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Thermocouple Alloy Comparison

Side-by-side comparison of all five standardised base-metal thermocouple types. Composition, temperature range, EMF output, oxidation resistance and relative cost.

Type N for above 1000 °C, Type T below zero, Type J for reducing atmospheres.

TypeAlloy PairRangeSensitivityAccuracyOxidationCostBest For
KChromel / Alumel−200 … +1370 °C41 µV/°C±1.5 °CGood (clean air)$General purpose, furnaces, kilns
NNicrosil / Nisil−270 … +1300 °C39 µV/°C±1.5 °CExcellent (no green rot)$$High-temp, vacuum, aerospace
JIron / Constantan−40 … +750 °C55 µV/°C±1.5 °CPoor above 550 °C$Plastics, food, HVAC, reducing atm
TCopper / Constantan−200 … +350 °C43 µV/°C±0.5 °CGood (moist environments)$Cryogenic, pharma, autoclave
EChromel / Constantan−200 … +900 °C68 µV/°C±1.5 °CGood$High-sensitivity, non-magnetic

Selection quick guide

Work through three questions in order:

  1. How hot does it get? Above 1000 °C → Type N, or a noble metal above about 1200 °C; below → any base-metal type can be considered.
  2. Does it go below zero? Type T for accuracy (±0.5 °C), Type E for the largest signal (68 µV/°C). Both are non-magnetic.
  3. What is the atmosphere? Reducing → Type J at moderate temperatures, Type N above 800 °C. Avoid Type K in low-oxygen service above 800 °C.

Above 1000 °C?

Use Type N or Type R/S/B (noble metal). Type K drifts above 1000 °C in oxidising atmospheres. Type N was developed specifically to solve this.

Below zero?

Type T is the most accurate below 0 °C (±0.5 °C). Type E has the highest signal (68 µV/°C) for cryogenic instrumentation. Both are non-magnetic.

Reducing atmosphere?

Type J handles reducing atmospheres better than K. Type N avoids the green-rot problem entirely. Avoid Type K in low-oxygen environments above 800 °C.

Frequently Asked Questions

Which thermocouple type should I use above 1000 °C?

Type N for base-metal work, or a noble-metal Type R, S or B above roughly 1200 °C. Type K drifts in oxidising atmospheres above 1000 °C, and Type N was developed specifically to solve that.

What is the most accurate thermocouple type below zero?

Type T, at ±0.5 °C. Type E gives the highest signal, 68 µV/°C, for cryogenic instrumentation. Both are non-magnetic.

Which type is best for reducing atmospheres?

Type J handles reducing atmospheres better than Type K, and Type N avoids the green-rot problem entirely. Avoid Type K in low-oxygen environments above 800 °C.

How do the five base-metal types compare on sensitivity?

Type E is highest at 68 µV/°C, then J at 55, T at 43, K at 41 and N at 39 µV/°C. Higher sensitivity gives a larger signal for the same temperature change, which helps in electrically noisy installations.

Bottom line: Pick the type from three questions. Above 1000 °C, Type N — or a noble metal above about 1200 °C. Below zero, Type T for accuracy and Type E for signal. In a reducing atmosphere, Type J at moderate temperatures and Type N above 800 °C. Everything else is served by Type K.

Not sure which type fits your process?

Send us your temperature range and atmosphere — we recommend the right alloy and diameter.

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