Metadata
Title
EE5390
Category
general
UUID
c15433b4635d4dd3bd501538d5b41acd
Source URL
https://www.ee.iitm.ac.in/~ani/2012/ee5390/
Parent URL
https://www.ee.iitm.ac.in/ani/
Crawl Time
2026-03-23T18:28:44+00:00
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# EE5390

**Source**: https://www.ee.iitm.ac.in/~ani/2012/ee5390/
**Parent**: https://www.ee.iitm.ac.in/ani/

# Basic Course Information

- Instructor: S. Aniruddhan
- Email: ani AT ee\*iitm\*ac\*in- - Office: ESB246A- - Office Hours: By appointment (email)- - Class Times: E-slot\
              Tu: 11-11:50am\
              W: 10-10:50am\
              Th: 08-08:50am\
              F: 02:00-02:50pm- - Class Location: ESB106 (note the change)- - Prerequisites: EC5135 (Analog Electronic Circuits) or EC3102 (Analog Circuits)\
                      Knowledge of the following topics is required:\
                      Linear circuit analysis; MOS transistor basics; small-signal equivalent circuits; small and large signal analysis;
                      frequency domain analysis; single-transistor amplifiers; differential pairs.\
                      - - Course Contents: \
                          Introduction to IC Design \
                          Mismatch & Noise \
                          Negative Feedback, Frequency compensation\
                          CMOS Opamps\
                          741 Opamp (BJT)\
                          Application Circuits - Bandgap references; Output Stages- - TA Info: \
                              Saisrikanth Vidyasagar: ee07b070 AT ee\*iitm\*ac\*in\
                              Animesh Paul: ee10s002 AT ee\*iitm\*ac\*in\
                              Guduri Venkatesh: ee10m077 AT ee\*iitm\*ac\*in\
                              Sandeep SK: ee10s006 AT ee\*iitm\*ac\*in\
                              Radha S: ee08d023 AT ee\*iitm\*ac\*in- - Grading: \
                                  HWs, Tutorials, Projects = 30%\
                                  Quiz 1, Quiz 2 = 15% each\
                                  Final Exam = 40%- - Textbooks: \
                                      The course doesn't follow a single textbook. However, the following book can be used as a reference for MOS circuit design
                                      and opamps, and for practice problems: \
                                      *Design of Analog CMOS Integrated Circuits* by Behzad Razavi; Tata McGraw-Hill, 2006 (ISBN: 0070529035)