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Modern Computer Architecture and Organization

Modern Computer Architecture and Organization - Third Edition

By : Jim Ledin
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Modern Computer Architecture and Organization

Modern Computer Architecture and Organization

5 (1)
By: Jim Ledin

Overview of this book

Computer architecture now extends far beyond CPUs, forming the foundation of cloud platforms, AI systems, cybersecurity solutions, and emerging computing technologies. Modern Computer Architecture and Organization, Third Edition, provides a clear, end-to-end understanding of how today’s computer systems are built and why architectural decisions matter more than ever. You’ll begin with the fundamentals of digital logic, processor elements, memory systems, and the hardware–software interface, building a strong grounding that remains essential for every architect and systems engineer. Next, the book explores modern processor and memory architectures, performance-enhancing techniques, virtualization, and mainstream instruction sets, including x86, ARM, and an in-depth treatment of RISC-V. New and significantly expanded chapters extend this foundation into modern computing domains, including AI and large language model (LLM) computing platforms, GPUs, cloud-scale systems, confidential and security-focused architectures, blockchain and Bitcoin mining systems, self-driving vehicle architectures, and future directions such as quantum computing. This edition reflects today’s AI-driven, cloud-centric, security-aware computing landscape while remaining true to the classical principles that continue to underpin modern computer systems.
Table of Contents (28 chapters)
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1
Part 1: Fundamentals of Computer Architecture
8
Part 2: Processor Architectures and Instruction Sets
15
Part 3: Computer System Architectures
23
Part 4: Appendices
27
Index

Chapter 4: Computer System Components

Exercise 1

Create a circuit implementation of a NAND gate using two CMOS transistor pairs. Unlike NPN transistor gate circuits, no resistors are required for this circuit.

Answer

The diagram for this circuit is shown here:

Image 3

Exercise 2

A 16-gigabit DRAM integrated circuit has 2 bank group selection inputs, 2 bank selection inputs, and 17 row address inputs. How many bits are in each row of a bank in this device?

Answer

The DRAM circuit contains 16 gigabits = 16 × 230 bits.

The number of address bits is 2 bank group bits + 2 bank bits + 17 row address bits = 21 bits.

The row dimension of each bank is therefore (16 × 230) ÷ 221 = 8,192 bits.

CONTINUE READING
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