Q-Factor of Wide Microstrip Lines Solution

STEP 0: Pre-Calculation Summary
Formula Used
Q-Factor of Microstrip Lines = 27.3/Conductor Attenuation Constant
Qms = 27.3/α
This formula uses 2 Variables
Variables Used
Q-Factor of Microstrip Lines - Q-Factor of Microstrip Lines refers to the figure of merit that characterizes the losses in the transmission line.
Conductor Attenuation Constant - (Measured in Decibel per Meter) - Conductor Attenuation Constant is a parameter that characterizes the loss of electromagnetic energy in a conductor.
STEP 1: Convert Input(s) to Base Unit
Conductor Attenuation Constant: 7.8 Decibel per Meter --> 7.8 Decibel per Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Qms = 27.3/α --> 27.3/7.8
Evaluating ... ...
Qms = 3.5
STEP 3: Convert Result to Output's Unit
3.5 --> No Conversion Required
FINAL ANSWER
3.5 <-- Q-Factor of Microstrip Lines
(Calculation completed in 00.004 seconds)

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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 of Wide Microstrip Lines Formula

Q-Factor of Microstrip Lines = 27.3/Conductor Attenuation Constant
Qms = 27.3/α

What affects the Quality factor of microstrip lines?

Conductor Losses ,Dielectric Losses, Radiation Losses, Frequency are some factors on which quality factor of microstrip lines depends.

How to Calculate Q-Factor of Wide Microstrip Lines?

Q-Factor of Wide Microstrip Lines calculator uses Q-Factor of Microstrip Lines = 27.3/Conductor Attenuation Constant to calculate the Q-Factor of Microstrip Lines, The Q-Factor of Wide Microstrip Lines refers to the figure of merit that characterizes the losses in the transmission line. Q-Factor of Microstrip Lines is denoted by Qms symbol.

How to calculate Q-Factor of Wide Microstrip Lines using this online calculator? To use this online calculator for Q-Factor of Wide Microstrip Lines, enter Conductor Attenuation Constant (α) and hit the calculate button. Here is how the Q-Factor of Wide Microstrip Lines calculation can be explained with given input values -> 9.1 = 27.3/7.8.

FAQ

What is Q-Factor of Wide Microstrip Lines?
The Q-Factor of Wide Microstrip Lines refers to the figure of merit that characterizes the losses in the transmission line and is represented as Qms = 27.3/α or Q-Factor of Microstrip Lines = 27.3/Conductor Attenuation Constant. Conductor Attenuation Constant is a parameter that characterizes the loss of electromagnetic energy in a conductor.
How to calculate Q-Factor of Wide Microstrip Lines?
The Q-Factor of Wide Microstrip Lines refers to the figure of merit that characterizes the losses in the transmission line is calculated using Q-Factor of Microstrip Lines = 27.3/Conductor Attenuation Constant. To calculate Q-Factor of Wide Microstrip Lines, you need Conductor Attenuation Constant (α). With our tool, you need to enter the respective value for Conductor Attenuation Constant 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 Q-Factor of Microstrip Lines?
In this formula, Q-Factor of Microstrip Lines uses Conductor Attenuation Constant. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Q-Factor of Microstrip Lines = 0.63*Height*sqrt(Conductivity*Frequency)
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