Given the following ideal zener diode circuit with breakdown voltage 5.1 V, sketch the output voltage on a set of axes if V = 1.0 sin(2mt) b. V - 10.0+ sin(2mt) B 1 k02 www Z Q+ 10 Vout
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- Consider a junction diode has dc biased current at operating point ID=0.8 mA. A sinusoidal voltage is superimposed on the VD such that the peak-to-peak sinusoidal current id(t) = 0.05ID. Find the value of the applied peak-to-peak sinusoidal voltage vd(t).u= 6sinot V. V. For the circuit of Figure, we have known E=3V, Use the ideal diode model to analyze the circuit and draw the waveform of the output voltage. 6V cot Uj EDesign a clipping circuit that will limit the output voltage to 5V when applying an input sinusoidal waveform with a peak value of 10V. Assume available diodes with voltage drop of 0.5V. Sketch the output waveform of the circuit.
- For the circuit shown in the figure below, consider the diode as an ideal diode & R.M.S value of source voltage as Vs. The output voltage waveform at R is most likely to have zero value in the positive half cycle and a peak value of 1.414Vs in the negative half суcle sine-wave nature with a peak value 1.414VS zero value in the negative half cycle and a O peak value of 1.414Vs in the positive half сycle O sine-wave nature with a peak value Vspoints) For the circuit shown below, sketch to scale the output V, waveform and draw the transfer characteristic (V. versus Vi), Assume the diodes are ideal. V₁ =15-sin wt Zloks www loks # HIF 4V + VoConsider the circuit in the figure below 4:1 120 V rms ooooo gll reelee D₁ L a. What type of circuit is this? b. What is the total peak secondary voltage? D₂ c. Find the peak voltage across each half of the secondary. d. Sketch the voltage waveform across RL. e. What is the peak current through each diode? f. What is the PIV for each diode? RL 1.0 ΚΩ
- 4. Assume the Blue LED has a forward turn on voltage of 4 V and exhibits ideal diode behavior. For the circuit below, sketch the voltage across the diode and the voltage across the resistor (versus time) for the following Vin values. On your waveforms, indicate the time periods when the LED is on. a. Vin= 3 sin(2π *60t) V b. Vin = 5 sin(2π *60t) V Blue LED # Vin 1k R2Consider a silicon pn junction diode at T 300K. The reverse saturation current is Is = 10-14 A and the ideality factor n = 1. Determine the diode current for a diode voltage of VD = 0.573 V and use that to determine the DC and AC resistance of the diode. RDC = 14.13 k rac = 639 Q RDC = 234 Q2 = rac=8Q RDC = 7.00 KQ rac = 307 Q RDC = 1.43 kQ rac = 58 QIn the circuit given in the figure, find the current passing through the diode in mA since R1 = 4.95Kohm, R2 = 2.50Kohm, R3 = 1.69Kohm, R4 = 5.44Kohm, VCC = 13.00V and the diode is silicon?
- A germanium diode has a current reaches 80% ofits saturation point at 115°C. Calculate the voltage and the ratio of the current for a forward bias of 0.8V to the current for the same magnitude in reverse bias when the temperature rises to 165°C.What will be the value of the reverse saturation current for a Si diode operating in forward bias mode. The following information is given: Diode current 3 A Voltage across diode 0.25 V. Temperature is 300 K.0:- Consider the circuit in Figure a) What type of circuit is this? b) Find and Sketch the voltage waveform across RL, assume the diodes are practical. c) If 100uf capacitor parallel with the resistor, calculate the ripple is connected factor I O o D