Amplifier Bandwidth in Discrete-Circuit Amplifier Formula

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Amplifier Bandwidth is defined as the difference between the frequency limits of the amplifier. Check FAQs
BW=fh-fL
BW - Amplifier Bandwidth?fh - High Frequency?fL - Low Frequency?

Amplifier Bandwidth in Discrete-Circuit Amplifier Example

With values
With units
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Here is how the Amplifier Bandwidth in Discrete-Circuit Amplifier equation looks like with Values.

Here is how the Amplifier Bandwidth in Discrete-Circuit Amplifier equation looks like with Units.

Here is how the Amplifier Bandwidth in Discrete-Circuit Amplifier equation looks like.

0.25Edit=100.5Edit-100.25Edit
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Amplifier Bandwidth in Discrete-Circuit Amplifier Solution

Follow our step by step solution on how to calculate Amplifier Bandwidth in Discrete-Circuit Amplifier?

FIRST Step Consider the formula
BW=fh-fL
Next Step Substitute values of Variables
BW=100.5Hz-100.25Hz
Next Step Prepare to Evaluate
BW=100.5-100.25
LAST Step Evaluate
BW=0.25Hz

Amplifier Bandwidth in Discrete-Circuit Amplifier Formula Elements

Variables
Amplifier Bandwidth
Amplifier Bandwidth is defined as the difference between the frequency limits of the amplifier.
Symbol: BW
Measurement: FrequencyUnit: Hz
Note: Value should be greater than 0.
High Frequency
High frequency in amplifiers refers to the ability of the device to handle high-frequency signals without significant degradation.
Symbol: fh
Measurement: FrequencyUnit: Hz
Note: Value should be greater than 0.
Low Frequency
Low Frequency refers to signals or signals with a frequency below a certain threshold, usually around 100 kHz to 1 MHz. At these frequencies, the MOSFET operates in its linear region.
Symbol: fL
Measurement: FrequencyUnit: Hz
Note: Value should be greater than 0.

Other formulas in Response of CE Amplifier category

​Go Collector Base Junction Resistance of CE Amplifier
Rc=Rsig(1+gmRL)+RL
​Go Effective High Frequency Time Constant of CE Amplifier
𝜏H=CbeRsig+(Ccb(Rsig(1+gmRL)+RL))+(CtRL)
​Go High-Frequency Band given Complex Frequency Variable
Am=(1+(f3dBft))(1+(f3dBfo))(1+(f3dBfp))(1+(f3dBfp2))
​Go High-Frequency Gain of CE Amplifier
Ahf=fu3dB2π

How to Evaluate Amplifier Bandwidth in Discrete-Circuit Amplifier?

Amplifier Bandwidth in Discrete-Circuit Amplifier evaluator uses Amplifier Bandwidth = High Frequency-Low Frequency to evaluate the Amplifier Bandwidth, The Amplifier bandwidth in discrete-circuit amplifier formula is defined as the difference between the frequency limits of the amplifier. Complete step-by-step answer: The range of frequencies within a band is known as bandwidth. An amplifier also known as an amp is an electronic device that enhances the power of a signal. Amplifier Bandwidth is denoted by BW symbol.

How to evaluate Amplifier Bandwidth in Discrete-Circuit Amplifier using this online evaluator? To use this online evaluator for Amplifier Bandwidth in Discrete-Circuit Amplifier, enter High Frequency (fh) & Low Frequency (fL) and hit the calculate button.

FAQs on Amplifier Bandwidth in Discrete-Circuit Amplifier

What is the formula to find Amplifier Bandwidth in Discrete-Circuit Amplifier?
The formula of Amplifier Bandwidth in Discrete-Circuit Amplifier is expressed as Amplifier Bandwidth = High Frequency-Low Frequency. Here is an example- 69.88 = 100.5-100.25.
How to calculate Amplifier Bandwidth in Discrete-Circuit Amplifier?
With High Frequency (fh) & Low Frequency (fL) we can find Amplifier Bandwidth in Discrete-Circuit Amplifier using the formula - Amplifier Bandwidth = High Frequency-Low Frequency.
Can the Amplifier Bandwidth in Discrete-Circuit Amplifier be negative?
No, the Amplifier Bandwidth in Discrete-Circuit Amplifier, measured in Frequency cannot be negative.
Which unit is used to measure Amplifier Bandwidth in Discrete-Circuit Amplifier?
Amplifier Bandwidth in Discrete-Circuit Amplifier is usually measured using the Hertz[Hz] for Frequency. Petahertz[Hz], Terahertz[Hz], Gigahertz[Hz] are the few other units in which Amplifier Bandwidth in Discrete-Circuit Amplifier can be measured.
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