1. For the circuit shown to the right vin is a 100 volt peak amplitude sine wave and D1 is an ideal diode. Determine the average power and the apparent delivered by this source. Also determine the Power Factor of the source. Vin D1 Dideal RL 10
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- Consider the following circuit diagram. Using practical diode model solve the following items. i. What is the type of rectification in this circuit? ii. Calculate the total peak secondary voltage (Note that “RMS" value is given in the circuit) iii. Sketch the plot of time vs voltage over Load (RL) iv. Find the average voltage over Load. v. Find the maximum current passing over diodes. vi. Find the peak inverse voltage (PIV) over the diodes. vii. Find the minimum fuse current rating for the primary coil. 5:1 D DA 120 V rms D3 D2 RL=10kQ RL out ell lelllb. Calculate the following about the circuit in the figure (If silicon diodes are employed in the rectification);i. the peak value of the output voltage considering the drop across each diode, Vpk.ii. the average voltage, Vdc. iii. The current through the load resistor, IL.iv. The current diode, Id.v. The frequency of the output signal, Fout.vi. Calculate the efficiency of the full wave rectifier expressed in percentage. vii. Sketch a graph of the input and output voltage against time.Describe the relationship of RMS voltage to Peak voltage and the significance of knowing PIV of a diode.
- Negative Peak Clipper with bias circuit uses a germanium diode, with an input peak to peak voltage VPP=20 V and bias voltage VBias= 2.7 v. a) What is the function of the circuit? b) Draw the circuit diagram. c) Draw the input and output waveforms.Given the half-wave rectifier circuit shown 220V 60Hz 220V:Es Es D RL The load resistor is 2292 and it dissipates 2W. Determine: (a) Average value, RMS value, and frequency of load voltage VRL. (b) Average diode current and PIV of the diode.29. Does an increase in reverse bias for a Varactor diode cause an increase or decrease in capacitance? 30. If the load current through a SCR (Thyristor) reduces to almost zero, what will be the result?
- A R-load half-wave rectifier used sinusoidal voltage source with a peak value (35.353kV). The firing angle is (30). The total resistance is 50k2 and frequency is 50HZ. Calculate (in details): load direct voltage, maximum direct voltage, normalized voltage and effective voltage, power delivered to the load, power factor, form factor, ripple factor?Determine the value of RL that will establish maximum power conditions for the Zener diode.The diode from the following characteristic curve in Figure 1 was changed to zenerdiode. Determine: the function of zener diode in reverse biased. Briefly explain the differencebetween conventional diode and zener diode.
- Measuring a waveform from the top of a peak to the top of a valley gives accurate a.)effective value. b.)peak amplitude. c.)waveform frequency. d.) peak-to-peak amplitude. ideal diode a.)All of the above. b.)has infinite reverse resistance. c.)has no forward voltage drop. d.)does not waste any power.Design the power supply using diode components. This power supply sholud have 2 outputs. 12Vdc and 5Vdc. Input 240 Vac Supply i. Draw the circuit diagram ii. Bill of material/components that will be used iii. Teh output waveform for each stageDetermine the voltage across the diode, the output voltage, and the current in the resistor in the figure below. Plot these waveforms with proper ac cycle phase alignment. 1SR154-400 is a silicon rectifier 1 ampere diode. Indicate the peak values as per calculation.