic monitoring without disrupting normal vaping operation.
Distributed bottom-wall heaters and air outlets drive hot air through tobacco material to improve heating uniformity, taste, and heat use.
Combining induction heating with resistive heating raises tobacco heating output and vapor production while adding overheating protection.
Oxygen removal in the heating cavity enables higher aerosol temperatures without combustion, reducing toxicity and off-taste.
A lockable heat-not-burn heater stays disabled until a preset input or event occurs, preventing accidental activation during storage and transport.
A movable cartridge cap seals the aerosol substrate and heating element during storage, then opens an airflow path for reuse.
A locked heater state blocks current during storage and shipping, then unlocks on a defined event or user input to prevent unintended activation.
UV emitters sterilise coupled refill interfaces before transfer, reducing microbial growth and protecting aerosol-generating material.