| Y | Z | S | H | G | A | B | T | |
| Y | Y→Z | Y→S | Y→H | Y→G | Y→A | Y→B | Y→T | |
| Z | Z→Y | Z→S | Z→H | Z→G | Z→A | Z→B | Z→T | |
| S | S→Y | S→Z | S→H | S→G | S→A | S→B | S→T | |
| H | H→Y | H→Z | H→S | H→G | H→A | H→B | H→T | |
| G | G→Y | G→Z | G→S | G→H | G→A | G→B | G→T | |
| A | A→Y | A→Z | A→S | A→H | A→G | A→B | A→T | |
| B | B→Y | B→Z | B→S | B→H | B→G | B→A | B→T | |
| T | T→Y | T→Z | T→S | T→H | T→G | T→A | T→B |
From Z-parameters to Z-parameters
In matrix form, the formula is
When dealing with 2 ports, we obtain
The formulas are obtained with the methods explained here. The MATLAB implementation can be found in circuitconversions on Gitlab.
Definitions
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