← all environments 02 · Core · Analog · v0.1.2
Dynamic RC Low-Pass Filter
AnalogA first-order shunt-capacitor filter. The cutoff and the magnitude are derived live; the output wire fades its opacity and stretches its dash pattern to visualise physical damping, and both channels drive the oscilloscope.
6 components · 6 connections · frequency-domain transfer function
the ahaA capacitor is a bucket. Slow signals fill it; fast ones wiggle away before it can respond.
why it works
The capacitor needs time to charge through , and that time sets a verdict. Below the cutoff the bucket keeps up and the output follows the input. Above it, the signal reverses before the bucket fills, so the amplitude collapses as . At exactly, the output has dropped to of the input — the famous −3 dB point, the frequency where the filter says "this is where I start giving up."
governing model
structural inventory
- input source node
- series resistor
- shunt capacitor
- reference ground
boundaries
- –
- –
- sweep –
fault relay capacitor branch open
-
Sweep the frequency slider past the cutoff.
Watch the output trace fade and its dash-pattern stretch as climbs past — the fading is the attenuation, drawn in real physical proportion. -
Halve C and watch the cutoff move.
Smaller bucket, faster response: doubles. The filter now passes signals it used to block — you moved the verdict by changing one component. -
Open the capacitor branch.
With nowhere to dump charge, there is no pole at all — the filter stops filtering and the output tracks the input at every frequency.
causal signal trace paused
Apply The source establishes the stimulus and the return reference.
step 1 / 4 Apply Vᵢₙ
Loading Dynamic RC Low-Pass Filter model…