Fundamentals of Digital Logic and Microcomputer DesignRafi Systems, Incorporated, 1999 - 828 sayfa |
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Sayfa 361
... reference . " Typical 32 - bit microprocessors can execute the same instructions in a loop from the on - chip cache ... references made by the microprocessor will be confined to the fast cache . Microprocessor Main Memory 4 Kx 16 Cache ...
... reference . " Typical 32 - bit microprocessors can execute the same instructions in a loop from the on - chip cache ... references made by the microprocessor will be confined to the fast cache . Microprocessor Main Memory 4 Kx 16 Cache ...
Sayfa 749
... references cause page faults . However , there is a hit with the third reference because the required page ( page 2 ) is already in the main memory . After the first four references , all main memory frames are completely used . In the ...
... references cause page faults . However , there is a hit with the third reference because the required page ( page 2 ) is already in the main memory . After the first four references , all main memory frames are completely used . In the ...
Sayfa 813
... Reference Manual , Intel Corporation , 1986 . Intel , 80386 Hardware Reference Manual , Intel Corporation , 1986 . Intel , 80386 Advance Information , Intel Corporation , 1985 . Intel , 80387 Programmer's Reference Manual , 1987 . Intel ...
... Reference Manual , Intel Corporation , 1986 . Intel , 80386 Hardware Reference Manual , Intel Corporation , 1986 . Intel , 80386 Advance Information , Intel Corporation , 1985 . Intel , 80387 Programmer's Reference Manual , 1987 . Intel ...
İçindekiler
INTRODUCTION TO DIGITAL SYSTEMS | 1 |
NUMBER SYSTEMS AND CODES | 31 |
BOOLEAN ALGEBRA AND DIGITAL LOGIC GATES | 67 |
Telif Hakkı | |
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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