i) Draw the circuit diagram of single phase fully controlled bridge rectifier with RL load and write the current path for positive half cycle operation. (ii) Plot the output voltage and current waveforms for firing pulse is 30
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i) Draw the circuit diagram of single phase fully controlled bridge rectifier with RL load and write the current path for positive half cycle operation.
(ii) Plot the output voltage and current waveforms for firing pulse is 30
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- (i) Draw the circuit diagram of single phase fully controlled bridge rectifier with RL load and write the current path for negative half cycle operation. (ii) Plot the output voltage and current waveforms for firing pulse is 60° .draw the circuit of a voltage supply comprised of full wave bridge rectifier, capacitor and IC regulator to provide an output of -12V and explain the function of each part.H.W:- For a single phase half wave uncontrolled rectifier if the input supply voltage is (v= 310 sin314t), at frequency (f= 50 Hz). Then determine the followings:- Vm. Vmean- i. Draw the rectifier circuit. un %3D ii. Draw the input and the output voltages waveforms. iii. Determine the mean and rms values of the output voltage. s Ec iv. If the load is (R=10 S), then determine the mean and rms values of the current. 2019
- A certain unfiltered center-tapped full wave rectifier is powered by a 120 Vrms, 60 Hz power system. The peak value of the output voltage under loaded conditions is 30 V. The capacitance value is 2000 uF, load current of 2A, determine the following: 4. DC load voltage Ripple factor C.Derive the average and RMS output voltage for three phase half controlled rectifier with RLE Load or three phase semi converters.A single-phase center-tapped rectifier has an R-L of R= 20 0, L = 50mH, and a 240 V ac 50 Hz source voltage. Determine: i. The average and rms currents of the diodes and the load. ii. The rms and average 50 Hz source currents. iii. The power absorbed by the load. iv. The supply power factor.
- Draw circuit diagram of a half /full-wave single- / three-phase controlled rectifier and draw the wave shapes of output voltage and current for R / R-L load with sinusoidal input.A load is connected in the Full Bridge rectifier circuit (Four Diodes). Usedtransformer primary voltage value is 220 V (rms). The transformer winding ratio is 1:10.Using the 0.7 V model of the diode,Load Rating: 7 K Ohmsa) How many % of conduction does each diode branch stay on?b) Find the average values of the load voltage.c) Find the average values of the load current.d) Find the effective value of the load voltage.e) Find the effective value of the load current.A fully controlled, single-phase bridge rectifier is powered from an ideal 220V, 50Hz source. The rectifier is triggered with a trigger angle of 60 degrees and provides a smooth current of 50A to the load at the output. According to this: a) Draw the waveform of the output voltage in scale and calculate the average value of the output voltage. Combine the average voltage signal with the output voltage wave signal. Show on the same figure. b) Draw the waveforms of the thyristor currents, the gap diode current and the current drawn from the source in scale. c) Calculate the value of the filter inductance used at the output when the ripple in the load current is 3A. (Do the operations by showing the output voltage shapes and areas on the figure. The answers should be in the system and order in the solved examples.)
- a) Draw the 3-phase half-wave uncontrolled rectifier circuit for resistive load.b) Briefly explain the purpose of use.c) Draw the sinusoidal input voltages and the output voltage on the load.Q2] Draw the circuit diagram of single phase full wave uncontrolled bridge rectifier and explain the operation. Sketch the waveforms of supply voltage, load voltage, load current and diodes voltages of rectifier.-,- three phase half wave controlled rectifier with resistive load (R=10 2) if the input supply voltage is (Vrms = 380 Volt and f= 50 Hz) and the trigger angle (a = 60°), then determine the followings:- a) Draw the rectifier circuit. b) Draw to scale the input voltage, the load voltage and the current waveforins. c) Calculate the average value of the output voltage.
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