LBRCE Syllabus 2026, CSE, IT,ECE, EEE, AI&DS

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.

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