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Q-Factor of Microstrip Lines refers to the figure of merit that characterizes the losses in the transmission line. Check FAQs
Qms=0.63hσf
Qms - Q-Factor of Microstrip Lines?h - Height?σ - Conductivity?f - Frequency?

Q-Factor of Microstrip Lines given Height and Frequency Example

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With units
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Here is how the Q-Factor of Microstrip Lines given Height and Frequency equation looks like with Values.

Here is how the Q-Factor of Microstrip Lines given Height and Frequency equation looks like with Units.

Here is how the Q-Factor of Microstrip Lines given Height and Frequency equation looks like.

3.5044Edit=0.633Edit382Edit90Edit
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Q-Factor of Microstrip Lines given Height and Frequency Solution

Follow our step by step solution on how to calculate Q-Factor of Microstrip Lines given Height and Frequency?

FIRST Step Consider the formula
Qms=0.63hσf
Next Step Substitute values of Variables
Qms=0.633cm382S/m90Hz
Next Step Convert Units
Qms=0.630.03m382S/m90Hz
Next Step Prepare to Evaluate
Qms=0.630.0338290
Next Step Evaluate
Qms=3.5044086234342
LAST Step Rounding Answer
Qms=3.5044

Q-Factor of Microstrip Lines given Height and Frequency Formula Elements

Variables
Functions
Q-Factor of Microstrip Lines
Q-Factor of Microstrip Lines refers to the figure of merit that characterizes the losses in the transmission line.
Symbol: Qms
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Height
Height refers to a vertical measurement typically from the base to the top of an object or structure.
Symbol: h
Measurement: LengthUnit: cm
Note: Value should be greater than 0.
Conductivity
Conductivity refers to the ability of a material to conduct electric current.
Symbol: σ
Measurement: Electric ConductivityUnit: S/m
Note: Value should be greater than 0.
Frequency
Frequency refers to the number of occurrences of a periodic event per time and is measured in cycles/second.
Symbol: f
Measurement: FrequencyUnit: Hz
Note: Value can be positive or negative.
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)

Other Formulas to find Q-Factor of Microstrip Lines

​Go Q-Factor of Wide Microstrip Lines
Qms=27.3α

Other formulas in Q Factor category

​Go Q-Factor of Loaded Catcher Cavity
QL=(1Qo)+(1Qb)+(1Qel)
​Go Quality Factor of Cavity Resonator
Qc=ωrf2-f1
​Go Q-Factor of Catcher Wall
Qo=1QL-(1Qb)-(1Qel)
​Go Q-Factor of Beam Loading
Qb=1QL-(1Qo)-(1Qel)

How to Evaluate Q-Factor of Microstrip Lines given Height and Frequency?

Q-Factor of Microstrip Lines given Height and Frequency evaluator uses Q-Factor of Microstrip Lines = 0.63*Height*sqrt(Conductivity*Frequency) to evaluate the Q-Factor of Microstrip Lines, The Q-Factor of Microstrip Lines given Height and Frequency 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 evaluate Q-Factor of Microstrip Lines given Height and Frequency using this online evaluator? To use this online evaluator for Q-Factor of Microstrip Lines given Height and Frequency, enter Height (h), Conductivity (σ) & Frequency (f) and hit the calculate button.

FAQs on Q-Factor of Microstrip Lines given Height and Frequency

What is the formula to find Q-Factor of Microstrip Lines given Height and Frequency?
The formula of Q-Factor of Microstrip Lines given Height and Frequency is expressed as Q-Factor of Microstrip Lines = 0.63*Height*sqrt(Conductivity*Frequency). Here is an example- 0.310559 = 0.63*0.03*sqrt(382*90).
How to calculate Q-Factor of Microstrip Lines given Height and Frequency?
With Height (h), Conductivity (σ) & Frequency (f) we can find Q-Factor of Microstrip Lines given Height and Frequency using the formula - Q-Factor of Microstrip Lines = 0.63*Height*sqrt(Conductivity*Frequency). This formula also uses Square Root (sqrt) function(s).
What are the other ways to Calculate Q-Factor of Microstrip Lines?
Here are the different ways to Calculate Q-Factor of Microstrip Lines-
  • Q-Factor of Microstrip Lines=27.3/Conductor Attenuation ConstantOpenImg
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