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The nbsp Darlington Pair transistor configuration of two bipolar transistors offers growth current switching for a given base One transistor circuit configuration which can be used to quite a good effect in many instances is the Darlington Pair The Darlington Pair provides a number of advantages It is fundamentally used because it offers especially high gain and this also reflects in a high input impedance for the overall Darlington circuit when compared to a single transistor However the Darlington Pair does have some defects and it is not suitable for all high-gain applications as a result Nevertheless where applicable the
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The IRF nbsp is N-Channel MOSFET that can switch high currents up to A amp V It is mostly used for dynamic dv dt rating and consumer full bridge projects The specialty of the IRF is that it has a very low resistance of only m Omega making it suitable for switching circuits like nbsp DC-DC converters motor speed control amp Inverters etc It is also one of the easily available amp cheap MOSFETS with low resistance In this article I am going to cover everything related to this MOS FIT transistor its main features pinout working and applications The
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The nbsp IRF is an N-Channel nbsp Power MOSFET that can switch loads up to V This Mosfet could switch loads that use up to A it can turn on by providing a gate threshold voltage of V across the Gate and Source pin Since the IRF MOSFET is for switching high current high voltage loads it has a relatively high gate voltage Hence cannot be used directly with an I O pin of a CPU If you prefer a MOSFET with low gate voltage then try IRF or BSS etc One significant disadvantage of this Mosfet is its high
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