BUS INTERFACE UNIT
3-20
An idle bus state may or may not drive the bus. An idle bus state following a bus read cycle con-
tinues to float the bus. An idle bus state following a bus write cycle continues to drive the bus.
The BIU drives no control strobes active in an idle state except to indicate the start of another bus
cycle.
3.5
BUS CYCLES
There are four basic types of bus cycles: read, write, interrupt acknowledge and halt. Interrupt
acknowledge and halt bus cycles define special bus operations and require separate discussions.
Read bus cycles include memory, I/O and instruction prefetch bus operations. Write bus cycles
include memory and I/O bus operations. All read and write bus cycles have the same basic format.
The following sections present timing equations containing symbols found in the data sheet. The
timing equations provide information necessary to start a worst-case design analysis.
3.5.1
Read Bus Cycles
Figure 3-19 illustrates a typical read cycle. Table 3-2 lists the three types of read bus cycles.
Figure 3-20 illustrates a typical 16-bit interface connection to a read-only device interface. The
same example applies to an 8-bit bus system, except that no devices connect to an upper bus. Four
parameters (Table 3-3) must be evaluated when determining the compatibility of a memory (or
I/O) device. T
ADLTCH
defines the delay through the address latch.
Table 3-2. Read Bus Cycle Types
Status Bit
Bus Cycle Type
S2
S1
S0
0
0
1
Read I/O — Initiated by the Execution Unit for IN, OUT, INS, OUTS instructions
or by the DMA Unit. A19:16 are driven to zero (see Chapter 10, “Direct Memory
Access Unit”).
1
0
0
Instruction Prefetch — Initiated by the BIU. Data read from the bus fills the
prefetch queue.
1
0
1
Read Memory — A19:0 select the desired byte or word memory location.
Table 3-3. Read Cycle Critical Timing Parameters
Memory Device
Parameter
Description
Equation
T
OE
Output enable (RD low) to data valid
2T
CLCL
– T
CLRL
– T
DVCL
T
ACC
Address valid to data valid
3T
CLCL
– T
CLAV
–T
ADLTCH –
T
DVCL
T
CE
Chip enable (UCS) to data valid
3T
CLCL
– T
CLOV2
– T
CLIS
T
DF
Output disable (RD high) to output float
T
RHAV
Содержание 80C186XL
Страница 1: ...80C186XL 80C188XL Microprocessor User s Manual...
Страница 2: ...80C186XL 80C188XL Microprocessor User s Manual 1995...
Страница 18: ...1 Introduction...
Страница 19: ......
Страница 27: ......
Страница 28: ...2 Overview of the 80C186 Family Architecture...
Страница 29: ......
Страница 79: ......
Страница 80: ...3 Bus Interface Unit...
Страница 81: ......
Страница 127: ......
Страница 128: ...4 Peripheral Control Block...
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Страница 137: ......
Страница 138: ...5 ClockGenerationand Power Management...
Страница 139: ......
Страница 154: ...6 Chip Select Unit...
Страница 155: ......
Страница 178: ...7 Refresh Control Unit...
Страница 179: ......
Страница 193: ......
Страница 194: ...8 Interrupt Control Unit...
Страница 195: ......
Страница 227: ......
Страница 228: ...9 Timer Counter Unit...
Страница 229: ......
Страница 253: ......
Страница 254: ...10 Direct Memory Access Unit...
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Страница 284: ...11 Math Coprocessing...
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Страница 302: ...12 ONCE Mode...
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Страница 306: ...A 80C186 Instruction Set Additions and Extensions...
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Страница 318: ...B Input Synchronization...
Страница 319: ......
Страница 322: ...C Instruction Set Descriptions...
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Страница 371: ......
Страница 372: ...D Instruction Set Opcodes and Clock Cycles...
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Страница 396: ...Index...
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