University of California, Berkeley

Electrical Engineering and Computer Sciences Department

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Fall 2019 Lecture Notes:

Dates with an asterisk next to them represent those days that I will not be in town. On these dates I will make appropriate arrangements for the lecture. These will likely entail make-up lectures, possibly in the evenings, but since this course is videotaped, you can always watch the videos if you cannot attend on the make-up date.
No. Date Lecture Handouts PDF
(marked)
Reading Video
1 Aug. 28 Administrative Information, Introduction/Overview Syllabus
Schedule
Grading Policy
Lecture1w Handouts Video
2 Aug. 30 Introduction: Signal Types, Communication Systems Lecture2w
Lecture2s
S&S: §1.1-1.3 Video
3 Sept. 4 Review: Frequency Response, Transfer Functions, Impedance, Bode Plots   Lecture3w
Lecture3s
S&S: §1.6 Video
4 Sept. 6 Review: Amplifier Models, Input Resistance, Output Resistance   Lecture4w
S&S: §1.4-1.5 Video
5 Sept. 9 Review: Ideal Op Amps, Negative Feedback, Ideal Op Amp Ckts.   Lecture5w
S&S: §2.1-2.5 Video
6 Sep. 11 Non-ideal Op Amps: Finite Gain and Bandwidth   Lecture6w
S&S: §2.7 Video
7 Sep. 13 Non-ideal Op Amps: Closed-loop Ckts. Using Finite Gain-BW Op Amps   Lecture7w S&S: §2.7 Video
8 Sep. 16 Non-ideal Op Amps: Finite Ri and Ro, Limiting, Slew Rate   Lecture8w S&S: §2.8 Video
9 Sep. 18 Non-ideal Op Amps: Vos, Input Bias Current, and Nonlinear Elements   Lecture9w S&S: §2.6, §4.1-4.2 Video
10 Sep. 20 Semiconductors   Lecture10w
Lecture10s
S&S: Chpt. 3 Video
11 Sep. 23 Semiconductor Currents   Lecture11w
Lecture11s
S&S: Chpt. 3, §4.3-4.4 Video
12 Sep. 25 Examples of Nonlinear Elements: Diode Regions of Operation   Lecture12w S&S: §4.3-4.4 Video
13 Sep. 27 MOSFETs I: Cut-Off and Linear   Lecture13w
Lecture13s
S&S: §5.1-5.2 Video
14 Sep. 30 MOSFETs II: Saturation   Lecture14w
S&S: §5.2-5.4 Video
15 Oct. 2 MOSFETs III: Channel Length Modulation, Body Effect, PMOS, CV Curves   Lecture15w
S&S: §5.2-5.4 Video
16 Oct. 4 BJTs I: Structure, Regions of Operation, Cutoff, Forward Bias   Lecture16w
S&S: §6.1 Video
17 Oct. 7 BJTs II: Forward Bias, Beta, Large Signal Models, Reverse-Active, Saturation   Lecture17w
S&S: §6.1-6.2 Video
18 Oct. 9 Parameter-Independent Biasing   Lecture18w
S&S: §5.3, §6.3 Video
19 Oct. 14 Small-Signal Analysis of General Nonlinear Circuits   Lecture19w
Video
20 Oct. 16 Transistors as Amplifiers, Small-Signal Modelling of (F. A.) BJTs   Lecture20w
S&S: §7.1-7.2 Video
21 Oct. 18 T Model, MOS SS Model, CE Amplifier   Lecture21w
S&S: §7.2-7.5 Video
22 Oct. 21 Common Emitter Amplifier   Lecture22w
S&S: §7.3-7.5 Video
23 Oct. 23 Small-Signal CE Amplifier Analysis   Lecture23w
S&S: §7.3-7.5 Video
24 Oct. 25 High Frequency Small-Signal Models   Lecture24w
S&S: §10.2-10.3 Video
25 Oct. 28 High Frequency Circuit Analysis, OCTC Analysis   Lecture25w
S&S: §10.3-10.4 Video
26 Oct. 30 Low Frequency Circuit Analysis   Lecture26w
S&S: §10.1 Video
27 Nov. 1 Inspection Analysis & Miller Effect   Lecture27w
S&S: §10.3.3 Video
28 Nov. 4 Generally Loaded Transistor   Lecture28w
S&S: §7.3 Video
29 Nov. 6 Transistor Terminal Gains   Inspection Handout
Lecture29w
S&S: §7.3 Video
30 Nov. 8 Multi-Transistor Circuit   Lecture30w
S&S: §7.5 Video
31 Nov. 13 Multi-Transistor High Frequency Analysis   Lecture31w
S&S: §10.5-10.6, 10.8 Video
32 Nov. 15 MOS Inspection Analysis   Lecture32w
S&S: §7.3, 10.5-10.6, 10.8 Video
33 Nov. 18 Purposeful Design   Lecture33w
S&S: Chpt. 9 Video
34 Nov. 20 Cascade Amplifier   Lecture34w
S&S: §9.1-9.3 Video
35 Nov. 22 Differential Pair, CMOS Op Amp   Lecture35w
S&S: §9.1-9.3, §14.1-14.3 Video
36 Nov. 25 Digital Circuits   Lecture36w Lecture36s
S&S: §14.1-14.3 Video
37 Dec. 2 CMOS Inverter   Lecture37w
S&S: §14.1-14.3 Video
38 Dec. 4 CMOS Noise Margins, Propogation Delay I, Ring Oscillator   Lecture38w
S&S: §14.4 Video
39 Dec. 6 Propagation Delay II, Complex Gates, Course Wrap Up   Lecture39w
S&S: §14.4-14.6 Video

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 Last updated 8/26/19 by CN