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1 hp (0.75kW) 3 phase 4 pole AC Induction Motor

Three-phase AC induction motor or asynchronous motor for sale, 1 hp or 0.75kW rated output, 4-pole number, 1390rpm rated speed, and rated voltages 380V 50Hz. Cheap 3-phase induction motor is designed with optimum structure, high reliability, low noise and convenient to operate.
SKU: CCHN-IM-7504P
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Delivery date: 6-25 days

1 hp (0.75kW) 3-phase 4-pole AC induction electric motor is widely used in various kinds of general purpose machineries like fans, pumps, compressors, machine tools, gearboxes, transportation and so on. Low cost and manufacturer direct sale.

1hp Induction Motor Specification

Basics Model CCHN-Y2-80M2-4
Design Standard IEC
Weight 15kg
Frame Type 80M
Mounting Horizontal Foot Mounting (B3)
Wiring Method Output≤4hp (3kW), Y connection
Output≥5.5hp (4kW), Delta connection
Degree of protection IP54/IP55
Insulation Class Class F
Cooling TEFC(compliance to IC 411 code of IEC 60034-6)
Technical Parameters Nominal Output 1hp or 0.75kW
Pole Number 4-pole
Nominal Speed 1390rpm
Frequency 50Hz
Nominal Voltage 380V (Y connection by default) / 220V (Change Y to Δ connection on your own)
Nominal Current (full load) 2.05A/3.55A
Efficiency 73%
Power Factor( cosφ) 0.76
Nominal Torque (Tn) 5.15Nm
Locked Rotor Torque/Nominal Torque (TST/Tn) 2.3
Maximum Torque/Nominal Torque (Tmax/Tn) 2.3
Locked Rotor Current/Nominal Current (IST/In) 6.0
Noise Level 58dB/(A)
Environment Ambient Temperature -15℃+40℃
Altitude Less than 1000m above sea level

3-phase Induction Motor Dimensions
3-phase AC induction motor dimensions

Frame Type Mounting Dimensions (mm) Overall Dimensions
A A/2 B C D E F G H K AB AC AD HD L
80M 125 62.5 100 50 19 40 6 15.5 80 10 165 175 145 220 295

Wiring Diagrams (Three-phase squirrel-cage induction motor)
3 phase induction motor wiring connection diagram

Details

750W AC Induction Motor Dtails

Tips: What is an induction motor or asynchronous motor?

An induction motor or asynchronous motor is an AC electric motor. When the induction motor running, there is relative motion between the rotating magnetic field and rotor windings in the air gap, and the induction current in the rotor windings under the effect of electromagnetic induction produces the electromagnetic torque, so as to achieve the conversion of electrical and mechanical energy.

The stator of the induction motor is not the rotational part of motor, and its main task is to produce a rotating magnetic field. The rotating magnetic field is not achieved by the mechanical method, but by means of that the AC in the several pairs of electromagnets makes the nature of the magnetic pole change circularly, which is equivalent to a rotating magnetic field. The rotor is a rotatable conductor, mostly showing the shape of squirrel caged. Rotor winding is divided into two types of squirrel-cage and wound.
Under normal circumstances, the rotor speed of the induction motor is always slightly lower than the speed of the rotating magnetic field (synchronous speed), so the induction motor is also known as the asynchronous motor.