BEng (EEE) Third Year Electives and Internships

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1 The image part with relationship ID rid13 was not found in the file. BEng (EEE) Third Year Electives and Internships Tan Yap Peng Associate Chair (Academic), EEE 20 Feb 2018

2 The image part with relationship ID rid13 was not found in the file. MAJOR COMPONENTS 2 or 3 Year-3 Core Courses + 2 Prescribed Elective Courses 4 Core Experiments (2 for each Core) + 2 Elective Experiments associated with the 2 Prescribed Elective courses Design & Innovation Project Professional Internship (PI) 20 Weeks

3 The image part with relationship ID rid13 was not found in the file. THIRD YEAR COURSES Year 1 Intake Poly Direct-Entry Intake Semester 1 / 2 EE3001 Engineering Electromagnetics EE3002 Microprocessors EE3080 Design & Innovation Project EE3xxx Prescribed Elective 1 EE3xxx Prescribed Elective 2 ET0001 Enterprise and Innovation (Sem 1) ML0002 Career Power-Up XXxxxx Unrestricted Elective EE3001 Engineering Electromagnetics EE3080 Design & Innovation Project EE2003 Semiconductor Fundamentals EE2007 Engineering Mathematics II EE3xxx Prescribed Elective 1 EE3xxx Prescribed Elective 2 EE0002 Engineers and Society * Semester 1 / 2 EE3179 Professional Internship + ML0002 Career Power-Up * Mandatory for Poly Direct Year 3 Students

4 The image part with relationship ID rid13 was not found in the file. PRESCRIBED ELECTIVE COURSES Choose two (2) PRESCRIBED ELECTIVE COURSES PRE-REQUISITE LAB. CODE EE3010 ELECTRICAL DEVICES AND MACHINES EE2001 E3010L EE3011 MODELLING & CONTROL EE2006 E3011L EE3012 COMMUNICATION PRINCIPLES EE2010 E3012L EE3013 SEMICONDUCTOR DEVICES AND PROCESSING EE2003 E3013L EE3014 DIGITAL SIGNAL PROCESSING EE2010 E3014L EE3015 POWER SYSTEMS AND PROTECTION EE2001 E3015L EE3017 COMPUTER COMMUNICATIONS - E3017L EE3018 INTRODUCTION TO PHOTONICS * EE3018 is only offered in Semester 1. - E3018L EE3019 INTEGRATED ELECTRONICS EE2002 E3019L * EE3018 is only offered in Semester 1

5 The image part with relationship ID rid13 was not found in the file. CHOICE OF PRESCRIBED ELECTIVES Select two Prescribed Electives. Third Year Electives are pre-requisites for some Final Year Design & Technical Electives. Your choice should be guided by your intended Final Year Option. Additional Third Year Elective courses can be taken as Unrestricted Electives (UE), subjected to availability of vacancies.

6 The image part with relationship ID rid13 was not found in the file. FINAL YEAR CURRICULUM 3 Options ELECTRICAL & SYSTEMS ENGINEERING ELECTRONIC ENGINEERING INFOCOMMUNICATIONS ENGINEERING

7 The image part with relationship ID rid13 was not found in the file. FINAL YEAR CURRICULUM 8 Specialisations: ELECTRICAL & SYSTEMS ENGINEERING Intelligent Systems and Control Engineering Biomedical Electronics Electrical Power and Energy ELECTRONIC ENGINEERING Integrated Circuits Design Microelectronics & Photonics INFO- COMMUNICATIONS ENGINEERING Communication Engineering Computer Engineering Digital Media Processing

8 The image part with relationship ID rid13 was not found in the file. PRE-REQUISITES FOR FINAL YEAR OPTION ELECTRICAL & SYSTEMS ENGINEERING Intelligent Systems & Control Engineering Biomedical Electronics Electrical Power and Energy EE3011 Modelling & Control Any other EE30xx EE3011 Modelling & Control Any other EE30xx EE3010 Electrical Devices & Machines EE3015 Power Systems & Protection

9 The image part with relationship ID rid13 was not found in the file. PRE-REQUISITES FOR FINAL YEAR OPTION ELECTRONIC ENGINEERING Integrated Circuits Design Microelectronics EE3013 Semiconductor Devices & Processing EE3019 Integrated Electronics EE3013 Semiconductor Devices & Processing EE3018 Introduction to Photonics

10 The image part with relationship ID rid13 was not found in the file. PRE-REQUISITES FOR FINAL YEAR OPTION INFOCOMMUNICATIONS ENGINEERING Communication Engineering Computer Engineering Digital Media Processing EE3012 Communication Principles EE3017 Computer Communications EE3014 Digital Signal Processing EE3017 Computer Communications EE3012 Communication Principles EE3014 Digital Signal Processing

11 The image part with relationship ID rid13 was not found in the file. FINAL YEAR COURSES ELECTRICAL & SYSTEMS ENGINEERING ELECTRONIC ENGINEERING INFOCOMMUNICATION ENGINEERING EE0040 Engineers & Society HW0288 Engineering Communication II EE4080 Final Year Project Two Design Electives Three Technical Electives

12 The image part with relationship ID rid13 was not found in the file. ELECTRICAL & SYSTEMS ENGINEERING Design Electives (Choose 2) Technical Electives (Choose 3) EE4207 Control Engineering Design EE4208 Intelligent System Design EE4503 Power Engineering Design EE4504 Design of Clean Energy Systems EE4901 Biomedical Control System Design EE4902 Design of Medical Information Processing Systems EE4001 Software Engineering EE4265 Process Control Systems EE4266 Computer Vision EE4268 Robotics and Automation EE4273 Digital Control Systems EE4285 Computational Intelligence EE4530 Power System Analysis & Control EE4532 Power Electronics & Drives EE4534 Modern Distribution Systems with Renewable Resources EE4903 Physiological Systems Analysis EE4904 Biomedical Instrumentation EE4840 Biophotonics

13 The image part with relationship ID rid13 was not found in the file. ELECTRONIC ENGINEERING Design Electives (Choose 2) Technical Electives (Choose 3) EE4303 Mixed-Signal IC Design EE4304 Radio Frequency Integrated System Design EE4305 Digital Design with HDL EE4613 CMOS Process & Device Simulation EE4614 Device Parameter Extraction & Layout Implementation EE4001 Software Engineering EE4340 VLSI Systems EE4341 Advanced Analog Circuits EE4343 Radio Frequency Circuits EE4344 Analysis & Design of Integrated Circuits EE4645 Microfabrication Engineering EE4646 VLSI Technology EE4647 Microelectronic Devices EE4694 IC Reliability and Failure Analysis EE4838 Laser Engineering and Applications EE4840 Biophotonics

14 The image part with relationship ID rid13 was not found in the file. INFOCOMMUNICATIONS ENGINEERING Design Electives (Choose 2) Technical Electives (Choose 3) EE4105 Cellular Communication System Design EE4109 Microwave Circuit and System Design EE4110 Optical Communication System Design EE4413 DSP System Design EE4717 Web Application Design EE4718 Enterprise Network Design EE4001 Software Engineering EE4152 Digital Communications EE4153 Telecommunication Systems EE4188 Wireless Communications EE4190 Introduction to Modern Radar EE4455 Embedded Systems EE4475 Audio Signal Processing EE4476 Image Processing EE4478 Digital Video Processing EE4483 Artificial Intelligence & Data Mining EE4490 Multimedia Systems EE4756 Computer Architecture EE4758 Information Security EE4761 Computer Networking EE4791 Database Systems

15 PROFESSIONAL INTERNSHIP The image part with relationship ID rid13 was not found in the file.

16 The image part with relationship ID rid13 was not found in the file. PRE-REQUISITES FOR INTERNSHIP Engineering Year-1 Intake: Year-3 standing & likely to complete 4 semesters of study Poly Direct-Entry: Year-3 standing & likely to complete 2 semesters of study Important Note: A PASS mark in Internship is necessary for the award of the degree (except for students who are exempted). Internship is ungraded, i.e. PASS/FAIL.

17 The image part with relationship ID rid13 was not found in the file. PROFESSIONAL INTERNSHIP (EE3279) PERIOD 20 WEEKS [SEM 1 / SEM 2] ACADEMIC UNIT (CORE) 10 GRADING PASS / FAIL ASSESSMENTS SUBMISSION OF FINAL REPORT ESTIMATED APPLICATION PERIOD TWICE YES MAR (for Sem 1 Applications) SEP (for Sem 2 Applications)

18 The image part with relationship ID rid13 was not found in the file. THIRD YEAR ELECTIVES SELECTION Online Selection Period: System opens on 20 Feb ( 5:00 pm) System closes on 28 Feb (11:59 pm) > Year 3 Prescribed Electives Selection This selection exercise is compulsory to all 2 nd year students. Students, who do not participate in the exercise, may not be able to get placements of their choices in AY2018/19 registration.

19 Thank You The image part with relationship ID rid13 was not found in the file.

20 EE3080 EEE Design & Innovation Project Slide 1 EEE Design & Innovation Project (DIP) EE3080 Coordinators: Perry Shum Muhammad Faeyz Karim School of EEE, Nanyang Technological University, Singapore

21 EE3080 EEE Design & Innovation Project Slide 2 The EEE DIP/EE3080 is a compulsory program for all full-time third year EEE students (2 AU). Currently, the program requires each student to undertake a project in a group environment. Each project group is supervised by up to two staff. Through DIP, students will design and implement their creative project ideas.

22 EE3080 EEE Design & Innovation Project Slide 3 Students are required to work on DIP for 6 hours per week over the 13 weeks A timeslot of 1.30pm pm on every Wednesday is allocated to DIP. The other 3 hours of DIP are flexible and can be determined by project supervisor after discussing with students. Deadline for peer reviews: Friday of Week 13 in each semester Deadline for Report Submission: Friday of Week 13 in each semester Official Date of DIP Competition: The first Monday after the final exam of each semester

23 EE3080 EEE Design & Innovation Project Slide 4 Thematic Programs TP01: Smart and Micro Grids for Integration of Renewable Energy Sources Coordinator: Wang Peng TP02: Smart Electronics Coordinator: Gwee Bah Hwee TP03: Electromedical and Mobile Computing Technologies Coordinator: Justin Dauwels TP04: UAVIONICS Coordinator: Lim Meng Hiot

24 EE3080 EEE Design & Innovation Project Slide 5 Thematic Programs TP05: Photonics, Radar and Satellite Systems Coordinators: Ng Boon Poh & Wang Qijie TP06: Robotics Coordinator: Wang Han TP07: Machine Learning Coordinator: Tay Wee Peng TP08: Escape Game Design Coordinators: Perry Shum & Muhammad Faeyz Karim

25 EE3080 EEE Design & Innovation Project Interim Report Submit individual interim report (via ntulearn.ntu.edu.sg) by 5pm Monday of week 8 (the week after recess week) 5 pages (excluding Appendix) Free Format Include brief discussion of results (essential), difficulties encountered, sources of errors, comparison with theory, etc. Slide 7

26 EE3080 EEE Design & Innovation Project Final Report Submit final group report by 5pm Friday of week 13 Each student needs to contribute in the final group report. The group report of 40 to 50 pages (excluding appendices) pages must be submitted online as assignment from NTULearn under your DIP project group Course ID by group leader. The report need to be cohesive, instead of compilation of individual reports. In the report, students can address issues such as teamwork and project management. Final group report template and submission guidelines are available as follows: Final report template can be downloaded HERE Final report submission guidelines can be downloaded HERE *There is no need to submit again by or hardcopy unless it is requested by supervisor or moderator Reference: Slide 8

27 EE3080 EEE Design & Innovation Project Slide 9 Peer Review It is compulsory for all students to provide their review input. In case a student does not give his/her input, the system will show to the supervisor and moderator that `The student did not provide a peer review. Reference:

28 EE3080 EEE Design & Innovation Project Slide 10 Presentation / Demo Every student needs to explain his/her contributions to the project to supervisor and moderator. Group leader can invite supervisor and moderator (in one session or separate session) to meet every project member after the final group report was submitted. Reference:

29 EE3080 EEE Design & Innovation Project Slide 11 Useful Info Project youtube Xperience@EEE DIP website: Project Info: supervisor, moderator, lab location: Interim Report Submission Deadline: 5pm Mon, Week 8 Formal Report Submission Deadline: 5pm Wed, Week 13 ( Word.doc or Word.docx ONLY ) All reports are to be submitted online as Assignment from NTULearn for plagiarism check ( do not submit to supervisor or moderator via unless requested).

30 EE3080 EEE Design & Innovation Project Internet-of-Things, photonics, infocomm, energy, electronics, circuit design, etc AR / VR (Unity3D, WebVR) Mobile Apps (ios / Android) Image / Speech Recognition (e.g. Amazon Alexia) Wireless Communication / Positioning (Wi-Fi / Bluetooth) Distributed Systems 3D Printing Creative Mechanical Design Slide 13

31 EE3080 EEE Design & Innovation Project Slide 14 Humidity Sensor: DHT11/DHT12 Barometer (Air Pressure): BMP180 Temperature : DS18B20 Moisture: MCP3008

32 EE3080 EEE Design & Innovation Project Slide 15 Motion Sensors PIR Motion sensor Distance Sensor : HC-SR04 Magnetic Switch Infrared Distance Sensor : GP2Y0A02YK Servo Motors RFID : RC522

33 EE3080 EEE Design & Innovation Project Slide MHZ Radio Set 2.4GHz NRF24L01 Bluetooth Laser Module Infrared Diode

34 EE3080 EEE Design & Innovation Project Slide 17 GPS: NEO-6M Module Gyroscope: MPU-6050 ibeacon

35 EE3080 EEE Design & Innovation Project Slide 18 Weight Sensor Pulse / Heartbeat sensor Camera Touchscreen Display

36 EE3080 EEE Design & Innovation Project Slide 19 Remove 5 Letters to find the TIME to select DIP WEFESETEVREKLXI

37 EE3080 EEE Design & Innovation Project Slide 20 Remove 5 Letters to find the TIME to select DIP FWEESETEVREKLXTI WEEK X (10)

38 Third Year Elective Talk 20 Feb 2018 Electrical and Systems Engineering (ECAL) by John Chan

39 Choose 2 pre-specialized Major Prescribed Electives courses in Third Year as follows: EE3010 Electrical Devices and Machines 1 EE3015 Power Systems and Protection 3 1,3 - Pre-requisites for all final year power subjects: EE4503, EE4504, EE4530, EE4532, EE Pre-requisite for 2 final year control subjects: EE4265, EE4273 Final Year Technical Electives with Pre-requisites (PR) EE4503 Power Engineering Design (PR: EE3010, EE3015) EE4504 Design of Clean Energy Systems (PR: EE3010, EE3015) EE4530 Power System Analysis and Control (PR: EE3010 EE3015) EE4532 Power Electronics and Drives (PR: EE3010, EE3015) EE4534 Modern Distribution Systems with Renewable Resources (PR: EE3010, EE3015) EE4265 Process Control Systems (PR: EE3011) EE4273 Digital Control Systems (PR: EE3011)

40 How to choose the 2 pre-specialized Major Prescribed Electives? *If students do not intend to take any final year courses in power, then only EE3011 and EE3010^ are needed. (^ -recommended) *If students intend to take at least 1 final year course in power and no final year courses in control (with PR), then only EE3010 and EE3015 are needed. *If students intend to take final year courses in both power and control (with PR), then they must take EE3010, EE3011 and EE3015 (one of these must be registered as a UE). =================================================== EE3010 Electrical Devices and Machines 1 EE3015 Power Systems and Protection 3 1,3 - Pre-requisites for all power subjects: EE4503, EE4504, EE4530, EE4532, EE Pre-requisite for 2 control subjects: EE4265, EE4273

41 The courses to be taken in the final year Students are required to take 2 DESIGN elective courses and 3 TECHNICAL elective courses. The design elective courses for students choosing a particular option group must be those under that option group. Students must choose all design and technical elective courses from their chosen option group. For specialization, students must choose the design and technical elective courses from the respective areas of specialization

42 For Electrical and Systems Engineering Option Design Elective Courses EE4207 Control Engineering Design (PR: Nil) EE4208 Intelligent System Design (PR: Nil) EE4503 Power Engineering Design (PR: EE3010, EE3015) EE4504 Design of Clean Energy Systems (PR: EE3010, EE3015) EE4901 Biomedical Control System Design (PR: Nil) EE4902 Design of Medical Information Processing Systems (PR: Nil)

43 Technical Elective Courses EE4001 Software Engineering (PR: Nil) EE4265 Process Control Systems (PR: EE3011) EE4266 Computer Vision (PR: Nil) EE4268 Robotics and Automation (PR: Nil) EE4273 Digital Control Systems (PR: EE3011) EE4285 Computational Intelligence (PR: Nil) EE4530 Power Systems Analysis and Control (PR: EE3010, EE3015) EE4532 Power Electronics and Drives (PR: EE3010, EE3015) EE4534 Modern Distribution Systems with Renewable Resources (PR: EE3010, EE3015) EE4903 Physiological Systems Analysis (PR: Nil) EE4904 Biomedical Instrumentation (PR: Nil) EE4840 Biophotonics (PR: Nil)

44 Final Year Specialization Biomedical Electronics Power and Clean Energy Intelligent Systems and Control Engineering

45 Biomedical Electronics [1] What is Biomedical Engineering? Biomedical Engineering is a multiple disciplines and high technology area It is to provide solutions for health care industries and services Electrical engineers play a key role in health care industries and services (circuits and electronics, measurement and instrumentation, information and signal processing, medical imaging and image processing, modelling and control, telemedicine)

46 Biomedical Engineering is exciting It is important: Health caring and life saving It is profound and challenging (Nobel prizes in medicine in 1979, for the development of computed tomography (CT) and in 2003 for the development of magnetic resonance Imaging (MRI)) It is high tech Health care industry is robust and resilient in the economic crisis

47 Where do biomedical engineers work? Research institutions Hospitals Academic institutions/government boards Companies Sale and marketing of medical instruments and products

48 Biomedical Electronics Design courses EE4901 Biomedical Control System Design (PR: Nil) EE4902 Design of Medical Information Processing Systems (PR: Nil) Technical Elective Courses EE4903 Physiological Systems Analysis (PR: Nil) EE4904 Biomedical Instrumentation (PR: Nil) EE4840 Biophotonics (PR: Nil) EE4265 Process Control Systems (PR: EE3011) EE4266 Computer Vision (PR: NIL)

49 Power and Clean Energy [2] Power is a basic necessity.can you think of anything in life without ELECTRICITY (POWER)? Importance of power engineers What do they do? Power system control, building services & electrical consulting, energy traders/brokers, power electronics, energy alternatives & renewable energy, intelligent energy system, oil refineries and related companies Registered as a professional engineer (PEng) with PEB

50 Career Opportunities Oil refineries Building services Electrical consulting companies Power equipment sales Engineering firms Hospitals Shipyards Singapore Power, MINDEF, SMRT, PSA, JTC, CAAS, LTA

51 Power and Clean Energy Design courses EE4503 Power Engineering Design (PR: EE3010, EE3015) EE4504 Design of Clean Energy Systems (PR: EE3010, EE3015) Technical Elective Courses EE4530 Power Systems Analysis and Control (PR: EE3010, EE3015) EE4532 Power Electronics and Drives (PR: EE3010, EE3015) EE4534 Modern Distribution Systems with Renewable Resources (PR: EE3010, EE3015) EE4265 Process Control Systems (PR: EE3011) EE4273 Digital Control Systems (PR: EE3011)

52 Intelligent Systems and Control Engineering [3] CONTROL is the heart of many engineering systems and it synergistically integrates the plants (electromechanical, chemical, etc), with sensors, actuators, computers, communication, and software to yield optimal responses Control systems enables integrations of mechanics, electronics, and computer hardware and software to revolutionize technology in the new economy

53 Control engineers have multi-disciplinary engineering system perspectives to take advantage of exciting career opportunities in Robotics and automated manufacturing Aerospace and automotive industries Precision engineering and manufacturing Process industries (petrochemical processes, pharmaceuticals and biotechnology processes, energy (including alternative energy) systems, environment and water treatment processes, food production processes) Building automation

54 Intelligent Systems and Control Engineering Design courses EE4207 Control Engineering Design (PR: Nil) EE4208 Intelligent System Design (PR: Nil) Technical Elective Courses EE4265 Process Control Systems (PR: EE3011) EE4266 Computer Vision (PR: Nil) EE4268 Robotics and Automation (PR: Nil) EE4273 Digital Control Systems (PR: EE3011) EE4285 Computational Intelligence (PR: Nil)

55 Thank You!

56 Third Year Prescribed electives ELECTRONIC ENGINEERING presented by K Radha Krishnan Associate Professor, EEE eradha@ntu.edu.sg 20 Feb 2018

57 Specialization in Electronics Option 2 specializations ELECTRONICS Microelectronics Microelectronics Courses Photonics Courses IC Design IC Design Courses 2

58 Microelectronics Specializatio n IC Design Specializatio n 3 Year 3 Elective Courses in Electronics EE3013 Semiconductor Devices and Processing Basic concepts of engineering principles in semiconductor processing, wafer fabrication and physical principles underlying the operation of basic semiconductor devices. Lab module: 1 hour video on advanced wafer processing, and 2 hours of cleanroom visit. Pre-requisite for Yr 4 courses EE3018 Introduction to Photonics Introductory course on the fundamentals of photonics and their impacts on our daily life. Photonics contributes to the fundamental platform for nanotechnology, green energy, home entertainment, data storage, sensing, imaging, biomedical healthcare, and modern optical communications. EE3019 Integrated Analog Electronics Provides knowledge to pursue advanced topics in analog and digital integrated circuits. Includes the design of elements in bipolar and CMOS based op amps, feedback, power supplies, linear and non linear applications circuits and transistor circuits for realising basic digital circuits. Pre-requisite for Yr 4 courses

59 Courses in Microelectronics/Photonics Specialization Design Electives EE4613 EE4614 CMOS Process and Device Simulation by Technology CAD Workstation Based Design & Simulation Course Virtual Wafer Fabrication & Device Characterization of a 2 µm CMOS Process Virtual Process Integration for MOS Technology Development & Device Optimization Device Parameter Extraction & Layout Implementation Workstation Based Design & Simulation Course Virtual Device Characterization Transistor Parameter Extraction Circuit Simulation & Mask Layout Pre-requisite: EE3013 Semiconductor Devices and Processing 4

60 Courses in Microelectronics/Photonics Specialization Technical Electives (Microelectronics) 1 EE4645 Microfabrication Engineering 1 EE4646 VLSI Technology (Choose any 3) EE4647 Microelectronic Devices 1 EE4694 IC Reliability and Failure Analysis 1 Pre-requisite: EE3013 Semiconductor Devices and Processing 5

61 Courses in Microelectronics/Photonics Specialization Technical Electives (Photonics) EE4838 LASER ENGINEERING AND APPLICATIONS (Choose all 3) EE4839 FIBRE OPTIC COMMUNICATIONS EE4840 BIOPHOTONICS No Pre-requisite required 6

62 Courses in IC Design Specialization IC Design 1 EE3019 Integrated Analog Electronics (Pre-requisite) Design Electives (Choose any 2) Technical Electives (Choose any 3) 1 EE4303 Mixed-Signal IC Design 1 EE4304 Radio Frequency Integrated System Design EE4305 Digital Design with HDL EE4340 VLSI Systems 1 EE4341 Advanced Analog Circuits 1 EE4343 Radio Frequency Circuits 1 EE4344 Analysis & Design of Integrated Circuits EE4694 IC Reliability & Failure Analysis 7

63 Wide Range of Career Opportunities in Electronics Sector with Global Leaders + R&D Manufacturing Headquarters 8

64 Singapore s Semiconductor Ecosystem Strong, comprehensive base of top companies IC Design Wafer Fabrication Assembly and Test Have focused on engaging top companies to build up a semiconductor ecosystem in Singapore 9 of the top 15 fabless semiconductor companies 3 of the top wafer foundries 4 of the top 6 OSATs Outsourced Semiconductor Assembly and Test 49

65 10

66 11

67 12

68 16 of top 20 global companies have R&D, manufacturing or HQ in Singapore World #1 USA #1 CPU #1 World #2 Asia #1 World #4 USA #2 World #5 Japan #2 World #7 Europe #1 World #8 USA #3 Memory #2 World #9 USA #4 Comms #1 World #11 USA #5 Comms #2 World #12 USA #6 CPU #2 World #13 Europe #2 World #15 Japan #5 World #17 USA #7 World #17 Europe #3 World #18 USA #8 World #19 Taiwan #1 World #20 USA #9 Graphics #3 Companies representing >50% of ww semicon revenue are in Singapore 13

69 Singapore s Electronics Industry in % of Singapore s GDP S$90B manufacturing output Breakdown of Electronics Industry Semiconductors (53%) ~66,000 employment 17% of total manufacturing jobs Electronic Modules & Components (11%) Data Storage (11%) 9% 1 in 10 chips worldwide are made in Singapore Infocomms & Consumer Electronics (14%) Computer Peripherals & EMS (11%) A Key Pillar of our Economy singstat.gov.sg,

70 Many graduates, who did not take the Electronics option, have also ended up in Electronics Sector for employment! -Recent survey Thank you! Contact: A/P Radha Krishnan

71 INFOCOMMUNICATION ENGINEERING School of EEE Nanyang Technological University Teh Kah Chan Area Lead (InfoCommunication), EEE 20 February 2018

72 Infocommunication Engineering Communication Engineering Three Specializations Digital Media Processing Computer Engineering Infocomm Engineering

73 Communication Engineering Satellite Communications Network Communications Internet Mobile Communications Optical Communications Infocomm Engineering

74 Digital Media Processing Applications Media Search Engine Mobile Audio Video on-demand Computer Social Network HDTV On-line Gaming Smart Phones Infocomm Engineering

75 Infocomm Engineering Smart Phone as an Example

76 Prescribed Elective Courses in Infocomm 3 rd Year Select any two courses Code EE3012 EE3014 EE3017 Title Communication Principle Digital Signal Processing Computer Communications Recommendation: Communication Engineering Computer Engineering Digital Media Processing EE EE3017 EE EE3017 EE EE3014 Infocomm Engineering

77 Elective Courses in Infocomm Engineering 4 th Year Design elective courses Code EE4105 EE4109 EE4110 EE4413 EE4717 EE4718 Infocomm Engineering Title Cellular communication system design Wireless system design Optical communication system design DSP system design Web application design Enterprise network design Code EE4001 EE4152 EE4153 EE4188 EE4190 EE4455 EE4475 EE4476 EE4478 EE4483 EE4490 EE4756 EE4758 EE4761 EE4791 Technical elective courses Title Software engineering Digital communications Telecommunication systems Wireless communications Introduction to modern radar Embedded systems Audio signal processing Image processing Digital video processing Artificial intelligence and data mining Multimedia systems Computer architecture Information security Computer networking Database systems

78 Career Opportunities of EEE Graduates with Infocommunication Engineering Research Centres Consumer Electronics Industry Communications & Broadcasting Infocomm Computers & Comms. Government & Statutory Boards Banking & Financial Institutions Private Communication Networks IME, I2R, DSTA, DSO, CSIT, DSI, MNC R&D Siemens, NEC, HP, Agilent, OKI, Sony, Creative, Philips, Infineon SingTel, StarHub, M1, Agilis, Ericsson IBM, HP, Lucent, Siemens, NEC, Fujitsu, Phillips IMDA, PSA, HDB, MRTC, Singapore Power Banks, Stock Exchanges, Financial Institutions Petrochemical Companies, Private MNC Networks Infocomm Engineering

79 Industries that requires Infocomm Infocomm Engineering

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