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- For the circuit shown below, compute the maximum current through each resistor when terminal A is a) positive and, b) negative. Assume the diodes are ideal.For the circuit shown below, compute the maximum current through each resistor when terminal A is a) positive and, b) negative. Assume the diodes are ideal. (Will we convert to the RMS value to it's actual value?)Determine the current I in the circuit (i). Assume the diodes to be of silicon and forward resistance of diodes to be zero.
- Calculate the current flowing through the given circuit and the voltage value at the V0 ends. (Threshold voltage = 0.3V for Germanium diodes, Threshold voltage for silicon diodes = 0.6V)In a full wave rectifier circuit involving double diodes, a sinusoidal input signal of the following nature is applied e=10 sin(500*pi*t) V. What will be value of the dc voltage obtained at the output of the rectifier.Q1 Figure Q1(a) is a full wave bridge circuit with a capacitor filter and the output waveform produced by the circuit is shown in Figure Q1(b). Assume all the diodes in the circuit have a forward voltage of 0.7 V. (a) Sketch the waveform in A, B, C and D as shown in Figure Q1(a).
- Q1 A. Design a clamper to perform Silicon diodes 10 V 2.7 V the function indicated in Figure shown below. Design B. Clip the output waveform to -10 V -17.3 V (+0.7 V and -0.7 V).For each circuit shown below, the input v, is a 60HZ, 12 volt peak sine wave. Sketch the waveform resulting at vo. Assume ideal diodes. What are its positive and negative peak values?Q1 Figure Q1(a) is a full wave bridge circuit with a capacitor filter and the output waveform produced by the circuit is shown in Figure Q1(b). Assume all the diodes in the circuit have a forward voltage of 0.7 V. (a) (b) Sketch the waveform in A, B, C and D as shown in Figure Q1(a). Design the circuit by finding the value for the capacitor, C and the line voltage Vpri(rms) to the circuit to produce the output as shown in Figure Q1(b).
- Draw the input waveform and output waveform for the circuit given below with proper values marked in the figure. Assume D1 as germanium and D2 as silicon diodes. Input Vpp%3D20V, V1=3 V and V2=10 V. R D2 D1 Vin Vout V1 V2 Maximum voltage of output waveform Minimum voltage of output waveform PsB. Draw the circuit diagram of a clipper that will produce an output waveform below. From the outp waveform Voltage A is 8.7 and Voltage B is -9.7.Input peak-to-peak voltage is given as 20 volts. Assi Silicon diodes are used. 7 B 1. For the positive half cycle, the needed battery voltage is 2. For the negative half cycle, the needed battery voltage isConsider the circuit shown in Figure 2. The cut-in voltage of each diode is . Let and assume both diodes are conducting. Determine if this is a valid assumption and explain your answer. And calculate the values of IR, ID, Ip2, and V.. Rj =1.7 kQ ww VB =1 V D1 Dz R2D 4 kQ Figure 2