Microprocessors: Theory and Applications (Intel and Motorola)Prentice Hall, 1992 - 468 sayfa |
Kitabın içinden
86 sonuçtan 1-3 arası sonuçlar
Sayfa 136
... Assume that the two numbers are stored in CX and DX . Solution CODE SEG SEGMENT ASSUME CS : CODE SEG MOV AX , DX ; Move first data MUL CX HLT CODE SEGENDS END ; [ DX ] [ AX ] ← [ AX ] * [ CX ] CODE SEG ENDS END Example 5-7 Write an ...
... Assume that the two numbers are stored in CX and DX . Solution CODE SEG SEGMENT ASSUME CS : CODE SEG MOV AX , DX ; Move first data MUL CX HLT CODE SEGENDS END ; [ DX ] [ AX ] ← [ AX ] * [ CX ] CODE SEG ENDS END Example 5-7 Write an ...
Sayfa 210
... Assume the following data prior to execution of this MOVE : [ AO ] [ D1 ] [ $ 105020 ] [ $ 105021 ] = $ 105020 $ 70801F25 = = = $ 50 $ 51 [ $ 105022 ] = $ 52 two 16 bits of the stack . Store the 16 - bit result onto the stack . Assume ...
... Assume the following data prior to execution of this MOVE : [ AO ] [ D1 ] [ $ 105020 ] [ $ 105021 ] = $ 105020 $ 70801F25 = = = $ 50 $ 51 [ $ 105022 ] = $ 52 two 16 bits of the stack . Store the 16 - bit result onto the stack . Assume ...
Sayfa 211
... Assume the Xi's are signed 8 - bit and stored in consecutive locations starting at $ 504020 . As- sume A0 points to the Xi's . Also , write the main program in 68000 assembly language to perform all initializations , call the subroutine ...
... Assume the Xi's are signed 8 - bit and stored in consecutive locations starting at $ 504020 . As- sume A0 points to the Xi's . Also , write the main program in 68000 assembly language to perform all initializations , call the subroutine ...
İçindekiler
MICROCOMPUTER ARCHITECTURE | 9 |
MICROCOMPUTER SOFTWARE | 49 |
Questions and Problems | 59 |
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Sık kullanılan terimler ve kelime öbekleri
16 bits 16-bit data A/D converter accumulator ADDRESS FIELD address register addressing mode assembly language binary buffer byte or word CALL CHARACTER chip circuit clock command contents coprocessor data bus data field data register data transfer decoding decremented digits disp8 display DMA controller DTACK enable EPROM example execution flags affected functions GPIB hardware hexadecimal HIGH I/O port index register input instruction set INTA Intel Corporation interface INTR jump keyboard latched loads logic low byte mem/reg memory address memory location memory-mapped I/O microcomputer microprocessor OP code operand operation output peripheral port 00 processor program counter register indirect RESET segment register service routine shown in Figure signal specified stack pointer status register stored subroutine TABLE tion typical vector voltage Write zero
Bu kitaba yapılan referanslar
Fundamentals of Digital Logic and Microcomputer Design Mohamed Rafiquzzaman Metin Parçacığı görünümü - 1999 |