PTC Resettable Fuses

Image Part Number Description / PDF Quantity Rfq
PRG21AR420MS1RA

PRG21AR420MS1RA

TOKO / Murata

PTC RESET FUSE 20V 54MA 0805

2579

PRG21AR220MB1RK

PRG21AR220MB1RK

TOKO / Murata

PTC RESET FUSE 16V 75MA 0805

0

PTGL09AR3R9M3B51A0

PTGL09AR3R9M3B51A0

TOKO / Murata

PTC RESET FUSE

0

PTGL9SAS2R2K3B51B0

PTGL9SAS2R2K3B51B0

TOKO / Murata

PTC RESET FUSE 51V 522MA RADIAL

0

PTGL7SAS150K6B51A0

PTGL7SAS150K6B51A0

TOKO / Murata

PTC RESET FUSE 140V 187MA RADIAL

0

PTGLCSAS1R2K3B51B0

PTGLCSAS1R2K3B51B0

TOKO / Murata

PTC RESET FUSE 51V 749MA RADIAL

0

PTGL4SAS100K2B51B0

PTGL4SAS100K2B51B0

TOKO / Murata

PTC RESET FUSE 30V 212MA RADIAL

0

PRG21AR4R7MS5RA

PRG21AR4R7MS5RA

TOKO / Murata

PTC RESET FUSE 16V 205MA 0805

3284

PTGLCSAR0R2M1B51A0

PTGLCSAR0R2M1B51A0

TOKO / Murata

PTC RESET FUSE 16V 1.3A RADIAL

0

PTGL05BD102N9N51B0

PTGL05BD102N9N51B0

TOKO / Murata

PTC RESET FUSE

0

PTGLASARR27M1B51B0

PTGLASARR27M1B51B0

TOKO / Murata

PTC RESET FUSE 16V 1.025A RADIAL

0

PTGL12AS4R7K6B51A0

PTGL12AS4R7K6B51A0

TOKO / Murata

PTC RESET FUSE 140V 393MA RADIAL

0

PTGL07AR8R2M3P51B0

PTGL07AR8R2M3P51B0

TOKO / Murata

PTC RESET FUSE 56V 165MA RADIAL

0

PTGLCSAR0R2M1B51B0

PTGLCSAR0R2M1B51B0

TOKO / Murata

PTC RESET FUSE 16V 1.3A RADIAL

0

PTGL9SAS1R2K2B51A0

PTGL9SAS1R2K2B51A0

TOKO / Murata

PTC RESET FUSE 30V 704MA RADIAL

0

PTGL05AR121M9N51A0

PTGL05AR121M9N51A0

TOKO / Murata

PTC RESET FUSE 265V 47MA RADIAL

0

PRG21BC2R2MS5RA

PRG21BC2R2MS5RA

TOKO / Murata

PTC RESET FUSE

0

PRG21BC4R7MM1RK

PRG21BC4R7MM1RK

TOKO / Murata

PTC RESET FUSE

0

PTGL05AS121M0B51A0

PTGL05AS121M0B51A0

TOKO / Murata

PTC RESET FUSE

0

PTGL05BA1R8M1B51A0

PTGL05BA1R8M1B51A0

TOKO / Murata

PTC RESET FUSE 1.8OHM 110C

0

PTC Resettable Fuses

1. Overview

PTC (Positive Temperature Coefficient) Resettable Fuses are overcurrent protection devices that exhibit a sharp increase in resistance when fault currents exceed normal operating levels. Unlike traditional fuses, PTC devices automatically reset to low-resistance states after fault conditions clear. This self-recovering makes them critical in applications requiring reliable protection against short circuits and overloads without manual replacement. Their importance in modern electronics spans consumer devices, automotive systems, industrial equipment, and renewable energy installations.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsTypical Applications
Polymer PTC (PPTC)Organic polymer matrix with conductive particles, fast response time (ms level), low leakage currentConsumer electronics, USB ports, battery packs
Ceramic PTCSintered barium titanate material, higher operating temperature tolerance, stable tripping characteristicsIndustrial motors, HVAC systems, automotive ECUs
Hybrid PTCCombines polymer and ceramic elements for optimized performance, enhanced surge current capabilityTelecom infrastructure, solar inverters, medical devices

3. Structure and Composition

Typical PTC fuse construction includes:
  • PTC Element: Conductive polymer composite (e.g., carbon-black filled polyethylene) or doped ceramic material
  • Electrodes: Pre-plated nickel/copper layers with solderable termination
  • Encapsulation: Flame-retardant epoxy resin housing (UL94 V-0 rated)
  • Termination: Axial leads, SMD pads, or wire leads depending on package type
The resistance-temperature curve exhibits three regions: conductive (normal), transition (trip point), and high-resistance (latched) states.

4. Key Technical Specifications

ParameterDescriptionImportance
Hold Current (Ihold)Maximum operating current before tripping (range: 0.05A-50A)Determines normal operation compatibility
Tripping Time (Ttrip)Response time under overcurrent conditions (1ms-10s)Affects system fault tolerance
Max Voltage (Vmax)Rated voltage withstand capability (3V-600V)Safety insulation coordination
Leakage CurrentPost-trip residual current ( A level)Energy efficiency consideration
Operating Temp RangeFunctional temperature range (-40 C to 125 C typical)Environmental reliability

5. Application Areas

  • Consumer Electronics: Smartphones, laptops, power banks
  • Automotive: CAN bus protection, ADAS sensors, 12V/48V systems
  • Industrial: PLCs, motor drives, test equipment
  • Renewable Energy: Solar charge controllers, wind turbine converters
  • Medical Devices: Patient monitors, portable diagnostic equipment

6. Leading Manufacturers and Products

ManufacturerProduct SeriesKey Features
LittelfusePolySwitch VLRHigh inrush current tolerance for LED lighting
BournsMF-MSM SeriesMiniature SMD design for space-constrained applications
TE ConnectivityCR28xx SeriesAutomotive qualified (AEC-Q200) for EV powertrains
Bel/Standex0ZCM SeriesVertical through-hole design for industrial controls

7. Selection Guidelines

Key factors to consider:
  • Calculate normal operating current with 20% safety margin
  • Evaluate maximum fault current requirements
  • Match voltage rating with system specifications
  • Consider package type (SMD vs through-hole) for PCB layout
  • Analyze thermal derating curves for elevated temperatures
Example: For a 5V USB PD application, select a 0.5A hold current PPTC with 6V rating and <50ms trip time.

8. Industry Trends

  1. Development of ultra-low resistance ( 10m ) devices for high-current applications
  2. Integration with smart monitoring systems via embedded sensors
  3. Growing adoption in electric vehicles for 48V/800V system protection
  4. Nanocomposite material innovations improving response times
  5. Miniaturization driven by 5G infrastructure and IoT device demands
Market projections indicate a CAGR of 7.2% through 2027, with Asia-Pacific region leading adoption growth.
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