Academic Programs

Comprehensive education in Robotics and Automation

Our Programs

Cutting-edge curriculum designed for industry and research excellence

B.Tech in Robotics and Automation

A comprehensive 4-year undergraduate program that combines theoretical knowledge with hands-on practical experience in robotics, automation, and intelligent systems.

Key Features

  • Industry-aligned curriculum
  • State-of-the-art laboratory facilities
  • Industry internships and projects
  • Expert faculty with research experience
  • Project-Based Learning (PBL) every semester
  • Hands-on training with industrial robots
  • AI and Machine Learning integration
  • Industry 4.0 automation technologies
  • Capstone projects with industry partners
  • International exposure through workshops and conferences

Core Subjects

  • Robotics Fundamentals
  • Industrial Automation
  • Artificial Intelligence & Machine Learning
  • Control Systems for Robotics
  • Microcontrollers and Embedded Systems
  • Computer Vision & Image Processing
  • Kinematics and Dynamics of Machines
  • Sensors and Instrumentation
  • PLC and SCADA
  • Autonomous Robots & Navigation Systems

Comprehensive Curriculum

10 Specialized Learning Domains Across 4 Years

🧮

Fundamental Sciences and Mathematics

Building analytical and scientific foundations

  • Engineering Mathematics – I
  • Engineering Mathematics – II
  • Engineering Mathematics – III (Transforms & Probability)
  • Engineering Physics
⚙️

Mechanical Systems, Design & Dynamics

Mechanical design, kinematics, and dynamics of robotic systems

  • Engineering Mechanics
  • Basic Robotics & Mechanisms
  • Kinematics of Machines and Simulation
  • Dynamics of Machines and Simulation
  • Materials and Mechanics of Solids
  • Design Optimization of Mechanical Components
  • 3D Modeling of Mechanical Components and Assembly
  • Manufacturing Processes & CNC
  • Additive Manufacturing
  • Hydraulics & Pneumatics Systems

Electrical, Electronics & Embedded Systems

Electronic devices, circuit design, and embedded hardware

  • Basics of Electrical & Electronics Engineering
  • Analog Electronics
  • Digital Electronics & Logic Design
  • Microcontrollers and Embedded Systems
  • Power Electronics and Industrial Drives
  • AI Processors
  • ARM Cortex
  • PCB Design and Fabrication
💻

Computer Science, Programming & Data Systems

Computational thinking and programming ability

  • Programming with C
  • Programming with Python
  • Data Structures and Algorithms
  • Data Visualization and Analysis
  • Machine Learning for Engineers
🧠

Control Systems, Sensors & Instrumentation

Core for robotics motion and perception

  • Sensors and Instrumentation for Robotics
  • Control Systems for Robotics
  • PLC and SCADA
  • IoT for Automation
  • Automation Technologies in Industry 4.0 Era
🤖

Robotics Core & Applications

Core robotics system integration, modeling, and real-world applications

  • Introduction to Robotics
  • Robotics System Integration
  • Industrial Robotics and Human-Robot Interaction
  • Autonomous Robots & Navigation Systems
  • Unmanned Aerial and Ground Vehicles
  • Micro and Soft Robotics
  • Robots for Healthcare
  • Agriculture Robots
  • Wearable Robotics and Prosthetics
🧩

Simulation, AI & Advanced Computing Tools

Virtual prototyping, simulation, and intelligent systems

  • Robotics Simulation Tools (MATLAB/Simulink)
  • Robotics Simulation Tools (MATLAB/ROS/Simulink)
  • Simulation and Testing Tools for Robotics and Automation
  • Artificial Intelligence for Robotics
  • Computer Vision & Image Processing
  • Virtual & Augmented Reality
🏭

Industrial Automation & Integration

Automation processes, control architectures, and industrial applications

  • PLC and SCADA
  • Automation Technologies in Industry 4.0 Era
  • IoT for Automation
  • Power Electronics and Industrial Drives
🧑‍💼

Management, Professional & Innovation Skills

Essential courses for professional development

  • Managerial Economics for Robotics
  • Project Management for Robotic Systems
  • Internship
🚀

Project-Based & Experiential Learning

Hands-on design, modeling, and innovation at every level

  • Project-Based Learning – I (Basic Robotics & Circuits)
  • Project-Based Learning – II (3D Modeling and Animation of a Robot)
  • Project-Based Learning – III (Kinematics & Simulation)
  • Project-Based Learning – IV (Control Systems & Vision)
  • Project-Based Learning – V (Automation & AI Integration)
  • Project-Based Learning – VI (Industrial and Soft Robotics)
  • Capstone Project Phase – 1
  • Capstone Project Phase – 2

Complete Learning Pathway

A comprehensive curriculum spanning 10 specialized domains with hands-on projects every semester

70+
Core Courses
10
Learning Domains
600+
PBL Projects
4
Years
100%
Practical Focus