A liquid refill system uses a detachable actuator to transfer fluid between reservoirs.
A loading arm uses a parallel linkage mechanism to maintain connection device position during pivoting.
Dual bypass channels with independent control valves reduce energy consumption by optimizing backpressure management during single-nozzle dispensing operations.
An onshore hose reel manages fluid transfer by adjusting hose length via torque sensors, preventing damage from excessive tensile forces.
A fuel valve main valve slows the shut-off body with a fluid displacement chamber, preventing pressure surges during rapid closure.
Segmented central and atomizer channels mix ambient air with heated vapor, preventing mouth burning from solidified plant material.
Segmented tank adapter and canister connector allow flushing of internal valve components to prevent contamination during filling operations.
A dispensing device uses limited peripheral discharge openings and a vertical retaining handle to improve user grip comfort.
Dispenser sensors feed event data to a controller that generates award indicators, reducing retraining needs and disease transmission risks.
Cap assembly with actuatable valve and check valves enables precise liquid dispensing from a single squeeze bottle reservoir.
A brushless motor drives a cam element to position an obstructing valve within a discharge conduit.
A fuel can adapter uses a sliding tube and elbow to thread onto the container neck for secure handling.
A universal capless refueling funnel uses deformable tabs to adapt its tip shape for various vehicle fuel necks.
A fluid delivery system uses a transfer vessel to move liquid between bulk and process canisters via pressure cycling.
Nested pouches isolate fluids from propellant gas, reducing dead space and eliminating the need for multiple valves in rigid flasks.
Ribbed adapter enables complete emptying and reuse by creating an air exchange opening that compensates internal pressure differences during refilling.