Download CMPE 103: Electronic Materials

Survey
yes no Was this document useful for you?
   Thank you for your participation!

* Your assessment is very important for improving the workof artificial intelligence, which forms the content of this project

Document related concepts

Radiation damage wikipedia , lookup

Giant magnetoresistance wikipedia , lookup

Terahertz metamaterial wikipedia , lookup

Dielectric wikipedia , lookup

Tunable metamaterial wikipedia , lookup

Colloidal crystal wikipedia , lookup

Nanogenerator wikipedia , lookup

Strengthening mechanisms of materials wikipedia , lookup

Energy applications of nanotechnology wikipedia , lookup

Hall effect wikipedia , lookup

Metamaterial wikipedia , lookup

Superconductivity wikipedia , lookup

Negative-index metamaterial wikipedia , lookup

Condensed matter physics wikipedia , lookup

Electronic band structure wikipedia , lookup

Materials Research Science and Engineering Centers wikipedia , lookup

Ferromagnetism wikipedia , lookup

Rheology wikipedia , lookup

Multiferroics wikipedia , lookup

Nanochemistry wikipedia , lookup

History of metamaterials wikipedia , lookup

Nanomaterials wikipedia , lookup

Transcript
CMPE 103: Electronic Materials
Instructor:
Dr Inam Elahi Rana
Year: 2004-2005
Office No. & E-mail: 419, [email protected]
Quarter: Winter
Office Hours:
Category: Freshman
Mon & Wed 1500-1700
Course Code: CMPE 103
Course Title: Electronic Materials
Units: 4
Course Description:
Basic material properties of dielectrics, magnetic materials, conductors, and
semiconductors. Practical applications of materials to circuit design.
Course Status:
Core course for Computer Engineering majors.
Pre-requisites:
None.
Goals:
To present a broad introduction to materials, which are relevant to electrical and
computer engineering practice and the effect of material properties on the performance of
a design.
Text book:
Solid State Electronic Devices by Ben G. Streetman Prentice Hall Edition
Reference book:
Electronic Materials and Devices by S. O. Kasap
Lectures and Examinations:
Two weekly lectures of 100 minutes duration each. One in class midterm and a
comprehensive final examination.
Grading Scheme:
Quizzes:
Assignment:
Midterm:
Final:
20%
10%
30%
40%
Module Titles:
1.
Crystal properties and growth of semiconductors
2.
Atoms and electrons
3.
Energy Band and charged carriers in semiconductors
4.
Excess carriers in semiconductors
1.0 week.
1.0week.
2.0weeks
2.0weeks.
5.
6.
7.
Semiconductor devices
Dielectric materials and insulation
Magnetic Materials
2.0 weeks.
1.0 week.
1.0 week
Course Topics:
Lecture #
1-2
3– 4
5–8
9 -11
12
13 – 16
17 – 18
19 – 20
Course Topics
Crystal properties and growth of semiconductors
Electrical and thermal conduction in solids
Energy Band and charged carriers in semiconductors
Excess carriers in semiconductors
Mid Term
Semiconductor devices
Dielectric materials and insulation
Magnetic Materials
Readings
Chp. 1
Chp. 2
Chp. 3
Chp.4
Chp. 5 & 6
Chp. 7
Chp. 7