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Dynamic RC Low-Pass Filter

Analog

A first-order shunt-capacitor filter. The cutoff and the H(jω)|H(j\omega)| 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

recommended lab 2 of 11

Predict how component values move a first-order pole and attenuation.

Prerequisite: none — start here.

predict · then test

Keep RR fixed and increase CC. What happens to the cutoff fcf_c?

Commit before the explanation appears. This is a prediction, not a quiz score.

governing model
fc=12πRC    H(jω)=11+(f/fc)2f_c = \dfrac{1}{2\pi RC} \;\cdot\; |H(j\omega)| = \dfrac{1}{\sqrt{1 + (f/f_c)^2}}
structural inventory
  • input source node
  • series resistor RR
  • shunt capacitor CC
  • reference ground
boundaries
  • R:100 ΩR: 100\ \Omega1 MΩ1\ \mathrm{M\Omega}
  • C:1 nFC: 1\ \mathrm{nF}10 μF10\ \mathrm{\mu F}
  • sweep 10 Hz10\ \mathrm{Hz}100 kHz100\ \mathrm{kHz}
diagnosis challenge Fault identity withheld: infer it from the changed outputs first.
causal signal trace paused

Apply VinV_{\mathrm{in}} The source establishes the stimulus and the return reference.

step 1 / 4 Apply Vᵢₙ

simulation 02 · analog RC frequency response analyzer
passband tracking mode=full
Dynamic RC Low-Pass Filter6 components and 6 connections.VINVinR110 kΩVOUToutput nodeC1100 nFGND0 VOUTVout
Dynamic RC Low-Pass Filter
selected compiler trace VOUT.node
Vᵢₙ · 1.000 VVₒᵤₜ · 0.847 V
input output · -1.4 dB

control surface

100.00 Hz
fc 159.15 Hz
Component calibration

RC waveform and frequency-response animation running.

live telemetry

cutoff frequency fc=1.59 kHzf_c=\htmlData{math-slot=value}{\text{1.59 kHz}}
voltage gain H(jω)=0.000  (00.0dB)\lvert H(j\omega)\rvert=\htmlData{math-slot=magnitude}{\mathtt{0.000}}\;\left(\htmlData{math-slot=db}{\mathtt{-00.0}}\,\mathrm{dB}\right)
phase shift φ=00.0\varphi=\htmlData{math-slot=value}{\mathtt{-00.0}}^{\circ}
10 Hz100 kHz
|H(jω)| · −3 dB pole marked
diagnostic probe