High-Frequency Response given Input Capacitance Solution

STEP 0: Pre-Calculation Summary
Formula Used
High Frequency Response = 1/(2*pi*Signal Resistance*Input Capacitance)
Ahf = 1/(2*pi*Rsig*Ci)
This formula uses 1 Constants, 3 Variables
Constants Used
pi - Archimedes' constant Value Taken As 3.14159265358979323846264338327950288
Variables Used
High Frequency Response - High frequency response is the gain of the voltage amplifier at frequencies less than those frequencies at which this gain is close to its maximum value.
Signal Resistance - (Measured in Ohm) - Signal Resistance is the resistance which is fed with the signal voltage source vs to an Amplifier.
Input Capacitance - (Measured in Farad) - Input capacitance is the capacitance value of the voltage amplifier.
STEP 1: Convert Input(s) to Base Unit
Signal Resistance: 1.25 Kilohm --> 1250 Ohm (Check conversion ​here)
Input Capacitance: 521.27 Microfarad --> 0.00052127 Farad (Check conversion ​here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Ahf = 1/(2*pi*Rsig*Ci) --> 1/(2*pi*1250*0.00052127)
Evaluating ... ...
Ahf = 0.244257207346512
STEP 3: Convert Result to Output's Unit
0.244257207346512 --> No Conversion Required
FINAL ANSWER
0.244257207346512 0.244257 <-- High Frequency Response
(Calculation completed in 00.004 seconds)

Credits

Creator Image
Created by Payal Priya
Birsa Institute of Technology (BIT), Sindri
Payal Priya has created this Calculator and 600+ more calculators!
Verifier Image
Verified by Anshika Arya
National Institute Of Technology (NIT), Hamirpur
Anshika Arya has verified this Calculator and 2500+ more calculators!

Response of CS Amplifier Calculators

Output Voltage of CS Amplifier
​ LaTeX ​ Go Output Voltage = Transconductance*Gate to Source Voltage*Load Resistance
Equivalent Signal Resistance of CS Amplifier
​ LaTeX ​ Go Internal Small Signal Resistance = 1/((1/Signal Resistance+1/Output Resistance))
Frequency of Zero Transmission of CS Amplifier
​ LaTeX ​ Go Transmission Frequency = 1/(Bypass Capacitor*Signal Resistance)
Midband Gain of CS Amplifier
​ LaTeX ​ Go Mid Band Gain = Output Voltage/Small Signal Voltage

Common Stage Amplifiers Calculators

Effective High Frequency Time Constant of CE Amplifier
​ LaTeX ​ Go Effective High Frequency Time Constant = Base Emitter Capacitance*Signal Resistance+(Collector Base Junction Capacitance*(Signal Resistance*(1+Transconductance*Load Resistance)+Load Resistance))+(Capacitance*Load Resistance)
High-Frequency Band given Complex Frequency Variable
​ LaTeX ​ Go Amplifier Gain in Mid Band = sqrt(((1+(3 dB Frequency/Frequency))*(1+(3 dB Frequency/Frequency Observed)))/((1+(3 dB Frequency/Pole Frequency))*(1+(3 dB Frequency/Second Pole Frequency))))
Collector Base Junction Resistance of CE Amplifier
​ LaTeX ​ Go Collector Resistance = Signal Resistance*(1+Transconductance*Load Resistance)+Load Resistance
Amplifier Bandwidth in Discrete-Circuit Amplifier
​ LaTeX ​ Go Amplifier Bandwidth = High Frequency-Low Frequency

High-Frequency Response given Input Capacitance Formula

​LaTeX ​Go
High Frequency Response = 1/(2*pi*Signal Resistance*Input Capacitance)
Ahf = 1/(2*pi*Rsig*Ci)

What is a CS amplifier?

In electronics, a common-source amplifier is one of three basic single-stage field-effect transistor (FET) amplifier topologies, typically used as a voltage or transconductance amplifier. The easiest way to tell if a FET is a common source, common drain, or common gate is to examine where the signal enters and leaves.

How to Calculate High-Frequency Response given Input Capacitance?

High-Frequency Response given Input Capacitance calculator uses High Frequency Response = 1/(2*pi*Signal Resistance*Input Capacitance) to calculate the High Frequency Response, The High-frequency response given input capacitance formula is defined as the stray capacitances associated with the active device lower the gain. High Frequency Response is denoted by Ahf symbol.

How to calculate High-Frequency Response given Input Capacitance using this online calculator? To use this online calculator for High-Frequency Response given Input Capacitance, enter Signal Resistance (Rsig) & Input Capacitance (Ci) and hit the calculate button. Here is how the High-Frequency Response given Input Capacitance calculation can be explained with given input values -> 0.244257 = 1/(2*pi*1250*0.00052127).

FAQ

What is High-Frequency Response given Input Capacitance?
The High-frequency response given input capacitance formula is defined as the stray capacitances associated with the active device lower the gain and is represented as Ahf = 1/(2*pi*Rsig*Ci) or High Frequency Response = 1/(2*pi*Signal Resistance*Input Capacitance). Signal Resistance is the resistance which is fed with the signal voltage source vs to an Amplifier & Input capacitance is the capacitance value of the voltage amplifier.
How to calculate High-Frequency Response given Input Capacitance?
The High-frequency response given input capacitance formula is defined as the stray capacitances associated with the active device lower the gain is calculated using High Frequency Response = 1/(2*pi*Signal Resistance*Input Capacitance). To calculate High-Frequency Response given Input Capacitance, you need Signal Resistance (Rsig) & Input Capacitance (Ci). With our tool, you need to enter the respective value for Signal Resistance & Input Capacitance and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate High Frequency Response?
In this formula, High Frequency Response uses Signal Resistance & Input Capacitance. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • High Frequency Response = Upper 3-dB Frequency/(2*pi)
Let Others Know
Facebook
Twitter
Reddit
LinkedIn
Email
WhatsApp
Copied!