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If we consider the Input and Output resisistances non-ideal, we can model an op.amp like this:
So that:Where:
- (so the voltage on )
- (so the voltage on plus the voltage on )
-
- and are the βcommon mode resistancesβ. (Ideally they are both NOT_SURE_ABOUT_THIS )
- is the βdifferential mode resisitanceβ. (Ideally we consider it )
- is the βoutput resistance, ideally itβs .
- ==Normally, an ideal op.amp. would have only for the output, however in reality, the ouput also depends on ==.
We can imagine it a connected to a resistive bridge, and here is a somewhat thevenim equivalent

- .
- . (This can also be a sensor, if we use a half or full bridge)
- βoffset voltageβ.
- is theβchanging partβ given by our sensor.
- Using this model we donβt lose the and nodes that connect the bridge to the amplifer.
The actual thevenim equivalent would have been:
- Source: Youtube.
So finally if we unite the two circuits:
- We have that the output will be (we consider a balanced bridge):NOT_SURE_ABOUT_THIS (How the fuck was this result found???), mentioned in: Lecture 11_03, Lecture 12_02, Lecture 12_03
- What are some common values for differencial input resistance, common input resistance, and output resistance, of an operational amplifier? (ChatGPT)
- The input and output resistances of an operational amplifier (op-amp) can vary depending on the specific model and manufacturer.
However, I can provide you with some typical values that you might encounter in general:
- Differential Input Resistance (β):
Commonly in the range: . - Common Input Resistance (β):
Commonly in the range: . - Output Resistance (β):
Generally low: .
- Remember, these are rough values, and actual specifications can vary.
Always refer to the datasheet of the specific operational amplifier you are working with for precise information.
If you have a particular op-amp in mind, I can provide more specific details using the mathjax format you specified.
- The input and output resistances of an operational amplifier (op-amp) can vary depending on the specific model and manufacturer.