Postgraduate / Graduate Program (Master, S2) |
See also : » Other Studies Program| Study Program Name | : | Electrical Engineering (S-1) | | Science group | : | Engineering | | Concentration / Specialisation | : | ⚪ Electronics Engineering ⚪ Industrial Electronics Engineering ⚪ Electrical Energy Engineering ⚪ Computer Systems Engineering ⚪ Control Systems Engineering ⚪ Telecommunication Engineering | | Graduate Title / Mention | : | Engineer (Sarjana Teknik or Insinyur) | | Title abbreviations according EYD | : | S.T. or Ir. | | Title abbreviations are popular (used public) | : | ST. or Ir. | | PTS organizers (please click) | : | ⚪ ITBU - Budi Utomo Institute of Technology, Jakarta ⚪ STTM - College of Technology Mandala, Bandung ⚪ UNKRIS - University of Krisnadwipayana, Jakarta ⚪ UNSUB - University of Subang, Jawa Barat ⚪ UM Surabaya - University of Muhammadiyah Surabaya ⚪ UNIMUS - University of Muhammadiyah Semarang ⚪ STT Bina Tunggal - Bina Tunggal College of Technology ⚪ UHAMZAH - University of Amir Hamzah, Medan ⚪ UTS - University of technology Sulawesi, Makassar ⚪ KAHURIPAN - University of Kahuripan Kediri ⚪ MPU TANTULAR - University of Mpu Tantular Jakarta ⚪ UYI - Yuppentek University Of Indonesia Tangerang ⚪ STTMUTTAQIEN - College of Technology Dr. Khez Muttaqien ⚪ UNIBA - University of PGRI Banyuwangi ⚪ TAU - Tanri Abeng University ⚪ al azhar - University of Al-Azhar Medan ⚪ UCM - Makassar Cokroaminoto University ⚪ UPA - Patria Artha University ⚪ UWK - Widya Kartika University ⚪ UTN - Nusantara Technology University ⚪ UNSURYA Jakarta - Dirgantara Marsekal Suryadarma University ⚪ ISTN Jakarta - Institut Sains dan Teknologi Nasional Jakarta ⚪ BUDDHI DHARMA - Buddhi Dharma University ⚪ FTUMJ - Faculty of Engineering University of Muhammadiyah Jakarta ⚪ Satyagama University Jakarta - Satyagama University Jakarta | | Study Period & Study Load (Credits) : | SMA/SMU, SMK graduates, equivalent proceed to S1 Electrical Engineering | Study Load = 144 - 152 sks | Study Period = 8 semester | D3, Polytechnic graduates, equivalent proceed to S1 Electrical Engineering | Study Load = 40 - 46 sks (If not a piece of science additional are given 2 - 21 sks) | Study Period = 3 semester | D2, S1, D1 graduates, transfer proceed to S1 Electrical Engineering | Study Load = Calculated from remaining credits | Study Period = Calculated remaining credits |
| | Curriculum / Subjects Courses | : | See below | | Prospectus (Objectives, Competencies, Job Prospects / Career Graduates) | : | See below |
Title/mention above is a title often used (not necessarily used PTS).
Regarding title (for S1, S2, S3) or mention (for diploma) which is used by universities in Indonesia currently has no standard (not standard) again, although the government has made the rules, but most colleges only obey some of the rules the. It can not be blamed, because the development of the science group is very rapid and led to new branches of science which is an integration of several scientific groups, making it difficult for universities to classify these branches of the science group that created the government.
Similarly, by making short title / mention such, people tend to create their own abbreviations that are even more popular than EYD Indonesian rule.
Below given curriculum / course and prospectus (competency, job prospects / career graduates, etc.). For subjects study program of presented here is a slice (and some combination) of a college curriculum, so it is possible some no elective courses at the college, or the slightly different name of his courses.
| Prospectus of S1 Electrical Engineering |
Competencies of Graduates of S1 Electrical Engineering In general, S1 Electrical Engineering graduates have professional skills in the field of electrical engineering in public life, to follow and master the concepts of science and the development of new technologies in the field of electrical engineering, as well as be able to apply their knowledge for the benefit of the industry needs is local or global; has the ability to organize, design and make a decision in principle to apply their knowledge to achieve competitive results and optimal, analytical and critical thinking in the decision-making of electrical engineering problems; has the ability to apply science and engineering principles of electrical engineering and has a strong personal integrity, creative, and competent; has the ability formulate and analyze problems of electrical engineering at the same time develop the settlement system; has the ability to design a system in the field of electrical engineering; able to communicate effectively; has the ability to apply systematic, stages, methods and concepts that are needed in the field of electrical engineering.
Bachelor of Electrical Engineering basic competence is to have quality and intellectual integrity; highly competitive both academically and morally; able to adjust to the changes; realize that science is always advancing and evolving; able to browse and obtain scientific information / engineering; know how and can constantly learning; handling each problem, was able to uncover the structure and core issues and set priorities stages of completion; know and can take advantage of the usefulness of mathematics and information technology can apply science and knowledge; proficient and skilled in electrical engineering; may solve problems logically, utilize data / information available; able to use these concepts to explain things that are not / less clear; able to work independently and effort; able to actively participate in the working group; able to communicate with experts in other areas of expertise and utilize their help; able to effectively utilize the resources available; able to start forming units stub entrepreneur in the field of electrical engineering, was able to follow new developments in the field of electrical engineering, conduct research, or to follow the course of study at a further level.
In particular, a graduate in Electrical Engineering equipped with the knowledge, professional ethics, ability and skills to apply the theories of electrical engineering is growing rapidly by utilizing information and communication technologies in the areas of:
Electric Power Systems Engineering, includes energy conversion engineering, transmission engineering and power distribution, interconnection systems, techniques and safety regulation, high voltage engineering, power system analysis, power system security, industrial electrical engineering, design and analysis of network electrical, power quality analysis, electrical machines, transformers, power electronics, electrical measurement, test and calibration of medium voltage electrical devices, etc.
Telecommunications and Multimedia Engineering, covering communication systems, engineering transmitting and receiving information, the transmission and propagation of electromagnetic waves, the transmitter and receiver design, the use of microprocessors in signal processing other information and communication systems, communication techniques applied, telecommunications network, modem engineering design package thin traffic radio and TV repeater engineering design, multimedia, database design techniques, design of electronic information network engineering, telecommunications project management, design engineering systems and the provision of communications radar antennas, etc.
Control Systems Engineering, includes mathematical models, system dynamics, control components and equipment, with computer settings, planning and analysis of the system model, the optimal setting techniques, digital regulation technique, robotic techniques and the application of other regulatory systems engineering, systems engineering, PLC (Programmable Logic controller), setting the process engineering industry instrumentation, industrial automation, system analysis, system simulation and optimization systems, etc.
Computer Systems Engineering, includes hardware and computer software, system logic, the use of logic in computer engineering, the use of computers as a means of data processing and the making of the program and analyzing the results of the program, and interfacing digital, digital processing, multimedia networks, computer networks, systems database, the design of computer systems, programming languages, digital imagery, technology (design) integrated circuits, etc.
Electronic Engineering, and includes a series of electronic components, integrated circuits, electronic equipment design, component manufacturing techniques, and the use of measuring tools in the industry and biomedical electronics, engineering design and electronics systems based on fuzzy logic, medical electronics, instrumentation, techniques Scale Integrated circuit large (VLSI), analog electronics system design, digital electronics system design, design of integrated electronic systems, electronic devices, technology (design) integrated circuits, etc.Profession and Career Graduates of S1 Electrical Engineering Bachelor of Electrical Engineering can work and a career in government or private institutions (national and multinational), service industries (such as banking), as well as various electronics companies, electric power, telecommunications, control systems, computer systems, such as telephone, radio, television, instrumentation, radar, computers, control systems, satellite telecommunications systems, informatics, automatic control, robotics, antennas, wireless telecommunications, PLC (Programmable Logic Controller), image processing and machine vision, digital signal processing, renewable energy, energy audits, power generation and transmission and distribution, and digital interfacing, digital processing, multimedia networks, computer networks, database systems, computer systems, integrated circuits, electronic components, electronic equipment, electronic measuring instruments in industry and biomedical, medical electronics, analog electronics systems and digital, etc.
Being Entreprenuer with established consulting services of electronics, electricity consultant, telecom consultant, control systems consultant, computer systems consultant, or contractor or production company founded electronics, telecommunications, control systems, computer systems, etc.
S1 Electrical Engineering Courses | * = Concentration / Specificity / Options Courses SKS = Semester Credit Units
| Courses | SKS | | Numerical Analysis | 2 | | Power System Analysis * | 3 | | Advanced Power System Analysis * | 2 | | Computer-Based Analysis (Matlab) * | 2 | | Antennas & Propagation * | 2 | | Computer Architecture * | 3 | | Electrical Materials | 2 | | Assembler Language * | 2 | | Indonesian | 2 | | English I | 2 | | English II | 2 | | English III * | 2 | | English IV * | 2 | | CASR * | 2 | | Basic Electronics | 3 | | Basic Computer & Programming | 2 | | Basic Electrical Energy Conversion | 2 | | Basic Control System | 3 | | Basic Telecommunications System | 3 | | Basic Electrical Engineering | 2 | | VLSI Design * | 2 | | Devais Electronics * | 3 | | Electronics | 3 | | Analog Electronics * | 3 | | Power Electronics * | 2 | | Digital Electronics * | 3 | | Electronics Industry * | 2 | | Electronic Communications * | 3 | | Electronics Medika * | 3 | | Electronics Optics * | 3 | | Electronics Telecommunications * | 3 | | Philosophy of Science * | 2 | | Physics I | 4 | | Physics II | 3 | | Modern Physics | 2 | | Fuzzy Logic * | 2 | | Symptoms of High Field * | 2 | | Symptoms of High Field Advanced * | 2 | | Waves Walking * | 2 | | Labor Laws | 2 | | Power Installation & Tech Lighting * | 2 | | ISDN * | 2 | | Neural Networks * | 2 | | Telecommunication Networks * | 3 | | K3L (Occupational Health Safety & Environment) | 2 | | Calculus I | 2 | | Calculus II | 2 | | Calculus III | 2 | | Calculus IV | 2 | | Capita Selecta Electronics * | 3 | | Job | 2 | | Entrepreneurship | 2 | | Basic Chemistry | 2 | | Telecommunications System Performance * | 3 | | Control System Components * | 3 | | Aircraft Construction * | 3 | | Electrical Energy Conversion | 2 | | Engineering Management and Economics | 2 | | Engineering Mathematics I | 2 | | Engineering Mathematics II | 2 | | Engineering Mathematics III | 2 | | Electromagnetic Field I | 2 | | Electromagnetic Field II | 2 | | Mechatronics * | 3 | | Electrical Engineering Drawing (+ Studio) | 2 | | Direct Current Machines * | 2 | | Not Unison Engine * | 2 | | Research Methodology | 2 | | Microcontroller * | 3 | | Microprocessor * | 3 |
| | | Courses | SKS | | Optimization * | 3 | | Opto-electronics * | 2 | | Pancasila and Citizenship | 3 | | Generating Electrical Energy * | 3 | | Advanced Programming * | 3 | | Religious Education | 2 | | Electrical Load Control * | 2 | | Settings Digital Electronics * | 3 | | Image Processing * | 2 | | Data Signal Processing * | 3 | | Digital Signal Processing * | 3 | | Pengt Flight Sciences | 2 | | Magnitude Measurement Electricity | 2 | | Equipment Settings * | 3 | | High Voltage Equipment * | 2 | | Digital System Design * | 3 | | Electronics System Planning * | 3 | | Electric Power System Planning * | 2 | | PLC (Programabel Logic Control) * | 2 | | Basic Electronics Lab | 1 | | Practical Computer Basics & Programming | 1 | | Practicum Control System Basic | 1 | | Practicum Power Engineering Basic | 1 | | Practical Fundamentals of Telecommunications | 1 | | Analog Electronics Lab * | 1 | | Practical Physics | 1 | | Practical Electrical Measurement Magnitude | 1 | | Practicum PLC (Programabel Logic Control) * | 1 | | Practicum and Digital Logic circuit has * | 1 | | Practicum Electric Circuits | 1 | | Pratikum Electrical Energy Convention * | 1 | | Electric Circuits I | 3 | | Electric Circuits II | 3 | | Series & Digital Logic * | 3 | | Traffic Engineering * | 3 | | Remote Sensing * | 2 | | Robotics * | 2 | | Transmission Line * | 3 | | Seminar | 2 | | Distribution System * | 2 | | Electronic Instrumentation System * | 3 | | Analog Communication Systems * | 3 | | Mobile Communications Systems * | 2 | | Data Communication Systems | 3 | | Digital Communication Systems * | 3 | | Flight Communications Systems * | 2 | | Control System * | 2 | | Digital Control System * | 3 | | Multivariable Control Systems * | 3 | | Optimal Control Systems * | 3 | | Linear Systems | 3 | | Microprocessor Systems * | 2 | | Signal Processing Systems * | 3 | | Defense Systems * | 2 | | Protection System * | 3 | | Advanced Protection System * | 2 | | Radar Systems * | 2 | | Statistics and Probability | 2 | | Stochastic * | 2 | | Interface Engineering * | 2 | | Microwave Engineering * | 2 | | Satellite Communication Engineering * | 2 | | Circuit technique Integration * | 3 | | Engineering Robot * | 3 | | Information Systems Technology | 2 | | Function Theory & Conditions Limit * | 2 | | Transformer * | 2 | | Eclectic Power Transmission * | 2 | | Power Transmission Pricing * | 2 | | Final | 4 |
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