Output Resistance with Feedback Voltage Amplifier Solution

STEP 0: Pre-Calculation Summary
Formula Used
Output Resistance of Voltage Amplifier = Output Resistance/(1+Loop Gain)
Rvof = Ro/(1+)
This formula uses 3 Variables
Variables Used
Output Resistance of Voltage Amplifier - (Measured in Ohm) - Output Resistance of Voltage Amplifier with feedback is the resistance across the output terminals of a current amplifier.
Output Resistance - (Measured in Ohm) - Output resistance is the value of resistance of the network.
Loop Gain - The loop gain is calculated by imagining the feedback loop is broken at some point and calculating the net gain if a signal is applied.
STEP 1: Convert Input(s) to Base Unit
Output Resistance: 2.33 Kilohm --> 2330 Ohm (Check conversion here)
Loop Gain: 2.6 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Rvof = Ro/(1+Aβ) --> 2330/(1+2.6)
Evaluating ... ...
Rvof = 647.222222222222
STEP 3: Convert Result to Output's Unit
647.222222222222 Ohm -->0.647222222222222 Kilohm (Check conversion here)
FINAL ANSWER
0.647222222222222 0.647222 Kilohm <-- Output Resistance of Voltage Amplifier
(Calculation completed in 00.004 seconds)

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Birsa Institute of Technology (BIT), Sindri
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5 Voltage Feedback Amplifiers Calculators

Output Current of Feedback Voltage Amplifier Given Loop Gain
Go Output Current = (1+Loop Gain)*Output Voltage/Output Resistance
Open Loop Gain of Feedback Voltage Amplifier
Go Open Loop Gain of an Operational Amplifier = Output Voltage/Input Voltage
Output Resistance with Feedback Voltage Amplifier
Go Output Resistance of Voltage Amplifier = Output Resistance/(1+Loop Gain)
Input Resistance with Feedback of Feedback Voltage Amplifier Given Loop Gain
Go Input Resistance with Feedback = Input Resistance*(1+Loop Gain)
Output Voltage of Feedback Voltage Amplifier
Go Output Voltage = (Input Voltage/Feedback Factor)

15 Negative Feedback Amplifiers Calculators

Feedback Signal
Go Feedback Signal = ((Open Loop Gain of an Operational Amplifier*Feedback Factor)/(1+(Open Loop Gain of an Operational Amplifier*Feedback Factor)))*Source Signal
Error Signal
Go Error Signal = Source Signal/(1+(Open Loop Gain of an Operational Amplifier*Feedback Factor))
Gain at Mid and High Frequencies
Go Gain Factor = Mid Band Gain/(1+(Complex Frequency Variable/Upper 3-dB Frequency))
Signal-to-Interference Ratio at Output
Go Signal to Interference Ratio = (Source Voltage/Voltage Interference)*Gain Factor
Lower 3-DB Frequency in Bandwidth Extension
Go Lower 3-dB Frequency = 3-dB Frequency/(1+(Mid Band Gain*Feedback Factor))
Upper 3-DB Frequency of Feedback Amplifier
Go Upper 3-dB Frequency = 3-dB Frequency*(1+Mid Band Gain*Feedback Factor)
Output Current of Feedback Voltage Amplifier Given Loop Gain
Go Output Current = (1+Loop Gain)*Output Voltage/Output Resistance
Gain with Feedback of Feedback Amplifier
Go Gain with Feedback = (Open Loop Gain of an Operational Amplifier)/Amount of Feedback
Output Signal in Feedback Amplifier
Go Signal Output = Open Loop Gain of an Operational Amplifier*Input Signal Feedback
Output Resistance with Feedback Current Amplifier
Go Output Resistance of Current Amplifier = Amount of Feedback*Output Resistance
Output Resistance with Feedback Voltage Amplifier
Go Output Resistance of Voltage Amplifier = Output Resistance/(1+Loop Gain)
Input Resistance with Feedback Current Amplifier
Go Input Resistance with Feedback = Input Resistance/(1+Loop Gain)
Closed-Loop Gain as Function of Ideal Value
Go Closed-Loop Gain = (1/Feedback Factor)*(1/(1+(1/Loop Gain)))
Feedback Factor of Feedback Amplifier
Go Feedback Factor = Input Signal Feedback/Signal Output
Amount of Feedback Given Loop Gain
Go Amount of Feedback = 1+Loop Gain

Output Resistance with Feedback Voltage Amplifier Formula

Output Resistance of Voltage Amplifier = Output Resistance/(1+Loop Gain)
Rvof = Ro/(1+)

How the negative feedback affects the input and output resistance?

In negative feedback, the feedback energy (voltage or current), is out of phase with the input signal and thus opposes it. Negative feedback reduces the gain of the amplifier. It also reduces distortion, noise, and instability. This feedback increases bandwidth and improves input and output impedances.

How to Calculate Output Resistance with Feedback Voltage Amplifier?

Output Resistance with Feedback Voltage Amplifier calculator uses Output Resistance of Voltage Amplifier = Output Resistance/(1+Loop Gain) to calculate the Output Resistance of Voltage Amplifier, Output Resistance with Feedback Voltage Amplifier refers to the resistance that appears across the output of an amplifier when feedback is applied to the input. Output Resistance of Voltage Amplifier is denoted by Rvof symbol.

How to calculate Output Resistance with Feedback Voltage Amplifier using this online calculator? To use this online calculator for Output Resistance with Feedback Voltage Amplifier, enter Output Resistance (Ro) & Loop Gain (Aβ) and hit the calculate button. Here is how the Output Resistance with Feedback Voltage Amplifier calculation can be explained with given input values -> 0.000647 = 2330/(1+2.6).

FAQ

What is Output Resistance with Feedback Voltage Amplifier?
Output Resistance with Feedback Voltage Amplifier refers to the resistance that appears across the output of an amplifier when feedback is applied to the input and is represented as Rvof = Ro/(1+Aβ) or Output Resistance of Voltage Amplifier = Output Resistance/(1+Loop Gain). Output resistance is the value of resistance of the network & The loop gain is calculated by imagining the feedback loop is broken at some point and calculating the net gain if a signal is applied.
How to calculate Output Resistance with Feedback Voltage Amplifier?
Output Resistance with Feedback Voltage Amplifier refers to the resistance that appears across the output of an amplifier when feedback is applied to the input is calculated using Output Resistance of Voltage Amplifier = Output Resistance/(1+Loop Gain). To calculate Output Resistance with Feedback Voltage Amplifier, you need Output Resistance (Ro) & Loop Gain (Aβ). With our tool, you need to enter the respective value for Output Resistance & Loop Gain and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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