Temperature Sensors - PTC Thermistors

Image Part Number Description / PDF Quantity Rfq
PRF18BF471RS5RB

PRF18BF471RS5RB

TOKO / Murata

THERMISTOR PTC 470 OHM 50% 0603

0

PTFL04BH471Q2N34B0

PTFL04BH471Q2N34B0

TOKO / Murata

THERMISTOR PTC 470 OHM DISC

0

PTFM04BC471Q2N34BS

PTFM04BC471Q2N34BS

TOKO / Murata

THERMISTOR PTC 16V 470 OHM 110C

0

PRF18AR471QS5RB

PRF18AR471QS5RB

TOKO / Murata

THERMISTOR PTC 470 OHM 50% 0603

0

PTFM04BB471Q2N34BS

PTFM04BB471Q2N34BS

TOKO / Murata

THERMISTOR PTC 16V 470 OHM 120C

0

PTFL04BE222Q2N34B0

PTFL04BE222Q2N34B0

TOKO / Murata

THERMISTOR PTC 2.2K OHM DISC

0

PTFM04BH471Q2N34BS

PTFM04BH471Q2N34BS

TOKO / Murata

THERMISTOR PTC 16V 470 OHM 60C

0

PTFL04BC222Q2N34B0

PTFL04BC222Q2N34B0

TOKO / Murata

THERMISTOR PTC 2.2K OHM DISC

0

PRF18BF471QS5RB

PRF18BF471QS5RB

TOKO / Murata

THERMISTOR PTC 470 OHM 50% 0603

0

PRF18BD471RB5RB

PRF18BD471RB5RB

TOKO / Murata

THERMISTOR PTC 470 OHM 50% 0603

0

PTFM04BG222Q2N34BS

PTFM04BG222Q2N34BS

TOKO / Murata

THERMISTOR PTC 2.2K OHM TO51-2

0

PTFL04BC222Q2N51A0

PTFL04BC222Q2N51A0

TOKO / Murata

THERMISTOR PTC 16V 2.2K OHM 110C

0

PRF15BA102RB6RC

PRF15BA102RB6RC

TOKO / Murata

THERMISTOR PTC 1K OHM 5% 0402

0

PRF18AR471QB5RB

PRF18AR471QB5RB

TOKO / Murata

THERMISTOR PTC 470 OHM 50% 0603

6937

PTFM04BF471Q2N34BS

PTFM04BF471Q2N34BS

TOKO / Murata

THERMISTOR PTC 16V 470 OHM 80C

0

PRF18BB471RS5RB

PRF18BB471RS5RB

TOKO / Murata

THERMISTOR PTC 470 OHM 50% 0603

0

PRF18BC471RS5RB

PRF18BC471RS5RB

TOKO / Murata

THERMISTOR PTC 470 OHM 50% 0603

0

PRF18BC471QS5RB

PRF18BC471QS5RB

TOKO / Murata

THERMISTOR PTC 470 OHM 50% 0603

10000

PRF18BC471QB5RB

PRF18BC471QB5RB

TOKO / Murata

THERMISTOR PTC 470 OHM 50% 0603

80

PRF21AS471QB5RA

PRF21AS471QB5RA

TOKO / Murata

THERMISTOR PTC 470 OHM 50% 0805

0

Temperature Sensors - PTC Thermistors

1. Overview

Positive Temperature Coefficient (PTC) thermistors are resistors with a positive temperature coefficient, meaning their resistance increases significantly with temperature rise. Unlike NTC thermistors, PTC devices exhibit a sharp resistance transition at a critical temperature (Curie point). They are widely used in overtemperature protection, self-regulating heating elements, and temperature sensing applications. Their inherent safety features and reliability make them critical components in modern electronics, automotive systems, and industrial equipment.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Ceramic PTC ThermistorsHigh Curie temperature, abrupt resistance change, durableOverheat protection in motors, heaters, and power supplies
Polymer PTC ThermistorsLower switching temperature, resettable fuse functionalityUSB port protection, battery management systems
Switching PTCDigital on/off behavior at threshold temperatureThermal cutoff for appliances, HVAC systems
Linear PTCProportional resistance-temperature responsePrecision temperature measurement in industrial controllers

3. Structure and Composition

PTC thermistors typically consist of polycrystalline ceramic semiconductor materials (e.g., BaTiO3 doped with rare earth elements) with embedded silver or platinum electrodes. The core structure includes: - Semiconductor ceramic body with tailored Curie temperature - Metal electrodes for electrical connection - Protective epoxy or glass coating - Lead wires (axial/radial) or SMD terminations The PTC effect arises from the material's phase transition at Curie temperature, causing resistance spikes due to crystal lattice changes.

4. Key Technical Specifications

ParameterDescriptionImportance
R25 (Resistance at 25 C)Baseline resistance valueDetermines circuit compatibility
Tswitch (Switching Temperature)Critical temperature for resistance jumpApplication-specific threshold setting
Rmin/Rmax RatioResistance range spanIndicates sensitivity and switching capability
Dissipation Factor (mW/ C)Power dissipation per temperature unitAffects thermal response speed
Response Time (ms)Time to reach 90% resistance changeCritical for real-time protection systems

5. Application Fields

Major application sectors include: - Consumer Electronics: Smartphones (battery protection), 3D printers (hotend monitoring) - Automotive: EV battery thermal management, seat heater control - Industrial: Motor overload protection, pipeline freeze detection - Renewable Energy: Solar charge controllers, wind turbine gear monitoring - Medical: Patient warming systems, diagnostic equipment thermal regulation

6. Leading Manufacturers and Products

ManufacturerKey ProductsFeatures
Vishay BeyschlagK2500-FinderAutomotive-grade PTC with 50-150 C range
TE ConnectivityPS224-202UL-certified resettable fuse for power supplies
Murata ElectronicsPXU11S150R0Miniature SMD PTC for IoT devices
EPCOS (TDK)B59904C0150A070High-current PTC for industrial motor protection

7. Selection Guidelines

Key selection criteria: - Required switching temperature vs operating temperature range - Resistance tolerance and stability over lifespan - Package type (through-hole, SMD, bolt-on) - Voltage/current ratings with safety margin - Compliance with standards (UL, RoHS, AEC-Q200 for automotive) - Environmental resistance (humidity, vibration, chemical exposure)

8. Industry Trends

Emerging trends include: - Development of nano-ceramic materials for faster response times (<10ms) - Integration with MEMS technology for IoT sensor nodes - Higher temperature stability beyond 200 C for e-mobility applications - Miniaturization to 0402 SMD package sizes - AI-based predictive thermal management systems using PTC arrays - Increased adoption in hydrogen fuel cell thermal monitoring systems

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