Bandwidth using Dynamic Quality Factor Formula

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Bandwidth refers to the range of frequencies over which the amplifier can effectively amplify a signal. Check FAQs
S=QdωRs
S - Bandwidth?Qd - Dynamic Q-Factor?ω - Angular Frequency?Rs - Series Resistance of Diode?

Bandwidth using Dynamic Quality Factor Example

With values
With units
Only example

Here is how the Bandwidth using Dynamic Quality Factor equation looks like with Values.

Here is how the Bandwidth using Dynamic Quality Factor equation looks like with Units.

Here is how the Bandwidth using Dynamic Quality Factor equation looks like.

0.0038Edit=0.012Edit5.75Edit0.55Edit
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Bandwidth using Dynamic Quality Factor Solution

Follow our step by step solution on how to calculate Bandwidth using Dynamic Quality Factor?

FIRST Step Consider the formula
S=QdωRs
Next Step Substitute values of Variables
S=0.0125.75rad/s0.55Ω
Next Step Prepare to Evaluate
S=0.0125.750.55
Next Step Evaluate
S=0.00379446640316206Hz
LAST Step Rounding Answer
S=0.0038Hz

Bandwidth using Dynamic Quality Factor Formula Elements

Variables
Bandwidth
Bandwidth refers to the range of frequencies over which the amplifier can effectively amplify a signal.
Symbol: S
Measurement: FrequencyUnit: Hz
Note: Value can be positive or negative.
Dynamic Q-Factor
Dynamic Q-factor is a dimensionless parameter that describes how underdamped an oscillator or resonator.
Symbol: Qd
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Angular Frequency
Angular Frequency of a steadily recurring phenomenon expressed in radians per second.
Symbol: ω
Measurement: Angular FrequencyUnit: rad/s
Note: Value should be greater than 0.
Series Resistance of Diode
Series resistance of diode is defined as the total resistance of the circuit is found by simply adding up the resistance values of the individual resistors.
Symbol: Rs
Measurement: Electric ResistanceUnit: Ω
Note: Value should be greater than 0.

Other formulas in Non Linear Circuits category

​Go Maximum Applied Voltage across Diode
Vm=EmLdepl
​Go Maximum Applied Current across Diode
Im=VmXc
​Go Reactive Impedence
Xc=VmIm
​Go Ratio Negative Resistance to Series Resistance
α=ReqRTi

How to Evaluate Bandwidth using Dynamic Quality Factor?

Bandwidth using Dynamic Quality Factor evaluator uses Bandwidth = Dynamic Q-Factor/(Angular Frequency*Series Resistance of Diode) to evaluate the Bandwidth, Bandwidth using Dynamic Quality Factor to the range of frequencies over which the amplifier can effectively amplify a signal. Bandwidth is denoted by S symbol.

How to evaluate Bandwidth using Dynamic Quality Factor using this online evaluator? To use this online evaluator for Bandwidth using Dynamic Quality Factor, enter Dynamic Q-Factor (Qd), Angular Frequency (ω) & Series Resistance of Diode (Rs) and hit the calculate button.

FAQs on Bandwidth using Dynamic Quality Factor

What is the formula to find Bandwidth using Dynamic Quality Factor?
The formula of Bandwidth using Dynamic Quality Factor is expressed as Bandwidth = Dynamic Q-Factor/(Angular Frequency*Series Resistance of Diode). Here is an example- 0.003794 = 0.012/(5.75*0.55).
How to calculate Bandwidth using Dynamic Quality Factor?
With Dynamic Q-Factor (Qd), Angular Frequency (ω) & Series Resistance of Diode (Rs) we can find Bandwidth using Dynamic Quality Factor using the formula - Bandwidth = Dynamic Q-Factor/(Angular Frequency*Series Resistance of Diode).
Can the Bandwidth using Dynamic Quality Factor be negative?
Yes, the Bandwidth using Dynamic Quality Factor, measured in Frequency can be negative.
Which unit is used to measure Bandwidth using Dynamic Quality Factor?
Bandwidth using Dynamic Quality Factor is usually measured using the Hertz[Hz] for Frequency. Petahertz[Hz], Terahertz[Hz], Gigahertz[Hz] are the few other units in which Bandwidth using Dynamic Quality Factor can be measured.
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