積分三角訊號轉換器
Sigma-Delta-Modulator Data Converters
| 節 | 週三 |
|---|---|
7 15:30–16:20 | 積分三角訊號轉換器 EE209 3 節連堂 |
8 16:30–17:20 | |
9 17:30–18:20 |
* 根據陽明交大上課時間表所列
1.The first-order sigma-delta modulators 2.The second-order sigma-delta modulators 3.Higher-order sigma-delta modulation 4.Bandpass and quadrature sigma-delta modulation 5.Implementation considerations for sigma-delta ADCs 6.Sigma-delta DACs 7.High-level design and simulation 8.Example modulator systems 9.The sigma-delta toolboxes 10.Noises and distortions in switched-capacitor sigma-delta converters
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, and Cadence to draw schematics and run circuit simulation, including transient and PSS PAC PNOISE in Cadence SpectreRF. A quiz will be given to evaluate if you are ready to register this course. 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)
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
Midterm exam: 25% Final Exam: 25% Final project (40%) & presentation (10%): 50%
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. B. Razavi, Design of Analog CMOS Integrated Circuits 4. D. Johns and K. Martin, Analog Integrated Circuits Design, 1st or 2nd Ed. 5. Papers from IEEE Journals & Conferences.
- 地點
- EE757
- 時間
- 1 GH