Introduction to Simulation using EDWinXP

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2 Introduction to Simulation using EDWinXP

3 Introduction to Simulation using EDWinXP First Edition Copyright Notice ALL RIGHTS RESERVED. Any unauthorized reprint or use of this material is prohibited. No part of this book may be reproduced or transmitted in any form or by any means, electronic or mechanical, including photocopying, recording, or by any information storage and retrieval system without express written permission from the author / publisher. Published by Visionics India Pvt Ltd, Technopark, Trivandrum

4 Preface This book is compiled for the easier illustration of SPICE simulation and PCB designing to cater the syllabus of various Universities for the undergraduate level of Engineering. Each section has experiments described in a step by step manner. This book is divided into five sections. Introduction to EDWinXP, Introduction to EDSpice Simulator and the types of analysis that can be performed in EDSpice Simulator, EDSpice simulation experiments, SPICE circuit files, VHDL code samples, examples of 8051, AVR, PIC and Motorola microcontrollers and PCB design. The EDSpice simulation experiments describes the Aim, Components required for the simulation, the circuit diagram, procedure, steps for the simulation and finally the result of the simulation. The Components required for the experiment is given as Type of Component EDWinXP Component Name (Number of Components). The procedure section describes the method of simulating the circuit with the values to be assigned to each component in the circuit and the steps for simulating the circuit for the specified analysis. The result is obtained in the Waveform viewer. SPICE section lists the *.cir files for the circuits that can be simulated in EDWinXP CIR file Editor. VHDL simulation illustrates the list of experiments written in VHDL. The VHDL Editor in EDWinXP can be used for its simulation. The microcontroller section give the real time simulation of the projects using different microcontrollers. The PCB section describes the procedure of designing of PCB in EDWinXP.

5 Contents About EDWinXP 1 EDSpice Simulator 3 Introduction 3 Type of Analysis 4 1. EDSpice Simulation 7 1. RC Coupled Amplifier 8 2. Diode Characteristics V.I. Characteristics Of Zener Diode BJT Input Characteristics Common Emitter Configuration BJT Input Characteristics Common Base Configuration BJT Output Characteristics Common Base Configuration FET Input Characteristics FET Output Characteristics MOSFET Input Characteristics MOSFET Output Characteristics Positive Clipper Negative Clipper Biased Double Limiter Differentiator Integrator (Triangle Output) Integrator Half Wave Rectifier Positive Clamper Negative Clamper Biased Positive Clamper Emitter Follower Astable Multivibrator Monostable Multivibrator Bistable Multivibrator Schmitt Trigger Sweep Generator Bootstrap Sweep Circuit UJT Relaxation Oscillator Series Voltage Generator JFET Amplifier Series Voltage Regulator Class A Power Amplifier Class C Power Amplifier Complementary Symmetry Push Pull Amplifier Cascode Amplifier Current Time Base Generator Opamp Differentiator Opamp Integrator Opamp Integrator with feedback Non-Inverting Summing Amplifier Non-Inverting Averaging Amplifier 98

6 42. First order active low pass filter First order active notch filter Opamp Asymmetric Astable Multivibrator Opamp Current To Voltage Converter Differential Amplifier Opamp Monostable Multivibrator Opamp Schmitt Trigger Opamp Voltage Limiter Opamp Peak Detector Opamp Precision Half Wave Rectifier Opamp Precision Full Wave Rectifier Square Wave Generator Window Detector Saw tooth wave generator RC Phase Shift Oscillator Hartely Oscillator Colpitts Oscillator SPICE RC Differentiator Sine RC Differentiator with Pulse RC Differentiator with Sine Full Wave W/O Filter Full Wave With filter Bridge Rectifier Clipper Clipper DC Characteristics Clamper Bias clamper Diode Characteristics Forward Diode Characteristics Reverse Transistor Output Characteristics Transistor Input Characteristics FET I DS vs V GS Characteristics FET Characteristics Amplifier DC Bias RC coupled Amplifier RC Coupled Amplifier Response RC Phase Shift Oscillator Astable Multivibrator JFET Amplifier Frequency Response Op Amp Integrator Op Amp Differentiator Filter VHDL Simulation Adder 4 Bit Adder Subtractor BCD 7 Segment Decoder 144

7 4. Binary BCD Converter Binary Counter 8 Bit Binary Gray Converter Comparator 3 Bit Easiest Comparator 4 Bit Multiplexer 16 Bit Priority Encoder Rom 16x Serial In Serial Out Shift Register Parallel In Serial Out Shift Register Johnson Counter Decade Counter Microcontroller bit Addition bit Subtraction bit Multiplication bit Division bit Addition bit Subtraction Factorial HCF LCM Matrix Addition RAM Sort Sorting Squareroot of a Number Square of a Number Sawtooth waveform generation Triangle waveform generation Stepper motor ADC Add Sub Biggest Number Counter Count Num DAC Division Multiplication AVR Microcontroller Analog Mux Demux Binary to Graycode Encryption PIC Microcontroller Addition Subtraction Multiplication Division BCD to Binary Converter 212

8 6. Multiplication and Division using PIC Microcontroller Motorola Microcontroller Pulse Counter Voltage Reader PCB Design 233

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