Comfort, carried by controlled water.

A scalable hybrid adiabatic humidifier for commercial air systems. F1C combines controlled water atomization, secondary evaporation, output limiting, and hygienic water management in one serviceable platform.

A scalable hybrid platform.

The F1C scales by configuring the water stages that feed the air. This keeps the physical principle consistent while allowing output to follow the building demand and application envelope.

Control

Staged output

Demand is distributed across configurable process valves and pulse-width modulation.

Supervision

Water-aware

Conductivity and water temperature are measured as part of operating protection.

Interfaces

Open integration

Analog demand, Modbus, BACnet, and Ethernet support design and service workflows.

Service

Serviceable

Service configuration, logs, and a built-in web interface are available from the controller.

Clean water logic, not a promise on a label.

Hygiene comes from the complete operating routine: suitable feed water, measured conductivity, temperature supervision, pressure protection, and sequential flushing across the configured stages.

Measure

Compensated conductivity and water temperature make changes in the feed water visible.

Prioritise

Normal humidity demand takes priority over a maintenance flush.

Flush

Enabled stages run in sequence so the complete wetted path is visited.

Protect

Pressure, leak, motor-temperature, and water-temperature conditions raise explicit alarms.

Designed to enter the building, not replace it.

F1C accepts common supervisory demand signals and exposes the fieldbus and service interfaces required by installers and building-management teams.

  • 0–10 VDC
  • 4–20 mA
  • Modbus RTU
  • Modbus TCP
  • BACnet/IP
  • BACnet MS/TP
  • Ethernet

A system you can specify clearly.

The public specification follows the current F1C documentation baseline. Detailed capacities and variant-specific electrical data remain pending technical and public-release review in the F1C document set.

Hybrid adiabatic

Process

Pressurised water atomization followed by secondary evaporation and droplet separation.

Configurable

Demand

0–10 V or 4–20 mA input from the supervisory control system.

Adaptive

Outputs

Staged process valves, pump control, flush drain, status and alarm relays.

Open

Communications

Modbus RTU/TCP, BACnet/IP, BACnet MS/TP, and Ethernet web access.

Supervised

Protection

Pressure, conductivity, water temperature, leak, motor temperature, and maintenance alarms.

Scheduled

Hygiene

Configurable sequential flushing of enabled atomisation stages and the drain path.

One platform, built around the air-handling unit.

F1C supports commercial HVAC, healthcare and laboratory environments, data centres, and hospitality applications where humidity and evaporative cooling must be controlled together.