Explain briefly about the summing amplifier with an explanation of the analysis of equations.
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- What is the difference between a diode and rectifier?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…Design a rectifier fed from 220-V line through a step-down transformer. The load requires an average voltage of 9 V and average power of 2.5 W. Use each of the three circuits: half-wave, center-tapped full-wave and bridge type full-wave. pls write legibly and show complete process of solution
- Draw circuit diagram of a full-wave controlled rectifier and draw the wave shapes of output voltage and current for R-L load with sinusoidal input. You have to design a full-wave AC to DC converter circuit to have output average voltage of 40 and 50 W power to a 100 Ω resistive load from a source of 60 V. Is the design feasible? Why?Time constant of a bridge rectifier. a. RL b. RC c. 1/RL d. 1/RCA full-wave rectifier is connected to a single-phase source and supplying an inductive load. For the sake of simplicity, you can assume that the ripple at the output current is negligible. Input specifications: The source is single-phase utility grid at 220 V and 50 Hz. Output specifications: The load resistance is 10 Ohm. Sketch the schematic of the system. Sketch the waveforms of the output voltage and current and the source voltage and current. Determine all the performance parameters.
- By looking at the o/p & i/p waveforms in Figure below can you tell which kind of rectifier is it? Draw the rectifier circuit. Is it an example of clipper/clamper circuit? VrEAK Time (t) ZERO -VrEAK Output Voltage VrEAK ZERO Time (t)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%Design a rectifier fed from 220-V line through a step-down transformer. The load requires an average voltage of 9 V and average power of 2.5 W. Use each of the three circuits: half-wave, center- tapped full-wave and bridge type full- wave.
- Design a rectifier fed from 220-V line through a step-down transformer. The load requires an average voltage of 9 V and average power of 2.5 W. Use each of the three circuits: half-wave, center-tapped full-wave and bridge type full-wave.2. A simple half wave rectifier consists of a diode and load. If the internal resistance of the diode is 1 ohm and the load resistance is 5 ohms. What will be the DC load current if the supply voltage is 12 Volts, draw the schematic diagram and also draw the waveform of the rectifier. 3. Determine the output voltage in the figure below Si Ge Vo R₁ 2kQ 20V R2 2kQIn terms of polarity, the output of a full-wave rectifier has both alternations of the sine wave input voltage going in the direction. What is the main advantage of full-wave rectifier over the half-wave rectifier? The main advantage of the bridge rectifier over the standard full-wave rectifier is that it does not require a transformer. When one of the diodes in the bridge circuit opens, one of the will be missing at the output. From the data, what conclusion can you draw about the relationship between the dc voltage across R. and peak voltage in a full-wave rectifier?