Subject » BMEVIEEMB00
Smart Systems Design Laboratory
Smart Systems Design Laboratory
A tantárgyleírás hatályossága
Hatályosság kezdete:
2026. March 21.
Hatályosság vége:
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| Subject name (Hungarian, English) |
Smart Systems Design Laboratory
Smart Systems Design Laboratory
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| Subject code | BMEVIEEMB00 | ||||||||||||
| Subject type | — | ||||||||||||
| Training Level | — | ||||||||||||
| Course types and hours (weekly/semester) |
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| Assessment type | félévközi érdemjegy | ||||||||||||
| Credits | 2 | ||||||||||||
| Subject coordinator |
DR. Szabó Péter Gábor
position: egyetemi docens
contact:
szabo.peter@vik.bme.hu
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| Responsible department |
Elektronikus Eszközök Tanszéke
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| 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
- FEM basics I.:: nodes, elements, branching, solvers (ANSYS mechanical APDL)
- FEM basics II.: Analysis of micromechanical problems (Beam stresses and deflections, Bending of a Solid Beam (Plane Elements) Large Deflection of a Cantilever), coupled field problems: electro-thermal domain
- Work environment of FEM tools I: Workbench fundamentals – design modeler, import geometries, solution analysis (ANSYS Workbench)
- Work environment of FEM tools II: Parameter sweeping, coupled field analysis: thermo-electro-mechanic effect (ANSYS Workbench)
- Speeding up the simulation by the application of reduced order models (RoM-s) I.: model preparation, solution analysis, generate & use pass, geometry extension
- Project work I: MEMS layout design, simulation and optimization by FEM tools I.
- Project work II: MEMS layout design, simulation and optimization by FEM tools II.
- Project work III: MEMS layout design, simulation and optimization by FEM tools III.
- Digital design toolchain I.: VHDL-based RTL design and functional verification
- Digital design toolchain II.: from RTL to silicon: dynthesis and timing simulation
- Project work IV: HDL design practice I.
- Project work V: HDL design practice II.
- Project work VI: HDL design practice III.
- Project work VII: Integrated system testing
The
laboratory practice covers the complete design flow of IC and MEMS co-design. A
workgroup of students are designing a Smart System solution including MEMS
sensors and actuators and the relevant CMOS circuitry. The laboratory practice
is built on the lecture course of System Level Design. Up to date industry
standard software CAD tools are utilized thanks to the EU and international
support.
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
2
hours/week computer based demonstration with practical examples, case studies
and hands-on tutorials. During the semester the students have to carry out a 3
phase project work individually.
Tanulástámogató anyagok
Online források
Mandatory curriculum:; - ; Periodically; updated electronic tutorials by the instructors; Appointed; chapters from the „Optional, auxiliary resources”; Optional, auxiliary; resources; Joel A. Kubby: ”A Guide to Hands-on MEMS Design and; Prototyping”, Cambridge University Press, 2011. ISBN 978-0-521-88925-4; Brand, Fedder, Hierold, Korvink, Tabata: „System-level; Modeling of MEMS”, Wiley-VCH, 2013. ISBN 978-3-527-31903-9; Huei-Huang; Lee: „Finite Element Simulations with ANSYS Workbench 15”, SDC Publications, 2014. ISBN 978-1585039074; Peter J.; Ashenden, Jim Lewis: „The Designer's Guide to VHDL”, Elsevier Inc., 2008.; ISBN 978-0-12-088785-9; Zainalabedin; Navabi: „VHDL - Modular Design and Synthesis of Cores and Systems”, McGraw-Hill; Professional, 2007. ISBN 978-0071475457; For Hungarian speaking students:; Kovács Ádám,; Moharos István, Oldal István, Szekrényes András: „VÉGESELEM-MÓDSZER - Egyetemi; tananyag”, Typotex Kiadó, 2011. ISBN 978-963-279-539-3; Hosszú; Gábor, Keresztes Péter: „VHDL-alapú rendszertervezés”, Szak Kiadó, 2012.; ISBN 978-963-9863-24-8
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)
Physics,
microelectronics, electronics digital technic, system level design, sensors and
actuators
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)
Physics,
microelectronics, electronics digital technic, system level design, sensors and
actuators
General rules
Requirements:
In order to
obtain credit for the subject the students have to participate in all of the
laboratory practices and complete the predefined work, which is evaluated by
the laboratory instructor.
In addition
a written report about the design work must be filed at the end of the semester
which is evaluated by the instructors.
Additional possibilities:
If a
student fails to turn up at any laboratory practices or does not complete the
predefined tasks, then the missed/failed laboratory practice has to be
repeated. Only two missed/failed laboratory practice can be repeated.
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
The subject
cannot be chosen unless the credits have been obtained for the following
subjects:
BMEVIEEMA04
Fundamentals
of Smart Systems
BMEVIEEMA05
System
Level Design
BMEVIEEMA06
Áramköri
környzezet kialakítása
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.