JNTUK R19 B.Tech CSE 1-2 DLD Material/ Notes PDF Download: If you’re pursuing B.Tech in Computer Science and Engineering (CSE) under the JNTUK R19 B.Tech CSE 1-2 DLD Material is crucial for your understanding. This material covers a range of fundamental concepts, including the philosophy behind number systems, negative number representation, binary arithmetic, Boolean algebra theory, and map methods for minimizing switching functions.
Additionally, it introduces essential tools for designing both combinational and sequential digital logic circuits, providing a solid foundation for computer engineering studies. For comprehensive study material, including notes and PDF downloads, explore JNTUK R19 B.Tech CSE 1-2 DLD Notes. With this resource, you’ll be well-equipped to excel in your academic journey and beyond.
JNTUK R19 B.Tech CSE 1-2 DLD Material – Units
No. Of Units | Name of the Unit |
Unit – 1 | Digital Systems and Binary Numbers |
Unit – 2 | Concept of Boolean algebra, Gate level Minimization |
Unit – 3 | Combinational Logic |
Unit – 4 | Synchronous Sequential Logic |
Unit – 5 | Registers and Counters |
Unit 1 Syllabus PDF Download | JNTUK R19 B.Tech CSE Digital Logic Design Material
Digital Systems and Binary Numbers: Digital Systems, Binary Numbers, Octal and Hexadecimal Numbers, Complements of Numbers, Signed Binary Numbers, Arithmetic addition and subtraction, 4-bit codes: BCD, EXCESS 3, alphanumeric codes, 9’s complement, 2421, etc..
JNTUK R19 B.Tech CSE 1-2 DLD Material – PDF Download | |
To Download The JNTUK R19 B.Tech CSE 1-2 DLD Unit 1 Notes PDF | Download PDF |
Unit 2 Syllabus PDF Download | JNTUK R19 B.Tech CSE Digital Logic Design Material
Concept of Boolean algebra: Basic Theorems and Properties of Boolean algebra, Boolean Functions, Canonical and Standard Forms, Minterms and Maxterms.
Gate level Minimization: Map Method, Three-Variable K-Map, Four Variable K-Maps. Products of Sum Simplification, Sum of Products Simplification, Don’t – Care Conditions, NAND and NOR Implementation, Exclusive OR Function.
JNTUK R19 B.Tech CSE 1-2 DLD Material – PDF Download | |
To Download The JNTUK R19 B.Tech CSE 1-2 DLD Unit 2 Notes PDF | Download PDF |
Unit 3 Syllabus PDF Download | JNTUK R19 B.Tech CSE Digital Logic Design Material
Combinational Logic: Introduction, Analysis Procedure, Binary Adder–Subtractor, Binary Multiplier, Decoders, Encoders, Multiplexers, Demultiplexers, Priority Encoder, Code Converters, Magnitude Comparator, HDL Models of Combinational Circuits. Realization of Switching Functions Using PROM, PAL, and PLA.
JNTUK R19 B.Tech CSE 1-2 DLD Material – PDF Download | |
To Download The JNTUK R19 B.Tech CSE 1-2 DLD Unit 3 Notes PDF | Download PDF |
Unit 4 Syllabus PDF Download | JNTUK R19 B.Tech CSE Digital Logic Design Material
Synchronous Sequential Logic: Introduction to Sequential Circuits, Storage Elements: Latches, Flip‐Flops, RS-Latch Using NAND and NOR Gates, Truth Tables. RS, JK, T and D Flip Flops, Truth and Excitation Tables, Conversion of Flip Flops.
JNTUK R19 B.Tech CSE 1-2 DLD Material – PDF Download | |
To Download The JNTUK R19 B.Tech CSE 1-2 DLD Unit 4 Notes PDF | Download PDF |
Unit 5 Syllabus PDF Download | JNTUK R19 B.Tech CSE Digital Logic Design Material
Registers and Counters: Registers, Shift Registers, Ripple Counters, Synchronous Counters, Ring Counter, Johnson Counter.
JNTUK R19 B.Tech CSE 1-2 DLD Material – PDF Download | |
To Download The JNTUK R19 B.Tech CSE 1-2 DLD Unit 5 Notes PDF | Download PDF |
JNTUK R19 B.Tech DLD Material – Outcomes
- Understand and define various number systems, including binary, and perform addition and subtraction in binary, along with operations involving 2’s complement representation.
- Comprehend different switching algebra theorems and apply them effectively for logic functions.
- Define and utilize Karnaugh maps for multiple variables to algorithmically reduce logic functions, enhancing efficiency in circuit design.
- Design a range of logic gates, from basic ones to intricate programmable logic devices and arrays, demonstrating proficiency in implementing logical operations.
- Demonstrate the ability to design diverse sequential circuits, starting from fundamental flip-flops and extending to more complex structures such as registers and counters, facilitating the creation of advanced electronic systems.
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