What is a Variable Frequency Drive?
A variable frequency drive is an electronic device that allows you to start, stop, and control the speed of a three phase motor. It is also a motor starter as it is equipped with overload protection. Read more »
What is the difference between a 'new surplus' motor and a 'factory new' motor?
Our New Surplus electric motors and drives are new and unused overstock or discontinued items offered at lower prices and come with our 90-day warranty.

Factory New products are competitively priced and come with a manufacturers warranty.
Variable frequency drives (VFDs or inverters) now play an important part in major industry.
Within the last 10 years they have been perfected to control and vary the speed of 3 phase electric motors. They serve many purposes, besides speed control. Homeowners and hobbyist alike, who have lathes or milling machines with a 3 phase motor, usually don't have 3 phase power to operate. These VFDs (instead of using a rotary phase converter) can now be used to convert single phase power to 3 phase power. Read more »
 
 
ACL0.03mH-150A at Dealers Industrial Equipment
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Line Reactor, Worldwide, ACL0.03mH-150A

Model #: ACL0.03mH-150A  
ACL0.03mH-150A
 
Stock:  0
Manufacturer : Worldwide
Classification : Reactor
Model : WWEVFD
Item Condition : Factory New
Weight:  1 lbs
Retail Price$952.00
Our Price:
$120.00
You Save:$832.00 (87%)
 
Out of Stock

Three Phase AC Line Reactor

  • Prevents nuisance tripping and limits expensive down-time.
  • Reduces harmonic current, increases the life of the drive and protects sensitive equipment.
  • Line Reactor for Worldwide WWEVFD Family Drives
  • Can be used with other Variable Frequency Drives
  • Inductance: 0.03mH
  • Current: 150A
  • % Impedance @ 230V: 1.22%
  • Phase: 3
  • Open Chassis Unit
  • New Surplus
An AC line reactor can be used to resolve any of the following issues:
  • Capacity of power system is much larger than the inverter rating.
  • Inverter is mounted close to the power system (within 33ft / 10 meters). 
  • Reduce harmonic contribution (improve power factor) back to the power line.
  • Protect inverter input diode front-end by reducing short circuit current.
  • Minimize overvoltage trips due to voltage transients. 
% Impedance calculation: 0.00003 H / [(240 / 1.732 ) / ( 150 A x 2 * PI * 60 Hz )] x 100% = 1.22%

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