Fundamentals of Modern Electric Circuit Analysis and Filter Synthesis
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Fundamentals of Modern Electric Circuit Analysis and Filter Synthesis

Fundamentals of Modern Electric Circuit Analysis and Filter Synthesis A Transfer Function Approach by Afshin Izadian | PDF Free Download.

Fundamentals of Modern Electric Circuit Contents

  1. Introduction to Electric Circuits
  2. Component Voltage and Current Laws
  3. Waveform and Source Analyses
  4. Circuit Response Analysis
  5.  Steady-State Sinusoidal Circuit Analysis
  6. Mutual Inductance
  7. Laplace Transform and Its Application in Circuits
  8. Transfer Functions
  9. Passive Filters
  10.  Operational Amplifiers
  11. Active Filters
  12. Two-Port Networks

Preface to Electric Circuit Analysis and Filter Synthesis

The electric circuits are perhaps the fundamental step toward understanding complex electrical engineering concepts.

A strong knowledge of circuit analysis leads to advanced techniques that are moving the industry forward.

However, the traditional circuits as known by many of the educators have changed.

For instance, most of the circuits are now being combined in Integrated Circuits and are built on chips.

Strong processors are now accomplishing most of the operations in software and sometimes exceed performances that were previously just expected from hardware implementations.

Therefore, although the principles of the circuit analysis are still required, their implementation is drastically changing.

Some examples include programmable logic controller (PLCs), MP3 players, video games, modern video processors, vehicle’s electronic control units (ECU), and other industrial microcontrollers.

Their data processing power, filtration of noise, and operations are all accomplished in the code they run.

Not much of the hardware implementation is expected except for the microprocessor itself and its supporting circuits to run in hardware.

In this book, the knowledge of circuit analysis and the design of hardware-based filters and operational amplifiers are provided to lay out a rich background. However, the approach in the second half of the book is more toward the mathematical analysis of circuits, their transfer functions, closed-loop operations, control actions, and filter applications.

Numerous solved problems and end-of-chapter unsolved problems are provided to establish a strong background on circuits and emphasize the importance of the modern circuit analysis.

The analysis of circuit in the frequency domain is limited to the Laplace transform as most of the signal processing courses offer their own basics of Fourier transform.

Three-phase circuits are also expected to be covered in the basic power systems courses where the analysis of a three-phase circuit is needed.

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