Esteban Tlelo-Cuautle's Advances in Analog Circuits PDF

By Esteban Tlelo-Cuautle

ISBN-10: 9533073233

ISBN-13: 9789533073231

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This is done by adding a fixator Fx(0, IB1) to the base of Q1. ii) Remove RC2 = 5 KΩ and replace it with a pairing norator RC2, as depicted in Fig. 11(b). Next, we simulate the new circuit with SPICE, and the following is the simulation results listed. 204765e+03 WinSpice 2 -> 28 Advances in Analog Circuits VBB = 5 V V CC = 5 V 413 KΩ 100 KΩ V CC VBB = 5 V 5 KΩ 413 KΩ 100 KΩ 413 KΩ Q2 RC2 Rf1 (a) Rf 2 Q2 Q1 Q1 1 KΩ RC2 Fx(0, I B1) Q1 10 KΩ 100 KΩ Q2 Fx(0, I B1) 100 KΩ VCC 100 KΩ 10 KΩ (b) 1 KΩ 100 KΩ 10 KΩ 1 KΩ (c) Fig.

Note that each fixator-norator pair is simulated by a very high gain controlled source (namely VCVS, CCVS, VCCS, CCCS, and VCCS in sequence). 6m e 1000MEG The resistance Rf is in the bias loop and part of a required AC filter as well, see [3]. 38 Advances in Analog Circuits Fig. 19. The three stage amplifier with fixator-norator pairs indicating the biasing design specs. The results from the WinSPICE simulation are shown below and listed in Table IX. TEMP=27 deg C DC analysis ... 523 mA Table IX.

This is because in circuit analysis we are given all component values and resources needed to analyze a circuit; whereas, in a design procedure there are some component values or resources to be determined in exchange for achieving some design specs. Example 1: To show how the process works, we start with a simple diode circuit depicted in Fig. 5 with an unspecified supply voltage V1. Suppose the design requirement in this example is to find the value for V1 so that the diode current reaches 1mA.

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Advances in Analog Circuits by Esteban Tlelo-Cuautle


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