ifm · Condition monitoring

Condition Monitoring & Predictive Maintenance

Build a practical machine-condition architecture around the asset and fault mode: simple overall vibration trending, IO-Link condition indicators, or frequency-selective diagnostics with external accelerometers and edge evaluation.

VVB IO-LinkVTV 4–20 mAVSE diagnosticsVibration + temperaturemoneo integration
ifm VVB301 condition monitoring vibration sensor
Simple digitalVVBIO-Link vibration and temperature indicators
Simple analogueVTV4–20 mA overall vibration velocity
AdvancedVSEUp to 4 dynamic vibration inputs
AnalyticsmoneoVisualisation and maintenance workflows
Machine health

Vibration monitoring diagnostic coverage

The useful signal depends on the fault. Overall vibration is good for broad deterioration, while impact, acceleration, temperature and frequency-selective analysis expose different failure mechanisms.

01
Fatigue / unbalance

v-RMS

Overall vibration velocity is widely used for machine-condition trending and ISO 20816-based assessment.

02
Friction

a-RMS + temperature

Changes in acceleration and surface temperature can indicate lubrication or friction problems.

03
Impacts

a-Peak / Crest

Short high-frequency events can indicate bearing damage, mechanical impacts or developing defects.

04
Fault frequency

Spectrum analysis

VSE-based monitoring can evaluate machine-specific frequencies and speed-dependent diagnostic objects.

Choose the monitoring depth

VVB, VTV and VSE solve different problems

Do not sell the most complex system by default. Match the monitoring architecture to the failure consequence, available automation infrastructure and required diagnostic depth.

ifm VVB301 IO-Link vibration sensor
IO-Link

VVB / VVB3

Compact condition-monitoring sensor for continuous machine-health indicators. Current VVB3 adds three-axis vibration measurement and surface temperature.

  • VVB3 frequency range up to 5,600 Hz
  • Fatigue, friction, impact and temperature indicators
  • IO-Link integration
  • Raw-data capture on current generation
View VVB →
ifm VTV122 vibration transmitter
Analogue

VTV

Simple overall-vibration transmitter where the PLC, drive or analogue monitoring system will trend the machine condition.

  • 4–20 mA output
  • VTV122: 0–25 mm/s RMS
  • 10–1,000 Hz frequency range
  • Easy retrofit
View VTV →
ifm VSE vibration diagnostic electronics
Diagnostic

VSE + accelerometers

Programmable edge controller for deeper vibration diagnostics using external acceleration sensors and auxiliary process signals.

  • Up to 4 dynamic vibration inputs
  • Time- and frequency-domain monitoring
  • IP20 VSE1xx / IP67 VSE9xx
  • PROFINET, EtherNet/IP, Modbus TCP, EtherCAT or TCP/IP by model
View VSE →
System architecture

From measurement point to maintenance decision

The system can stay inside the PLC environment or expose condition data to an IT/IIoT layer.

MachineMotor / pump / fan / gearbox
Sensor layerVVB / VTV / VSA-VSM-VSP
EvaluationPLC or VSE
ActionAlarm / trend / moneo
Engineering boundary: vibration monitoring improves visibility; it does not by itself determine remaining useful life. Alarm strategy should be based on machine class, baseline data, fault consequence and the chosen monitoring method.
Rotating assets

Typical application routes

Mounting location matters. Sensors are normally placed close to bearing seats on rigid machine structure.

01
Electric motors

Bearings, unbalance, alignment

Use VVB for straightforward permanent monitoring or VSE where fault-frequency diagnostics are required.

02
Pumps

Cavitation + mechanical condition

Combine vibration indicators with process context such as flow, pressure or speed where useful.

03
Fans / gearboxes

Trend deterioration

Monitor overall vibration, impacts and friction; use advanced diagnostics where gearbox frequencies matter.

Selection guide

Correct condition-monitoring route selection criteria

Start from the asset and failure consequence—not from the sensor model.

NeedBest starting routeWhy
Overall vibration into existing analogue PLC/VFDVTVSimple 4–20 mA integration
Machine-health indicators over IO-LinkVVBDigital vibration/temperature condition values
3-axis smart condition monitoringVVB3Current three-axis MEMS generation with broader diagnostic capability
Frequency-selective vibration diagnosticsVSE + accelerometersProgrammable diagnostic objects and spectrum/time analysis
Fleet visualisation / analyticsmoneoHigher-level trends, alarms and maintenance workflows
Requirement capture

Inputs required to propose a condition-monitoring system

A machine photo and nameplate usually improve the first-pass architecture substantially.

MachineMotor, pump, fan, gearbox, spindle, conveyor, compressor or other asset.
SpeedNormal and variable operating rpm.
Power / sizeMotor rating and machine class.
Fault concernBearing, unbalance, cavitation, gearbox, lubrication or general deterioration.
AutomationPLC, IO-Link, analogue input, Ethernet or existing SCADA.
Monitoring goalAlarm only, trend, root-cause diagnostics or predictive-maintenance workflow.