

Problem #2: A clipper circuit based on diodes are simple way to modify waveform in mechatronics....
1. Use Eq. 1 to derive an expression for the expected output waveform from an ideal differentiator circuit having input waveform Vin=lsin[(21)1000t] V. Let RF1.5 k12 and C=10 nF. 2. Use Eq. 3 to find the peak-peak output amplitude of the ideal differentiator of question 1 for a 2 Vpp sine wave input at 1 kHz and 2 kHz. Put the results in the Calculated Output column of Table 1 in Appendix A. 3. Use the indefinite integral version of...
Consider the circuits below with ideal diodes, R = 2 ks, C = 1 uF, and Vbi = VB2 = 3 V. (a) Calculate the current through D, and the output voltage for vin1 = 5 V (i.e. constant). (b) Calculate the current through D, and the output voltage for Vin2 = 5 V (i.e. constant). (c) Find the maximum and minimum values of the output voltage vouti(t) when the input voltage Vini(t) is a 10-V peak-to-peak sinusoids with zero...
Please note that D4 is the one that was destroyed not D1.
Please I posted this but they answer it differently
QUESTION (2) Due to an abnormal operating condition, Diode D4 in this full-wave rectifier circuit was suddenly destroyed, and stopped Vconducting in both forward and reverse directions (i.e. open circuit) C- R Assume that all other diodes are ideal with zero forward voltage drop and that the time constant RC- 5 ms. stt) 10V For a 1 kHz triangular...
24) For the three circuits (a), (b) and (c) shown below, the waveform of input voltage vy is given as shown below. For each circuit, sketch the waveform of output voltage vo for the given input voltage . Label the most positive and most negative output levels. Assume all diodes are ideal (vp- 0) and CR>> T. (10 points) +10 V-- -10 V TI ms (3 points) (b) o- (3 points) 3V (4 points) DH
PROBLEM 4. Design a limiting circuit (clipper), to produce the output waveform indicated from the given input square waveform. 10 V - Time - 10 V 2.7 -- Time - 10 V -
Clipper Circuit Problems: For each problem, provide a labeled circuit fulfilling the design specifications and sketch in) and vo(t) for two periods of Vin(t). Assume the source voltage Vin(t) 200sin (120rt) 1 Design a circuit with an output vlt, so th at vVot)Vin(t) when -20 V< Vin(t)100 V Vo(t) = 100 V when Vin(t) > 100 V, and Vo(t)-20 V when Vin(t)<-20V Design a circuit with an output Vo(t) so that Vo(t) = 0.5 Vin(t) when-200 V < Vin(t) <...
Prob. 2. For the following circuit, i. Draw the transfer characteristic of the circuit (Sketch Vo(t) vs Vin(t)). ii. Sketch the output waveform, v.(t) for the input Vin(t) = 10 Sin(wt) V. Clearly indicate the status of each diode. Assume that both D, and D, are ideal diodes. Table: Possible Diode States # D1 D2 Result 1 Off Off 2 Off On 3 On Off | 4 On On + TOKS VD . >19
(a) Sketch the output waveform Vout(t) of the circuit shown in Figure P3.42(a) when Vin = 9sin1000t V. Show the maximum and minimum values on the sketch and the equation for the curves at different time intervals. Assume that the diodes are ideal. (b) Repeat part (a) for the circuit of Figure P3.42(b).
QUESTION (2) The diodes are ideal except with an on-voltage of 0.7V. The input voltage source vIN is a 100Hz, 50% duty cycle square-wave with voltage levels of OV and +10V. The load resistance, R = 1002 DL D a) If the ripple voltage, V 0.5V, sketch the output waveform for several input cycles. What is the average DC output voltage vo + D. C R (6 points) Vo VIN b) What would be the minimum value of C (in...
5- The input to the circuit of problem 1 is a 10 kHz square wave with a peak-to-peak amplitude of 2 V and rise and fall times of 1 µs. Sketch the output waveform if the op amp used is a µA741. 6. Repeat 5 if the op amp is an LM318.