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1. For the circuit as shown, plot the i-v characteristics, i.e. I as a function of...
1. For the circuit as shown, plot the i-v characteristics assuming both diodes are ideal, i.e. ix as a function of vx, for the following two cases: V3 = -1V and V8 = +1V. (20/100) I. R. Di Ideal 02 R2
IIW#2 Due 10/8/2019 noon 1. For the circuit as shown, plot ther-v characteristics assuming both diodes are ideal, i.e. is as a function of v. for the following two cases - IV and Ix - +1V. (20/100) 1. R, w DI DA VXO Ideal D2 LKW
ONLY NEED HELP WITH C AND D PLEASE!
The differentiator circuit shown in Figure 1 uses an op-amp with ideal characteristics C1 Figure 1 (a) Prove that the gain of the circuit is given by the following expression using first principles for an ideal op-amp (2 marks) Gain = - (1 + juli R 1) (b) If the differentiator frequency (at unity gain) is 100Hz and the high frequency gain is 40dB and R2 is 220kQ, design the rest of...
For the 4 circuits below, plot the V vs V, relationships (as demonstrated in Chapter 3) first without using EveryCircuit (EC) app Then build the circuits in EC, vary V, measure V, and plot V vs V. again based on the results obtained from EC app Assume V.-IV, R.-R. = 1kw and the diodes are ideal with Turn ON voltage of 0.7V (or OV meaning the diode is forward-biased and Di R and cathode terminal Circuit (a) ircuit (b) ircuit...
Kit Seven: a) For the circuit shown below, find the following: a. Describe the function of the circuit b. Evaluate the output voltage Yo, assuming vs is 10 Sine (200t) mV, Rai =100 2, and Re2 =900 22. The bypass capacitor (CE) is in parallel with RE2. c. Simulate the circuit and verify your answers; you should show the input voltage and output voltage on the same graph d. Suggest an application for this circuit. e. Explain amplifier characteristics. >...
i)draw the transafer
charcheristics for this circuit?
ii)Derive expressions for VTH and VTL?
iii)Let L+ = - L- = 10 V, and R1=1 k Ω , choose R2 in order to
get a hysteresis of
100mV width?
iv).An engineer decided to modify the given circuit by
disconnecting the inverting
input of the op-amp from the ground and connecting it to a constant
voltage
source Vx. Derive expressions for VTH and VTL and Draw the transfer
characteristics in this case.?
Question...
Q.1. (a) For the following clipper circuit, plot the output versus time. The diode in the circuit has piecewise linear parameters Vs = 0.7 V and 1= 10 (10) R=1002 w DI VO 30 V + 10 V -30 vf (b) Sketch the output voltage V, versus time for the following circuit with the input voltage shown. Assume V = 0 and assume the RC time constant is large. (15) VA -H VO 20 V с Vg=5V = -20 V
please solve the following (simple steps):
Q1)
i
ii
iii
and
Q2)
i
ii
For the circuit shown: XSC1 XFG1 P 1 2 3 4 2 100mH 20% 10k Key A 100nF 0 1) Find equations (step response) for both vc and i for the following cases: i. ii, iii. R= 12%, R 20%, and R:-29%. 2) Using a square wave with a frequency of 200 Hz and 2-Vpp, simulate the relationship betwee the input, vi, and the output, v3,...
(6) For the circuit below, plot: (a) the transfer characteristics (b) the output, o voltage with 5V peak amplitude. Label the plots clearly 3 V I O (iv) Vi 8V sin( 200πt) 2ΚΩ 2ΚΩ Vi- 9V sin(200nt) -4 V -5 V (4) For each of the clipper circuits below, plot: (a) the transfer characteristics the output. 6i) 3 V 2ΚΩ 2 KS2 VQ Vi- 5V sin(200nt) DI Vi 6V sin( 200πt)
need help with C and D please
The differentiator circuit shown in Figure 1 uses an op-amp with ideal characteristics. R2 R1 C1 Vi O Figure 1 (c) Sketch the Bode magnitude response for this circuit for the frequency range of 10° to 108 Hz. (7 marks) (d) Sketch the output waveform of the differentiator and justify your answer, if v is as shown in Figure 2 with a period of: () 100 ms (ii) 10 us (6 marks) 0.11...