進行中 校際選修

115-1 選課時程

進行中

  • 初選第一階段 6/15 – 6/18
  • 初選第二階段 6/22 – 6/25
  • 校際選修 8/24 – 9/18
  • 初選第三階段 8/31 – 9/3
  • 開學後加退選 9/7 – 9/21
  • 逾期加退選 9/21 – 9/24
選課資源

積分三角訊號轉換器

Sigma-Delta-Modulator Data Converters

學期
114-1
學分
3 學分
當期課號
535108
永久課號
EEEE30019
開課單位
電機工程學系
授課教師
陳佳宏
校區
光復
類別
選修
上課時間表
週三
3
10:10–11:00
積分三角訊號轉換器
EE209
3 節連堂
4
11:10–12:00
N
12:20–13:10

* 根據陽明交大上課時間表所列

概述

1. Fundamental of ADCs and review of discrete-time signal processing. 2. Noise-shaping and low-order delta sigma modulators. 2.1 Basic of noise-shaping. 1st-order noise-shaping modulators. 2.2 2nd-order modulators. 3. Design and analysis of higher-order delta sigma ADCs. 3.1 Architecture: feedback vs. feedforward; zero-optimization; stability. 3.2 Single-bit vs. multi-bit; basic of DAC calibration. 3.3 Toolbox and synthesis of delta sigma modulators. 3.4 Decimation filters. 4. Other architectures: multi-stage noise-shaping (MASH), bandpass, hybrid of Nyquist-rate and delta sigma ADCs. 5. Switched-capacitor circuits design of delta sigma ADCs. 5.1 Review of basic switched-capacitor circuits and integrator.5.2 5.2 Circuit non-idealities: noise optimization; opamp finite gain and bandwidth; DAC nonlinearities. 5.3 Switch non-idealities and solutions. 5.4 Implementation of a delta sigma modulator. 6. DAC dynamic element matching (DEM): 6.1 DAC nonlinearities and randomization 課程概述與目標: 1. Fundamental of ADCs and review of discrete-time signal processing. 2. Noise-shaping and low-order delta sigma modulators. 2.1 Basic of noise-shaping. 1st-order noise-shaping modulators. 2.2 2nd-order modulators. 3. Design and analysis of higher-order delta sigma ADCs. 3.1 Architecture: feedback vs. feedforward; zero-optimization; stability. 3.2 Single-bit vs. multi-bit; basic of DAC calibration. 3.3 Toolbox and synthesis of delta sigma modulators. 3.4 Decimation filters. 4. Other architectures: multi-stage noise-shaping (MASH), bandpass, hybrid of Nyquist-rate and delta sigma ADCs. 5. Switched-capacitor circuits design of delta sigma ADCs. 5.1 Review of basic switched-capacitor circuits and integrator.5.2 5.2 Circuit non-idealities: noise optimization; opamp finite gain and bandwidth; DAC nonlinearities. 5.3 Switch non-idealities and solutions. 5.4 Implementation of a delta sigma modulator. 6. DAC dynamic element matching (DEM): 6.1 DAC nonlinearities and randomization 6.2 dynamic weighted average (DWA) for DAC calibration 6.3 other DWA calibrations. 7. Delta Sigma DACs. 7.1 Signal path of a delta sigma DAC. 7.2 Reconstruction filter. 8. Incremental delta sigma ADCs. 9. Continuous-time delta sigma modulators. 10. Final project presentation

先修科目

本課程是進階課程, 適合碩二以上的研究生. 以下情況請勿選修, 否則將會無法完成作業以及期末專題: 1. 無相關基礎課程修 (相關課程如下所列). 2. 本課程學生必須有TSRI EDACloud 帳號, 具備T18 製程的使用權限. 若無製程使用權限, 將無法完成作業以及專題. 3. 無相關設計工具使用經驗: Matlab/Simulink, Cadence design tools and simulator. 4. 本課程要求修課學生現場報告 ( homework & 期末專題). 無法現場報告, 切勿選修. 課程第一周會有小考, 測驗課前必備知識. This is an "advanced" course, and you "must" finish the prerequisite courses: 1. advanced analog integrated circuits and switched-capacitor circuits (Ex: ICN5407). 2. analog-to-digital converters (ADC) and digital-to-analog converters (DAC) (Ex: IEE5710). 3. digital signal processing and digital filters (Ex: ICN5611 or IEE7732) 4. You "must" have access to Matlab/Simulink, and Cadence to draw schematics and run circuit simulation, including transient and PSS PAC PNOISE in Cadence SpectreRF. The other prerequisite: 5. basic analog integrated circuits and opamp circuits design (Ex: GEE5101) 6. digital integrated circuits (Ex: IEE7721) or advanced VLSI (Ex: GEE5103)

教學方式

You "must" be familiar with these tools, and be certain you have the access to these tools: 1. Matlab/Simulink 2. Cadence tools: Composer, Virtuoso and Waveform Viewer 3. Circuits simulation tools: Cadence Spectre, HSPICE 4. Cadence PSS/PAC/PNOISE simulation techniques 5. knowledge of FFT to perform PSD plot

評分方式

Homework: 20% One Exam: 30% Final project (40%) & presentation (10%): 50%

週次計畫
週次主題
第 1 週ADC introduction- Flash ADC, SAR ADC, Delta Sigma ADC
第 2 週Sampling and Quantization
第 3 週first-order and second-order delta sigma modulation
第 4 週higher-order delta sigma modulator: feedback and feedforward and general design of loop filter
第 5 週multi-stage noise-shaping and other architectures
第 6 週Switched-capacitor circuits design and implementation
第 7 週noise in a delta sigma ADC
第 8 週midterm exam
第 9 週Toolbox design and modulator design examples
第 10 週Incremental ADC and the recent applications
第 11 週continuous-time loop filter design- 1
第 12 週continuous-time loop filter design 2: non-idealities
第 13 週continuous-time loop filter design 3: circuit implementation and examples
第 14 週project presentation
第 15 週project presentation
第 16 週
教科書

1. S. Pavan, R. Schreier and G. C. Temes, Understanding Delta-Sigma Data Converters, 2nd Edition, IEEE Press, 2017. 2. F. Maloberti, Data Converters 3. D. Johns and K. Martin, Analog Integrated Circuits Design, 1st or 2nd Ed. 4. Papers from IEEE Journals & Conferences.

Office Hours
地點
EE757
時間
1 GH