In the first line, the Telecom Field Engineer becomes a hardware designer for telecommunications devices such as transmitters, antennas, transmission lines or receivers. In the other line, the engineer is going to take charge of making the interconnection within the networks. This interconnection can be, for example, electromagnetic in nature.
Then you will have to do, for example, a link through microwaves, that is, between antennas or it can also be through a network itself, already using interconnection devices such as routers, switches, taking into account terminal devices such as PC, mobile phones, a smart TV, the type of elements of that nature. That is the field of action of an engineer in Telecommunications. Now, there is a very interesting phenomenon that is happening nowadays and it is something that happens in all telephone companies. If we realize, the user itself, and that kind of things do not seduce him so much because it is normal. So, what these companies have to do is to orientate themselves not only to the infrastructure but also to the services that they will offer the user so that he feels more comfortable. All this is telecommunications, without that we could not enjoy all these benefits that we have now.
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Businesses from all sectors are demanding solutions that optimize their processes and production costs, this is where the Telecommunications Engineer stands out by implementing communication systems that impact the flow of data between different parts of a process or project, allowing have information in real time and with high availability.
We want that as IT Field Engineer you have the capacity to design and implement innovative communications solutions that respond to the demands made by different economic sectors and the community in general. FOCUS OR EMPHASIS ON FOLLOWING : Wireless, Wired Communications and Computer Networks THERE ARE THINGS THAT FACILITATE YOUR PROCESS : If you are a leading person, with an analytical and investigative sense, you like teamwork and have skills and knowledge in the areas of mathematics, physics and language, this race is for you! PROFESSIONAL FUTURE : You will be able to lead projects of communication systems applying creatively, innovation models in different areas such as: Optical communications, satellite, mobile systems and information security, contributing to the constant evolution of communications. You can also manage entrepreneurship projects in the ICT ecosystem for the creation of new companies, contributing to the development of the country.
It is necessary to be self-taught and proactive in order to keep up to date, solving the technical problems of signals and networks with the greatest possible amount of information, so that resources are optimized for a better profit of the company or organization, as well as its users or clients.
González Barrera values ??patience and practicality in aspiring IT Field Engineer, due to the demands of the market and the constant struggle with technical issues that require a quick and efficient solution. He advises to have a good base of English , since "almost all the valuable sources are in English , also if you want to be ambitious it is essential to develop outside of Colombia". Recommendations for aspiring telecommunications engineers Studying a graduate course is part of the combo to perform in this field, but first you must decide if it is really what you want. "You should analyze very well if you want to dedicate yourself to this profession, since it demands a lot of dedication and sacrifice, " said engineer Jorge Mario González Barrera. Modern telecommunication has helped IT Field Engineer learn a series of key concepts that experienced progressive development and refinement in a period of well over a century.
Telecommunication technologies may primarily be divided into wired and wireless methods. Overall though, a basic telecommunication system consists of three main parts that are always present in some form or another: A transmitter that takes information and converts it to a signal. A transmission medium, also called the physical channel that carries the signal. An example of this is the "free space channel".A receiver that takes the signal from the channel and converts it back into usable information for the recipient. For example, in a radio broadcasting station the station's large power amplifier is the transmitter; and the broadcasting antenna is the interface between the power amplifier and the "free space channel". The free space channel is the transmission medium; and the receiver's antenna is the interface between the free space channel and the receiver. Next, the radio receiver is the destination of the radio signal, and this is where it is converted from electricity to sound for people to listen to. A telecommunications system is composed of the information sender , the transmission channel and the information receiver . The sender is a device that transforms or encodes the message into a physical phenomenon: the signal. The channel or means transmits said signal, and the receiver does the inverse process to the emitter to obtain the information.
The functions of the transmitter always imply in one way or another the coding of the information and its adaptation to the channel. The transmission channel, for physical reasons, modifies or degrades the signal in its path in some way. The receiver has to perform the functions of detecting the signal, recomposing it and decoding it in order to extract the information. In this process there is always a possibility of error, which is fixed by IT Field Engineer, telecommunication engineering helps minimise it. As a familiar example of a telecommunication system we can consider the vocal communication between people. This case we can decompose it like this: The sender: person who speaks. The conscience of a person wants to transmit a message (idea or concept), the brain encodes it in words of a language and "sends" it to the mouth to pronounce it, being finally encoded in a series of sounds produced by the strings vowels and phonation organs. The medium is composed of the layer of air that exists between the two intervening. Through it emitted vibrations elapse, which can be affected in different ways by ambient noise, echoes, other conversations ... The receiver is composed of the ear / brain set. The ear converts the vibrations to electrical impulses, which are processed by the [brain] in order to extract the message, from which it informs the "conscience". In other cases, by way of example, communication can be made between faxes, telephones, keyboard-printer, camera-screen ... and the communication channel can be composed of wires, radio waves, fiber optic, satellite .. . The purpose of IT Field Engineer professionals with scientific and technological capabilities and with clear social commitment that allows them to design, implement, plan, control and manage telecommunications systems applied to the current needs of the industry and the National market; allowing the strengthening and growth of telecommunications for the benefit of society, based on the efficient management of technological, physical, financial and information resources, seeking to increase the competitiveness of organizations and contributing to local, regional and national development.
Generate a training scenario that satisfies the demand of competent professionals in the design, implementation of state-of-the-art communication systems, convergent Telecommunications platforms; in addition to management and strategic planning with the capacity to foresee the transcendental role played by telecommunications as an instrument for global competitiveness in economic and social development. In this sense, the permanent generation and updating of knowledge in Telecommunications is sought as a matrix technology, within the context of globalization, attending projects on the specific topics of Access and Management to Telecommunications Systems and all those that arise as pertinent within the Policy. of Extension of Coverage of the Ministry of the sector tables and regional knowledge maps. |
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