Book Image

Architecting and Building High-Speed SoCs

By : Mounir Maaref
5 (1)
Book Image

Architecting and Building High-Speed SoCs

5 (1)
By: Mounir Maaref

Overview of this book

Modern and complex SoCs can adapt to many demanding system requirements by combining the processing power of ARM processors and the feature-rich Xilinx FPGAs. You’ll need to understand many protocols, use a variety of internal and external interfaces, pinpoint the bottlenecks, and define the architecture of an SoC in an FPGA to produce a superior solution in a timely and cost-efficient manner. This book adopts a practical approach to helping you master both the hardware and software design flows, understand key interconnects and interfaces, analyze the system performance and enhance it using the acceleration techniques, and finally build an RTOS-based software application for an advanced SoC design. You’ll start with an introduction to the FPGA SoCs technology fundamentals and their associated development design tools. Gradually, the book will guide you through building the SoC hardware and software, starting from the architecture definition to testing on a demo board or a virtual platform. The level of complexity evolves as the book progresses and covers advanced applications such as communications, security, and coherent hardware acceleration. By the end of this book, you'll have learned the concepts underlying FPGA SoCs’ advanced features and you’ll have constructed a high-speed SoC targeting a high-end FPGA from the ground up.
Table of Contents (20 chapters)
1
Part 1: Fundamentals and the Main Features of High-Speed SoC and FPGA Designs
7
Part 2: Implementing High-Speed SoC Designs in an FPGA
12
Part 3: Implementation and Integration of Advanced High-Speed FPGA SoCs

Introducing FPGA Devices and SoCs

In this chapter, we will begin by describing what the field-programmable gate array (FPGA) technology is and its evolution since it was first invented by Xilinx in the 1980s. We will cover the electronics industry gap that FPGA devices cover, their adoption, and their ease of use for implementing custom digital hardware functions and systems. Then, we will describe the high-speed FPGA-based system-on-a-chip (SoC) and its evolution since it was introduced as a solution by the major FPGA vendors in the early 2000s. Finally, we will look at how various applications classify SoCs, specifically for FPGA implementations.

In this chapter, we’re going to cover the following main topics:

  • Xilinx FPGA devices overview
  • Xilinx SoC overview and history
  • Xilinx Zynq-7000 SoC family hardware features
  • Xilinx Zynq UltraScale+ MPSoC family hardware features
  • SoC in ASIC technologies