TC101-A Base Metal Industrial Thermocouple with Protection Tube is a durable temperature sensor engineered for high-temperature industrial applications. It features a base metal thermocouple element (Types J, K, or N) enclosed within a protective tube, providing enhanced durability and longevity in harsh operating conditions.
Key Features:-
- Available in type K and J thermocouple type.
- Depending on the thermocouple type and protection tube, it can withstand temperatures up to 1260°C (2300°F).
- Available with Threaded or Flanged Process Connection for easy installation.
- Protection tubes available in different materials for high temp oxidation resistance, Ceramic (Alumina, Mullite,Silicon Carbide, Hoxoloy®) for Extreme heat resistance.
- Description
Application Note
TC101-Base Metal thermocouple Assembly with Mounting Sleeve Protection Tube – The TC101 Base Metal Thermocouple Assembly with Mounting Sleeve Protection Tube is engineered for precise and reliable temperature measurement in demanding high-temperature industrial applications. Built with durable base metal thermocouple elements such as Type K and Type J, this assembly is designed to perform consistently in harsh environments.
Encased in a robust protection tube, the thermocouple is shielded from mechanical damage, oxidation, and corrosive conditions. The availability of ceramic materials such as Alumina, Mullite, Silicon Carbide, and Hoxoloy ensures exceptional resistance to extreme heat and chemical exposure, enabling operation at temperatures up to 1260°C (2300°F).
The assembly offers flexible installation options with threaded or flanged process connections, making it suitable for a wide range of industrial systems. It is widely used in furnaces, kilns, foundries, heat treatment plants, cement production, glass manufacturing, and chemical processing industries where accurate temperature monitoring is critical.
By delivering dependable performance under extreme conditions, the TC101 thermocouple assembly helps improve process efficiency, product quality, and operational safety across high-temperature applications.








