| Image | Part Number | Manufacturer | Description | Series | Terminal Type | Temperature Range | Length - Protective Tube | Length - Lead Wire | Element Type | Diameter - Protective Tube | Conductor Type |
|---|---|---|---|---|---|---|---|---|---|---|---|
| ITTUP150A | Cynergy3 | TEMP PROBE PT100 6X150MM 1/4"NPT | ITTU | Enclosed Terminals | -200°C ~ 850°C | 150mm | - | Pt100 | 6mm | 3 Conductor System | |
| ITTP200A | Cynergy3 | TEMP PROBE PT100 6X200MM 1/4" BS | ITT | Enclosed Terminals | -200°C ~ 850°C | 200mm | - | Pt100 | 6mm | 3 Conductor System | |
| ITTUK150A | Cynergy3 | TEMP PROBE K TYPE 6X150MM 1/4"NP | ITTU | Enclosed Terminals | 0 ~ 1350°C | 150mm | - | K - Type | 6mm | Non-Grounded | |
| LTPCTGA35MDBITX01 | Honeywell Sensing and Productivity Solutions | TEMP PROBE | LTP | Connector | -40 ~ 150°C | - | - | Thermistor | - | Non-Grounded | |
| TMPE2SU2 | Red Lion Controls | E TYPE TC PROBE, 900 DEG | - | - | - | - | - | - | - | - | |
| E52-IC35C-N D=6.4 | Omron Automation & Safety | T-COUPLE J L=35CM THERMO WELL | E52 | Enclosed Terminals | 0 ~ 1050°C | 350mm | - | J - Type | 6.4mm | Non-Grounded | |
| IWTTUP150A | Cynergy3 | TEMP SENSOR WIFI PT100 6X150MM 1 | IWTTU | Enclosed Terminals | -200°C ~ 850°C | 150mm | - | Pt100 | 6mm | 3 Conductor System | |
| E52-IC35C-10 | Omron Automation & Safety | THERMOCOUPLE J | E52 | Enclosed Terminals | 0 ~ 1050°C | 350mm | - | J - Type | 10mm | Non-Grounded | |
| E52-IC35B-N D=3.2 | Omron Automation & Safety | T-COUPLE TYPE J L=35CM Y-TYPE | E52 | Exposed Terminals | 0 ~ 1050°C | 350mm | - | J - Type | 3.2mm | Non-Grounded | |
| E52-CA50B-N D=3.2 | Omron Automation & Safety | T-COUPLE TYPE K L=50CM Y-TYPE | E52 | Exposed Terminals | 0 ~ 900°C | 500mm | - | K - Type | 3.2mm | Non-Grounded |
Thermocouples and temperature probes are temperature sensing devices designed to measure temperature by detecting changes in voltage or resistance generated by temperature variations in metals or semiconductor materials. Thermocouples consist of two dissimilar metal wires joined at one end and produce a voltage proportional to the temperature difference between the junction and the reference point. Temperature probes typically utilize semiconductor-based sensors, resistive elements, or thermistors to measure temperature accurately. Thermocouples and temperature probes find applications in industrial processes, HVAC systems, automotive, and medical devices for temperature monitoring, control, and thermal management. They offer advantages such as wide temperature range, high accuracy, and fast response times, making them suitable for various temperature sensing applications in diverse industries.