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Allen Bradley 1321-3R8-B 3-Phase Line Reactor

Allen Bradley 1321-3R8-B 3-Phase Line Reactor

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ManufacturerAllen Bradley
Part number1321-3R8-B
Current Rating 8 Amps
Max Voltage 600V
Phases 3
Type Line Reactor
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12-month warranty
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3-Phase Operation 8A Current Rating Protects VFDs Reduces Harmonics Limits Inrush Current 600V Max Voltage

The Allen Bradley 1321-3R8-B is a 3-phase line reactor designed to protect variable frequency drives (VFDs) and motors from power system disturbances. With a rating of 8 Amps and a maximum voltage of 600V, it helps reduce harmonic distortion, limit inrush current, and protect against voltage spikes, thereby extending the life of drive components.

This line reactor is crucial for improving the power quality and reliability of motor control systems in various industrial settings, including manufacturing plants, material handling facilities, and pump stations. It is a cost-effective solution for enhancing drive performance and system uptime.

Stanlo Automation, a veteran-owned surplus parts distributor, offers the Allen Bradley 1321-3R8-B. Source your essential automation components from us for quality and dependable service.

Current Rating8 Amps
Max Voltage600V
Phases3
TypeLine Reactor
Series1321
Motor Control Systems
Variable Frequency Drives
Industrial Automation
Pump Control
Fan Applications
Manufacturing
AC Drives (VFDs) up to 8A 600V Power Systems
AB 1321-3R8-B Allen-Bradley 1321-3R8-B 8 Amp Line Reactor
Line reactors like the 1321-3R8-B are used to mitigate power quality issues and protect drives in applications where harmonics or voltage transients are a concern.
Expert tip
The 1321-3R8-B line reactor should be installed on the line side (input) of the VFD to provide maximum protection against grid-borne disturbances.
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What is the primary function of the Allen Bradley 1321-3R8-B 3-phase line reactor?
The primary function of the Allen Bradley 1321-3R8-B 3-phase line reactor is to protect variable frequency drives (VFDs) and motors. It helps reduce harmonic distortion, limits high inrush currents, and guards against voltage spikes, thereby improving system reliability and component lifespan.