Derive an expression for \(v_{out}\) in terms of \(v_{in}\) for the circuit shown in Fig. 6.8.
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Textbook Solutions for Engineering Circuit Analysis
Question
Design a circuit which provides an output voltage \(v_{out}\) based on the behavior of another voltage \(v_{in}\), such that
\(v_{\text {out }}=\left\{\begin{aligned} +2.5 \mathrm{~V} &\ \ \ \ \ \ \ \ \ v_{\text {in }}>1 \mathrm{~V} \\ 1.2 \mathrm{~V} &\ \ \ \ \ \ \ \ \text { otherwise } \end{aligned}\right.\)
Solution
The first step in solving 6 problem number 47 trying to solve the problem we have to refer to the textbook question: Design a circuit which provides an output voltage \(v_{out}\) based on the behavior of another voltage \(v_{in}\), such that\(v_{\text {out }}=\left\{\begin{aligned} +2.5 \mathrm{~V} &\ \ \ \ \ \ \ \ \ v_{\text {in }}>1 \mathrm{~V} \\ 1.2 \mathrm{~V} &\ \ \ \ \ \ \ \ \text { otherwise } \end{aligned}\right.\)
From the textbook chapter The Operational Ampli?er you will find a few key concepts needed to solve this.
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