VLSI Design

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课程主页: https://www.udemy.com/course/vlsi-design-mask/

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课程名称:VLSI设计 课程概述: 欢迎参加我的“VLSI设计”课程。本课程将帮助您理解在VLSI设计领域使用的不同设计方法和规则。整门课程包含7个不同模块: 1. **基础知识** - VLSI设计简介、VLSI设计流程、PMOS和NMOS晶体管复习。 2. **反相器设计** - CMOS、比率式、和电阻负载反相器的工作原理、VTC(电压转移特性)、功耗和延迟。 3. **逻辑设计** - 互补CMOS、通道晶体管、传输门。 4. **动态电路设计** - 预充电、评估阶段、特性、动态功耗。 5. **算术逻辑单元(ALU)子系统设计** - 加法器、移位器、乘法器、锁存器、触发器、多路复用器等。 6. **内存设计** - 基础知识、ROM单元、RAM单元(SRAM、DRAM)。 7. **布局设计** - CMOS布局、Mead-Conway规则。 这些模块将定期更新新学习内容。超大规模集成(VLSI)是通过将成千上万的晶体管集成到单个芯片中创建集成电路的过程。VLSI始于1970年代,当时复杂的半导体和通信技术正在开发中。微处理器就是一种VLSI设备。在过去的几年中,硅CMOS技术已成为相对高性能且具有成本效益的VLSI电路的主导制造工艺。这些发展的革命性特征体现在集成电路上的晶体管数量快速增长中。 参考书籍: 《数字集成电路:设计视角》作者:Jan M. Rabaey,普伦蒂斯-霍尔出版社(1996年)。

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Welcome to my course on 'VLSI Design'. The course will help you to understand the different design methodologies, rules that are used in the field of VLSI Design.The course essentially holds 7 different modules. 1. Fundamentals - Introduction to VLSI Design, The VLSI Design Flow, A review on PMOS, NMOS Transistors.2. Inverter design - CMOS, Ratioed, Resistive Load Inverters - Working, VTC, Power, Delay3. Logic design - Complementary CMOS, Pass Transistors, Transmission Gates4. Dynamic circuits design - Precharge, Evaluation Phases, Characteristics, Dynamic Power Consumption5. ALU Subsystem design - Adders, Shifters, Multipliers, Latches, Flipflops, Multiplexers and so on,6. Memory Design - Fundamentals, ROM Cell, RAM Cell - SRAM, DRAM7. Layout Design - CMOS Layouts, Mead-Conway rules.All these modules will be frequently updated with new learning contents. Very-large-scale integration (VLSI) is the process of creating an integrated circuit (IC) by combining thousands of transistors into a single chip. VLSI began in the 1970s when complex semiconductor and communication technologies were being developed. The microprocessor is a VLSI device.Over the past several years, Silicon CMOS technology has become the dominant fabrication process for relatively high performance and cost effective VLSI circuits. The revolutionary nature of these developments is understood by the rapid growth in which the number of transistors integrated on circuit on single chip.References:Digital Integrated Circuits, A Design Perspective by Jan M. Rabaey, Prentice Hall (1996).

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