The ATV32HU11M2 is a variable speed drive designed for industrial applications, offering adjustable switching frequency and high torque accuracy.
Product ModelATV32HU11M2
Product ID37204
Stock on Request
Last updated: 8/29/2026
Key Features
1
FeatureEfficient and reliable performance for industrial applications.
2
FeatureAdjustable switching frequency (2...16 kHz) for precise control.
3
FeatureHigh torque accuracy (+/- 15%) for stable motor operation.
4
FeatureSuitable for asynchronous motors in open-loop mode.
5
FeatureCompact design with heat sink for improved thermal management.
Technical Specifications
Detailed engineering parameters based on manufacturer documentation
Specifications may be subject to change without notice
Parameter
Value
Parameter
Value
Range of Product
Altivar 32
Product or Component Type
Variable speed drive
Product destination
Asynchronous motorsSynchronous motors
Product Specific Application
Complex machines
Function Available
-
Assembly style
With heat sink
Component name
ATV32
EMC filter
Class C2 EMC filter integrated
Phase
1 phase
[Us] rated supply voltage
200...240 V - 15...10 %
Supply voltage limits
170...264 V
Supply frequency
50...60 Hz - 5...5 %
Network Frequency
47.5...63 Hz
Motor power kW
1.1 kW 200...240 V
Maximum Horse Power Rating
1.5 hp 200...240 V
Line current
11.5 A 240 V 1 phase 1.1 kW / 1.5 hp13.6 A 200 V 1 phase 1.1 kW / 1.5 hp
Apparent power
2.8 kVA 240 V 1 phase 1.1 kW / 1.5 hp
Prospective line Isc
1 kA 1 phase
Nominal output current
6.9 A 4 kHz 240 V 1.1 kW / 1.5 hp
Maximum transient current
10.4 A 60 s 1.1 kW / 1.5 hp
Output frequency
0.0005...0.599 kHz
Nominal switching frequency
4 kHz
Switching frequency
2...16 kHz adjustable
Speed range
1...100 asynchronous motor in open-loop mode
Speed accuracy
+/- 10 % of nominal slip 0.2 Tn to Tn
Torque accuracy
+/- 15 %
Transient overtorque
170...200 %
Braking torque
<= 170 % with braking resistor
Asynchronous motor control profile
Voltage/frequency ratio, 2 pointsVoltage/frequency ratio - Energy Saving, quadratic U/fFlux vector control without sensor - Energy Saving, NoLoad lawFlux vector control without sensor, standardVoltage/frequency ratio, 5 points
Synchronous motor control profile
Vector control without sensor
Regulation loop
Adjustable PID regulator
Motor slip compensation
Adjustable 0...300 %Automatic whatever the loadNot available in voltage/frequency ratio (2 or 5 points)
Local signalling
1 LED red drive voltage1 LED green CANopen run1 LED red CANopen error1 LED red drive fault
Internal supply for reference potentiometer (1 to 10 kOhm) 10.5 V DC +/- 5 %, <10 mA overload and short-circuit protection
Analogue input number
3
Analogue input type
AI1 voltage 0...10 V DC 30000 Ohm 10 bitsAI2 bipolar differential voltage +/- 10 V DC 30000 Ohm 10 bitsAI3 current 0...20 mA (or 4-20 mA, x-20 mA, 20-x mA or other patterns by configuration) 250 Ohm 10 bits
Sampling duration
2 ms AI1, AI2, AI3) - analog2 ms AO1) - analog
Response time
LI1...LI6 8 ms +/- 0.7 ms logicR1A, R1B, R1C 2 ms relayR2A, R2C 2 ms relay
Accuracy
+/- 0.2 % AI1, AI2, AI3) for a temperature of -10...60 °C+/- 0.5 % AI1, AI2, AI3) for a temperature of 25 °C+/- 1 % AO1) for a temperature of 25 °C+/- 2 % AO1) for a temperature of -10...60 °C
Linearity error
+/- 0.2...0.5 % of maximum value AI1, AI2, AI3)+/- 0.3 % AO1)
Analogue output number
1
Analogue output type
AO1 software-configurable current 0...20 mA 800 Ohm 10 bitsAO1 software-configurable voltage 0...10 V 470 Ohm 10 bits
R1 3 A 250 V AC resistive, cos phi = 1R1 4 A 30 V DC resistive, cos phi = 1R1, R2 2 A 250 V AC inductive, cos phi = 0.4R1, R2 2 A 30 V DC inductive, cos phi = 0.4R2 5 A 250 V AC resistive, cos phi = 1R2 5 A 30 V DC resistive, cos phi = 1
Discrete input number
7
Discrete input type
Programmable (sink/source) LI1...LI4)24...30 V DC level 1 PLCProgrammable as pulse input 20 kpps LI5)24...30 V DC level 1 PLCSwitch-configurable PTC probe LI6)24...30 V DCSafe torque off STO)24...30 V DC - 1500 Ohm
LinearRamp switchingDeceleration ramp automatic stop DC injectionCUSDeceleration ramp adaptationUS
Braking to standstill
By DC injection
Protection type
Input phase breaks driveOvercurrent between output phases and earth driveOverheating protection driveShort-circuit between motor phases driveThermal protection drive