Schneider Electric

Automation Repair

Schneider Electric Automation Diagnostics, Repair & Industrial Support

Explore the possibilities

Common Schneider Electric Applications

01.

Machine
Control

02.

Pumping
Systems

03.

Process
Control

04.

Material
Handling

About Schneider Electric Automation Systems

Schneider Electric automation systems are used in industrial applications where reliable motor control, process coordination, system communication, and machine performance are essential to daily operations.

 

Control Concepts Dallas supports current and legacy Schneider Electric equipment used throughout machine control, process applications, pumping systems, material handling, utilities, packaging, and other demanding automation environments.

 

Our technicians diagnose drive, controller, network, input/output, and motion-control problems affecting overall system operation. We can also help evaluate repair, replacement, retrofit, reconfiguration, or modernization options for aging or difficult-to-support equipment.

Equipment we service includes:

01.

Altivar Machine Drives

02.

Altivar Process Drives

03.

Altistart Soft Starters

04.

Modicon M221–M262 PLCs

05.

Modicon M340 & M580 PACs

06.

PacDrive & Lexium Systems

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 Schneider Electric Symptoms

01.

No
Power

02.

Drive
Faults

03.

Overcurrent
Trips

04.

Network
Faults

05.

PLC or I/O
Faults

06.

System Will
Not Respond

The Repair Process

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

Our technicians review incoming power, fault history, drive or controller settings, communication networks, I/O operation, electrical connections, connected motors, and field devices. When appropriate, the equipment is inspected and tested through controlled power-up and functional testing.

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

Most automation and control-system failures can be avoided through preventative maintenance.