Logic & Computer Design Fundamentals 5th Edition By Morris Mano, Charles Kime, Tom Martin
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- 674
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- Physics
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About this ebook
Logic & Computer Design Fundamentals (5th Edition) by M. Morris Mano, Charles Kime, and Tom Martin structures its material sequentially, progressing from core digital logic design up to complex computer systems architecture. [1, 2]
The textbook is divided into 12 chapters that cover the following topics: [1]
Part 1: Digital Logic Design Basics (Chapters 1–4)
- Chapter 1: Digital Systems and Information: Information representation, binary numbers, octal and hexadecimal conversions, arithmetic operations, decimal codes, and alphanumeric codes (like ASCII and Gray codes). [1]
- Chapter 2: Combinational Logic Circuits: Binary logic, basic logic gates, Boolean algebra, circuit optimization (Karnaugh Maps/K-maps), and an introduction to Hardware Description Languages (HDLs) using VHDL and Verilog. [1, 2]
- Chapter 3: Combinational Logic Design: Hierarchical design, technology mapping, combinational functional blocks (decoders, encoders, multiplexers), and binary adders/subtractors. [1, 2]
- Chapter 4: Sequential Circuits: Storage elements (latches and flip-flops), sequential circuit analysis, state diagrams and state tables, and the design of sequential circuits. [1]
Part 2: Digital Systems Design (Chapters 5–7)
- Chapter 5: Digital Hardware Implementation: Programmable logic design (PLDs, FPGAs) and CMOS circuit technology.
- Chapter 6: Registers and Register Transfers: Register design, shift registers, counters, and register transfer operations using a generic Register Transfer Language (RTL).
- Chapter 7: Memory Basics: Random-Access Memory (RAM) architectures, Static RAM (SRAM), Dynamic RAM (DRAM), and Read-Only Memory (ROM). [1]
Part 3: Computer Design & Architecture (Chapters 8–12)
- Chapter 8: Computer Design Basics: Data paths, the Arithmetic Logic Unit (ALU), shifter units, control word systems, and hardwired control design.
- Chapter 9: Instruction Set Architecture: Central Processing Unit (CPU) architecture, addressing modes, instruction formats, and instruction types (data transfer, manipulation, and program control).
- Chapter 10: RISC and CISC Processors: Pipelining, execution hazards, and the differences between Reduced Instruction Set Computer (RISC) and Complex Instruction Set Computer (CISC) design philosophies.
- Chapter 11: Input-Output and Communication: I/O interfaces, programmed I/O, interrupt-initiated I/O, Direct Memory Access (DMA), and standard serial/parallel communication protocols.
- Chapter 12: Memory Systems: Hierarchical memory design, cache memory (mapping, hit rates), and virtual memory systems. [1]
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