Reliable solutions for extreme environments

High temperature thermocouples

High temperature thermocouples are used in applications where base metal thermocouples cannot operate reliably due to extreme temperatures up to 2300 °C and aggressive or hazardous environments. These sensors are typically manufactured from noble or refractory metals to maintain stability, accuracy and durability under extreme thermal and chemical conditions. They are widely applied in vacuum furnaces, aerospace testing, semiconductor processing and high-temperature industrial processes.

Product summary

  • Suitable for temperatures up to 2300°C
  • Suitable for vacuum, inert, oxidizing and reducing atmospheres
  • Transition style thermocouples available to reduce costs
  • Wide variety of termination options available
  • Long term stability
  • Various additional tests available to validate integrity

Up to 2300°C

Rugged configurations for harsh environments

High temperature thermocouples are made with rugged construction to ensure stable and precise temperature measurement. Performance and durability depend on selecting the appropriate design, thermocouple alloy and sheath material. This combination determines environmental resistance, measurement stability and overall lifecycle cost.

Two product examples of high temperature thermocouples

Thermocouple wire options for high temperatures

The high-temperature thermocouples that can withstand the extreme temperatures or extreme environments are usually Type S, Type RType B, C or D thermocouples.

While platinum thermocouples have their limitations, exotic thermocouples like Type C and Type D are specifically designed to excel in temperatures and conditions that surpass the capabilities of platinum.

Avoid the usage of Type C and Type D thermocouple wires in the presence of elevated temperatures combined with oxygen, nitrogen, or hydrogen due to the risk of embrittlement.

Sheath materials for different temperature ranges

Depending on the environment and temperature range, various sheath materials are offered for this type of thermocouple.

For the lower temperature range, Inconel 600 is a possibility. For mid-range temperatures, Pt10%Rh and Pt20%Rh are options. For temperatures up to 2000-2200°C, Molybdenum, Tantalum, or Niobium 1% Zirc are suitable.

Transition style thermocouples

High temperature thermocouples can represent a significant investment when they are constructed from expensive materials such as platinum and rhodium. These materials are essential for achieving accurate and stable measurements at extreme temperatures, but can become costly, especially in applications where long sensing elements or larger quantities are required.

Transition style thermocouples provide a practical balance between performance and cost. By combining high quality materials in critical areas with more economical materials in other sections, they offer reliable temperature measurement for high temperature applications while reducing unnecessary material costs.

Advantages of transition style thermocouples

  • Cost savings
    By limiting the use of expensive noble metals to only the high temperature zone, transition style thermocouples can significantly reduce overall material costs, especially for long sensors or higher volumes.
  • High temperature capability
    The hot section can be designed with suitable sheath and insulation materials to withstand extreme temperatures and demanding process conditions.
  • Design flexibility
    Transition style thermocouples can be adapted to different process requirements by selecting appropriate materials for each section.

What is a transition style thermocouple?

For applications where long sensors are required, it is often the case that only a part of the thermocouple is exposed to the highest temperatures. The need for costly sheath materials therefore reduces further away from the hot zone.

A transition style thermocouple consists of one type of thermocouple wires combined with two types of sheath materials. These sheath materials are selected based on the process conditions in different sections of the sensor. An adaptor or transition is used in between to ensure a stable connection between the different sheath materials.

Hot section
The hot section is the part of the thermocouple that is exposed to the highest temperatures. This section is typically constructed from noble metals or refractory materials to ensure accurate and reliable measurement under extreme conditions. These materials are essential for performance but are significantly more expensive than standard materials such as Inconel 600.

Cold section
The cold section is the part of the thermocouple that is exposed to lower temperatures. As the distance from the hot section increases, the temperature gradually decreases. This reduces the need for expensive sheath materials and allows for more cost-effective alternatives to be used instead.

Example bare wire

Example fiberglass extension wire

Brochure of High temperature thermocouples

Download the high temperature thermocouple brochure

In this brochure, you will find technical drawings and product customization options, including all the steps to configure your needed thermocouple.

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Industrial applications of ultra high temperature thermocouples

Ultra high temperature thermocouples find extensive industrial applications, particularly in demanding environments such as high temperature vacuums furnaces, reducing or inert atmospheres.

These atmospheres present unique challenges.

  • In vacuum atmospheres, maintaining thermocouple integrity without air pressure is crucial.
  • Reducing atmospheres, rich in hydrogen or carbon monoxide, demand materials that resist carburization.
  • Oxidizing environments require thermocouples that can withstand oxidation at high temperatures.
  • Inert atmospheres, typically filled with noble gases, offer protection against chemical reactions but still necessitate careful selection of thermocouple materials for accurate temperature measurement.

Discover the optimal thermocouple solutions for your specific environment, enhancing performance and safety in high-temperature applications.

High temperature thermocouples are indispensable tools across various industries and sectors such as:

There are situations where thermocouples have to withstand a combination of environments. We are happy to help with specific advice for your unique process and environment.  Get in contact.

Why choose
ultra high temperature thermo­couples
from Kamet?

  • Wide variety of termination options available
  • Long term stability
  • Various additional tests available to validate integrity. Like special non-destructive testing with ARi Industries standards.
  • Robust hot junction on Type C & D through patented wire wrap / welding procedure
  • Custom material combination and sizes to meet demanding applications
  • Transition style thermocouples available to reduce costs

Reach out to us to discuss your specific sensor needs

Thermal challenges can be complex. Contact our in-house engineers today, and they will help you find the best configuration for your needs.

What do our customers say about us?

Kamet has been our reliable partner for more than two decades, consistently providing custom solutions that perfectly fit our requirements. Their commitment to understanding our needs and delivering results has been invaluable to our business. One example is that they have come up with an easy-to-apply improvement for one type of our high-temperature thermocouple designs. This enhancement significantly increased the working lifetime by several months, achieved by looking more in-depth at our application.

Highly recommended!
Marius Popovici Societatea Nationala Nuclearectrica S.A.
Correge company has been working with Kamet for more than 10 years now; we essentially bought MI thermocouple cables from class 1 to special limits to manufacture custom-made temperature sensors.

Kamet is well aware of its customers’ needs and has accompanied us through numerous projects. I enjoy working with them because they are responsive, everything is well organized, and they are all efficient and ready to help us.

They have developed their online portal, and I now have access to accurate information such as our prices, their stock and future deliveries, and values from certificates of calibration.

I highly recommend working with them.
Elodie Oudache Correge
Kamet has been a business partner of ours for many years. Among other things also for very important components of our products. The cooperation and partnership have developed very positively for both sides over the years.

Our wishes and suggestions are taken into account and if problems arise, we work together to find and implement a solution.

We look forward to many more years with Kamet as a business partner.
Renowned German-based sensor manufacturer
We have partnered with Kamet Trading as our preferred supplier for our heating wire/ cable requirements for a number of years, and their products have consistently exceeded our expectations.

We specialize in vacuum brazing of heating cables to stainless steel, copper and other alloys for components which on occasions are not serviceable items and hence the quality of the cables from a brazing perspective, workability, and performance with a long life expectancy of 7 to 10 years are critical. The quality of their heating cables is unparalleled, ensuring reliable performance and longevity even under the most demanding conditions especially in high vacuum and extreme temperature environments. The commitment to excellence throughout the supply chain which Kamet have established is evident in their premium products tailored to specific requirements of our most stringent quality control requirements.

Over the years Kamet have become a strategic supplying partner for us and we highly recommend them.
Arthur Miles Mat-Tech BV
Heaters supplied by Kamet are widely used in our UHV manipulators and reaction cells for controlled sample heating. Their compact diameter, flexibility, and high-temperature capability make them well suited for integration into confined geometries typical of ultra-high vacuum systems. In UHV manipulators, these heaters enable precise control of sample temperature during surface preparation, annealing, thin-film growth, and catalytic studies. The manipulators often provide multi-axis motion (XYZ translation and rotation) while maintaining pressures in the 10⁻⁹–10⁻¹⁰ mbar range. Low outgassing and vacuum compatibility are therefore critical. The hermetically sealed, magnesium-oxide insulated construction ensures minimal contamination and stable operation during bake-out procedures. In reaction cells attached to UHV systems, heaters from Kamet allow localized heating under controlled gas atmospheres, enabling in-situ studies of surface reactions, oxidation, reduction, or catalytic processes. Their robustness and uniform heat distribution support reproducible thermal conditions while preserving vacuum integrity in adjacent chambers.
Polish-based Precision & Vacuum Technology company
Working with Kamet was an excellent experience. As a first-time partner, we were impressed by their technical expertise and guidance in choosing an appropriate solution for our high-temperature cabling needs. Throughout the process, the team was incredibly cooperative and responsive, ensuring our stringent requirements were satisfied. Their commitment to quality and seamless communication streamlined the procurement process. Additionally, their post-sales support has been nothing short of perfect. We highly recommend Kamet.
Scuola Superiore Sant'Anna in Pisa

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