Updated 5/27/2003 by TJK
EE130 (Spring 2003)
Integrated Circuit Devices
TuTh 3:30PM-5:00PM, 203 McLaughlin Hall

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Instructor:
Prof. Tsu-Jae King: (510) 643-9251; tking@eecs.berkeley.edu
Office hrs: Th 12-1PM; Fr 4-5PM; 567 Cory Hall

Teaching Assistants:
Marie Eyoum: meyoum@eecs.berkeley.edu
Discussion hr:
Section 101: We 4-5 PM, 203 McLaughlin
Office hr:  Mo 5-6 PM; 179M Cory
Discussion hr:
Section 102: Th 10-11 AM, 105 Latimer
Office hr: We 3-4 PM; 179M Cory

Announcements:
• Course grades are posted here.
HAVE A GREAT SUMMER!
Errata:

Homework solutions:

• HW#2, Problem 4c: kT = 2 x 0.026eV at T = 600K, so EF-Ei = 0.006 eV
• HW#3, Problem 2: The correct solution is available here.
• HW#4, Problem 5: The numerical values used were slightly off.  The correct solution is posted here.
• Note:  Nc = 3.22x1019 cm-3 and Nv = 1.83x1019 cm-3 in Si at room temperature.
• HW#6:  Solutions using the preferred values ni=1010 cm-3 and eSi=10-12 F/cm are now posted and available here.
• HW#7, Problem 1: Solutions to parts e & f are corrected in the updated version here.
• HW#8, Problem 1a: An expanded solution to HW#8 Problem 1a is posted here.
• HW#9, Problem 1b: The excess minority carrier distribution in the collector quasi-neutral region is drawn correctly in the solutions posted here.
• HW#10, Problem 1: There was a slight error in the equation for gm, which is corrected in the solutions posted here.
• HW#12, Problem 3: The substrate doping concentration used was incorrect; the corrected solutions are posted here.
• HW#12, Problem 4: The substrate doping concentration solved for by iteration should have been 5.5x1017 cm-3; the corrected solutions are posted here.
Lecture notes:
• Lecture #5, Slide 4:  The label "1015" should be deleted from the plot.
• Lecture #6, Slide 10:  The left-hand side of the equation should have the subscript "R" rather than "G".  The complete, correct equation is shown in the posted Lecture 6 Notes.
• Lecture #7, Slide 5:  The right square bracket should come after the second term, rather than the third term, in the equation.  The corrected equation is shown in the posted Lecture 7 Notes.
• Lecture #14, Slide 4:  The final value of the diode voltage (vA) will be dictated by the circuit.  This is corrected in the posted Lecture 14 Notes.
Other:
• Review Notes on pn Junctions: At the bottom of Page 7, the signs of the exponent terms were incorrect.  The corrected notes are posted here.