• Applications
  • Features
Asynchronous motors;Pumps and fans in HVAC;
VIA, VIB, FM, FLA, FLB, FLC, RY, RC, F, R, RES terminal 2.5-2.5 mm² / AWG 14;L1/R, L2/S, L3/T terminal 6-6 mm² / AWG 10;Voltage/frequency ratio, automatic IR compensation (U/f + automatic Uo);voltage/frequency ratio, 5 points;flux vector control without sensor, standard;voltage/frequency ratio - Energy Saving, quadratic U/f;voltage/frequency ratio, 2 points;Overheating protection drive;line supply undervoltage drive;against input phase loss drive;thermal protection motor;motor phase break motor;with PTC probes motor;thermal power stage drive;short-circuit between motor phases drive;input phase breaks drive;overcurrent between output phases and earth drive;overvoltages on the DC bus drive;break on the control circuit drive;against exceeding limit speed drive;line supply overvoltage and undervoltage drive;Internal supply for reference potentiometer (1 to 10 kOhm) 10.5 V DC +/- 5 %, <10 A overload and short-circuit protection;internal supply 24 V DC 21-27 V), <200 A overload and short-circuit protection
5.1 A at 380/460 VAC
Lower maintenance costs-reduce the mechanical stress on belts, piping and ductwork and eliminate valve or inlet guide vane maintenance
Reduced harmonics embedded reduced harmonic technology is equivalent to installing a 3% line reactor saving panel space and reducing component and wiring costs
Reduce installation costs embedded technology reduces input currents which allows a cost reduction in wire size, short circuit protection devices and enclosure size
Improve operating efficiency embedded technology reduces input currents which improves operating efficiency by 10% in many installations
Achieve 12 to 24 month payback for AC drives installed on typical pump or fan applications