Course detail

Digital chips design basics

FIT-ZCHAcad. year: 2025/2026

Introduction to the design process of digital chips in CMOS technology. Introduction of key elements at transistor level, their behaviour and rules of use in VLSI circuit design. The use of elements to build combinational and sequential digital circuits, typical structures, delay, timing, power consumption issues. Design process, setting design constraints, optimization, implementation and design verification. Signoff analysis. Design tools.

Language of instruction

Czech

Number of ECTS credits

Mode of study

Not applicable.

Entry knowledge

Knowledge of the basics of electronics, behaviour of basic elements (resistor, capacitor, coil, diode, transistor), circuit laws. Boolean algebra and its implementation in digital circuits. Basic logic gates (invertor, NAND, NOR, XOR), flip-flop circuits (T, D, J-K, R-S).

Rules for evaluation and completion of the course

  • Each lecture 1-6 will be followed by a short electronic test for up to 3 points to test key knowledge from the lectures.
  • A mid-semester summative written test for up to 30 points on the knowledge needed to solve practical problems in the laboratory and in the project.
  • In the second half of the semester, a total of 4 lab exercises for up to 3 points each, the exercises always build on the various parts of the design process discussed in lecture.
  • A project on a chosen topic for up to 40 points.

Aims

  • To get an overview of the whole process of designing VLSI digital circuits in CMOS technology, to get to know the individual steps of the process and their continuity, to get an idea of their complexity and pitfalls.
  • To learn the tools to support the design of VLSI digital circuits in CMOS technology.
  • To practice the key steps of the design process with simple examples.

Study aids

Not applicable.

Prerequisites and corequisites

Not applicable.

Basic literature

Weste, N., Harris, D.: CMOS VLSI Design: A Circuits and Systems Perspective. 4th Edition, 2010. ISBN 978-0321547743. (EN)
Weste, N., Harris, D.: CMOS VLSI Design: A Circuits and Systems Perspective. 4th Edition, 2010. ISBN 978-0321547743. (CS)

Recommended reading

Not applicable.

Classification of course in study plans

  • Programme MITAI Master's

    specialization NSEC , 0 year of study, summer semester, elective
    specialization NNET , 0 year of study, summer semester, elective
    specialization NMAL , 0 year of study, summer semester, elective
    specialization NCPS , 0 year of study, summer semester, elective
    specialization NHPC , 0 year of study, summer semester, elective
    specialization NVER , 0 year of study, summer semester, elective
    specialization NIDE , 0 year of study, summer semester, elective
    specialization NISY , 0 year of study, summer semester, elective
    specialization NEMB , 0 year of study, summer semester, elective
    specialization NSPE , 0 year of study, summer semester, elective
    specialization NEMB , 0 year of study, summer semester, elective
    specialization NBIO , 0 year of study, summer semester, elective
    specialization NSEN , 0 year of study, summer semester, elective
    specialization NVIZ , 0 year of study, summer semester, elective
    specialization NGRI , 0 year of study, summer semester, elective
    specialization NADE , 0 year of study, summer semester, elective
    specialization NISD , 0 year of study, summer semester, elective
    specialization NMAT , 0 year of study, summer semester, elective

Type of course unit

 

Lecture

26 hod., optionally

Teacher / Lecturer

Syllabus

 

Laboratory exercise

12 hod., optionally

Teacher / Lecturer

Project

18 hod., optionally

Teacher / Lecturer

Individual preparation for an ending of the course

18 hod., optionally

Teacher / Lecturer

Self-study

38 hod., optionally

Teacher / Lecturer