Sketch the output waveform of the given circuit, assuming that the voltage of the battery is 1V and the input. voltage is 10V peak to peak. Label the waveform completely. Show complete analysis as much as possible. Place answer in this form as: show attached solution. * 20 V Vi R 10V + -20 V CamScanner
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- 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 stageDesign the power supply using diode components. This power supply should have 2 outputs. 12 Vdc and 5Vdc. input 240 Vac supply i. Draw the circuit diagram ii. Bill of material/components that will be used ii. The output waveform for each stageIn the circuit of the following figure, the input voltage Vs is 15 volts rms with a frequency of 60 Hz, R equals 150 Ohms and C equals 100,000 Pico Farads. The diodes are Germanium (Vd = 0.2 volts) and the Zener diode is 12 volts. a) The magnitude of the ripple voltage at Cb) The Magnitude of the Peak Inverse Voltage (PIV) for D1 and D2.
- refer to the circuit below, what is the secondary rms voltage, filtered dc voltage, maximum voltage at the output, pk to pk ripple voltage, and pulsating DC voltage of the circuit?Consider the circuit shown below. The reverse saturation current is 1x10-¹6A and R₁=3kQ2. Vin 5V. D₁-D4 are the same. Vin P₁ # Ri M P₂ D3 Dy + Vout (a) What should be the current flow through the diodes? Use the full exponential model to analyze this. (b) What is Vout? Use the full exponential model to analyze this. (c) Suppose, Vin is increased by 0.1V. What will be the increase of Vout? Use the full exponential model to analyze this.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=20V, V1=5 v and V2=8 V. R DZ D1 Vin Vout V2 Maximum voltage of output waveform Minimum voltage of output waveform Windows hui
- 1. Half-wave battery charger. Consider the battery charging circuit in Figure. with Vm= 20V, R= 102and VB= 14V. Find the peak current assuming an ideal diode. Current limiting resistor R „sin(x) i(f) V3Draw 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 Psa) For the diode circuit shown in the figure below, assume the model is practical fo the diode. Answer the followings: (i) Determine the DC level of the output voltage. (ii) What is the amplitude range for the output voltatge waveform? (iii How you can modify the circuit to produce twice the frequency of the current output voltage? Vi + 15 V Vi R 2 k2 Vo /2
- 6. A full-wave rectified voltage waveform with peak value of 50 V is imposed on a 10 A dc constant current load. What is the average power in the source? Draw the circuit and output waveforms.CIRCUIT DIAGRAM : D1 IÑ4001 AC Source RL 1K Q VOUT PROCEDURES : 1. Construct the half-wave rectifier circuit as shown. 2. Monitor the input voltage using the oscilloscope. Adjust the oscilloscope to show at least two complete cycles of the input signal. Draw the input waveform in Graph 1 and measure the peak-to-peak value. Record this in Table 1. Convert this value into RMS value using the formula: 3. 4. Vp-p Vp-p P-P VRMS 2.828A resistor Ra is in series with a voltage source Va. Draw the circuit. Label the voltage across the combination as v and the current as i. Draw and label the volt–ampere characteristic (i versus v).