LBRCE Syllabus 2026: Lakireddy Bali Reddy College of Engineering (LBRCE), Mylavaram, Andhra Pradesh, is an autonomous institution permanently affiliated to Jawaharlal Nehru Technological University Kakinada (JNTUK). It is AICTE-approved and holds NBA Tier-I accreditation for several programs (including CSE, IT, ECE, and EEE).
For students admitted in the academic year 2026-27 (and earlier batches from 2023-24 onward), the curriculum follows the R23 Regulations (effective from 2023-24). The B.Tech program is a 4-year (8-semester) full-time course totaling approximately 160 credits. It emphasizes Outcome-Based Education (OBE), industry relevance, skill development, internships, open electives, professional electives, minor/honors options, and mandatory community service/industry internships.
LBRCE Syllabus 2026 (Branch-wise Overview)
Common First Year (All Branches)
| Semester | Subjects |
|---|---|
| Sem 1 | Engineering Mathematics-I, Engineering Physics/Chemistry, Programming for Problem Solving (Python/C), Basic Electrical/Mechanical Engineering, Engineering Graphics, English Communication |
| Sem 2 | Engineering Mathematics-II, Data Structures Basics, Environmental Science, Digital Logic Basics, Workshop Practice, Constitution of India |
CSE (Computer Science Engineering)
| Year | Core Subjects |
|---|---|
| 2nd Year | Data Structures, Object-Oriented Programming (Java), Discrete Mathematics, Digital Logic Design, Computer Organization |
| 3rd Year | Operating Systems, Database Management Systems, Computer Networks, Software Engineering, Theory of Computation |
| 4th Year | Artificial Intelligence, Machine Learning, Cloud Computing, Big Data Analytics, Project Work |
IT (Information Technology)
| Year | Core Subjects |
|---|---|
| 2nd Year | Data Structures, Java Programming, Discrete Mathematics, Computer Organization |
| 3rd Year | DBMS, Operating Systems, Computer Networks, Web Technologies, Software Engineering |
| 4th Year | Cloud Computing, Cyber Security, Data Analytics, Mobile Computing, Project |
ECE (Electronics & Communication Engineering)
| Year | Core Subjects |
|---|---|
| 2nd Year | Electronic Devices & Circuits, Signals & Systems, Network Theory, Digital Electronics |
| 3rd Year | Analog Communication, Digital Communication, Microprocessors, Control Systems, VLSI Design |
| 4th Year | Embedded Systems, IoT, Wireless Communication, DSP, Project Work |
EEE (Electrical & Electronics Engineering)
| Year | Core Subjects |
|---|---|
| 2nd Year | Electrical Circuits, Electromagnetic Fields, Electronic Devices, Measurements & Instrumentation |
| 3rd Year | Power Systems, Control Systems, Power Electronics, Electrical Machines |
| 4th Year | Renewable Energy Systems, Smart Grid, Electric Drives, High Voltage Engineering, Project |
AI & DS (Artificial Intelligence & Data Science)
| Year | Core Subjects |
|---|---|
| 2nd Year | Data Structures, Probability & Statistics, Python Programming, Linear Algebra |
| 3rd Year | Machine Learning, Data Mining, Deep Learning, Big Data Analytics |
| 4th Year | AI Applications, Natural Language Processing, Computer Vision, Data Science Project |
Important Highlights (LBRCE Curriculum)
| Feature | Details |
|---|---|
| Regulation | R23 (Latest for 2026 batch) |
| Structure | Choice Based Credit System (CBCS) |
| Electives | Open + Professional Electives |
| Add-ons | Internships, Mini Projects, Major Project |
| Emerging Areas | AI, ML, IoT, Cloud, Data Science |
| Programs Available | CSE, IT, ECE, EEE, AI&DS, etc. |
Key Features of R23 Curriculum (Common Across Branches):
- Credit Structure: Theory, labs, skill-enhancement courses, projects, and audits. Continuous Internal Evaluation (CIE) 30 marks + Semester End Examination (SEE) 70 marks for most theory courses.
- First Year: Common foundation courses with minor variations by branch groups (Group A: CSE/IT/AI&DS-related; Group B: ECE/EEE).
- Mandatory Elements: Induction program, Universal Human Values (UHV), Environmental Science, Design Thinking & Innovation, Soft Skills, Research Methodology & IPR, Community Service Project Internship (typically 8 weeks), and Industry Internship/Mini-Project.
- Flexibility: Professional Electives (PE), Open Electives (OE), Minor programs (e.g., from CSE or AI pools), and Honors courses (often via SWAYAM/NPTEL, minimum 12-week, 3-credit courses).
- Focus Areas: Programming fundamentals, mathematics, core domain knowledge, emerging technologies (AI/ML, data science, IoT, etc.), labs, and project-based learning.
- Official detailed PDFs (course structures, syllabi, textbooks, and course outcomes) are available on the LBRCE website under Academics > Syllabus > R23.
Note: Syllabi can have minor updates; always refer to the latest official documents on lbrce.ac.in for exact unit-wise content, textbooks, and evaluation schemes. Below is a structured summary based on official R23 course structures.
LBRCE Syllabus 2026: Computer Science and Engineering (CSE)
CSE focuses on programming, algorithms, systems, software engineering, networks, databases, and emerging areas like AI/ML foundations.
I & II Semesters (Foundational – similar to Group A): Communicative English, Chemistry/Physics, Linear Algebra & Calculus / Differential Equations & Vector Calculus, Basic Civil & Mechanical Engineering / Basic Electrical & Electronics, Introduction to Programming (C), Data Structures, IT Workshop, Engineering Graphics/Workshop, labs (Programming, Physics/Chemistry, Data Structures), and audit courses (Health/Yoga, NSS/NCC).
III Semester: Discrete Mathematics & Graph Theory, UHV-II, Digital Logic & Computer Organization, Advanced Data Structures & Algorithm Analysis, Object Oriented Programming through Java + Labs, Full Stack Development-I / Python-related skill courses.
IV Semester: Optimization Techniques / Probability & Statistics, Operating Systems, Database Management Systems, Software Engineering + Labs, Python Programming, Design Thinking & Innovation, Environmental Science. Community Service Internship in summer.
V–VIII Semesters: Computer Networks, Automata Theory & Compiler Design, Advanced Java or equivalent, Web Technologies, Machine Learning/AI electives, Information Security, Cloud Computing, Big Data, Project work, Professional Electives (e.g., Cyber Security, Data Mining), Open Electives, Minor/Honors options, Soft Skills, Research Methodology, Industry Internship, and Major Project.
Labs emphasize practical implementation of data structures, OOP, OS, DBMS, networks, and full-stack development.
LBRCE Syllabus 2026: Information Technology (IT)
IT emphasizes software applications, networking, web technologies, databases, and IT services alongside core CS topics.
I & II Semesters: Nearly identical to CSE (Communicative English, Chemistry/Physics, Mathematics, Basic Engineering, Introduction to Programming, Data Structures, Workshops, Labs).
III Semester: Discrete Mathematics & Graph Theory, UHV-II, Digital Logic & Computer Organization, Advanced Data Structures & Algorithm Analysis, Object Oriented Programming through Java + Labs, Full Stack Development-I.
IV Semester: Optimization Techniques, Probability & Statistics, Operating Systems, Database Management Systems, Software Engineering + Labs, Python Programming, Design Thinking, Environmental Science.
V Semester: Advanced Java, Computer Networks, Automata Theory & Compiler Design, Professional Electives (Object Oriented Analysis & Design, Cyber Security, Artificial Intelligence, Data Warehousing & Mining, or MOOC), Open Elective-I, Labs (Advanced Java, Networks), Python with Django / UI Design (Flutter), Community Service Evaluation.
Later Semesters: Focus on web technologies, mobile app development, cloud, security, data analytics, electives, internships, and projects. Strong emphasis on full-stack and application development skills.
LBRCE Syllabus 2026: Electronics and Communication Engineering (ECE)
ECE covers electronics devices/circuits, signals, communications, VLSI, embedded systems, and signal processing.
I Semester: Communicative English, Engineering Physics, Linear Algebra & Calculus, Basic Electrical & Electronics Engineering, IT Workshop, Engineering Graphics, Labs (English, Physics, EEE Workshop), NSS/NCC.
II Semester: Chemistry, Differential Equations & Vector Calculus, Basic Civil & Mechanical Engineering, Introduction to Programming, Network Analysis + Labs (Chemistry, Programming, Workshop, Network Analysis & Simulation).
III Semester: Probability Theory and Stochastic Processes, UHV-II, Signals and Systems, Electronic Devices and Circuits, Switching Theory and Logic Design + Labs, Data Structures using C, Environmental Science.
IV Semester: Managerial Economics and Financial Analysis, Control Systems, Electromagnetic Waves and Transmission Lines, Electronic Circuit Analysis, Analog Communications + Labs, Python Programming, Design Thinking.
V Semester: Analog & Digital IC Applications, Digital Communications, Antennas and Wave Propagation, Professional Elective-I (e.g., Computer Organization & Architecture, Digital System Design through HDL, Electronic Measurements, Optical Communications), Open Elective-I, Labs, Idea Implementation Lab, Community Service Evaluation.
VI–VIII Semesters: VLSI Design, Microprocessors & Microcontrollers, Digital Signal Processing, Professional Electives (Analog IC Design, Satellite Communication, Embedded Systems, Microwave Engineering, etc.), Open Electives, Soft Skills, Research Methodology & IPR, Industry Internship, and major projects/labs (VLSI, Microcontrollers).
LBRCE Syllabus 2026: Electrical and Electronics Engineering (EEE)
EEE focuses on power systems, electrical machines, power electronics, control systems, and circuits.
I Semester: Communicative English, Engineering Physics, Linear Algebra & Calculus, Basic Electrical & Electronics Engineering, IT Workshop, Engineering Graphics, Labs, NSS/NCC.
II Semester: Chemistry, Differential Equations & Vector Calculus, Basic Civil & Mechanical Engineering, Introduction to Programming, Electrical Circuit Analysis-I + Labs (Chemistry, Programming, Workshop, Electrical Circuits).
III Semester: Complex Variables & Numerical Methods, UHV-II, Electromagnetic Field Theory, Electrical Circuit Analysis-II, DC Machines and Transformers + Labs, Data Structures using C, Environmental Science.
IV Semester: Managerial Economics & Financial Analysis, Analog Circuits, Power Systems-I, Induction and Synchronous Machines, Control Systems + Labs, Python Programming, Design Thinking. Community Service Internship.
V Semester: Power Electronics, Digital Circuits, Power Systems-II, Professional Elective-I (Analysis of Signals and Systems, Computer Architecture, Communication Systems, Optimization Techniques), Open Elective-I, Labs (Power Electronics, Analog & Digital Circuits), IoT Applications Lab, Tinkering Lab, Community Service Evaluation.
Later Semesters: Electrical Measurements & Instrumentation, Microprocessors, Power System Protection/Operation, Electric Drives, Renewable Energy, Professional Electives, Soft Skills, Research Methodology, Industry Internship, and major project.
LBRCE Syllabus 2026: Artificial Intelligence and Data Science (AI&DS)
AI&DS (established around 2020, intake expanded) specializes in AI, machine learning, data science, statistics, big data, and intelligent systems.
I & II Semesters: Similar to CSE/IT Group A – Communicative English, Chemistry/Physics, Mathematics, Basic Engineering, Introduction to Programming, Data Structures, Workshops, Labs.
III Semester: Discrete Mathematics & Graph Theory, UHV-II, Database Management Systems, Advanced Data Structures & Algorithm Analysis, Object Oriented Programming through Java + Labs, Python Programming.
IV Semester: Managerial Economics and Financial Analysis, Statistical Methods for Data Science, Artificial Intelligence, Introduction to Data Science, Digital Logic & Computer Organization, Environmental Science + Labs (AI Lab, Data Science using Python), Full Stack Development-I, Design Thinking. Community Service Internship.
V Semester: Data Warehousing and Data Mining, Principles of Machine Learning, Data Visualization, Professional Elective-I (OOAD, IoT, Soft Computing, Exploratory Data Analysis, etc.), Open Elective-I, Labs (DWDM, Visualization), Full Stack Development-2 / UI Design (Flutter), Community Service Evaluation.
VI Semester: Big Data Analytics, Deep Learning, Natural Language Processing, further electives/labs, Soft Skills, Research Methodology, Industry Internship/Mini-Project.
VII–VIII: Advanced AI topics, projects, electives (Cloud, Cybersecurity aspects, etc.), and major project. Strong emphasis on statistical methods, ML/DL, visualization, and real-world data applications.
Additional Notes for 2026 Aspirants
- Admission: Primarily through AP EAPCET (Category A) or management quota (Category B). Lateral entry via AP ECET.
- Fees (approximate, subject to change): Category A ~₹78,600/year; Category B higher and branch-dependent (CSE/AI higher).
- Career Scope: CSE/IT/AI&DS → Software development, data science, AI engineering, product roles. ECE → VLSI, embedded, telecom, IoT. EEE → Power, energy, automation, electronics industries. Strong placement support and industry collaborations at LBRCE.
- Resources: Download official R23 PDFs from lbrce.ac.in (Academics section) for complete unit-wise syllabi, recommended textbooks (e.g., standard authors like Horowitz for data structures, Russell & Norvig for AI), reference books, and CO-PO mappings. NPTEL/SWAYAM courses are encouraged for electives/honors.
The R23 curriculum is designed to produce industry-ready engineers with strong fundamentals, practical skills, ethical values, and lifelong learning abilities. For the most accurate and updated details, visit the official LBRCE website or contact the respective departments.