In the below circuit we put Snubbing Diode D1 across the coil to protect the transistor (represented here as a switch) from the high reverse transient voltage when the switch (transistor) is opened. Note that this represents a model of a real inductor that has a 100 ohm DC resistance. Calculate the current that will flow in D1 at t=0*. L1=1mH R1=0.1k VS=10V KH D1 will be open at t-0

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In the below circuit we put Snubbing Diode D1 across the coil to protect the transistor
(represented here as a switch) from the high reverse transient voltage when the switch
(transistor) is opened. Note that this represents a model of a real inductor that has a 100
ohm DC resistance.
Calculate the current that will flow in D1 at t=0+.
L1=1mH
R1=0.1k
VS=10V
KH
D1
will be open
at t=0
Transcribed Image Text:In the below circuit we put Snubbing Diode D1 across the coil to protect the transistor (represented here as a switch) from the high reverse transient voltage when the switch (transistor) is opened. Note that this represents a model of a real inductor that has a 100 ohm DC resistance. Calculate the current that will flow in D1 at t=0+. L1=1mH R1=0.1k VS=10V KH D1 will be open at t=0
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