Postgraduate / Graduate Program (Master, S2) |
See also : » Other Studies Program| Study Program Name | : | Mechanical Engineering (S-1) | | Science group | : | Engineering | | Concentration / Specialisation | : | ⚪ Mechanical Engineering ⚪ Energy Conversion ⚪ Mechatronics (Mechanical Electro) ⚪ Robotics (Mechanical Control) ⚪ Industrial Engineering ⚪ Manufacturing engineering ⚪ Mechanical Engineering Construction ⚪ Production engineering | | Graduate Title / Mention | : | Engineer or Bachelor of Mechanical Engineering (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) | : | ⚪ STTM - College of Technology Mandala, Bandung ⚪ ISTA - Institute of Science and Technology Al Kamal ⚪ ITBU - Budi Utomo Institute of Technology, Jakarta ⚪ UNKRIS - University of Krisnadwipayana, Jakarta ⚪ UNSUB - University of Subang, Jawa Barat ⚪ UM Surabaya - University of Muhammadiyah Surabaya ⚪ UNIMUS - University of Muhammadiyah Semarang ⚪ UNISA - Islamic University of Al-Ihya, Kuningan ⚪ UHAMZAH - University of Amir Hamzah, Medan ⚪ MPU TANTULAR - University of Mpu Tantular Jakarta ⚪ UNUGHA - University of Nahdlatul Ulama Al Ghazali ⚪ UYI - Yuppentek University Of Indonesia Tangerang ⚪ UNIBA - University of PGRI Banyuwangi ⚪ STT Bina Tunggal - Bina Tunggal College of Technology ⚪ STTMUTTAQIEN - College of Technology Dr. Khez Muttaqien ⚪ STTM Cileungsi - College of Technology Muhammadiyah Cileungsi ⚪ UPA - Patria Artha University ⚪ ISTN Jakarta - Jakarta National Institute of Science and Technology ⚪ FTUMJ - Faculty of Engineering University of Muhammadiyah Jakarta | | Study Period & Study Load (Credits) : | SMA/SMU, SMK graduates, equivalent proceed to S1 Mechanical Engineering | Study Load = 144 - 152 sks | Study Period = 8 semester | D3, Polytechnic graduates, equivalent proceed to S1 Mechanical 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 Mechanical 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 Mechanical Engineering |
Competencies of Graduates of S1 Mechanical Engineering S1 Mechanical Engineering graduates equipped with knowledge, ethics, ability and skills to design a machine tool, convert the energy from the source into useful energy, producing objects or machine parts in terms of techniques, processes and management.
S1 Mechanical Engineering graduate has the competence, skills, and knowledge of basic machine, solid mechanics, hydraulic and pneumatic, automotive, metallurgy, welding technology, cast technology, material failure, power generation systems, mechanics and fluid machinery, fuel and combustion motors in, heat and mass transfer, refrigeration and air conditioning engineering, machine tools and perautan, mechanical technology, industrial metrology, basic CNC, machining industry, computer aided engineering, mechanics and instrumentation, and industrial automation systems, maintenance engineering, energy conversion, energy management, etc.
General/basic competency Bachelor of Mechanical Engineering 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 continually learn; in dealing with each problem, and is able to reveal the structure of the core problems and set priorities stages of completion; know and can take advantage of the usefulness of mathematics and information technology can apply science and knowledge, competent and skilled in the field of mechanical engineering; able to 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 pioneering entrepreneur in the field of mechanical engineering, was able to follow new developments in the field of mechanical engineering, conduct research, or to follow the course of study in levels further.
Bachelor of Mechanical Engineering master the basics of the nature of science in general machining techniques and in particular, having the ability to think creatively and critically so that they can learn independently continually to always be able to follow the development of these areas of expertise, so it has great adaptability to the demands of environment; has extensive knowledge and insight that can be self-employed and create jobs; dominate the field of mechanical engineering has an important role in the process of industrialization such as movers, construction equipment and machine tools factory; also capable of handling the research, design and development of engineering fields such as automotive , konvervasi manufacturing technology and energy fields.Profession and Career Graduates of S1 Mechanical Engineering Bachelor of Mechanical Engineering to work and a career in government or private agencies (national and multinational) such as state-owned enterprises (BUMN), manufacturing companies, automotive, energy, consultancy and contracting services, mining and petroleum, research institutes, universities (state and private universities), etc. : as a leader or manager, or maintenance expert engineering, energy conversion, energy management, designers and developers such as automotive engineering, manufacturing technology, etc.
Being technopreneurs with established consultants and contractors with regard to fuel consumption, performance, impact and energy management, engine performance analysis, operation & maintenance training, design and control of manufacturing processes and systems, training of manufacturing technology, CAD / CAM, CNC, quality control and metrology industries, etc.
S1 Mechanical Engineering Courses | * = Concentration / Specificity / Options Courses SKS = Semester Credit Units
| Courses | SKS | | Heavy Equipment * | 3 | | Material Fatigue Analysis * | 3 | | Numerical Analysis and Computer Applications | 2 | | Structural Analysis * | 3 | | Indonesian | 2 | | English 1 | 2 | | English 2 * | 2 | | English 3 * | 2 | | English 4 * | 2 | | Programming Languages * | 2 | | CAD \ CAM | 3 | | CAE * | 3 | | Fluid Dynamics * | 3 | | Vehicle Dynamics * | 3 | | Engineering Economics | 3 | | Machine Elements I | 3 | | Machine Elements II | 3 | | Machine Elements III * | 3 | | Basic Physics I | 3 | | Physics II | 3 | | FMS * | 3 | | Advanced Mechanical Vibration * | 3 | | Mechanical Vibration | 3 | | Basic Natural Science | 2 | | Cultural Social Science Association | 2 | | Calculus I | 3 | | Calculus II | 3 | | Job | 2 | | Boiler & Turbine Steam * | 3 | | Entrepreneurship | 2 | | Chemical Engineering | 3 | | Kinematics and Dynamics | 3 | | Kompt. Fluid Dynamics & Perp. Hot * | 3 | | Concept Design * | 3 | | Concept Technology * | 2 | | Corrosion * | 3 | | Energy Management * | 3 | | Production Management * | 3 | | Industrial Management | 3 | | Engineering Mathematics * | 3 | | Materials Engineering | 3 | | Materials Engineering II * | 3 | | Fluid Mechanics * | 3 | | Strength Material Mechanics | 3 | | Mechatronics | 2 | | Computer-Based Engineering Drawing | 2 | | Drawing Techniques | 2 | | Machines - Fluid machines | 3 | | Energy Conversion Machines | 3 | | Material Moving Machine * | 3 | | Machine Tools | 3 | | Physical Metallurgy | 3 |
| | | Courses | SKS | | Finite Element Method * | 3 | | Research Methodology | 1 | | Industrial Metrology * | 3 | | Motor Fuel * | 3 | | Material Selection and Process | 2 | | Machine Programming NC / CNC | 3 | | Religious Education | 2 | | Citizenship Education | 2 | | Introduction to Mechanical Engineering | 2 | | Measurement Techniques | 2 | | Equipment Engineering * | 2 | | Experimental Design * | 3 | | Piping System Design * | 3 | | Tools Help * | 3 | | Heat Transfer | 3 | | Differential Equations * | 4 | | Lift and Transport Aircraft * | 3 | | Plastics and Polymers * | 3 | | PPC / PPIC * | 3 | | Industry Practices * | 3 | | Basic Practicum | | phenomenon Machines | 1 | | Practical Physics | 1 | | Practicum Achievement Machine | 1 | | Practicum Production Process | 1 | | Production Process I | 3 | | Production Process II | 3 | | Team Design Project I * | 3 | | Team Design Project II * | 3 | | Refrigrasi and Air Conditioning * | 3 | | Engineering Design * | 3 | | Robotics * | 3 | | Final Seminar | 1 | | Hydraulic and Pneumatic Systems | 2 | | Refrigrasi Systems and Applications * | 3 | | Solid Waste Management I * | 3 | | Solid Waste Management II * | 3 | | Structural Statics | 3 | | Statistics and Probability | 2 | | Voltage Exsperimental * | 3 | | Combustion Engineering * | 3 | | Engineering Establishment * | 3 | | Engineering Settings | 3 | | Casting Techniques * | 3 | | Welding Engineering * | 3 | | Engineering Heat Exchanger * | 3 | | Power Engineering | 2 | | Machining Technology * | 3 | | Basic Thermodynamics | 3 | | Applied Thermodynamics * | 3 | | Final | 5 |
| |
|
|
| |
| |