Multiple cartridge regions and a moveable airflow member enable flavor switching without manual cartridge replacement.
A removable insertion box aligns with the heating chamber to collect residue and absorb condensate, simplifying device cleaning.
A nested heating component and integrated cap combine cooling, condensation, and inhalation channels in a compact structure.
This atomizing device uses a surrounding diversion channel and multi-hole outlet to improve air mixing and concentration uniformity.
A susceptor-equipped adapter sleeve aligns HNB sticks in the heating zone, improving heat transfer while preventing direct contact.
A porous body with an integrated heater spans the airflow opening, supporting aerosol generation while reducing sealing components.
This case uses a movable operating element to enable or disable airflow sensing and control aerosol generation during inhalation.
Alternating-voltage electrodes measure liquid conductivity so control electronics can standardize nicotine delivery during atomization.
This case guides inlet air around the atomizing core, preventing cool-air impact on the heater and stabilizing atomization.
A movable part with magnets and a Hall sensor switches atomizer power, lighting effects, and reminder modes.
An induction circuit analyzes self-resonant frequency changes to measure susceptor temperature and proximity without contact.
An integrated end-cap structure redirects airflow condensate into liquid storage for reuse, reducing inhalation and medium loss.
This case combines metal conduction with ceramic thermal mass to heat flat tobacco articles quickly and uniformly while reducing energy use.
A weighted closure member uses device tilt to close the heated tobacco oven and lock it without a motorized actuator.
A detachable battery assembly uses a pin electrode for direct heating-element contact, reducing magnets, elastic pins, and costs.
An absorbing structure captures airflow-channel condensate and returns it by capillary action for renewed atomization.
This aerosol provision case uses electrical resistance and inductance monitoring to detect heater faults and prevent further activation.
A carbon foam susceptor links reservoir and airflow paths to help regulate aerosol generation, particle size, and total amount.
A reduced-duration or lower-magnitude priming signal prepares material before full-power heating for consistent aerosol generation.
This case uses two sequential pushes to secure aerosol consumables and reduce accidental removal without a separate release action.
This case shows how separate error detection and override circuitry prevent faulty control signals from powering an aerosol generator.
A reduced-duration or lower-magnitude priming signal prepares the aerosol material before full heating for more consistent delivery.
Variable-frequency power and filters select aerosol generators, simplifying customization while reducing reliance on moving-part switching.
This case uses carbon foam in fluid communication with a reservoir and a downstream trap to regulate aerosol characteristics.
This engineering case uses porous carbon foam to adsorb and release aerosol material, improving control of particle size and total delivery.
This case uses a flexible, pressure-responsive valve to preserve forward airflow while limiting vapor backflow into the battery portion.
An internal actuator feeds liquid to a wickless atomizer, reducing residue and flavor mixing.
Rotating flavor chambers extend aerosol flavor migration while simplifying user control.
A liquid transfer element blocks the air bleed channel during storage, then opens it under inhalation to maintain pressure.
A sensor and controller identify the active chamber, enabling multiple aerosol media options without frequent cartridge replacement.
A puff sensor identifies inhalation patterns, enabling the controller to personalize heater power and signal determination timing.
This case uses visual, acoustic, or haptic feedback to distinguish aerosol generation modes and improve usability.
An oscillation and counting circuit converts airflow capacitance into control data to adjust heating and prevent automatic starting.
A movable piston meters dry herb, extracts, or oils into a temperature-controlled heating chamber for repeated vaporization.
Radial-to-axial airflow redirection reduces jetting and turbulence, supporting aerosol particles sized for lung delivery.
A pivoting dual-head tool cleans aerosol-device heating chambers while selective cap release helps protect the heating blade.
This case uses a temperature-responsive helical gripper to hold aerosol articles against the heater, preserving contact during vaping.
A porous ceramic body with controlled d50 and β balances liquid suction and atomization efficiency while preventing leakage and dry heating.
This case uses patterned holes and fixed electrode connections to improve heating uniformity and simplify electronic cigarette assembly.
This case shows how a deformable valve blocks inhalable flow until a predetermined force is applied, supporting child-resistant access.
An adjacent capacitance electrode shields a planar inductive coil while enabling multiple sensing functions in an aerosol device.
An optical sensor reads liquid presence through the cartridge light guide, helping adjust heater power and avoid wasted operation.
Patterned holes direct atomizing substance to the heating layer while integrated electrodes improve connection stability and assembly.
The attachable aerosol-device cover senses temperature and humidity, then transmits external data.
Aligned air channels and a removable inner mouthpiece support steadier vapor temperature and easier cleaning.
A movable inner cylinder separates from the outer cylinder, exposing internal components for thorough cleaning without stressing the case.
This vaporizer uses magnetic electrodes in base holes to connect core wires directly, reducing assembly difficulty and process complexity.
A far-infrared radiating source heats e-liquid without contact, supporting larger atomization surfaces and faster aerosol generation.
This case uses GPIO sleep checks and UART active communication to balance battery life with charging responsiveness.
This case uses a non-igniting inhalation device and disposable botanical cartridges to mimic smoking while reducing cravings.