Superposition: Difference between revisions

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==Dissecting an instrumentation quality differential amplifier via superposition==
==Dissecting an instrumentation quality differential amplifier via superposition==
[[Image:Differential_Amplifier_3.PNG‎|thumb|400px|Differential Amplifier ]]

*Instead of trying to analyze the whole amplifier, we will break it down into two stages.
**Stage 1: A differential input/output amplifier
**Stage 2: A differential input amplifier
===Stage 1===
*Turn <math>V_b\,</math> off first (arbitrarily chosen). Writing a nodal equation at the input terminals and solving for the output voltages.


==Questions==
==Questions==

Revision as of 16:57, 14 January 2010

Superposition

Superposition states that "any branch of a bilateral linear circuit having more than one independent source equals the algebraic sum of the responses caused by each independent source acting alone, while all other independent sources are replaced by their internal impedances."<ref> Wikipedia - Superposition </ref>

  • Superposition allows us to analyze how each input source impacts the output.
  • While building and debugging circuits, this is an invaluable tool. You can run through your circuit step-by-step to determine where your problems occurred.

Dissecting an instrumentation quality differential amplifier via superposition

Differential Amplifier
  • Instead of trying to analyze the whole amplifier, we will break it down into two stages.
    • Stage 1: A differential input/output amplifier
    • Stage 2: A differential input amplifier

Stage 1

  • Turn off first (arbitrarily chosen). Writing a nodal equation at the input terminals and solving for the output voltages.

Questions

  • What are the internal impedances of voltage and current sources?
  • Should I rephrase Wikipedia into more layman terms?

References

<references/>