From: Subject: 4QD-TEC: Audio preamplifier circuits Date: Wed, 10 Aug 2011 10:25:01 -0700 MIME-Version: 1.0 Content-Type: multipart/related; type="text/html"; boundary="----=_NextPart_000_000B_01CC5747.C33ED070" X-MimeOLE: Produced By Microsoft MimeOLE V6.00.2900.6109 This is a multi-part message in MIME format. ------=_NextPart_000_000B_01CC5747.C33ED070 Content-Type: text/html; charset="Windows-1252" Content-Transfer-Encoding: quoted-printable Content-Location: http://www.4qdtec.com/preamp.html 4QD-TEC: Audio preamplifier circuits
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4QD-TEC: Electronics Circuits Reference Archive
4QD-TEC: Audio=20 preamplifier circuits

There are thousands of pre-amplifier circuits. These are three which = have=20 interested me and are a little different.=20

Intercom preamp

A very convenient way of making an intercom is to use a loudspeaker = as a=20 microphone. This is a preamp with a low input impedance suitable for = this=20 purpose.=20

3D"diagram:

The circuit is so simple that there is little to say about it, but it = gives=20 very good results. Tr1 is operated in grounded base mode with input to = its=20 emitter to give low impedance input. The values shown give correct = operation=20 from 9v. If operating from other voltages you may wish to alter the 1K8 = resistor=20 to give symmetrical clipping at high levels.=20

If you wish to switch the speaker (to use the same speaker as a = speaker and=20 as a mic, then you should arrange the switching to short the speaker out = before=20 disconnecting it. This is because the d.c. through Tr1 also flows = through the=20 speaker so removing the speaker will upset the d.c. conditions and cause = a large=20 thump in the speaker. You could of course fit a 1K resistor in the = emitter and=20 use a 100=B5F capacitor to couple the speaker.=20

High quality microphones also tend to be low impedance, typically = around 600=20 ohms. This is a low input impedance, high quality pre-amplifier of the = sort that=20 could be used in a stage mixing desk. In fact that was the purpose for = which it=20 was designed, but never used because I soon after left the company.=20

3D"diagram:

The circuit uses a dual rail power supply - convenient because there = were=20 many op-amps in the machine. Note that Tr1 is a PNP transistor. = Theoretically=20 PNP transistors can have lower noise level than NPNs.=20

Tr2 amplifies Tr1's output. Tr3 is simply a constant current = collector load=20 for Tr2, with its current controlled by the 180R emitter resistor. This = can be=20 altered to give more current to feed lower impedance output loads.=20

Overall negative feedback is applied via the 100K pot (log is best) = which is=20 the gain control. Note that the feedback loop includes the input and = output=20 capacitors so the low frequency response is excellent.=20

The 150K resistor is present to charge up the input and output = capacitors to=20 avoid thumps when inserting/withdrawing a microphone. The voltage across = these=20 two capacitors is very small in any case (about 1/2 volt).=20

You can of course do this with an op-amp. One advantage of = transistors is=20 that you can easily change a noisy one. Selecting a low noise op-amp may = not be=20 so easy. Also of course most constructors will have suitable = transistors. You=20 may not have a suitable low noise op-amp to hand!=20

Universal high quality preamp

The third circuit is one I was working on as I left the audio company = but is=20 seems to be potentially very useful. It should be simple to use it as a = low=20 impedance mic amp or as a high input impedance preamp for mic or, with a = suitable RIAA equalization, for phono pickup or similar. It can even be = used as=20 a balanced input mic preamp.=20

3D"diagram:

If you have been browsing this site you may notice that it is the 4=20 transistor op-amp circuit shown on the index page and at the heart of = the low distortion power = amplifier.=20

R1 will define the impedance if the high impedance input - say 100K. = R4=20 charges the output capacitor only. R3 defines the operating current in = Tr4, say=20 1K for 500=B5A or so.=20

The feedback paths have been separated: d.c. feedback is via the two = 100K=20 resistors, which are decoupled so they don't affect the a.c. feedback. = A.c.=20 feedback if via the network Zf, which can be RIAA for phono or whatever = as=20 required.=20


Other relevant pages

Ultrasonics - a page = on=20 intruded detectors and remote control has circuits used to amplify sound = from=20 microphones for ultrasonics. These can be adapted for audio use.=20


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Page Information

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