Program Description

This course covers an in-depth exploration of the Artix 7 FPGA board, including its architecture, significance, and application in digital design. It introduces Xilinx Vivado software for FPGA projects, guiding through installation, project creation, and simulation of basic gates. Subsequent modules delve into implementing digital logic circuits, LED control, adders, multipliers, communication protocols, and interfacing sensors and motors with the FPGA. The course concludes with an exploration of FPGA applications in IoT and VGA interfaces for remote appliance control, providing comprehensive skills for industrial FPGA-based system design.

Course Objectives

  • Gain a thorough understanding of Artix 7 FPGA board architecture, significance, and applications in digital design.
  • Learn to use Xilinx Vivado software for FPGA projects, including installation, project creation, and simulation of basic gates.
  • Develop practical skills in implementing digital logic circuits, LED control, adders, multipliers, and communication protocols on the Artix 7 board. Explore sensor interfacing, motor control, and IoT applications using FPGA technology.

Key Highlights

check svg

FPGA Architecture and Design

check svg

Sensor Interfacing with FPGA

check svg

IoT Integration with FPGA

check svg

Digital Communication Protocols (RS232, I2C, SPI) with FPGA

check svg

Real-time Applications and Automation with FPGA

Course enrollment data

Learning Format

Online

Duration

3 units

Certified by

IITM Pravartak Technologies Foundation
Technology Innovation Hub (TIH) of IIT Madras and
L&T EduTech

Program Fee

Rs. 1900/- Inclusive of Tax

Downloads

Program Description

Education Qualification

Students pursuing diploma/UG/PG Programs in Electrical/Electronics Engineering Department, Computer Engineering Department, Industrial Automation Department, or related fields interested in FPGA architecture, sensor interfacing, and industrial applications.

Suggested Prerequisites

Fundamental knowledge of digital electronics and data communication protocols, familiarity with VHDL programming concepts

Teaching Hours

11

Lead Faculty

Dr. P. Rangarajan

Subject Matter Expert, L&T EduTech.

Dr. P. Rangarajan is a Subject Matter Expert in Electrical Engineering. He obtained his doctorate from Anna University in 2004, specializing in VLSI & Signal Processing. He earned his M.E. degree in Power Electronics from Guindy College of Engineering in 1996 and his B.E. degree in Electrical and Electronics Engineering from Coimbatore Institute of Technology in 1990. He has a total of 33 years of work experience. He has published 80 papers in international journals and holds four patents. He is also a recognized supervisor at Anna University, where he has guided nineteen Ph.D. scholars to completion. Additionally, he has executed projects funded by AICTE and DST. He received the CTS Best Faculty Award in 2014.

Learning Schedule

Introduction to Artix 7 FPGA Development Board, Vivado Installation and Demo on Vivado Design Flow, Demo on VLSI Design and Interfacing FPGA for Switching On and Off LED by SPDT, Demo on VLSI Design and Interfacing FPGA for Displaying the Push Button State on LEDs, Demo on VLSI Design and Implementing Half Adder using FPGA Board, Demo on VLSI Design and Implementing full adder using FPGA Board, Demo on VLSI Design and Implementing 4-Bit Ripple Carry Adder using FPGA Board, Demo on VLSI Design and Implementing Carry Look-Ahead Adder using FPGA Board, Demo on VLSI Design and Implementing 4x4 Multiplier using FPGA Board.

Demonstration of Interfacing FPGA to Produce Sound at Regular Intervals in Buzzer, Demonstration of Interfacing FPGA for Displaying Decimal Counter on 7 Segment Display, Demonstration of Interfacing FPGA with 16x2 LCD for Displaying Message, Understanding RS232 Serial Communication Protocol, RS232 Serial Communication Protocol Implementation using VHDL, Understanding I2C Protocol, I2C Protocol Implementation with VHDL, Understanding SPI Protocol, SPI Protocol Implementation with VHDL.

Demonstration of Interfacing FPGA with 3 Axis Accelerometer Sensor, Demonstration of Interfacing FPGA with Hand Gesture Recognition Sensor, Demonstration of Interfacing FPGA with Capacitive Touch Sensor, Demonstration of Interfacing FPGA with Ultrasonic Sensor, Demonstration of Interfacing FPGA with Stepper Motor, Demonstration of Interfacing FPGA with DC Motor, Demonstration of Interfacing FPGA with Servo Motor, Demonstration of Interfacing VGA Monitor with FPGA Device, Monitoring Temperature And Intensity through IoT with FPGA Device.



Are you interested in this program?

Our Learning Partners

Want To Know More

Guiding Star with Our Help!

Contact Us