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Time Constant of the response represents the elapsed time required for the system response to decay to zero if the system had continued to decay at the initial rate. Check FAQs
𝜏=CC1R1
𝜏 - Time Constant?CC1 - Capacitance of Coupling Capacitor 1?R1 - Resistance of Resistor 1?

Time Constant of CE Amplifier Example

With values
With units
Only example

Here is how the Time Constant of CE Amplifier equation looks like with Values.

Here is how the Time Constant of CE Amplifier equation looks like with Units.

Here is how the Time Constant of CE Amplifier equation looks like.

1.96Edit=400Edit4.9Edit
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Time Constant of CE Amplifier Solution

Follow our step by step solution on how to calculate Time Constant of CE Amplifier?

FIRST Step Consider the formula
𝜏=CC1R1
Next Step Substitute values of Variables
𝜏=400μF4.9
Next Step Convert Units
𝜏=0.0004F4900Ω
Next Step Prepare to Evaluate
𝜏=0.00044900
LAST Step Evaluate
𝜏=1.96s

Time Constant of CE Amplifier Formula Elements

Variables
Time Constant
Time Constant of the response represents the elapsed time required for the system response to decay to zero if the system had continued to decay at the initial rate.
Symbol: 𝜏
Measurement: TimeUnit: s
Note: Value should be greater than 0.
Capacitance of Coupling Capacitor 1
Capacitance of Coupling Capacitor 1 is the ratio of the amount of electric charge stored on a conductor to a difference in electric potential in capacitor in a low response amplifier.
Symbol: CC1
Measurement: CapacitanceUnit: μF
Note: Value should be greater than 0.
Resistance of Resistor 1
Resistance of Resistor 1 is defined as the opposition experienced by the current by resistor 1 of the two resistors in a low response amplifier.
Symbol: R1
Measurement: Electric ResistanceUnit:
Note: Value should be greater than 0.

Other Formulas to find Time Constant

​Go Time Constant Associated with Cc1 using Method Short-Circuit Time Constants
𝜏=CC1R'1

Other formulas in Response of CE Amplifier category

​Go Resistance due to Capacitor CC1 using Method Short-Circuit Time Constants
Rt=(1Rb+1Ri)+Rs

How to Evaluate Time Constant of CE Amplifier?

Time Constant of CE Amplifier evaluator uses Time Constant = Capacitance of Coupling Capacitor 1*Resistance of Resistor 1 to evaluate the Time Constant, The Time constant of CE amplifier formula enables easy approximate computation of -3 dB high-frequency limit of amplifier frequency response, wH (as well as equivalent low-frequency limit, wL) when it is not possible to determine, by direct inspection, values of zeros and poles of frequency response. Time Constant is denoted by 𝜏 symbol.

How to evaluate Time Constant of CE Amplifier using this online evaluator? To use this online evaluator for Time Constant of CE Amplifier, enter Capacitance of Coupling Capacitor 1 (CC1) & Resistance of Resistor 1 (R1) and hit the calculate button.

FAQs on Time Constant of CE Amplifier

What is the formula to find Time Constant of CE Amplifier?
The formula of Time Constant of CE Amplifier is expressed as Time Constant = Capacitance of Coupling Capacitor 1*Resistance of Resistor 1. Here is an example- 1.96 = 0.0004*4900.
How to calculate Time Constant of CE Amplifier?
With Capacitance of Coupling Capacitor 1 (CC1) & Resistance of Resistor 1 (R1) we can find Time Constant of CE Amplifier using the formula - Time Constant = Capacitance of Coupling Capacitor 1*Resistance of Resistor 1.
What are the other ways to Calculate Time Constant?
Here are the different ways to Calculate Time Constant-
  • Time Constant=Capacitance of Coupling Capacitor 1*Resistance of Primary Winding in SecondaryOpenImg
Can the Time Constant of CE Amplifier be negative?
No, the Time Constant of CE Amplifier, measured in Time cannot be negative.
Which unit is used to measure Time Constant of CE Amplifier?
Time Constant of CE Amplifier is usually measured using the Second[s] for Time. Millisecond[s], Microsecond[s], Nanosecond[s] are the few other units in which Time Constant of CE Amplifier can be measured.
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