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IC and MEMS design laboratory practice

IC és MEMS tervezés laboratórium
A tantárgyleírás hatályossága
Hatályosság kezdete:
2026. March 21.
Hatályosság vége:
Subject name (Hungarian, English)
IC és MEMS tervezés laboratórium
IC and MEMS design laboratory practice
Subject code BMEVIEEM314
Subject type
Training Level
Course types and hours (weekly/semester)
Course type lecture tutorial laboratory
hours (weekly) 0 0 3
type (linked/independent) autonomous course
Assessment type félévközi érdemjegy
Credits 4
Subject coordinator
Dr. Ender Ferenc
position: egyetemi docens
Responsible department
Elektronikus Eszközök Tanszéke
Faculty Villamosmérnöki és Informatikai Kar
Subject website
Primary curriculum type
Direct prerequisites – Strong prerequisite none
Direct prerequisites – Weak prerequisite none
Direct prerequisites – Parallel prerequisite none
Direct prerequisites – Milestone prerequisite none
Direct prerequisites – Exclusion none

Objectives

Programme

Part 1. – Integrated Circuit Design

Week 1 – Getting know the hardware and software environment, deisgn approach

Week 2-4 – Schematic design, circuit simulation, layout design, post-layout simulation

Week 5-7 – HDL description of a digital circuit, simulation, logical and physical synthesis, post-layout simulation

Part 2. – MEMS design

Week 8 – Getting know the MEMS design software tools, design approach

Week 9 – Simulation methods (FEM, ROM, Multiphysics methods)

Week 10-12 – Individual work (design task)

Part 3. – MEMS and CMOS on the same substrate co-design

Week 13-14 – Systematic assembly of the analogue, digital and MEMS compact models, integrated simulation approach

The aim of the course is an introduction to the design methods of state of the art Miced Signal System-on-Chip systems. The students are getting familiar with up to date CAD systems operation and maintenance.

Learning outcomes

Ez a tantárgy a KKK rendeletben meghatározott, következő kompetenciák fejlesztését szolgálja:

Knowledge

No learning outcomes recorded.

Skills

No learning outcomes recorded.

Attitudes

No learning outcomes recorded.

Autonomy and responsibility

No learning outcomes recorded.

Oktatási módszertan

Laboratory practice with computer workstations

Tanulástámogató anyagok

Online források
Dr. György Bornár: “VLSI áramkörök; tervezése és vizsgálata”, e-book, 2011

Recommended preliminary knowledge for completing the subject

Knowledge type competencies
(azon előzetes ismeretek összessége, amelyek megléte nem kötelező, de a tantárgy eredményes teljesítését nagyban elősegíti)
Electronics, Microelectronics, VLSI Circuits
Skill type competencies
(azon előzetes képességek és készségek összessége, amelyek megléte nem kötelező, de a tantárgy eredményes teljesítését nagyban elősegíti)
nincs
Recommended (non-compulsory) preliminary competencies
(azon ajánlott (nem kötelező) előzetesen megszerzendő kompetenciák összessége, amelyek jelentősen hozzájárulnak a tantárgy eredményes teljesítéséhez)
Electronics, Microelectronics, VLSI Circuits
General rules
Requirements: The course ends with intermediate grading assumed that the small projects during the semester were completed with at least satisfactory grade. Additional possibilities: 33% of the small projects can be repeated in the repeat week.
Assessment methods
In-term assessments

No detailed assessments provided.

Weight of in-term assessments

No weights provided.

Exam-period assessments

No detailed assessments provided.

Weight of exam elements

No weights provided.

Grade calculation

No grade thresholds provided.

Attendance requirements

No attendance requirements provided.

Rules for retake and resubmission

Not provided.

Short description

Not provided.

Detailed description

Not provided.

Recommended courses

Not provided.

Workload to complete the subject

No workload breakdown provided.

Validity of subject requirements
Requirements valid from:
Requirements valid until:
Curriculum placement

No curriculum placements recorded for this subject version.