Electronics H/W Design
Course Features
- Course Duration: 6 Weeks
- Category: Industrial Winter Training
- Students: 0
- Certificate: Yes
- Location: Janakpuri East New Delhi
- Language: ENGLISH
- Lesson: 0
- Viewers: 4604
- Prerequisites: No
- Skill Level: Beginner
- Course Capacity: 25
- Start Course:
Descriptions
This is a concentrated practical program designed for students who want to learn the art of Electronics fundamentals to design Industrial Application. It offers in-depth learning of Electronics Circuit Design and Simulation with PCB designing. 1st /2nd/3rd year students of B.E., B.Tech. from Electrical/Electronics branch. Recommended for every Engineering Student. Knowledge of Electronics Components.
Introduction to Electronic design automation (EDA) Brief History of EDA Latest Trends in Market How it helps and Why it requires Different EDA tools
Brief History
Understaning The Pspice Environment
Drawing a Circuit
Brief Introduction of various simulators Description to Proteus ISIS simulator tool Hands on practice on available library of components working through wiring and schematic designing
Introduction of ISIS Window
Placing the Selected Components
Connecting the schematic From ISIS to ARES for Netlising
Introduction to Active and Passive components and devices Difference between Active and Passive components Study of resistors, capacitors, and inductor coils Study of voltage and current rating of components
Resistor Introduction
Different types of Capacitors
Role of Inductors in electronics
Study of role of Analog Electronics Scope of Analog Electronics Study of Diodes, Transistors, Rectifiers, Regulators Study of Operational Amplifiers
Study of Diodes and relative circuits
Types of Transistors
Half wave Rectifier
Fixed Voltage Regulator Ics
Introduction of Different Features of Op-Amp
ADC
Study of role of Digital Electronics Scope of Digital Electronics Components of Digital Electronics Description to Combinational Circuits Description to Sequential Circuits Types of Logic Levels
Logic gates Using Transistors
Adder (Half and Full)
Latches and Flip Flops
Concept to Positive and Negative Power supply Study of Voltage Step Up/Down concept Study of various kinds of Rectifier Circuits Description to Filter and Regulators
Fixed +VE Power Supply
Varaible +VE Power Supply
Types of Motors Permanent DC motor Stepper Motor Servo Motors
H-bridge concept
Robotic Applications
Types of Relays
Types of Buzzers
Description to Optocoupler
Types of Seven Segment Displays
What is PCB Difference between PWB and PCB Types of PCBs Single Sided (Single Layer) Multi-Layer (Double Layer) PCB Materials
What is PCB Difference between PWB and PCB Types of PCBs Single Sided (Single Layer) Multi-Layer (Double Layer) PCB Materials
Active Components Diode Transistor MOSFET LED SCR Integrated Circuits (Ics) Passive Components Resistor Capacitor Inductor Transformer Speaker/Buzzer
Through Hole Packages
Schematic Entry Netlisting PCB Layout Designing Prototype Designing Design Rule Check(DRC) Design For Manufacturing(DFM) PCB Making Printing Etching Drilling Assembly of components
Schematic Entry
Electrical Layers
Electrical Layers
Standard FR-4 Epoxy Glass
Track Length
IPC Standard For Schematic DesignLength
Understanding the schematic Entry Creating Library & Components Drawing a Schematic Flat Design / hierarchical Design Setting up Environment for PCB Design a Board
Introduction to Autorouting
PCB Designing of Basic and Analog Electronic Circuits
Printing the Design
Making the schematic of Acedemic and Industrial projects
Types of Measuring Instruments Cathode Ray Oscilloscope Digital Storage Oscillscope Digital Multimeter Difference between CRO and DSO
Voltage Measuring
Eligibility
Pre-requisites
Benefits
Features
Curriculum
Section 1 : Introduction to Electronics Designing Using Spice and Pspice
1. Introduction
2. Introduction to Spice
New Versions
Representing Components
Making a Circuit & doing Simulation 3. Understanding Pspice
Using Model Editor
Using Magnetic Parts Editor
Using Stimulus Editor 4. Preparation for simulation
Prepairing schematic for simulation
Understand the sources for simulation
Understand different markersSection 2 : Introduction to Development Tools
5. Introduction to PROTEUS ISIS Software
6. Concept of Schematic designing on ISIS
Introduction of ISIS Menu bar and Tool Bar
Introduction of ISIS Library and Component Selection from Library
Changing the Properties of Selected Components 7. Simulation concept of ISIS
Connection using Wire, Bus and Nodes
Simulating the Designed Circuit
Varifing the result using ISIS Tools
Using Multimeter and Voltage & Current Probes
Using Virtual Oscilloscope
Introduction of Other Measurement Tools of ISIS 8. Introduction of PROTEUS Areas software for PCB Designing
Selecting the Components Footprints as per design
Picking and placing the Component
Making New Footprints
Assigning Footprint to componentsSection 3 : General Electronics Building Blocks
9. Introduction
10. Description of Resistors
Colour coding schemes
4 and 5 Band resistors
Power limitations to Resistors
Voltage Dividers using Resistos
Variable Resistors
Potentiometer
LDR
Thermistors 11. Description of Capacitors
Application of Capacitors
Voltage and Current specifications
Effect of Capacitor on AC and DC 12. Description of Inductors
Power Ratings of Coils
Types of InductanceSection 4 : Description to Analog Electronics
13. Introduction
14. Description to Diodes & its application
Clipper Circuits
Clamper Circuits
Voltage Multiplier Circuits
Importance of Zener Diodes in Regulation
Zener Diode as Constant Voltage Regulator 15. Description of Transistors
Importance of Transistor in Analog electronics
Study of Current Amplifiers Circuits
Open Collector Concept
Pull Up and Pull Down Concept
Logic Gates using Transistors 16. Study of different rectifier circuits
Full wave Rectifier
Wein Bridge Rectifier 17. Study of regulator Ics
LM78xx
LM79xx
Variable Voltage Regulator Ics
LM317
LM337 18. Study of operational Amplifiers
open Loop Circuits
Comparator
Zero-Crossing Detector
Close Loop Circuits
Invarting Amplifier
Non-Inverting Amplifier
Adder
Differential Amplifier
Integrator
Differentiator
Voltage to current convertor 19. Applications
DACSection 5 : Description to Digital Electronics
20. Introduction
21. Study of Digital circuits & Gates
Study Of Logic Gate Ics
Truth Tabble Varification Using Logic Gate Ics 22. Description to combinational circuits
Multiplexer and Demultiplexer
Encoder and Decoder
BCD to Seven Segment Encoder 23. Description to sequential circuits
Registers
CountersSection 6 : Various Power Supply Techniques
24. Introduction
25. Fixed regulated power supply concepts
Fixed -VE Power Supply
Fixed Dual Power Supply 26. Variable regulated power supply concepts
Varaible -VE Power Supply
Varaible Dual Power SupplySection 7 : Study of Other Electronics and Electrical Devices
27. Description to Motors
28. Concept for driving of motors
High current driver Ics 29. Role of different motors in different Applications
Door Open/Close Applications
Wheels Driving 30. Description to Relays
1 change-over Relay
2 change-over Relay
Mechanism behind the working of relays
Available Voltage rated Relays
9, 12, 15 volt
24,26,48,72 volt
Different application of Relays
Controlling the Motor Direction
Switching the Home Appliances 31. Description of Buzzer
Peizoelectric Buzzer
Mechanical Buzzer
Interfacing of Buzzers with Transistor
Uses of Buzzer 32. Description to Optocoupler
Application of Optocoupler 33. Description to LEDs and Seven Segment Display
Common Anode
Common Cathode
Concept of BCD to Seven Segment Decoder
Application of Seven Segment DisplaysSection 8 :Introduction to PCB Designing Concepts
34. Introduction & brief history
35. Trends in PCB Designing
Section 9 :Component Introduction and their Categories
36. Types of components
37. Component package types
Axial lead
Radial Lead
Single Inline Package(SIP)
Dual Inline Package(DIP)
Transistor Outline(TO)
Pin Grid Array(PGA)
Surface Mont Devices(SMD)
Chip
Metal Electrode Face(MELF)
Leadless Chip Carrier(LCC)
Small Outline Integrated Circuit(SOIC)
Quad Flat Pack(QPF) and Thin QFP (TQFP)
Ball Grid Array(BGA)
Plastic Leaded Chip Carrier(PLCC)Section 10 : Detailed Description and Practicals of Pcb Designing
38. PCB Designing Flow chart
39. PCB Designing Flow chart
Netlisting
PCB Layout Designing
Prototype Designing
Design Rule Check(DRC)
Design For Manufacturing(DFM)
PCB Making
Printing
Etching
Drilling
Assembly of components 40. Description of PCB Layers
Top Layer
Mid Layer
Bottom Layer
Machanical Layers
Board Outlines and Cutouts
Drill Details
Documentation Layer
Components Outlines
Reference Designation
Text 41. Keywords & their description
Footprint
Pad stacks
Vias
Tracks
Color of Layers
PCB Track Size Calculation Formula 42. PCB Materials
Multifuctional FR-4
Tetra Functional FR-4
NelcoN400-6
GETEK
Cyanate Aster
Plyimide Glass
Teflon 43. Rules for Track
Track Angle
Rack Joints
Track Size 44. Study of IPC standards
IPC Standard For PCB Designing
IPC Standard For PCB Meterials
IPC Standard For Documentation and PCB FabricationSection 11 : Lab Practice and Post Designing Concepts
45. Starting the PCB Designing
46. Autorouting
Setting up Rules
Defining Contraints
Autorouter Setup 47. PCB Designing practice
PCB Designing of Power Supplies
PCB Designing of Different Sensor modules
PCB Designing of Electronics Projects
PCB Designing of Embedded Projects
Reducing Signal Noises on PCB 48. Post designing & PCB Fabrication process
Eaching
Drilling
Interconnecting and Packaging electronic Circuits (IPC) Standards
Gerber Generation
Soldering and Desoldering
Component Mounting
PCB and Hardware Testing 49. Project work
PCB Designing of these projects
Soldering and Desoldering of componets as per Design
Testing and Troubleshoting MethodsSection 12 :Study of Measuring and Monitoring Devices
50. Need of measuring instruments
51. Hands on learning on Multimeter
Current Measuring
Resistance Measuring
Continuity checkSection 13 :Project Work and Documentation
52. Description of project development process
53. Project discussion & allotment
54. Synopsis making & submission
55. Practice of De-soldering & soldering
56. Introduction to Hardware techniques
57. Project Hardware development(component mounting & h/w testing)
58. Project completion
59. Project working video clip submission
60. Detailed project report submission
61. Final project PPT
62. Feedback submission(written & video)
63. Certificate distribution