Temperature Sensors - Thermocouples, Temperature Probes

Image Part Number Description / PDF Quantity Rfq
E52-IC20C-4.8

E52-IC20C-4.8

Omron Automation & Safety Services

THERMOCOUPLE J

0

E52-CA4A D=1 NETU 1M

E52-CA4A D=1 NETU 1M

Omron Automation & Safety Services

TC, DIA. 4,TYPE K, HEAT SHIELD

0

E52-CA15A D=1 1M

E52-CA15A D=1 1M

Omron Automation & Safety Services

THERMOCOUPLE

0

E52-P35A D=6.4 4M

E52-P35A D=6.4 4M

Omron Automation & Safety Services

100OHM RTD DIA 6.4, 4M

0

E52-IC6AS-1M

E52-IC6AS-1M

Omron Automation & Safety Services

THERMOCOUPLE J

0

E52-CA20C-6.4

E52-CA20C-6.4

Omron Automation & Safety Services

THERMOCOUPLE K

0

E52-IC20A-1.6-4M

E52-IC20A-1.6-4M

Omron Automation & Safety Services

THERMOCOUPLE J

0

E52-CA20AS-4M

E52-CA20AS-4M

Omron Automation & Safety Services

THERMOCOUPLE K

0

E52-P15A D=3.2 2M

E52-P15A D=3.2 2M

Omron Automation & Safety Services

TEMPERATURE SENSOR

0

E52-IC15A D=1.6 4M

E52-IC15A D=1.6 4M

Omron Automation & Safety Services

TEMPERATURE SENSOR

0

E52-CA15A-1.6-4M

E52-CA15A-1.6-4M

Omron Automation & Safety Services

TEMPERATURE CONTROL

0

E52-CA1D-M8

E52-CA1D-M8

Omron Automation & Safety Services

THERMOCOUPLE K

0

E52-CA27A D=8 8M

E52-CA27A D=8 8M

Omron Automation & Safety Services

THERMOCOUPLE K

0

E52-IC20C-6.4

E52-IC20C-6.4

Omron Automation & Safety Services

THERMOCOUPLE J

0

E52-CA17A D=1 NETU 1M

E52-CA17A D=1 NETU 1M

Omron Automation & Safety Services

TC,DIA17,TYPE K,HEAT SHIELD,1M

0

E52-P35C D=4.8

E52-P35C D=4.8

Omron Automation & Safety Services

RTD TEMPERATURE SENSOR

0

E52-CA1D M8 4M

E52-CA1D M8 4M

Omron Automation & Safety Services

TEMP. SENSOR, TYPE K, M8 STUD

0

E52-CA35C-8.0

E52-CA35C-8.0

Omron Automation & Safety Services

TEMPERATURE CONTROL

0

E52-P2GS 2M

E52-P2GS 2M

Omron Automation & Safety Services

RTD TEMP SENSOR

0

E52-CA12A D=4.8 2M

E52-CA12A D=4.8 2M

Omron Automation & Safety Services

THERMOCOUPLE K

0

Temperature Sensors - Thermocouples, Temperature Probes

1. Overview

Thermocouples and temperature probes are critical components in temperature measurement systems. Thermocouples operate based on the Seebeck effect, generating a voltage proportional to temperature differences between two dissimilar metals. Temperature probes encompass a broader category, including resistance temperature detectors (RTDs), thermistors, and infrared sensors. These devices are essential in industrial process control, medical diagnostics, energy systems, and environmental monitoring, enabling precise thermal management and data acquisition.

2. Major Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
K-Type ThermocoupleWide temperature range (-200 C to 1350 C), cost-effective, general-purposeIndustrial furnaces, HVAC systems
J-Type ThermocoupleHigh accuracy in mid-range (-40 C to 750 C), iron-constantan constructionPlastics processing, laboratory equipment
T-Type ThermocoupleCopper-constantan, stable in cryogenic applications (-200 C to 350 C)Cryogenics, food industry
RTD Probes (Pt100)High precision ( 0.1 C), stable long-term performancePharmaceutical processing, precision ovens
Thermistor ProbesHigh sensitivity in limited range (-50 C to 150 C)Medical thermometers, 3D printers

3. Structure and Components

Thermocouples consist of two dissimilar metal wires (e.g., chromel-alumel for K-type) joined at a measuring junction, insulated with ceramic beads, and protected by a metal sheath (typically Inconel or stainless steel). Temperature probes integrate sensing elements (RTD coils, thermistor chips) within protective housings. RTD probes use platinum wire wound around a ceramic core, while thermistor probes employ semiconductor ceramics. Both incorporate connection heads with terminal blocks and optional transmitters for signal conditioning.

4. Key Technical Specifications

ParameterSignificance
Temperature RangeDetermines operational limits in specific environments
Accuracy ( C)Impacts measurement reliability and process control
Response Time (ms)Affects dynamic measurement capability
Material CompatibilityCorrosion resistance and mechanical durability
Output Signal TypeDictates compatibility with data acquisition systems

5. Application Fields

  • Industrial Manufacturing: Steel melt temperature monitoring, CNC machine thermal compensation
  • Energy Sector: Gas turbine exhaust temperature measurement (Type K thermocouples)
  • Medical Devices: Patient temperature monitoring systems (flexible RTD probes)
  • Automotive: Engine coolant temperature sensors (thermistor-based probes)
  • Environmental Monitoring: Weather stations with IP68-rated temperature probes

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
Omega EngineeringKMTSS-116-6Metal-sheathed K-type thermocouple, 1/16" diameter
Keysight TechnologiesU1217ADigital thermometer with RTD probe ( 0.05 C accuracy)
HoneywellTPC-101JJ-type thermocouple with ceramic insulation for extruders
TE ConnectivityCTTC951Miniature thermocouple for PCB mounting

7. Selection Guidelines

Key considerations include: operating temperature range (avoid exceeding sensor limits), environmental factors (vibration, chemical exposure), required accuracy (RTDs for critical processes), response time (critical in dynamic systems), and cost constraints. For example, select mineral-insulated thermocouples for high-vibration environments and infrared probes for non-contact measurements in moving machinery.

8. Industry Trends

Current developments include wireless temperature probes with integrated IoT connectivity (e.g., Bluetooth-enabled sensors), nanotechnology-enhanced thermocouples for extreme environments, and self-calibrating smart probes using AI algorithms. The market shows increasing demand for miniature sensors (sub-1mm probes for medical catheters) and energy-harvesting thermocouples for industrial wireless networks.

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