Q-Factor for Copper Strip Solution

STEP 0: Pre-Calculation Summary
Formula Used
Q-Factor of Copper Strip Lines = 4780*Height*sqrt(Frequency)
Qcu = 4780*h*sqrt(f)
This formula uses 1 Functions, 3 Variables
Functions Used
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., sqrt(Number)
Variables Used
Q-Factor of Copper Strip Lines - Q-Factor of Copper Strip Lines s a measure of the efficiency of the strip as a resonator or inductor in an electrical circuit.
Height - (Measured in Meter) - Height refers to a vertical measurement typically from the base to the top of an object or structure.
Frequency - (Measured in Hertz) - Frequency refers to the number of occurrences of a periodic event per time and is measured in cycles/second.
STEP 1: Convert Input(s) to Base Unit
Height: 3 Centimeter --> 0.03 Meter (Check conversion ​here)
Frequency: 90 Hertz --> 90 Hertz No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Qcu = 4780*h*sqrt(f) --> 4780*0.03*sqrt(90)
Evaluating ... ...
Qcu = 1360.41184940444
STEP 3: Convert Result to Output's Unit
1360.41184940444 --> No Conversion Required
FINAL ANSWER
1360.41184940444 1360.412 <-- Q-Factor of Copper Strip Lines
(Calculation completed in 00.004 seconds)

Credits

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Sinhgad College Of Engineering (SCOE), Pune
Simran Shravan Nishad has created this Calculator and 25+ more calculators!
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Vellore Institute of Technology (VIT Vellore), Vellore
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14 Q-Factor Calculators

Q-Factor of Loaded Resonator Circuit
​ Go Q Factor of Loaded Resonator Circuit = (Resonant Angular Frequency*Capacitance at Vane Tips)/(Resonator Conductance+Conductance of Cavity)
Q-Factor of Loaded Catcher Cavity
​ Go Q Factor of Loaded Catcher Cavity = (1/Q Factor of Catcher Wall)+(1/Q Factor of Beam Loading)+(1/Q Factor of External Load)
Q-Factor of External Load
​ Go Q Factor of External Load = 1/(Q Factor of Loaded Catcher Cavity-(1/Q Factor of Beam Loading)-(1/Q Factor of Catcher Wall))
Q-Factor of Catcher Wall
​ Go Q Factor of Catcher Wall = 1/(Q Factor of Loaded Catcher Cavity-(1/Q Factor of Beam Loading)-(1/Q Factor of External Load))
Q-Factor of Beam Loading
​ Go Q Factor of Beam Loading = 1/(Q Factor of Loaded Catcher Cavity-(1/Q Factor of Catcher Wall)-(1/Q Factor of External Load))
Q-Factor of Microstrip Lines given Height and Frequency
​ Go Q-Factor of Microstrip Lines = 0.63*Height*sqrt(Conductivity*Frequency)
Resonant Angular Frequency given Q-External
​ Go Resonant Angular Frequency = (Loaded Conductance*External Q-Factor)/Capacitance at Vane Tips
Load Conductance given Q-External
​ Go Loaded Conductance = (Resonant Angular Frequency*Capacitance at Vane Tips)/External Q-Factor
External Q-Factor
​ Go External Q-Factor = (Capacitance at Vane Tips*Resonant Angular Frequency)/Loaded Conductance
Unloaded Q-factor
​ Go Unloaded Q-factor = Capacitance at Vane Tips*Angular Frequency/Conductance of Cavity
Quality Factor of Cavity Resonator
​ Go Q factor of Cavity Resonator = Resonant Frequency/(Frequency 2-Frequency 1)
Q-Factor for Copper Strip
​ Go Q-Factor of Copper Strip Lines = 4780*Height*sqrt(Frequency)
Q-Factor of Wide Microstrip Lines
​ Go Q-Factor of Microstrip Lines = 27.3/Conductor Attenuation Constant
Q-Factor given Dielectric Attenuation Constant
​ Go Q-Factor = 27.3/Dielectric Attenuation Constant

Q-Factor for Copper Strip Formula

Q-Factor of Copper Strip Lines = 4780*Height*sqrt(Frequency)
Qcu = 4780*h*sqrt(f)

What is electrical conductivity of copper ?

At room temperature (about 20 degrees Celsius or 68 degrees Fahrenheit), the electrical conductivity of copper is approximately 5.8×10^7 S/m.

How to Calculate Q-Factor for Copper Strip?

Q-Factor for Copper Strip calculator uses Q-Factor of Copper Strip Lines = 4780*Height*sqrt(Frequency) to calculate the Q-Factor of Copper Strip Lines, The Q-Factor for Copper Strip is a measure of the efficiency of the strip as a resonator or inductor in an electrical circuit. Q-Factor of Copper Strip Lines is denoted by Qcu symbol.

How to calculate Q-Factor for Copper Strip using this online calculator? To use this online calculator for Q-Factor for Copper Strip, enter Height (h) & Frequency (f) and hit the calculate button. Here is how the Q-Factor for Copper Strip calculation can be explained with given input values -> 1360.412 = 4780*0.03*sqrt(90).

FAQ

What is Q-Factor for Copper Strip?
The Q-Factor for Copper Strip is a measure of the efficiency of the strip as a resonator or inductor in an electrical circuit and is represented as Qcu = 4780*h*sqrt(f) or Q-Factor of Copper Strip Lines = 4780*Height*sqrt(Frequency). Height refers to a vertical measurement typically from the base to the top of an object or structure & Frequency refers to the number of occurrences of a periodic event per time and is measured in cycles/second.
How to calculate Q-Factor for Copper Strip?
The Q-Factor for Copper Strip is a measure of the efficiency of the strip as a resonator or inductor in an electrical circuit is calculated using Q-Factor of Copper Strip Lines = 4780*Height*sqrt(Frequency). To calculate Q-Factor for Copper Strip, you need Height (h) & Frequency (f). With our tool, you need to enter the respective value for Height & Frequency and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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