Difference between revisions of "EE 224"

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== Syllabus ==
 
== Syllabus ==
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{| class="wikitable"
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|-
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! scope="col"| Module
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! scope="col"| Topics
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! scope="col"| Outcomes
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! scope="col"| Resources
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! scope="col"| Activities
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|-
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| style="text-align:center;" | 1
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* [[Filter Basics]]
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* [[Filter Families]]
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* [[Frequency Response Visualization]]
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* Review: [[Electronic Noise]]
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** [[Resistor Noise]]
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** [[Diode and Transistor Noise]]
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** [[EE 220 Noise Analysis | Noise Analysis]]
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* Review: [[Quality Factor]]
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* Python [https://github.com/louisalarcon/ee224/blob/main/filters_ee224.py script] I used to generate the filter response plots.
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* Simulating a 5th order Butterworth LPF
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** SPICE [https://github.com/louisalarcon/ee224/blob/main/butter_lpf_5.sp deck]
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** Python [https://github.com/louisalarcon/ee224/blob/main/butter_lpf_5.py code] and classes [https://github.com/louisalarcon/ee224/blob/main/ngspice_link.py library]
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|-
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| style="text-align:center;" | 2
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* [[Filter Synthesis]]
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* [[Active Filters]]
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* [[Integrator-based Filters]]
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* Active Filters with Transmission Zeros
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* Review: [[Integrators]]
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* [[ngspice Tutorial]]
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* [[224-A1]]: Filter Design
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| style="text-align:center;" | 3
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* Filter Non-idealities
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* Filter Tuning
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| style="text-align:center;" | 4
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* High-Pass Filters
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* Band-Pass Filters
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|-
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| style="text-align:center;" | 5
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* Discrete-Time Filters
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* Switched-Capacitor Filters
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|-
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| style="text-align:center;" | 6
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* Introduction to Data Converters
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* Static Error
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* Spectral Characteristics
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| style="text-align:center;" | 7
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* D/A Converters
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* D/A INL and DNL
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* D/A Dynamic Characteristics
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|-
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| style="text-align:center;" | 8
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* Sampling
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* Practical Sampling Issues
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* Track-and-hold
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| style="text-align:center;" | 9
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* A/D Converters
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* Flash ADCs
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|-
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| style="text-align:center;" | 10
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* Interpolation ADCs
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* Two-step ADCs
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* Folding ADCs
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|-
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| style="text-align:center;" | 11
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* Pipelined ADCs
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|-
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| style="text-align:center;" | 12
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| style="text-align:center;" | 13
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|-
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| style="text-align:center;" | 14
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|-
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|}
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== References ==
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* Williams, A., Taylor, F. J. Electronic Filter Design Handbook, 4e McGraw-Hill Professional, 2006.
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* Zverev, A. I. Handbook of Filter Synthesis. New York: John Wiley and Sons, 1967.
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* Gray, Hurst, Lewis, Meyer, Analysis & Design of Analog Integrated Circuits, Wiley 2001.
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* Johns, Martin, Analog Integrated Circuit Design, Wiley 1997.
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* Design of Analog CMOS Integrated Circuits, Behzad Razavi, McGraw-Hill, 2000.

Latest revision as of 08:52, 15 April 2021

  • Mixed-Signal Systems
  • Semester Offered: 2nd semester
  • Course Credit: Lecture: 3 units (2 units lecture, 1 unit lab)

Catalog Description

Signals and filters. Sampling and aliasing. Analog and digital filters. Analog-to-digital converters. Digital-to-analog-converters. Sample and hold amplifiers. Mixed-signal applications. Pre-req: EE 220. 5h (2 lec, 3 lab) 3 u.

Syllabus

Module Topics Outcomes Resources Activities
1
2
3
  • Filter Non-idealities
  • Filter Tuning
4
  • High-Pass Filters
  • Band-Pass Filters
5
  • Discrete-Time Filters
  • Switched-Capacitor Filters
6
  • Introduction to Data Converters
  • Static Error
  • Spectral Characteristics
7
  • D/A Converters
  • D/A INL and DNL
  • D/A Dynamic Characteristics
8
  • Sampling
  • Practical Sampling Issues
  • Track-and-hold
9
  • A/D Converters
  • Flash ADCs
10
  • Interpolation ADCs
  • Two-step ADCs
  • Folding ADCs
11
  • Pipelined ADCs
12
13
14

References

  • Williams, A., Taylor, F. J. Electronic Filter Design Handbook, 4e McGraw-Hill Professional, 2006.
  • Zverev, A. I. Handbook of Filter Synthesis. New York: John Wiley and Sons, 1967.
  • Gray, Hurst, Lewis, Meyer, Analysis & Design of Analog Integrated Circuits, Wiley 2001.
  • Johns, Martin, Analog Integrated Circuit Design, Wiley 1997.
  • Design of Analog CMOS Integrated Circuits, Behzad Razavi, McGraw-Hill, 2000.