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[[Image:Zobel (16) Zobel loudspeaker impedance correction.svg|thumb|right|300px|Boucherot cell correcting loudspeaker impedance]]
[[Image:Zobel (16) Zobel loudspeaker impedance correction.svg|thumb|right|300px|Boucherot cell correcting loudspeaker impedance]]


A '''Boucherot cell''' (or '''Zobel network''') is an [[electronic filter]], used in [[audio amplifier]]s to damp high frequency oscillations that might occur in the absence of loads at high frequencies. Named after [[Paul Boucherot]] a Boucherot cell typically consists of a [[resistor]] and [[capacitor]] in series, that is usually placed across a load, for stability.<ref>[http://www.rane.com/par-b.html#Boucherot Rane Professional Audio Reference Home]</ref>
A '''Boucherot cell''' (or '''Zobel network''') is an [[electronic filter]], used in [[audio amplifier]]s to damp high frequency oscillations that might occur in the absence of loads at high frequencies. Named after [[Paul Boucherot]] a Boucherot cell typically consists of a [[resistor]] and [[capacitor]] in series, that is usually placed across a load, for stability.<ref>[http://www.aes.org/par/b/#Boucherot AES Professional Audio Reference Home]</ref>


It is commonly seen in analog power amplifiers at the output of the driver stage, just before the output inductor. The speaker coil inductance of a loudspeaker generates a rising impedance which is worsened by the output inductor generally found in analog power amplifiers; the cell is used to limit this impedance.<ref name="rane">[http://www.rane.com/par-z.html#Zobel Rane Professional Audio Reference Home]</ref>
It is commonly seen in analog power amplifiers at the output of the driver stage, just before the output inductor. The speaker coil inductance of a loudspeaker generates a rising impedance which is worsened by the output inductor generally found in analog power amplifiers; the cell is used to limit this impedance.<ref name="rane">[http://www.aes.org/par/z/#Zobel AES Professional Audio Reference Home]</ref>


The documentation for some power operation amplifiers suggests the use of a "Boucherot cell between outputs and ground or across the load".<ref>ST, [http://www.st.com/internet/com/TECHNICAL_RESOURCES/TECHNICAL_LITERATURE/DATASHEET/CD00000055.pdf LOW DROP DUAL POWER OPERATION AMPLIFIERS], July 2003, Top of Page 5, right column.</ref>
The documentation for some power operation amplifiers suggests the use of a "Boucherot cell between outputs and ground or across the load".<ref>ST, [http://www.st.com/internet/com/TECHNICAL_RESOURCES/TECHNICAL_LITERATURE/DATASHEET/CD00000055.pdf LOW DROP DUAL POWER OPERATION AMPLIFIERS], July 2003, Top of Page 5, right column.</ref>

Revision as of 01:24, 31 October 2017

This article relates to loudspeaker driving. See Zobel network for a more general description of telecommunications usage
Boucherot cell correcting loudspeaker impedance

A Boucherot cell (or Zobel network) is an electronic filter, used in audio amplifiers to damp high frequency oscillations that might occur in the absence of loads at high frequencies. Named after Paul Boucherot a Boucherot cell typically consists of a resistor and capacitor in series, that is usually placed across a load, for stability.[1]

It is commonly seen in analog power amplifiers at the output of the driver stage, just before the output inductor. The speaker coil inductance of a loudspeaker generates a rising impedance which is worsened by the output inductor generally found in analog power amplifiers; the cell is used to limit this impedance.[2]

The documentation for some power operation amplifiers suggests the use of a "Boucherot cell between outputs and ground or across the load".[3]

Additionally, Boucherot cells are sometimes used across the bass driver (and mid-range) of a speaker system, in order to maintain a more constant driving point impedance as "seen" by a passive crossover. In this specific arrangement, the Boucherot cell is sometimes also known as a Zobel network.[2]

Some loudspeaker crossover designs aim to stabilize impedance at high frequencies by including Zobel networks.[4]

See also

References

  1. ^ AES Professional Audio Reference Home
  2. ^ a b AES Professional Audio Reference Home
  3. ^ ST, LOW DROP DUAL POWER OPERATION AMPLIFIERS, July 2003, Top of Page 5, right column.
  4. ^ Bell Labs Journal: Zobel, O. J., "Theory and Design of Uniform and Composite Electric Wave Filters," Bell Sys. Tech. J., Vol. 2, pp. 1-46, Jan 1923.

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