2
11.
授课方式
Delivery Method
讲授
Lectures
习题/辅导/讨论
Tutorials
实验/实习
Lab/Practical
其它(请具体注明)
Other(Please specify)
总学时
Total
学时数
Credit Hours
32 32 64
12.
先修课程、其它学习要求
Pre-requisites or Other
Academic Requirements
SME307 CMOS 模拟集成电路设计
SME307 CMOS Analog Integrated Circuit Design
13.
后续课程、其它学习规划
Courses for which this course
is a pre-requisite
14.
其它要求修读本课程的学系
Cross-listing Dept.
教学大纲及教学日历 SYLLABUS
15.
教学目标 Course Objectives
本课程是从事 CMOS 射频集成电路设计方向的入门课程,其讲授内容是深港微电子学院课程 SME307 的延伸和进阶。本
课程主要任务是让学生掌握 CMOS 射频集成电路设计中的基本概念、基本分析与设计方法;培养学生使用 EDA 工具设计
和仿真射频集成电路关键模块的基本技能,培养学生根据具体性能指标,设计射频集成电路的基本能力,为以后从事集成
电路设计领域的工程技术工作、科学研究工作以及开拓新技术领域奠定基础。本课程介绍以下几大方面的知识:
1. 通信系统介绍
2. 射频电路中的基本概念
3. 射频收发机结构
4. 基本模块(低噪声放大器、混频器、功率放大器、振荡器)
5. 锁相环与频率综合器
This course is a major course for the senior undergraduates majoring in microelectronics. It is the extension of SME307
in analog and radio frequency (RF) integrated circuits design. The main task of this course is to let students understand
the basic concepts, basic analysis and design methods of CMOS RF integrated circuits design; train students to use
EDA tools to design and simulate the critical CMOS RF modules. According to specifications, students analyze and
design the RF integrated circuits. This will lay the foundation for future engineering and scientific research in the field of
integrated circuits design. This course introduces the following major areas of knowledge:
1. Communication concepts
2. Basic concept in RF design
3. Transceiver architectures
4. Basic building blocks (LNA, Mixer, PA, Oscillator)
5. Phase-locked loop and frequency synthesizer
16.
预达学习成果 Learning Outcomes
本课程通过理论课教学和实验,使学生掌握
1. CMOS 射频集成电路的基本分析方法与设计过程
2. CMOS 射频集成电路的基本概念
3. 关键模块(LNA、Mixer、PA、Oscillator)的工作原理、分析与设计方法
4. 训练学生如何分析设计指标,通过针对设计指标选择和设计合适的电路,巩固和加深所学到的理论知识
5. CMOS 射频集成电路的计算机辅助设计和仿真分析的方法,培养基本的 CMOS 射频集成电路设计能力
6. 通过实践教学环节不仅要培养学生基本的电路设计能力,还要培养学生良好的科学素养
This course enables students to understand
1. Basic analysis ideas and design methods of CMOS RF integrated circuits
2. Basic concepts of CMOS RF integrated circuits
3. Principles, analysis and design methods of critical building blocks, including LNA, Mixer, PA, and Oscillator
4. Train students how to analyse the design specifications, and consolidate and deepen the theoretical knowledge
they have learned through choosing and designing an integrated circuit that meet the specifications