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ATV32H055N4 Datasheet, PDF (1/10 Pages) List of Unclassifed Manufacturers – variable speed drive ATV32
Product data sheet
Characteristics
Complementary
Line current
Apparent power
Prospective line Isc
Nominal output current
Maximum transient current
Speed drive output frequency
Nominal switching frequency
Switching frequency
Speed range
Speed accuracy
Torque accuracy
Transient overtorque
Braking torque
Asynchronous motor control profile
Synchronous motor control profile
Regulation loop
Motor slip compensation
Local signalling
Output voltage
Jun 15, 2015
ATV32H055N4
variable speed drive ATV32 - 0.55 kw - 400 V -
3 phase - with heat sink
Main
Range of product
Product or component
type
Product destination
Product specific appli-
cation
Function available
Assembly style
Component name
EMC filter
Network number of
phases
[Us] rated supply volt-
age
Supply voltage limits
Supply frequency
Network frequency lim-
its
Motor power kW
Motor power hp
Altivar 32
Variable speed drive
Asynchronous motors
Synchronous motors
Complex machines
-
With heat sink
ATV32
Class C2 EMC filter integrated
3 phases
380...500 V - 15...10 %
323...550 V
50...60 Hz - 5...5 %
47.5...63 Hz
0.55 kW 380...500 V
0.75 hp 380...500 V
2.8 A 380 V 3 phases 0.55 kW 0.75 hp
2.2 A 500 V 3 phases 0.55 kW 0.75 hp
1.9 kVA 500 V 3 phases 0.55 kW 0.75 hp
<= 5 kA 3 phases
1.9 A 4 kHz 500 V 0.55 kW 0.75 hp
2.9 A 60 s 0.55 kW 0.75 hp
0.5...599 Hz
4 kHz
2...16 kHz adjustable
1...100 asynchronous motor in open-loop mode
+/- 10 % of nominal slip 0.2 Tn to Tn
+/- 15 %
170...200 %
< 170 % with braking resistor
Voltage/Frequency ratio, 2 points
Voltage/Frequency ratio, 5 points
Flux vector control without sensor - Energy Saving, NoLoad law
Flux vector control without sensor, standard
Voltage/Frequency ratio - Energy Saving, quadratic U/f
Vector control without sensor
Adjustable PID regulator
Automatic whatever the load
Not available in voltage/frequency ratio (2 or 5 points)
Adjustable 0...300 %
1 LED red drive fault
1 LED red CANopen error
1 LED green CANopen run
1 LED red drive voltage
<= power supply voltage
1