Pressurise
The inlet supply is checked and the pump raises water pressure for controlled atomisation.
The F1C is not a generic mist generator. Its result depends on a sequence: pressure, droplet size, air contact, secondary evaporation, separation, and a protected return path. Each stage has a job.
Technical documentsThe process is easier to trust when every transition has a visible purpose. The F1C combines an open water circuit with a controlled air path and a controller that watches both.
The inlet supply is checked and the pump raises water pressure for controlled atomisation.
Sequential valve groups divide the water into fine droplets and introduce them where the airstream can absorb them.
The primary and secondary air path completes evaporation and removes heat from the air.
The droplet separator catches larger residual droplets and returns them to the catch pan.
Water and operating conditions remain measured; configured stages are flushed through the drain path.
The protection system follows the physical sequence. A poor inlet condition should stop the pump before atomisation; a high-humidity condition should reduce demand before output becomes excessive; a maintenance condition should run its own isolated routine.
External analog or network demand establishes the requested operating level.
Return and output humidity support PID control and condensation limiting.
Conductivity and temperature identify changes that affect the wetted circuit.
Inlet and pump-side readings support dry-run and stability supervision.
Leak, motor-temperature, board-temperature, and maintenance states remain explicit.
A flush should never compete with a real humidity request. The controller closes the normal outlet path, gives humidification priority at the valve lock, and then resumes maintenance across the configured stages.
Water temperature and conductivity determine whether a quality condition needs escalation.
Every enabled stage is visited from the first to the last.
The dedicated flush valve opens for each stage and closes again afterward.
Normal humidification waits for the maintenance lock instead of competing with it.
The controller supports direct supervisory signals, serial fieldbuses, IP fieldbuses, and local service workflows without making the operator depend on a proprietary remote portal.