Electric Motor Condition Monitoring Without Stopping Production
Artesis technologies for monitoring electric motors, generators and rotating equipment without installing external sensors

Sensorless Electric Motor Monitoring
Motor electrical signature analysis technology tracks equipment condition without vibration sensors: the system analyzes voltage and current to detect mechanical and electrical defects. Artesis's solution is built on technology rooted in NASA research and more than 35 years of R&D.
Detectable Defects
- Rotor imbalance and misalignment
- Bearing wear (roller/ball)
- Mechanical looseness
- Winding looseness and short circuits
- Rotor defects (broken bars)
- Cavitation, clogging, overload
Advantages
- No external sensors
- Fast installation — 1–2 hours
- Ideal for hazardous areas
- AI detection with a digital twin
- Power and energy efficiency analysis
- Cloud analytics and trending
Online Monitoring
Continuous 24/7 monitoring of critical equipment
Portable Solutions
Periodic monitoring and diagnostics
Cloud Platforms
Centralized data management and analytics
Applications
Motor monitoring is used across key industries in Kazakhstan
Mining
Jaw crushers, mills, conveyors, slurry pumps
Manufacturing
Main drives, fans, pumps, conveyors
Power and Wind Generation
Wind turbines, main bearings, generator monitoring
Utilities
Water supply pumps, ventilation, wastewater treatment
Oil, Gas and Chemicals
Pumps, compressors, induced-draft fans, blowers
Metallurgy
Rolling mill motors, furnace fans
Electric motor monitoring articles
All Artesis articles →
Why Artesis Omnisight Is a Revolutionary Solution for Predictive Maintenance
Most condition monitoring programs split assets into "critical" and "everything else" with incompatible tools and no shared data model. Artesis Omnisight collapses that split at the signal level — here is how and why it works.

Predictive Maintenance Cuts Equipment Failures by 73%. That Is Not Marketing — It Is Data
Fixed maintenance calendars do not stop unplanned downtime: up to 15% of MRO effort is spent on unnecessary work. Sensor-driven predictive maintenance cuts downtime by 30–50% and equipment-related incidents by 40% — on mining, oil & gas and power sites in Kazakhstan and the CIS with Artesis, SDT and Rapidox.

5 typical motor faults: how ESA finds them in 7 minutes
Unbalance, bearings, looseness, winding and rotor faults — how Artesis AMT Pro and e-MCM detect each of the five from the current signature, with no sensors on the machine.

ESA, MCSA and vibration analysis: what to choose for CHP auxiliary equipment
A comparison of three predictive diagnostic methods for power block pumps, fans and conveyors: when Artesis ESA is enough, when you need Bently Nevada vibration, and how MCSA differs from full ESA.

Rolling mill monitoring: ESA for auxiliary and main drive motors
At Kazakhstan's rolling mills vibration covers the large stands, but the fleet of roller-table, coiler and cooling-pump motors is often left without predictive monitoring. How Artesis e-MCM and AMT Pro complement vibration.

Harmonics in industrial electric drives: causes, consequences and ESA diagnostics
VFDs, rectifiers, transformers and supply asymmetry all create harmonics in motor current. How Artesis e-MCM separates 'electrical noise' from a developing mechanical fault, and when harmonics themselves signal danger.
Questions About Artesis Monitoring Systems
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