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Syllabus 2015-16 - 14312006 - General Electronics (Electrónica general)

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  • Level 1: Tutorial support sessions, materials and exams in this language
  • Level 2: Tutorial support sessions, materials, exams and seminars in this language
  • Level 3: Tutorial support sessions, materials, exams, seminars and regular lectures in this language
DEGREE: Grado en Ingeniería de telecomunicación (14312006)
FACULTY: SCHOOL OF ENGINEERING OF LINARES
DEGREE: Grado en Ingeniería telemática (14512002)
FACULTY: SCHOOL OF ENGINEERING OF LINARES
ACADEMIC YEAR: 2015-16
COURSE: General Electronics
SYLLABUS
1. COURSE BASIC INFORMATION
NAME: General Electronics
CODE: 14312006 (*) ACADEMIC YEAR: 2015-16
LANGUAGE: English LEVEL: 2
ECTS CREDITS: 6.0 YEAR: 2 SEMESTER: PC
2. LECTURER BASIC INFORMATION
NAME: FUENTES CONDE, MANUEL
DEPARTMENT: U133 - ING. ELECTRÓNICA Y AUTOMATICA
FIELD OF STUDY: 785 - TECNOLOGÍA ELECTRÓNICA
OFFICE NO.: D - 113 E-MAIL: mfuentes@ujaen.es P: 953648613
WEBSITE: http://www4.ujaen.es/~mfuentes/
ORCID: https://orcid.org/0000-0003-3131-8823
LANGUAGE: English LEVEL: 2
3. CONTENT DESCRIPTION

Subject matter

  Topic 1: Real operational amplifier

  Topic 2: Frequency response

  Topic 3: Negative feedback

  Topic 4: Non linear circuits. Oscillators

  Topic 5: Active filters

  Topic 6: Linear power supply.

  Topic 7: Power electronic devices

  Topic 8: Fundamentals of Electrical Engineering. Definitions and electric machines

  Topic 9: Current energy outlook. Sustainability

  Topic 10: Solar radiation. Photovoltaic solar energy.

  Topic 11: Stand alone photovoltaics. Teleconmunication station applications.

Topic 12: Solar thermal energy.

4. COURSE DESCRIPTION AND TEACHING METHODOLOGY

Content description:

Module I.

Amplification. Concepts and types. Medium and low power amplifiers. Frequency response and active Filters: analysis, design and implementation.

Module II.

Power Electronic. Power electronic components. Control devices. Energy converters.

Module III.

Fundamentals of Electrical Engineering. Definitions and electric machines

Module IV.

Current Energy Outlook. Sustainability

Module V.

Photovoltaic energy. Solar cells, PV systems.

Solar Thermal energy. High and low temperature thermal energy.

 

9. Schedule (First term)

Week

Master Class

Laboratory Class

Collective Class

Activity n

Self-sufficient work

Exams

Comments

 

1º Term

 

 

 

 

 

 

 

1. 7 11 sept.

1

1

 

 

2

 

1 Hour. Presentation. Laboratory teams order

1 Hour. Master Class

Topic 1. Real A.O. Amplification

2. 14 18 sept.

2

1

 

 

5

 

2 Hours. Master Class

Topic 1. Real A.O. Amplification 1 Hour. Lab Class

Amplification problems

3. 21 25 sept.

2

2

1

 

6

 

2 Hours. Master Class

Topic 2. Amplification. Frequency response

2 Hours. Lab Class

Practice 0. Use

1 Hour. Collective Class

Frequency response

4. 28 2 oct.

2

2

 

 

6

 

2 Hours. Master Class

Topic 3. Amplification.

Negative feed-back

2 Hours. Lab Class

Practice 1. Amplification.

5. 5 9 oct.

2

2

1

 

7

 

2 Hours. Master Class

Topic 4. Amplification.

Active Filters

2 Hours. Lab Class

Practice 2. Amplification - Frequency response

1 Hour. Collective Class

NLC and Oscillators (Topic 5)

6. 12 16 oct.

1

2

 

 

5

 

1 Hour. Master Class

Topic 4. Amplification.

Active Filters

2 Hours. Lab Class

Practice 3: Frecuency response

7. 19 23 oct.

2

2

 

 

6

 

2 Hours. Master Class

Topic 6. Linear power supply

2 Hours. Lab Class

Practice 4. NLC and Oscillators

8. 26 30 oct.

2

2

 

 

6

 

1 Hour. Master Class

Topic 6. Linear power supply

1 Hour. Master Class

Topic 7. Power electronic devices

2 Hours. Lab Class

Practice 5. Active Filters I

9. 2 6 nov.

2

2

1

 

7

 

2 Hours. Master Class

Topic 7. Power electronic devices

2 Hours. Lab Class

Practice 6. Active Filters II

1 Hours. Collective Class

Linear power supply

10. 9 13 nov.

2

2

 

 

6

 

2 Hours. Master Class

Topic 8. Fundamentals of Electrical Engineering.

2 Hours. Lab Class

Practice 7. Linear power supply

11. 16 20 nov.

2

2

 

 

5

 

2 Hours. Master Class

Topic 9. Current Energy Outlook. Sustainability

2 Hours. Lab Class

Practice 8. Power electronic devices

12. 23 27 nov.

2

2

 

 

6

 

2 Hours. Master Class

Topic 10. Solar Radiation. Photovoltaic solar energy

2 Hours. Lab Class

Practice 9. Solar Radiation

13. 30 4 dic.

2

2

 

 

6

 

2 Hours. Master Class

Topic 11. Stand alone photovoltaics.

2 Hours. Lab Class

Practice 10. Design

14. 7 11 dic.

1

1

1

0

7

 

1 Hour. Master Class

Topic 12. Solar termal energy

1 Hour. Lab Class

Practice 11. Design

1 Hour. Collective Class

Power electronic devices problems

15. 14 18 dic.

2

2

 

0

6

 

2 Hours. Master Class

Topic 12. Solar thermal energy

2 Hours. Lab Class

Practice 12. Design

7 Enero

 

 

 

 

4

2

 

Exam term

Total Hours

27

27

4

 

90

2

 

Students with special educational needs should contact the Student Attention Service (Servicio de Atención y Ayudas al Estudiante) in order to receive the appropriate academic support

5. ASSESSMENT METHODOLOGY

The subject appreciates theoretical and practical knowledge. Theory: exam and problems. Practice: laboratory designs. Qualifications: 50% of the mark is the theoretical module. 45% of the mark is the practical module. Both modules must be got pass independently. The rest 5% consist of the assessment of participation and acquired skills during the student work.

6. BOOKLIST
MAIN BOOKLIST:
  • Power electronics : devices, circuits, and applications. Edition: 4 th edition. Author: Rashid, Muhammad H.-. Publisher: Upper Saddle River, NJ : Pearson, [2014]  (Library)
  • Renewable electricity and the grid : the challenge of variability. Edition: -. Author: Boyle, Godfrey. Publisher: London : Earthscan, 2009  (Library)
  • Design of analog filters. Edition: International ed.. Author: Schaumann, Rolf. Publisher: New York: Oxford University Press, 2010  (Library)
ADDITIONAL BOOKLIST:
  • Planning and installing photovoltaic systems: a guide for installers, architects and engineers. Edition: 3rd ed.. Author: -. Publisher: Abingdon : Routledge, 2013  (Library)
  • Design with operational amplifiers and analog integrated circuits. Edition: 3ªrd. ed. Author: Franco, Sergio. Publisher: Boston, [etc.]: McGraw-Hill, cop. 2002  (Library)
  • Orcad Pspice para Windows. Edition: 3º ed. Author: Goody, Roy W.. Publisher: Madrid [etc.]: Prentice Hall, D.L. 2002-2004  (Library)