Lecture notes and videos for ECG 720 Advanced Analog IC Design, Fall 2019

    

December 9 – final exam (comprehensive), 6 to 8 PM, open book and closed notes in SEB 1242

Extra – lec29_ecg720.pdf and lec29_ecg720_video – review for final exam       

December 4 – lec28_ecg720.pdf and lec28_ecg720_video – the cyclic ADC, pipeline ADCs   

December 2 – lec26_ecg720.pdf and lec26_ecg720_video – op–amps in data converters, begin implementing ADCs 

November 27 – no lecture, projects due  

November 25 – lec25_ecg720.pdf and lec25_ecg720_video – start Ch. 30, implementing data converters      

November 20 – lec24_ecg720.pdf and lec24_ecg720_video – finish–up Ch. 29, data converter architectures   

November 18 – lec23_ecg720.pdf and lec23_ecg720_video – discuss projects 

November 13 – lec22_ecg720.pdf and lec22_ecg720_video – more DAC architectures, start ADC architectures     

November 11 – lec21_ecg720.pdf and lec21_ecg720_video – DAC architectures    

November 6 – lec20_ecg720.pdf and lec20_ecg720_video – data converter fundamentals    

November 4 – lec19_ecg720.pdf and lec19_ecg720_video – series–series (transconductance amp) and shunt–series (current amp) feedback amplifiers

October 30 – lec18_ecg720.pdf and lec18_ecg720_video – more transimpedance feedback amplifiers, shunt–shunt feedback  

October 28 – lec17_ecg720.pdf and lec17_ecg720_video – series–shunt feedback (voltage amp) and shunt–shunt feedback (transimpedance amp)

October 23 – lec16_ecg720.pdf and lec16_ecg720_video – start Ch. 31, feedback amplifiers   

October 21Midterm, open book and closed notes, 5:30 PM in SEB 1242  

October 16 – lec15_ecg720.pdf and lec15_ecg720_video – review for the midterm exam  

October 14 – lec14_ecg720.pdf and lec14_ecg720_video – operation of switched–capacitor circuits, finish Ch. 25

October 9 – lec13_ecg720.pdf and lec13_ecg720_video – Ch. 25, fully–differential sample–and–hold circuits  

October 7 – lec12_ecg720.pdf and lec12_ecg720_video – op–amp design using switched–capacitor CMFB

October 2 – lec11_ecg720.pdf and lec11_ecg720_video – more basic op–amp design   

Setempber 30 – lec10_ecg720.pdf and lec10_ecg720_video – biasing and CMFB for differential amplifiers, basic op–amp design   

September 25 – lec9_ecg720.pdf and lec9_ecg720_video – start ch. 26, op–amps II, biasing for power and speed    

September 23 – lec8_ecg720.pdf and lec8_ecg720_video – modeling op–amp noise, examples, wrap–up Ch. 8  

September 18 – lec7_ecg720.pdf and lec7_ecg720_video – averaging thermal noise, introduction to shot noise and flicker noise

September 16 – lec6_ecg720.pdf and lec6_ecg720_video – noise equivalent bandwidth, kT/C noise, signal-to-noise ratio (SNR), noise figure (NF)

September 11  lec5_ecg720.pdf and lec5_ecg720_video – introduction to electrical noise, noise measurements, thermal noise, simulating MOSFET noise

September 9 – Lecture 4: 

3.2.part2 Filtering Topologies – 3.2.2 The Biquadratic Transfer Functionch3_msd_3_2_p2_video (45:54) and ch3_msd_3_2_p2_notes.pdf    

September 4 – Lecture 3: 

3.2.part1 Filtering Topologies – 3.2.1 The Bilinear Transfer Function and 3.2.2 The Biquadratic Transfer Functionch3_msd_3_2_p1_video (61:49) and ch3_msd_3_2_p1_notes.pdf  

August 28 – Lecture 2: 

3.1.part2 Integrator Building Blocks – 3.1.3 MOSFET–C Integrators, 3.1.4 gm–C (Transconductor–C) Integrators, and 3.1.5 Discrete–Time Integratorsch3_msd_3_1_p2_video (55:58) and ch3_msd_3_1_p2_notes.pdf   

August 26 – Lecture 1:

3.1.part1 Integrator Building Blocks – 3.1.1 Lowpass Filters and 3.1.2 Active–RC Integratorsch3_msd_3_1_p1_video (61:06) and ch3_msd_3_1_p1_notes.pdf 

     

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