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Computer Aided Design and Simulation

Course Code:

EE 322

Semester:

Spring 2013

Credit Hours:

1+1

Prerequisite:

Electronics II, Digital Logic Design

Instructor:

Dr. Awais M. Kamboh

Class:

BEE-2ABC

Office:

A-311

Telephone:

+92-51-9085-2119

Lecture Days:

Monday

E-mail:

awais.kamboh@seecs.edu.pk

Class Room:

IAEC Lec Hall, CR-17

Consulting Hours:

Monday 1500-1700 or by E-mail

Knowledge Group:

Electronics, Power and Controls

Updates on LMS:

Monday

 

Course Description:

 

The course gives an introduction to computed aided design and reliable simulations of electronic circuits for electrical engineers. The course uses software like Cadence Design Suite, PSpice, and Matlab to increase students’ exposure to industrial design practices. It covers all the fundamental and important aspects of the simulation. The students will gain knowledge of the practical issues associated with computer aided simulations of the electronic circuits and will understand the important issues related with them. This course is mainly lab and project oriented.

 

 

Course Outcomes/Objectives:

 

On completion of the course, the students will be able to demonstrate the following:

         Design Electronic Circuits using Schematics / PSpice

         Analyze Transient and Frequency response of circuits

         Achieve Mixed Signal design using Verilog-A and Verilog

         Simulate circuits for reliability

         Understand top-down design methodologies

         Select appropriate components for PCB layouts

 

 

Books:

 

Title

Authors

Edition

Year

Text Book:

Basic Operational Amplifiers and Linear Integrated Circuits

Floyd

1st Edition

1999

Reference:

Analog Design Essentials

Willy Sansen

 

 

 

Main Topics to be Covered:

The course spans over a number of different topics as under:

 

Introduction

 

Frequency Domain Analysis

 

Operational Amplifiers

 

MOSFET Amplifiers

 

Multi-Layer PCB Designing

 

PSpice

 

Matlab / Simulink / Cadence

 

Mixed Signal Design

 

Verilog-A / Verilog

Week

Topic

Description/ Lecture Breakdown

1

Introduction

Fundamentals and Basics

2

Operational Amplifiers

Basics of Operational Amplifier

3

Operational Amplifiers

Integrators and Differentiators

4

Frequency Domain Analysis

Phasors and Frequency Analysis

5

Laplace Transform

Laplace Transform and S-Domain Analysis

6

OHT-1,

S-Domain Analysis

S-Domain Analysis using Matlab / Simulink

7

PSPICE

Text based circuit description

8

PCB Designing

Basics of Printed Circuit Board Designing – 1

9

PCB Designing

Multi-Layer PCB Designing

10

MOS Amplifiers

MOSFET-based Amplifiers

 

11

Differential Amplifiers

MOSFET based Differential Amplifiers

12

OHT-2

Parametric Analysis

Parametric Analysis using Cadence

13

Behavioral Modeling

Verilog and Verilog-A

14

Mixed Signal Design

Verilog / Verilog-A

15

System Level Design

System Level Design using Matlab

16

Filters

Building Blocks of Filters

17

Project

Project Presentations

18

Final Exam

 

 

Weightages:

 

Theory: 50%

 

Quizzes:    5%

 

Assignments:    5%

 

OHTs:  20%

 

Final Exam:  20%

 

Practical: 50%

 

Lab: 30%

 

Lab Exam: 20%

 

 

Grading Policy:

 

OrCad PSpice, LT Spice, Proteus, Matlab / Simulink, Cadence, Xming

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Last Updated 14th August 2014.