35359 - Microelectronics M

Academic Year 2020/2021

  • Teaching Mode: Traditional lectures
  • Campus: Bologna
  • Corso: Second cycle degree programme (LM) in Electronic Engineering (cod. 0934)

Learning outcomes

To illustrate the fabrication methods for the integrated circuits and the functioning of the most important semiconductor devices.

Readings/Bibliography

D. A. Neamen, Semiconductor Physics and Devices, IRWIN, 1992.

G. Soncini, Tecnologie microelettroniche, Boringhieri, 1986.

W. Maly, Atlas of IC Technologies: an Introduction to VLSI
Processes, The Benjamin-Cummings Publishing Co., 1987.

M. Rudan, Tavole di Microelettronica, Pitagora, 3ª Ed., 2001.

M. Rudan, Physics of Semiconductor Devices, Springer, 1a
edizione 2015, 2a edizione 2018.

M. Sze, Semiconductor Devices — Physics and Technology,
Wiley, 1985.

E. De Castro, Fondamenti di Elettronica — Fisica elettronica ed
elementi di teoria dei dispositivi, UTET, 1975.

E. De Castro, Teoria dei dispositivi a semiconduttore, Pàtron,
1983.

G. Baccarani, Dispositivi MOS, Pàtron, 1982.

Teaching methods

Lessons and practice.

Assessment methods

Oral examination. Numerical rating between 0 and 30. The examination is passed if the rating is equal to, or larger than 18.

Teaching tools

Teaching material: slides, notes and examples of exercises with solutions will be available to students via the distribution list or in https://www.unibo.it/sitoweb/susanna.reggiani/contenuti-utili

Office hours

See the website of Susanna Reggiani

SDGs

Industry, innovation and infrastructure Responsible consumption and production

This teaching activity contributes to the achievement of the Sustainable Development Goals of the UN 2030 Agenda.