Program Presentation
The importance of technology infrastructure will always be the basis that defines the life of any system. In the field of Computer Science or Information Systems, the decision on infrastructure is important, as it will limit or enhance the growth and development of an organization.
1.1. Importance of graduate training in value-added technologies
Understanding technologies these days cannot be limited to a simple technical mastery; it requires a reflection on its potential and impact that occurs in computer systems; the relations between components of software and hardware. A lack of mastery can barely create a robust hardware / software architecture that can render large numbers of systems obsolete in a short time or leave organizations tied to systems difficult to maintain.
The Software Technology Infrastructure Program helps to understand the various technological components used in software technology infrastructures in order to master its design and implementation.
1.2. Central concepts of the program: technological infrastructure and software
The technological infrastructure that is grouped and organized into sets of technological elements that make up a project, can support the operations of an organization or aid an operation. Infrastructure defines the success of how a company measures its sturdiness, quality and sustainability, which translates into increased investment in IT. It is therefore crucial to know all components or elements concerning software and hardware. A strong infrastructure allows software to operate efficiently and effectively for the specified time with high levels of service and performance.
The software is the newest asset of organizations whose value is given by the importance of their use, efficiency, and data processing capacity to facilitate operations. In this regard, it is very important and relevant that it operates on stable infrastructures to ensure optimal software operations.
Who is the programme for?
The learning methodology proposed, along with the clarity, amplitude and didactic of the design of the content, allows aiming the Specialization in Software Technology Infrastructure program to professionals who work or want to work in the field of information and wish to develop more robust and integrated information systems, especially in global environments but also for small and medium businesses, facilitating both their entry into global networks as well as improving their own management potential, It enables software engineers, programmers, analysts, system and telecommunication technicians or people who work on technical support or assistance, technological advice or similar positions to gain a broad view on the diverse information technologies and their organizational use.
Diploma
Successful completion of the program will allow you to obtain the degree of Specialization in SOFTWARE TECHNOLOGY INFRASTRUCTURE as issued by the University where you have enrolled.
Program Structure
The credit structure of the program Software Technology Infrastructure is shown in the following table. It should be noted that the duration is merely indicative, as the methodology followed integrates the knowledge and skills to be acquired in each part through integrative exercises of knowledge acquisition and internalization of project practices:
No previous qualification
In the case of people without a degree, the credit structure of the program is shown in the following table:
| CREDITSa | |
|---|---|
| 1st Part: Subjects | 18 |
| 2nd Part: Case Study Resolution | 10 |
| TOTAL | 28 |
a. The equivalence in credits may vary according to the university where he/she has enrolled. One (1) ECTS (European Credit Transfer System) credit is equivalent to 10 + 15 hours. If the student is enrolled in a university that does not belong to the European Higher Education Area (EHEA), the relation between credits - hours may vary.
With previous qualification
In the case of people with a degree and that have coursed a program that demands a Final Project, the credit structure is shown in the following table:
| CREDITSa | |
|---|---|
| 1st Part: Subjects | 18 |
| 2nd Part: Case Study Resolution | 10 |
| 3rd Part: Final Project | 10 |
| TOTAL | 38 |
a. The equivalence in credits may vary according to the university where he/she has enrolled. One (1) ECTS (European Credit Transfer System) credit is equivalent to 10 + 15 hours. If the student is enrolled in a university that does not belong to the European Higher Education Area (EHEA), the relation between credits - hours may vary.
Duration
The program in Software Technology Infrastructure has 38 credits with previous qualification and 28 credits without previous qualification.
The duration of the program in Software Technology Infrastructure varies between 9 and 12 months with previous qualification and varies between 6 and 9 months without previous qualification, depending on the student's dedication. In this period of time, the student must have successfully passed all the evaluated activities and approved the Final Project, if any.
Objectives
General objective:
- Know the technological infrastructure employed in contemporary information systems.
Specific objectives:
- Know the fundamental principles of the technological infrastructure employed in the development of information systems.
- Know the different systems, processes, methods and methodologies employed in the implementation of the various technologies studied in the program.
Career Opportunities
Some of the career opportunities of the Software Technological Infrastructure program are:
- Functional, organic and technological analyst/designer of information systems.
- Software developer.
- Director/Manager of software engineering projects.
- Designer or evaluator of information platforms or architectures.
Study Plan
The Software Technological Infrastructure program is composed of:
- 1st PART: SUBJECTS
Each subject provides the knowledge of the main technologies used in the technological infrastructures of software.
The subjects and credits that compose this part are shown in the following table:
| 1st PART: SUBJECTS | ||
|---|---|---|
| # | SUBJECTS | CREDITS |
| 1 | Architectures, Networks and Distributed Systems | 4 |
| 2 | Network Management and Security | 3 |
| 3 | Database Management and Information Resources | 4 |
| 4 | Programming Languages and Paradigms | 3 |
| 5 | Web Technology and Web Engineering | 4 |
| TOTAL | 18 | |
These subjects, despite being independent from each other, are self-contained and structured according to a logical learning order. Each one is divided into thematic units or chapters, whose content includes printed material which must be studied in order to successfully answer the different evaluation activities.
- 2nd PART: CASE STUDY AND RESOLUTION
The objective is to solve a practical case proposed by the student or the professor.
| 2nd PART: CASE STUDY AND RESOLUTION | ||
|---|---|---|
| # | SUBJECTS | CREDITS |
| 1 | Case Study and Resolution | 10 |
| TOTAL | 10 | |
- 3rd PART: FINAL PROJECT
The objective is to create a Final Project destined to put into practice the knowledge acquired in the program. The Final Project will be started when the university or entity that manages the program requires it, according to their guidelines.
| 3rd PART: FINAL PROJECT | ||
|---|---|---|
| # | SUBJECTS | CREDITS |
| 1 | Final Project | 10 |
| TOTAL | 10 | |
Management
- Dr. Arturo Ortega-Mansilla. DDoctor of Electrical Engineering, by the University of Barcelona. Telecommunications Engineer by the Ramon Llull University, Spain. Coordinator of the IDi Area - Area Projects, FUNIBER.
- Dr. Jon Arambarri Basañez. Doctor in Engineering and Technology from the Polytechnic University of Catalonia UPC - University of Cordoba. MBA from the Institute of Applied Economics of UPV-EHU. Senior Telecommunications Engineer from the School of Engineering of Bilbao. Professor accredited by the National Agency for Quality Assessment and Accreditation (ANECA). Is currently a project manager at https://www.estia.fr/ aimed at creating new products to meet the strategic needs of Aquitaine (France) - Euskadi in eHealth, Industry4.0 and Energy Technologies. Combines his professional work with tasks as an independent consultant and teacher. Has more than 20 years of experience in technology business development and innovation management in the international public-private sector. His research interests combine telecommunication infrastructures (Telecommunication Networks, Multimedia and Internet of Things - IoT) together with the digital transformation (Artificial Intelligence and predictive systems, Cyber-Security) of the business fabric, mainly in the areas of eHealth, Industry4.0 and Energy. Author of numerous scientific publications and an active lecturer on innovative business management.
FUNIBER Training Scholarships
The Iberoamerican University Foundation (FUNIBER) allocates periodically an extraordinary economic item for FUNIBER Training Scholarships.
To apply, please fill out the information request form that appears in the web of FUNIBER or contact directly the Foundation’s headquarters in your country that will inform you if you need to provide some additional information.
Once the documentation is received, the Evaluation Committee will determine your application's eligibility for the FUNIBER Training Scholarship.