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Problem
(a) Figure gives the basic circuit of the diode limiter. Assuming that the diodes are ideal sketch and annotate the waveforms of the input voltage vi(t) and the load voltage vo(t).
(b) Figure gives the basic circuit of the peak rectifier. Assuming that the diode is ideal sketch and annotate the waveforms of the input voltage vi(t), the load voltage vo(t) and the diode current iD(t).
(c) Determine the percentage ripple voltage on the output voltage of the rectifier circuit shown in Figure. The frequency of the input voltage is 1 kHz.
(d) Discuss how you would approach the problem of calculating the value of the peak diode current in the rectifier circuit given in Figure.
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Q. Determine v, i, and the power delivered to elements in the network given in Figure. Check whether conservation of power is satisfied by the circuit.
Machine Control Instructions Instructions used to control various machine operations are kept in this group.
2365 302 written exam
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Problem (a) Figure gives the basic circuit of the diode limiter. Assuming that the diodes are ideal sketch and annotate the waveforms of the input voltage vi(t) and the load
Q. Can you explain Noninverting Amplifier? It is called "noninverting" because there is no sign inversion. A typical circuit is shown in Figure. With a finite op-amp gain Ao,
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