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所在平台: Udemy |
课程主页: https://www.udemy.com/course/system-design-using-verilog/
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课程名称:使用 Verilog 进行系统设计 课程概述:完成此课程后,学习者将能够: 1. 理解设计工程师需优化的设计指标概念; 2. 理解集成电路设计技术的概念; 3. 理解使用固定功能集成电路技术、全定制ASIC技术和半定制ASIC技术实现逻辑的过程; 4. 理解使用固定功能集成电路技术、全定制ASIC技术和半定制ASIC技术实现逻辑的优缺点; 5. 理解在可编程逻辑器件(PLD)中实现逻辑的概念; 6. 理解在现场可编程门阵列(FPGA)中实现逻辑的概念; 7. 理解集成电路设计流程; 8. 理解硬件描述语言(HDL)在系统设计中的作用; 9. 理解各种Verilog语言结构的概念; 10. 理解各种运算符及其在Verilog编码中的用途; 11. 理解如何使用Xilinx软件编写Verilog代码; 12. 理解如何使用Xilinx软件模拟Verilog代码; 13. 理解如何使用Xilinx软件实现Verilog代码; 14. 使用行为建模风格实现组合逻辑; 15. 使用数据流建模风格实现组合逻辑; 16. 使用结构建模风格实现组合逻辑; 17. 使用行为建模风格实现时序逻辑; 18. 使用数据流建模风格实现时序逻辑; 19. 使用结构建模风格实现时序逻辑; 20. 使用MOS晶体管实现逻辑。 本课程将帮助学习者掌握系统设计的基本原理和Verilog语言的应用,适合想要深入了解集成电路设计和逻辑实现的工程师与学生。
After completion of this course learners will be able to:(1) Understand the concepts design metrics which are to be optimized by a design engineer(2) Understand the concepts of IC design technology(3) Understand the implementation of logic using Fixed Function IC Technology, Full Custom ASIC Technology, and Semi-Custom ASIC Technology(4) Understand the advantages and disadvantages of implementation of logic using Fixed Function IC Technology, Full Custom ASIC Technology, and Semi-Custom ASIC Technology(5) Understand the concept of implementation of logic in PLDs(6) Understand the concept of implementation of logic in FPGA(7) Understand the IC design flow(8) Understand the role of HDL in system design(9) Understand the concepts of various Verilog language constructs(10) Understand various operators and their uses in Verilog coding(11) Understand how to use Xilinx software for writing a Verilog code(12) Understand how to use Xilinx software for simulating a Verilog code(13) Understand how to use Xilinx software for implementing a Verilog code(14) Implement combinational logic by using behavioral modeling style(15) Implement combinational logic by using dataflow modeling style(16) Implement combinational logic by using structural modeling style(17) Implement sequential logic by using behavioral modeling style(18) Implement sequential logic by using dataflow modeling style(19) Implement sequential logic by using structural modeling style(20) Implement logic by using mos transistors