-
Duration
2 Years
-
Eligibility
B. Tech. with Min. 55%
-
Selection Procedure
Entrance Test + PI
Program Outcomes
Applying Advanced Concepts
Using advanced microcontrollers and FPGA-based systems to apply embedded system design concepts with real-time constraints.
Using Cutting-Edge Technologies
Solving real-world problems using the latest hardware and software technologies.
Conducting Research
Independently researching embedded system strategies to address practical problems and presenting a technical report.
Designing and Developing Platforms
Designing and developing optimized platforms in embedded electronic systems to solve real-life problems.
Applying Concepts from Various Disciplines
Applying concepts from various disciplines in embedded systems to develop innovative products.
Offering Customized Solutions
Offering customized solutions in the design and development of various embedded system applications.
Career Paths

Embedded System Design Engineer

Testing and Validation Engineer

Project Manager

Research and Development Engineer

Lead Engineer

Technical Manager

Product Manager

Higher Education and Research

Entrepreneur
Curriculum
| Course Category | Paper Title | Credits |
|---|---|---|
| Core | Introduction to Embedded Systems Design | 3 |
| Core | Microcontroller for Embedded System Design | 3 |
| Core | Digital System Design | 3 |
| PE | Digital Signal Processor and Architecture | 3 |
| Information Theory and Coding | ||
| Core | Advance DSP Lab | 2 |
| Core | Embedded Microcontrollers Lab | 2 |
| Extra-Curricular Activity | **Mandatory Qualifying Non-credited but graded Course | |
| Total | 16 |
**Mandatory Qualifying Non-credited but graded Course
| Course Category | Paper Title | Credits |
|---|---|---|
| Core | CPLDs, FPGA Architecture and Application | 3 |
| Core | Embedded Real Time Operating System | 3 |
| Core | Embedded System for Wireless and Mobile Communication | 3 |
| PE | HDLs for Embedded Systems | 3 |
| Network Security and Cryptography | ||
| Core | Technical Report Writing & Communication Skills | 2 |
| Core | Modeling and Simulation Lab | 2 |
| Co-Curricular Activity | **Mandatory Qualifying Non-credited but graded Course | |
| Total | 16 |
**Mandatory Qualifying Non-credited but graded Course
| Course Category | Paper Title | Credits |
|---|---|---|
| Core | Design of CAD Tools for Embedded System Design | 3 |
| Core | Memory Design and Testing | 3 |
| Core | Pre Dissertation | 10 |
| Core | Seminar | 2 |
| Total | 18 |
| Course Category | Paper Title | Credits |
|---|---|---|
| Core | Dissertation | 18 |
| Total | 18 |
Tuition Fee
₹
Note
*Lab & Library fee will be charged separately
#Program Proposed from Session 2026-27
Apply for admissions at Jaipur National University
APPLY ONLINEEngage, Connect and Experience
the vibrant Life at JNU
Acres Green
Campus
State-of-the-Art
Labs
Smart
Classrooms
Signature Annual
Events
Student
Clubs
Enriching the
Intellect
Inspire Your
Essence
-
read moreM.Tech. in Chemical Engineering with specialization in Biotechnology
-
read moreM.Tech. in Chemical Engineering
-
read moreM.Tech CSE (AIML)
-
read moreM.Tech CSE (Cyber Security)
-
read moreM.Tech CSE (Data Science)
-
read moreM.Tech CSE (Internet of Things)
-
read moreM.Tech. in Electronics & Instrumentation Specialization in Biomedical Engineering
-
read moreM. Tech. in Electronics & Instrumentation Specialization in Instrumentation Engineering
Frequently Asked Questions
An embedded system is a computer hardware system that uses a microprocessor and software to perform a specific function. Embedded systems can be used as independent systems or as part of a larger system.
Students should have a strong foundation in computer science, electronics, and programming languages. They should also have skills in embedded software development, real-time operating systems, digital signal processing, hardware design, debugging, and problem-solving.
Some areas of specialization include real-time embedded systems design, embedded software development for IoT applications, wireless sensor networks, autonomous systems and robotics, embedded vision and image processing, and embedded systems security.
The success rate in this field can be much greater. This industry will grow quickly, and anyone who is capable and possesses the requisite qualities will rise to the top regardless of the conditions. Pay levels, on the other hand, are expected to rise to a minimum of 8 lakhs to 10 lakhs.
M.Tech students specializing in Embedded Systems can explore various projects and research areas, including but not limited to:
- Automotive Electronics & Electric Vehicles
- Smart Grid & Smart City Technologies
- Artificial Intelligence & RTOS
- Sensor Networks & Automation
- IoT & Embedded System Design
- Robotics & Controls
- Power Aware & Fault Tolerant Real Time Systems
M.Tech graduates specializing in Embedded Systems have many career opportunities in the automotive, aerospace, telecommunications, healthcare, and consumer electronics industries. They can work as embedded software engineers, firmware engineers, system architects, hardware designers, IoT (Internet of Things) specialists, and more. The demand for skilled professionals in this field is consistently high due to the increasing complexity and integration of embedded technologies in various devices and systems.


