Home / Bajaj Engineering Skills Training (BEST) Centre

Firmware Development

Overview 

This programme trains students to design and develop intelligent electronic systems with a focus on embedded systems and firmware. Through hands-on, application-driven learning, students work with real-world tools and platforms across industries like automotive and consumer electronics. A strong emphasis on labs and projects builds practical skills, problem-solving ability, and technical confidence. Graduates are prepared to deliver industry-ready embedded and hardware-software solutions.

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Embedded Systems Focus

Builds strong fundamentals in designing and developing hardware-integrated intelligent systems.

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Firmware Lifecycle Exposure

Covers the complete journey from firmware design and coding to testing, debugging, and deployment.

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Industry Applications

Connects learning to real-world use cases across automotive, consumer electronics, and industrial systems.

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Practical Learning (>60%)

Emphasises hands-on labs and projects to develop real-world skills and problem-solving ability.

Eligibility

Undergraduate students of

  • Electronics and Communication Engineering (ECE)
  • Electronics and Computation Engineering (ECM)
  • VLSI design
  • Electronics and Instrumentation Engineering (EIE)
  • Electrical and Electronics Engineering (EEE)
  • Electronics and Telematics Engineering (ETM)
  • Fees: To be announced shortly
  • Measurements & Safety
  • Embedded Boards
  • Microcontrollers
  • RTOS, Protocols
  • Programmeming
  • Software architecture
  • Testing & debugging
  • HIL systems
  • Energy systems
  • HVAC systems
  • Industry-based
  • 90 hours
1Electrical LabModule 1
2Hydraulics & Pneumatics LabModule 1
3Electronics Sensor LabModule 1
4CNC Simulation LabModule 2
5Instrumentation LabModule 2
6Motion & Process Control LabModule 2
7PLC & HMI LabModule 2
8Industrial IOT LabModule 3
9MES & Didactic LabModule 3
10Virtual Reality LabModule 3
11Computer Integrated Manufacturing LabModule 3
12Computer Lab 1
13Computer Lab 2

Programme Details

  • Duration: 5 months
  • 70% practical+30% theory  
  • Intake: 60 students
  • Labs: 4 + 1 computer lab

Internship & Training

  • 5 months
  • Industry projects
  • Embedded systems
  • Firmware programming
  • Real-time systems
  • Certification from Bajaj Auto
  • Hardware-software integration
  • Project-based learning
  • Firmware Engineer
  • Embedded Engineer
  • IoT Developer

Labs

V4-FD Testing Lab-3

V4-Firmware development lab
V4-FD-Testing lab 1

FAQs

You will learn to develop the “brain” of electronic devices by mastering embedded systems and hardware-software integration. The course covers everything from microcontrollers to real-time operating systems (RTOS).

Yes, the training focuses on high-demand applications like Electric Vehicles (EV), Energy systems, and HVAC systems. You will gain experience in software architecture and HIL (Hardware-in-the-Loop) testing.

The centre provides placement support, internships, and project-based learning to ensure career readiness. You will be prepared for roles like Firmware Engineer, Embedded Engineer, or IoT Developer.

The program concludes with a 90-hour industry-based project that emphasizes hardware-software integration. By working under industry mentorship, you develop a portfolio-ready project that demonstrates your ability to program real-time systems for industrial use.

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Home / Bajaj Engineering Skills Training (BEST) Centre

Advanced Manufacturing (Industry 4.0 & IIoT)

Overview 

This programme equips students for smart manufacturing by integrating automation, IIoT, AI, and digital production systems. With a strong focus on Industry 4.0, it blends connected technologies, data analytics, and real-world applications. Over 70% hands-on learning ensures practical expertise through lab-driven training. Graduates emerge industry-ready with the skills to thrive in advanced, evolving manufacturing environments.

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Industry 4.0 integration

Seamlessly combines automation, data exchange, AI, and smart systems to enable digitally connected manufacturing environments.

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IIoT applications

Leverages connected sensors and real-time data to optimise production, predictive maintenance, and operational efficiency.

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Smart Factory Exposure

Provides insights into how intelligent factories operate using integrated digital and physical systems.

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Practical Learning Focus (>70%)

Delivers hands-on, lab-driven training where most learning is through real-world projects and industrial tools.

Eligibility

  • Undergraduate engineering Students of
  • Mechanical
  • Mechatronics
  • Instrumentation
  • Automotive and aerospace engineering
  • Fees:  To be announced shortly
  • First batch: July 2026
  • Electrical Engineering
  • Engineering Drawing & Graphics
  • Hydraulics & Pneumatics
  • Sensors & Measurements
  • TPM
  • PLC, CNC, HMI
  • Servo Motors & Drives
  • Industrial Sensors
  • Process Control Systems
  • Industrial Instrumentation
  • Industry 4.0 & IIoT
  • AI, ML, Computer Vision
  • AR/VR
  • MES, CIM
1Electrical LabModule 1
2Hydraulics & Pneumatics LabModule 1
3Electronics Sensor LabModule 1
4CNC Simulation LabModule 2
5Instrumentation LabModule 2
6Motion & Process Control LabModule 2
7PLC & HMI LabModule 2
8Industrial IOT LabModule 3
9MES & Didactic LabModule 3
10Virtual Reality LabModule 3
11Computer Integrated Manufacturing LabModule 3
12Computer Lab 1
13Computer Lab 2
  • Industry problems
  • 90 hours

Programme Details

  • Duration: 5 months
  • 70% practical + 30% theory
  • Intake: 60 students
  • Labs: 11 + 2 computer labs

Internship & Training

  • 5 months
  • Industry mentorship
  • Smart manufacturing
  • IIoT platforms
  • Automation systems
  • Data-driven production
  • Joint Certification with University and Bajaj Auto Ltd. Hands-on training
  • Recruitment support
  • Manufacturing Engineer
  • Automation Engineer
  • IIoT Engineer
V2-CNC-Simulation-Lab
V2-Computer Kab

V2-IoT Lab
V2-Electronics Sensor Lab

V2-Robotics and Automation Lab
V2-Industrial Implementation

FAQs

You will master smart factory technologies including Industrial IoT (IIoT), AI, and digital production systems. This prepares you to manage and optimize automated manufacturing environments.

Students from Mechanical, Mechatronics, Instrumentation, Automotive, and Aerospace engineering are eligible. The curriculum is designed to bridge their academic knowledge with advanced industrial automation.

Over 70% of the course is practical, featuring 11 specialized labs and 2 computer labs. You will work with world-class equipment and global industry-standard software.

Yes, it includes a 5-month internship and a 90-hour industry-relevant project. You will solve real-world industry problems under the mentorship of experts.

Graduates are qualified for roles such as Manufacturing Engineer, Automation Engineer, and IIoT Engineer.

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