6.776 High Speed Comm Circuits
Spring 2008
Instructor: Joel L Dawson
TA: SungWon Chung
Lecture: WF9.30-11 (36-112)
Information:
Text
Lee, Thomas H. The Design of CMOS Radio-Frequency Integrated
Circuits, 2nd Edition. Cambridge, UK:
Cambridge University Press, 2004. ISBN: 0 521 83539 9
Introduction
Communications systems represent an incredible integration of the
basics of our field. Expertise in device physics, thermodynamics,
the theory of linear and nonlinear systems, control theory, circuit
design, E&M, communications theory, and digital signal
processing all find application to the problem of communications
system design.
This semester we focus on radio-frequency (RF) circuit design for wireless systems. We will have a great deal to say about design techniques, and you will begin to develop the skills of an RF designer. However, we also stress the why of RF circuit design. Why do we design at such high frequencies? Why do we design for low noise? Why do we like our amplifiers linear? Understanding the answers to these questions will help you apply your expertise in RF circuits to the next hot research topic, and to other engineering fields of interest to you.
Prerequisites
The prerequisite for this course is 6.301 Solid-State
Circuits, or equivalent. By “equivalent,” we mean experience
in designing analog circuits to demanding specifications, and in
getting them to work in the laboratory. It is also assumed that you
have had some exposure to feedback systems.
Announcements
Remember to do class evaluations
Remember to take a few minutes to do a class evaluation. Letting us know what you thought really has a substantial impact on the evolution of this course going forward. I believe the right place to go for this is here:
http://sixweb.mit.edu/
The site closes on May 20th.
Thanks again for a great semester, and good luck to you all.
Best regards,
Joel
Announced on 14 May 2008 12:10 p.m. by Joel Dawson
Lab 2 Final Report
Many queries on the page limit of the Lab 2 final report have been received. The 6-10 page limit of the Lab 2 final report does not have to include schematics and plots if you find you are pressed for space.
Second many queries were on the measurement of PLL closed-loop bandwidth. Due to the complication of necessary experiment setup, you don't have to accurately measure the PLL closed-loop bandwidth. Measurement based on a first-order approximation with the 'delay' of 'VCO input signal change' from the 'PLL input signal' change is enough.
Sungwon
Announced on 12 May 2008 10:53 p.m. by SungWon Chung
Lab 2 Presentation Schedule Update
The Lab 2 Wednesday presentation schedule is updated.
Presentations should be within 10 minutes including Q&A.
You'll need to email TA your presentation slides in
'pdf' format the day before presentation.
5/14 Wednesday
1. Amir & Mike
2. Matt & Jason
3. Woradorn & David
4. Zhipengg & Usha
5. Vin & John
6. Pat & David
7. Oh & Philip
8. Wei & Imran
9. Willie
In the Wednesday class, Lab 2 final report is due and graded
problem set 5 and 6 will be available.
Sungwon
Announced on 09 May 2008 1:49 p.m. by SungWon Chung
Lab 2 Presentation
The Lab 2
presentation schedule is set. Presentations should be within 10
minutes including Q&A. You'll need to email TA your
presentation slides in 'pdf' format the day before
presentation.
5/9 Friday
1. Hyun & Albert
2. Kailiang & Nan
3. Jackie & Robert
4. Dongwan & Jian
5. Muyiwa
6. Hui
5/14 Wednesday
1. Matt & Jason
2. Woradorn & David
3. Zhipengg & Usha
4. Vin & John
5. Pat & David
6. Oh & Philip
7. Wei & Imran
8. Willie
Those who didn't set up presentation schedule should contact TA soon.
Best,
Sungwon
Announced on 07 May 2008 11:11 p.m. by SungWon Chung
Nat Sokal to speak tomorrow
Nat Sokal, inventor of the class E power amplifier, will be giving a seminar tomorrow in 32-155 at 4pm. Should be a very interesting talk.
Best,
Joel
Announced on 30 April 2008 8:49 p.m. by Joel Dawson