0.17 0.18 0.19 0.2 Time (s) Ignore any diode losses and consider a load resistance of 120. Analyse the waveforms and specify / calculate, 11) the period (one cycle, 360°) of the supply; 12) the rectifier pulse number; 13) the rectifier average output voltage;
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- A single phase – half wave controlled rectifier with freewheeling diode is supplying a load consistingseries connected a resistor and an inductance from a 70.7V (RMS), 50Hz sinusoidal AC source.The firing delay of the thyristor is 90° and the load values are R=10Ω, L=0.1 H. Define the loadcurrent expression and draw the load current by calculating for first two periods. And calculate theaverage values of the load voltage and current.A single-phase half wave uncontrolled rectifier circuit is operating with a purely inductive load and a source voltage of 100 sin (277t) V. An ideal PMMC ammeter is connected in series with the inductive load reads 20 A. Calculate the distortion factor of the rectifier. Answer Choices: a. 0.866 b. 0.707 c. 0.577 d. 0.816Determine the peak to peak ripple voltage and the ripple factor for a bridge rectifire using capacitor input filter. The load resistance is 2 kn while the d.c voltage across the loadis 12 V. Assume supply frequency to be 50 Hz and ideal diodes. The capacitor of 100 µFis used in the filter circute.
- Be a single-phase half-wave rectifier with an RL load. The sinusoidal input voltage has a frequency of 60 Hz and the value of R = 10 ohms. What is the value of L for the current extinction angle to be 270°. Tip: use Puschlowski's abacus.For the circuit shown in Figure 2, sketch the output voltage (across the load 2.2 KN resistor) and the load current (through the load 2.2 Kn resistor). Sketch the diode voltage (across the diode D1) and the diode current (through the diode DI). The input V. is sinusoidal with maximum amplitude (peak) of 100 V and frequency of 700 Hz. The diode DI is a Silicon diode. The sketches have to be at least for two cycles of the input. D1 2.2 K2 ViH.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
- Power supply circuit is delivering 0.5 A and an average voltage 20 V to the load as shown in the circuit below. The ripple voltage of the half wave rectifier is 0.5 V and the diode is represented using constant voltage model. The smoothing capacitor value is equal to 220V ams 5OHZ İL-DC =05A RL VL-DC =20VA 20-V-rms 60-Hz ac source is in series with an ideal diode and a 100-Ω resistance. Determine the peak current and PIV for the diode.Aasty VIJlc gn, ödljö A dziall jajc D Q4. For the following bridge rectifier circuit, draw the output voltage waveform across the load (RL) showing the maximum value. Calculate the following: The average value of the output voltage across the load (RL). a. b. The rms value of the output voltage across the load (RL). c. The average load current. d. The rms value of the load current. (Use constant voltage drop model for the Silicon diode) 5:1 110 Vrms Assignment1- (ENEL2104) Page 2
- For the circuit shown in the figure below, consider the diode as an ideal diode & R.M.S value of source voltage as Vs. The output voltage waveform at R is most likely to have zero value in the positive half cycle and a peak value of 1.414Vs in the negative half суcle sine-wave nature with a peak value 1.414VS zero value in the negative half cycle and a O peak value of 1.414Vs in the positive half сycle O sine-wave nature with a peak value VsQuestion 3 Consider the following cirucit: in + V1 R1 5 PULSE (0 2 1 1 1 1) (Note again the unrealistic diode characteristics.) The input is a ramp: 2.0V- 1.6V- 1.2V- 0.8V- 0.4V- 0.0V- 0.0s 0.2s 0.4s 0.6s 0.8s out .tran 2 .model diode D(Ron=5 Vfwd=1 Roff=1G) V(in) D1 diode 1.0s 1.2s 1.4s 1.6s 1.8s 2.0s The output voltage is similar to the input voltage, except that it breaks at a certain voltage and reaches a different final value. Find the break voltage and the final value of the output.Q2) For the circuit shown in Figure 2, sketch the output voltage (across the load 2.2 KO resistor) and the load current (through the load 2.2 KN resistor). Sketch the diode voltage (across the diode D1) and the diode current (through the diode D1). The input Vi is sinusoidal with maximum amplitude (peak) of 14.1422 V and frequency of 60 Hz. The diode D1 is a Silicon diode. The sketches have to be at least for two cycles of the input. D1 2.2 K2 Vi