a) Show the connection of an LM124 quad op-amp as a three-stage amplifier with gains of -10, +25, and +20. Use a 470-ka feedback resistor for all stages. What will be the output voltage for an input voltage of 20 uV? b) Show the connection of two op-amp stages using an LM358 IC to provide outputs that are -25 and 40 times larger than the input. Use a feedback resistor, Rr-147 ka, in all stages. If the input voltage is 10 uV, what will be the output voltage for each stage? Circuit Design Assumptions Calculation

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a) Show the connection of an LM124 quad op-amp as a three-stage amplifier with
gains of -10, +25, and +20. Use a 470-ka feedback resistor for all stages. What
will be the output voltage for an input voltage of 20 uV?
b) Show the connection of two op-amp stages using an LM358 IC to provide
outputs that are -25 and 40 times larger than the input. Use a feedback resistor,
Rr-147 ka, in all stages. If the input voltage is 10 uV, what will be the output
voltage for each stage?
Circuit Design
Assumptions
Calculation
Transcribed Image Text:a) Show the connection of an LM124 quad op-amp as a three-stage amplifier with gains of -10, +25, and +20. Use a 470-ka feedback resistor for all stages. What will be the output voltage for an input voltage of 20 uV? b) Show the connection of two op-amp stages using an LM358 IC to provide outputs that are -25 and 40 times larger than the input. Use a feedback resistor, Rr-147 ka, in all stages. If the input voltage is 10 uV, what will be the output voltage for each stage? Circuit Design Assumptions Calculation
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Given,

The gain values are -10, +25, and +20. 

The feedback resistor is 

Rf=470 

The input voltage is 

Vin=20 μV

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