A single-phase bridge reetifier has a load of 10 Ohm and Zmll. The input AC of 220V (rms) @ 100Hz (sine wave) is applied. (a) Determine the RMS of the output voltage. (b) Determine the efficiency of the rectifier. (c) The Form Factor (FF) of the output voltage. (d) Determine the Ripple Factor (RF) of the output (e) Determine the Transformer Utilization Factor (TUF) of the circuit
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- What is CEMF?Consider the full-wave rectifier circuit shown below, where• vS(t) is a sinusoidal signal with a peak value (Vs = 5 V).• Diodes are modelled using constant voltage model with VDO = 0.7 V• The ac line voltage has an rms value of 120 V and a frequency (f) = 60 Hza) Calculate the transformer turns ratio. b) Plot in the same graph signal vS(t) and the output signal vO(t) versus time (t) (show all details including amplitudes, time instances, etc.) c) Calculate the rms value of the output signal vO(t). (hint: sin2(x) = 0.5(1- cos(2x))) d) If a capacitor C=3.58 F is connected across R = 10 k, repeat (b) in a new graphDesign a center-tapped full-wave Rectifier Circuit to provide an output of 100 VDC. Then calculate its transformer peak voltage rating, the diode PIV rating, and the transformer turns ratio, if the power is taken from the 220V line AC supply
- The secondary input voltage to a single phase diode bridge rectifier is 50V, 50Hz, and the load can be replaced by a resistance of value 20ohms (a) Sketch a well labelled circuit of the converter described above. (b) Sketch the waveforms for the input voltage, output voltage, output current, and output current (c) Derive an equation for average output voltage and calculate for output dc voltage (d) Calculate the ripple factor of the output voltage (e) Transformer utilization factor (h) How can the ripple be improvedDesign Half-wave Rectifier Circuit to provide an output of 100 VDC. Then calculate its transformer peak voltage rating, the diode PIV rating, and the transformer turns ratio, if the power is taken from the 220V line AC supplyQ.1 A single-phase diode bridge rectifier is connected to a grid with rms voltage V, 230V at 50 Hz. Assume that the load is highly inductive, so it could be represented by a constant dc current, Id = 10A. a) Sketch the load voltage and find the average voltage of the load? b) Sketch the source current (grid. AC side) and find the rms value of the source current? c) Determine the fundamental source current and the first three harmonics? Assume Ish_rms ³ 0.91a/h for odd hand 0 otherwise?
- A single-phase fully controlled, full-wave, bridge rectifier has a source of 220 V rms at 50 Hz, and is feeding a load 15 Ω and 10 mH. The firing angle α = 60˚ and the current extinction angle β =250˚; Determine (a) Average load voltage and current (b) RMS load voltage and current (c) AC and DC powers absorbed by the load (d) Determine the efficiency of the converter (e) Sketch the appropriate load voltage and load current waveforms (f) Determine whether the current is continuous or discontinuous27. For the given Full-Wave Bridge Rectifier circuit below with capacitor filter, it produces a ripple voltage waveform shown. If V2 is given as 14 volts and V1 is given as 8 volts, compute for the ripple peak-to-peak voltage, dc voltage and ripple factor. If the load resistance has a value of 9 kiloohms, how much should be the dc current?. compute for the peak output voltage at the output of the rectifier. If silicon diodes are used, what is the value of the secondary peak voltage?. If N1 is given as 1300 and N2 is given as 600, compute for the primary peak voltage. 4. The value of dc current (Idc) in amperes is ? 5. The value of the output peak voltage (Vpout) in volts is ? 6. The value of peak secondary voltage (Vpsec) in volts is ? 7. The value of primary peak voltage is (Vppri) in volts is ?27. For the given Full-Wave Bridge Rectifier circuit below with capacitor filter, it produces a ripple voltage waveform shown. If V2 is given as 14 volts and V1 is given as 8 volts, compute for the ripple peak-to-peak voltage, dc voltage and ripple factor. If the load resistance has a value of 9 kiloohms, how much should be the dc current?. compute for the peak output voltage at the output of the rectifier. If silicon diodes are used, what is the value of the secondary peak voltage?. If N1 is given as 1300 and N2 is given as 600, compute for the primary peak voltage. 1. The value of the ripple peak-to-peak voltage (Vrpp) in volts is ? 2. The value of the dc voltage (Vdc) in volts is ? 3. The value of the ripple factor is ?
- Which of the following statements about bridge tip rectifiers is false? A) If the 1-phase type has source inductance, the average value of the output voltage is lower than in the absence of the inductance. B) The average output voltage value of the 1-phase type is 0.9 times the peak voltage of the network. C) none D) There are only odd harmonics in the current drawn by the 1-phase type from the mains. E) The average value of the output voltage of the 3-phase type is larger as the 3-phase and 1-phase types are comparedA step-down transformer supplies 25Vrms to a simple half wave rectifier power supply which is connected to a load resistance of 912ohm. The diode breakdown voltage, Vf is 0.7 V. Calculate the amplitude of the peak output voltage, Vpo appearing across the load., calculate the average DC voltage appearing across the load, calculate the DC current in mA drawn by the load.Elaborate the working of half wave rectifier with neat diagram and waveforms. Determine the peak output voltage and current in the 4 kW load resistor connected to the output terminals of full wave bridge rectifier, if the transformer secondary voltage is 28 Vrms. Use the practical silicon diode model.