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How Is Transformer Winding Temperature Measured?

By INNO Applications Engineering Team Updated 2026-09-15 8 min read

A practical overview of direct point measurement, optical probes and the factors that shape a transformer winding temperature plan.

How Is Transformer Winding Temperature Measured? technical guide illustration

Transformer winding temperature can be measured either directly at selected winding locations or estimated indirectly from oil temperature, load current and thermal behavior. Traditional winding temperature indicators and thermal models generally estimate winding or hot-spot temperature. Embedded temperature probes, including fiber optic point sensors, can measure temperature directly at selected locations inside the winding structure.

Different methods answer different questions: average winding temperature, estimated winding temperature, estimated hot-spot temperature, and actual temperature at a selected winding point. These four concepts are related, but they are not the same measurement.

Key Takeaways

  • Transformer winding temperature can be measured directly or estimated indirectly.
  • A traditional WTI generally represents winding temperature using oil temperature and load-related heating rather than measuring the conductor directly.
  • Resistance measurement provides average winding temperature and is mainly useful during transformer testing rather than continuous internal hot-spot monitoring.
  • Embedded fiber optic probes can measure temperature directly at selected winding locations.
  • One point probe measures one defined location, so multiple probes are used when several winding positions need simultaneous monitoring.
  • Oil-immersed and dry-type transformers require different sensor placement and monitoring arrangements.

Transformer Winding Temperature Measurement Methods at a Glance

Method Direct or Indirect What It Measures Online Monitoring Typical Use
Embedded Fiber Optic Probe Direct Temperature at selected internal winding point Yes Hot-spot / internal winding monitoring
Winding Temperature Indicator (WTI) Indirect Simulated or indicated winding temperature Yes Traditional transformer monitoring / cooling control
Thermal Model Indirect Calculated winding hot-spot temperature Yes Transformer monitoring systems
Resistance Method Indirect / average temperature derived from resistance Average winding temperature Usually test-based Temperature-rise tests / transformer testing
RTD / PT100 Direct at sensor location where design allows Selected physical point Yes Common in some dry-type transformer arrangements
Infrared Direct surface measurement Accessible external surface Yes / periodic Surface inspection, not internal winding hot spot

What Does "Transformer Winding Temperature" Actually Mean?

Average Winding Temperature
The overall average temperature of the winding, which can be derived from methods such as winding resistance change.

Winding Hot-Spot Temperature
The localized position within the winding expected to reach the highest temperature, or a location of particular thermal interest — a key value in transformer thermal monitoring.

Measured Point Temperature
The actual temperature at the physical location where a sensor is installed.

Calculated / Indicated Winding Temperature
A value derived or simulated from oil temperature, load current and a thermal model.

These values are related, but they are not the same measurement.

Method 1: Winding Temperature Indicator (WTI)

Does a WTI directly measure winding temperature? In many traditional transformer designs, no.

A traditional WTI typically uses a temperature bulb or sensor related to oil temperature, combined with a current transformer input and a heating element or compensation mechanism, to simulate the winding temperature rise relative to the oil temperature. Modern electronic devices may instead use a current input and measured top-oil temperature to calculate winding temperature electronically.

WTI outputs are commonly used for local temperature indication, alarms, fan control, pump control and transformer cooling control. A WTI does not necessarily represent the actual hottest conductor point in the winding.

Method 2: Transformer Thermal Models

Modern transformer monitoring systems can estimate winding hot-spot temperature using measured operating data and a thermal model. Typical inputs may include top-oil temperature, load current, transformer loading and cooling status, along with transformer-specific thermal parameters.

Outputs may include a calculated winding temperature, an estimated hot-spot temperature, or thermal loading information.

This approach has practical advantages: it does not require an internal electronic sensor at every location, it supports continuous online monitoring, and it can integrate into transformer condition monitoring systems. However, a calculated hot-spot temperature remains a model output rather than a direct physical measurement at the winding point.

Method 3: Winding Resistance Measurement

Copper or aluminum winding resistance changes with temperature. By comparing measured winding resistance with a reference value, average winding temperature can be determined.

This method is commonly used for factory testing, temperature-rise testing, and commissioning or diagnostic testing where applicable.

An important distinction: resistance measurement gives an average winding temperature, not the actual local winding hot spot. The method is valuable for transformer testing but is not normally used as continuous online point-temperature monitoring inside an energized winding.

Method 4: Direct Measurement with Fiber Optic Temperature Probes

This guide refers to fluorescence-based point fiber optic temperature probes for direct winding measurement. For transformers designed with embedded optical probes, temperature can be measured directly at selected winding locations.

The typical signal path is: fiber optic temperature probe → optical fiber → transformer feedthrough / routing → temperature transmitter or monitoring instrument. The sensing tip is positioned at a selected winding location during transformer manufacturing or winding assembly.

Parameter Typical Value
Temperature Range -40 to 260 °C
Accuracy ±0.5 to ±1 °C
Response Time <1 s
Probe Diameter Approximately 2–3 mm
Fiber Length Commonly configured according to transformer dimensions and instrument position

Exact specifications depend on probe configuration.

Why Fiber Optic Sensors Are Used Inside Transformer Windings

  • Electrically isolated sensing path
  • Immunity to electromagnetic interference
  • Small probe structure suited to compact winding spaces
  • Direct measurement at selected winding positions
  • Optical fiber can route from the internal sensing point to an external monitoring instrument
  • Multiple sensing points can be monitored simultaneously

Where Are Fiber Optic Temperature Probes Installed?

Probe locations are determined during transformer design based on expected thermal behavior and the measurement objective. Common areas of interest can include selected winding hot-spot locations, winding sections expected to experience higher thermal stress, phase-specific measurement positions, and top, middle or lower winding locations as defined by the transformer manufacturer's thermal design.

The final number and location of sensing points depend on transformer design, winding arrangement and monitoring objectives.

Method 5: RTD or PT100 Measurement in Transformer Applications

RTD / PT100 sensors are widely used in transformer and electrical equipment temperature monitoring, especially where conductive sensor wiring can be safely integrated.

In dry-type transformers, these sensors are commonly used for winding temperature monitoring, phase temperature measurement, temperature controllers, fan control, and alarm or trip functions. Sensor placement depends on transformer insulation design and manufacturer construction.

Fiber optic measurement becomes more attractive when electrical isolation at the sensing location is important, strong EMI is present, or conductive wiring inside the winding structure is undesirable.

Can Infrared Cameras Measure Transformer Winding Temperature?

Not the internal winding temperature of a closed transformer.

Infrared measurement can be useful for accessible surfaces such as external connections, bushings, terminals, cooling components, and accessible dry-type transformer surfaces. However, it cannot directly see internal winding hot spots through the transformer tank or insulation structure.

Oil-Immersed Transformer Winding Temperature Measurement

Traditional Monitoring: top-oil temperature, WTI, load current, cooling status.

Modern Monitoring: top-oil temperature, electronic thermal model, fiber optic winding probes where installed, multi-channel temperature monitoring, and PLC / SCADA / transformer monitoring integration.

Direct internal measurement normally requires probes to be incorporated during transformer manufacturing or major internal work.

Dry-Type Transformer Winding Temperature Measurement

Dry-type transformers commonly use direct winding or coil temperature sensing with temperature sensors integrated into the transformer construction, involving PT100 / RTD sensors, fiber optic probes, multi-channel temperature controllers, fan control, alarm and trip outputs.

RTD / PT100 sensors are widely used and compatible with many dry-type transformer temperature controllers. Fiber optic sensing is useful when electrical isolation, strong EMI, or direct optical sensing is preferred. Fiber optic sensing does not necessarily replace PT100 in every case.

Direct Measurement vs Calculated Winding Temperature

Comparison Direct Embedded Sensor WTI / Thermal Model
Measurement Source Physical sensing point in the winding Oil temperature, load current, thermal simulation
Actual Physical Point Yes No — estimated
Hot-Spot Estimation Depends on probe placement Designed to estimate hot spot
Installation Requirement Typically during manufacturing Standard transformer instrumentation
Online Monitoring Yes Yes
Multi-Point Capability Yes, via multiple probes Typically single calculated value
Electrical Isolation Yes (fiber optic) Not applicable
Best Use Actual temperature at a specific location Estimated winding / hot-spot temperature from operating conditions

Direct sensors answer: "What is the temperature at this specific location?" Thermal models answer: "What is the estimated winding or hot-spot temperature based on transformer operating conditions?" The two approaches can complement each other.

How Many Winding Temperature Sensors Are Needed?

The required number of probes depends on the number of phases, winding configuration, transformer size, identified thermal locations, redundancy requirements, monitoring objective, and available instrument channels.

One fiber optic point probe generally represents one defined temperature location. Multiple probes can connect to a multi-channel fiber optic temperature transmitter, a transformer temperature monitoring instrument, or a transformer condition monitoring system.

How Is Winding Temperature Data Used?

Winding temperature data can support local display, high-temperature alarms, trip logic where required, cooling fan control, pump control, and integration with a transformer monitoring system, PLC or SCADA, including data logging and trend analysis.

Depending on the monitoring instrument, output options commonly include RS485, Modbus RTU, 4–20 mA, and alarm relay outputs.

Which Winding Temperature Measurement Method Fits Each Situation?

Measurement Need Suitable Method Direction What It Provides
Factory temperature-rise test Resistance method + other test measurements Average winding temperature
Continuous top-oil / winding indication WTI Simulated / indicated winding temperature
Estimated winding hot spot Thermal model Calculated hot-spot temperature
Direct internal winding temperature Embedded fiber optic probes Actual temperature at selected internal points
Dry-type transformer winding temperature RTD / PT100 or fiber optic probes Direct point temperature integrated with controller
High-voltage / strong EMI winding measurement Embedded fiber optic probes Electrically isolated direct measurement
Surface inspection Infrared measurement Accessible surface temperature only
PLC / SCADA transformer monitoring Thermal model, WTI, or fiber optic instrument output Integrated monitoring data

What Should Be Confirmed Before Selecting a Winding Temperature Measurement Method?

  • Oil-immersed or dry-type transformer?
  • New transformer or existing transformer?
  • Direct measurement or calculated temperature required?
  • Average winding temperature or selected hot-spot temperature?
  • How many winding locations need monitoring?
  • Is the sensor installed during transformer manufacturing?
  • Is electrical isolation required?
  • Is strong EMI present?
  • Required probe size?
  • Required fiber / cable length?
  • Required monitoring channels?
  • Local display required?
  • RS485 / Modbus required?
  • 4–20 mA output required?
  • Alarm relay required?
  • Cooling control required?
  • PLC / SCADA integration required?

Common Misunderstandings About Transformer Winding Temperature Measurement

"A winding temperature indicator directly measures the winding conductor." Traditional WTI systems often simulate or estimate winding temperature rather than measuring the conductor directly.

"Top-oil temperature is the same as winding temperature." They are related but represent different thermal locations and conditions.

"Resistance measurement gives the winding hot-spot temperature." Resistance measurement primarily represents average winding temperature.

"Infrared cameras can measure internal winding temperature." They can measure accessible surfaces but cannot directly see internal winding hot spots through the transformer structure.

"One temperature sensor is enough for every transformer." The number and location of measurement points depend on transformer design and monitoring objectives.

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  • Number of winding points
  • Temperature range
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  • Fiber length
  • Monitoring channels
  • RS485 / Modbus / analog / relay requirements

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Frequently Asked Questions

How is transformer winding temperature measured?+

It can be measured directly with embedded probes at selected winding locations, or estimated indirectly using a WTI, a thermal model, or winding resistance measurement. The right method depends on whether an actual point temperature or an estimated hot-spot value is needed.

Does a WTI measure actual winding temperature?+

In many traditional designs, no — it typically simulates or estimates winding temperature using oil temperature and load-related heating rather than measuring the conductor directly. Some modern electronic WTIs calculate winding temperature from measured inputs.

What is the difference between top-oil temperature and winding temperature?+

Top-oil temperature is measured at the top of the transformer oil, while winding temperature refers to the conductor or insulation temperature, which is normally higher due to load-related heating. The two are related but are not the same value.

How is transformer winding hot-spot temperature measured?+

Hot-spot temperature is commonly estimated using a thermal model based on top-oil temperature and load current, or measured directly if an embedded probe is positioned at that location. Direct measurement requires the sensor to be installed during transformer manufacturing.

Can fiber optic sensors measure transformer winding temperature directly?+

Yes. Embedded fiber optic point probes can measure the actual temperature at a selected winding location, provided the probe is installed during transformer manufacturing or winding assembly.

Can PT100 sensors be used for transformer winding temperature measurement?+

Yes, particularly in dry-type transformers where conductive sensor wiring can be integrated into the design. Placement depends on the transformer's insulation design and manufacturer construction.

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