Equivalent resistance — where it appears
Named by 2 essays across 2 fields — each of them below, with the objects they name alongside it.
The noise a clock does not make
A hundred-megohm resistor has a noise density of 1.27 microvolts per root hertz. A switched capacitor that behaves as a hundred megohms has none of it: the noise on the capacitor it charges is kT/C, with the holding capacitor in it and nothing else — not the clock, not the switched capacitor, not the on-resistance. And it is exact rather than asymptotic, at every capacitor ratio from a thousandth to ten.
A resistor made of a clock
A capacitor shuttled between two nodes at a megahertz behaves as a megohm, and a tenth of a picofarad shuttled at ten kilohertz behaves as a gigohm — which is how a filter with a one-hertz corner fits on a chip. What the equivalence costs is three conditions, and they bind on three different quantities: a capacitor ratio under 0.0201, a signal below half the clock, and a clock below the frequency at which the charge stops arriving.
Named alongside it
The objects these essays reach for when they reach for this one.
Switched capacitorAliasingCapacitor ratioDynamic rangeImpedance scalingJohnson noiseKt over cModel rangeNoise bandwidthSampled dataSampled noiseSettling time