ifm · Flow switching

ifm SI Thermal Flow Sensors

Detect flow/no-flow and monitor medium temperature using compact insertion-style calorimetric sensors. SI is a strong route for pump protection, cooling-water confirmation and sanitary variants where a wear-free electronic flow switch is preferred.

ThermalFlow / no-flowLiquids & gasesIO-Link by modelSanitary variants
ifm SI5000 thermal flow monitor
Published velocity3…100 cm/sFamily selection guide
Line sizes⅛"…8"With suitable fittings / installation
Medium temp.−25…80 °CFamily selection guide
Primary jobFlow / no-flowPump & cooling protection
Wear-free flow switching

Replace mechanical flow switches where simple, reliable flow confirmation is the goal

01
No moving parts

Thermal electronic sensing

Avoid paddles and mechanical parts that can jam or wear.

02
Low flow

Useful flow/no-flow sensitivity

SI is designed for flow-switch applications and can use low-flow accessories where appropriate.

03
Temperature

Additional process insight

Versions can monitor medium temperature in addition to flow.

04
IO-Link

Digital status and process values

Current IO-Link-capable routes can expose flow velocity, temperature and switching status.

Applications

SI where cooling or circulation must be proven

01
Pump protection

Run-dry prevention

Switch the control system when adequate flow is no longer present.

02
Cooling water

Protect heat-sensitive equipment

Confirm that enough cooling water reaches the process and monitor temperature where supported.

03
Sanitary route

Food & beverage process fittings

Sanitary versions support suitable hygienic applications; verify exact approvals and fitting with the order number.

ifm SI thermal flow sensor
Calorimetric principle

Flow changes the heat removed from the sensor tip

The SI tip evaluates the temperature difference between a heated measuring element and a medium-reference element. As flow increases, more heat is carried away. The sensor converts that change into flow indication and switching behaviour.

Teach-based switchingMany SI applications are commissioned around the actual flow condition rather than precision volumetric metering.
Liquids or gasesThermal technology can respond to many flowable media; final suitability remains application-specific.
Temperature changesRapid medium-temperature shifts can affect thermal measurement and should be considered.
Build-upCoating on the sensing tip alters heat transfer and can affect the response.
Family selection

SI is a flow switch first—not a high-accuracy consumption meter

RequirementRecommended ifm routeWhy
Simple flow/no-flow, liquids or gasesSI thermal flow switchPrimary fit Wear-free insertion sensing
Large-pipe flow + temperature trendSA thermalBroader insertion-length and absolute/relative flow options
Compressed-air consumption / leak energySDTotaliser and gas-consumption focus
Accurate conductive liquid flowSM magnetic-inductiveInline volumetric measurement with higher accuracy
Fast water / oil process monitoringSBMechatronic route with very fast response
Family envelope from ifm's current selection guide: approximately 3–100 cm/s, ⅛"–8" line sizes, −25…80 °C medium temperature, with sanitary versions available. Exact limits are order-number specific.
Installation

Put the sensing tip fully into the moving medium

Thermal sensors are installation-sensitive

Make sure the probe tip is surrounded by the flowing medium and avoid locations where empty pipe, air pockets, deposits or turbulence make the heat-transfer condition unstable.

InsertionTip must be within the flowing medium
Pipe fillSelect a position that remains properly wetted / exposed to the gas stream
Medium changesRapid temperature changes can affect response
DepositsBuild-up changes thermal coupling
OutputSwitching, analogue and/or IO-Link depends on exact model
AccuracyUse a dedicated meter family if accurate volumetric consumption is required
Requirement capture

Inputs required to select the SI flow switch

MediumLiquid or gas, including concentration / viscosity where relevant.
Pipe sizeInternal diameter and process connection.
Flow conditionNormal flow and minimum acceptable flow / no-flow threshold.
TemperatureMedium temperature range and rate of change.
PressureNormal and maximum process pressure.
OutputSwitch point, analogue, temperature and IO-Link needs.