Mechanical undercuts and resilient attachment elements secure a removable aerosol cover without adhesives, enabling protection and easy removal.
A particulate filling member and curved airflow path limit vapor leakage and agglomeration in a double-cylinder flavor article while maintaining aerosol output.
An elastic reset seal automatically closes the tank insertion hole after atomizer removal, reducing residual e-liquid leakage during replacement.
A perpendicular modular layout and magnetic coupling keep condensate away from the power assembly, extending service life and safety.
A wall-extended sealing member closes the airflow path more reliably, cutting leakage to improve heating efficiency and aerosol quality.
A coupler-transmitted pressure drop lets the sensor detect puffs while staying isolated from liquid contamination in an electronic smoking article.
A dual hot-zone and feed-zone cartridge balances vaporization of mixed-boiling compounds to keep aerosol composition more consistent during use.
A detachable heater holder and extractor simplify cleaning and replacement while limiting rotation, overheating, and stick taste change.
A slotted holder positions a planar wick and nested susceptor to boost vaporization, limit heat loss to the holder, and prevent leakage.
A filled hinge with a dowel pin and torsion spring secures the lid independently of the housing for smoother, more reliable aerosol device opening.
A two-stage inverter voltage profile uses induction heating to speed aerosol generation while lowering overall energy use.
Closed-loop oil cup temperature sensing adjusts heater power to prevent incomplete melting, boiling, and leakage in aerosol generation.
A dual liquid guide structure feeds the heater indirectly to improve aerosol output, stabilize liquid delivery, and reduce leakage.
A sheet-shaped electrode connector and fixing base simplify assembly while preventing scratches on the heating film and keeping connections stable.
A pressurized fluid generator replaces wick-driven delivery to stop e-liquid leakage and keep aerosol output more consistent.
Independent storage, atomizing, and power modules enable quick replacement to customize flavor, vapor volume, and battery control.
Movable heating elements clamp around an aerosol article to increase contact area, improve heat transfer, and keep vapor output consistent.
Dual sealing and a movable inner housing prevent e-liquid leakage in storage, then open automatically for feeding during atomizer assembly.
Remote connectivity lets a smoking substitute manage user data deletion, firmware updates, and location-based mode switching.
Volatile memory is reinitialized on wake-up so the microcontroller starts from a known state, reducing firmware bugs after sleep mode.
An asymmetric blocker in the cartridge insertion space evens aerosol induction, lowers draw resistance, and helps prevent article reuse.
A telescoping cartridge with absorbent pads improves fluid transfer to the atomizer while preventing leaks and stabilizing vapor output.
A movable inner housing and dual seals keep e-liquid contained in storage, then open automatically for atomizer feeding during assembly.
Flared capillary tubes feed liquid through the substrate to the heater layer, improving vaporization consistency in aerosol provision systems.
Rotating the aerosol-forming article through segmented microwave heating maintains taste consistency, improves vapor outlet speed, and saves energy.
Longitudinal and transverse liquid guide grooves spread e-liquid evenly, improve capillary wicking, and prevent leakage and dry burning.
A vacuum- or gas-sealed gap between insulating members reduces heat loss, improving aerosol article heating efficiency and user-side thermal isolation.
Movable first and second housings keep electrical connection intact while exposing the consumable area for easier removal, cleaning, and obstruction prevention.
A heat insulation cavity and dual-end air inlet path cut heat loss and reduce condensate backflow in a heat-not-burn atomizer.
Offset wire routing outside the graphite airflow path cuts aerosol adhesion and carbon buildup, keeping heated tobacco airflow channels open.
A pressure-responsive sealing member opens an air exchange path to balance cartridge pressure, sustain aerosol output, and reduce draw resistance.
A pressure-stabilizing tube uses a capillary gap to balance oil supply and air venting, reducing leakage in atomization assemblies.
A movable debris collector captures residue in the heating chamber, easing cleaning and protecting heater life in aerosol generators.
Circumferential support ribs hold the aerosol article shape and position, preventing stray airflow and keeping aerosol delivery consistent.
Real-time temperature sensing selects puff-dependent heater profiles to keep aerosol heating near target values and reduce harmful substances.
A separable heater module and extractor create airflow paths that improve cleaning, airflow control, and safe handling of residual tobacco.
A single color sensor detects both article insertion and user puffs through airflow-driven thermochromic changes, cutting sensor count and cost.
Wrapped susceptor strips increase contact with the wicking element, improving heat transfer and vapor generation in inductive aerosol systems.
A rotary support opens vapor channels during use and seals liquid and air paths during storage to prevent moisture uptake, leakage, and taste loss.
A movable control links air intake and atomization power to keep aerosol output stable and improve taste consistency.
A light diffusion member inside the bottom cover scatters e-cigarette light output, preventing direct glare and improving user experience.
Solderless heater connections preserve the vacuum chamber, reduce outer-surface heat transfer, and avoid outgassing from solder and flux.
Multi-density wick sections balance storage and capillary transfer to prevent dry hits, leakage, and flavor inconsistency in atomizers.
Phased heater control adds pause periods and reduced-power heating so tobacco reaches operating temperature without thermal shock or charring.
A single-sided dual-tab battery and side-by-side module layout remove wiring and welding, saving space and enabling automated atomizer assembly.
A vent tube inserted into the liquid storage member improves airflow diffusion, limits negative pressure, and helps prevent dry heating.
A partition through-hole and slit buffer member relieve battery pressure while trapping leaked electrolyte to prevent short circuits.
A wickless ceramic vaporization unit uses capillary channels to avoid fiber burning, speed flavor change, and simplify recyclable cartridge design.
Guided airflow directs external air toward the wick heater to raise aerosol output and help prevent leakage in aerosol generation devices.
A susceptor-holder atomization core concentrates induction heating in a small susceptor to cut power use and improve aerosol generation.