Arranging components laterally instead of stacking them vertically reduces thickness while maintaining airflow and atomization efficiency.
Segmented air passages and spatial separation prevent condensate formation and liquid leakage, ensuring stable aerosol generation.
An automatic drive mechanism rotates a multi-chamber cartridge to select different materials, eliminating manual replacement operations.
A detachable start air tube activates the vaporizer via a separate pneumatic channel, preventing failure when the main inhalation channel blocks.
A detachable suction nozzle assembly connects to a housing via a locking mechanism for aerosol generation.
Conductive adsorption member mounts vaporization assembly to insulating holder, eliminating complex mechanical fasteners and reducing manufacturing costs.
Segmenting the liquid tank from the atomizer reduces hardware waste by allowing independent replacement of consumed components.
A compact testing device delivers aerosolized compounds to human airway model tissues using radial fans and a microcontroller.
Alternating ridges and grooves on a support element generate controlled turbulence to improve aerosol mixing and concentration consistency.
A receiving groove in the starting passage captures condensed aerosol before it reaches sensitive internal components.
A doped semi-conductor ceramic reservoir generates aerosol through resistive heating with reduced thermal mass.
A magnetic connector and elastic element disconnect power between the atomizer and power supply assembly.
Configurable user actuatable portions select predetermined functions within an aerosol provision system.