Book Image

FPGA Programming for Beginners

By : Frank Bruno
5 (1)
Book Image

FPGA Programming for Beginners

5 (1)
By: Frank Bruno

Overview of this book

Field Programmable Gate Arrays (FPGAs) have now become a core part of most modern electronic and computer systems. However, to implement your ideas in the real world, you need to get your head around the FPGA architecture, its toolset, and critical design considerations. FPGA Programming for Beginners will help you bring your ideas to life by guiding you through the entire process of programming FPGAs and designing hardware circuits using SystemVerilog. The book will introduce you to the FPGA and Xilinx architectures and show you how to work on your first project, which includes toggling an LED. You’ll then cover SystemVerilog RTL designs and their implementations. Next, you’ll get to grips with using the combinational Boolean logic design and work on several projects, such as creating a calculator and updating it using FPGA resources. Later, the book will take you through the advanced concepts of AXI and show you how to create a keyboard using PS/2. Finally, you’ll be able to consolidate all the projects in the book to create a unified output using a Video Graphics Array (VGA) controller that you’ll design. By the end of this SystemVerilog FPGA book, you’ll have learned how to work with FPGA systems and be able to design hardware circuits and boards using SystemVerilog programming.
Table of Contents (16 chapters)
1
Section 1: Introduction to FPGAs and Xilinx Architectures
3
Section 2: Introduction to Verilog RTL Design, Simulation, and Implementation
9
Section 3: Interfacing with External Components

Summary

In this chapter, we introduced sequential elements, how to store data, and how to write constraints for these elements for Vivado. Along with learning how to write combinational logic, we now have the fundamentals to create just about any design. We've developed a better way of displaying information and even made a more human-readable version of it. It's important to look at what you have accomplished thus far. You've seen how to handle external inputs operating asynchronously to the system clock. You've interfaced to a more sophisticated output display. We've also debugged on the board using an ILA. This should give you the confidence to experiment a bit and the challenge question will allow you to do just that.

In the next chapter, we'll build on the lessons and skills we learned in this chapter by building something more substantial: a calculator.