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Type N Thermocouple, Temperature Sensor
Key Features
Wide temperature range: -200°C to 1300°C (up to 1200°C recommended for continuous use)
Excellent high-temperature stability and resistance to drift
Superior oxidation resistance compared to Type K thermocouples
Mineral insulated (MgO) sheathed construction for durability and electrical insulation
Fast thermal response for accurate temperature monitoring
Strong resistance to vibration and harsh industrial environments
Compatible with standard temperature controllers, PLCs, and monitoring systems
Customizable probe length, sheath diameter, junction type, and connectors
CE, RoHS, ISO certified
Type E Thermocouple, Thermocouple
Key Features
Wide temperature range: -200°C to 900°C (continuous), up to 1000°C short-term
High sensitivity & long-term stability
Mineral insulated (MgO) sheathed design for durability
Fast response time for dynamic temperature measurement
Anti-vibration & corrosion-resistant
Compatible with standard temperature controllers, data loggers, and acquisition systems
Customizable length, diameter, sheath, probe, and connector
CE, RoHS, ISO 9001 certified
Type S Thermocouple, Thermocouple
Key Features
Wide temperature range: 0°C to 1600°C (up to 1760°C short-term)
High accuracy and excellent long-term stability
Mineral-insulated (MgO) sheathed design for durability
Fast response time for precise temperature measurement
Anti-vibration, oxidation-resistant, and corrosion-resistant
Compatible with standard temperature controllers, data loggers, and acquisition systems
Customizable probe length, diameter, sheath material, connector, and thread type
CE, RoHS, ISO 9001 certified
Type T Thermocouple, Temperature Sensor
Key Features
Temperature range: -200°C to 350°C (continuous), up to 400°C for short-term use
High measurement accuracy with excellent stability, especially in low-temperature applications
Copper–Constantan conductors for reliable and repeatable signal output
Mineral insulated (MgO) sheathed construction for superior electrical insulation and long service life
Fast response time for precise and stable temperature control
Excellent performance in low-temperature, humid, and cryogenic environments
Good resistance to vibration, suitable for industrial and laboratory use
Performs well in oxidizing, inert, and moisture-prone atmospheres
Compatible with standard temperature controllers, PLCs, and data acquisition systems
Customizable probe length, diameter, sheath material, mounting type, and connector
CE, RoHS, ISO certified for global industrial applications
Type J Thermocouple, Thermocouple
Key Features
- Measures temperatures up to 750°C (1382°F) for reliable industrial heat monitoring
- Iron-Constantan construction delivers ±2.2°C accuracy above 0°C with <1°C annual drift stability
- Fast response design enables accurate detection in dynamic heating applications
- Suitable for vacuum, inert, and reducing atmosphere process environments
- Available with grounded, ungrounded, or exposed junction configurations for flexible installation
- Supports standard and special tolerance options for higher measurement accuracy
- Compatible with probes, extension wires, connectors, and temperature control systems
- Wide sheath and insulation options suit furnaces, ovens, molds, and machinery
- Cost-effective thermocouple choice for medium-temperature industrial process control applications
- Custom lengths, diameters, and terminals available for OEM and bulk orders
Type K Thermocouple Temperature Sensor
Key Features
- Wide temperature range from –200 °C to +1260 °C
- Chromel–alumel construction performs well in oxidizing atmospheres
- High sensitivity about 41 µV per °C, enabling precise detection
- Available with stainless steel or nickel‑alloy sheaths, filled with MgO insulation
- Fine‑diameter or bare‑wire junctions respond quickly to temperature changes
- Follows IEC / ANSI standards ,ensuring easy wiring and global compatibility
- Standard‑spec Type K thermocouples work with most controllers, PLCs, and DAQ systems
- Available as probes, wire, thermowell, surface‑mount, and dual‑element designs
- Widely supported by calibration labs and digital instruments, allowing straightforward verification


