A 60 Hz sinusoidal voltage is applied to a single-phase half-wave rectifier. The output of the rectifier would have a frequency of:
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A 60 Hz sinusoidal voltage is applied to a single-phase half-wave rectifier. The output of the rectifier would have a frequency of:
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- 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. 0.816A 60 Hz sinusoidal voltage with an RMS value of 120 V is applied to a single-phase half-wave SCR rectifier. The firing of SCR is delayed by 60 degrees. The DC output voltage of the rectifier would be: O A. 60 V O B. 90 O C. 81 V O D. 40 V O E. None of the other choices are correctFull Wave Rectifier Numerical Question: A full wave rectifier circuit is constructed using a bridge rectifier configuration consisting of four diodes and connected to an AC voltage source. The AC voltage source has a peak voltage of 120 V and operates at a frequency of 60 Hz. The load resistor connected to the output terminals of the rectifier has a resistance of 1 k. Each diode in the bridge has a forward voltage drop of 0.6 V. Calculate: 1. The peak voltage of the rectified output. 2. The average output voltage. 3. The peak inverse voltage (PIV) of the diodes. 4. The ripple voltage (peak-to-peak) of the output.
- A three phase full wave rectifier is shown below along with peak phase voltage Vm-169.7V. The load is purely resistive. The rectifier delivers Ipc = 100 A and the source frequency is 60 Hz. The DC output voltage is %3D VDc=280.7V and the output RMS voltage is equal to VRMS=280.93V. The efficiency, FF and RF are respectively equal to: Secondary D D D, R AD. Z D. D, Select one: O a. 99.83%, 100.08%, 4% O b. 99.83%, 55.08%, 4% O C. 99.83%, 100.08%, 16% O d. 87.83%, 100.08%, 4%Full wave rectifier normally produces A.unpredicted waveforms B.both polarities of input waveform to DC voltage C.positive phases of sinusoidal waveform D.pure sinusoidal waveformA 60 Hz sinusoidal voltage with an RMS value of 120 V is applied to a single-phase full-wave SCR rectifier. The DC output voltage of the rectifier is 101 V, the firing angle (in degrees) of SCR is would be: O A. 36 O B. 45 O C. None of the other choices are correct O D. 30 O E. 60
- The input to a full-wave rectifier is 10 V AC (RMS). The load resistor is 10 ohms. The DC voltage at the output is:Determine the output voltage of a Half-wave rectifier with an input peak-to-peak sinusoidal voltage of Vm.Zener Diode conducts current in a. reverse direction O b. both reverse and forward O c forward direction Od. Depend of the voltage
- C4 R1 Vout For the precision rectifier circuit shown in Figure C4 what is the correct operation for the circuit if a Sine wave is 10k D1 R2 LM324 VEE applied to the input signal VIN? Vin D2 10k OUT V3 U1A Figure C4 A. When VIn is negative the circuit operates as unity voltage follower providing an in phase sine wave at VouT. When VIN is positive the circuit conducts but only to one diode drop, B. When VIn is negative the circuit operates as an inverting amplifier providing an inverted sine wave at VouT. When VIN is positive the circuit is driven to very close to zero due to amplifier gain reducing the diode drop voltage, c. When VIn is negative the circuit operates as an inverting amplifier providing an in-phase sine wave at VOUT. When VIn is positive the circuit is driven to very close to zero due to amplifier gain reducing the diode drop voltage, D. When VIn is negative the circuit operates as unity voltage follower providing an inverted sine wave at Vour. When VIn is positive the…A sine voltage trace displayed on a screen is shown in figure. The x axis is 1unit=40 ms and y axis is 1 unit=4 v; determine the frequency of the sine wave and plot the waveform if the same is applied to input of a full wave rectifier.What is the output frequency when a 60 Hz sinusoidal voltage is applied to the input of the following a. Half-wave rectifier b. Full-wave rectifier