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    Scholarships & exams

    support@collegese.com
    +91 88943 57155
    Pune, Maharashtra, India

    Duration

    4 Years

    Vocational Training

    Rungta International Skills University Durg
    Duration
    4 Years
    Vocational Training UG OFFLINE

    Duration

    4 Years

    Vocational Training

    Rungta International Skills University Durg
    Duration
    Apply

    Fees

    ₹4,50,000

    Placement

    92.0%

    Avg Package

    ₹6,00,000

    Highest Package

    ₹12,00,000

    OverviewAdmissionsCurriculumFeesPlacements
    4 Years
    Vocational Training
    UG
    OFFLINE

    Fees

    ₹4,50,000

    Placement

    92.0%

    Avg Package

    ₹6,00,000

    Highest Package

    ₹12,00,000

    Seats

    250

    Students

    250

    ApplyCollege

    Seats

    250

    Students

    250

    Curriculum

    Curriculum Overview

    The vocational training program at Rungta International Skills University Durg is designed to provide students with a comprehensive and industry-aligned curriculum that prepares them for successful careers in technical and skilled trades. The program is structured over 8 semesters, with a combination of core courses, departmental electives, science electives, and laboratory sessions. Each semester builds upon the previous one, ensuring a progressive and holistic learning experience.

    Semester-wise Course Structure

    SEMESTERCOURSE CODECOURSE TITLECREDIT STRUCTURE (L-T-P-C)PRE-REQUISITES
    1VT101Introduction to Vocational Training2-0-0-2None
    1VT102Basic Mathematics3-0-0-3None
    1VT103Basic Physics3-0-0-3None
    1VT104Basic Chemistry3-0-0-3None
    1VT105Computer Fundamentals2-0-0-2None
    1VT106Engineering Drawing2-0-0-2None
    1VT107Workshop Practice0-0-6-3None
    2VT201Applied Mathematics3-0-0-3VT102
    2VT202Electrical Engineering3-0-0-3VT103
    2VT203Electronics Engineering3-0-0-3VT103
    2VT204Applied Physics3-0-0-3VT103
    2VT205Programming Fundamentals2-0-0-2VT105
    2VT206Engineering Mechanics3-0-0-3VT102
    2VT207Workshop Practice II0-0-6-3VT107
    3VT301Control Systems3-0-0-3VT201, VT202
    3VT302Signals and Systems3-0-0-3VT201
    3VT303Microprocessors3-0-0-3VT203
    3VT304Instrumentation3-0-0-3VT202
    3VT305Automation & Robotics3-0-0-3VT202
    3VT306Thermodynamics3-0-0-3VT204
    3VT307Lab Sessions0-0-6-3VT207
    4VT401Power Electronics3-0-0-3VT301
    4VT402Industrial Drives3-0-0-3VT301
    4VT403Process Control3-0-0-3VT301
    4VT404Computer Architecture3-0-0-3VT205
    4VT405Machine Design3-0-0-3VT206
    4VT406Materials Science3-0-0-3VT204
    4VT407Lab Sessions0-0-6-3VT307
    5VT501Renewable Energy Systems3-0-0-3VT304
    5VT502Smart Manufacturing3-0-0-3VT401
    5VT503Industrial Maintenance3-0-0-3VT402
    5VT504Data Analytics3-0-0-3VT201
    5VT505Quality Control3-0-0-3VT406
    5VT506Project Management3-0-0-3VT401
    5VT507Lab Sessions0-0-6-3VT407
    6VT601Advanced Robotics3-0-0-3VT305
    6VT602Automation & Control3-0-0-3VT301
    6VT603AI in Industry3-0-0-3VT404
    6VT604Energy Storage Systems3-0-0-3VT501
    6VT605Green Building Materials3-0-0-3VT406
    6VT606Network Security3-0-0-3VT404
    6VT607Lab Sessions0-0-6-3VT507
    7VT701Capstone Project I0-0-0-6VT601
    7VT702Research Methodology2-0-0-2VT504
    7VT703Advanced Data Analytics3-0-0-3VT504
    7VT704Industry Internship0-0-0-6VT601
    7VT705Project Proposal0-0-0-3VT702
    7VT706Lab Sessions0-0-6-3VT607
    8VT801Capstone Project II0-0-0-9VT701
    8VT802Final Project Defense0-0-0-3VT801
    8VT803Entrepreneurship2-0-0-2VT705
    8VT804Professional Ethics2-0-0-2None
    8VT805Lab Sessions0-0-6-3VT706

    Advanced Departmental Elective Courses

    Advanced departmental elective courses are designed to provide students with specialized knowledge and skills in specific areas of their field. These courses are offered in the later semesters and are tailored to meet the evolving needs of the industry. The following are some of the advanced elective courses offered in the program:

    Renewable Energy Systems

    This course focuses on the design, installation, and maintenance of renewable energy systems such as solar, wind, and hydroelectric power. Students learn about energy conversion technologies, system design, and grid integration. The course includes both theoretical and practical components, with students working on real-world projects to gain hands-on experience.

    Smart Manufacturing

    This course covers the integration of digital technologies in manufacturing processes. Students learn about Industry 4.0 concepts, IoT, and smart factory systems. The course includes practical sessions on automation, robotics, and data analytics, providing students with the skills needed to work in modern manufacturing environments.

    Industrial Maintenance

    This course focuses on the maintenance and reliability of industrial equipment. Students learn about preventive maintenance, reliability engineering, and equipment troubleshooting. The course includes practical sessions on maintenance techniques, safety practices, and system diagnostics, preparing students for roles in industrial maintenance and reliability.

    Data Analytics

    This course provides students with the skills needed to analyze and interpret data using statistical and machine learning techniques. Students learn about data visualization, predictive modeling, and data-driven decision-making. The course includes practical sessions on using industry-standard tools and software, preparing students for roles in data analytics and business intelligence.

    Quality Control

    This course focuses on quality management systems and quality control methods. Students learn about quality standards, quality assurance, and quality improvement techniques. The course includes practical sessions on quality control tools, statistical process control, and quality management systems, preparing students for roles in quality management and assurance.

    Project Management

    This course provides students with the skills needed to manage projects effectively. Students learn about project planning, scheduling, risk management, and resource allocation. The course includes practical sessions on project management tools and techniques, preparing students for roles in project management and leadership.

    Advanced Robotics

    This course covers the design and implementation of advanced robotic systems. Students learn about robot kinematics, control systems, and sensor integration. The course includes practical sessions on programming robots, designing robotic systems, and integrating sensors and actuators, preparing students for roles in robotics and automation.

    Automation & Control

    This course focuses on the design and implementation of automated control systems. Students learn about control theory, system modeling, and control system design. The course includes practical sessions on control system simulation, system integration, and real-time control, preparing students for roles in automation and control engineering.

    AI in Industry

    This course explores the application of artificial intelligence in industrial settings. Students learn about machine learning, neural networks, and AI applications in manufacturing and automation. The course includes practical sessions on developing AI models, integrating AI systems, and applying AI to real-world problems, preparing students for roles in AI and automation.

    Energy Storage Systems

    This course covers the design and implementation of energy storage systems. Students learn about battery technologies, energy storage systems, and grid integration. The course includes practical sessions on system design, testing, and integration, preparing students for roles in energy storage and renewable energy.

    Green Building Materials

    This course focuses on sustainable building materials and practices. Students learn about green building technologies, sustainable construction methods, and environmental impact assessment. The course includes practical sessions on material testing, sustainable design, and construction practices, preparing students for roles in sustainable construction and green building.

    Network Security

    This course covers the principles and practices of network security. Students learn about cybersecurity threats, network protection, and security management. The course includes practical sessions on security tools, vulnerability assessment, and incident response, preparing students for roles in network security and information assurance.

    Project-Based Learning Philosophy

    The department's philosophy on project-based learning is rooted in the belief that students learn best when they are actively engaged in solving real-world problems. This approach emphasizes hands-on experience, collaboration, and innovation, preparing students to tackle complex challenges in their future careers. The project-based learning approach is integrated throughout the curriculum, with students working on projects from their second year onwards.

    The structure of project-based learning in the program includes both mini-projects and a final-year thesis/capstone project. Mini-projects are undertaken in the third and fourth years, allowing students to apply their theoretical knowledge to practical scenarios. These projects are typically completed in groups and are supervised by faculty members who provide guidance and mentorship throughout the process.

    The final-year thesis/capstone project is a comprehensive endeavor that requires students to integrate all the knowledge and skills they have acquired during their program. Students select their projects based on their interests and career aspirations, often in consultation with faculty mentors who provide expertise and guidance. The project is typically completed over the course of two semesters and involves extensive research, design, and implementation phases.

    Evaluation criteria for projects are designed to assess both the technical and professional aspects of student work. Students are evaluated on their ability to solve problems, work collaboratively, communicate effectively, and demonstrate innovation. The evaluation process includes peer reviews, faculty assessments, and presentations to industry experts, ensuring that students receive comprehensive feedback on their work.

    The department also provides opportunities for students to participate in innovation competitions and industry-sponsored projects. These initiatives not only enhance students' practical skills but also provide them with exposure to real-world challenges and industry expectations. The department's commitment to project-based learning ensures that students are well-prepared for their careers and are equipped with the skills needed to succeed in their chosen fields.