Inrush Current Limiting Thermistors
- Inrush current limiting thermistor
- Resistance of 2.5Ω (at 25°C)
- Maximum steady state current of 5A
- Maximum recommended energy of 30J
- Voltage ratings of 120VAC and 240VAC
- Body temperature of +165°C at maximum current
- Inrush current limiting thermistor
- Resistance of 40Ω (at 25°C)
- Maximum steady state current of 2A
- Maximum recommended energy of 15J
- Body temperature of +142°C at maximum current
- Maximum disc diameter
- Inrush current limiting thermistor
- Resistance of 4 (at 25°C)
- Maximum steady state current of 4A
- Maximum recommended energy of 20J
- Body temperature of +160°C at maximum current
- Maximum disc diameter 10mm
- Inrush current limiting thermistor
- Resistance of 50Ω (at 25°C)
- Maximum steady state current of 1.1A (up to +25°C)
- Maximum recommended energy of 18J
- Body temperature of +125°C at maximum current
- Maximum disc diameter 10mm
- Inrush current limiting thermistor
- Resistance of 50Ω ±25% (at 25°C)
- Maximum steady state current of 2A
- Maximum recommended energy of 18J
- Voltage ratings of 120VAC and 240VAC
- Body temperature of +140°C at maximum current
- Inrush current limiting thermistor
- Resistance of 5Ω (at 25°C)
- Maximum steady state current of 3A (up to +25°C)
- Maximum recommended energy of 20J
- Body temperature of +170°C at maximum current
- Maximum disc diameter 10mm
- Inrush current limiting thermistor
- Resistance of 5Ω (at 25°C)
- Maximum steady state current of 4A
- Maximum recommended energy of 20J
- Voltage ratings of 120VAC and 240VAC
- Body temperature of +181°C at maximum current
- Inrush current limiting thermistor
- Resistance of 10Ω (at 20°C)
- Maximum steady state current of 4A
- Maximum recommended energy of 40J
- Voltage ratings of 120VAC and 240VAC
- Body temperature of +162°C at maximum current
- Inrush current limiting thermistor
- Resistance of 10Ω (at 20°C)
- Maximum steady state current of 5A
- Maximum recommended energy of 60J
- Body temperature of +172°C at maximum current
- Maximum disc diameter 12mm
- Inrush current limiting thermistor
- Resistance of 10Ω (at 20°C)
- Maximum steady state current of 6A
- Maximum recommended energy of 40J
- Voltage ratings of 120VAC and 240VAC
- Body temperature of +177°C at maximum current
- Inrush current limiting thermistor
- Resistance of 10Ω (at 20°C)
- Maximum steady state current of 6A
- Maximum recommended energy of 40J
- Voltage ratings of 120VAC and 240VAC
- Body temperature of +177°C at maximum current
- Inrush current limiting thermistor
- Resistance of 120Ω (at 25°C)
- Maximum steady state current of 1A (up to +25°C)
- Maximum recommended energy of 25J
- Body temperature of +129°C at maximum current
- Maximum disc diameter 12mm
- Inrush current limiting thermistor
- Resistance of 120Ω (at 25°C)
- Maximum steady state current of 2A
- Maximum recommended energy of 25J
- Body temperature of +129°C at maximum current
- Maximum disc diameter 12mm
- Inrush current limiting thermistor
- Resistance of 120Ω (at 25°C)
- Maximum steady state current of 3A
- Maximum recommended energy of 25J
- Body temperature of +179°C at maximum current
- Maximum disc diameter 12mm
- Inrush current limiting thermistor
- Resistance of 15Ω (at 20°C)
- Maximum steady state current of 4A
- Maximum recommended energy of 40J
- Body temperature of +152°C at maximum current
- Maximum disc diameter 12mm
- Inrush current limiting thermistor
- Resistance of 150Ω (at 25°C)
- Maximum steady state current of 2A
- Maximum recommended energy of 10J
- Body temperature of +137°C at maximum current
- Maximum disc diameter 12mm
Manufacturers
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Inrush Current Limiting Thermistors
Inrush current limiting thermistors are used for protecting the circuit against occasional current spikes significantly higher than normal operating current, which could otherwise damage the equipment. At Rhopoint Components we offer a range of current limiting resistors from industry-leading manufacturer Ametherm, with various sizes, resistance and maximum steady-state current options available. The Ametherm thermistors compare favourably with traditional inrush current limiters, offering lower current density, faster reset time, wider temperature range and virtually no derating.