3. In the network of Figure (2), use nodal analysis to determine : (a) The voltage at nodes B and C; (b) The current IR3; (c) The magnitude of the active power dissipated in the 820 22 resistance. 3V Vs R₁ ΙΚΏ IR R₂ B I, R, IR₂ |2.2ΚΏ D 1.5KN Figure (2) 4V R₂ IR R₂ 3.3ΚΏ E VS₂ 82002 D
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- 3 A peak rectifier (peak tollower) Cir cuit is gian below. Vs is a GOH3 Sinuscidal Vollge with peak value Upz50V. 50V. The load resistance R= Sk . Find the Vallke of the capacitance C Such that the peak- to-peak ripple 2 volts. (idenl diede) Voltage Vr VsDesign 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 stageFor the circuit in the figure, let V input = 8V, Ri = 12ohms, RL = 10ohms, and VZ = 3.3V. Determine the voltages and currents of the resistors and the current of the zener diode.
- A 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).3C) Calculate the values of the second harmonic (HD2) and third (HD3) as well as AUpzfor each of the circuits in the figure below. 3 Nout Nin 3In 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.
- For the block diagram shown in figure Q3.Consider diodes with Vy-0.7V. Consider the Vin=240 Vrms with a frequency of 50 Hz, Vomin-12V, Vode-13.5V., answer the followings: i. Construct the required FWR and RC circuits for the shown block diagram ii. Calculate the transformer turn ratio n1:n2. iii. Calculate the filter capacitor C if R = 1 km. vi. Calculate the ripple factor r.f. of the rectifier. v. Draw the Vo waveform showing all details. Vin Bridge FWR RC Filter VoConsider 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.In the circuit shown below. Determine the following a. Vs (at the secondary) b. Vout (across RL) c. Vrip (ripple votage) d. VDC e. PIV (Peak Inverse Voltage) 10:1 Output 115 V mis 60 Hz RL 2.2 k) D, 50μF- All diodes are IN4001. Tund AlMannai EENG261 Page 5/11
- G2/.Design Circint as the following peseripton: A- the positive Cycle of the vout signal is 3.2 and Negative cycle is 4-33 (Note: we must used preetical Diodes and vin is lov) 13- the positive cyclep of vout is s.3 ond Negative cycle is (5.4) [Note:consider vin = tovavd we must used Capaetor with praeticul Didde)Date 03175996 28) A battery of emif 4V and grternal. xesistance 2n s joined to a desistor of 8 2 calculate the terminal potential difference. What additional xesistance in sedies with 8-2 sesistor Would produce a texminal pd of 3.6V? Taacher's SignalureUsing the Mathematical and Graphical Method, Determine the Qpoint and terminal voltages for the given circuit below. Compare the values from the two different approaches. Determine the terminal voltages and currents and the inter-electrode voltages.