Mineral-Insulated Thermocouple Sensor – TM3

Product description

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Application:

The TM3 Mineral-Insulated Thermocouple Sensor is designed for high-accuracy temperature monitoring in industrial applications that require both sensor flexibility and reliable signal transmission. Built for process control, automation systems, and power generation, it ensures precise and stable temperature measurements in extreme environments.

Common use cases include:
Power plants & energy systems – Used for real-time monitoring of turbines, boilers, and high-temperature systems.
Industrial process control – Ensures stable temperature readings for automation and manufacturing processes.
Steel & cement industries – Designed for continuous monitoring in extreme heat conditions.
Chemical & refining applications – Provides accurate temperature tracking in harsh and corrosive environments.
Custom configurations – Available with various thermocouple types, connection options, and transmitter integration for PLC systems.

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TM3 mineral-insulated thermocouple sensor for process automation, PLC integration, and high-temperature monitoring in power plants and industrial systems.
Properties:

Designed for industrial process automation – Built for integration into PLCs and control systems for real-time temperature monitoring.
Supports head-mounted transmitters – Available with 4-20 mA output, HART communication, and Profibus for remote monitoring and diagnostics.
High-temperature resistance – Suitable for extreme heat applications up to 1800°C, depending on thermocouple type.
Flexible mineral-insulated (MI) constructionBendable design allows for precise positioning in confined spaces.
Durable acid-proof stainless steel sheath – Provides corrosion resistance and long-term reliability in harsh industrial environments.
Multiple process attachment options – Available with BSP/NPT adjustable nipples and other mounting configurations.
Custom configurations available – Tailored to specific industry needs, including cable length, process connection, and transmitter integration.