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Transform MCCs into smart assets

Motor control centers (MCCs) are prone to failures from loose or compromised connections, often at the rear of the bucket or in-drawer joints, which are impossible to inspect without de-energizing. Traditional maintenance methods rarely catch these problems early. Many facilities only discover thermal faults when damage is severe and repairs become expensive. Continuous thermal monitoring (CTM) for motor control centers provides real-time visibility into MCC health, enabling proactive intervention before failures disrupt operations.

This solution is a fit if you need to:

  • Monitor hard to reach MCC power connections continuously
  • Reduce reliance on periodic inspection alone
  • Improve visibility into fault development between inspections
  • Add monitoring in retrofit or new-build MCC applications
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How the MCC monitoring solution detects thermal change

  1. Our non-powered sensors attach directly to the critical
    incoming / outgoing power connections where they
    continuously monitor temperature

  2. The MCC datacard collects sensor temperature data to
    activate alarms when a fault is detected

  3. A simple LED display provides local and visual
    system status

Inside MCC image

Features of MCC ‘in-bucket’ monitoring solution

The Eaton Exertherm continuous thermal monitoring for motor control center solution is the most advanced way to detect potentially compromised MCC assets before they fail and cause unexpected operational downtime, or worse, damage. Suitable for retrofit and new build installations, the in-bucket or in-drawer MCC solution provides protection from thermal asset changes where the eye can’t see and the hands can't reach. Our unique ‘fit and forget’ 24x7 electrical infrastructure monitoring technology gives you the peace of mind that your assets are running safely. 

Benefits of MCC 'in-bucket' monitoring solution

Continuous visibility at critical connection points

Monitor hard-to-reach MCC power terminations in real time, where faults are most likely to develop but are difficult to detect.

Simple deployment within MCC environments

Designed for in-drawer and in-bucket installation, supporting both retrofit and new-build applications without complex modification.

Reduced reliance on periodic inspections

Move beyond snapshot-based maintenance with continuous monitoring that captures changes between inspection intervals.

Improved personnel safety

Minimize the need for manual inspection of energised MCC equipment, reducing exposure and supporting safer maintenance practices.

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How continuous thermal monitoring (CTM) transformed reliability in a 24/7 mining operation

See how it works: watch the MCC video

MCC in-drawer / in-bucket solution

  1. MCC datacard

    Collects sensor data

  2. MCC status LED

    Displays current monitoring status

  3. MCC sensor loom

    Connects to key monitoring points within the MCC

Eaton mcc kit numbering

How alarms and monitoring data can be integrated into existing setup

The MCC thermal monitoring ‘In-drawer’ solution can be connected in 3 ways.

  1. Relay only

    Local status LED visual with local/remote alarms

  2. Exertherm thermal xpert 25

    Local graphics on HMI and status LED with local/remote alarms, plus the transfer of raw data via Modbus TCP/IP

  3. Exertherm MCC aggregator

    Local status LED visual with local/remote alarms and the transfer of raw data via Modbus 485

eaton-thumbnail-motor-control-centers-how-keep-oil-refineries-running-brochure.png

Energy conglomerate replaced periodic thermography with always‑on proactive monitoring

Why choose Eaton Exertherm for MCC thermal monitoring?

Our CTM solution is designed as an OEM‑neutral solution to MCC thermal monitoring, enabling continuous visibility across motor control centre drawers and buckets regardless of manufacturer. It focuses on monitoring the hard‑to‑reach power connections where thermal faults are most likely to develop but are often difficult to detect using conventional methods.

By providing real‑time insight into temperature change at these critical points, it helps teams identify developing issues earlier and improves visibility into fault progression between inspection intervals. Suitable for both retrofit and new‑build MCC environments, the solution integrates easily into existing electrical infrastructure and reduces the need for interaction with energized equipment during maintenance activities to support safer working practices.

Need more info? Let's talk

Get in touch to find out more about MCC thermal monitoring by filling in the form. One of the Exertherm team will reach out to learn more about your requirements as soon as we can.

Frequently asked questions

From the essentials to the more advanced, these are some of the questions we’re asked most often. Get in touch to learn more about MCC Monitoring Solution.

Motor control centers (MCC) are known to be prone to failure caused by loose or compromised connections. The joints most susceptible to faults are typically at the rear of the MCC bucket/in-drawer, and impossible to access for inspection without de-energizing (especially in-drawers). Many facilities don’t realize they have thermal issues until it’s too late, and damage has already occurred, which can be inconvenient and costly.
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Yes. Exertherm's MCC solution can be used for both new build motor control centers as well as retrofit existing assets. 
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Annual thermography inspections are typically conducted annually, which is less than 1% of a monitoring cycle. This approach relies on luck to detect a failure during an inspection. It also exposes maintenance personnel to safety risks whilst inspecting. In addition to this, the detection of compromised joints is more challenging when assets are deenergized. The use of thermal imaging to detect temperature rise in a cooling joint can give unreliable results that are not indicative of the true state of a connection under load.
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To achieve a true operational likeness, inspections need to be performed whilst equipment is energized rather than de-energized due to connections cooling down. As personnel carry out inspections, actively seeking out problematic electrical joints, they become exposed to the potential safety risks resulting from loose connections.
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Our patented MCC solution monitors 24x7, 365 days a year, and delivers 100% ‘always on’ uptime visibility for critical connections. The solution enables early detection of overheating joints, which are an early indicator of electrical component degradation.

The MCC solution is simple to install in new build or retrofit in existing equipment. The sensors operate as a standalone system, and use an algorithm to identify abnormal temperature rise before an electrical failure occurs. The solution also enables real time baseline data to be captured to provide trend analysis. 

Permanently installed sensors remove the need for personnel to engage with energized equipment to carry out condition assessment, minimizing safety risks.

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Traditional inspections typically require equipment shutdown to allow physical access, which can not only give unreliable results, but result in the inconvenience of downtime and lost productivity.

Our ‘fit-and-forget’ thermal sensors offer a smarter alternative:

  • 24x7 real-time insights to help reduce unplanned downtime
  • Compliant by design with key safety standards such as NFPA 70B
  • No shutdowns - no recalibration - no ongoing maintenance

Our solution supports predictive maintenance planning, keeping your operations safe, efficient, and audit ready.

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Because it works, continuously. Continuous thermal monitoring (CTM) provides always-on, real-time insights that periodic inspections simply can’t match. That’s why every major OEM now recommends it as the standard for predictive maintenance helping facilities reduce risk, improve uptime, and stay compliant.
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