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有線集成電路.pdf

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有線集成電路.pdf

Major Programme: Master of Science in Microelectronics & Master of Philosophy in Microelectronics □ CM – Compulsory Major Course Type: □ L&S – Languages and Skills □ CPE – Community and Peer Education  RE – Required Elective □ * GE – General Education (in Chinese and English) High-Frequency and High-Speed Suggested Wireless/Wireline Integrated Circuit Year of Study: Year 1 Duration:  Semester Course □ Yearly Course Credit Units: 3 Grading System:  Letter Grade □ P/NP Pre-requisite: None Course Title: 高頻高速無線/有線集成電路 Medium of Instruction: Course Description: Intended Learning Outcomes (ILO): □ MI – Minor □ FE – Free Elective (if any) English This is an introductory course in the high-frequency and high-speed systems and circuit of both wireless and wireline tailored for ECE students. It covers topics from basic circuit techniques in the data path of both wireless and wireline, such as low-noise amplifier, mixer, linear equalizer, non-linear equalizer, automatic gain control amplifier, clock and data recovery circuit, to basic circuit techniques in the clock path, for example, PLL, VCO and divider. Also, we brief more recent techniques such as non-contact communication and RF+BB communication with special attention to hardware aspects and wireline applications. The course aims to offer students a set of modern wideband system and circuit solutions as well as the basic ideas and intuition behind, with more emphasis on hands-on experience through practical examples such as high-frequency and high-speed circuit implementation and case studies with Cadence/MATLAB. This course enables students to have:  To introduce the essential knowledge of high-frequency and high-speed systems and circuits in both wireless and wireline designs.  To introduce the different aspects of wireless and wireline designs.  To introduce the common wireless/wireline circuit building blocks with practical considerations in the data path.  To introduce the common wireless/wireline circuit building blocks with practical considerations in the clock path.  To teach students with hands-on experience of designing and simulating high-frequency and high-speed circuits using industrial simulation tools with real-world CMOS process. Others (please specify) Listening & Oral Assessments / tests Reading & Writing Assessments / tests Company visits Field study Internship Service learning Exercises & problems Writing Assignment Group discussions Group project / paper Individual project / paper Student Presentation Role Playing Case Study Major Assessment Methods: Class Participation / Discussion _______% Assignment(s) 20 % √ Test(s) 20 % √ Examination 30 % √ Others (please specify) Project 30 % Template revised on 20 Oct 2017 √ √ 1 Course Content: (topic outline) Template revised on 20 Oct 2017 ‐ Introduction: basic concepts, future trends, examples and applications, hardware for high-frequency and high-speed systems and circuit of both wireless and wireline. ‐ Preliminaries: CMOS analog circuit, radio-frequency system and circuit, communication principle, circuit analysis. ‐ Circuit techniques in the data path (wireless): analog baseband, mixer, low-noise amplifier, power amplifier. ‐ Circuit techniques in the data path (wireline): linear equalizer, non-linear equalizer, automatic gain control amplifier, clock and data recovery circuit, multiplexer and de-multiplexer. ‐ Circuit techniques in the clock path (wireless and wireline): phase-locked loop, divider, voltage-controlled oscillator. ‐ Practical labs: basic analysis and verification based on circuit simulation and one project involving the above circuit technique. 2

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