Two-part aerosol housing enables appearance changes while sealing out dust.
Unequal rectangular dimensions and locking gaps improve cartridge coupling stability while preserving consistent vapor delivery.
Detachable shells open the mounting cavity for atomizer and battery removal, while isolated airflow paths preserve inhalation performance.
A mesh heating part warms aerosol through the central passage, reducing condensation and supporting smoother airflow and vapor generation.
This case combines stamping and stretching with a one-piece metal shell to improve grip and resist impact damage.
An air pump stores atomized smoke in a detachable cup, separating generation from inhalation for portable, flexible use.
This case shows how a cap-integrated stick support creates an insertion space with the cartridge for stable stick alignment.
This case uses ordered-pore substrates and thermal insulation to regulate material flow, reduce heat loss, and protect residual material.
Dual chambers isolate the atomization assembly from leaked e-liquid during transport.
This vaporizer separates heating from the cartridge to cut contact costs and replace degraded wicking elements.
A partitioned tube compares chamber pressure through airflow sensing, locking or unlocking the heater under preset conditions.
This case uses voltage-based heater resistance tracking to detect low precursor levels and stop poor-quality aerosol generation.
Codes on aerosol carriers are read outside the heating chamber, protecting the detector from heat and dirt for consistent authentication.
Sensors and feedback adjust channel compression and heater power to deliver needed material while limiting cartridge waste.
Mechanical projections press sensing surfaces to verify authentic cartridges while keeping aerosol devices simple and cost-effective.
A vapor gathering structure combines streams from separate atomization cores before discharge, reducing dispersion and enriching aroma.
Partial insertion activates rollers or sensors to complete accurate aerosol consumable loading and support safe ejection.
A modular sealing cap and frame arrangement improves waterproofing, durability, and button usability in dark environments.
This atomizer uses internal heating-element support, flexible liquid guidance, and secured leads to improve stability and airflow.
This atomizer separates air inlet and vent paths for smooth filling while absorbing residual e-liquid and reducing leakage.
A ridge around the base aperture separates dual air paths, reducing turbulence around the heating chamber for consistent aerosol delivery.
Reflective layers and air gaps reduce heat transfer from the heater, lowering casing temperature and battery power loss.
This heating assembly uses segmented zones and thermal insulation to limit heat transfer, improve heat use, and reduce aerosol temperature.
A movable member is pressed and slid to open the receiving hole, replacing complex two-handed end-cap operation.
This aerosol device uses inner and outer air paths to improve airflow, cool heating elements, and reduce energy consumption.