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Electronics Technology and Materials

Elektronikai technológia és anyagismeret
A tantárgyleírás hatályossága
Hatályosság kezdete:
2026. March 21.
Hatályosság vége:
Subject name (Hungarian, English)
Elektronikai technológia és anyagismeret
Electronics Technology and Materials
Subject code BMEVIETAB00
Subject type
Training Level
Course types and hours (weekly/semester)
Course type lecture tutorial laboratory
hours (weekly) 3 0 2
type (linked/independent) derived course
Assessment type félévközi érdemjegy
Credits 6
Subject coordinator
DR. Krammer Olivér
position: egyetemi docens
Responsible department
Elektronikai Technológia Tanszék
Faculty Villamosmérnöki és Informatikai Kar
Subject website http://www.ett.bme.hu/education/vietab00
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
Classification of electronic components, substrates, subassemblies, materials for electronics
Through-hole and surface mounted components
Metals. Mechanical characteristics and properties (tensile strength, yield point), conduction, materials of wires and resistors, temperature dependence, structure and thermal behaviour of alloys, phase-diagram, eutectics, solid solution, intermetallic compounds. 
Wave soldering of components
Reflow soldering technology, selective soldering technologies
Mounting and packaging of semiconductor chips and module circuits
Basics of crystallography, Bravais lattice, Miller indices, crystallographic defects (point defect, dislocations), growth of single crystals, recrystallisation
Properties of semiconducting materials, elemental semiconductors, compound semiconductors, doping, diffusion, ion-implantation
Fabrication of semiconductor wafers
Layer deposition and doping technologies, construction of transistors
Patterning and device structuring of semiconductor wafers
Thin-film technologies
Vacuum techniques
Electrical properties of insulating materials, ceramics, composites, glasses, plastics
Ceramic based thick-films technology
Polymer thick-films and multilayer ceramic technologies
Single-sided and double-sided printed wiring boards
Multilayer printed wiring boards, HDI substrates
Computer aided design
Construction principles of electronic appliances 
Thermal management and construction of electronic appliances
Analysis techniques, X-ray diffraction, microscopy, SEM, TEM

Topics of Laboratory exercises:
Technology of printed wiring boards (PWBs)
Technology of thin-film circuits, laser patterning and microstructuring
Thick film technology
Scanning Electron Microscopy
Assembly of through hole components by reflow soldering technology
Preparation of circuit modules by surface mount technology (SMT)
PCB Design for testing assembly technologies

Electronics Technology and Materials is a nature science based subject that aims basically at teaching students principals, theoretical and practical knowledge on materials and realisation of electronic module circuits and systems. The subject also aims at giving a basic overview on the structure, build-up, manufacturing and assembling technologies of materials, components, devices and circuit modules used in microelectronics, as well as on the perspectives and advances of this field. The set of information integrated into the subject summarizes the knowledge on electronics technology and materials of microelectronics, circuit design, assembling technologies and device construction in a way to support all electrical engineers who deal with the design and realisation of integrated circuits, electronic devices and systems and who need to communicate with other professionals specialized in this field.

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

Lectures, laboratory exercises.

Tanulástámogató anyagok

Online források
Harsányi Gábor: Elektronikai technológia, BME Viking Zrt., VI202-010, Budapest, 2011; B. Illés, O. Krammer, A. Géczy: Reflow Soldering: Apparatus and Heat Transfer Processes, Elsevier, Amsterdam, Hollandia, 2020, ISBN: 9780128185056; Pinkola János (szerk.): Elektronikai Technológia Laboratórium, Műegyetemi kiadó, 55082, Budapest, 2007

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)
Mathematics A1, Physics 1.
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)
Mathematics A1, Physics 1.
General rules
Requirements: Period for lectures, seminars and practical work: Participation in all 7 laboratory exercises and successful fulfillment. All laboratory exercises begin with a 15-minute test for checking successful preparation. A minimum of satisfactory level is expected. Two 60-minute mid-terms have to be fulfilled on a minimum of satisfactory level. Examination period: no requirement. Additional possibilities: If failed, the 15-minute test can only be retaken with the complete laboratory exercise. No more than 2 laboratory exercises can be retaken during the semester. Retaking the mid-terms for any reason (fail, intention to improve) is only possible one time. Re-retake is only allowed if the previous mid-terms are generally unsuccessful (less than one-third could pass).
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.