The Crosstalk coefficient and coupled voltage are calculated as follows:
\[
K = 1.017 \times \sqrt{0.475\varepsilon_r + 0.67} \times 2L
\]
\[
\text{Ratio} = \frac{K}{t_r}
\]
\[
\text{Factor} = \frac{1}{1 + \left( \frac{s}{h} \right)^2}
\]
Then:
If \( \frac{K}{t_r} \le 1 \):
\[
X_{\text{talk}}(dB) = 20 \log_{10}(\text{Factor} \times \text{Ratio})
\]
\[
V_{\text{coupled}} = V \times (\text{Factor} \times \text{Ratio})
\]
Else:
\[
X_{\text{talk}}(dB) = 20 \log_{10}(\text{Factor})
\]
\[
V_{\text{coupled}} = V \times \text{Factor}
\]
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