Temperature Sensors - RTD (Resistance Temperature Detector)

Image Part Number Description / PDF Quantity Rfq
PTS1206M2B500RPU00

PTS1206M2B500RPU00

Vishay / Beyschlag

SENSOR RTD 500OHM 1206

0

PTS0805M2B500RP100

PTS0805M2B500RP100

Vishay / Beyschlag

SENSOR RTD 500OHM 0805

0

PTS080501B500RPU00

PTS080501B500RPU00

Vishay / Beyschlag

SENSOR RTD 500OHM 0805

0

PTS120602B1K00PU00

PTS120602B1K00PU00

Vishay / Beyschlag

SENSOR RTD 1KOHM 1206

0

PTS080501B100RPU00

PTS080501B100RPU00

Vishay / Beyschlag

SENSOR RTD 100OHM 0805

0

PTS120601B500RP100

PTS120601B500RP100

Vishay / Beyschlag

SENSOR RTD 500OHM 1% 1206

0

PTS080502B100RP100

PTS080502B100RP100

Vishay / Beyschlag

SENSOR RTD 100OHM 0805

0

PTS0603M2B100RP100

PTS0603M2B100RP100

Vishay / Beyschlag

SENSOR RTD 100OHM 0603

0

PTS120602B100RP100

PTS120602B100RP100

Vishay / Beyschlag

SENSOR RTD 100OHM 1206

0

PTS120601B100RP100

PTS120601B100RP100

Vishay / Beyschlag

SENSOR RTD 100OHM 1% 1206

989

PTS120602B100RPU00

PTS120602B100RPU00

Vishay / Beyschlag

SENSOR RTD 100OHM 1206

0

PTS120601B500RPU00

PTS120601B500RPU00

Vishay / Beyschlag

SENSOR RTD 500OHM 1206

0

PTS120602B1K00P100

PTS120602B1K00P100

Vishay / Beyschlag

SENSOR RTD 1KOHM 1206

0

PTS120602B500RP100

PTS120602B500RP100

Vishay / Beyschlag

SENSOR RTD 500OHM 1206

0

PTS1206M1B500RP100

PTS1206M1B500RP100

Vishay / Beyschlag

SENSOR RTD 500OHM 1206

140

PTS080501B500RP100

PTS080501B500RP100

Vishay / Beyschlag

SENSOR RTD 500OHM 1% 0805

10350

PTS080502B500RP100

PTS080502B500RP100

Vishay / Beyschlag

SENSOR RTD 500OHM 0805

0

PTS0805M1B500RP100

PTS0805M1B500RP100

Vishay / Beyschlag

SENSOR RTD 500OHM 0.3K 0805

0

PTS080502B500RPU00

PTS080502B500RPU00

Vishay / Beyschlag

SENSOR RTD 500OHM 0805

0

PTS1206M1B1K00P100

PTS1206M1B1K00P100

Vishay / Beyschlag

SENSOR RTD 1KOHM 0.3K 1206

3657

Temperature Sensors - RTD (Resistance Temperature Detector)

1. Overview

Resistance Temperature Detectors (RTDs) are temperature sensors that operate based on the principle of electrical resistance variation in metals with temperature changes. Platinum is the most commonly used material due to its stability and linear resistance-temperature relationship. RTDs provide precise and repeatable temperature measurements, making them critical in industrial process control, scientific research, and quality assurance systems.

2. Major Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Platinum RTD (Pt100/Pt1000)High accuracy ( 0.1 C), wide temperature range (-200 C to 850 C)Industrial process control, HVAC systems
Copper RTDLower cost, limited range (-50 C to 150 C)Motors temperature monitoring
Nickel RTDHigh sensitivity but non-linear outputAerospace applications
Thin-Film RTDCompact size, fast response timeMedical devices, semiconductor manufacturing
Wire-Wound RTDHigh vibration resistance, mechanical durabilityPower generation plants

3. Structure and Components

Typical RTD construction includes:

  • Sensing Element: Platinum/copper/nickel wire or thin-film deposit
  • Lead Wires: 2-wire (cost-effective), 3-wire (compensated), or 4-wire (high precision)
  • Insulation: Ceramic or glass encapsulation for electrical isolation
  • Protective Sheath: Stainless steel or Inconel for environmental protection
  • Connection Head: Terminal for wire connections and mounting

4. Key Technical Specifications

ParameterSignificanceTypical Values
Temperature RangeDetermines operational limits-200 C to 850 C (Pt100)
Accuracy ClassDefines measurement precisionClass A ( 0.15 C), Class B ( 0.3 C)
Response TimeCritical for dynamic temperature tracking0.5-20 seconds
Electrical ResistanceAffects signal transmission quality100 (Pt100), 1000 (Pt1000)
Self-Heating ErrorImpact of excitation current on measurement<0.02 C/mW

5. Application Fields

  • Industrial: Chemical reactors, boiler systems, turbine monitoring
  • Healthcare: MRI machine temperature regulation
  • Automotive: Battery management systems in EVs
  • Food Processing: Pasteurization temperature control
  • Energy: Nuclear reactor coolant monitoring

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
HoneywellTD SeriesIP67 rating, -50 C to 250 C range
Omega EngineeringPX SeriesExplosion-proof design, Class A accuracy
YokogawaYTA SeriesHART protocol support, 4-wire configuration
ABBMT SeriesDigital signal processing, SIL2 compliance

7. Selection Guidelines

Key considerations:

  1. Temperature range requirements
  2. Accuracy vs. cost trade-offs
  3. Environmental factors (vibration, corrosion)
  4. Installation constraints (space, mounting type)
  5. Signal transmission distance (wire resistance impact)

Industry Trends

Emerging developments include:

  • Miniaturization for embedded applications
  • Wireless RTD sensors for IoT integration
  • Advanced materials (ceramic matrix composites)
  • AI-based self-calibration features
  • Increased adoption in renewable energy systems
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