An absorbent secondary reservoir captures excess vaporizable material during pressure changes, preventing leaks and keeping vaporization stable.
A modular pod uses asymmetric retention, snap-fit seating, and smart contacts to improve vaporization and reliable power and data transfer.
Partitions isolate stored strip substrates from the atomization cavity and used residue space to prevent contamination and preserve flavor consistency.
Resilient sidewalls and asymmetric protrusion-recess locking secure the pod, prevent mis-seating, and maintain stable electrical connection.
Partitions isolate fresh, heated, and used strip substrates to block aerosol and residue contamination and keep flavor consistent.
Current-based heating cutoff helps a pierced capsule e-vaporizer avoid overheating, preserving flavor and using the formulation more efficiently.
Low-profile sidewalls and flanges keep the heating chamber above the receptacle, reducing overheating risk and material use.
A movable inlet control links airflow aperture and power switching to prevent overheating, avoid diluted aerosol, and extend vaporizer life.
Harmonic frequency tuning lets a piezoelectric transducer control aerosol droplet size while improving contact stability and power efficiency.
A surface priming signal clears excess precursor from the piezoelectric transducer to maintain cavitation and consistent aerosol delivery.
Surface priming clears excess precursor from the piezoelectric transducer while feedback tuning maintains stable cavitation and aerosol output.
A current-triggered heating cutoff in a pierced capsule e-vaporizer limits overheating, preserves vapor quality, and reduces wasted formulation.
A flexible shielding member changes inlet opening area by breathing direction, slowing inhalation while easing exhalation for better aerosol delivery.
Non-polymeric wicking material and open channels transfer precursor liquid while limiting heater contact and residue buildup.
Elastic cover regions transmit pressing to protected interface controls, avoiding cover removal while helping prevent accidental actuation.
This cartridge case uses a resilient plug and divided reservoir to limit leakage, corrosion, and dry-out at the vaporizer.
Triangular sump and funnel nozzle geometry direct aerosol flow to resolve contradictions between device complexity and drug delivery consistency.
Asymmetric suction inlet and blocking wall prevent liquid leakage when tilted, ensuring reliable atomization.
A press-type medical nebulizer uses a sliding switching element to fix an operating arm, enabling continuous gas flow through the delivery tube.
Segmented air pathways and integrated heatsinks reduce external surface temperature while conserving energy for extended usage time.
Rotatable cover adjusts valve position to change cracking pressure, eliminating bulky module swaps for rapid mode changes.
Atomizer heating sheet design replaces spiral wires to resolve low heating efficiency and poor atomizing effects in electronic cigarettes.
Screwing the suction port engages vertical convex features into concave slots, pre-aligning the cartridge before final assembly to prevent position shifts.
Segmented atomization cotton and nested air channels penetrate the guide cotton side wall to extract all smoke, stabilizing tar supply.
Rotating a concealed adjusting cover changes the clearance size to adjust air intake quantity, eliminating exposed inlets that compromise aesthetics.
Variable electrical resistance in the planar heating element creates a negative temperature gradient, controlling aerosol particle size and production volume.
Snap-fit engagement drives a piercing element through a sealing layer, routing liquid into a buffer chamber to prevent thread leakage during assembly.
A 3D heating component uses guide channels to atomize e-liquid through a regular convex-concave pattern on the plate body.
Side-by-side baking and atomization units resolve the contradiction between reducing harmful substances and maintaining sufficient smoke aroma.
A nasal inhaler uses a convergent-divergent conduit to suspend and transport medicinal substances into the respiratory tract.
A vaporization system delivers dry steam using vibratory and thermal energy to produce sub-micron particles.
A frangible wall breaks upon tampering, mixing an altering substance with the primary liquid to chemically reduce potency and prevent unauthorized use.
A vaporizer uses a turnover member to pause operation and dual heating units to warm cigarette sides and bottom.
A sliding cartridge mechanism moves the atomizer between a sealed housing position and an accessible open state for operation.
Segmented valve components enable thorough cleaning while maintaining secure attachment to prevent accidental patient inhalation of detached parts.
Radial elastic deformation of convex portions climbing over grooves resolves misalignment risks while maintaining attachable operation.
A self-actuated inhaler administers therapeutic vapors using a replaceable dispensing cartridge with a wick portion.