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Electrical and Electronic Circuit Fundamentals
  1. Circuit Fundamentals
    1. Introduction
    2. Historical background
    3. Fundamentals of circuit theory
    4. Definitions of terms and quantities
    5. Network laws (KVL, KCL, and Ohm's law) and components
    6. Voltage and current sources
    7. Series and parallel circuit elements
    8. Examples on circuit analysis using network laws and circuit reduction
    9. Introduction to PSpice
    10. Using PSpice for resistive circuits (exercise #1)
  1. Electronic Circuit Fundamentals
    1. Introduction
    2. Design approach
    3. Analog circuits: amplifiers
      1. Single point of view
      2. Ideal Op-Amp model
      3. Design example
      4. Op-Amp circuitries (voltage follower, the inverter, the difference amplifier, and the bridge circuit)
      5. PSpice simulation of the inverting amplifier (exercise #2)
    4. Digital electronics
      1. Boolean algebra
      2. Logic gates
      3. PSpice simulation for a logic gate (exercise #3)
      4. Memory (D-flip flops)
      5. Memory applications
      6. PSpice simulation of a 2-bit counter (exercise #4)
      7. Timers
      8. Clock generators
      9. PSpice simulation of a 555 timer clock generator (exercise #5)
  1. Printed Circuit Board, Design and Overview
    1. Introduction
    2. PSpice design of  PCBs
  1. Project Discussions

 

 

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This page was last modified August 12, 1998
Please contact John Schild (jhs@engr.iupui.edu) concerning this site.