how can an inductor supplied with DC create inductance? the voltage isnt changing its constant so i cant see how its going to create an EMF or change polarity
For as long as an inductor carries a steady current I, it stores an amount of energy equal to 0.5*L*(I^2) in its magnetic field.how can an inductor supplied with DC create inductance? the voltage isnt changing its constant so i cant see how its going to create an EMF or change polarity
Nothing much happens to an inductor under truly constant conditions, so I wonder if you may have misunderstood something. Are you perhaps thinking of the back-emf which results when an inductor is disconnected from a supply? This is a transient condition, not steady-state.i read that chapter a while ago and thats what i dont get, how is the voltage changing polarity in a DC inductor when its constant.what they've got there is pretty much the same as for AC inductors, but i thought they only oppose the supply when theres a reactance due to a frequency. DC inductors cant have reactance because the voltage isnt changing.unless its something to do with passing through a loop for a loop in the coil.
Also ive read the typical inductor, light bulb and an open switch theory and it states the with the DC inductor the light bulb will remain on for a while after the switch has been opened but with the AC inductor i swear it said it will behave in a totally different way.
Nothing really. Both oppose a change in current through them, the higher the frequency/change, the more the inductor "resists" with counter-EMF. A MOSFET switching DC off is a BIG change in current, which is why switch mode power supplies work. A square wave is the sum of very high frequency sine waves.ill summarise what im trying to get at. excluding reactance what are the differences between an AC inductor and a DC inductor.