Electronic Engineering
The School of Electronic Engineering not only seeks professionals with a high technical level, but also human beings ethically committed to society for an integral development of our environment, for this reason the Electronic Engineer graduated from the University of Azuay: Contributes to the development of scientific knowledge in the fields of engineering and applies it through mathematical, statistical, physical and chemical procedures and models. It develops solutions for the implementation of electronic systems applied to different areas such as: industrial automation, medical electronics, telecommunications and alternative energies. It faces technological challenges in the productive, social and service sectors based on its knowledge, skills and abilities...
Basic data
Degree |
Electronics Engineer |
Duration |
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Schedule |
Evening and night |
Presentation
Professional Profile
The School of Electronic Engineering not only looks for professionals with high technical level, but also human beings ethically committed to society for an integral development of our environment, for this reason the Electronic Engineer graduated from the University of Azuay:
- It contributes to the development of scientific knowledge in the fields of engineering and applies it through mathematical, statistical, physical and chemical procedures and models.
- It develops solutions for the implementation of electronic systems applied to different areas such as: industrial automation, medical electronics, telecommunications and alternative energies.
- It faces technological challenges in the productive, social and service sectors based on its knowledge, skills and abilities in Electronic Engineering.
- Plan, implement and manage research and technological development projects in their field of professional activity.
Occupational field
The Electronic Engineer graduated from the Universidad del Azuay will be able to perform satisfactorily in public and private service companies and exercise free professional practice in the following sectors:
- Industrial: Planning, design, construction and maintenance of automation, control and robotics systems.
- Alternative energies: Implementation of renewable energies, planning and regulation of the electric sector, consultancy and energy efficiency consultancy for buildings.
- Health: Advice on the acquisition of medical instruments and equipment; Predictive, preventive and corrective maintenance. Design and construction of medical equipment and instruments.
- Telecommunications: Carrying out design and implementation activities of telephony networks, data networks, mobile communication systems and wireless links.
Study Plan
1 level
Subject
Prerequisite
MATHEMATICAL ANALYSIS I
PROGRAMMING FUNDAMENTALS
GEOMETRY AND TRIGONOMETRY
ACADEMIC READING AND WRITING I
GENERAL CHEMISTRY
2 level
Subject
Prerequisite
LINEAR ALGEBRA
PROGRAMMING FUNDAMENTALS
CIRCUIT ANALYSIS
MATHEMATICAL ANALYSIS II
MATHEMATICAL ANALYSIS I
PHYSICS I
ELECTRICAL INSTALLATIONS
ACADEMIC READING AND WRITING II
ACADEMIC READING AND WRITING I
3 level
Subject
Prerequisite
MATHEMATICAL ANALYSIS III
MATHEMATICAL ANALYSIS II
ANTHROPOLOGY
ANALOG ELECTRONICS I
CIRCUIT ANALYSIS
STATISTICS
MATHEMATICAL ANALYSIS II
PHYSICS II
PHYSICS I
OBJECT-ORIENTED PROGRAMMING
PROGRAMMING FUNDAMENTALS
4 level
Subject
Prerequisite
MATHEMATICAL ANALYSIS IV
MATHEMATICAL ANALYSIS III
COMPUTER AIDED DESIGN
GEOMETRY AND TRIGONOMETRY
ANALOG ELECTRONICS II
ANALOG ELECTRONICS I
DIGITAL ELECTRONIC
PROGRAMMING FUNDAMENTALS
ETHICS AND SOCIAL RESPONSIBILITY
SIGNALS AND SYSTEMS
MATHEMATICAL ANALYSIS III
5 level
Subject
Prerequisite
ELECTROMAGNETISM
MATHEMATICAL ANALYSIS IV
POWER ELECTRONICS
ANALOG ELECTRONICS II
PRE PROFESSIONAL PRACTICES
DIGITAL ELECTRONIC
COMUNICATION SYSTEM
SIGNALS AND SYSTEMS
CONTROL THEORY
SIGNALS AND SYSTEMS
6 level
Subject
Prerequisite
BIOINSTRUMENTATION
ANALOG ELECTRONICS II
PROGRAMMABLE LOGIC CONTROLLERS
CONTROL THEORY
ARTIFICIAL INTELLIGENCE
OBJECT-ORIENTED PROGRAMMING
ELECTRIC MACHINES
POWER ELECTRONICS
LINKING PRACTICES
PRE PROFESSIONAL PRACTICES
COMMUNICATION NETWORKS
COMUNICATION SYSTEM
7 level
Subject
Prerequisite
"AUTONOMOUS RENEWABLE ENERGY SYSTEMS"
POWER ELECTRONICS
INDUSTRIAL
PROGRAMMABLE LOGIC CONTROLLERS
BIOMECHANICS
BIOINSTRUMENTATION
OPTICAL COMMUNICATIONS
COMMUNICATION NETWORKS
DESIGN OF THE GRADUATION PROJECT
8 level
Subject
Prerequisite
WIRELESS COMMUNICATIONS
OPTICAL COMMUNICATIONS
MEDICAL IMAGES
BIOMECHANICS
MICRONETWORKS
"AUTONOMOUS RENEWABLE ENERGY SYSTEMS"
ROBOTICS
INDUSTRIAL
GRADUATION WORKSHOP
DESIGN OF THE GRADUATION PROJECT