The single phase half-wave uncontrolled rectifier has a freewheeling diode and a ripple free average load current of 20A (high inductance). The source is 220V 50HZ. Determine the input PF and HF (THD) of the source current at the rectifier input
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- What is the difference between a diode and rectifier?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 =20VDetermine the ripple factor for the filtered rectifier circuit below when RL= 4KN. Then explain briefly the effect of changing in the RL value on the output waveform. for all diodes Vina "100 V 1- 60Hz
- Determine the value of RL that will establish maximum power conditions for the Zener diode.H.W4 The diode in the single-phase half wave rectifier has a reverse recovery time of t 150μsec and the source voltage V₁ 200V at frequency = 5 kHz. Calculate the average output voltage. = =Select any diode from LTSpice Library. (The type of diode should either be RECTIFIER or SILICON) Create a Half-Wave Rectifier circuit. Use a resistor of 1000 Ohms. Input Voltage should be 95VAC - 65Hz Plot both the Input voltage and output voltage. Determine the Voltage drop across the diode by subtracting the output voltage to the input voltage peaks. Create a Bridge-Type Full Wave Rectifier Circuit. Repeat the steps done on the Half-Wave Rectifier circuit.
- Create a Half-Wave Rectifier circuit. Use a resistor of 1000 Ohms. Input Voltage should be 95VAC - 65Hz Plot both the Input voltage and output voltage. Determine the Voltage drop across the diode by subtracting the output voltage to the input voltage peaks. Create a Bridge-Type Full Wave Rectifier Circuit. Repeat the steps done on the Half-Wave Rectifier circuit.In a single phase half wave controlled rectifier with inductive load without freewheeling diode, the output voltage is zero during the wt=t to 2rt. Select one: O True O FalseA full wave bridge rectifier is supplied from 230V, 50Hz and uses a transformer of turns ration 15:1. It uses load resistance of 50 ohms. Calculate load voltage and ripple voltage. Assume ideal diode and transformer. Assume ripple factor equals to 0.482. a.Load Voltage= 13.8 V; Ripple Voltage=6.652 V b.Load Voltage= 15.6 V; Ripple Voltage=7.611 V c.Load Voltage= 21.3 V; Ripple Voltage=8.410 V d.Load Voltage= 25.1 V; Ripple Voltage=10.442 V
- 5-For single phase half-wave controlled rectifier with a freewheeling diode connected across the inductive load, the supply voltage is 220V (RMS). The mean value of the output voltage for a=45 is: 100.7V 70.9V 84.5V 6-For fully controlled single phase bridge rectifier with inductive load (R=102, L=50mH), F=50HZ and a=45', the load current is: Continuous discontinuous verge continuous 7-Fully controlled three phase bridge rectifier circuit is supplied through delta-star transformer. For highly inductive load, the waveform of the line supply current (primary line current of the transformer) is: Square quasi-square six- stepIn a single phase half-wave controlled rectifier has 400 sinwt as the input voltage and R as the load.For the firing angle of 60 degrees for the SCR,the average output voltage is a. 300/pi b. 200/pi c. 240/pi d. 400/piIn the figure calculate the output dc level and the required PIV of each diode.