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Electronic Systems Project

Code: LEEC22141     Sigla: PDSE

Áreas Científicas
Classificação Área Científica
OFICIAL Electrónica e Telecomunicações

Ocorrência: 2022/2023 - 2S

Ativa? Yes
Página Web: https://moodle.ips.pt/2122/course/view.php?id=62
Unidade Responsável: Departamento de Engenharia Eletrotécnica
Curso/CE Responsável: Electrical and Computer Engineering

Ciclos de Estudo/Cursos

Sigla Nº de Estudantes Plano de Estudos Anos Curriculares Créditos UCN Créditos ECTS Horas de Contacto Horas Totais
EEC 26 Plano de Estudos 2 - 6 75 162

Docência - Responsabilidades

Docente Responsabilidade
Manuel Mota Ferreira

Docência - Horas

Practical and Laboratory: 4,00
Orientação Tutorial: 1,00
Type Docente Turmas Horas
Practical and Laboratory Totais 2 8,00
Manuel Mota Ferreira 8,00
Orientação Tutorial Totais 1 1,00
Manuel Mota Ferreira 1,00

Língua de trabalho

Portuguese

Objetivos

The main objectives of the work to be developed are:


  • Integrate knowledge acquired transversally to the various subjects of the course, through the use of this knowledge as the basis for the development of an electronic circuit design project.

  • To give the student skills for work integrated into a team.

  • Allow the student to develop knowledge and skills in the design of electronic systems and circuit simulation.

  • Provide the student with knowledge and skills in the field of printed circuit board design.

Resultados de aprendizagem e competências

.

Modo de trabalho

Presencial

Pré-requisitos (conhecimentos prévios) e co-requisitos (conhecimentos simultâneos)

Basic knowledge of electronics.

Programa


  • Schematic concept.

  • Design of schematic electronic circuits, using EDA software.

  • Simulation of electronic circuits.

  • Design of printed circuit boards, using EDA software.

  • Realization of a project.

Bibliografia Obrigatória

Jens Lienig, Hans Bruemmer; Fundamentals of Electronic Systems Design, Springer International Publishing, 2017. ISBN: 978-3-319-55840-0 (https://link.springer.com/book/10.1007/978-3-319-55840-0)
Raghbir Singh Khandpur; Printed Circuit Boards: Design, Fabrication, Assembly and Testing, McGraw-Hill Companies, 2006. ISBN: 9780780311312

Métodos de ensino e atividades de aprendizagem





Students must execute a project that requires the use of knowledge acquired. The project is carried out by a group of students and accompanied by a teacher. The evaluation takes place in 3 phases:
1. Elaboration and formal presentation of a report with the project specifications. The proposed solution should present, among other aspects, technologies to be used and the system block diagram.
2. Preparation and presentation of a report describing the system developed, including schematics, simulations, and printed circuit board design.
3. Final report and formal presentation of the project developed.





Software

https://www.kicad.org/
http://qucsstudio.de/

Tipo de avaliação

Distributed evaluation without final exam

Componentes de Avaliação

Designation Peso (%)
Defesa pública de dissertação, de relatório de projeto ou estágio, ou de tese 20,00
Trabalho laboratorial 80,00
Total: 100,00

Componentes de Ocupação

Designation Tempo (Horas)
Apresentação/discussão de um trabalho científico 2,00
Elaboração de projeto 20,00
Estudo autónomo 35,00
Frequência das aulas 75,00
Trabalho laboratorial 30,00
Total: 162,00

Obtenção de frequência

Project


  • A project is proposed to the students, the execution of which requires the application of the knowledge acquired and to be acquired during the current semester. The project is carried out by a group of students and supervised by a teacher. The project consists of 4 phases:




    • Specification of the project;

    • Schematic design;

    • PCB design;

    • Presentation.




Assessment of the components


  • Lab work.

  • 3D modelling work.

  • At the end of the course, students must complete a project that includes all of the following components:


    • Design of a PCB;

    • Design of a box for the project using 3D modelling tools;

    • Project dossier.


  • Note: All components are equally important. The project will not be considered complete if any of the above components have not been properly completed.

Fórmula de cálculo da classificação final

The final grade is calculated according to the following formula:

NF=0.1× 3D+ 0.15× SH + 0.15× PCB+ 0.4× DP + 0.2× AP


  • 3D: 3D modelling work;

  • SH: project dossier from the electrical schematics laboratory;

  • PCB: project dossier from the PCB design laboratory;

  • DP: final version of the project dossier with all required documents;

  • AP final presentation of the project.


Notes:


  • The 3D, SH and PCB components are realised individually;

  • The subject project is carried out in a group;

  • All elements of the assessment have a minimum score of 9,50;

  • All components must be completed in each assessment season;

  • The project can be presented in the appeal season with a deduction of 4 points;

  • The Kicad component (circuit diagram and PCB) in the special period corresponds to a practical exam where the student has to draw a circuit diagram and the corresponding PCB.

Provas e trabalhos especiais

Special period and others:


  • All assessment components have a minimum score of 9.50;

  • All components must be completed in each assessment season;

  • The project may be submitted in the special period with a deduction of 4 points;

  • The Kicad component (schematic and PCB) in the appeal season is equivalent to a practical exam where the student must draw a schematic and the corresponding PCB.

Avaliação especial (TE, DA, ...)

Working Students, High Competition Athletes, Associative Managers and Students under the Law of Religious Freedom must contact the person responsible for the UC, during the first fortnight of classes, to present their relevant specificities, as provided for in the respective legal diplomas.

Melhoria de classificação

The grade improvement is subject to registration at the Academic Services in accordance with the regulations in force. The grade improvement requires prior discussion, with the course professor, to clarify which aspects of the project will be improved and is subject to the presentation of a new report and new presentation of the project under conditions to be determined.

Observações

Attendance regime
The student is subject to absences and may miss a maximum of 10 hours of laboratory practice classes. Students with student worker status must contact the course professor during the first fortnight of class to determine the best plan to apply on a case-by-case basis.
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