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HK 80M4 B5 2-4 IE3

E-Motor 230/400V 0,75kW 1400U B5 IE3
P 60 Hz
0.86 kW
n 60 Hz
1,755 r/min
P 50 Hz
0.75 kW
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Product details for

HK 80M4 B5 2-4 IE3

P 60 Hz
0.86 kW
n 60 Hz
1,755 r/min
P 50 Hz
0.75 kW
n 50 Hz
1,450 r/min
I 50 Hz
3.04 A
LF 50 Hz
0.75
Factor IA / IN
6
η (IE3) %
83
C
210 mm
H1
127 mm
B
260 mm
Ø D shaft
19 mm
Ø E
130 mm
Ø F
200 mm
All characteristics

Characteristics

Ambient temperature
  • -20 °C to +40 °C 
Protection IP
  • IP 55 
Material
  • housing: aluminium 
Design
  • Type B5 
  • without feet 
Customs tariff number
  • 85015220 
All characteristics

Product description

Notes
Caution! Measurement »B« can depending on design slightly vary in length.
Description
Self-cooling squirrel-cage energy-saving motors.
High efficiency IE3 - IEC60034-30:2009.
Rated voltage 230/400 V 50 Hz, 460 V 60 Hz.
4-pin.
Voltage tolerance ±5 %.

Product variants

5 Results
Show dimensional drawing
Identifier
P 60 Hz (kW)
n 60 Hz (r/min)
P 50 Hz (kW)
n 50 Hz (r/min)
Details / items
0.86 kW
1,755 r/min
0.75 kW
1,450 r/min
Learn more
1.3 kW
1,740 r/min
1.1 kW
1,440 r/min
Learn more
1.75 kW
1,745 r/min
1.5 kW
1,445 r/min
Learn more
2.55 kW
1,765 r/min
2.2 kW
1,465 r/min
Learn more
3.45 kW
1,760 r/min
3 kW
1,460 r/min
Learn more
P 60 Hz = nominal output at 400 V/60 Hz
n 50 Hz = nominal speed at 400 V/50 Hz
n 60 Hz = nominal speed at 400 V/60 Hz
I 50 Hz = nominal current at 400 V/50 Hz
LF 50 Hz = cos phi power factor at 50 Hz
P 50 Hz = nominal output at 400 V/50 Hz
η (IE3) = efficiency to IE3 in % (at full load)
Factor IA / IN = start-up current IA / Nominal current IN

Column selection

P 60 Hz (kW)
n 60 Hz (r/min)
P 50 Hz (kW)
n 50 Hz (r/min)
I 50 Hz (A)
LF 50 Hz
Factor IA / IN
η (IE3) %
C (mm)
H1 (mm)
B (mm)
Ø D shaft (mm)
Ø E (mm)
Ø F (mm)
P 60 Hz = nominal output at 400 V/60 Hz
n 50 Hz = nominal speed at 400 V/50 Hz
n 60 Hz = nominal speed at 400 V/60 Hz
I 50 Hz = nominal current at 400 V/50 Hz
LF 50 Hz = cos phi power factor at 50 Hz
P 50 Hz = nominal output at 400 V/50 Hz
η (IE3) = efficiency to IE3 in % (at full load)
Factor IA / IN = start-up current IA / Nominal current IN