Electronics and Telecommunication Engineering deals with microprocessors, analog transmission, digital transmission, analog integrated circuits, video reception, microwave engineering, basic electronics, voice and data, wave progression, etc. The duration of Electronics and Telecommunications Engineering is 2 to 4 years (online ETE courses can last from one month to one year depending on the institute and level of programme). Electronics and Telecommunication Engineering can be pursued after one concludes class 10 from a recognized school with at least 50% aggregate marks and has taken mandatory subjects such as Physics, Chemistry, and Mathematics.
Admission to ETE engineering is done through entrance exams and on a merit basis. Top entrance exams for these courses include JEE Main, JEE Advanced, GATE, AP EAMCET, TS EAMCET, etc. Further, Electronics and Telecommunication Engineering courses can be pursued offline, online, and in distance learning mode. In India, some top institutes that offer this course include the National Institute of Technology (NIT), Raipur, Amity University, Manipal Institute of Technology, Pillai College of Engineering, A G Patil Institute of Technology, etc. The average Electronics and Telecommunications Engineering fee ranges between INR 7,000 p.a. and INR 21.57 LPA. Graduates of this field can work as RF engineers, Field engineers, Telecom engineers, Network engineers, etc. with an average starting salary of INR 2.1 LPA. Scroll down to learn more about ETE course details discussed systematically on this page.
Quick Facts About Electronics & Communication Engineering
The following highlights table provides quick information about the Electronics and Telecommunication Engineering course:
Particular | Details |
---|---|
Course Name | Electronics and Telecommunication Engineering |
Short Form | ETE |
Level of Programme |
|
Duration | 2 to 4 years |
Eligibility Criteria |
|
Examination Type | Semester-wise |
Admission Process | Entrance Exam + Merit-Based |
Top Entrance Exam | JEE Main, JEE Advanced, GATE, BCECE, JEECE, UPSEE, and so on. |
Top Colleges | IIT Kharagpur, BITS Pilani, Amity University Noida, KIIT Bhubaneswar, IIT Delhi, NIT Warangal, etc. |
Average Course Fee | INR 7,000 p.a. to INR 21.57 LPA |
Average Starting Salary | INR 2.1 LPA |
Job Positions | Electronics & Telecommunication Engineer, Telecom Engineer Communications Engineer, Electronic Communications Technician, Telecommunications Network Engineer, etc. |
Top Recruiting Companies | BSNL, Siemens, Reliance, Philips Electronics, Conexant and Flextronics, DMRC, Nvidia, BHEL, HPCL, and more. |
There are multiple reasons to choose Electronics and Telecommunication Engineering courses. Due to the change in the technological field and rising demand for innovations and technologies the scope for this field is enormous in India.
Electronics and Telecommunication engineers taste great success hence they are offered opportunities that serve the best. They can find employment in the Central Government, State Government, and corresponding companies in both the public and private sectors. Some of the top associations that hire graduates in this field are All India Radio, Indian Telephone Industries, National Physical Laboratories, and the Civil Aviation Department.
Some other career prospects may be encountered in the Ministry of Communication, DD, information and broadcasting sectors, railways, police, BSF, CRPF, etc. Given that the branch of Electronics and Telecommunication Engineering is evergreen, the scope to find employment is diverse, and hence the reasons to choose this field are multiple.
An Online Electronics and Telecommunication Engineering Degree is a program that you can take through a virtual platform. This program focuses on the study of electronics and telecommunication engineering, which is all about designing, developing, and maintaining electronic and telecommunication systems and devices. Some of the things you will learn in this program include:
- Electrical Engineering Concepts: This covers important basics like how circuits work and how electricity and magnetism interact.
- Telecommunication Systems: This covers how we communicate with each other using technology, including how we send and receive data.
- Signal Processing: This covers how we can analyze and manipulate different types of signals, like sound or images.
- Microelectronics and VLSI Design: This covers how we can design and build tiny electronic components that are used in many devices we use every day.
- Electronic Devices and Circuits: This covers how electronic devices are built, how they work, and how we can design circuits to make them do what we want.
- Wireless Communication: This covers how we can communicate without wires, like using our phones or other devices.
- Networking: This covers how different devices can be connected to share information.
- Control Systems: This covers how we can use technology to control things like robots or other machines.
- Capstone Projects: This is where you get to work on a real-world project that uses everything you have learned in the program.
Some of the ETE online courses from some renowned institutions have been listed below.
TCS ION Electronics and Communication Engineering Courses and Certifications | Million Lights Electronics and Communication Engineering Courses and Certifications |
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Udemy Electronics and Communication Engineering Courses and Certifications | Skill Lync Electronics and Communication Engineering Courses and Certifications |
Great Learning Electronics and Communication Engineering Courses and Certifications | Upgrad Electronics and Communication Engineering Courses and Certifications |
Edx Electronics and Communication Engineering Courses and Certifications | Edx Electronics and Communication Engineering Courses and Certifications |
Modern engineering disciplines such as Electronics and Telecommunication Engineering deal with the planning, fabrication, production, testing, and administration of the manufacturing procedure of intricate electronic systems and products. On the other hand, the design, research, development, and testing of electronic equipment utilised in diverse systems are all part of Electronics and Communications Engineering. Furthermore, it deals with the production of circuits, electronic components, and communications technology. The table below highlights the major differences between ETE and ECE courses:
Parameter | Electronics and Telecommunication Engineering | Electronics and Communication Engineering |
---|---|---|
Short Form | ETE | ECE |
Course Duration | 2 to 4 years | 2 to 4 years |
Entrance Exams | JEE Main, JEE Advanced, GATE, BCECE, JEECE, etc. | WBJEE, JEE Mains, BITSAT, MHT CET, and more. |
Eligibility Criteria | Depends on the course-level | Depends on the course-level |
Average Course Fee | INR 7,000 p.a. to INR 21.57 LPA | INR 1-15 LPA |
Top Colleges | IIT Kharagpur, BITS Pilani, Amity University Noida, KIIT Bhubaneswar, IIT Delhi, and so on. | NIT Trichy, BITS Pilani, Delhi Technological University, Chandigarh University, SRM University, etc. |
Generally, students who are interested in studying sophisticated communication systems choose to study diploma in Electronics and Telecommunication Engineering after completing their 10th grade. These courses are offered to prospective candidates in all three modes of learning: full-time, part-time, and online/distance schooling. Details are discussed below:
Full-Time ETE Courses
Given their respective course duration, full-time students must attend in-person classes, complete regular assignments, and take semester-by-semester offline exams on campus. They must also complete projects and perform practicals as part of the course curriculum. Students who enroll in a full-time study gain practical experience in the subject as well as in-depth learning through actively engaging with their professors and other students.
Part-Time ETE Courses
For students who cannot commit to the full-time programme or who are working in their professions full-time, there is a part-time Electronics and Telecommunications Engineering course available. The part-time programme lasts five to six years compared to the regular course duration, which takes four years to complete (except for diplomas).
Distance/Online ETE Courses
Similar to the part-time course, distance/online Electronics and Telecommunications Engineering courses also last five to six years and can be pursued from anywhere. This course is designed for students or researchers who are working professionals and who cannot attend full-time or even part-time courses. Students may find various websites or online learning platforms that provide this course along with professional certifications and placement opportunities (if included).
Note: The BTech in Electronics and Telecommunication Engineering course cannot be pursued online as it requires practical training and is strictly considered invalid by AICTE if pursued online.
Electronics and Telecommunication Engineering courses can be pursued at different academic levels of the programme — diploma, undergraduate, postgraduate, doctorate, and likewise. That said, students can pursue this course after completing their 10th grade (at minimum) based on their career objectives and interests. Discussed below are the different courses students can pursue in ETE courses.
Diploma in Electronics and Telecommunication Engineering: This three-year course covers topics such as microprocessors, integrated circuits, and electronic parts. Students can learn about electronic instrument testing, supervision, and maintenance in this course.
BE/BTech in Electronics and Telecommunication Engineering (bachelor’s degree): This four-year undergraduate course covers topics such as analog integrated circuits, digital and analog communication, microwave engineering, satellite communication, antennae, and more. It also covers basic electronics, microprocessors, solid-state devices, analog integrated circuits, digital and analog communication, etc.
ME/MTech in Electronics and Telecommunication Engineering (master’s degree): This two-year postgraduate course covers topics related to the study of analog communications, embedded systems, digital communications, digital and wireless network technologies, software systems, and so on.
Ph.D. in Electronics and Telecommunication Engineering (doctoral degree): This programme emphasizes the development of necessary skills to integrate hardware and software components while preparing students to apply to major sectors like telecommunications, energy, and electronics. The course duration for this research-based programme ranges between two and five years.
The eligibility criteria for Electronics and Telecommunication Engineering differs based on both the academic level and the type of programme one chooses to pursue. It may also vary from one institution to another and the particular specialization a student chooses to pursue at the master’s level. The following is a discussion of the commonly followed Electronics and Telecommunication Engineering eligibility criteria by the majority of universities at different academic levels.
Diploma
Undergraduate:
Postgraduate:
Doctorate:
Students who want to become successful Electronics and Telecommunication engineers must have remarkable communication and interpersonal abilities, a firm grasp of the software system, expertise in digital communication, embedded system, and more. They must be able to recognise various errors and analyse factors to offer solutions, such as resolving system-related errors or malfunctions with the communication equipment. They must additionally be able to handle their clients well and convey their findings to various parties. Here is the required skill set that is expected out of students:
Technical skills: The graduates should have a boost in their coding skills. Additionally, the students also learn Web Development, DBMS, and SQL. will help the students. Computer skills are one of the most important skills.
Analytical and problem-solving skills: The way you solve problems creatively and efficiently reflects your value to the organisation. Through these one can measure a person’s quantitative and creative ability. When you increase your analytical and problem-solving skills, your chances of employability will increase.
Interpersonal skills: This skill helps the person to stand out in the crowd. The greater the communication the engineer does with the public more will the engineer be in the eyes of employers. Employers stress more about the way you speak.
Ability to be a leader as well as a teammate: A leader commits himself to the team. A leader is not far above the team but is a teammate himself.
In India, multiple entrance exams are held for Electronics and Telecommunication Engineering courses, such as at the state level, national level, and university level. The following is a list of some of the ETE entrance exams that applicants may take to enrol at different levels of the programme:
JEECE: It is a state-level entrance exam that is conducted online for candidates who are willing to take admission to the top engineering colleges of Jharkhand.
AP EAMCET: It is a state-level online entrance exam that is conducted for students who are willing to take admission to the top engineering colleges of Andhra Pradesh.
UPSEE: It isa state-level entrance exam conducted for students who want to attend the top engineering colleges of Uttar Pradesh.
BCECE: It is a state-level offline entrance exam administrated for students who are interested in attending the top engineering colleges of Bihar.
JEE Main: It is a national-level examination, the clearance of which allows admission to undergraduate engineering courses. JEE Main permits admission to NITs, IIITs, and university-level institutions, while JEE Advanced allows admission to IITs across India.
GATE: It is a national-level entrance exam that allows admission to postgraduate engineering courses such as ME/M Tech at top engineering colleges across India including IITs and NITs.
The list of ETE specializations has been listed below.
ETE Specializations | What is it about? |
---|---|
Embedded Systems | Focuses on the design and development of embedded systems, which are specialized computing systems integrated into larger systems or products |
Microwave Engineering | Concentrates on the study and design of microwave circuits and systems, often applied in communication systems, radar, and satellite communication. |
Photonics and Optical Communication | Involves the study of optical devices and systems, including fiber optics, lasers, and optical communication systems. |
Robotics and Automation | Specialization in the design and control of robotic systems used in industrial automation, healthcare, and other fields. |
Communication Systems | Specializing in the design and optimization of communication networks, including wireless communication, satellite systems, and fiber optics. |
Control Systems | Specialization in the analysis and design of control systems, applicable in various industries including robotics, automation, and process control. |
Wireless and Mobile Communication | Concentrates on the development and optimization of wireless communication technologies, including mobile networks, Bluetooth, and Wi-Fi. |
Digital Signal Processing (DSP) | Focuses on the analysis, manipulation, and interpretation of signals such as sound, images, and sensor data using digital techniques. |
VLSI Design | Specialization in Very Large Scale Integration involves the design and fabrication of integrated circuits with millions of transistors, commonly used in microprocessors and memory chips. |
Power Electronics | Focuses on the study of power systems, including the design and optimization of power electronic devices used in electrical power conversion and control. |
As the level of the programme differs such as a diploma, undergraduate, postgraduate, or doctoral, the admission process for Electronics and Telecommunication Engineering differs by degrees. Although it may vary from one university to another, there are some common processes followed by all. Below we will discuss a standard process to get admission to Electronics and Telecommunication Engineering courses based on different course levels:
For Diploma Admissions: Merit lists are used to determine admissions, however, they vary from one university to another. By registering on the official website of their preferred university, students may submit applications for this programme in both offline and online modes.
For BE/BTech Admissions: Entrance exams or direct entry are the two options available to students seeking admission to BE/BTech ETE courses. The scores that candidates earned in 12th grade are used to determine whether they get eligible for a lateral entry.
For M Tech Admissions: Students must hold a bachelor's degree in a related field with a minimum cumulative GPA of 50% to 60%. Further, the percentage of individuals who are granted direct admission to IITs and other popular engineering colleges is determined by their GATE score.
If you are interested in studying Electronics and Telecommunication Engineering, you might be wondering how to get admitted directly into a university program. The process of admission can be different depending on the university you are applying to and the country you are in. Some universities might require you to take an entrance exam, while others might have a direct admission process.
Direct admission means that you can apply to the university without taking an entrance exam, but you need to meet specific requirements like having a certain percentage in your high school or previous university education. If you meet the eligibility criteria, you can follow these general steps:
1. Check if you are eligible: Make sure that you have the required academic qualifications and other qualifications specified by the university for direct admission.
2. Submit your application: Fill out the application form directly on the university's website. You will need to provide personal details, academic records, and other required documents.
3. Verify your documents: The university will review your documents to verify your eligibility. They might ask you for academic transcripts, certificates, letters of recommendation, and other specified documents.
4. Attend an interview or counseling session: Some universities might conduct an interview or counseling session to understand your suitability for the program. This could be done in person, over the phone, or via video conferencing.
5. Highlight your work experience: If you have relevant work experience in the field, it can strengthen your application for direct admission. Some universities value professional experience in addition to academic qualifications.
6. Write a statement of purpose or personal statement: You might be asked to provide a statement explaining your motivation, goals, and why you are interested in pursuing Electronics and Telecommunication Engineering.
7. Submit additional documents: If requested, you might need to submit any additional documents or portfolios that might support your application.
8. Wait for the admission decision: The university's admission committee will review your application, including academic records, test scores (if applicable), and other relevant materials. Once the review process is complete, the university will notify you of the admission decision. If you are admitted, you will receive details about enrollment procedures and any additional requirements.
It's important to note that different universities might have different admission policies, so it's a good idea to check the specific requirements of the university you are interested in.
The need for Electronics and Telecommunication engineers will only grow as the globe becomes increasingly dependent on technical advancements that are happening all round the clock. The majority of programs demand you to have a strong interest in Maths and Physics, and having computer and programming skills is advantageous.
When you decide to study Electronics and Telecommunication abroad, you will have access to the topmost programmes and institutions. Further, it is an opportunity to explore a different culture, expand your language abilities, and choose the nation with the best job prospects for this course following graduation. A particular university will choose the format for each ETE course, however, the majority will cover the same fundamental topics. The average fee for this course ranges between INR 8.2 LPA and INR 21.6 LPA. The popular Electronics and Telecommunication Engineering colleges abroad include the Technical University of Denmark (Denmark), Berlin International College (Germany), BITS Pilani Dubai (UAE), Curtin University (Australia), University of Pennsylvania (USA), Australian College of Information Technology (Australia), Camosun College (Canada), and so on.
In India, the average course fee for Electronics and Telecommunication Engineering ranges between INR 7,000 p.a. and INR 21.57 LPA. The course fee for this programme depends on the level of the programme and the type of institute (whether government or private) one wants to enrol in. The following table shows the average ETE course fee for popular colleges in India:
Minimum Fees | Maximum Fees | |||
---|---|---|---|---|
Private | Government | Private | Government | |
Ug | 68,630 | 83,200 | 21,57,000 | 8,71,000 |
Pg | 44,000 | 9,600 | 5,51,000 | 1,78,000 |
Doctoral | 5,100 | --- | 5,10,000 | --- |
Diploma | 17,400 | 9,500 | 4,08,000 | 1,11,000 |
The course curriculum for Electronics and Telecommunications Engineering varies as per the level of the programme and specialisation one chooses to enrol in. While the diploma and undergraduate courses cover the fundamentals of ETE, postgraduate courses cover advanced-level knowledge and practical-based learning through projects seminars, internships, lab subjects and more. The common course curriculum for this course includes the following subjects:
Basic Electrical Engineering | Engineering Mechanics |
---|---|
Digital Electronics | Fundamentals of Cloud Computing & Enterprise |
Digital Systems and Microprocessors | Introduction to Computers and Programming in C |
Electromagnetic Field Theory | Microwave Engineering |
Electronic Devices and Circuits | Python Programming |
Embedded Software Engineering | Telecommunication Switching |
The subjects covered in Electronics and Telecommunication Engineering include electives in a choice-based credit system after the completion of their first year. Core subjects, practicals, internships, some subjects in the fundamental sciences, and projects are all a part of the syllabus. Listed below are the generic Electronics and Telecommunication Engineering subjects and syllabi:
Candidates can check out the list of top colleges offering ETE courses along with their fees.
College Name | Average Fee (in INR) |
---|---|
National Institute of Technology (NIT), Raipur | 56,738 p.a. |
Amity University | 10 LPA |
Manipal Institute of Technology | 3.5 LPA |
Pillai College of Engineering | 1.6 LPA |
Finolex Academy of Management and Technology | 62,245 p.a. |
A G Patil Institute of Technology | 60,000 p.a. |
Ajay Binay Institute of Technology | 76,600 p.a. |
Institute of Aeronautical Engineering | 67,000 p.a. |
College of Engineering, Pune | 60,694 p.a. |
Vishwakarma Institute of Technology | 48,813 p.a. |
The career options that are available to the candidates are offered by the top recruiting companies after the candidates conclude the Electronics and Telecommunication Engineering Course successfully. The job prospects available to the candidates include ETE engineers, Telecom engineers, Communications engineers, Electronic Communications technicians, Telecommunications Network engineers, etc.
Depending on how quickly they advance in this evergreen industry that is intensely competitive, professionals in Electronics and Telecommunication Engineering tend to earn more than other engineering graduates on average. Given their expertise and experience gained through practical study and internships, they are qualified to handle job roles with higher wages and across numerous areas, therefore the job roles provided will be of the highest caliber of employment. The following table highlights the average ETE salary along with their respective job descriptions:
Job Profile | Job Description | Average Salary (in INR) |
---|---|---|
Electronics & Telecommunication Engineer | For scientific, military, medical, industrial, and commercial applications, they manufacture a variety of electronic devices. | 3.5-4.5 LPA |
Telecom Engineer | They set up and install communication equipment and ensure that high-quality data is sent via wired or wireless transmission. | 3.5-9.5 LPA |
Communications Engineer | They create designs, test them and then put them into practice. They also develop test processes and provide plans for handling any disasters. | 3.5-LPA |
Electronic Communications Technician | They work on telephone jacks, lines, dial-up systems, routers, and other hardware in homes, offices, and other structures. | 3-7 LPA |
Telecommunications Network Engineer | The security, architecture, and functionality of the computer networks are examined, as well as the integration of the many telecom services and gadgets. | 3.5-11.5 LPA |
The courses offered after the conclusion of Electronics and Telecommunication Engineering can be done with B.Tech degree and MTech (Master of Technology.
The full form of ETE is Electronics and Telecommunication Engineering. It deals with things such as analogue transmission, microprocessors, analogue integrated circuits, satellite communication, digital transmission, microwave engineering, reception of video, voice and data, basic electronics, digital and analogue communication, solid-state devices, antennae and wave progression. Graduates of this field learn about the concepts and theoretical underpinnings needed for equipment analysis, production, operation, system implementation, maintenance, and more.
The minimum Electronics and Telecommunication Engineering eligibility criteria is that candidates should have passed class 10 from a recognised institute with the least aggregate of 50% marks where a relaxation of 5% is given to the candidates who belong to the reserved categories. In addition, students must have passed the 10+2 or another competitive examination in which Chemistry, Physics, and Mathematics are the major subjects, along with other technical subjects.
Yes, Electronics and Telecommunication Engineering is hard to study since it is one of the toughest evergreen branches of engineering. Given that the field involves the study of various applications of electronic circuits, analysis and design, etc. it may not be an easy field to about for every student. Those who are genuinely interested in this field of study and want to build their careers to earn lucrative salaries must go for this branch.
Yes, you can do Electronics and Telecommunication Engineering after class 12. For this, you need to complete your class 12 from a well-recognised institute with a minimum of 50% aggregate marks in subjects such as Physics, Chemistry, and Mathematics (PCM). In addition to this, students must achieve decent scores in state/ national-level entrance exams and clear a university-level entrance exam (if any) that is required by their respective colleges.
The scope of ETE in the future is broad-ranging in India as recruiting figures for this branch are expected to reach more than 345,800 by 2026. ETE graduates have the opportunity to pursue a rewarding career in a variety of sectors, including the manufacturing of consumer electronics, telecommunications and information technology, manufacturing of medical equipment, mobile communication, power electronics, and internet technologies, as well as other sectors like the petroleum, steel, and chemical industries.
No, JEE Main is not compulsory for Electronics and Telecommunication Engineering. It is not the only entrance exam that the candidate can choose for taking admission to this field of study. In addition to taking JEE Main, students may also opt for alternative entrance exams such as GATE, BCECE, JEECE, UPSEE, AP EAMCET, TS EAMCET, etc. Also, students must sit for university-level entrance exams and clear personal interview rounds (if any) as conducted by their respective colleges for admission purposes.
The duration of the full-time Electronics and Telecommunication Engineering course ranges between two and four years. In this type of course, students must attend on-campus classes and submit regular assignments. Further, candidates need to note that the duration of the ETE online course may vary from one college to another and it ranges between one month and one year.
Numerous best colleges for Electronics and Telecommunication Engineering are available in the country that provides students with quality instructions, renowned professors, placement support, research facilities, and so on. Some popular ETE colleges are SRM University (Chennai), RVCE (Bangalore), MIT (Manipal), DSCE (Bangalore), MSU (Baroda), JMI (New Delhi), COEP (Pune), VIT (Vellore), PSG Tech (Coimbatore), and more.
Yes, online Electronics and Telecommunication Engineering courses are available for students who cannot attend full-time on-campus lectures or individuals who are working for some company. There are plenty of online ETE courses available developed for beginner, intermediate and advanced levels. Industry professionals and academic intellectuals from top organisations and institutes around the world developed these courses.
While several popular small and huge firms hire graduates in this field, the list of the top recruiters for Electronics and Telecommunication Engineering in India includes Airtel, Bharat Electronics Limited (BEL), Bharat Sanchar Nigam Limited (BSNL), Defense Research and Development Organisation (DRDO), Ericsson, Fiserv, HCL Technologies, Mahanagar Telephone Nigam Limited (MTNL), Nokia, National Physical Laboratory (NPL), Syntel, and so on.
A meld of both soft and hard skill sets is required to become the best Electronics and Telecommunication Engineering graduate. To become one, candidates must possess the qualities such as risk management skills, team working skills, problem-solving skills, analysing skills
management skills, communication skills, demand management skills, technical skills, interpersonal skills, and so on.
The upcoming trends that Electronics and Telecommunication Engineering is going to taste have been explained in the following pointers:
3D printings: Glancing at the possibility in today’s world, 3D printing is advancing competitively. Numerous corporations utilise 3D printing technology for diverse technologies. In the field of medicine, it can be utilised for assembling prosthetics.
Level- 3 Autonomous vehicles: Autonomous vehicles are commencing to get widespread recently. Very soon all automobiles would become automatic.
While there are many popular books which students can use to study, the list of the best books for Electronics and Telecommunication Engineering include Silicon VLSI Technology by author Plummer Deal, Electronics Communication by author Roddy Cooln, Modern Digital Design by author Richard Sandige, Elements of Electromagnetics by author Sadiku, Automatic Control System by author BC Kuo, Communication Systems- Analog and Digital by author SD Sapre and RP Singh, etc.
Electronics and Telecommunications Engineering fees in India vary depending on the level of the programme one wants to attend (diploma/UG/PG/PhD), type of institute (government/private), and similar other factors. At the undergraduate level, the ETE fees range between INR 83,000 p.a. and INR 21.57 LPA. Similarly, at the postgraduate level, the fees range between INR 9,600 p.a. and INR 5.5 LPA.
Electrical engineering has a subspecialty called electronics and telecommunications engineering that focuses on producing electronic technology. The development and manufacture of conventional analogue technologies as well as cutting-edge digital components are included in this wide-ranging subject matter. Media and communications, healthcare, and software technology are just a few industries where electrical engineers find employment. Several things we use daily, including cell phones, TVs, radios, laptops, and WiFi networks, have been produced by ETE engineers.
The typical compensation for an entry-level electronics and telecommunications engineer with less than three years of experience is INR 2.1 LPA. While an experienced engineer with 10 to 20 years of experience in the same field makes an average income of INR 9 LPA. Further, a mid-career electronics telecommunication engineer with 4 to 9 years of experience secures an average salary of INR 5.3 LPA.
The Electronics and Telecommunication Engineering syllabus does include subjects that are related to technical advancement in the industry. The syllabus is specifically designed based on subjects such as Science, Physics, Mathematics, and other primary core subjects. Among the subjects covered in the curriculum are digital image processing, systems design, network analysis, circuit analysis, and many others.
The list of Electronics and Telecommunication Engineering subjects includes core subjects, lab subjects, and elective subjects that students can choose based on their academic interests. Some ETE subjects include Engineering Physics, Engineering Chemistry, Introduction to Telecommunication Engineering, Computer Programming, Network Analysis, Signals and Systems, Electronic Devices and Circuits, Electronic Measurement and Instrumentation, Analog Integrated Circuits, Advanced Antenna Theory, Industrial Management, Principles of Image Processing, Microwave Theory, and more.
An Electronics and Telecommunication Engineer does analyse weaker regions of network connection and offers suitable solutions by working on it and figuring out defects. In short, an ETE engineer does Network Planning, Signal Maintenance, Testing & Research, Survey & Analysis, Systems Designing, and so on. Due to the importance of telecommunications in daily life, electronics and telecommunications engineers have good career prospects.
Various popular career options after Electronics and Telecommunication Engineering are available for prospective students as the demand for this field is increasing day by day. After the completion of the course, students can find employment in both the government and private sectors. A few popular career options include RF Engineer, Field Engineer, Telecom Engineer, Network Engineer, Test Engineer, and so on.
The Electronics and Telecommunication Engineering course structure is based on the level of programme one wants to attend. For example, if a student wants to attend a BTech course, its course structure will include eight semesters. On the other hand, if one wants to attend an MTech course, its course structure will include four semesters. Given below is a commonly followed course structure for Electronics and Telecommunication Engineering:
Workshops
Mandatory project
Internship training
Elective, core, and lab subjects
IV/VIII semesters
A variety of specialised teaching methodologies and techniques are used in Electronics and Telecommunication Engineering. This may include lecture-based teaching, laboratory exercises, other practical knowledge-based activities, and so on. In the research project, students apply the theoretical concepts they have learned in class and further their understanding of what they have learned. A few common teaching techniques are detailed below:
Case methodology
Group projects
Lectures
Practicals
Workshops
Yes, projects are compulsory in the Electronics and Telecommunication Engineering courses to let students demonstrate their understanding of the subject matter practically. Students must submit the projects in their final year which can be made by a group of four to five individuals. Here are some common project topics for ETE courses:
Digital Data Streaming
Home Automation using IoT
RFID-based Access System
Signal Tracker System
Smart Energy Instrument using GSM
Solar Tracking
Graduating from this course will prepare graduates for work as telecom and networking engineers and other designations in both the public and private sectors. The list of the top areas of recruitment for Electronics and Telecommunication Engineering includes the following:
Telecommunications Industry
Oil and Gas InWater Industry
Networking Industry
Geotechnical Industry
Embedded Systems Industry
Electronics Industry
Defense Sector
Aerospace Industry
There are many reasons why you should become an Electronics and Telecommunication engineer. The primary reason behind choosing this career is that it is an evergreen branch that is expanding rapidly and producing hundreds of job opportunities with decent starting packages. Being a telecommunication engineer entails conceptualising, designing, testing, and supervising the production of communication and broadcast systems, such as integrated circuits, prototypes, signals, semiconductor devices, analogue circuits, and more.