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UNIVERSITY OF CALIFORNIA College of Engineering Department of Electrical Engineering and Computer Sciences EE 105 MICROELECTRONIC DEVICES AND CIRCUITS http www inst eecs berkeley edu ee105 Spring 2008 Prof Ming Wu Course Information Sheet Staff Professor Teaching Assistants Lectures 102 Moffitt Ming C Wu wu eecs berkeley edu 643 0808 Eudean Sun eudeansun berkeley edu Sung Hwan Kim shpkim eecs berkeley edu Abhinav Gupta agupta eecs berkeley edu Tuesdays Thursdays 3 40 PM to 5 00PM Discussion Sections beginning on Monday 1 29 Section 102 293 Cory Mondays 4 5PM Section 103 2305 Tolman Wednesdays 10 11AM Section 104 140 Barrows Thursday 9 10AM Students are encouraged to ask relevant questions in class and to regularly attend a discussion section The TA s will review important concepts covered in the lectures and work through sample problems during the discussion sections Office Hours Ming C Wu 261M Cory Eudean Sun 197 Cory Sung Hwan Kim 197 Cory Abhinav Gupta 197 Cory Tuesday 2 3PM Thursday 1 2PM TBD TBD TBD Laboratory Sections beginning on Tuesday 9 4 Section 10 353 Cory Monday 9AM 12PM Section 11 353 Cory Tuesday 10AM 1PM Section 12 353 Cory Wednesday 2 5PM Section 13 353 Cory Thursday 5 8PM New Time Students must sign up for one lab section outside 353 Cory by 5PM Friday 1 25 and regularly attend the same lab section All of the lab assignments along with helpful tutorials are posted online under Labs Each pre lab assignment is due at the beginning of the corresponding lab session Post lab assignments are due at the beginning of the following lab session Although students will be allowed to work in pairs during the lab sessions each student must individually turn in his her own prelab and post lab assignments Objective To provide a basic understanding of semiconductor devices and analog integrated circuits Prerequisite EECS 40 KVL and KCL Thevenin and Norton equivalent circuits impedance frequency response Bode plots semiconductor basics simple pn junction diode and MOSFET theory and circuit applications analog vs digital signals Relation to Other Courses EE105 is a prerequisite for EE140 Linear Integrated Circuits It is also helpful but not required for EE141 Introduction to Digital Integrated Circuits Textbook Fundamentals of Microelectronics by Behzad Razavi Wiley Press January 2008 Homework Weekly assignments will be posted online on Tuesdays and will be due one week afterward at the beginning of class Late homework will not be accepted Students are encouraged to discuss homework problems with other students in the class the TA s and or Prof Wu However the work which you submit for grading must be your own Midterms Two midterms 80 minutes each will be given in class These are intended to gauge the student s understanding of the basic concepts covered in the course Some numerical calculations might be required i e do bring your calculator All exams will be closed book Final Exam The final exam will be closed book with 6 pages of notes allowed Students will need to bring a calculator The final exam will be given on Thursday 5 22 from 12 30 3 30 PM No early final exam will be offered Grading The numerical score on which the course grade will be based is derived as follows Homework 15 Lab 15 Midterms 15 each Final Exam 40 Academic Dishonesty See Department policy at http www eecs berkeley edu Policies acad dis shtml Course Accommodations Students may request accommodation of religious creed disabilities and other special circumstances Please make an appointment with Prof Wu to discuss your request so that he can plan accordingly in advance Classroom Etiquette o Arrive in class on time o Bring your own copy of the lecture notes posted online by 7AM on the day of the lecture o Turn off cell phones pagers MP3 players etc o No distracting conversations relevant questions are encouraged


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Berkeley ELENG 105 - Course Information

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Lecture 3

21 pages

Lecture 9

Lecture 9

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Lecture 3

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Lecture 3

Lecture 3

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Outline

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Lecture 3

Lecture 3

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Lecture 2

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Lecture 3

Lecture 3

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Lecture 4

Lecture 4

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Lecture 6

Lecture 6

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Lecture 1

Lecture 1

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Lecture 5

Lecture 5

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Lecture 3

Lecture 3

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Lecture 1

Lecture 1

13 pages

Lecture 8

Lecture 8

25 pages

Lecture

Lecture

5 pages

Overview

Overview

24 pages

Lecture 5

Lecture 5

22 pages

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