Cyclic Frequency of Superheterodyne Receiver Formula

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Cyclic Frequency is the frequency produced by mixing the incoming signal with a signal from a local oscillator. Check FAQs
fcyc=12πLC
fcyc - Cyclic Frequency?L - Inductance?C - Capacitance?π - Archimedes' constant?

Cyclic Frequency of Superheterodyne Receiver Example

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With units
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Here is how the Cyclic Frequency of Superheterodyne Receiver equation looks like with Values.

Here is how the Cyclic Frequency of Superheterodyne Receiver equation looks like with Units.

Here is how the Cyclic Frequency of Superheterodyne Receiver equation looks like.

0.0385Edit=123.14165.7Edit3Edit
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Cyclic Frequency of Superheterodyne Receiver Solution

Follow our step by step solution on how to calculate Cyclic Frequency of Superheterodyne Receiver?

FIRST Step Consider the formula
fcyc=12πLC
Next Step Substitute values of Variables
fcyc=12π5.7H3F
Next Step Substitute values of Constants
fcyc=123.14165.7H3F
Next Step Prepare to Evaluate
fcyc=123.14165.73
Next Step Evaluate
fcyc=0.0384877104335935Hz
LAST Step Rounding Answer
fcyc=0.0385Hz

Cyclic Frequency of Superheterodyne Receiver Formula Elements

Variables
Constants
Functions
Cyclic Frequency
Cyclic Frequency is the frequency produced by mixing the incoming signal with a signal from a local oscillator.
Symbol: fcyc
Measurement: FrequencyUnit: Hz
Note: Value should be greater than 0.
Inductance
Inductance is the tendency of an electric conductor to oppose a change in the electric current flowing through it.
Symbol: L
Measurement: InductanceUnit: H
Note: Value should be greater than 0.
Capacitance
Capacitance is the ratio of the amount of electric charge stored on a conductor to a difference in electric potential.
Symbol: C
Measurement: CapacitanceUnit: F
Note: Value should be greater than 0.
Archimedes' constant
Archimedes' constant is a mathematical constant that represents the ratio of the circumference of a circle to its diameter.
Symbol: π
Value: 3.14159265358979323846264338327950288
sqrt
A square root function is a function that takes a non-negative number as an input and returns the square root of the given input number.
Syntax: sqrt(Number)

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How to Evaluate Cyclic Frequency of Superheterodyne Receiver?

Cyclic Frequency of Superheterodyne Receiver evaluator uses Cyclic Frequency = 1/(2*pi*sqrt(Inductance*Capacitance)) to evaluate the Cyclic Frequency, The Cyclic Frequency of Superheterodyne Receiver s the frequency that is mixed with the received signal to produce an intermediate frequency signal. The IF signal is then amplified and filtered before being demodulated to extract the original audio or data signal. Cyclic Frequency is denoted by fcyc symbol.

How to evaluate Cyclic Frequency of Superheterodyne Receiver using this online evaluator? To use this online evaluator for Cyclic Frequency of Superheterodyne Receiver, enter Inductance (L) & Capacitance (C) and hit the calculate button.

FAQs on Cyclic Frequency of Superheterodyne Receiver

What is the formula to find Cyclic Frequency of Superheterodyne Receiver?
The formula of Cyclic Frequency of Superheterodyne Receiver is expressed as Cyclic Frequency = 1/(2*pi*sqrt(Inductance*Capacitance)). Here is an example- 0.384877 = 1/(2*pi*sqrt(5.7*3)).
How to calculate Cyclic Frequency of Superheterodyne Receiver?
With Inductance (L) & Capacitance (C) we can find Cyclic Frequency of Superheterodyne Receiver using the formula - Cyclic Frequency = 1/(2*pi*sqrt(Inductance*Capacitance)). This formula also uses Archimedes' constant and Square Root (sqrt) function(s).
Can the Cyclic Frequency of Superheterodyne Receiver be negative?
No, the Cyclic Frequency of Superheterodyne Receiver, measured in Frequency cannot be negative.
Which unit is used to measure Cyclic Frequency of Superheterodyne Receiver?
Cyclic Frequency of Superheterodyne Receiver is usually measured using the Hertz[Hz] for Frequency. Petahertz[Hz], Terahertz[Hz], Gigahertz[Hz] are the few other units in which Cyclic Frequency of Superheterodyne Receiver can be measured.
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