Personnel Tag LSV01 LoRaWAN Temperature and Vibration Sensor
Introduction

Smarter Condition Monitoring

LSV01

Predictive Maintenance Ready

The LSV01 LoRaWAN Temperature and Vibration Sensor is a wireless vibration monitor with integrated temperature sensing, designed to give maintenance teams earlier visibility into developing equipment issues. It measures temperature and vibration, including acceleration, velocity, displacement, and frequency, then transmits condition data through LoRaWAN for remote analysis. Built for rotating machinery and demanding industrial environments, LSV01 helps identify bearing wear, imbalance, misalignment, looseness, and abnormal heat before performance declines. With IP67 protection, flexible installation, and long battery life, it supports scalable predictive maintenance while reducing manual inspections and unplanned downtime.
  • LoRaWAN Connectivity
  • Temperature and Vibration Monitoring
  • Three-axis Vibration Data
  • Predictive Maintenance Ready
  • Up to 5 Years of Battery Life
  • IP67-rated Protection
Advantages

Why Predictive Maintenance Matters

Predictive maintenance uses equipment condition data to reveal developing issues before failures interrupt operations. It helps teams focus on assets where risk is beginning to rise.

LSV01 provides the temperature and vibration data needed to support predictive maintenance across critical rotating equipment.

Detect Issues Earlier

Identify changes in vibration and temperature before machine performance declines.

Prioritize Critical Assets

Focus inspections and maintenance on assets showing meaningful signs of risk.

Reduce Unnecessary Inspections

Replace routine checks on healthy assets with condition-based maintenance decisions.

Schedule Maintenance Proactively

Schedule service around production needs instead of reacting to unexpected failures.

Detect Developing

Detect Developing Faults Earlier

Capture vibration frequency, acceleration, velocity, and displacement across the X, Y, and Z axes. Changes in vibration trends can help identify patterns associated with bearing wear, imbalance, misalignment, looseness, and other mechanical issues before equipment performance is seriously affected.

Validate Abnormal

Validate Abnormal Conditions Faster

Vibration reveals mechanical changes, while temperature adds thermal context. Together, they help distinguish temporary fluctuations from developing equipment problems and reduce false alarms.

Motor and pump assembly with motor NDE, pump inboard, and pump outboard bearing monitoring points

What Can LSV01 Detect

With a capable analytics platform, LSV01 data can help identify patterns linked to lubrication issues, bearing wear, imbalance, misalignment, and looseness.

Lubrication
Issues

Bearing Wear

Imbalance

Misalignment

LowLubrication RiskHigh
LowBearing Wear RiskHigh

Analytics output depends on the customer platform and configuration.

  1. 01Verify

    Review abnormal trends and confirm the issue needs attention.

  2. 02Prioritize

    Assess severity and asset criticality to decide what to handle first.

  3. 03Schedule

    Plan maintenance at the right time to reduce disruption and downtime.

How LSV01 Enables Predictive Maintenance

Real-Time Data Flow

Analyze and Act Remotely

The gateway forwards data to the cloud platform, helping teams review trends, identify abnormal conditions, and plan maintenance earlier.

Transmit Data over LoRaWAN

LoRaWAN enables LSV01 to transmit condition data across industrial sites, supporting wider coverage and remote monitoring with fewer gateways.

Capture Equipment Condition

As a wireless vibration monitor, LSV01 collects temperature and three-axis vibration data from pumps, motors, fans, and other rotating equipment.
Built for Demanding

Built for Demanding Industrial Sites

The IP67-rated enclosure helps protect the sensor against dust and water, making it suitable for demanding industrial environments where moisture, dust, and machine vibration are common.

Up to 5 Years

Up to 5 Years of Battery Life

Different assets require different levels of monitoring. Adjustable reporting intervals let teams balance update speed, network traffic, and battery life.
  • 1 minute:
    Best for short-term testing and closer monitoring, with about 120 days of battery life.
  • 10 minutes:
    Ideal for routine monitoring, with timely updates and up to 5 years of battery life.
  • 30 minutes or longer:
    Suited to stable, noncritical assets and long-term trends, helping extend battery life.
Battery life figures are for reference and may vary by operating conditions and reporting settings.

Flexible Mounting for Faster Deployment

Choose magnetic mounting for quick installation on suitable metal surfaces, or stud mounting for a secure, direct connection to the machine housing. Both options make LSV01 easier to deploy across different types of equipment and monitoring scenarios.
Applications

Seamless Solutions for Diverse Scenarios

  • Power Generation

    Monitor turbines, generators, pumps, and cooling fans to detect abnormal trends early, help reduce forced outages, and support generation availability.
  • Manufacturing

    Track motors, gearboxes, conveyors, compressors, and machine tools to help reduce unplanned stops, prioritize maintenance, and protect production continuity.
  • Oil, Gas, and Chemicals

    Monitor pumps, compressors, mixers, and other rotating equipment in demanding environments to support earlier maintenance decisions and protect process continuity.
  • Mining and Cement

    Track crushers, mills, conveyors, fans, and pumps to detect developing issues early, help reduce unplanned shutdowns, and limit production losses.
  • Power Generation
  • Manufacturing
  • Oil, Gas, and Chemicals
  • Mining and Cement
tech spec

Specifications

Wireless Protocol LoRaWAN
Supported Frequency Bands Multiple regional frequency bands available, including EU868, US915, AS923, and AU915
Maximum Transmit Power 19 dBm
Temperature Measurement Range −40 °C to 125 °C (−40 °F to 257 °F)
Temperature Accuracy ±1 °C (±1.8 °F)
Temperature Resolution 0.1 °C (0.2 °F)
Vibration Measurement Axes Three-axis (X, Y, Z)
Vibration Parameters Peak acceleration, RMS velocity, and peak-to-peak displacement
Velocity Measurement Range 0.1 to 199.9 mm/s
Velocity Measurement Accuracy ±10% at 100 Hz
Operating Temperature −10 °C to 80 °C
Operating Humidity 10% to 95% RH, non-condensing
Ingress Protection IP67
Battery Capacity 8,500 mAh (replaceable)
Power On / Off Internal slide switch
Mounting Options Stud mounting or magnetic mounting
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