or, \(({{I}_{L}}\,+\,n{{I}_{L}}){{R}_{s}}\,=\,{{V}_{i}}\,-\,{{V}_{L}}\)
\(\therefore \,\,{{R}_{s}}\,=\,\frac{\,{{V}_{i}}\,-\,{{V}_{L}}}{(n+\,1){{I}_{L}}}\)
$A$ |
$B$ |
$Y$ |
$0$ |
$0$ |
$1$ |
$0$ |
$1$ |
$1$ |
$1$ |
$0$ |
$1$ |
$1$ |
$1$ |
$0$ |