Diploma in Electronics Engineering
*Semester 1:*
1. *Engineering Mathematics-I*
- Algebra, Trigonometry, Calculus, and Statistics.
2. *Engineering Physics*
- Basics of mechanics, optics, and thermodynamics.
3. *Engineering Chemistry*
- Basics of chemical reactions, materials, and corrosion.
4. *Basic Electrical Engineering*
- Fundamentals of circuits, motors, and transformers.
5. *Engineering Drawing*
- Technical drawing and CAD (Computer-Aided Design).
6. *Workshop Technology*
- Hands-on training in electronics assembly and soldering.
*Semester 2:*
1. *Engineering Mathematics-II*
- Advanced calculus, differential equations, and probability.
2. *Electronic Components and Devices*
- Resistors, capacitors, diodes, transistors, and other components.
3. *Digital Electronics*
- Basics of digital circuits, logic gates, and Boolean algebra.
4. *Communication Skills*
- English language and technical communication.
5. *Computer Applications*
- Basics of programming and software tools.
6. *Environmental Studies*
- Environmental science and sustainability.
*Semester 3:*
1. *Analog Electronics*
- Amplifiers, oscillators, and filters.
2. *Network Analysis and Synthesis*
- Circuit analysis and network theorems.
3. *Electronic Instruments and Measurements*
- Use of multi meters, oscilloscopes, and other instruments.
4. *Programming in C*
- Basics of C programming and its applications in electronics.
5. *Workshop Practice*
- Hands-on training in electronics assembly and testing.
6. *Mathematics-III*
- Advanced topics in mathematics relevant to electronics.
*Semester 4:*
1. *Microcontrollers and Applications*
- Basics of microcontrollers and their programming.
2. *Communication Systems*
- Analog and digital communication techniques.
3. *Power Electronics*
- Converters, inverters, and power control devices.
4. *Control Systems*
- Basics of control systems and feedback mechanisms.
5. *Data Structures and Algorithms*
- Basics of data structures and algorithms in programming.
6. *Industrial Electronics*
- Applications of electronics in industrial automation.
*Semester 5:*
1. *Embedded Systems*
- Design and programming of embedded systems.
2. *VLSI Design*
- Basics of Very Large-Scale Integration (VLSI) technology.
3. *Digital Signal Processing*
- Basics of signal processing and its applications.
4. *Advanced Communication Systems*
- Advanced topics in wireless and optical communication.
5. *Project Work*
- Capstone project related to electronics engineering.
6. *Industrial Training*
- Internship or industrial visit.
*Semester 6:*
1. *Internet of Things (IoT)*
- Basics of IoT and its applications in electronics.
2. *Robotics and Automation*
- Basics of robotics and automation systems.
3. *Entrepreneurship Development*
- Basics of starting and managing a business.
4. *Comprehensive Viva*
- Oral examination covering all subjects.
5. *Advanced Microcontrollers*
- Advanced topics in microcontroller applications.
6. *Elective Subjects*
- Optional subjects based on student interest (e.g., renewable energy systems, biomedical instrumentation).
*Additional Topics (Optional or Elective):*
- *Renewable Energy Systems*
- *Biomedical Instrumentation*
- *Artificial Intelligence and Machine Learning*
- *Cybersecurity in Electronics*
- *Advanced Robotics*
*Practical Components:*
- *Lab Work:*
- Analog and digital electronics labs, microcontroller labs, and communication labs.
- *Workshops:*
- Hands-on training in electronics assembly, testing, and troubleshooting.
- *Industrial Visits:*
- Visits to electronics manufacturing plants and research facilities.
- *Projects:*
- Design and development of electronic systems and devices.
*Key Skills Developed:*
- *Technical Skills:*
- Design, analysis, and troubleshooting of electronic systems.
- *Software Skills:*
- Programming, simulation tools (e.g., MATLAB, Proteus), and CAD tools.
- *Soft Skills:*
- Communication, teamwork, and project management.