From: Subject: 4QD-TEC: Voltage controlled amplifier circuit Date: Wed, 10 Aug 2011 10:22:59 -0700 MIME-Version: 1.0 Content-Type: multipart/related; type="text/html"; boundary="----=_NextPart_000_0009_01CC5747.7A60F1D0" X-MimeOLE: Produced By Microsoft MimeOLE V6.00.2900.6109 This is a multi-part message in MIME format. ------=_NextPart_000_0009_01CC5747.7A60F1D0 Content-Type: text/html; charset="Windows-1252" Content-Transfer-Encoding: quoted-printable Content-Location: http://www.4qdtec.com/cca.html 4QD-TEC: Voltage controlled amplifier circuit
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4QD-TEC
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4QD-TEC Electronics Circuits Reference Archive
Voltage = controlled=20 amplifier

In truth this, like many (most) VCAs is really a current controlled = amplifier=20 but there is really not too much difference since if you want to turn a = CCA into=20 a VCA you simply feed the current input from a voltage via a voltage to = current=20 converter (a.k.a. 'resistor').=20

There are a load of different ways of controlling gain: JFETS are = common,=20 Light dependant resistors are easy to use. There are magnetoresistors. = You can=20 also use almost any semiconductor.=20

This one uses a diode bridge. This is possibly one of the oldest = techniques=20 so, perhaps, today one of the less usual - which should make it more=20 interesting! The circuit is is two parts: the controlled amplifier, = followed by=20 the controlling circuit.=20

3Dimages/Cca1.gif

The first thing that may strike you is the absence of ICs. You may be = getting=20 the erroneous idea that the author doesn't like ICs! If you feel that = way, then=20 the good news is that the pecked box contains an operational amplifier=20 (described elsewhere in this site). In fact the original circuit was = designed=20 around a CA301. This was back in 1977 when 'op amp' meant 741. The 301 = was a=20 great improvement in performance - but my four transistor circuit gave = better=20 performance than either! In any case - most people will learn more about = basic=20 electronics by using discrete components. The choice is yours.=20

The circuit is quite simple: the input is fed into a 100:1 attenuator = (47K=20 and 470R) to the non-inverting op-amp input. The feedback is via another = 47K=20 with the diode bridge forming the gain defining resistor from inverting = input to=20 0v. The op-amp is fed from a split supply (10 - 0 - 10v or thereabouts). =

Performance control range: The maximum range of the control is = determined by=20 the performance of the op-amp. If you are trying to get 60dB control = range you=20 need a good, low noise op-amp: the discrete one in the circuit is good = enough to=20 give 60dB range. 60dB range resulted by varying the diode bridge current = over=20 the range 1microamp to 5 milliamps. 40dB was given over a 35microamp to=20 5milliamp control range.The 301 of the original one was not quite so = good. To=20 get really good control range it may be necessary to match the diodes in = the=20 bridge.=20

Noise: for a good control range you will need a low noise op-amp. Low = noise=20 transistors can easily be used in the discrete transistor op-amp but = there is a=20 slight problem with low frequency noise caused by the Vbe offset = charging the=20 10mu cap in the feedback circuit. With a high performance, low noise = op-amp you=20 should be able to get away without this capacitor. With the capacitor = present=20 you must not change the gain control quickly.Also for low noise you must = closely=20 match the diodes in the bridge.=20

Matching: the original circuit was tested with four stages such as = you might=20 use with surround sound. With a little bit of care the four amps can = give a=20 matching as close as 1dB over a 60dB range. Matching between amplifiers = is=20 controlled by matching of the control current sources - which leads us = on to the=20 next bit of the circuit....=20

3Dimages/Cca2.gif

The second circuit is a biasing system: its two bias lines can = control=20 several gain stages. Essentially it is two complementary current mirrors = controlled by a single potentiometer. You can get 40dB range from the = amplifier=20 without much trouble but you may need closely matched resistors for the = two=20 sources to get 60dB control range. It is not always convenient to = control a set=20 of gain stages from one potentiometer - you may wish to use a signal - = the=20 output of a previous stage for instance. Circuit 3 shows a way of doing = it. The=20 circuit is controlled by the input current via two sets of current = mirrors. If=20 you want to read more about current mirrors - there is a tutorial = elsewhere on=20 this site.=20

Both control stages should give good results but you may need to = match=20 positive and negative mirrors or you may get problems.=20

Expected performance. No guarantees here - the circuit was only = prototyped,=20 never produced in quantity but you should easily get a matching between = stages=20 of +/-1dB over 40dB range with 0.05% distortion and -55dB signal to = noise ratio.=20 Much will depend on the op-amp you use.=20

As usual let us know of any queries/complaints/suggestions/problems. = We also=20 like to hear if you find the circuit useful/interesting. Even if only to = point=20 out a spelling mistake - there are more browsers checking than could = ever be=20 duplicated by proof-reading! Enjoy it.=20


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=A9 1996-2010 4QD-TEC
Page's Author: = Richard Torrens=20
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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