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electronic devices and amplifier circuits with matlab applications - steven t. karris

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[...]... C-6 Miller’s Theorem C-10 Electronic Devices and Amplifier Circuits with MATLAB Applications Orchard Publications vii Chapter 1 Basic Electronic Concepts and Signals E lectronics may be defined as the science and technology of electronic devices and systems Electronic devices are primarily non-linear devices such as diodes and transistors and in general integrated circuits (ICs)... electric filters, the low-pass and high-pass filters have only one Electronic Devices and Amplifier Circuits with MATLAB Applications Orchard Publications 1-5 Chapter 1 Basic Electronic Concepts and Signals cutoff frequency whereas band-pass and band-stop filters have two We may think that low-pass and high-pass filters have also two cutoff frequencies where in the case of the low-pass filter the second... MATLAB MATLAB and Simulink® A-1 Command Window A-1 Roots of Polynomials A-3 vi Electronic Devices and Amplifier Circuits with MATLAB Applications Orchard Publications Polynomial Construction from Known Roots .A-5 Evaluation of a Polynomial at Specified Values A-6 Rational Polynomials A-8 Using MATLAB to Make Plots A-11... Single-Stage and Cascaded Amplifiers Properties of Signal Waveforms 8-1 The Transistor Amplifier at Low Frequencies 8-5 The Transistor Amplifier at High Frequencies 8-9 Combined Low- and High-Frequency Characteristics 8-1 4 Frequency Characteristics of Cascaded Amplifiers 8-1 4 Overall Characteristics of Multistage Amplifiers 8-2 6 Electronic Devices and Amplifier. .. Amplifier Circuits with MATLAB Applications Orchard Publications v Amplification and Power Gain in Three or More Cascaded Amplifiers 8-3 2 Summary 8-3 4 Exercises 8-3 6 Solutions to End-of-Chapter Exercises 8-3 9 Chapter 9 Tuned Amplifiers Introduction to Tuned Circuits 9-1 Single-tuned Transistor Amplifier 9-8 Cascaded Tuned Amplifiers... p ( t ) = Ri ( t ) (1.4) and 1 P ave = -T 1-2 ∫ T 0 1 p ( t ) dt = -T T ∫ 0 Ri 2 dt R = T T ∫ i dt 2 (1.5) 0 Electronic Devices and Amplifier Circuits with MATLAB Applications Orchard Publications Amplifiers Equating (1.3) with (1.5) we get R 2 RI eff = T T ∫0 i d t 2 or 1 2 I eff = -T T ∫0 i d t 2 (1.6) or 1 -T I RMS = I eff = T ∫0 i d t 2 2 Ave ( i ) = (1.7) where RMS stands for Root Mean Squared,... 7-1 8 The Fixed-Bias Flip-Flop 7-1 9 The Self-Bias Flip-Flop 7-2 2 Triggering Signals for Flip-Flops 7-2 8 Present Technology Bistable Multivibrators 7-3 0 The Schmitt Trigger 7-3 0 Summary 7-3 3 Exercises 7-3 4 Solutions to End-of-Chapter Exercises 7-3 7 Chapter 8 Frequency Characteristics of Single-Stage... engineering applications we are interested in the nature of the poles * The zeros and poles can be distinct (different from one another), complex conjugates, repeated, of a combination of these For details please refer to Circuit Analysis II with MATLAB Applications, ISBN 0-9 70951 1-5 -9 , Orchard Publications Electronic Devices and Amplifier Circuits with MATLAB Applications Orchard Publications 1-1 1 Chapter... (ECL) 6-2 4 NMOS Logic Gates 6-2 8 The NMOS Inverter 6-3 1 The NMOS NAND Gate 6-3 1 The NMOS NOR Gate 6-3 2 CMOS Logic Gates 6-3 2 The CMOS Inverter 6-3 3 The CMOS NAND Gate 6-3 4 The CMOS NOR Gate 6-3 5 Buffers, Tri-State Devices, and Data Buses 6-3 5 Present and Future Technologies... Then, use 3 8 MATLAB to plot the magnitude of A v for the range 10 ≤ ω ≤ 10 From the plot, estimate the 3 dB cutoff frequency * Readers who have a copy of Circuit Analysis I, ISBN 0-9 70951 1-2 -4 , are encouraged to review Chapter 4 on equivalent circuits of operational amplifiers 1-1 6 Electronic Devices and Amplifier Circuits with MATLAB Applications Orchard Publications The Voltage Amplifier Equivalent . h-Equivalent Circuit for the Common-Emitter Transistor 3-6 5 The T- Equivalent Circuit for the Common-Emitter Transistor 3-7 0 The h-Equivalent Circuit for the Common-Collector (Emitter-Follower) Transistor. Oscillator 5-5 0 Digital-to-Analog Converters 5-5 2 Analog-to-Digital Converters 5-5 6 The Flash Analog-to-Digital Converter 5-5 7 The Successive Approximation Analog-to-Digital Converter 5-5 8 The Dual-Slope. Exercises 5-7 8 Chapter 6 Integrated Circuits The Basic Logic Gates 6-1 Positive and Negative Logic 6-1 The Inverter 6-2 The AND Gate 6-6 The OR Gate 6-8 The NAND Gate 6-9 The NOR Gate 6-1 3 The Exclusive

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