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| Image | Part Number | Manufacturer | Description | Series | Operating Temperature | Packaging | Mounting Type | Current | Accuracy | Termination | Package / Case | Temperature Coefficient |
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| TFPT0603L6800KV | Dale / Vishay | THERMISTOR PTC 680 OHM 10% 0603 | TFPT | -55°C ~ 150°C | Tape & Reel (TR) | Surface Mount | - | - | - | 0603 (1608 Metric) | - | |
| TFPT0805L1001DV | Dale / Vishay | THERMISTOR PTC 1K OHM 0.5% 0805 | TFPT | -55°C ~ 150°C | Tape & Reel (TR) | Surface Mount | - | - | - | 0805 (2012 Metric) | - | |
| KTY83/122,153 | NXP Semiconductors / Freescale | THERMISTOR PTC 1.01K OHM DO34 | KTY83 | -55°C ~ 175°C | Tape & Box (TB) | Through Hole | - | - | - | DO-204AG, DO-34, Axial | - | |
| B59010B1120A70 | EPCOS | THERMISTOR PTC DISC | - | -40°C ~ 125°C | Bulk | Through Hole | - | - | - | Disc, 10.1mm Dia x 4.2mm W | - | |
| YGM1 C516 | Cantherm | THERMISTOR PTC 250 OHM 10% RAD | YGM | -20°C ~ 60°C | Bulk | PCB, Through Hole | - | - | - | Radial | - | |
| TFPT0603L1500FZ | Dale / Vishay | THERMISTOR PTC 150 OHM 1% 0603 | TFPT | -55°C ~ 150°C | Tape & Reel (TR) | Surface Mount | - | - | - | 0603 (1608 Metric) | - | |
| PTCSC17T111DBE | Texas Instruments | THERMISTOR PTC 5% RECTANGULAR | - | -20°C ~ 165°C | - | Clamp On | - | - | - | Rectangular | - | |
| B59100M1155A070 | EPCOS | THERMISTOR PTC 100 OHM RADIAL | B59100 | 90°C ~ 160°C | Bulk | PCB, Through Hole | - | - | - | Radial | - | |
| TFPT0805L4700FM | Dale / Vishay | THERMISTOR PTC 470 OHM 1% 0805 | TFPT | -55°C ~ 125°C | Tape & Reel (TR) | Surface Mount | - | - | - | 0805 (2125 Metric) | - | |
| LT7330002A2K0JTE | AMP Connectors / TE Connectivity | THERMISTOR PTC 2K OHM 5% 0805 | Citec | -40°C ~ 125°C | Tape & Reel (TR) | Surface Mount | - | - | - | 0805 (2012 Metric) | - |
Positive temperature coefficient (PTC) thermistors are temperature-sensitive resistors whose resistance increases significantly with temperature rise. PTC thermistors are typically made of ceramic materials doped with metal oxides and exhibit a nonlinear resistance-temperature characteristic. They find applications in overcurrent protection, motor starting, temperature sensing, and temperature compensation circuits. PTC thermistors offer self-regulating characteristics, where their resistance increases sharply when the operating temperature exceeds a certain threshold, limiting current flow and providing inherent overcurrent protection. PTC thermistors also find applications in temperature compensation circuits and inrush current limiters, where their resistance changes with temperature variations to control current flow and stabilize operating conditions.