參數(shù)資料
型號(hào): IMS82C55AZ
廠商: Intersil
文件頁(yè)數(shù): 22/26頁(yè)
文件大?。?/td> 0K
描述: IC I/O EXPANDER 24B 44PLCC
標(biāo)準(zhǔn)包裝: 260
接口: 可編程
輸入/輸出數(shù): 24
中斷輸出: 無(wú)
電源電壓: 4.5 V ~ 5.5 V
工作溫度: -40°C ~ 85°C
安裝類(lèi)型: 表面貼裝
封裝/外殼: 44-LCC(J 形引線)
供應(yīng)商設(shè)備封裝: 44-PLCC
包裝: 管件
5
FN6140.2
June 15, 2006
Operational Description
Mode Selection
There are three basic modes of operation than can be
selected by the system software:
Mode 0 - Basic Input/Output
Mode 1 - Strobed Input/Output
Mode 2 - Bidirectional Bus
When the reset input goes “high”, all ports will be set to the
input mode. After the reset is removed, the 82C55A can
remain in the input mode with no additional initialization
required. The control word register will contain 9Bh. During
the execution of the system program, any of the other modes
may be selected using a single output instruction. This
allows a single 82C55A to service a variety of peripheral
devices with a simple software maintenance routine. Any
port programmed as an output port is initialized to all zeros
when the control word is written.
The modes for Port A and Port B can be separately defined,
while Port C is divided into two portions as required by the
Port A and Port B definitions. All of the output registers,
including the status flip-flops, will be reset whenever the
mode is changed. Modes may be combined so that their
functional definition can be “tailored” to almost any I/O
structure. For instance: Group B can be programmed in
Mode 0 to monitor simple switch closings or display
computational results, Group A could be programmed in
Mode 1 to monitor a keyboard or tape reader on an interrupt-
driven basis.
The mode definitions and possible mode combinations may
seem confusing at first, but after a cursory review of the
complete device operation a simple, logical I/O approach will
surface. The design of the 82C55A has taken into account
things such as efficient PC board layout, control signal definition
vs. PC layout and complete functional flexibility to support
almost any peripheral device with no external logic. Such
design represents the maximum use of the available pins.
Single Bit Set/Reset Feature (Figure 5)
Any of the eight bits of Port C can be Set or Reset using a
single Output instruction. This feature reduces software
requirements in control-based applications.
When Port C is being used as status/control for Port A or B,
these bits can be set or reset by using the Bit Set/Reset
operation just as if they were output ports.
FIGURE 3. BASIC MODE DEFINITIONS AND BUS INTERFACE
DATA BUS
8I/O
B
PB7-PB0
4I/O
PC3-PC0
4I/O
C
PC7-PC4
8I/O
A
PA7-PA0
CONTROL BUS
ADDRESS BUS
RD, WR
82C55A
D7-D0
A0-A1
CS
MODE 0
8I/O
B
PB7-PB0
CONTROL
C
8I/O
A
PA7-PA0
MODE 1
OR I/O
CONTROL
OR I/O
8I/O
B
PB7-PB0
C
BI-
A
PA7-PA0
MODE 2
CONTROL
DIRECTIONAL
FIGURE 4. MODE DEFINITION FORMAT
D7 D6 D5
D4 D3 D2 D1 D0
PORT C (LOWER)
1 = INPUT
0 = OUTPUT
PORT B
1 = INPUT
0 = OUTPUT
MODE SELECTION
0 = MODE 0
1 = MODE 1
GROUP B
PORT C (UPPER)
1 = INPUT
0 = OUTPUT
PORT A
1 = INPUT
0 = OUTPUT
MODE SELECTION
00 = MODE 0
01 = MODE 1
GROUP A
1X = MODE 2
MODE SET FLAG
1 = ACTIVE
CONTROL WORD
MS82C55A, MQ82C55A, MP82C55A
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