Consider the circuit in Figure P17.5. (a) Determine (R_{C 2}) such that (v_{2}=) (-1 mathrm{~V}) when (Q_{2})
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Consider the circuit in Figure P17.5.
(a) Determine \(R_{C 2}\) such that \(v_{2}=\) \(-1 \mathrm{~V}\) when \(Q_{2}\) is on and \(Q_{1}\) is off.
(b) For \(v_{\text {in }}=-0.7\), determine \(R_{C 1}\) such that \(v_{1}=-1 \mathrm{~V}\).
(c) For \(v_{\text {in }}=-0.7 \mathrm{~V}\), find \(v_{O 1}\) and \(v_{O 2}\), and for \(v_{\text {in }}=\) \(-1.7 \mathrm{~V}\), find \(v_{O 1}\) and \(v_{O 2}\).
(d) Find the power dissipated in the circuit for (i) \(v_{\text {in }}=-0.7 \mathrm{~V}\) and for (ii) \(v_{\text {in }}=-1.7 \mathrm{~V}\).
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Related Book For
Microelectronics Circuit Analysis And Design
ISBN: 9780071289474
4th Edition
Authors: Donald A. Neamen
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