- Electronic Circuits I
- Lecture Schedules:
- THQ: 7am – 8:30am, Rm 120
- THU: 10am – 11:30am, Rm 120
- WFX: 2:30pm – 4pm, LC1
Announcements
- 1/11: Welcome to EEE 51!
- 1/11: You will need to be signed in to your EEE account to access the files
- 1/11: This semester we will be using Piazza for online class discussions. The system is highly catered to getting you help fast and efficiently from classmates, GAs, and the instructors. Rather than emailing questions to the teaching staff, we encourage you to post your questions on Piazza. Find our class discussion page here. Access code: eee51-2s1819.
- 3/23: Fill out this form if you have conflicts with the Exam 1 schedule. Deadline for filling up form is on Wednesday, March 27, 5pm.
- 5/19: Fill out this form if you have conflicts with the Exam 2 schedule. Deadline for filling up form is on Tuesday, May 21, 5pm.
- 5/20: Some notes from the review class here.
- 7/4: The removal exam will be on Monday, July 22, 1-4pm, at LC1.
Exams
- Midterm: Saturday, 3/30, 1pm-4pm
- Finals: Thursday, 5/23, 1pm-4pm
- Exam Policies:
- If you miss the midterm exam due to a valid reason, you must inform your instructor via email of the reason for your absence on or before April 5, 2019. You should also submit a copy of your excuse slip, certified at the college level, as soon as it is available. For students with an excused missed midterm exam, the final exam will comprise 70% of the grade.
Assignments
- Homework #1 here. Due on Tuesday, 1/29, 5pm. (solution)
- Homework #2 here. Due on Tuesday, 2/12, 5pm. (solution)
- Homework #3 here. Due on Tuesday, 2/19, 5pm. (solution)
- Homework #4 here. Due on Tuesday, 2/26, 5pm. (solution)
- Homework #5 here. Due on Tuesday, 3/12, 5pm. (solution)
- Homework #6 here. Due on Tuesday, 3/19, 5pm. (solution)
- Homework #7 here. Due on Wednesday, 4/10, 5 pm. (solution)
- Homework #8 here. Due on Tuesday, 4/23, 5pm. (solution)
- Homework #9 here. Due on Tuesday, 5/7, 5pm. (solution)
- Homework #10 here. Due on Tuesday, 5/14, 5pm. (solution)
Class Lectures
1 | Introduction | |||
2 | Transistor Models | |||
3 | Two-Port Networks | |||
4 | Single-Stage Amplifiers | |||
5 | Single-Stage Amplifiers | |||
6 | Current Sources | |||
7 | Current Mirrors | |||
8 | The BJT Differential Amplifier | |||
9 | The BJT Differential Amplifier | |||
10 | The MOSFET Differential Amplifier | |||
11 | Differential Half-Circuit Analysis | |||
12 | Differential to Single-Ended Conversion | |||
13 | Compound Amplifiers | |||
14 | Operational Amplifiers; Review (End of midterm exam coverage) | |||
15 | Transistor Capacitances | |||
16 | Frequency Response of Single-Stage Amplifiers | |||
17 | Frequency Response of Single-Stage Amplifiers | |||
18 | Review of Feedback Concepts | |||
19 | Analysis of Feedback Amplifiers | |||
20 | Stability of Feedback Amplifiers | |||
21 | Compensation | |||
22 | Step Response of Feedback Amplifiers | |||
23 | Introduction to Oscillators | |||
24 | Sinusoidal Oscillators | |||
25 | Translinear Circuits; Summary |
Additional References
- Gray, Hurst, Lewis and Mayer. Analysis and Design of Analog Integrated Circuits, 4th ed. ©2000. Wiley.
- Boylestad and Nashelsky. Electronics Devices and Circuit Theory, 8th ed. ©2002. Prentice-Hall, NJ.
- Savant, Roden, and Carpenter. Electronic Design. ©1991. Benjamin/Cummings Publishing Co.
- Chirlian. Analysis and Design of Integrated Electronic Circuits. ©1986. Addison-Wesley.
- Millman and Grabel. Microelectronics. ©1987. Mc-Graw Hill.