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Complex Hardware Design

Komplex hardvertervezés
A tantárgyleírás hatályossága
Hatályosság kezdete:
2026. March 21.
Hatályosság vége:
Subject name (Hungarian, English)
Komplex hardvertervezés
Complex Hardware Design
Subject code BMEVIEEM244
Subject type
Training Level
Course types and hours (weekly/semester)
Course type lecture tutorial laboratory
hours (weekly) 2 0 2
type (linked/independent) derived course
Assessment type vizsga
Credits 4
Subject coordinator
DR. Ress Sándor László
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

Lecture topics:

1:    Introduction: design flow from the specification to the realized device

2:    Overview of design methods, introduction of up-to-date MCAD and ECAD systems. Specification issues.

3:    Comparison of hardware implementation techniques from microcontrollers to ASIC devices.

4:    System design approach. Case study: System-on-a-Chip Devices, peripherals of a SoC

5:    Central hardware alternatives, Programmable Devices (CPU, MCU, CPLD, FPGA and SoC overview)

6-7: Communication in complex hardware systems: on-die, on-board, on-system communication methods

8-9: Sensors in complex systems: compact solutions for transducers and sensors, signal conditioning, calibration, correction circuits, embedded system applications, thermal/pressure/force/acceleration sensors.

10-11:Power management: design issues, wired and wireless techniques. Buck/boost/Cuk/charge-pump converters, Flyback/forward converters, design case study

12:  High power devices in complex systems. Discrete components, mechanical and thermal issues.

13:  Virtual instrumentation, instrument control: sequential processing, master-slave and producer-consumer design patterns, state machines.

The course aims to introduce the design and development of the modern complex hardware systems from the idea to the implementation. The students will get insight into the state-of-the art methods and design systems available in hardware design, testing and measurement automation. The design laboratory practices focus on the practical design issues of hardware components, embedded systems and instrument control.

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 lectures and 2 hour/week (computer) laboratory practices including demonstration with practical examples and case studies.

Tanulástámogató anyagok

Online források
Mandatory curriculum:;     Periodically updated electronic tutorials by the instructors

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)
Fundamentals of Smart Systems, 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)
Fundamentals of Smart Systems, Sensors and Actuators
General rules
Requirements: a.    During the term: one mid-term test Requirement for granting the signature: >= 2 (satisfactory). b.    In the exam period: Way of examination: written Additional possibilities: On mid-term test If a student fails to pass at mid-term test, it can be repeated during the term. In principle there is no second repetition.
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 is only for the students of Joint International Master in Smart Systems Integration. Registration for the subject is not allowed for students who gained credits from VIEEBV04 (Complex hardware design I.) or VIEEAV13 (Complex hardware design on cyber physical platforms).
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.