B.Tech Electronics and Computer Engineering 48 months Undergraduate Programme By BML Munjal University |TopUniversities

B.Tech Electronics and Computer Engineering

Programme Duration

48 monthsProgramme duration

Main Subject Area

Engineering - Electrical and ElectronicMain Subject Area

Programme overview

Main Subject

Engineering - Electrical and Electronic

Degree

BTech

Study Level

Undergraduate

Study Mode

On Campus

Envisioning an embedded world. Intelligence is now everywhere.

Embedded technologies have made everything intelligent. From farms to shoes to generators to manufacturing—there is hardly any facet of life—and industry untouched by embedded technology.

The BTech Electronics and Computer Engineering course at  BMU  helps students build an intelligent world by breaking the silos between Electronics and Computer Engineering education and practice.

Combining electronics, computing, AI/ML, and communication technology as their key specialization, ECOM graduates are the backbone of Industry 4.0 and empower the intelligent world we take for granted today.

The evolution and coming together of Electronics, Computing, AI/ML, and Communication technologies, pervasive computing is fast becoming a proliferating reality, with Mobiles, Sensors-IoT/Embedded Systems, Desk-Tops & Back-end systems and Cloud Servers, all operating in unison to give a seamless user experience of the world at your fingertips at both the individual and enterprise levels. This seamless integration of hardware and software is powering the world of electronic and computer-based devices. This is also at the core of Industry 4.0 based on Cyber-Physical Systems. Manufacturing too is moving towards unprecedented levels of Automation, Robotics and Networking with Remote Monitoring & Control (RMCS) via Sensors and IoT. The components and the mix of foundational knowledge and the skill set required to prepare the undergraduate students for this world has also undergone a change.

The BTech Electronics and Computer Engineering course equips the students with the knowledge and skills in these areas, transgressing the traditional silos between Electronics and Computer Engineering studies. Along with the diverse foundational knowledge, they get an in-depth understanding of at least one technology domain.

Programme overview

Main Subject

Engineering - Electrical and Electronic

Degree

BTech

Study Level

Undergraduate

Study Mode

On Campus

Envisioning an embedded world. Intelligence is now everywhere.

Embedded technologies have made everything intelligent. From farms to shoes to generators to manufacturing—there is hardly any facet of life—and industry untouched by embedded technology.

The BTech Electronics and Computer Engineering course at  BMU  helps students build an intelligent world by breaking the silos between Electronics and Computer Engineering education and practice.

Combining electronics, computing, AI/ML, and communication technology as their key specialization, ECOM graduates are the backbone of Industry 4.0 and empower the intelligent world we take for granted today.

The evolution and coming together of Electronics, Computing, AI/ML, and Communication technologies, pervasive computing is fast becoming a proliferating reality, with Mobiles, Sensors-IoT/Embedded Systems, Desk-Tops & Back-end systems and Cloud Servers, all operating in unison to give a seamless user experience of the world at your fingertips at both the individual and enterprise levels. This seamless integration of hardware and software is powering the world of electronic and computer-based devices. This is also at the core of Industry 4.0 based on Cyber-Physical Systems. Manufacturing too is moving towards unprecedented levels of Automation, Robotics and Networking with Remote Monitoring & Control (RMCS) via Sensors and IoT. The components and the mix of foundational knowledge and the skill set required to prepare the undergraduate students for this world has also undergone a change.

The BTech Electronics and Computer Engineering course equips the students with the knowledge and skills in these areas, transgressing the traditional silos between Electronics and Computer Engineering studies. Along with the diverse foundational knowledge, they get an in-depth understanding of at least one technology domain.

Admission Requirements

4 Years
Aug-2025

Tuition fees

Domestic
1,400,000 INR
Domestic (Out of State)
1,400,000 INR

Scholarships

Selecting the right scholarship can be a daunting process. With countless options available, students often find themselves overwhelmed and confused. The decision can be especially stressful for those facing financial constraints or pursuing specific academic or career goals.

To help students navigate this challenging process, we recommend the following articles:

Frequently Asked Questions

B.Tech. Electronics and Computer Engineering deals with the software and hardware of modern technology. It includes the study of electronics, computing, AL/ML, and communication technology.
The scope of B.Tech. Electronics and Computer Engineering is wide, and graduates can take diverse job roles, including Software Engineer, AI/Machine Learning Engineer, Cybersecurity Engineer, Electronics Engineer, Embedded Systems Engineer and more.
The benefit of pursuing a B.Tech. EComE is high earning potential and never-ending job opportunities with the availability of diverse career options in various fields, including electronics and computer domains, robotics and automation, networking and more.
The future of Electronics and Computer Engineering is bright, with graduates often securing top salary packages that go as high as INR 32.9 LPA. Even a mediocre student obtains an average package of 8.45 LPA. Graduates often secure top job roles in various fields, including software development, hardware design, networking, cybersecurity, and embedded systems.
Internships normally follow as students develop academic depth throughout their programme. First-year students are quickly and early on in their university experience working on hands-on projects and industry-simulated tasks (Practice School I, dedicated labs, and project-based learning). All of these practical experiences allow first-year students to apply their learning practically. These experiences can be seen as a precursor to formal internship experiences in subsequent years.
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