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10hp (7.5kW) 3-Phase Asynchronous Motor with Clutch

10hp (7.5kW) 3-Phase Asynchronous Motor with Clutch
10hp (7.5kW) 3-Phase Asynchronous Motor with Clutch
10hp (7.5kW) 3-Phase Asynchronous Motor with Clutch
10hp (7.5kW) 3-Phase Asynchronous Motor with Clutch
10hp (7.5kW) 3-Phase Asynchronous Motor with Clutch
10hp (7.5kW) 3-Phase Asynchronous Motor with Clutch
10hp (7.5kW) 3-Phase Asynchronous Motor with Clutch
10hp (7.5kW) 3-Phase Asynchronous Motor with Clutch
10hp (7.5kW) 3-Phase Asynchronous Motor with Clutch
from
$4,387.60
Ex Tax: $4,387.60
  • Stock: In Stock
  • Model: SCJ009485
  • SKU: SCJ009485
Products Sold: 0
Product Views: 343

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  • Description

10hp (7.5kW) 3-Phase Asynchronous Motor with Clutch

Brief

7.5kW asynchronous motor with clutch with 3 phase, wide speed adjustable range, 50Hz frequency, 36.1Nm rated torque, offers high accuracy, stable performance and long service life advantages.

Description

3-phase asynchronous motor with clutch, 7500 watt, with rated voltage 380V, 50Hz frequency, speed adjustable 1250-125rpm/min, it can be widely used in textile, chemical, metallurgy, building materials, food mining, paper making, plastic and other industries.

10hp (7.5kW) 3 Phase Asynchronous Motor with Clutch Specification

ModelSCJ009485
Capacity7.5kW
Rated Torque36.1Nm
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
Weight250kg
Ambient temperature-15℃~40℃
Altitudenot exceeding 1000 Meters
DutyContinuous running
Insulation GradeB
Warranty1 year

10hp (7.5kW) 3 Phase Asynchronous Motor with Clutch Dimensions


10hp (7.5kW) 3-Phase Asynchronous Motor with Clutch10hp (7.5kW) 3-Phase Asynchronous Motor with Clutch10hp (7.5kW) 3-Phase Asynchronous Motor with Clutch

ModelYCT200-4A
Mounting Dimension & Tolerance (mm)ABasic Size318
A/2Basic Size159
WBBasic Size356
WCBasic Size50
Limit Size±1.5
DBasic Size38
Limit Tolerance+0.018   +0.002
EBasic Size80
Limit Tolerance±0.37
FBasic Size10
Limit Tolerance-0.038
GBasic Size33
Limit Tolerance-0.2
HBasic Size200
Limit Tolerance-0.5
KBasic Size19
Limit Tolerance‘+0.52
Position ToleranceΦ 1.5 
Mounting Dimension & Tolerance (mm)AB410
AC430
AD235
HD485
L795

 

Details

10hp (7.5kW) 3-Phase Asynchronous Motor with Clutch

Tips: Braking Method of 10hp (7.5kW) 3 Phase Asynchronous Motor with Clutch.

The electrical braking methods of three-phase induction motor are: energy braking, reverse braking and regenerative braking.

1. When energy consumption braking, the three-phase AC power supply of the motor is cut off and DC power is sent to the stator winding. In the moment of cutting off the AC power, due to inertia, the motor still rotates in the original direction, the characteristics of this way is smooth braking, but requires DC power, high power motor, the cost of DC equipment is large, low-speed braking force is small.

2. Reverse braking is divided into two kinds: load reverse braking and power reverse braking.

1) Load reverse braking also known as load reverse pull reverse braking. This torque allows the weight to slowly fall at a steady rate. The characteristics of this brake are: the power does not need to be reversed, no special braking equipment, and can also adjust the braking speed, but only for wire-wound motors, the rotor circuit needs to be series into a large resistor, so that the turndown rate is greater than 1.

2) Power reverse braking When the motor needs to be braked, it can be braked quickly by arbitrarily adjusting the two-phase power lines so that the rotating magnetic field is opposite. When the motor speed is equal to zero, the power supply will be cut off immediately. The characteristics of this kind of braking are: fast stopping, strong braking force, no need of braking equipment. But the braking current is large, the impact force is also large, easy to make the motor overheat, or damage the transmission parts of the parts.

3. regenerative braking, also known as feed-back braking, under the action of the heavy load (when the crane motor under the heavy load), the motor speed is higher than the synchronous speed of the rotating magnetic field. At this time, the rotor conductor generates induction current, which generates counter-rotating direction torque under the action of rotating magnetic field, but the motor speed is high and needs to be decelerated by variable speed device.

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