• Applications
  • Features
Ventilation, Pumping, Air Conditioning and Variable Torque Applications
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 150-150 mm² 300 kcmil);Voltage/frequency ratio, 5 points;voltage/frequency ratio - Energy Saving, quadratic U/f;voltage/frequency ratio, automatic IR compensation (U/f + automatic Uo);voltage/frequency ratio, 2 points;flux vector control without sensor, standard;Overheating protection drive;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;line supply undervoltage drive;against input phase loss drive;thermal protection motor;motor phase break motor;with PTC probes motor;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
160 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
160 A at 100 hp amperage rating