Understanding the Wien Bridge Oscillator Circuit

AI Thread Summary
The discussion focuses on understanding the Wien Bridge Oscillator circuit, specifically the conditions for oscillation and the mathematical principles behind it. The user expresses confusion about why oscillations occur and seeks clarification on the role of resistors R1 and R2 in the circuit's behavior. A PowerPoint presentation is shared as a resource, but there is uncertainty regarding the correct voltage ratio and its implications. The primary inquiry revolves around why the circuit generates sinusoidal voltage despite understanding the occurrence of oscillations. The thread highlights the need for clear explanations and reliable resources to deepen comprehension of the Wien Bridge Oscillator.
Omri
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Hi all,

I am doing a project on electronics about the Wien Bridge Oscillator. I learned about impedances and operational amplifiers and now I'm trying to understand the Wien Bridge circuit. I'm having some problems understanding it and I would be very happy to get some help. I still have not understood why oscillations occur in this circuit, what are the conditions for oscillations to occur, and how it works mathematically. I would be extremely thankful if anyone could instruct me or relate me to some good material about it.

EDIT: to be more specific, I've been trying to understand the analysis here:
http://en.wikipedia.org/wiki/Wien_bridge_oscillator"
If it gives some more specific reference... but I am totally willing to try other materials as well.

Thanks a lot,
Omri
:smile:
 
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Engineering news on Phys.org
Can anyone please help...?
 
Check out this informative Powerpoint presentation: http://jeremya.com/engr/engr332/WienBridge-Oscillator.ppt
 
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Correct me if I'm wrong, but it looks like the ratio should be:
\frac{V_O}{V_A} = \frac{Z_S + Z_P}{Z_P}
and the presentation says it's inverse. In addition, I don't really understand how the resistors R1 and R2 affect the system - am I supposed to multiply the right hand side of the equation above by 1 + \frac{R_2}{R_1} to get it right?
The most significant question I have is, why does the circuit create sinusoidal voltage? I can get why oscillations will occur but I don't get why they should be sinusoidal.

Thanks for you help :-)
 
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