ELE 523E: Computational Nanoelectronics
From NANOxCOMP H2020 Project
Contents |
Announcements
- Nov. 16th The third homework has been posted that is due 30/11/2015 before 13:30.
- Nov. 10th To see your grades click here.
- Nov. 2nd The second homework has been posted that is due 16/11/2015 before 13:30.
- Oct. 11th No class on Oct. 12th, the university is closed.
- Oct. 5th The first homework has been posted that is due 19/10/2015 before 13:30.
- Sept. 12th The class is given in the room Z2 (ground floor), EEF.
Overview
As current CMOS based technologies are approaching their anticipated limits, emerging nanotechnologies are expected to replace their role in electronic circuits. This course overviews nanoelectronic circuits in a comparison with those of conventional CMOS-based. Deterministic and probobalistic emerging computing models are investigated. Regarding the interdisciplinary nature of emerging technologies, this course is appropriate for graduate students in different majors including electronics engineering, control engineering, computer science, applied physics, and mathematics. No prior course is required; only basic (college-level) knowledge in circuit design and mathematics is assumed. Topics that are covered include:
- Devices in computational nanoelectronics (in comparison with CMOS) including nano arrays, switches, and transistors.
- Introduction of emerging computing models in circuit level.
- Analysis and synthesis of deterministic and probabilistic models.
- Performance of the computing models regarding area, power, speed, and accuracy.
- Uncertainty and defects: defect tolerance techniques for permanent and transient errors.
Syllabus
ELE 523E: Computational Nanoelectronics, CRN: 14647, Mondays 13:30-16:30, Room: Z2 (Ground Floor-EEF), Fall 2015.
Instructor
|
|
Grading
|
|
Reference Books
|
|
Policies
|
|
Weekly Course Plan
Date
|
Topic
|
Week 1, 14/9/2015 | Introduction |
Week 2, 21/9/2015 | HOLIDAY, no class |
Week 3, 28/9/2015 | Overview of emerging nanoscale devices and switches |
Weeks 4, 5/10/2015 | Reversible quantum computing |
Weeks 5, 12/10/2015 | HOLIDAY, no class |
Week 6, 19/10/2015 | Molecular computing |
Weeks 7, 26/10/2015 | Computing with switching nano arrays |
Week 8, 2/11/2015 | Stochastic/Probabilistic computing |
Week 9, 9/11/2015 | Performance optimization for stochastic computing |
Weeks 10, 16/11/2015 | Defects and reliability in nanoelectronics |
Week 11, 23/11/2015 | MIDTERM |
Week 12, 30/11/2015 | Overview of the midterm, the presentation schedule, and the final project |
Weeks 13, 7/12/2015 | Student presentations |
Weeks 14, 14/12/2015 | Student presentations |
Weeks 15, 21/12/2015 | Student presentations |
Course Materials
Lecture Slides | Lecture Slides | Lecture Slides | Homeworks | Presentations & Exams & Projects |
---|---|---|---|---|
W1: Introduction | W6: Molecular Computing | Homework 1 | ||
W3: Emerging Computing | W7: Nanoarray based Computing | Homework 2 | ||
W4: Reversible Quantum Computing | W8-W9: Probabilistic Computing | Homework 3 |