G (for beta and curve) series

  • Ametherm
  • Inrush current limiting thermistor
  • Resistance of 5Ω (at 25°C)
  • Maximum steady state current of 20A
  • Maximum recommended energy of 300J
  • Voltage rating from 120VAC to 680VAC
  • Body temperature of +204°C at maximum current
  • Ametherm
  • Inrush current limiting thermistor
  • Resistance of 7Ω (at 25°C)
  • Maximum steady state current of 15A
  • Maximum recommended energy of 250J
  • Voltage rating from 120VAC to 680VAC
  • Body temperature of +214°C at maximum current
  • Ametherm
  • Inrush current limiting thermistor
  • Resistance of 10Ω ±25% (at 25°C)
  • Maximum steady state current of 18A
  • Maximum recommended energy of 500J
  • Body temperature of +220°C at maximum current
  • Maximum disc diameter 36mm
  • Ametherm
  • Inrush current limiting thermistor
  • Resistance of 20Ω (at 25°C)
  • Maximum steady state current of 10A
  • Maximum recommended energy of 500J
  • Body temperature of +210°C at maximum current
  • Maximum disc diameter 36mm
  • Ametherm
  • Inrush current limiting thermistor
  • Resistance of 5Ω (at 25°C)
  • Maximum steady state current of 25A
  • Maximum recommended energy of 600J
  • Body temperature of +220°C at maximum current
  • Maximum isc diameter 36mm
  • Ametherm
  • Inrush current limiting thermistor
  • Resistance of 10Ω (at 25°C)
  • Maximum steady state current of 8A up to +25°C
  • Maximum recommended energy of 200J
  • Voltage rating from 120VAC to 680VAC
  • Body temperature of +194°C at maximum current
  • Ametherm
  • Inrush current limiting thermistor
  • Resistance of 33Ω (at 25°C)
  • Maximum steady state current of 1.3A
  • Maximum recommended energy of 8J
  • Voltage rating from 120VAC to 680VAC
  • Body temperature of +112°C at maximum current
  • Ametherm
  • Inrush current limiting thermistor
  • Resistance of 7Ω(at 25°C)
  • Maximum steady state current of 10A
  • Maximum recommended energy of 100J
  • Voltage ratings of 120VAC and 240VAC
  • Body temperature of +212°C at maximum current
  • Ametherm
  • Inrush current limiting thermistor
  • Resistance of 2Ω (at 25°C)
  • Maximum steady state current of 23A
  • Maximum recommended energy of 250J
  • Voltage ratings of 120VAC and 240VAC
  • Body temperature of +198°C at maximum current
  • Ametherm
  • Inrush current limiting thermistor
  • Resistance of 2Ω (at 25°C)
  • Maximum steady state current of 25A
  • Maximum recommended energy of 300J
  • Voltage ratings of 120VAC and 240VAC
  • Body temperature of +236°C at maximum current
  • Ametherm
  • Inrush current limiting thermistor
  • Resistance of 4Ω (at 25°C)
  • Maximum steady state current of 23A
  • Maximum recommended energy of 200J
  • Voltage ratings of 120VAC and 240VAC
  • Body temperature of +236°C at maximum current
  • Ametherm
  • Inrush current limiting thermistor
  • Resistance of 17.5Ω (at 25°C)
  • Maximum steady state current of 4A
  • Maximum recommended energy of 30J
  • Body temperature of +152°C at maximum current
  • Maximum disc diameter 11.5mm
  • Ametherm
  • Inrush current limiting thermistor
  • Resistance of 10Ω (at 25°C)
  • Maximum steady state current of 6A
  • Maximum recommended energy of 55J
  • Voltage ratings of 120VAC and 240VAC
  • Body temperature of +172°C at maximum current
  • Ametherm
  • Inrush current limiting thermistor
  • Resistance of 40Ω (at 25°C)
  • Maximum steady state current of 4A
  • Maximum recommended energy of 35J
  • Body temperature of +178°C at maximum current
  • Maximum disc diameter 15mm
  • Ametherm
  • Inrush current limiting thermistor
  • Resistance of 7Ω (at 25°C)
  • Maximum steady state current of 5A
  • Maximum recommended energy of 60J
  • Voltage ratings of 120VAC and 240VAC
  • Body temperature of +172°C at maximum current
  • Ametherm
  • Inrush current limiting thermistor
  • Resistance of 10Ω (at 20°C)
  • Maximum steady state current of 5A
  • Maximum recommended energy of 75J
  • Voltage ratings of 120VAC and 240VAC
  • Body temperature of +180°C at maximum current
Please be advised that due to the ongoing supply issues with raw materials affecting the global electronics industry, as well as an increase in orders received by our manufacturing partners, a large number of products are facing increased lead times in recent months. For the latest lead time and stock availability, please contact one of our engineers who will be happy to discuss lead times further and the potential for alternative parts.