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400W 3 Phase AC Vibration Electric Motor, 220V/380V

High quality 220V/380V AC three phase vibrating electric motor has 400W power, 4 pole, 807kg force, 1420 rpm, CE certification, IP65 waterproof function, and 50Hz frequency, especially suitable for industrial needs.
SKU: CCHN-AVM-MVE80015
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Delivery date: 6-25 days

Factory price vibration electric motor works at 3 phase AC 220V 50Hz/380V 50Hz, available with 400W power, 1.36 amp, 1420 rpm speed, 807kg force, 4 pole, IP65 waterproof and CE certificate. The mini industrial vibrating motor is widely used in mining, metallurgy, coal, electric power, construction and other industries.

Specifications

Model CCHN-MVE80015
Phase 3 Phase
Pole 4 Pole
Force 807 Kg, 8 kN
Speed 1420 rpm
Power 400W (0.4kW)
Current 1.36A
Voltage Class 3 Phase 220V 50Hz/380V 50Hz
Weight 29.5 kg
Frame No. 50
Frequency 50 Hz/60 Hz
Protection Rank IP65
Insulation Class F
Certificate CE
Warranty 12 Months


Dimension (Unit: mm)

400W 3 phase vibration motor dimension

A B C D E F G H I L M N Cable Gland
120 170 391 208 210 22 17 94 180 205 93 170 M20*1.5


Internal Structure

3 Phase vibration motor structure

Applications

CCHN 400W 220V/380V AC 3 phase micro vibration motor is widely used in mining, metallurgy, coal, electricity, construction, chemical industry, medical care, casting, food, powder spraying equipment, powder screening, grain machinery, etc.

Vibration motor applications

Tips: "Pole" in the AC Vibrating Electric Motor

In the AC vibrating electric motor, the number of poles refers to the pairs of north and south magnetic poles created in the motor's stator. The number of poles directly influences the motor’s speed and vibration frequency. AC vibrating electric motors with fewer poles (e.g., 2 poles) operate at higher speeds, while those with more poles (e.g., 4 or 6 poles) operate at slower speeds. The choice of pole configuration affects the motor's performance in applications where specific vibration frequencies are required, making it crucial to match the motor’s pole count with the desired operational characteristics.