Gain with Feedback at Mid and High Frequency Solution

STEP 0: Pre-Calculation Summary
Formula Used
Gain with Feedback = (Mid Band Gain/(1+(Mid Band Gain*Feedback Factor)))/((1+(Complex Frequency Variable/Upper 3-dB Frequency)*(1+(Mid Band Gain*Feedback Factor))))
Af = (Am/(1+(Am*β)))/((1+(s/ωhf)*(1+(Am*β))))
This formula uses 5 Variables
Variables Used
Gain with Feedback - Gain with feedback is the gain of the feedback amplifier, known as the closed-loop gain or the gain-with-feedback.
Mid Band Gain - The Mid band Gain of a transistor is the transistor's gain at its mid frequencies; the mid band gain is where the transistor's gain is at the highest and most constant level in its bandwidth.
Feedback Factor - The feedback factor of an op-amp application defines the circuit performance.
Complex Frequency Variable - (Measured in Hertz) - Complex frequency variable describes a sinusoidal signal with increasing (positive σ) or decreasing (negative σ) sine wave.
Upper 3-dB Frequency - (Measured in Hertz) - Upper 3-dB frequency is the cutoff frequency of an electronic amplifier stage at which the output power has dropped to half of its mid-band level.
STEP 1: Convert Input(s) to Base Unit
Mid Band Gain: 20.9 --> No Conversion Required
Feedback Factor: 0.454 --> No Conversion Required
Complex Frequency Variable: 2 Hertz --> 2 Hertz No Conversion Required
Upper 3-dB Frequency: 30.417 Hertz --> 30.417 Hertz No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Af = (Am/(1+(Am*β)))/((1+(s/ωhf)*(1+(Am*β)))) --> (20.9/(1+(20.9*0.454)))/((1+(2/30.417)*(1+(20.9*0.454))))
Evaluating ... ...
Af = 1.1793182802413
STEP 3: Convert Result to Output's Unit
1.1793182802413 --> No Conversion Required
FINAL ANSWER
1.1793182802413 1.179318 <-- Gain with Feedback
(Calculation completed in 00.020 seconds)

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Birsa Institute of Technology (BIT), Sindri
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BW Extension and Signal Interference Calculators

Gain with Feedback at Mid and High Frequency
​ LaTeX ​ Go Gain with Feedback = (Mid Band Gain/(1+(Mid Band Gain*Feedback Factor)))/((1+(Complex Frequency Variable/Upper 3-dB Frequency)*(1+(Mid Band Gain*Feedback Factor))))
Gain at Mid and High Frequencies
​ LaTeX ​ Go Gain Factor = Mid Band Gain/(1+(Complex Frequency Variable/Upper 3-dB Frequency))
Signal-to-Interference Ratio at Output
​ LaTeX ​ Go Signal to Interference Ratio = (Source Voltage/Voltage Interference)*Gain Factor
Lower 3-DB Frequency in Bandwidth Extension
​ LaTeX ​ Go Lower 3-dB Frequency = 3-dB Frequency/(1+(Mid Band Gain*Feedback Factor))

Gain with Feedback at Mid and High Frequency Formula

​LaTeX ​Go
Gain with Feedback = (Mid Band Gain/(1+(Mid Band Gain*Feedback Factor)))/((1+(Complex Frequency Variable/Upper 3-dB Frequency)*(1+(Mid Band Gain*Feedback Factor))))
Af = (Am/(1+(Am*β)))/((1+(s/ωhf)*(1+(Am*β))))

What is the effect of negative feedback on an amplifier?

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. Due to these advantages, negative feedback is frequently used in amplifiers.

How to Calculate Gain with Feedback at Mid and High Frequency?

Gain with Feedback at Mid and High Frequency calculator uses Gain with Feedback = (Mid Band Gain/(1+(Mid Band Gain*Feedback Factor)))/((1+(Complex Frequency Variable/Upper 3-dB Frequency)*(1+(Mid Band Gain*Feedback Factor)))) to calculate the Gain with Feedback, Gain with Feedback at Mid and High Frequency formula refers to the amplification level of a system, adjusted using feedback mechanisms, specifically targeting the middle and higher ranges of the audible spectrum for precise control and stability. Gain with Feedback is denoted by Af symbol.

How to calculate Gain with Feedback at Mid and High Frequency using this online calculator? To use this online calculator for Gain with Feedback at Mid and High Frequency, enter Mid Band Gain (Am), Feedback Factor (β), Complex Frequency Variable (s) & Upper 3-dB Frequency hf) and hit the calculate button. Here is how the Gain with Feedback at Mid and High Frequency calculation can be explained with given input values -> 1.407838 = (20.9/(1+(20.9*0.454)))/((1+(2/30.417)*(1+(20.9*0.454)))).

FAQ

What is Gain with Feedback at Mid and High Frequency?
Gain with Feedback at Mid and High Frequency formula refers to the amplification level of a system, adjusted using feedback mechanisms, specifically targeting the middle and higher ranges of the audible spectrum for precise control and stability and is represented as Af = (Am/(1+(Am*β)))/((1+(s/ωhf)*(1+(Am*β)))) or Gain with Feedback = (Mid Band Gain/(1+(Mid Band Gain*Feedback Factor)))/((1+(Complex Frequency Variable/Upper 3-dB Frequency)*(1+(Mid Band Gain*Feedback Factor)))). The Mid band Gain of a transistor is the transistor's gain at its mid frequencies; the mid band gain is where the transistor's gain is at the highest and most constant level in its bandwidth, The feedback factor of an op-amp application defines the circuit performance, Complex frequency variable describes a sinusoidal signal with increasing (positive σ) or decreasing (negative σ) sine wave & Upper 3-dB frequency is the cutoff frequency of an electronic amplifier stage at which the output power has dropped to half of its mid-band level.
How to calculate Gain with Feedback at Mid and High Frequency?
Gain with Feedback at Mid and High Frequency formula refers to the amplification level of a system, adjusted using feedback mechanisms, specifically targeting the middle and higher ranges of the audible spectrum for precise control and stability is calculated using Gain with Feedback = (Mid Band Gain/(1+(Mid Band Gain*Feedback Factor)))/((1+(Complex Frequency Variable/Upper 3-dB Frequency)*(1+(Mid Band Gain*Feedback Factor)))). To calculate Gain with Feedback at Mid and High Frequency, you need Mid Band Gain (Am), Feedback Factor (β), Complex Frequency Variable (s) & Upper 3-dB Frequency hf). With our tool, you need to enter the respective value for Mid Band Gain, Feedback Factor, Complex Frequency Variable & Upper 3-dB Frequency 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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