Delta Z given A Parameter Solution

STEP 0: Pre-Calculation Summary
Formula Used
Delta-Z = (Z11 Parameter*B Parameter)/A Parameter
Δz = (Z11*B)/A
This formula uses 4 Variables
Variables Used
Delta-Z - Delta-Z is defined as the delta impedance of Z.
Z11 Parameter - (Measured in Ohm) - Z11 Parameter is driving point impedance at port 1.
B Parameter - (Measured in Ohm) - B parameter is a generalized line constant. also known as short circuit resistance.
A Parameter - A parameter is a generalized line constant.
STEP 1: Convert Input(s) to Base Unit
Z11 Parameter: 11 Ohm --> 11 Ohm No Conversion Required
B Parameter: 15 Ohm --> 15 Ohm No Conversion Required
A Parameter: 4.6 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Δz = (Z11*B)/A --> (11*15)/4.6
Evaluating ... ...
Δz = 35.8695652173913
STEP 3: Convert Result to Output's Unit
35.8695652173913 --> No Conversion Required
FINAL ANSWER
35.8695652173913 35.86957 <-- Delta-Z
(Calculation completed in 00.019 seconds)

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5 ΔZ In Terms Of Different Parameters Calculators

Delta Z given A' Parameter
Go Delta-Z = -(Z22 Parameter*B Inverse Parameter)/A Inverse Parameter
Delta Z given Delta T' Parameter
Go Delta-Z = (Z21 Parameter*B Inverse Parameter)/Delta-T'
Delta Z given A Parameter
Go Delta-Z = (Z11 Parameter*B Parameter)/A Parameter
Delta Z given D Parameter
Go Delta-Z = (Z22 Parameter*B Parameter)/D Parameter
Delta Z given Delta H Parameter
Go Delta-Z = (Z11 Parameter*H11 Parameter)/Delta-H

Delta Z given A Parameter Formula

Delta-Z = (Z11 Parameter*B Parameter)/A Parameter
Δz = (Z11*B)/A

What is the difference between transmission and inverse transmission parameters?

In Power Transmission Lines Port # 1 is the Sending end and Port # 2 is the Receiving end of the Transmission Line. Subscript s is for Sending End and subscript r is for Receiving End. The Inverse Transmission parameters relate the input current and voltage at port 1 to the output current and voltage at port 2.

How to Calculate Delta Z given A Parameter?

Delta Z given A Parameter calculator uses Delta-Z = (Z11 Parameter*B Parameter)/A Parameter to calculate the Delta-Z, The Delta z given A Parameter formula is defined as the delta impedance of Z in the two-port network. it is also known as the delta impedance parameter. Delta-Z is denoted by Δz symbol.

How to calculate Delta Z given A Parameter using this online calculator? To use this online calculator for Delta Z given A Parameter, enter Z11 Parameter (Z11), B Parameter (B) & A Parameter (A) and hit the calculate button. Here is how the Delta Z given A Parameter calculation can be explained with given input values -> 35.86957 = (11*15)/4.6.

FAQ

What is Delta Z given A Parameter?
The Delta z given A Parameter formula is defined as the delta impedance of Z in the two-port network. it is also known as the delta impedance parameter and is represented as Δz = (Z11*B)/A or Delta-Z = (Z11 Parameter*B Parameter)/A Parameter. Z11 Parameter is driving point impedance at port 1, B parameter is a generalized line constant. also known as short circuit resistance & A parameter is a generalized line constant.
How to calculate Delta Z given A Parameter?
The Delta z given A Parameter formula is defined as the delta impedance of Z in the two-port network. it is also known as the delta impedance parameter is calculated using Delta-Z = (Z11 Parameter*B Parameter)/A Parameter. To calculate Delta Z given A Parameter, you need Z11 Parameter (Z11), B Parameter (B) & A Parameter (A). With our tool, you need to enter the respective value for Z11 Parameter, B Parameter & A Parameter 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 Delta-Z?
In this formula, Delta-Z uses Z11 Parameter, B Parameter & A Parameter. We can use 4 other way(s) to calculate the same, which is/are as follows -
  • Delta-Z = (Z22 Parameter*B Parameter)/D Parameter
  • Delta-Z = -(Z22 Parameter*B Inverse Parameter)/A Inverse Parameter
  • Delta-Z = (Z11 Parameter*H11 Parameter)/Delta-H
  • Delta-Z = (Z21 Parameter*B Inverse Parameter)/Delta-T'
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