Predict, Prevent, Protect: A Better Way to Monitor Renewable Energy Assets

Why vibration monitoring matters in alternative energy


Monitoring vibrations in renewable energy systems like wind turbines and hydropower equipment is key to keeping things running smoothly. By catching unusual vibrations early, one can prevent mechanical failures, cut down on maintenance expenses, plus boost the overall reliability, performance and cost-effectiveness of renewable energy infrastructure.


* Source: Mordor Intelligence



Global vibration monitoring market statistics*

Animation shows a chart of the global vibration monitoring market size of 1.87 USD billion dollars in 2025 rising to 2.54 USD billion dollars by 2030 with CAGR 6.30%

What makes condition monitoring in renewables so challenging?

Extreme environmental conditions impacting performance

Mechanical and component failures during operation

High data volume requiring efficient signal processing

Difficulty distinguishing normal from abnormal behavior

Limitations on sensor placement due to wiring constraints

Limited accessibility of remote or distributed asset

Variable operating patterns reducing monitoring accuracy

Monitoring real-time performance in the field

Without TE Connectivity IoT Wireless Vibration Sensor

  • Initial State: System running normally
  • Over Time/In Use: No real-time indication of system wear (alignment, gear/bearing wear, friction, etc.)
  • Critical Failure: Sudden shutdown leading to expensive repairs & downtime

Watch simulation of degradation over time without sensor monitoring

Asset condition degradation over time

* Source: TE Connectivity


With TE Connectivity IoT Wireless Vibration Sensor

  • Initial State: System running normally
  • Over Time/System In Use: Monitoring for possible failures such as misalignment, gear/bearing wear, excessive heat, friction, vibration levels
  • Predictive/Preventive Service Scheduled: downtime reduced
  • Critical Failure: Complete shutdown avoided
TE Connectivity IoT Wireless Vibration Sensor

Move the sensor onto the engine gearbox by dragging or clicking

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Solution for preventing unexpected machinery downtime

85x1N/89x1N Series IoT Wireless Vibration Sensors

  • Long battery life (10 years)
  • Wide bandwidth (2kHz to 10kHz)
  • IP66/67 protection
  • BLE or LoRaWAN communication
  • Edge computing
  • ±3dB vibration resolution
  • Lightweight (200g)

Learn more about TE Connectivity IoT Wireless Vibration Sensors

  • Long-term stability
  • Programmable
  • Flexible mounting options
  • TE SensorConnect app compatibility
  • ATEX, NEC, CSA certified
  • Monitoring temperature range: -40°C to +80°C

85x1N/89x1N Series IoT Wireless Vibration Sensors

  • Long battery life (10 years)
  • Wide bandwidth (2kHz to 10kHz)
  • IP66/67 protection
  • BLE or LoRaWAN communication
  • Edge computing
  • ±3dB vibration resolution
  • Lightweight (200g)
  • Long-term stability
  • Programmable
  • Flexible mounting options
  • TE SensorConnect app compatibility
  • ATEX, NEC, CSA certified
  • Monitoring temperature range: -40°C to +80°C

Learn more about TE Connectivity IoT Wireless Vibration Sensors