Leaded Inductors

Leaded inductors are components with through hole features and leads attached concentrically to the opposite ends of the inductor cores. They act as resistors to changes in currents and absorb EMI (electromagnetic interference) which could affect the status of electrical circuits in devices.

Leaded inductors are composed of coils wrapped around magnetic cores and store energy in the form of a magnetic field.

What are leaded inductors used for?

They are used to suppress asymmetrical interferences in low-voltage and high-voltage circuits.

With low voltages, they act as continuous circuits to keep the current flowing if there are interferences. With high voltages, they are able to prevent current from flowing due to their high resistance, thus are used to protect the circuit from voltage spikes.

Types of leaded inductors

Leaded inductors come in two main categories:

  • VHF (very high frequency) versions are used for line voltage applications to block or filter EMI in small applications or for decoupling in telecom and entertainment electronics.
  • RF (radio frequency) versions are used in low-frequency applications of signal and control circuits and are designed to block radio frequencies while allowing audio signals to be transmitted.
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Produkta apraksts Brand Stock Inductance Maximum dc Current Mounting Type Maximum DC Resistance Tolerance Diameter Length Depth Height Dimensions Core Material Maximum Self Resonant Frequency Lead Pitch Series Lead Diameter Minimum Quality Factor Maximum Operating Temperature Terminal Type Minimum Operating Temperature
1.5 μH ±20% MnZn Leaded Inductor, Max SRF:37MHz, 75A Idc, 400μΩ Rdc WE-HCFT Wurth Elektronik 0 1.5 μH 75A Through Hole 400µΩ ±20% - 36mm 21.5mm 35mm 36 x 21.5 x 35mm MnZn 37MHz - WE-HCFT - - +125°C - -40°C
1.5 μH ±20% MnZn Leaded Inductor, Max SRF:37MHz, 75A Idc, 400μΩ Rdc WE-HCFT Wurth Elektronik 0 1.5 μH 75A Through Hole 400µΩ ±20% - 36mm 21.5mm 35mm 36 x 21.5 x 35mm MnZn 37MHz - WE-HCFT - - +125°C - -40°C
10 μH ±20% MnZn Leaded Inductor, Max SRF:14MHz, 56.7A Idc, 1.2mΩ Rdc WE-HCFT Wurth Elektronik 0 10 μH 56.7A Through Hole 1.2mΩ ±20% - 36mm 41mm 35mm 36 x 41 x 35mm MnZn 14MHz - WE-HCFT - - +125°C - -40°C
10 μH ±20% MnZn Leaded Inductor, Max SRF:14MHz, 56.7A Idc, 1.2mΩ Rdc WE-HCFT Wurth Elektronik 0 10 μH 56.7A Through Hole 1.2mΩ ±20% - 36mm 41mm 35mm 36 x 41 x 35mm MnZn 14MHz - WE-HCFT - - +125°C - -40°C
10 μH ±20% MnZn Leaded Inductor, Max SRF:17MHz, 20.6A Idc, 5mΩ Rdc WE-HCFT Wurth Elektronik 0 10 μH 20.6A Through Hole 5mΩ ±20% - 22mm 17mm 13.5mm 22 x 17 x 13.5mm MnZn 17MHz - WE-HCFT - - +125°C - -40°C
10 μH ±20% MnZn Leaded Inductor, Max SRF:17MHz, 20.6A Idc, 5mΩ Rdc WE-HCFT Wurth Elektronik 0 10 μH 20.6A Through Hole 5mΩ ±20% - 22mm 17mm 13.5mm 22 x 17 x 13.5mm MnZn 17MHz - WE-HCFT - - +125°C - -40°C
15 μH ±20% MnZn Leaded Inductor, Max SRF:12MHz, 45.3A Idc, 2.16mΩ Rdc WE-HCFT Wurth Elektronik 0 15 μH 45.3A Through Hole 2.16mΩ ±20% - 36mm 41mm 35mm 36 x 41 x 35mm MnZn 12MHz - WE-HCFT - - +125°C - -40°C
15 μH ±20% MnZn Leaded Inductor, Max SRF:12MHz, 45.3A Idc, 2.16mΩ Rdc WE-HCFT Wurth Elektronik 0 15 μH 45.3A Through Hole 2.16mΩ ±20% - 36mm 41mm 35mm 36 x 41 x 35mm MnZn 12MHz - WE-HCFT - - +125°C - -40°C
15 μH ±20% MnZn Leaded Inductor, Max SRF:13MHz, 20.6A Idc, 5mΩ Rdc WE-HCFT Wurth Elektronik 0 15 μH 20.6A Through Hole 5mΩ ±20% - 22mm 17mm 13.5mm 22 x 17 x 13.5mm MnZn 13MHz - WE-HCFT - - +125°C - -40°C
15 μH ±20% MnZn Leaded Inductor, Max SRF:13MHz, 20.6A Idc, 5mΩ Rdc WE-HCFT Wurth Elektronik 0 15 μH 20.6A Through Hole 5mΩ ±20% - 22mm 17mm 13.5mm 22 x 17 x 13.5mm MnZn 13MHz - WE-HCFT - - +125°C - -40°C
2.2 μH ±20% MnZn Leaded Inductor, Max SRF:30MHz, 75A Idc, 400μΩ Rdc WE-HCFT Wurth Elektronik 0 2.2 μH 75A Through Hole 400µΩ ±20% - 36mm 21.5mm 35mm 36 x 21.5 x 35mm MnZn 30MHz - WE-HCFT - - +125°C - -40°C
2.2 μH ±20% MnZn Leaded Inductor, Max SRF:30MHz, 75A Idc, 400μΩ Rdc WE-HCFT Wurth Elektronik 0 2.2 μH 75A Through Hole 400µΩ ±20% - 36mm 21.5mm 35mm 36 x 21.5 x 35mm MnZn 30MHz - WE-HCFT - - +125°C - -40°C
22 μH ±20% MnZn Leaded Inductor, Max SRF:8.15MHz, 23.2A Idc, 8.8mΩ Rdc WE-HCFT Wurth Elektronik 0 22 μH 23.2A Through Hole 8.8mΩ ±20% - 36mm 34.5mm 35mm 36 x 34.5 x 35mm MnZn 8.15MHz - WE-HCFT - - +125°C - -40°C
22 μH ±20% MnZn Leaded Inductor, Max SRF:8.15MHz, 23.2A Idc, 8.8mΩ Rdc WE-HCFT Wurth Elektronik 0 22 μH 23.2A Through Hole 8.8mΩ ±20% - 36mm 34.5mm 35mm 36 x 34.5 x 35mm MnZn 8.15MHz - WE-HCFT - - +125°C - -40°C
22 μH ±20% MnZn Leaded Inductor, Max SRF:9MHz, 40.6A Idc, 3.2mΩ Rdc WE-HCFT Wurth Elektronik 0 22 μH 40.6A Through Hole 3.2mΩ ±20% - 36mm 41mm 35mm 36 x 41 x 35mm MnZn 9MHz - WE-HCFT - - +125°C - -40°C
22 μH ±20% MnZn Leaded Inductor, Max SRF:9MHz, 40.6A Idc, 3.2mΩ Rdc WE-HCFT Wurth Elektronik 0 22 μH 40.6A Through Hole 3.2mΩ ±20% - 36mm 41mm 35mm 36 x 41 x 35mm MnZn 9MHz - WE-HCFT - - +125°C - -40°C
3.3 μH ±20% MnZn Leaded Inductor, Max SRF:25MHz, 75A Idc, 400μΩ Rdc WE-HCFT Wurth Elektronik 0 3.3 μH 75A Through Hole 400µΩ ±20% - 36mm 21.5mm 35mm 36 x 21.5 x 35mm MnZn 25MHz - WE-HCFT - - +125°C - -40°C
3.3 μH ±20% MnZn Leaded Inductor, Max SRF:25MHz, 75A Idc, 400μΩ Rdc WE-HCFT Wurth Elektronik 0 3.3 μH 75A Through Hole 400µΩ ±20% - 36mm 21.5mm 35mm 36 x 21.5 x 35mm MnZn 25MHz - WE-HCFT - - +125°C - -40°C
3.3 μH ±20% MnZn Leaded Inductor, Max SRF:40MHz, 28.7A Idc, 2.4mΩ Rdc WE-HCFT Wurth Elektronik 0 3.3 μH 28.7A Through Hole 2.4mΩ ±20% - 22mm 17mm 13.5mm 22 x 17 x 13.5mm MnZn 40MHz - WE-HCFT - - +125°C - -40°C
3.3 μH ±20% MnZn Leaded Inductor, Max SRF:40MHz, 28.7A Idc, 2.4mΩ Rdc WE-HCFT Wurth Elektronik 0 3.3 μH 28.7A Through Hole 2.4mΩ ±20% - 22mm 17mm 13.5mm 22 x 17 x 13.5mm MnZn 40MHz - WE-HCFT - - +125°C - -40°C
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