Fractional bandwidth — where it appears
Named by 2 essays across 2 fields — each of them below, with the objects they name alongside it.
A quarter wave, and the path the current takes back
A line a quarter of a wavelength long, whose impedance is the geometric mean of the two it joins, matches them exactly — reflecting 5×10⁻¹⁷ of what arrives, which is the arithmetic's floor. At one frequency. Seventeen per cent either side of it the reflection is back to a tenth, and that band is the whole of what the technique is worth.
The clock that is too fast
Every sample rate in the requirement is a lower bound: the filter must be down by the frequency that folds back, and a faster clock is always at least as good. That holds for a signal at baseband. A band from 100 to 120 megahertz can be sampled at 240 and above, or at 120 to 200, or 80 to 100, or 60 to 66.7, or 48 to 50, or 40 — six disjoint windows with five forbidden gaps between them, so 110 megahertz fails while 100 works and 120 works. The bound is twice the band's width, 40 megahertz, and it is six times below twice its top.
Named alongside it
The objects these essays reach for when they reach for this one.
AliasingAnti-alias filterImpedance matchingLoop areaModel rangeOversamplingQuarter-wave transformerReturn currentSample rate