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5 hp (3.7kW) 220V Single Phase AC Induction Motor

Single phase motor is an AC asynchronous motor. It has optional 1500rpm/3000rpm speed, 220V/110V/230V/240V voltage and 50/60 Hz frequency, easy to repair and maintain. Low price 3.7kW single phase induction motor is available with two capacitors to provide zero starting torque at rest, supplies for home appliances, offices, stores.
SKU: CCHN-SPIM-3700
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Delivery date: 6-25 days

Cheap 5 hp single phase motor is an asynchronous motor. It has 1500rpm/3000rpm speed. 200V/110V/230V/240V AC works at 50/60 Hz. 3.7kW single phase motor price is low, and has a start capacitor and run capacitor to provide starting torque during operation. The single phase induction motor is easy to repair and maintain, used for drills, air conditioners, compressors, pumps, cranes, garage door opening and closing systems.

Specifications

Model CCHN-YL112M-2 CCHN-YL112M2-4
Rated Output 3.7kW (5hp)
Efficiency 80% 77%
Power Factor 0.98 COSφ 0.95 COSφ
Rated Speed 2820rpm 1440rpm
Rated Current 20.5A 22A
Pole 2 Pole 4 Pole
Voltage 220V AC 50Hz (Default), other customizations can be customized.
Tmax/Tn 2.0 times 1.8 times
Ts/Tn 2.0 times 1. times
ls/ln 121 times 138 times


Dimension (Unit: mm)

Single phase motor dimension

Frame Size Mounting Dimension Overall Dimension
A B C D E F G H K AB AC AD AE HD L
112M 190 140 70 28 60 8 24 112 12 245 250 190 150 300 455


Details

 Single phase induction motor details

Tips: Working Principle of the Single Phase Motor

A single phase motor has two windings, namely the start winding and the running winding. The two windings are 90 degrees apart in space. A capacitor with a larger capacity is connected in series with the start winding. When the running winding and the start winding pass single phase alternating current, the current in the start winding reaches the maximum value first due to the action of the capacitor. Two identical pulsed magnetic fields are formed in time and space, and a rotating magnetic field is generated in the air gap between the stator and the rotor. Under its action, induced current is generated in the motor rotor, and the current interacts with the rotating magnetic field to generate electromagnetic field torque, which makes the motor rotate.