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Thermocouple type T, exposed tip, fiberglass insulated, 1 m

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The Pico SE051 Type T Exposed-Tip Thermocouple is a Class 1 temperature sensor designed for accurate laboratory, low-temperature, air and gas measurements. It features an exposed welded junction, 1 m fiberglass-insulated cable, miniature thermocouple connector and a −75 °C to +260 °C Class 1 temperature range. Type T technology provides higher accuracy than Type K over its narrower operating range and is ideal for compatible Pico USB TC-08 data-logging systems..

  • Detail
  • Special Features
  • Specification

The Pico SE051 Type T Exposed-Tip Thermocouple, Fiberglass Insulated, 1 m is designed for engineers, laboratories, research facilities and temperature-monitoring applications that require accurate measurement across low and moderate temperatures.

Type T thermocouples are particularly useful where improved accuracy compared with Type K is required, while their narrower temperature range remains suitable for the application.

Pico Technology identifies the SE051 as:

  • Order Code: SE051
  • Thermocouple Type: Type T
  • Accuracy Class: Class 1
  • Class 1 Temperature Range: −75 °C to +260 °C
  • Accuracy from −40 °C to +125 °C: ±0.5 °C
  • Accuracy from +125 °C to +260 °C: ±0.4%
  • Tip Construction: Exposed junction / welded tip
  • Cable Insulation: Fiberglass
  • Cable Length: 1 m
  • Connector: Miniature thermocouple connector
  • Tolerance Standards: IEC 60584-2:1993 / BS EN 60584-1:2013

Type T Class 1 Temperature Measurement

The SE051 uses a Type T thermocouple, which Pico positions as a suitable choice for applications requiring greater accuracy than Type K within a narrower temperature range.

The official Class 1 temperature range is:

  • −75 °C to +260 °C

Pico specifies accuracy as:

  • −40 °C to +125 °C: ±0.5 °C
  • +125 °C to +260 °C: ±0.4%

This makes SE051 suitable for laboratory, research and engineering applications where accurate measurement at low and moderate temperatures is important.

Suitable for Low-Temperature Applications

Type T thermocouples are widely used where stable low-temperature measurements are required.

Pico highlights Type T sensors for applications including:

  • Ultra-low freezers
  • Laboratory measurements
  • Food-processing environments
  • Low-temperature research
  • Environmental testing
  • Product-development experiments
  • Refrigeration testing

Type T thermocouples also offer good stability at low temperatures, making them appropriate for applications where temperature measurement extends significantly below ambient conditions.

Exposed Welded Tip

The SE051 uses an:

  • Exposed junction
  • Welded sensing tip

The thermocouple junction is directly exposed to the measurement environment rather than enclosed inside a metal sheath.

This minimizes the thermal mass around the sensing point and allows the sensor to react quickly to temperature changes.

Very Fast Response

Pico states that its exposed-tip thermocouples offer a very fast response.

This characteristic makes SE051 particularly useful when monitoring changing temperatures in:

  • Air
  • Gases
  • Laboratory environments
  • Cooling systems
  • Refrigeration experiments
  • Thermal chambers

Pico does not publish a specific response time in seconds for SE051, so an unsupported numerical response value should not be added.

Ideal for Gas Measurements

Pico specifically describes exposed welded-tip thermocouples as ideal for gas measurements.

Possible applications include:

  • Ambient-air temperature
  • Cooled-air monitoring
  • Gas-temperature testing
  • Environmental chamber measurements
  • Laboratory airflow experiments
  • Heating and cooling studies

Because the sensing junction is exposed, temperature changes can reach the thermocouple junction directly.

Not Recommended for Corrosive or Oxidizing Liquids

The exposed-junction construction also introduces an important limitation.

Because the thermocouple alloy is unprotected, Pico states that the probe should not be used in corrosive or oxidizing liquids.

For applications involving chemically aggressive fluids, a protected or waterproof thermocouple probe should be selected instead.

Pico offers separate Type T waterproof probes for liquid-temperature measurements.

Fiberglass Cable Insulation

The SE051 uses:

  • Fiberglass cable insulation

Pico notes that fiberglass insulation provides better resistance to higher temperatures than PTFE-insulated thermocouple cables.

This makes fiberglass useful where environmental temperatures could otherwise exceed the practical limits of PTFE cable insulation.

The product should still be operated according to the published SE051 temperature and application specifications.

1 m Cable Length

The SE051 is supplied with:

  • 1 m cable
  • Approximately 3 ft

The cable length is suitable for compact:

  • Laboratory setups
  • Refrigeration tests
  • Environmental experiments
  • Product-development workstations
  • Engineering test systems

Pico also provides the same fiberglass-insulated Type T thermocouple design in longer cable versions.

Miniature Thermocouple Connector

The SE051 uses a:

  • Miniature thermocouple connector

This connector allows straightforward connection to compatible thermocouple measurement equipment.

It is particularly suitable for Pico's USB TC-08 Thermocouple Data Logger and other compatible Type T thermocouple instruments.

Recommended for Pico USB TC-08

Pico Technology lists the SE051 as a recommended accessory for the USB TC-08 Thermocouple Data Logger.

The TC-08 supports:

  • Type T thermocouples
  • 8 thermocouple channels
  • Built-in cold-junction compensation
  • 20-bit measurement resolution
  • Multi-channel temperature recording
  • PicoLog software

Several SE051 sensors can therefore be connected to one TC-08 for multi-point temperature monitoring.

Multi-Point Low-Temperature Monitoring

Using multiple SE051 thermocouples with a multi-channel logger can support:

  • Freezer temperature mapping
  • Environmental chamber characterization
  • Refrigeration testing
  • Laboratory experiments
  • Product cooling studies
  • Temperature distribution measurements

Engineers can compare temperatures at several locations simultaneously and record changes over extended test periods.

Food and Laboratory Applications

Pico identifies Type T thermocouples as commonly used in:

  • Food-processing applications
  • Laboratory environments
  • Ultra-low freezers

Their stability at low temperatures and suitability for humid or moist environments make Type T sensors useful in applications where these conditions are relevant.

The exposed SE051 tip should still not be placed directly into corrosive or oxidizing liquids.

Type T vs Type K Thermocouple

Type T provides higher measurement accuracy than Type K, but over a narrower temperature range.

This makes SE051 a useful option when:

  • High-temperature capability is not the primary requirement
  • Better thermocouple accuracy is desirable
  • Low-temperature stability is important
  • Measurements remain within the Type T Class 1 operating range

For significantly higher temperature measurements, a suitable Type K thermocouple may be more appropriate.

Thermocouple Measurement Accuracy

The final accuracy of a thermocouple measurement system depends on several factors:

  • Thermocouple tolerance
  • Data logger accuracy
  • Cold-junction compensation
  • Probe positioning
  • Cable condition
  • Thermal gradients
  • Environmental conditions

For repeatable measurements, the exposed junction should be positioned consistently and protected from mechanical damage.

Typical Applications

The Pico SE051 is suitable for:

  • Laboratory temperature measurement
  • Ultra-low freezer monitoring
  • Refrigeration testing
  • Food-processing temperature monitoring
  • Air-temperature measurement
  • Gas-temperature testing
  • Environmental chamber testing
  • Research and development
  • Product testing
  • Cooling-system evaluation
  • Multi-point temperature data logging
  • Educational laboratory experiments

Type T Class 1 Thermocouple

The SE051 is specified as:

  • Thermocouple Type: Type T
  • Accuracy Class: Class 1

Type T offers higher accuracy than Type K over its narrower operating range.

−75 °C to +260 °C Class 1 Range

Pico specifies:

  • Class 1 temperature range: −75 °C to +260 °C

This should replace the current RevineTech range of −200 °C to +350 °C.

High Class 1 Accuracy

Pico publishes:

  • −40 °C to +125 °C: ±0.5 °C
  • +125 °C to +260 °C: ±0.4%

These are the correct manufacturer-published accuracy specifications to use for SE051.

Exposed Welded Junction

The sensing tip uses an:

  • Exposed welded junction

The exposed construction places the thermocouple junction directly in the measurement environment.

Very Fast Response

Pico describes the exposed-tip design as providing:

  • Very fast response

This is valuable where temperature changes need to be detected quickly.

Ideal for Gas Measurements

The exposed welded junction is particularly suitable for:

  • Gas-temperature measurements
  • Air-temperature monitoring
  • Environmental testing

Fiberglass Insulation

The SE051 uses:

  • Fiberglass cable insulation

Fiberglass provides greater temperature resistance than Pico's PTFE-insulated Type T cable option.

1 m Cable Length

The probe includes:

  • 1 m cable
  • Approximately 3 ft

This provides practical reach for laboratory and compact test setups.

Miniature Thermocouple Connector

The SE051 uses a:

  • Miniature thermocouple connector

This provides connection to compatible Type T thermocouple measurement equipment.

Good Low-Temperature Stability

Type T thermocouples are particularly useful for applications involving:

  • Low temperatures
  • Refrigeration
  • Ultra-low freezers
  • Laboratory environments

Suitable for Humid and Moist Environments

Type T thermocouples have relatively good resistance to oxidation in humid or moist environments, making them useful for certain laboratory and food-processing applications.

This does not mean the exposed junction is waterproof or suitable for corrosive liquids.

Industry Thermocouple Standards

Pico thermocouples are manufactured according to tolerances defined by:

  • IEC 60584-2:1993
  • BS EN 60584-1:2013

Recommended USB TC-08 Accessory

Pico officially lists SE051 as a:

  • Recommended USB TC-08 accessory

This provides verified compatibility for Type T temperature data logging.

Available Fiberglass Type T Cable Lengths

Pico offers this exposed-tip fiberglass-insulated Type T family in several lengths:

Model Cable Length
SE051 1 m
SE052 2 m
SE053 3 m
SE054 5 m
SE055 10 m

Choose the cable length based on the distance required between the sensing point and data logger.

Fiberglass vs PTFE Type T Thermocouple

Feature SE051 Fiberglass SE046 PTFE
Thermocouple Type Type T Type T
Junction Exposed welded tip Exposed welded tip
Cable Length 1 m 1 m
Cable Material Fiberglass PTFE
Class 1 Range −75 °C to +260 °C −75 °C to +260 °C
Accuracy ±0.5 °C / ±0.4% depending on temperature Same Type T Class 1 specification
Primary Insulation Benefit Better high-temperature resistance Better resistance to chemicals, oils and fluids

Choose fiberglass where increased cable temperature resistance is useful. Choose PTFE where chemical, oil or fluid resistance is more important.

Manufacturer Pico 
Model / Order Code SE051
Product Name Thermocouple Type T, Exposed Tip, Fiberglass Insulated, 1 m
Product Type Type T Exposed-Junction Thermocouple
Thermocouple Type Type T
Accuracy Class Class 1
Class 1 Temperature Range −75 °C to +260 °C
Accuracy, −40 °C to +125 °C ±0.5 °C
Accuracy, +125 °C to +260 °C ±0.4%
Tip Construction Exposed junction / welded tip
Cable Material Fiberglass
Cable Length 1 m, approximately 3 ft
Connector Miniature thermocouple connector
Response Characteristic Very fast response
Gas Measurement Ideal exposed-tip configuration
Corrosive / Oxidizing Liquid Use Not recommended
Tolerance Standards IEC 60584-2:1993 / BS EN 60584-1:2013
TC-08 Compatibility Recommended accessory
Primary Applications Laboratory testing, low-temperature monitoring, air and gas measurements, refrigeration and data logging
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