Guías Docentes Electrónicas
1. General information
Course:
ELECTRONIC TECHNOLOGY
Code:
56500
Type:
CORE COURSE
ECTS credits:
6
Degree:
412 - UNDERGRADUATE DEGREE PROGRAMME IN ELECTRICAL ENGINEERING
Academic year:
2022-23
Center:
106 - SCHOOL OF MINING AND INDUSTRIAL ENGINEERING
Group(s):
55 
Year:
2
Duration:
C2
Main language:
Spanish
Second language:
Use of additional languages:
English Friendly:
Y
Web site:
Bilingual:
N
Lecturer: JOSE MANUEL DE LA CRUZ GOMEZ - Group(s): 55 
Building/Office
Department
Phone number
Email
Office hours
Edificio Störr, 3º planta, Dpto. IEEAC
INGENIERÍA ELÉCTRICA, ELECTRÓNICA, AUTOMÁTICA Y COMUNICACIONES
926052354
josemanuel.cruz@uclm.es
This will be indicated on the Virtual Campus at the beginning of the semester.

Lecturer: RAQUEL JURADO MERCHAN - Group(s): 55 
Building/Office
Department
Phone number
Email
Office hours
Edificio Störr, 3º planta, Dpto. IEEAC
INGENIERÍA ELÉCTRICA, ELECTRÓNICA, AUTOMÁTICA Y COMUNICACIONES
926052772
raquel.jurado@uclm.es
This will be indicated on the Virtual Campus at the beginning of the semester.

2. Pre-Requisites

In order to take this subject, the student must have acquired the knowledge that derives from the competences related to the basic knowledge of the
basic knowledge of the structure of materials, the fundamentals of mathematics and the knowledge and use of the principles of circuit theory.

3. Justification in the curriculum, relation to other subjects and to the profession

This subject covers the competence common to the industrial branch related to the knowledge of the fundamentals of electronics. The student, through
this subject, will acquire theoretical knowledge of Electronic Technology, which will be complemented with practical knowledge through exercises and laboratory exercises and practices, where the necessary skills for the assembly of electronic prototypes will be acquired.


4. Degree competences achieved in this course
Course competences
Code Description
CB02 Apply their knowledge to their job or vocation in a professional manner and show that they have the competences to construct and justify arguments and solve problems within their subject area.
CB03 Be able to gather and process relevant information (usually within their subject area) to give opinions, including reflections on relevant social, scientific or ethical issues.
CB04 Transmit information, ideas, problems and solutions for both specialist and non-specialist audiences.
CB05 Have developed the necessary learning abilities to carry on studying autonomously
CEC05 Knowledge of the fundamentals of electronics.
CG03 Knowledge of basic and technological subjects to facilitate learning of new methods and theories, and provide versatility to adapt to new situations.
CG04 Ability to solve problems with initiative, decision-making, creativity, critical reasoning and to communicate and transmit knowledge, skills and abilities in the field of industrial engineering.
CT02 Knowledge and application of information and communication technology.
CT03 Ability to communicate correctly in both spoken and written form.
5. Objectives or Learning Outcomes
Course learning outcomes
Description
Ability to analyse analogue circuits with operational amplifiers.
Ability to analyse analogue and digital circuits using simulation tools.
Ability to analyse basic electronic circuits.
Ability to analyse and design digital combinational and sequential circuits.
Additional outcomes
Not established.
6. Units / Contents
  • Unit 1: PASSIVE COMPONENTS
  • Unit 2: SEMICONDUCTOR DEVICES AND APPLICATIONS
  • Unit 3: AMPLIFICATION BASICS
  • Unit 4: FUNDAMENTALS OF DIGITAL ELECTRONICS
  • Unit 5: DESIGN AND IMPLEMENTATION OF PRINTED CIRCUIT BOARDS. INTEGRATED CIRCUIT TECHNOLOGY.
ADDITIONAL COMMENTS, REMARKS

Practical programme:

Practice 1: Diodes and their applications.

Practice 2: Transistors. Amplification.

Practice 3: Operational amplifier.

Practice 4: Logic gates and combinational circuits.

Practice 5: Sequential circuits.


7. Activities, Units/Modules and Methodology
Training Activity Methodology Related Competences (only degrees before RD 822/2021) ECTS Hours As Com Description
Class Attendance (theory) [ON-SITE] Combination of methods CB02 CB05 CEC05 CG03 1.2 30 N N Presentation and development of fundamental theoretical concepts.
Problem solving and/or case studies [ON-SITE] Problem solving and exercises CB02 CB03 CB04 CEC05 0.4 10 N N Resolution of exercises by the teacher that illustrate the theoretical contents discussed above.
Formative Assessment [ON-SITE] Assessment tests CB02 CB03 CB04 CB05 CEC05 CG03 CG04 CT02 CT03 0.2 5 Y Y
Study and Exam Preparation [OFF-SITE] Self-study CB02 CB03 CB04 CB05 CEC05 CG03 CG04 CT02 CT03 3.6 90 N N
Class Attendance (practical) [ON-SITE] Practical or hands-on activities CB02 CB03 CB04 CB05 CEC05 CG03 CG04 CT02 CT03 0.6 15 Y Y They will consist of practical exercises in the laboratory. They may include practical exercises to be carried out using simulation programmes. It is a compulsory activity and an essential requirement to pass the subject. In the section on assessment criteria, the rules for the assessment and/or recovery of the same are set out.
Total: 6 150
Total credits of in-class work: 2.4 Total class time hours: 60
Total credits of out of class work: 3.6 Total hours of out of class work: 90

As: Assessable training activity
Com: Training activity of compulsory overcoming (It will be essential to overcome both continuous and non-continuous assessment).

8. Evaluation criteria and Grading System
Evaluation System Continuous assessment Non-continuous evaluation * Description
Laboratory sessions 30.00% 30.00% Students must attend the practical sessions and hand in the required report on each of the practical sessions in due time and form.
As this is a compulsory activity, a minimum of 40% of the grade must be achieved in order to pass the course.
This activity can only be recovered when, for duly justified reasons, the teaching staff deems it necessary to extend the deadline or to take a practice exam. These recuperations will only be allowed if the student has reached the minimum qualification required in the rest of the assessed activities (mid-term or final exams).
The internship grade will be retained for two successive academic years.
Mid-term tests 70.00% 0.00% They will consist of two tests related to both theoretical aspects and practical application. Passing them will require achieving at least 40% of the maximum mark in each of the mid-term exams.
They will be of an eliminatory nature.
If the average mark between the mid-term exams passed is equal to or higher than 4 points out of 10, the practical grade will be taken into account and the subject will be passed if the mark obtained is is higher than 5 points.
Final test 0.00% 70.00% It will consist of a test related both to theoretical and practical aspects and practical application, which will be structured as two partial tests.
Passing the test will require at least 40% of the maximum mark in each of the parts into which it is divided.
If the average mark between the parts passed is equal to or higher than 4 points out of 10, the grade for the practical part will be taken into account and the course will be passed if the grade obtained is higher than 5 points.
Total: 100.00% 100.00%  
According to art. 4 of the UCLM Student Evaluation Regulations, it must be provided to students who cannot regularly attend face-to-face training activities the passing of the subject, having the right (art. 12.2) to be globally graded, in 2 annual calls per subject , an ordinary and an extraordinary one (evaluating 100% of the competences).

Evaluation criteria for the final exam:
  • Continuous assessment:
    Students will have two mid-term exams which will be eliminatory, i.e. if they pass a mid-term exam, they will not have to sit the final exam.
    In order to pass the course in the ordinary exams, a minimum of 40% of the maximum grade must be obtained in each of the mid-term exams and in the practicals, all of which are compulsory activities.
    If this requirement is not met, even if the overall grade for the course, after taking the weighted average of all the parts that can be assessed is higher than 5 out of 10, the grade will be Failed (4). In the event that the weighted average does not reach 4, the grade will be that obtained from the weighted average of the weighted average of all the evaluable parts.
    The recovery of the partial tests will be possible in the final exam, while the recovery of the practicals will be possible as detailed in the previous description above.
    During the partial or final tests it is strictly forbidden to use any kind of electronic device (mobile phones, tablets, smartwatches, etc.), even if they are switched off, are strictly forbidden during the exam.
    In case of non-compliance with this rule, the grade will be Fail (0), even if the terminal is switched off. This rule is applicable for all exam sessions.
  • Non-continuous evaluation:
    For non-continuous assessment students, the criteria will be the same as for continuous assessment, except that the part of the assessment corresponding to the mid-term tests will be examined in a single final exam which will be structured as two partial tests and which will be subject to the same criteria as those established for the partial tests of the continuous assessment.
    Passing the practicals is also compulsory and is subject to the same criteria as for the continuous assessment.

Specifications for the resit/retake exam:
In the extraordinary exam session, the same criteria will be followed as in the ordinary exam session.
Specifications for the second resit / retake exam:
In the special final exam session, the same criteria will be followed as those indicated for the extraordinary exam session.
9. Assignments, course calendar and important dates
Not related to the syllabus/contents
Hours hours
Class Attendance (theory) [PRESENCIAL][Combination of methods] 30
Problem solving and/or case studies [PRESENCIAL][Problem solving and exercises] 10
Formative Assessment [PRESENCIAL][Assessment tests] 5
Class Attendance (practical) [PRESENCIAL][Practical or hands-on activities] 90
Study and Exam Preparation [AUTÓNOMA][Self-study] 15

Global activity
Activities hours
10. Bibliography and Sources
Author(s) Title Book/Journal Citv Publishing house ISBN Year Description Link Catálogo biblioteca
Albert Malvino y David J.Bates Principios de electrónica McGraw Hill 978-84-481-5619-0 2006  
Floyd, T.L Fundamentos de sistemas digitales Pearson Educación :978-84- 9035-300-4 2016  
Hambley, A.R Electrónica Prentice Hall 2001  
J. R. Cogdell Fundamentos de electrónica Prentice Hall 2000  
José Manuel de la Cruz Gómez/Raquel María Jurado Merchán APUNTES DE LA ASIGNATURA  
Malik, N.R Circuitos electrónicos. Análisis, simulación y diseño Prentice Hall 2003  
Robert L. Boylestad y Louis Nashelsky Electrónica: teoría de circuitos y dispositivos electrónicos Pearson Educacion 978-60-744-2292-4 2009  



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