The devices can also be used as an AHU temperature controller in connection with valve actuators, as well as for universal heating and cooling applications with DC 0…10 V actuators.
Supplying Siemens Two Way – Three Way Globe Valve. This valve is used in chemical, petrochemical and water treatment plants. Ideal for regulating and controlling fluid and gas, this valve can withstand high pressure.
DAMPER Air damper actuators GMA..1 Rotary version with spring return, AC 24 V / DC 24…48 V / AC 230 V Electronic motor driven actuators for two-position, three-position, and modulating control, nominal torque 7 Nm, with spring return, self-centering shaft adapter, mechanically adjustable span between 0…90°, pre wired with 0.9 m long connection cables.
Two Way – Three Way FCU Valve. This valve is used in chemical, pharmaceutical and petrochemical industry. This valve is procured by our skilled agents from reputed vendors of the market. Available in different sizes and specifications, this valve is highly demanded among clients.
Valve VVF47..,VXF47..,VVF42..C,VVF42..KC,VXF42..C We are persistently striving to sustain our high credibility in the market by exporting and supplying Flow Control Valves. These valves are manufactured at vendor’s end using best quality mild steel and cast iron.
The SAV Non-spring Return (NSR), Electronic Valve Actuator requires a 24 Vac supply and receives a 0 to 10 Vdc or a 4 to 20 mA control signal to proportionally control a valve. This actuator is designed to work with Flow rite 599 Series 2-way and 3-way valves or Siemens flanged, Pressure Independent Control Valves with a 3/4-inch (20 mm)
Electromotoric actuators for the operation of Siemens combi valves of type VPI46.40F9.5Q and VPI46.50F12Q with 15 mm stroke as control valves in ventilation, air conditioning, and district heating systems.
Electromotoric actuators for modulating or 3-position control of small valves for terminal units and chilled ceilings. With position indication, manual control and plug-in type connecting cable 1.5 m. Automatic stroke adaption and force-dependent switching off in the end position.