Fundamentals of Digital Logic and Microcomputer DesignRafi Systems, Incorporated, 1999 - 828 sayfa |
Kitabın içinden
57 sonuçtan 1-3 arası sonuçlar
Sayfa iv
... Chapters 1 through 5. These chapters describe digital circuits at the gate and flip - flop levels and describe the analysis and design of combinational and sequential circuits . The second section contains Chapters 6 through 8 , and Chapter ...
... Chapters 1 through 5. These chapters describe digital circuits at the gate and flip - flop levels and describe the analysis and design of combinational and sequential circuits . The second section contains Chapters 6 through 8 , and Chapter ...
Sayfa v
... Chapter 8 explains the basics of memory and I / O design . Topics such as main memory array design , memory management concepts , and cache memory organization are included . Chapters 9 and 10 contain detailed descriptions of the ...
... Chapter 8 explains the basics of memory and I / O design . Topics such as main memory array design , memory management concepts , and cache memory organization are included . Chapters 9 and 10 contain detailed descriptions of the ...
Sayfa 695
... Chapter 5. As mentioned before , an ASM chart is used to define digital hardware algorithms . This can be used to design and implement state machines . This section describes a procedure for designing state machines using the ASM chart ...
... Chapter 5. As mentioned before , an ASM chart is used to define digital hardware algorithms . This can be used to design and implement state machines . This section describes a procedure for designing state machines using the ASM chart ...
İçindekiler
INTRODUCTION TO DIGITAL SYSTEMS | 1 |
NUMBER SYSTEMS AND CODES | 31 |
BOOLEAN ALGEBRA AND DIGITAL LOGIC GATES | 67 |
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16 bits 32 bits adder address register addressing modes arithmetic assembly language assembly language program Assume binary number block Boolean bus cycle byte cache chip clock cycle complement consider contains contents control unit data bus decimal decoder digits display DSACK1 DTACK EPROM example execution flags flip-flop floating-point full adder function hardware hexadecimal implemented index register input instruction set integer Intel interface interrupt K-map latch loaded logic diagram m₁ main memory memory address memory location microcomputer microprocessor microprogram minterms Motorola MOVE.W multiplication offset on-chip op-code operand output Pentium perform physical address pins pipeline pointer port PowerPC processor program counter provides reset result RISC sequence sequential circuit shown in Figure signal specified stack stored subroutine synchronous transistor truth table typical unsigned vector word zero