Rajdhani College-image

B-SC-HONS-ELECTRONICS in Electronics at Rajdhani College

Rajdhani College stands as a premier co-educational institution in New Delhi, affiliated with the University of Delhi. Established in 1964, it offers diverse UG and PG programs across Arts, Commerce, and Science. Recognized with a B++ NAAC grade and NIRF ranking, it provides a vibrant academic environment and focuses on holistic student development.

READ MORE
location

Delhi, Delhi

Compare colleges

About the Specialization

What is Electronics at Rajdhani College Delhi?

This B.Sc (Hons) Electronics program at Rajdhani College focuses on foundational and advanced concepts in electronics, preparing students for the dynamic Indian technology sector. It covers areas from semiconductor devices and digital logic to communication systems and embedded technologies, addressing the growing demand for skilled electronics engineers in manufacturing, R&D, and IT industries across India. The program emphasizes both theoretical understanding and practical application of electronic principles.

Who Should Apply?

This program is ideal for high school graduates with a strong aptitude for Physics and Mathematics, seeking entry into the core electronics industry. It also suits individuals passionate about hardware design, embedded systems, and cutting-edge technologies like IoT and AI/ML hardware, aiming for roles in product development, testing, and system integration within Indian companies. Prerequisites include a strong analytical mind and an interest in problem-solving through electronic solutions.

Why Choose This Course?

Graduates of this program can expect diverse career paths in India, including roles as Electronics Engineers, Embedded System Developers, Test Engineers, or R&D Specialists. Entry-level salaries typically range from INR 3.5 to 6 LPA, with significant growth potential up to INR 15+ LPA for experienced professionals in niche areas. The curriculum often aligns with industry certifications in areas like IoT or embedded programming, enhancing employability in the domestic market and providing avenues for higher studies like M.Tech.

OTHER SPECIALIZATIONS

Specialization

Student Success Practices

Foundation Stage

Build Strong Core Concepts- (Semester 1-2)

Focus rigorously on understanding fundamental concepts in circuit analysis, semiconductor physics, and digital logic. Actively participate in lab sessions to gain hands-on experience with components and basic circuit building. Form study groups to discuss complex topics and solve problems collaboratively to deepen conceptual clarity.

Tools & Resources

NPTEL courses, Online circuit simulators (e.g., TinkerCAD, LTSpice), YouTube channels (e.g., The Organic Chemistry Tutor for physics), Standard textbooks by Boylestad, Malvino

Career Connection

A solid foundation ensures comprehensive understanding of advanced subjects and forms the basis for successfully clearing technical interviews in core electronics and embedded systems roles.

Develop Programming & Problem-Solving Skills- (Semester 1-2)

Start learning C/C++ programming, which is essential for embedded systems and microcontroller interfacing. Participate in coding challenges on platforms like HackerRank or LeetCode to hone problem-solving abilities. Apply programming to simple electronics projects using development boards like Arduino.

Tools & Resources

GeeksforGeeks, CodeChef, freeCodeCamp, Arduino IDE and basic kits

Career Connection

Proficiency in programming is crucial for embedded systems development, automation, and data analysis roles, making graduates versatile in the Indian tech job market.

Engage with Departmental Activities- (Semester 1-2)

Actively join the college''''s Electronics Society or relevant departmental clubs. Participate in workshops, tech quizzes, and mini-project competitions. This fosters peer learning, networking, and exposure to practical aspects of electronics beyond the curriculum, building confidence and soft skills.

Tools & Resources

College society events, Inter-college tech fests, Departmental mentors and faculty advisors

Career Connection

Builds teamwork, communication, and practical skills highly valued by Indian recruiters, and helps in identifying areas of interest for future specialization and project work.

Intermediate Stage

Hands-on Project Development & Specialization- (Semester 3-5)

Identify areas of interest (e.g., IoT, DSP, VLSI) and undertake small to medium-scale projects. Learn to use development boards like Raspberry Pi, ESP32, or advanced microcontrollers for embedded projects. Start building a portfolio of practical work, showcasing diverse skill application.

Tools & Resources

Raspberry Pi, ESP32, STM32 kits, Proteus, Eagle/KiCad for PCB design, Online project tutorials (Instructables, Hackster.io), Local electronics hobby shops for components

Career Connection

Practical projects are critical for demonstrating technical skills in job interviews and securing entry-level roles as embedded engineers, hardware designers, or IoT developers in Indian companies.

Seek Industry Exposure & Internships- (Semester 3-5)

Actively search for internships during summer breaks at electronics companies, startups, or research labs. Even short-term industrial training or shadowing experiences provide invaluable insights into real-world applications and industry expectations, helping to solidify career goals.

Tools & Resources

Internshala, LinkedIn, College placement cell, Industry contacts and networking events, Cold emailing companies with a strong resume

Career Connection

Internships bridge the gap between academia and industry, provide crucial networking opportunities, and often lead to pre-placement offers or full-time roles in various Indian technology firms.

Master Relevant Software & Simulation Tools- (Semester 3-5)

Gain proficiency in industry-standard software for circuit simulation (e.g., PSPICE, Multisim), PCB design (e.g., Altium Designer, Eagle, KiCad), and data analysis (e.g., MATLAB, Python with NumPy/SciPy). Understanding these tools is a key differentiator in the competitive job market.

Tools & Resources

Official software trials and student licenses, University lab resources, Online tutorials (Coursera, Udemy, edX), Project-based learning with these tools

Career Connection

Expertise in these tools is a direct requirement for roles in R&D, design, and testing within electronics manufacturing, product development, and IT hardware divisions in India.

Advanced Stage

Undertake Capstone Project/Dissertation- (Semester 6-8)

Dedicate significant effort to a substantial final-year project or dissertation, applying all learned knowledge to solve a real-world problem. Aim for innovation, practical utility, and a well-documented outcome. Consider publishing a paper in a college symposium or a relevant journal.

Tools & Resources

Advanced microcontrollers, FPGAs, specialized sensors, Access to research papers (IEEE Xplore, ACM Digital Library), Faculty mentorship and university lab facilities, Collaboration with industry for project relevance

Career Connection

A strong capstone project showcases comprehensive problem-solving, design, and implementation skills, significantly boosting employability for R&D roles and providing a solid base for postgraduate studies.

Intensive Placement Preparation- (Semester 6-8)

Focus on mastering technical concepts, aptitude tests, and interview skills required for placements. Practice mock interviews, participate in workshops on resume building and group discussions. Network actively with alumni who are already placed in relevant industries to gain insights and guidance.

Tools & Resources

College placement cell services, Career counseling and guidance sessions, Online aptitude test platforms (e.g., IndiaBix, PrepInsta), Interview experience blogs (e.g., Glassdoor India, GeeksforGeeks)

Career Connection

Direct and focused preparation for securing placements in top Indian and multinational companies visiting the campus, aiming for core electronics, embedded systems, or IT product development roles.

Explore Higher Studies & Specialized Certifications- (Semester 6-8)

Research opportunities for M.Tech or Ph.D. in specialized fields (e.g., VLSI Design, AI in Electronics, RF & Microwave Engineering) if higher education is a goal. Pursue industry-recognized certifications (e.g., ARM Embedded Systems, IoT certifications from Cisco/Microsoft) to enhance specific skill sets and market value.

Tools & Resources

GATE exam preparation materials, University websites for postgraduate programs, Certification bodies (e.g., IEEE, vendor-specific training programs)

Career Connection

Positions graduates for advanced roles in R&D, academia, or highly specialized technical positions, offering long-term career growth and deeper expertise in niche areas crucial for India''''s evolving tech landscape.

Program Structure and Curriculum

Eligibility:

  • Passed 10+2 or equivalent examination with Physics, Mathematics, and one of Chemistry/Computer Science/Informatics Practices as core subjects. Admission is based on CUET UG score as per University of Delhi norms.

Duration: 4 years (8 semesters)

Credits: 156 Credits

Assessment: Internal: 25% (Internal Assessment, including attendance), External: 75% (End Semester Examination) for theory courses

Semester-wise Curriculum Table

Semester 1

Subject CodeSubject NameSubject TypeCreditsKey Topics
ELCA01Network Analysis and Analog ElectronicsCore Course4Circuit Elements and Networks, AC and DC Circuit Analysis, Network Theorems, Semiconductor Diode Characteristics, Bipolar Junction Transistors (BJTs), Transistor Biasing and Amplifiers
ELCB01Semiconductor DevicesCore Course4Semiconductor Fundamentals, PN Junction Diode Theory, BJT Construction and Operation, Field Effect Transistors (JFET & MOSFET), Photoelectric Devices, LEDs, Solar Cells, Phototransistors
Generic Elective - IGeneric Elective4
Ability Enhancement Compulsory Course - IAECC2
Value Addition Course - IVAC2

Semester 2

Subject CodeSubject NameSubject TypeCreditsKey Topics
ELCC01Digital ElectronicsCore Course4Number Systems and Boolean Algebra, Logic Gates and Logic Families, Combinational Logic Circuits, Sequential Logic Circuits (Flip-Flops), Counters and Registers, Memory Devices (RAM, ROM)
ELCD01Microprocessor and MicrocontrollerCore Course48085 Microprocessor Architecture, 8085 Instruction Set and Programming, Memory and I/O Interfacing, 8051 Microcontroller Architecture, 8051 Instruction Set and Programming, Timers, Interrupts, and Serial Communication
Generic Elective - IIGeneric Elective4
Ability Enhancement Compulsory Course - IIAECC2
Value Addition Course - IIVAC2

Semester 3

Subject CodeSubject NameSubject TypeCreditsKey Topics
ELCE01Electromagnetic TheoryCore Course4Vector Calculus and Coordinate Systems, Electrostatics (Coulomb''''s Law, Gauss''''s Law), Magnetostatics (Ampere''''s Law, Biot-Savart Law), Maxwell''''s Equations, Electromagnetic Wave Propagation, Poynting Vector and Power Flow
ELCF01Digital Signal ProcessingCore Course4Signals and Systems Fundamentals, Z-Transform and Inverse Z-Transform, Discrete Fourier Transform (DFT), Fast Fourier Transform (FFT), Digital Filter Design (FIR and IIR), Applications of DSP
ELCG01Analog and Digital CommunicationCore Course4Amplitude Modulation (AM, DSB-SC, SSB), Angle Modulation (FM, PM), Noise in Communication Systems, Pulse Modulation (PAM, PWM, PPM), Digital Modulation (ASK, FSK, PSK), Data Communication Concepts
Generic Elective - IIIGeneric Elective4
Skill Enhancement Course - ISEC2

Semester 4

Subject CodeSubject NameSubject TypeCreditsKey Topics
ELCH01Power ElectronicsCore Course4Power Semiconductor Devices (SCR, Diac, Triac), Rectifiers (Controlled and Uncontrolled), DC-DC Converters (Choppers), DC-AC Converters (Inverters), AC Voltage Controllers, Applications of Power Electronics (Motor Control)
ELCI01Instrumentation and MeasurementCore Course4Measurement Standards and Errors, Analog and Digital Meters, Bridges (Wheatstone, Maxwell, Kelvin), Transducers and Sensors, Oscilloscopes and Signal Generators, Data Acquisition Systems
ELCJ01Embedded SystemsCore Course4Introduction to Embedded Systems, Embedded Processors (ARM Architecture), Memory and I/O Devices, Real-Time Operating Systems (RTOS), Interfacing Sensors and Actuators, Communication Protocols (UART, SPI, I2C)
Generic Elective - IVGeneric Elective4
Skill Enhancement Course - IISEC2

Semester 5

Subject CodeSubject NameSubject TypeCreditsKey Topics
ELCK01Applied PhotonicsCore Course4Fundamentals of Light and Optics, Light Sources (LEDs, Lasers), Optical Fibers and Waveguides, Photodetectors and Optical Sensors, Optical Communication Systems, Optoelectronic Devices and Applications
ELCL01Transmission Lines and AntennasCore Course4Transmission Line Theory, Characteristic Impedance and Reflection Coefficient, Smith Chart and Impedance Matching, Waveguides (Rectangular and Circular), Antenna Fundamentals and Parameters, Antenna Types (Dipole, Yagi-Uda, Microstrip)
Discipline Specific Elective - IDSE4
Discipline Specific Elective - IIDSE4
Value Addition Course - IIIVAC2

Semester 6

Subject CodeSubject NameSubject TypeCreditsKey Topics
ELCM01Medical ElectronicsCore Course4Biomedical Transducers and Electrodes, Bio-potential Amplifiers, Electrocardiography (ECG), Electroencephalography (EEG), Pacemakers and Defibrillators, Medical Imaging Systems (X-ray, CT, MRI)
ELCN01Control SystemsCore Course4Introduction to Control Systems (Open & Closed Loop), Transfer Functions and Block Diagrams, Time Domain Analysis of Control Systems, Stability Analysis (Routh-Hurwitz, Nyquist), Frequency Domain Analysis (Bode Plot, Root Locus), Controllers (PID, Lag, Lead Compensation)
Discipline Specific Elective - IIIDSE4
Discipline Specific Elective - IVDSE4
Value Addition Course - IVVAC2

Semester 7

Subject CodeSubject NameSubject TypeCreditsKey Topics
Discipline Specific Elective - VDSE4
Discipline Specific Elective - VIDSE4
Discipline Specific Elective - VIIDSE4
Discipline Specific Elective - VIIIDSE4
ELCSIP-1Summer Internship/Project/Dissertation - ISIP10Problem Identification and Literature Review, Research Methodology and Experimental Design, Data Collection and Analysis, Project Planning and Management, Technical Report Writing, Presentation Skills

Semester 8

Subject CodeSubject NameSubject TypeCreditsKey Topics
Discipline Specific Elective - IXDSE4
Discipline Specific Elective - XDSE4
Discipline Specific Elective - XIDSE4
Discipline Specific Elective - XIIDSE4
ELCSIP-2Summer Internship/Project/Dissertation - IISIP10Advanced Research and Development, Prototype Implementation and Testing, System Integration and Validation, Technical Documentation and Publication, Intellectual Property Rights and Patenting, Innovation and Entrepreneurship Aspects
whatsapp

Chat with us