Internal deflectors create circular flow from vertically aligned ports, easing hydronic installation while separating magnetic and nonmagnetic particles.
Split airflow after the impeller so only the dirty outer stream enters downstream cyclones, cutting energy use and separator size.
A dust baffle blocks the hard-to-clean gap around the cyclone barrel, reducing dust buildup and improving cleaner assembly and service life.
An air curtain in the cyclone dust collector blocks pure and dusty air mixing, improving separation efficiency and reducing filter clogging.
A taller multi-cyclone second stage captures residual dust, cuts backpressure, and helps protect the suction motor without a clogging pre-motor filter.
Pre-assembling alumina liner blocks on a form creates a smooth, void-free hydrocyclone surface that cuts wear, labor, and downtime.
A detent and ratchet mechanism keeps the cyclone unit from reinserting too early, helping bulky debris clear fully and protecting the motor.
By routing inlet and outlet ducts through the dirt chamber, this two-stage cyclonic separator cuts tortuous airflow paths and external ducting.
Nested first and second cyclones improve small-particle separation while lowering pressure drop and using vacuum cleaner cross-section more effectively.
Three serial cyclone stages with more downstream cyclones improve fine dust separation, reduce blockage risk, and prevent debris re-entrainment.
Three cyclone stages with increasing parallel units improve fine dust removal from airflow while reducing blockage risk in vacuum cleaners.
A non-circular outlet creates swirling centrifugal flow to remove oil from refrigerant gas with low pressure loss and no filter media.
A side-by-side cyclone and dirt chamber layout cuts vacuum height, improves stability, and keeps the exhaust grill removable for cleaning.
Angled, nested cyclone sets pack more parallel separators into a vacuum cleaner while preserving airflow and reducing blockage risk.
Injecting liquid into the suction airflow helps capture fine dust, separate wet matter, and maintain suction across wet and dry cleaning modes.
Drilled sweeper headers and an air-bleed centrifugal separator cut turbulence and pressure demand while keeping basin debris moving.