NiCrSi-NiSiMg Type N Thermocouple Wire Precision Temperature Monitoring in Harsh Conditions

Brand Name:Senphus
Certification:SGS, ISO9001
Model Number:type N
Minimum Order Quantity:5kg
Delivery Time:3 days
Payment Terms:T/T, D/P
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Location: Changzhou Jiangsu China
Address: Building 3, No. 29, Beitanghe East Road, Qinglong Street, Tianning District, Changzhou City, Jiangsu Province
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Precision Temperature Monitoring in Harsh Conditions with NiCrSi-NiSiMg Type N Thermocouple Wire


NiCrSi-NiSiMg Type N Thermocouple Wire is a high-performance thermocouple designed for use in high-temperature environments. Known for its superior stability, oxidation resistance, and minimal drift over time, it is widely used in industrial applications such as furnaces, metalworking, and aerospace. With a wide temperature range and excellent long-term performance, Type N thermocouples are ideal for high-heat applications that demand reliable and accurate temperature monitoring. While they offer moderate sensitivity compared to other types, their longevity and resistance to oxidation make them an excellent choice for high-temperature industrial settings.


Thermocouple temperature range and tolerance



Name

Usag Classification

Grade
Max. operating temperature(℃)
emperitre nres)

Tnlerene

Standard

Lang term

Short term

NiCrSi-NiSiMg (Type N)
thermocouple
bright wire
Nl12001300-40~1100±1.5℃ or ±0.4%t

GB/T17615

IEC 584-1

-40~1300±2.5℃ or ±0.75%t

NameNPNN
Melting Range()14101340
Density(g/cm³)8.5.8.6
Resistivity(μΩm20)10033

Resistance-temperture coefficient

×10-4/K(0-1200℃)

0.7814.9
Tensile strength Rm N/mm² MPa≥620≥550
Elongation %≥30≥35

Some key features of NiCrSi-NiSiMg Type N Thermocouple Wire include:

  • High Temperature Range

Effective temperature range: -200°C to 1300°C (-328°F to 2372°F).

Suitable for both low and high-temperature applications, with excellent stability at temperatures exceeding those of Type K or Type J.

  • Superior Stability

Type N thermocouples offer excellent long-term stability at high temperatures, especially compared to other high-temperature thermocouples like Type K.

Minimal drift over time, which reduces the need for recalibration.

  • Oxidation Resistance

The Nickel-Chromium-Silicon (NiCrSi) and Nickel-Silicon-Magnesium (NiSiMg) alloys provide excellent oxidation resistance at high temperatures, making Type N thermocouples ideal for use in high-oxygen environments such as furnaces and kilns.

  • Good Sensitivity

Moderate sensitivity (approx. 20 µV/°C at 1000°C) compared to other thermocouple types, providing accurate readings at high temperatures.

Lower sensitivity than Type K but sufficient for many industrial applications.

  • Material Composition

Positive Leg (NiCrSi): Nickel, Chromium, and Silicon alloy for durability and high-temperature stability.

Negative Leg (NiSiMg): Nickel alloyed with Silicon and Magnesium, improving resistance to oxidation, corrosion, and wear.

  • Electrical Properties

Stable thermoelectric output at high temperatures.

Lower noise in electrical signals due to improved material properties, ensuring more consistent readings in industrial environments.


Applications

  • High-Temperature Processes: Used in high-temperature applications in the chemical, metallurgy, and aerospace industries.
  • Industrial Furnaces & Kilns: Suitable for temperature monitoring in high-heat environments where traditional thermocouples like Type K may degrade over time.
  • Heat Treatment & Metalworking: Can be used in heat treatments, metal forging, and casting operations requiring precise temperature control.
  • Glass Manufacturing: Employed for temperature monitoring in glass manufacturing and other processes that involve extremely high heat.

Cable Options

  • Available in bare wire, insulated wire, and cable forms, with insulation options such as ceramic, fiberglass, and high-temperature materials to protect against extreme conditions.
  • Shielded or unshielded cables are available, with shielded cables providing protection against electromagnetic interference in industrial environments.

Advantages of Type N Thermocouple Wire:

  • Excellent High-Temperature Stability: Type N offers superior stability and longevity in high-temperature applications.
  • Resistance to Oxidation: Outstanding performance in high-oxygen environments and high-heat atmospheres.
  • Long-Term Reliability: Minimal drift over time ensures reliable, long-term temperature measurements without recalibration.
  • Wide Temperature Range: Suitable for a wide range of temperatures, from low-temperature cryogenics to extremely high-temperature industrial processes.

Limitations:

  • Lower Sensitivity: Compared to other thermocouples like Type K, Type N offers moderate sensitivity which may not be ideal for some precision applications.
  • Cost: Type N thermocouples tend to be more expensive due to the high-quality alloys used and their superior performance at extreme temperatures.
  • Not Ideal for Low-Temperature Use: While it performs well at high temperatures, Type N is not the best choice for cryogenic or extremely low-temperature applications compared to thermocouples like Type T.

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NiCrSi-NiSiMg Type N Thermocouple Wire Precision Temperature Monitoring in Harsh Conditions

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