RW606(M) Wireless Tri-axial Vibration, Temperature and Speed Sensor

Dual-axis MEMS + single-axis piezoelectric tech delivers 0.1Hz-20kHz ultra-wide coverage, capturing vibration, temperature, and speed data effortlessly. With 256K waveform sampling (up to 102,400 spectral lines) for full-spectrum insights, plus optional ATEX/IECEx certifications, it's built for reliability. 50+ exclusive Ronds edge intelligence indicators spot early faults—fewer misses, no false alarms—keeping your critical equipment running smoothly, always.

RONDS’ new generation premium wireless sensor is designed for critical equipment monitoring. Equipped with dual-axis MEMS + single-axis piezoelectric technology, it delivers 0.1Hz-20kHz ultra-wide coverage, effortlessly capturing vibration, temperature, and speed data. Boasting 256K waveform sampling (up to 102,400 spectral lines) for full-spectrum insights, plus optional ATEX/IECEx certifications, it’s engineered for reliability. Over 50 exclusive RONDS edge intelligence indicators detect early faults—fewer misses, zero false alarms—ensuring your critical equipment runs smoothly, always.

sensor module

RW606(M) Wireless Tri-axial Vibration, Temperature and Speed Sensor Features

  • Ultra-Wide Bandwidth for All-Scenario Coverage
  • Long-Lasting & Reliable Power Supply
  • Superior Edge Intelligence for Proactive Fault Detection
  • Ultra-Wide Bandwidth for All-Scenario Coverage

    Boasting 20kHz FMax, it delivers excellent vibration monitoring for both high and low-speed industrial machines, ensuring precise measurement and early warning for diverse fault types.

  • Long-Lasting & Reliable Power Supply

    Equipped with a 19Ah large replaceable battery and ultra-low power consumption design, enabling stable, long-term operation without frequent maintenance.

  • Superior Edge Intelligence for Proactive Fault Detection

    Integrates 50+ exclusive Ronds edge intelligence indicators (lubrication, bearing energy, misalignment, RPM, etc.), offering higher fault sensitivity, fewer misses, and lower false alarms to capture early anomalies.

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