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5.5hp (4kW) 3-Phase Asynchronous Motor with Clutch

5.5hp (4kW) 3-Phase Asynchronous Motor with Clutch
5.5hp (4kW) 3-Phase Asynchronous Motor with Clutch
5.5hp (4kW) 3-Phase Asynchronous Motor with Clutch
5.5hp (4kW) 3-Phase Asynchronous Motor with Clutch
5.5hp (4kW) 3-Phase Asynchronous Motor with Clutch
5.5hp (4kW) 3-Phase Asynchronous Motor with Clutch
5.5hp (4kW) 3-Phase Asynchronous Motor with Clutch
5.5hp (4kW) 3-Phase Asynchronous Motor with Clutch
5.5hp (4kW) 3-Phase Asynchronous Motor with Clutch
from
$2,931.31
Ex Tax: $2,931.31
  • Stock: In Stock
  • Model: SCJ009484
  • SKU: SCJ009484
Products Sold: 0
Product Views: 307

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  • Description

5.5hp (4kW) 3-Phase Asynchronous Motor with Clutch

Brief

Asynchronous motor with clutch is a motor with rated power 5.5hp/4kW, voltage 380V 50Hz. Cheap 3 phase induction motor has low noise, simple operation, and high protection class.

Description

With 5.5hp (4kW) asynchronous motor with clutch's advantages of high efficiency, reliable performance and favorable price, 3-phase asynchronous motor with clutch can be widely used in textile, chemical, metallurgy, building materials, food mining, paper making, plastic and other industries.

5.5hp (4kW) 3-Phase Asynchronous Motor with Clutch Specification

ModelSCJ009484
Capacity4kW
Rated Torque25.2Nm
Speed adjustable Range1250-125r/min
Speed Changing Rate3%
Rated Voltage380V
InstallationB3
Frequency50Hz
Phase3 phase
CertificationCE, CCC, IS9001, IS2008
IP GradeIP21
EfficiencyIE1/IE2/IE3
FrameCast Iron or aluminum
Weight160kg
Ambient temperature-15℃~40℃
Altitudenot exceeding 1000 Meters
DutyContinuous running
Insulation GradeB
Warranty1 year

 5.5hp (4kW) 3-Phase Asynchronous Motor with Clutch Dimensions

5.5hp (4kW) 3-Phase Asynchronous Motor with Clutch5.5hp (4kW) 3-Phase Asynchronous Motor with Clutch5.5hp (4kW) 3-Phase Asynchronous Motor with Clutch

ModelYCT180-4A
Mounting Dimension & Tolerance (mm)ABasic Size279
A/2Basic Size139.5
WBBasic Size305
WCBasic Size45
Limit Size±1.5
DBasic Size28
Limit Tolerance+0.009   -0.004
EBasic Size60
Limit Tolerance±0.37
FBasic Size8
Limit Tolerance-0.038
GBasic Size24
Limit Tolerance-0.2
HBasic Size180
Limit Tolerance-0.5
KBasic Size15
Limit Tolerance0
Position ToleranceΦ 1.5 
Mounting Dimension & Tolerance (mm)AB365
AC385
AD195
HD430
L675

 

Details

5.5hp (4kW) 3-Phase Asynchronous Motor with Clutch

Tips: The Starting Methods of 5.5hp (4kW) 3 Phase Asynchronous Motor with Clutch.

1. Soft start

With the rapid development of microcomputer control technology, a number of electronic soft start controllers have been successfully developed in the related control engineering fields, which are widely used in the motor starting process, and the buck starter has been replaced. The current electronic soft start facilities are using the thyristor voltage regulation circuit, whose circuit composition is described as follows: six thyristors are connected in series to the three-phase power supply after two anti-parallel connections, and after the system sends the start signal, the microcomputer-controlled starter system immediately performs data calculation, so that the thyristor delivers the trigger signal, which enables the thyristor conduction angle to be controlled, and the output voltage is adjusted according to the given output to realize the motor control. The output voltage is adjusted according to the given output to control the motor. This starting method is suitable for starting and controlling three-phase AC asynchronous motors of various power values, including six and three connections.

2. Direct start

This starting method is the most basic and simple one among the motor starting methods. Firstly, the motor is connected to the grid with the help of knife switch, and then the motor starts and runs under the rated voltage, which is characterized by low investment, simple equipment and low quantity.

3. Reduced voltage starting

Due to the disadvantages of direct starting, voltage reduction starting is created. The starting environment for this starting method is no-load and light-load. Since the buck starting method is realized to limit the starting torque and starting current at the same time, the circuit needs to be restored to the rated state after the starting work is finished. 

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