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CMOS射频集成电路设计培训课程通知(CMOS RFIC Transceiver Des

时间:12-12 整理:3721RD 点击:
各位业界,学术界朋友们,同学们:  
很高兴通知大家,在 11月7-8号(星期五、六,2天),我们与上海集成电路技术与产业促进中心(ICC)联合组织培训课程。届时,香港科技大学资深教授、COMS RFIC领域的权威Howard Cam LUONG教授将来上海讲授CMOS射频集成电路设计的培训课程。
本课程属于射频集成电路设计高级课程,适合具有一定基础的学员:射频电路、无线通讯等设计人员、模拟/数模混合电路设计人员、器件建模等相关领域的研究人员和管理人员、集成电路专业研究生以及对射频集成电路感兴趣的人。
附件是我们这次CMOS射频集成电路设计培训课程通知及报名回执表(也可以点击链接:http://www.lynneconsulting.com/index.php/News/detail/id/29)。
课程内容:
本课程属于CMOS射频集成电路设计课程,适合具有一定基础的学员:我们将有许多设计中的实际案例讨论,具体课程内容如下:
a)         RF Fundaments and Transceiver Architecture:
1.         Motivation
2.         RF Fundamentals
3.         Passive Components
4.         Receiver Architecture
5.         Transmitter Architecture
b)        LNAs:
1.         Functionality and Figures of Merits
2.         Basic LNA Design:
                        i.    Input Matching Network
                        ii.    Noise and Linearity
                        iii.    Output Loading and Output Matching Network
                        iv.    Stability
                         v.    Differential Design
3.         Advanced LNA Design Techniques:
                       i.      Variable gain
                      ii.      Narrow-Band Design
                     iii.      Wide-Band Design
                     iv.       Reconfigurable Narrow-Band Design
                       v.      Noise Cancellation
                      vi.       Linearization
4.         Case Study
c)         Mixers:
1.         Functionality and Figures of Merits
2.         Basic Mixer Design:
                       i.     Single-balance mixers
                       ii.    Double-balance mixers
                       iii.    Up-conversion mixers
3.         Advanced Mixer Design Techniques:
                       i.       Low-voltage mixer design
                       ii.      Current-steering technique
                       iii.      Linearization
                       iv.      Switched-transconductance mixers
                        v.      Image-rejection mixers
                        vi.     Harmonic-rejection mixers
4.         Case Study
d)        Synthesizer Architecture:
1.         PLL Fundamentals
2.         Integer-N Synthesizer
3.         Fractional-N Synthesizer
4.         Dual-Loop Synthesizer
5.         Single-Sideband-Mixer-Based Synthesizer for Fast Settling Time
6.         All-Digital Synthesizer
7.         Injection-Locked Synthesizer
e)         VCOs:
1.         Fundamentals and Figures of Merits
2.         Phase Noise and Spur Specification
3.         Basic VCO Design:
                        i.   Ring VCOs
                        ii.  LC VCOs
                        iii.  Phase Noise Estimate
4.         Advanced VCO Design Techniques:
                      i.       Transformer-Feedback VCOs
                      ii.       Quadrature VCOs
                      iii.       Magnetic-Tuning VCOs
                      iv.       Phase-Tuning VCOs
                      v.        Multiple-band VCOs
                       vi.       Mixer-Divider-Based Technique VCOs
f)          Frequency Dividers:
1.         Fundamentals and Figures of Merit
2.         Digital Dividers:
                       i.   Fixed Division
                       ii.   Dual-Modulus Division Using Gating Approach
                       iii.   Multiple-Modulus Division
                       iv.    Phase-Shifting Technique
3.         Analog Dividers:
                      i.    Injected-Locked Dividers
                      ii.   Regenerative Dividers (Miller Dividers)
                       iii.      Advanced Divider Techniques
g)         Power Amplifiers:
1.         Fundamentals and Figures of Merit
2.         Classical Design (Class A, B, C)
3.         High-Efficiency Design (Class E, F)
4.         Power Combining Techniques
5.         Digital PA
h)        Case Studies:
1.         Synthesizers:
                      i.   1-V WLAN Synthesizer
                      ii.  SDR Synthesizer (50MHz – 10GHz, 20GHz, 40GHz)
                     iii.    Ultra-Wide-Band Point-To-Point Synthesizer (20GHz – 48GHz)
2.         Transceivers:
                      i.      1-V WLAN Transceiver
                      ii.     UWB Transceiver
备注:参会的学员可将与本课程相关、自己关注或急需解决的问题,在开课前15日内以书面提纲形式发邮件至会务组(请在注明主题“CMOS射频集成电路设计培训课程相关技术问题”),会务组将根据实际情况,对具有代表性的问题纳入讲课内容。
Howard Cam LUONG教授简介:
Prof. Howard Luong received his BS, MS, and PhD degrees in Electrical Engineering and Computer Sciences (EECS) from University of California at Berkeley in 1988, 1990, and 1994, respectively. Since September 1994, he has joined theEEE facultyat theHong Kong University of Science and Technologywhere he is a professor.  In 2001, he spent his one‐year sabbatical leave to develop a new wireless product at Maxim Integrated Products, Inc., Sunnyvale, California, USA.  From August 2013 to July 2014, he was a MediaTek Endowed Visiting Professor at Nanyang Technological University in Singapore.
Professor Luong’s research interests are in analog, RF, and mm-Wave integrated circuits and systems for wireless and portable applications.  He was a co-author of the two books entitled "Low-Voltage RF CMOS Frequency Synthesizers" published by Cambridge University Press in August 2004 and "Design of Low-Voltage CMOS Switched-Opamp Switched-Capacitor Systems" published by Kluwer Academic Publishers in July 2003.
Professor Luong is an IEEE Fellow. He is currently serving as an IEEE Solid-State Circuits Society Distinguished Lecturer, an Associate Editor for IEEE Virtual Journal on RFIC, a Guest Editor for Journal of Emerging Technologies on Circuits and Systems (JETCAS), and a technical program committee member of many international conferences, including IEEE Custom Integrated Circuits Conference (CICC),  and IEEE International Symposium on Radio-Frequency Integration Technology (RFIT).
Professor Luong was an Associate Editor for IEEE Transactions on Circuits and Systems I and II (TCAS-I and II)  from 2010 to 2012 and from 1999 to 2002, respectively, as well as a Guest Editor for the 2012 T-MTT Special Issue of RFIT papers and for the 2011 and 2012 TCAS Special Issues of CICC papers.  He also served as a Technical Program Co-Chair of the 2011 IEEE International Symposium on Radio-Frequency Integration Technology (RFIT) and a Technical Program Co-Chair of the 2008 IEEE Asian Pacific Conference on Circuits and Systems (APCCAS).

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