Basic Op Amp circuits: Difference between revisions

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(New page: =Basic Op Amp Circuits= thumb|300px|Buffer Amplifier thumb|300px|Inverting Amplifier *Buffer amplifier is used to transfer v...)
 
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[[Image:BufferAmplifier.PNG|thumb|300px|Buffer Amplifier ]]
[[Image:BufferAmplifier.PNG|thumb|300px|Buffer Amplifier ]]
[[Image:InvertingAmplifier.png|thumb|300px|Inverting Amplifier]]
[[Image:InvertingAmplifier.png|thumb|300px|Inverting Amplifier]]
[[Image:Summing_Amplifier.PNG‎|thumb|300px|Summing Amplifier]]
*Buffer amplifier is used to transfer voltage but not current to the following circuit. This amplifier can be used to negate the loading effects. No current flows through the amplifier, thus there is no voltage drop through the input resistor (going to the buffer amplifier).
*Buffer amplifier is used to transfer voltage but not current to the following circuit. This amplifier can be used to negate the loading effects. No current flows through the amplifier, thus there is no voltage drop through the input resistor (going to the buffer amplifier).
*Inverting amplifier uses negative feedback to invert and amplify voltage. Using nodal analysis at the negative terminal, the gain is found to be <math>-\frac{R_2}{R_1}</math>
*Inverting amplifier uses negative feedback to invert and amplify voltage. Using nodal analysis at the negative terminal, the gain is found to be <math>-\frac{R_2}{R_1}</math>

Revision as of 12:50, 11 January 2010

Basic Op Amp Circuits

Buffer Amplifier
Inverting Amplifier
Summing Amplifier
  • Buffer amplifier is used to transfer voltage but not current to the following circuit. This amplifier can be used to negate the loading effects. No current flows through the amplifier, thus there is no voltage drop through the input resistor (going to the buffer amplifier).
  • Inverting amplifier uses negative feedback to invert and amplify voltage. Using nodal analysis at the negative terminal, the gain is found to be