Thermocouple Series

Thermocouple-series

Type N Thermocouple Extension Wire for Stable High-Temperature Monitoring

Type N Thermocouple Extension Wire for Stable High-Temperature Monitoring

Brand Name:DLX   Place of Origin:China Jiangsu    Delivery Time:7-15 Days
Certification:CE,ROHS   Supply Ability:500 tons per month
Payment Terms:L/C,T/T,Western Union,MoneyGram

Classification:

Product Introduction

We’re thrilled to showcase our Type N Thermocouple extension wire, a game-changer for high-temperature monitoring in demanding industries. Built for stability and precision, this wire is designed to keep your operations running smoothly, no matter how intense the conditions. Let’s break down what makes our Type N wire special, explore the industries it serves, and explain why we’re the best choice for your temperature sensing needs.

Product Introduction

Our Type N thermocouple extension wire is made from Nicrosil (nickel-chromium-silicon) for the positive leg and Nisil (nickel-silicon) for the negative leg. This combo delivers outstanding resistance to oxidation and drift, making it a reliable choice for temperatures up to 2,300°F (1,260°C) continuously and 2,552°F (1,400°C) for short-term use. With a special limits of error tolerance of ±1.1°C or 0.4%, you’re getting precision you can count on. We offer insulation options like fiberglass, ceramic, or PTFE, so you can customize it for your specific setup. It’s tough, accurate, and built to last in the harshest environments.

Industry Analysis

The thermocouple market is booming, fueled by advancements in industries like aerospace, power generation, and renewable energy. Type N thermocouple extension wire is carving out a niche thanks to its superior stability and resistance to oxidation compared to older types like Type K. Recent trends show a surge in demand for reliable temperature monitoring in high-stakes applications, such as jet engine testing and solar thermal plants. As industries push for greater efficiency and sustainability, our Type N wire is stepping up to meet the need for durable, high-performance solutions that reduce maintenance costs and downtime.

ASTM

(American Society for Testing and Materials) E 230

ANSI

(American National Standard Institute) MC 96.1

IEC

(European Standard by the International Electrotechnical Commission 584)-1/2/3

DIN

(Deutsche Industrie Normen) EN 60584-1/2

BS

(British Standards) 4937.1041, EN 60584-1/2

NF

(Norme Francaise) EN 60584-1/2-NFC 42323-NFC 42324

JIS

(Japanese Industrial Standards) C 1602-C 1610

GOST

(Unification of the Russian Specifications) 3044

Code

+Positive leg

-Negative leg

Temperature Range

N

Ni-Cr-Si (NP)

Ni-Si-Mg (NN)

-454 to 2300°F (-270 to 1,260°C)

K

Ni-Cr-Si (KP)

Ni-Al (KN)

–454 to 2,300°F (–270 to 1260°C)

E

Ni-Cr (EP)

Cu-Ni<constantan> (EN)

-454 to 1600°F (-270 to 870°C)

J

Iron (JP)

Cu-Ni<constantan> (JN)

-346 to 1,400°F (-210 to 760°C)

T

Copper (TP)

Cu-Ni<constantan> (TN)

-454 to 700°F (-270 to 370°C)

B

Platinum Rhodium-30%

Platinum Rhodium-6%

32 to 3100°F (0 to 1700°C)

R

Platinum Rhodium-13%

Platinum

-58 to 2700°F (-50 to 1480°C)

S

Platinum Rhodium-10%

Platinum

-58 to 2700°F (-50 to 1480°C)

C (W-Re5/26)

Tungsten 5% Rhenium

Tungsten 26% Rhenium

212 to 4172°F (100 to 2300°C)

D (W-Re3/25)

Tungsten 3% Rhenium

Tungsten 25% Rhenium

212 to 4172°F (100 to 2300°C)

G (W-Re26)

Pure Tungsten

Tungsten 26% Rhenium

212 to 4172°F (100 to 2300°C)

For more details, pls directly  contact us.

Our Type N thermocouple extension wire is a go-to for industries that demand rock-solid performance. In aerospace, it’s used for monitoring temperatures in engine testing and turbine systems, where precision is critical. Power generation plants rely on it for consistent readings in boilers and turbines, ensuring efficient energy production. It’s also a favorite in industrial furnaces, where high temperatures and oxidizing atmospheres are the norm. From renewable energy systems to heavy manufacturing, our Type N wire delivers dependable results across the board.

Company Comparison

When you choose our Type N thermocouple extension wire, you’re getting more than just a product—you’re getting quality you can trust. We use the highest-grade Nicrosil and Nisil alloys, ensuring top-notch stability and longevity. Unlike others, we offer flexible customization, from insulation types to custom lengths, so you get exactly what your project needs. Our rigorous quality testing guarantees every spool meets special limits of error standards, giving you peace of mind. Plus, our team is always ready to provide expert guidance, from product selection to installation support. We’re here to make your job easier.

Comparison Table

Thermocouple Type

Materials

Temperature Range

Accuracy (Special Limits)

Best Applications

Atmosphere Suitability

Type N (Base Metal)

Ni-Cr-Si / Ni-Si

-454°F to 2,300°F (-270°C to 1,260°C)

±1.1°C or 0.4%

Aerospace, power generation, industrial furnaces

Oxidizing, inert

Type K (Base Metal)

Ni-Cr / Ni-Al

-454°F to 2,300°F (-270°C to 1,260°C)

±1.1°C or 0.4%

General industrial, nuclear

Oxidizing, limited reducing

Type J (Base Metal)

Fe / Cu-Ni

-346°F to 1,400°F (-210°C to 760°C)

±1.1°C or 0.4%

HVAC, automotive

Oxidizing, reducing, vacuum

Type S (Noble Metal)

Pt-10%Rh / Pt

-58°F to 2,912°F (-50°C to 1,600°C)

±0.6°C or 0.1%

Biotech, pharmaceuticals, high-temp calibration

Oxidizing, inert

Our Type N thermocouple extension wire is all about stability, precision, and durability. It’s built to handle the toughest high-temperature environments, from aerospace to power plants, without missing a beat. With our focus on quality, customization, and top-tier support, we’re the partner you need for reliable temperature monitoring. Ready to upgrade your setup? Our Type N wire is the way to go.

Keywords: Type N thermocouple extension wire, high-temperature monitoring, Nicrosil thermocouple, aerospace temperature sensing, power generation thermocouple, industrial furnace thermocouple, thermocouple stability, Type N wire applications, thermocouple industry trends, oxidation-resistant thermocouple

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About Us:

Our 12,000㎡ factory is equipped with complete capabilities for research, production, testing, and packaging. We strictly adhere to ISO 9001 standards in our production processes, with an annual output of 1,200 tons. This ensures that we meet both quantity and quality demands. Furthermore, all products undergo rigorous simulated environment testing including high temperature, high pressure, and corrosion tests before being dispatched, ensuring they meet customer specifications. 

For all our clients, we offer timely and multilingual after-sales support and technical consulting, helping you resolve any issues swiftly and efficiently.

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Client Visits

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We support all kinds of testing:

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FAQs:

  1. What materials are used in Type N thermocouple extension wire?
    Nicrosil (nickel-chromium-silicon) for the positive leg and Nisil (nickel-silicon) for the negative leg.

  2. What’s the temperature range for Type N thermocouple extension wire?
    Continuous use up to 2,300°F (1,260°C), short-term up to 2,552°F (1,400°C).

  3. Where is Type N thermocouple extension wire commonly used?
    Power generation, aerospace, and industrial furnaces for reliable temperature monitoring.

  4. Why choose Type N over other thermocouple types?
    Superior oxidation resistance and stability at high temperatures compared to Type K.

  5. Can Type N thermocouple extension wire be used in oxidizing atmospheres?
    Yes, it’s highly resistant to oxidation, making it ideal for harsh environments.

  6. What insulation options are available for Type N thermocouple extension wire?
    Fiberglass, ceramic, or PTFE insulation for flexibility and durability.

  7. How accurate is Type N thermocouple extension wire?
    Special limits of error: ±1.1°C or 0.4% for precise high-temperature measurements.

  8. What’s the latest trend in Type N thermocouple extension wire applications?
    Increasing use in aerospace for engine testing and renewable energy systems.


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