5.5 hp (4kW) Brake Motor, 3 Phase, 2/4 Pole

5.5 hp (4kW) Brake Motor, 3 Phase, 2/4 Pole
5.5 hp (4kW) Brake Motor, 3 Phase, 2/4 Pole
from
$1,401.41
Ex Tax: $1,401.41
  • Stock: In Stock
  • Model: SCJ009465
  • SKU: SCJ009465
Products Sold: 0
Product Views: 294

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  • Description

5.5 hp (4kW) Brake Motor, 3 Phase, 2/4 Pole

Brief

3 phase brake motor with rated voltage 380V (380V~480V can be customized), 2 pole/ 4 pole can be chosen, 0.87 cosφ/ 0.82 cosφ power factor. Electric brake motor is widely used in shipbuilding, industrial, fire fighting, chemical industry, energy, mining gold, environmental protection and national defense construction.

Description

Lower cost electromagnetic brake motor with rated power 4000 watt, 2880r/ min/ 1410r/ min speed, static braking torque 40Nm, 90W energizing power and 84% high efficiency. 

Specification

ModelSCJ009465SOCOJE-112M-4
Rated power5.5hp (4kW)
Rated voltage380V (380V~480V can be customized)
Numbers of poles2 pole4 pole
Speed2880r/ min1410r/ min
Power factor0.87 cosφ0.82cosφ
Weight72kg86kg
Efficiency84%
Static braking torque40Nm
No-load brake lag time0.25s
Energizing power90W
Locked-rotor current/ rated current7 Ist/ In
Locked-rotor torque/ rated torque2.2 Tst/ Tn
Maximum torque/ rated torque2.3 Tmax/ Tn
CertificateCE
Warranty12 months

Dimension

5.5 hp (4kW) Brake Motor, 3 Phase, 2/4 Pole5.5 hp (4kW) Brake Motor, 3 Phase, 2/4 Pole5.5 hp (4kW) Brake Motor, 3 Phase, 2/4 Pole

 

Frame sizeMounting dimensions (mm)Overall dimensions (mm)
ABCDEFGHKABACADHDL
112M19014070286082411212245240190265510

 

Details

5.5 hp (4kW) Brake Motor, 3 Phase, 2/4 Pole

Tips: Simple CalculationPrinciple for Select Brake Motor.

The choice of brake model depends to a large extent on the required braking torque. In addition, factors such as braking moment of inertia, relative speed, braking time, and operating frequency should also be considered. The following are the styling rules recommended by a certain brake manufacturer. Different manufacturers will have some differences, but the principles are similar.
Calculate the required braking torque: T=K×9550×P/n
Among them:
T——Required braking torque (N.m)
P——Transmission power (kW)
n——Relative speed when the brake is applied (r/min)
K safety factor (take K>2)

 

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