SYSTEMA CONSTRUCTUM

Accepted ontology entry

butterworth-filter

A Butterworth filter is a human-made analog or digital filter design characterized by maximally flat frequency response in the passband, with no ripples. Parameters: (1) filter order N (determines rolloff steepness of 20·N dB/decade), (2)…

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Definition

A Butterworth filter is a human-made analog or digital filter design characterized by maximally flat frequency response in the passband, with no ripples. Parameters: (1) filter order N (determines rolloff steepness of 20·N dB/decade), (2) cutoff frequency fc (3 dB point where response drops), (3) passband ripple (zero by design), (4) stopband attenuation profile. A Butterworth filter of order N has all poles placed on a semicircle in the left half of the s-plane at equal angular intervals, yielding the flat magnitude response |H(f)|² = 1/(1+(f/fc)^(2N)). Persistence mechanism: persists through filter design textbooks (Sedra/Smith, Oppenheim), standard electronic component catalogs, SPICE model libraries, DSP implementation toolkits (MATLAB's filter design, SciPy's scipy.signal.butter), and analog circuit design handbooks. [formal: butterworth | substrate: matter | horizon: generations | explicit: yes | epoch: 0.02]

Why it is in scope

A human-made filter design standard — the classic maximally-flat magnitude-response prototype — built to persist as the reference filter family in signal-processing textbooks and design toolkits, from which analog and digital IIR filters are derived.

Names and aliases

Relations from this entry

  • cmsps9i0v06eejlssqrjcqyviSERVES →

    The Butterworth filter is a signal filter specifically designed for signal processing applications — its purpose is to provide a maximally flat frequency response in the passband for signal processing tasks. Servant (butterworth-filter) points at master (signal-processing).

  • iir-filterINSTANCE_OF →

    Pinned sense (Law 11d): the classic Butterworth design as realized recursively — the maximally-flat prototype |H(jw)|=1/sqrt(1+(w/wc)^(2N)) carried to the digital domain by bilinear transform, with poles inside the unit circle and feedback in the difference equation. That realization is a specific member of the recursive filter class: a competent speaker calls a Butterworth IIR section an IIR filter. Nearest kind (Law 11e): iir-filter — no nearer recursive-kind rung exists in the web. FIR approximations of the Butterworth magnitude are a secondary sense, not the pinned one.

  • cmsps9i0v06eejlssqrjcqyviDEPENDS_ON →

    Butterworth filter operates as a digital/analog signal processing filter; removing signal processing capability stops it from operating. The filter's computation (frequency response evaluation, pole placement) requires signal processing operations.

Relations to this entry

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Record identity

Created
Sep 2, 2026, 12:18 AM UTC
Content hash
c3ba9c917666a2bf8fedcb7330565561440c440137a3d497efc59a687019b22a

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