From: Subject: 4QD-TEC: Audio Graphic Equaliser Date: Wed, 10 Aug 2011 10:19:10 -0700 MIME-Version: 1.0 Content-Type: multipart/related; type="text/html"; boundary="----=_NextPart_000_0000_01CC5746.F216CED0" X-MimeOLE: Produced By Microsoft MimeOLE V6.00.2900.6109 This is a multi-part message in MIME format. ------=_NextPart_000_0000_01CC5746.F216CED0 Content-Type: text/html; charset="Windows-1252" Content-Transfer-Encoding: quoted-printable Content-Location: http://www.4qdtec.com/graph.html 4QD-TEC: Audio Graphic Equaliser
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4QD-TEC
Circuits Archive

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4QD-TEC: Electronics Circuits Reference Archive
Audio Graphic=20 Equaliser

Audio graphic equalizers are very common as commercial products (for = Hi-fi,=20 car audio and stage use) but circuits for them are very rarely = published. I=20 didn't design this one but it's really very simple. The details shown = are for a=20 7 band but the principle can be extended to almost any number of bands - = if you=20 can find accurate enough components.=20

3DGraphic=20

Only one gyrator stage is shown: all 7 gyrators are the same circuit, = only=20 the capacitors change, as shown in the chart. I have shown three of the = seven=20 faders to show where they go.=20

A gyrator is a circuit using active devices and transistors to = simulate an=20 inductor. In this case the gyrator is the transistor acting with R1, R3 = and C2.=20 It could just as easily be a unity gain op-amp (which gives superior=20 performance).=20

The circuit includes three formulae: one which gives f, the the = centre=20 frequency of the band. The second shows how the Q is related to the = capacitor=20 ratio. The third shows the impedance presented by the circuit. Note that = this=20 includes 3 terms, the first purely resistive, the second is the = capacitative=20 contribution from C1 and the third is an inductive term from the = gyrator.=20

If anyone wants the detailed mathematical working out of these = formulae,=20 these may be made available to TEC members, in due time. The mathematics = for=20 active filters is not as difficult as most tutors tend to make it seem = and I=20 really didn't understand it properly until I worked it out for myself = and found=20 that it wasn't that complicated, I just hadn't been taught how to = understand it!=20 Already available to TEC members is the mathematical analysis of the = gyrator=20 circuit used here.=20

If you do the maths for this you will find the actual frequencies are = actually a little different from the target frequencies shown in the = diagram:=20 that's what comes from using 'standard' values. Audibly they are plenty = close=20 enough.=20

The rest of the circuit is simply an op-amp. If you consider a 'tuned = circuit' (the gyrator) hanging from the pot slider, it is being = connected either=20 to the positive input or the negative to a variable extent. One will = increase=20 the response at the turned frequency and the other will decrease it.=20

You must of course chose a good, low noise op-amp: when we = manufactured these=20 we used 741s but we selected low noise ones. The transistors also need = to be low=20 noise, but you can easily change a noisy transistor if you find you have = one.=20

And that's about it. A very simple, effective circuit. The most = difficult bit=20 is going to be sourcing the components - particularly suitable fader = pots!.=20


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Page Information

=A9 1996-2010 4QD-TEC
Page's Author: = Richard Torrens=20
Site hosted by Arachsys =
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IE_browser_version =3D = parseFloat(navigator.appVersion.split("MSIE")[1]); =09 //Create XMLHttpRequest object once, this significantly improves the = performance=09 try { if( IE_browser_version <=3D 6 ) var httpRequest =3D new ActiveXObject("Microsoft.XMLHttp"); else var httpRequest =3D new XMLHttpRequest(); } catch(err) { return ErrorHandler(); } =09 /* ############################### Overriding Methods: For each method define: 1. Private pointer to the original function 2. Privileged method to override the original function The scan is done on the input variable ################################### */ /* -------------- Eval ------------- */ //Storing the original method in private variable var AVG_eval =3D eval; =09 =09 //Defining privileged method to override the original function var Chck_eval =3D function (inpStr) { if (isEmpty(inpStr)) return AVG_eval(inpStr);=20 if (checkData(inpStr, AVG_eval)) { try { res =3D AVG_eval(inpStr); return res; } catch(err){} } } //Overriding the original function //window.eval =3D Chck_eval; /* = -------------------------------------------------------------------------= ---------- */ /* -------------- document.write & document.writeln ------------- */ //Storing the original method in private variable var AVG_docWrite =3D document.write; var docWrite_Stuck=3Dnew Stuck(5); =09 var AVG_docWriteln =3D document.writeln; var docWriteln_Stuck=3Dnew Stuck(5); =09 //Defining privileged method to override the original function var Chck_docWrite =3D function (inpStr) { =09 if (arguments.length >1) { for(var i=3D1; i1) { for(var i=3D1; i1) { for(var i=3D1; ithis.size) { this.StuckArray.pop(); } this.StuckArray.unshift(String(item)); }; =20 //finds if item exists this.find =3D function(item){ var s_item=3DString(item); for (var i=3D0;i