
Mineral Insulated (MGO)
Compacted magnesium oxide insulation offers excellent heat transfer, electrical insulation, and superior resistance to vibration, moisture, and thermal shock.
Rugged MGO-PAC Thermocouple with Fixed Threaded Process Connection for Reliable Industrial Process Temperature Measurement
The TC14 MGO-PAC Thermocouple with Fixed Threaded Process Connection is designed for accurate and dependable process temperature measurement in demanding industrial applications. Its permanently welded threaded fitting provides a secure, leak-resistant installation, while the mineral insulated (MGO) construction delivers excellent resistance to vibration, thermal cycling, and harsh operating environments. Available in multiple thermocouple types, sheath materials, process connections, and custom configurations, the TC14 is an ideal solution for OEM equipment, process plants, heat treatment, chemical processing, plastics, food processing, and general industrial temperature monitoring where long-term reliability and consistent performance are essential.

Compacted magnesium oxide insulation offers excellent heat transfer, electrical insulation, and superior resistance to vibration, moisture, and thermal shock.

Available in Type J, K, E, N, and T thermocouples with multiple sheath materials to suit low-, medium-, and high-temperature industrial applications.

Mineral insulated construction and welded process fitting help resist moisture ingress for reliable long-term industrial performance.

Welded threaded fitting provides secure, leak-tight installation for fast, reliable integration into new or existing process equipment.

Designed for dependable temperature measurement in demanding industrial environments with excellent resistance to vibration, thermal cycling, and mechanical stress.

Available in custom sheath diameters, immersion lengths, lead wire types, connectors, process fittings, and calibration options to meet OEM and plant requirements.
Chemical
Petrochemical
Heat Treatment
Plastic
Power
Food & Beverage
OEM
Industrial
Review the standard specifications and available configuration options for the TC14 Thermocouple. Sheath diameter, insertion length, thermocouple type, lead wire, insulation, connector style, temperature rating, and optional features may vary depending on the selected configuration and application requirements
Technical specifications, dimensions, ordering information, and configuration options for the TC14 Thermocouple

Installation, wiring, maintenance, and troubleshooting instructions for the TC14 Immersion Thermocouple.
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Instructions d'installation, de câblage, de maintenance et de dépannage pour le thermocouple de palier TC14
Download file →Complete your installation with compatible mounting accessories, connectors, and replacement components for the TC14 Thermocouple.

The two flexible silicone rubber boots will cover the connector set snugly and prevent moisture, water and dirt entering the connector. Construction Silicone cover with retention ring prevent disconnection due to vibration.…
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The two flexible silicone rubber boots will cover the connector set snugly and prevent moisture, water and dirt entering the connector. Construction Silicone cover with retention ring prevent disconnection due to vibration.…
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Thermocouple fitting is used in applications where a thermocouple needs to be connected to a an application, control system, or other measurement instruments. The fitting ensures that the thermocouple wire is securely…
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Application Connector for thermocouple and RTD circuits. Suited for small wires and mineral insulated cables. Construction Glass filled high quality thermoplastic body with original thermocouple material pins and spring loaded inserts. Type…
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Connector for thermocouple and RTD circuits. Solid pin design ensures good contact even in demanding applications. Hollow pin design offers a good quality product at competitive pricing for less frequently used connectors.…
Find more…Watch product overview, installation, and application videos for the TC15 Thermocouple
PT2M44S
A temperature transmitter takes the temperature data from a sensor, like an RTD or thermocouple, and converts it into a standard signal, usually 4-20mA or 0-10V. This signal can be sent to control systems, PLCs, or monitoring equipment to keep track of temperature in real-time.
Video Transcription: Temperature Transmitter Technology & Application
[00:05] A temperature transmitter is a critical component in industrial automation that converts low-level sensor signals into standardized outputs. This ensures accurate, reliable, and long-distance signal transmission for complex control systems.
[00:14] Thermocouple and RTD sensors are the industry standards for measuring the temperature of processed media. However, in challenging environments—characterized by high temperatures, electromagnetic interference (EMI), or long cable runs—the raw signals from these sensors can degrade.
[00:33] This signal degradation, often caused by wire resistance and electrical noise, can lead to inaccurate readings. To mitigate these issues, temperature transmitters are used to amplify, condition, and convert sensor data into a standardized 4-20mA output, ensuring high-integrity data across the plant.
[00:59] Several signal types are used depending on the application:
4 to 20 mA Analog Signal: The most common standard, highly resistant to noise and ideal for long distances.
0 to 10V: A common analog option, though more susceptible to signal loss over length.
Digital Signals (HART & Modbus): Used for advanced remote communication and diagnostics.
RS485/RS232: Essential for integrating transmitters with PLCs and SCADA systems.
[01:35] The Tempotech TT367 series temperature transmitters are engineered for versatility. They offer precise sensor-transmitter matching and robust protection against interference. Configurable via the HART protocol, these units allow for easy setup and reliable field operation.
[01:56] Key reliability features include open/short-circuit detection, incorrect wiring alerts, and NAMUR NE43 failure standards. The TT367 supports RTD, TC, Ohm, and Millivolt inputs, making it a universal solution for your instrumentation needs.
[02:26] With integrated dot-matrix displays and easy configuration options, our transmitters provide the precision you can trust. Contact our technical sales team today to find the best transmitter for your application.
A thermowell is a protective casing that houses temperature sensors like RTDs or thermocouples, keeping them safe from high pressure, corrosion, or physical damage. It allows you to measure temperature in harsh environments without worrying about damaging the sensor itself.
[00:04] A thermowell plays a critical role in protecting temperature sensors, ensuring system safety, and extending the lifespan of your equipment. It also enables easy sensor maintenance without depressurizing the system.
[00:15] To achieve reliable readings, it is essential to understand proper thermowell placement and industry best practices.
[00:23] A primary rule of thumb for insertion length is to insert the thermowell 1/3 to 2/3 of the way into the process fluid. Alternatively, consider an insertion length 10 times the thermowell tip diameter, or at least 2 inches into the process media.
[00:33] Caution is required: excessive thermowell length can cause vibration from fluid flow, leading to resonance, mechanical fatigue, and potential failure. Conversely, a thermowell that is too short results in poor heat transfer, leading to a slow response time and unreliable temperature data.
[00:55] For inline installation, thermowells should be offset at angles to avoid interference and allow for easy maintenance access.
[01:06] Maintain a spacing of 10 to 100 times the pipe diameter (typically 25 times) to ensure accurate readings and maintain laminar flow within the process.
[01:16] In elbow installations, the thermowell can face upstream to avoid mixing and swirling effects, or downstream where flow turbulence may influence the sensor. Upstream installation is generally preferred for maximum accuracy.
[01:35] Other critical factors to consider include pipe size, the type of process fluid, flow velocity, and distance from surrounding instruments.
[01:46] Thanks for watching this guide. For high-quality ANSI-standard thermowells and sensors, visit www.tempotechcontrols.com.
Open the product configurator to select available options and prepare your configuration.
Find answers to common questions about the TC14 thermocouple
The TC14 is not a pressure-rated instrument by itself. For pressurized process applications, Tempotech Controls recommends installing the thermocouple inside a properly designed thermowell to protect the sensor and maintain process integrity. The thermowell should be selected based on the operating pressure, temperature, process media, flow conditions, and applicable industry standards. Always consult the system or vessel design engineer to verify the correct installation for your specific application.
Select the sheath material based on operating temperature, process media, corrosion resistance, and mechanical conditions. Stainless steel is suitable for many industrial processes, while alloys such as Inconel® 600, Incoloy® 800, Monel, and Pyrosil D are preferred for higher temperatures or more aggressive environments
Choose a grounded junction when fast response time is important and electrical isolation is not required. Choose an ungrounded junction if electrical isolation is preferred, you are unsure of your system's grounding, or fast response is not critical. An ungrounded junction helps reduce the effects of electrical noise and ground loops in many industrial applications. If you're uncertain, Tempotech Controls generally recommends an ungrounded junction because it offers greater installation flexibility while still providing reliable temperature measurement.
The TC14 is a complete MGO-PAC thermocouple supplied with a permanently welded fixed threaded process connection, making it ready for direct installation into new or existing process equipment. In contrast, the TC15 is a replacement thermocouple element designed to fit inside an existing thermocouple assembly or thermowell. It allows you to replace only the sensing element while reusing the existing connection head, thermowell, and process hardware, helping reduce maintenance costs and equipment downtime. Choose the TC14 for new installations or complete sensor replacement, and the TC15 when only the sensing element requires replacement.
Yes. The mineral insulated (MGO) construction and welded threaded process fitting provide excellent mechanical strength and reliable performance in industrial environments exposed to vibration, thermal cycling, and mechanical stress.
To ensure the correct configuration, provide the thermocouple type, junction style, sheath material, sheath diameter, immersion length, process thread size and type (NPT, BSP, or metric), lead wire length, insulation, termination, and operating temperature range. This allows the sensor to be manufactured specifically for your process application.