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<DIV><FONT size=2 face=Arial><SPAN class=893392018-15122020>Hey
Team,</SPAN></FONT></DIV>
<DIV><FONT size=2 face=Arial><SPAN
class=893392018-15122020></SPAN></FONT> </DIV>
<DIV><FONT size=2 face=Arial><SPAN class=893392018-15122020>I've been thinking
about this panning thing, and I came up with the following very simple pot-based
panning circuit:</SPAN></FONT></DIV>
<DIV><FONT size=2 face=Arial><SPAN
class=893392018-15122020></SPAN></FONT> </DIV>
<DIV><FONT size=2 face=Arial><SPAN class=893392018-15122020><IMG border=0
hspace=0 alt="" align=baseline
src="cid:893392018@15122020-2191"></SPAN></FONT></DIV>
<DIV><FONT size=2 face=Arial><SPAN
class=893392018-15122020></SPAN></FONT> </DIV>
<DIV><FONT size=2 face=Arial><SPAN class=893392018-15122020>The gain responses
of this circuit are shown below, and compared with sin and cos
responses:</SPAN></FONT></DIV>
<DIV><FONT size=2 face=Arial><SPAN
class=893392018-15122020></SPAN></FONT> </DIV>
<DIV><FONT size=2 face=Arial><SPAN class=893392018-15122020><IMG border=0
hspace=0 alt="" align=baseline
src="cid:893392018@15122020-2198"></SPAN></FONT></DIV>
<DIV><FONT size=2 face=Arial><SPAN
class=893392018-15122020></SPAN></FONT> </DIV>
<DIV><FONT size=2 face=Arial><SPAN class=893392018-15122020>I believe that I can
create a voltage-controlled version of this simple pot panning circuit fairly
easily by replacing the pot with a pair of modified Irwin 2164 circuits. I
did this for the Morphing LFO.</SPAN></FONT></DIV>
<DIV><FONT size=2 face=Arial><SPAN
class=893392018-15122020></SPAN></FONT> </DIV>
<DIV><FONT size=2 face=Arial><SPAN class=893392018-15122020>Would this response
suffice as an "equal power" panner?</SPAN></FONT></DIV></BODY></HTML>