* Cantinho Satkeys

Refresh History
  • joaozinho_bosco: wwd46l0'
    16 de Setembro de 2026, 13:45
  • joaozinho_bosco: boas tarde
    16 de Setembro de 2026, 13:43
  • j.s.: bom dia a todos  49E09B4F 49E09B4F
    15 de Setembro de 2026, 11:54
  • FELISCUNHA: ghyt74  pessoal  49E09B4F
    15 de Setembro de 2026, 10:47
  • JP: try65hytr Pessoal 4tj97u<z 2dgh8i k7y8j0 r4v8p
    15 de Setembro de 2026, 05:01
  • FELISCUNHA: ghyt74  pessoal  49E09B4F
    11 de Setembro de 2026, 11:37
  • JP: try65hytr Pessoal  4tj97u<z 2dgh8i k7y8j0 classic
    11 de Setembro de 2026, 05:33
  • JP: try65hytr Pessoal k7y8j0 2dgh8i k7y8j0 yu7gh8
    08 de Setembro de 2026, 04:15
  • j.s.: dgtgtr a todos  49E09B4F 49E09B4F
    06 de Setembro de 2026, 12:15
  • FELISCUNHA: Votos de um santo domingo para todo o auditório  k8h9m
    06 de Setembro de 2026, 12:02
  • JP: try65hytr Pessoal 4tj97u<z 2dgh8i k7y8j0 r4v8p
    04 de Setembro de 2026, 04:35
  • FELISCUNHA: ghyt74  pessoal   49E09B4F
    03 de Setembro de 2026, 08:38
  • JP: try65hytr Pessoal 4tj97u<z 2dgh8i k7y8j0 yu7gh8
    01 de Setembro de 2026, 04:12
  • j.s.: try65hytr a todos  49E09B4F
    31 de Agosto de 2026, 20:33
  • FELISCUNHA: ghyt74  pessoal   49E09B4F
    26 de Agosto de 2026, 10:51
  • JP: try65hytr Pessoal 4tj97u<z 2dgh8i k7y8j0 classic
    25 de Agosto de 2026, 04:05
  • FELISCUNHA: ghyt74  pessoal   49E09B4F
    21 de Agosto de 2026, 11:28
  • JP: try65hytr Pessoal 4tj97u<z 2dgh8i k7y8j0 classic
    21 de Agosto de 2026, 05:22
  • JP: try65hytr Pessoal 4tj97u<z 2dgh8i k7y8j0 43e5r6
    17 de Agosto de 2026, 04:09
  • j.s.: dgtgtr a todos  49E09B4F
    15 de Agosto de 2026, 15:07

Autor Tópico: UART on Xilinx FPGA Verilog Design, Vitis Software, Hardware  (Lida 186 vezes)

0 Membros e 1 Visitante estão a ver este tópico.

Online WAREZBLOG

  • Moderador Global
  • ***
  • Mensagens: 19911
  • Karma: +0/-0
UART on Xilinx FPGA Verilog Design, Vitis Software, Hardware
« em: 29 de Março de 2026, 22:05 »

Free Download UART on Xilinx FPGA Verilog Design, Vitis Software, Hardware
Published 3/2026
Created by Easy FPGA
MP4 | Video: h264, 1280x720 | Audio: AAC, 44.1 KHz, 2 Ch
Level: Beginner | Genre: eLearning | Language: English | Duration: 15 Lectures ( 1h 20m ) | Size: 498 MB

UART on FPGA: Verilog RTL to MicroBlaze AXI UART Lite
What you'll learn
✓ Explain UART frame structure, baud timing, and parity concepts clearly.
✓ Implement custom UART TX/RX modules in Verilog/SystemVerilog.
✓ Build and verify loopback communication in simulation.
✓ Integrate a MicroBlaze system with AXI UART Lite in Vivado Block Design.
✓ Create and run UART software in Vitis using XUartLite APIs.
✓ Perform hardware/software co-simulation with .elf and RTL together.
✓ Run and debug the design on real FPGA hardware using Vitis debugger.
✓ Choose between RTL and processor-based approaches based on project constraints.
Requirements
● Basic digital logic (flip-flops, FSM, synchronous design)
● Basic Verilog reading ability
● A Windows PC capable of running Vivado/Vitis
● Xilinx FPGA board for full hardware practice (recommended)
Description
"This course contains the use of artificial intelligence."
In this course, you will build a complete UART project on FPGA using two practical approaches.
First, you will implement UART directly in Verilog/SystemVerilog with your own transmitter and receiver logic. You will design finite state machines, generate baud ticks, handle parity, and verify loopback behavior.
Second, you will build a processor-based system using MicroBlaze and AXI UART Lite in Vivado and Vitis. You will create block designs, generate the platform, write loopback software in C, and connect software behavior to hardware registers.
By the end, you will understand when to choose custom RTL and when to choose processor-based design, based on timing Requirements, flexibility, and development speed.
What Makes This Course Different
• Two full implementation paths for the same UART problem
• Clear comparison between RTL and MicroBlaze approaches
• Co-simulation flow combining .elf software and RTL hardware
• Real FPGA hardware test and debugger-based verification
• Practical troubleshooting checklists for common issues
Learning Objectives (Udemy: What you'll learn)
By the end of this course, students will be able to
• Explain UART frame structure, baud timing, and parity concepts clearly.
• Implement custom UART TX/RX modules in Verilog/SystemVerilog.
• Build and verify loopback communication in simulation.
• Integrate a MicroBlaze system with AXI UART Lite in Vivado Block Design.
• Create and run UART software in Vitis using XUartLite APIs.
• Perform hardware/software co-simulation with .elf and RTL together.
• Run and debug the design on real FPGA hardware using Vitis debugger.
• Choose between RTL and processor-based approaches based on project constraints.
Prerequisites
• Basic digital logic (flip-flops, FSM, synchronous design)
• Basic Verilog reading ability
• A Windows PC capable of running Vivado/Vitis
• Xilinx FPGA board for full hardware practice (recommended)
Important Note on Course Materials
Course source code is provided inside the course portal for enrolled learners only.
Note: The narration in this course is produced using AI voice technology.
Who this course is for
■ FPGA beginners who already know basic digital logic
■ Embedded developers moving from software to FPGA SoC workflows
■ Engineers who want practical UART implementation experience
■ Students preparing for real-world FPGA interface projects
Homepage
Código: [Seleccione]
https://www.udemy.com/course/uart-on-xilinx-fpga-verilog-design-vitis-software-hardwar
Recommend Download Link Hight Speed | Please Say Thanks Keep Topic Live
No Password  - Links are Interchangeable