Object/Class

de.sciss.synth.ugen

AmpCompA

Related Docs: class AmpCompA | package ugen

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object AmpCompA extends Serializable

A UGen that produces a psychoacoustic amplitude compensation factor for a given frequency. It uses the A-weighting curve that is based on the Fletcher-Munson curve for rather low volume sounds (40 phon).

Only the freq parameter can be modulated, the other parameters are read at initialization time only.

Examples
// activate with mouse button
play {
  val freq = MouseX.kr(300, 15000, 1)
  val mod  = freq * SinOsc.ar(MouseY.kr(3, 200, 1)).madd(0.5, 1)
  val corr = AmpCompA.ar(mod, 300) * 2
  val amp  = Select.ar(MouseButton.kr(lag = 0), Seq(DC.ar(1), corr))
  SinOsc.ar(mod) * 0.1 * amp
}
See also

AmpComp

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  1. final def !=(arg0: Any): Boolean

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  2. final def ##(): Int

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  3. final def ==(arg0: Any): Boolean

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  4. def ar(freq: GE = 1000.0f, root: GE = 0.0f, minAmp: GE = 0.32f, rootAmp: GE = 1.0f): AmpCompA

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    freq

    the frequency in Hertz for which to determine the compensation factor

    root

    the root frequency in Hertz, relative to which the curve is calculated. This is usually lowest expected frequency. (init-time only)

    minAmp

    amplitude at the minimum point of the curve. This is the factor output when freq is approx. 2512 Hz. (init-time only)

    rootAmp

    amplitude at the root frequency of the curve. This is the factor output when freq == root . (init-time only)

  5. def ar: AmpCompA

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  6. final def asInstanceOf[T0]: T0

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  7. def clone(): AnyRef

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  9. def equals(arg0: Any): Boolean

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  10. def finalize(): Unit

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  11. final def getClass(): Class[_]

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  12. def hashCode(): Int

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  13. def ir(freq: GE = 1000.0f, root: GE = 0.0f, minAmp: GE = 0.32f, rootAmp: GE = 1.0f): AmpCompA

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    freq

    the frequency in Hertz for which to determine the compensation factor

    root

    the root frequency in Hertz, relative to which the curve is calculated. This is usually lowest expected frequency. (init-time only)

    minAmp

    amplitude at the minimum point of the curve. This is the factor output when freq is approx. 2512 Hz. (init-time only)

    rootAmp

    amplitude at the root frequency of the curve. This is the factor output when freq == root . (init-time only)

  14. def ir: AmpCompA

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  15. final def isInstanceOf[T0]: Boolean

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  16. def kr(freq: GE = 1000.0f, root: GE = 0.0f, minAmp: GE = 0.32f, rootAmp: GE = 1.0f): AmpCompA

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    freq

    the frequency in Hertz for which to determine the compensation factor

    root

    the root frequency in Hertz, relative to which the curve is calculated. This is usually lowest expected frequency. (init-time only)

    minAmp

    amplitude at the minimum point of the curve. This is the factor output when freq is approx. 2512 Hz. (init-time only)

    rootAmp

    amplitude at the root frequency of the curve. This is the factor output when freq == root . (init-time only)

  17. def kr: AmpCompA

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  18. final def ne(arg0: AnyRef): Boolean

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  19. final def notify(): Unit

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  20. final def notifyAll(): Unit

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  21. final def synchronized[T0](arg0: ⇒ T0): T0

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  22. def toString(): String

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  23. final def wait(): Unit

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  24. final def wait(arg0: Long, arg1: Int): Unit

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  25. final def wait(arg0: Long): Unit

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