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CZECH TECHNICAL UNIVERSITY IN PRAGUE
STUDY PLANS
2011/2012

Electronics and Microelectronics

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Code Completion Credits Range Language
A4B34EM Z,ZK 6 2+2L Czech
Lecturer:
Jiří Jakovenko (gar.), Vladimír Janíček
Tutor:
Jiří Jakovenko (gar.), Vladimír Janíček
Supervisor:
Department of Microelectronics
Synopsis:

Semiconductors fundamentals, PN junction. Bipolar transistor, MOSFET structure. Fundamentals of Integrated systems processing technologies. CMOS technology, layout design, design rules. Analogue CMOS integrated circuits blocks, AD and DA convertors. Memory structures. Micro-electro-mechanical systems. Optoelectronics devices.

Requirements:
Syllabus of lectures:

1.Microelectronics and integrated circuit design history, roadmaps, Moor?s laws, IO design methodologies, current trends

2.Semiconductors fundamentals - types and properties, PN junction, metal-semiconductor junction, diode.

3.Bipolar transistor, MOSFET - architecture, working principle, substitutive models.

4.Fabrication process of semiconductor devices and integrated circuits.

5.CMOS fabrication process, layout, topological masks, isolation methods, CMOS process variances, interconnection technology.

6.Advanced IC technologies, advanced sub-micron technologies, SOI, RF IC.

7.Software tools for IC design, analogue, digital and mix-signal integrated systems design methodologies, design abstraction levels, application specific integrated systems, design economical aspects.

8.Layout design, design rules, parasitics, parasitics extraction. Interconnection design methods, delay calculation, time analysis, crosstalk and interference problems.

9.CMOS logic gate parameters, gate power dissipation, delay, bus drivers.

10.Fundamental blocks of analogue CMOS ICs, operational amplifier.

11.Integrated AD and DA converters - types, speed and power dissipation.

12.Integrated memories structures - DRAM, SRAM, EEPROM, Flash.

13.Design of Micro-electro-mechanical systems (MEMS), technologies, application.

14.Optoelectronics fundamentals, photodiode, phototransistor, laser, LED - parameters, applications.

Syllabus of tutorials:

1.Introduction to CADENCE design tools.

2.CMOS design kits and libraries, simulator Spectre - analysis types. Models for active and passive devices.

3.Design, simulation and testing of amplifier stage.

4.Logic gates static and dynamic parameters and characteristics of CMOS transmition gate.

5.Analog design, tests and testbenches .

6.Influence of processing variances, Corner analysis, Monte Carlo analysis.

7.Layout of analogue IC.

8.Layout of analogue IC.

9.Design rule check, parasitic extraction.

10.Digital IC design flow, simulations.

11.Digital design synthesis and verification.

12.Student project

13.Student project

14.Work presentation, final assessment

Study Objective:
Study materials:

P. Gray, P Hurst, S. Lewis, R. Mayer: "Analysis and Design of Analog

Integrated Circuits", John Wiley and Sons, 2000

Note:
Time-table for winter semester 2011/2012:
06:00–08:0008:00–10:0010:00–12:0012:00–14:0014:00–16:0016:00–18:0018:00–20:0020:00–22:0022:00–24:00
Mon
roomT2:C3-s143
Janíček V.
Jakovenko J.

11:00–12:30
(lecture parallel1
parallel nr.102)

Dejvice
POČ. UČEBNA
roomT2:B2-s141j
Janíček V.
Jakovenko J.

11:00–12:30
(lecture parallel1
parallel nr.102)

Dejvice
Cvičebna K334
Tue
roomT2:B2-s141k
Jakovenko J.
14:30–16:00
(lecture parallel1)
Dejvice
Cvičebna
Fri
Thu
Fri
Time-table for summer semester 2011/2012:
Time-table is not available yet
The course is a part of the following study plans:
Generated on 2012-7-9
For updated information see http://bilakniha.cvut.cz/en/predmet12582004.html