Sprint Electric

Drive Repair

Sprint Electric Drive Diagnostics, Repair & Industrial Support

Explore the possibilities

Common Sprint Electric Applications

01.

Printing
Systems

02.

Wire &
Cable

03.

Metals
Processing

04.

Material
Handling

About Sprint Electric Drive Systems

Sprint Electric drive systems are used in industrial applications where precise speed, torque, tension, and coordinated motor performance are essential to daily operations.

 

Control Concepts Dallas supports current and legacy Sprint Electric equipment used throughout printing systems, wire and cable processing, metals production, paper converting, material handling, crane systems, and other demanding motor-control environments.

 

Our technicians diagnose and service AC and DC drives, slip-ring motor controls, power electronics, feedback devices, communication hardware, and related motor-control equipment. We can also help evaluate repair, replacement, retrofit, or modernization options for aging or difficult-to-support systems.

Equipment we service includes:

01.

Generis Regenerative AC Drives

02.

PL/X Series DC Drives

03.

JL/X Slip-Ring Drives

04.

PL/XD Digital Stack Drivers

05.

340/680/1220 DC Drives

06.

XLV & SL DC Drives

Complete Automation Services

From troubleshooting and repair to ongoing automation support, our technicians help keep critical systems operating reliably.

Diagnostics
Repair
Automation Support
Technician diagnosing and repairing a Danfoss industrial drive inside an electrical control panel.

Common Sprint Electric Drive Symptoms

01.

Drive Will Not
Power Up

02.

Overcurrent
Trips

03.

Field or
Feedback Faults

04.

Programming
Faults

05.

Erratic Speed
or Torque

06.

Motor Will
Not Run

The Repair Process

When a Sprint Electric drive or motor-control system develops a problem, Control Concepts Dallas evaluates the equipment and surrounding operating conditions to determine whether the issue originates within the drive or elsewhere in the application.

Our technicians review incoming power, fault history, drive settings, armature and field circuits, connected motors, tachometer or encoder feedback, communication systems, and mechanical loads. When appropriate, the equipment is inspected and tested through controlled power-up and functional motor testing.

Once the cause is identified, we determine whether repair, replacement, retrofit, or modernization is the most practical solution.

Most drive failures can be avoided through preventative maintenance.