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In diesem Kurs gibt es 3 Module
The course "FPGA Architecture Based System for Industrial Application Using Vivado" is a comprehensive program that focuses on the design and implementation of FPGA-based VLSI systems for industrial applications. Participants will gain practical knowledge and hands-on experience in utilizing Xilinx Vivado software with Artix 7 FPGA boards to develop digital arithmetics, integrate sensors and motors, implement communication protocols, and create IoT applications.
By the end of this course, you will be able to:
• Understand the architecture and features of Artix 7 FPGA boards.
• Install and utilize Xilinx Vivado software for FPGA projects.
• Design and implement digital arithmetics including LEDs, adders, buzzer, and pushbuttons using VHDL on FPGA boards.
• Integrate sensors such as accelerometers, gesture recognition sensors, and ultrasonic sensors with FPGAs.
• Interface motors like stepper motors and DC motors with FPGA kits.
• Implement communication protocols including RS232, I2C, and SPI for data exchange.
• Develop IoT applications for remote monitoring and control using FPGA technology.
• Analyze RTL schematics and configure constraint files for FPGA-based designs.
• Validate hardware logic and functionality through simulation and real-time implementation.
• Demonstrate proficiency in designing complex VLSI systems for industrial use cases.
This immersive module is meticulously designed to introduce participants to the world of VHDL programming, focusing on its application to FPGA (Field Programmable Gate Array) design using the Artix 7 FPGA board and Xilinx Vivado software. Beginning with an overview of the Artix 7 FPGA board and the significance of Xilinx Vivado in FPGA projects, the module leads learners through the practical aspects of setting up and simulating basic digital logic circuits. Participants will gain hands-on experience in creating projects from scratch, writing VHDL code for various digital functions, and implementing these designs on the FPGA board. Key concepts such as LED control, push button input handling, and more advanced digital circuits like adders and multipliers will be explored. Through step-by-step guidance, this module aims to equip learners with the knowledge and skills to efficiently develop their FPGA projects, from conceptual VHDL coding to physical implementation and real-time testing on the Artix 7 FPGA board.
Das ist alles enthalten
46 Videos3 Lektüren1 Aufgabe
Infos zu Modulinhalt anzeigen
46 Videos•Insgesamt 211 Minuten
About the Specialization•3 Minuten
About the Course•6 Minuten
Introduction to Artix 7 FPGA Development Board Part - 1•6 Minuten
Introduction to Artix 7 FPGA Development Board Part - 2•2 Minuten
Introduction to Artix 7 FPGA Development Board Part - 3•3 Minuten
Introduction to Artix 7 FPGA Development Board Part - 4•3 Minuten
Introduction to Artix 7 FPGA Development Board Part - 5•4 Minuten
Introduction to Artix 7 FPGA Development Board Part - 6•7 Minuten
Vivado Installation and Demo on Vivado Design Flow Part - 1•7 Minuten
Vivado Installation and Demo on Vivado Design Flow Part - 2•11 Minuten
Vivado Installation and Demo on Vivado Design Flow Part - 3•2 Minuten
Demo on VLSI Design and Interfacing FPGA for Switching On and Off LED by SPDT part -1•2 Minuten
Demo on VLSI Design and Interfacing FPGA for Switching On and Off LED by SPDT part -2•4 Minuten
Demo on VLSI Design and Interfacing FPGA for Switching On and Off LED by SPDT part -3•6 Minuten
Demo on VLSI Design and Interfacing FPGA for Switching On and Off LED by SPDT part -4•5 Minuten
Demo on VLSI Design and Interfacing FPGA for Switching On and Off LED by SPDT part -5•4 Minuten
Demo on VLSI Design and Interfacing FPGA for Displaying the Push Button State on LEDs part -1•2 Minuten
Demo on VLSI Design and Interfacing FPGA for Displaying the Push Button State on LEDs part -2•1 Minute
Demo on VLSI Design and Interfacing FPGA for Displaying the Push Button State on LEDs part -3•6 Minuten
Demo on VLSI Design and Interfacing FPGA for Displaying the Push Button State on LEDs part -4•6 Minuten
Demo on VLSI Design and Interfacing FPGA for Displaying the Push Button State on LEDs part -5•4 Minuten
Demo on VLSI Design and Implementing Half Adder using FPGA Board Part-1•1 Minute
Demo on VLSI Design and Implementing Half Adder using FPGA Board Part-2•1 Minute
Demo on VLSI Design and Implementing Half Adder using FPGA Board Part-3•6 Minuten
Demo on VLSI Design and Implementing Half Adder using FPGA Board Part-4•8 Minuten
Demo on VLSI Design and Implementing Half Adder using FPGA Board Part-5•3 Minuten
Demo on VLSI Design and Implementing full adder using FPGA Board Part-1•1 Minute
Demo on VLSI Design and Implementing full adder using FPGA Board Part-2•1 Minute
Demo on VLSI Design and Implementing full adder using FPGA Board Part-3•11 Minuten
Demo on VLSI Design and Implementing full adder using FPGA Board Part-4•9 Minuten
Demo on VLSI Design and Implementing full adder using FPGA Board Part-5•4 Minuten
Demo on VLSI Design and Implementing 4-Bit Ripple Carry Adder using FPGA Board Part-1•2 Minuten
Demo on VLSI Design and Implementing 4-Bit Ripple Carry Adder using FPGA Board Part-2•2 Minuten
Demo on VLSI Design and Implementing 4-Bit Ripple Carry Adder using FPGA Board Part-3•8 Minuten
Demo on VLSI Design and Implementing 4-Bit Ripple Carry Adder using FPGA Board Part-4•7 Minuten
Demo on VLSI Design and Implementing 4-Bit Ripple Carry Adder using FPGA Board Part-5•4 Minuten
Demo on VLSI Design and Implementing Carry Look-Ahead Adder using FPGA Board part-1•6 Minuten
Demo on VLSI Design and Implementing Carry Look-Ahead Adder using FPGA Board part-2•2 Minuten
Demo on VLSI Design and Implementing Carry Look-Ahead Adder using FPGA Board part-3•8 Minuten
Demo on VLSI Design and Implementing Carry Look-Ahead Adder using FPGA Board part-4•7 Minuten
Demo on VLSI Design and Implementing Carry Look-Ahead Adder using FPGA Board part-5•4 Minuten
Demo on VLSI Design and Implementing 4x4 Multiplier using FPGA Board part-1•3 Minuten
Demo on VLSI Design and Implementing 4x4 Multiplier using FPGA Board part-2•2 Minuten
Demo on VLSI Design and Implementing 4x4 Multiplier using FPGA Board part-3•7 Minuten
Demo on VLSI Design and Implementing 4x4 Multiplier using FPGA Board part-4•6 Minuten
Demo on VLSI Design and Implementing 4x4 Multiplier using FPGA Board part-5•4 Minuten
3 Lektüren•Insgesamt 30 Minuten
Specialization Reading•10 Minuten
Course Reading•10 Minuten
Course Glossary•10 Minuten
1 Aufgabe•Insgesamt 30 Minuten
Assessment - FPGA Based VSLI Design and Implementation for Digital Arithmetics Using Vivado •30 Minuten
FPGA Based VLSI Design and Implementation of Embedded Components and Communication Protoclos Using Vivado
Modul 2•3 Stunden abzuschließen
Moduldetails
This module offers a comprehensive journey through the design and implementation of embedded components and communication protocols on FPGA using Xilinx Vivado. It starts with the basics of sound generation using buzzers controlled by FPGA, extending to sophisticated digital displays and serial communication protocols. Students will engage in hands-on projects that include interfacing with 7-segment displays and LCDs, and implementing serial communication protocols such as RS232, I2C, and SPI. Each section includes developing VHDL code, configuring constraint files for precise hardware interaction, and analyzing RTL schematics for a deeper understanding of the underlying hardware logic. The module culminates with real-world implementation on the Artix 7 FPGA development board, ensuring students can apply theoretical knowledge to tangible FPGA projects.
Das ist alles enthalten
27 Videos1 Aufgabe
Infos zu Modulinhalt anzeigen
27 Videos•Insgesamt 148 Minuten
Demonstration of Interfacing FPGA to Produce Sound at Regular Intervals in Buzzer part-1•2 Minuten
Demonstration of Interfacing FPGA to Produce Sound at Regular Intervals in Buzzer part-2•12 Minuten
Demonstration of Interfacing FPGA to Produce Sound at Regular Intervals in Buzzer part-3•2 Minuten
Demonstration of Interfacing FPGA for Displaying Decimal Counter on 7 Segment Display Part-1•5 Minuten
Demonstration of Interfacing FPGA for Displaying Decimal Counter on 7 Segment Display Part-2•1 Minute
Demonstration of Interfacing FPGA for Displaying Decimal Counter on 7 Segment Display Part-3•7 Minuten
Demonstration of Interfacing FPGA for Displaying Decimal Counter on 7 Segment Display Part-4•11 Minuten
Demonstration of Interfacing FPGA for Displaying Decimal Counter on 7 Segment Display Part-5•2 Minuten
Demonstration of Interfacing FPGA with 16x2 LCD for Displaying Message part-1•5 Minuten
Demonstration of Interfacing FPGA with 16x2 LCD for Displaying Message part-2•1 Minute
Demonstration of Interfacing FPGA with 16x2 LCD for Displaying Message part-3•7 Minuten
Demonstration of Interfacing FPGA with 16x2 LCD for Displaying Message part-4•6 Minuten
Demonstration of Interfacing FPGA with 16x2 LCD for Displaying Message part-5•2 Minuten
Understanding RS232 Serial Communication Protocol part-1•6 Minuten
Understanding RS232 Serial Communication Protocol part-2•4 Minuten
RS232 Serial Communication Protocol Implementation using VHDL part-1•3 Minuten
RS232 Serial Communication Protocol Implementation using VHDL part-2•7 Minuten
RS232 Serial Communication Protocol Implementation using VHDL part-3•8 Minuten
Understanding I2C Protocol part-1•5 Minuten
Understanding I2C Protocol part-2•4 Minuten
I2C Protocol Implementation with VHDL part-1•7 Minuten
I2C Protocol Implementation with VHDL part-2•7 Minuten
I2C Protocol Implementation with VHDL part-3•9 Minuten
Understanding SPI Protocol•6 Minuten
SPI Protocol Implementation with VHDL part -1•4 Minuten
SPI Protocol Implementation with VHDL part -2•9 Minuten
SPI Protocol Implementation with VHDL part -3•9 Minuten
1 Aufgabe•Insgesamt 30 Minuten
Assessment - FPGA Based VLSI Design and Implementation of Embedded Components and Communication Protoclos Using Vivado•30 Minuten
FPGA Based VLSI Design and Implementation of Sensors and Motors for Industrial Application Using Vivado
Modul 3•5 Stunden abzuschließen
Moduldetails
This module delves into the integration of sensors and motors with FPGA using Xilinx Vivado, focusing on industrial applications. Participants will explore various sensors including accelerometers, gesture recognition sensors, capacitive touch sensors, ultrasonic sensors, as well as the principles and interfacing of motors like stepper motors and DC motors. The module covers topics such as sensor basics, VHDL code design, pin configurations, and simulation techniques using Vivado. Additionally, it introduces IoT concepts and VGA interfaces for remote monitoring and control of industrial systems, providing a comprehensive understanding of sensor-motor integration in FPGA-based VLSI design.
Das ist alles enthalten
50 Videos1 Aufgabe
Infos zu Modulinhalt anzeigen
50 Videos•Insgesamt 254 Minuten
Demonstration of Interfacing FPGA with 3 Axis Accelerometer Sensor - Part 1•5 Minuten
Demonstration of Interfacing FPGA with 3 Axis Accelerometer Sensor - Part 2•1 Minute
Demonstration of Interfacing FPGA with 3 Axis Accelerometer Sensor - Part 3•8 Minuten
Demonstration of Interfacing FPGA with 3 Axis Accelerometer Sensor - Part 4•10 Minuten
Demonstration of Interfacing FPGA with 3 Axis Accelerometer Sensor - Part 5•11 Minuten
Demonstration of Interfacing FPGA with 3 Axis Accelerometer Sensor - Part 6•3 Minuten
Demonstration of Interfacing FPGA with Hand Gesture Recognition Sensor - Part 1 •4 Minuten
Demonstration of Interfacing FPGA with Hand Gesture Recognition Sensor - Part 2•1 Minute
Demonstration of Interfacing FPGA with Hand Gesture Recognition Sensor - Part 3•10 Minuten
Demonstration of Interfacing FPGA with Hand Gesture Recognition Sensor - Part 4•7 Minuten
Demonstration of Interfacing FPGA with Hand Gesture Recognition Sensor - Part 5•10 Minuten
Demonstration of Interfacing FPGA with Hand Gesture Recognition Sensor - Part 6•6 Minuten
Demonstration of Interfacing FPGA with Hand Gesture Recognition Sensor - Part 7•2 Minuten
Demonstration of Interfacing FPGA with Capacitive Touch Sensor - Part 1•2 Minuten
Demonstration of Interfacing FPGA with Capacitive Touch Sensor - Part 2•1 Minute
Demonstration of Interfacing FPGA with Capacitive Touch Sensor - Part 3•11 Minuten
Demonstration of Interfacing FPGA with Capacitive Touch Sensor - Part 4•2 Minuten
Demonstration of Interfacing FPGA with Capacitive Touch Sensor - Part 5•1 Minute
Demonstration of Interfacing FPGA with Ultrasonic Sensor - Part 1•4 Minuten
Demonstration of Interfacing FPGA with Ultrasonic Sensor - Part 2•1 Minute
Demonstration of Interfacing FPGA with Ultrasonic Sensor - Part 3•9 Minuten
Demonstration of Interfacing FPGA with Ultrasonic Sensor - Part 4•13 Minuten
Demonstration of Interfacing FPGA with Ultrasonic Sensor - Part 5•3 Minuten
Demonstration of Interfacing FPGA with Stepper Motor - Part 1 •3 Minuten
Demonstration of Interfacing FPGA with Stepper Motor - Part 2•13 Minuten
Demonstration of Interfacing FPGA with Stepper Motor - Part 3•1 Minute
Demonstration of Interfacing FPGA with Stepper Motor - Part 4•2 Minuten
Demonstration of Interfacing FPGA with Stepper Motor - Part 5•1 Minute
Demonstration of Interfacing FPGA with DC Motor - Part 1•2 Minuten
Demonstration of Interfacing FPGA with DC Motor - Part 2•2 Minuten
Demonstration of Interfacing FPGA with DC Motor - Part 3•10 Minuten
Demonstration of Interfacing FPGA with DC Motor - Part 4•4 Minuten
Demonstration of Interfacing FPGA with DC Motor - Part 5•1 Minute
Demonstration of Interfacing FPGA with Servo Motor part-1•3 Minuten
Demonstration of Interfacing FPGA with Servo Motor part-2•2 Minuten
Demonstration of Interfacing FPGA with Servo Motor part-3•7 Minuten
Demonstration of Interfacing FPGA with Servo Motor part-4•8 Minuten
Demonstration of Interfacing FPGA with Servo Motor part-5•3 Minuten
Demonstration of Interfacing VGA Monitor with FPGA Device Part-1•5 Minuten
Demonstration of Interfacing VGA Monitor with FPGA Device part-2•16 Minuten
Demonstration of Interfacing VGA Monitor with FPGA Device part-3•1 Minute
Demonstration of Interfacing VGA Monitor with FPGA Device part-4•2 Minuten
Demonstration of Interfacing VGA Monitor with FPGA Device part-5•1 Minute
Monitoring Temperature And Intensity through IoT with FPGA Device part-1•3 Minuten
Monitoring Temperature And Intensity through IoT with FPGA Device part-2•2 Minuten
Monitoring Temperature And Intensity through IoT with FPGA Device part-3•9 Minuten
Monitoring Temperature And Intensity through IoT with FPGA Device part-4•5 Minuten
Monitoring Temperature And Intensity through IoT with FPGA Device part-5•8 Minuten
Monitoring Temperature And Intensity through IoT with FPGA Device part-6•8 Minuten
Monitoring Temperature And Intensity through IoT with FPGA Device part-7•4 Minuten
1 Aufgabe•Insgesamt 30 Minuten
Assessment on FPGA Based VLSI Design and Implementation of Sensors and Motors for Industrial Application Using Vivado•30 Minuten
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