Consider the series circuit comprising of the diode and a resistor whose value is shown on the right. The supply voltage, Vs varies with time as shown in Fig (a) on page 2. Draw the current waveform in the space given in Fig (b). Vs Note: You must use the load line technique for this part. Do not use the mathematical equations to find currents. You must draw the necessary load lines on Graph 1 [Show load lines and mark corresponding operating points. Find the currents from the graph].

Power System Analysis and Design (MindTap Course List)
6th Edition
ISBN:9781305632134
Author:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Publisher:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Chapter4: Transmission Line Parameters
Section: Chapter Questions
Problem 4.2P: The temperature dependence of resistance is also quantified by the relation R2=R1[ 1+(T2T1) ] where...
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Please draw the current wave form
). Consider the series circuit comprising of the diode and a resistor
whose value is shown on the right. The supply voltage, Vs varies with time
as shown in Fig (a) on page 2.
Draw the current waveform in the space given in Fig (b).
Note: You must use the load line technique for this part. Do not use the
mathematical equations to find currents. You must draw the necessary
load lines on Graph 1 [Show load lines and mark corresponding operating
points. Find the currents from the graph].
(a)
Vs (Volts)
(b)
ID (mA)
1.0
0.8
0.0
-0.5
43214
0
-1
-2
-3
-4
Vs
(n
VD
*
20 Ω
VR
Transcribed Image Text:). Consider the series circuit comprising of the diode and a resistor whose value is shown on the right. The supply voltage, Vs varies with time as shown in Fig (a) on page 2. Draw the current waveform in the space given in Fig (b). Note: You must use the load line technique for this part. Do not use the mathematical equations to find currents. You must draw the necessary load lines on Graph 1 [Show load lines and mark corresponding operating points. Find the currents from the graph]. (a) Vs (Volts) (b) ID (mA) 1.0 0.8 0.0 -0.5 43214 0 -1 -2 -3 -4 Vs (n VD * 20 Ω VR
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