10-21
DIRECT MEMORY ACCESS UNIT
10.3.2 DMA Latency
DMA Latency is the delay between a DMA request being asserted and the DMA cycle being run.
The DMA latency for a channel is controlled by many factors:
•
Bus HOLD — Bus HOLD takes precedence over internal DMA requests. Using bus HOLD
will degrade DMA latency.
•
LOCKed Instructions — Long LOCKed instructions (e.g., LOCK REP MOVS) will
monopolize the bus, preventing access by the DMA Unit.
•
Inter-channel Priority Scheme — Setting a channel at low priority will affect its latency.
The minimum latency in all cases is four CLKOUT cycles. This is the amount of time it takes to
synchronize and prioritize a request.
10.3.3 DMA Transfer Rates
The maximum DMA transfer rate is a function of processor operating frequency and synchroni-
zation mode. For unsynchronized and source-synchronized transfers, the 80C186 Modular Core
can transfer two bytes every eight CLKOUT cycles. For destination-synchronized transfers, the
addition of two idle T-states reduces the bandwidth by two clocks per word.
Maximum DMA transfer rates (in Mbytes per second) for the 80C186 Modular Core are calcu-
lated by the following equations, where F
CPU
is the CPU operating frequency (in megahertz).
For unsynchronized and source-synchronized transfers:
For destination-synchronized transfers:
Because of its 8-bit data bus, the 80C188 Modular Core can transfer only one byte per DMA cy-
cle. Therefore, the maximum transfer rates for the 80C188 Modular Core are half those calculated
by the equations for the 80C186 Modular Core.
0.25
F
CPU
×
0.20
F
CPU
×
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...
Страница 129: ......
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...
Страница 255: ......
Страница 283: ......
Страница 284: ...11 Math Coprocessing...
Страница 285: ......
Страница 302: ...12 ONCE Mode...
Страница 303: ......
Страница 306: ...A 80C186 Instruction Set Additions and Extensions...
Страница 307: ......
Страница 318: ...B Input Synchronization...
Страница 319: ......
Страница 322: ...C Instruction Set Descriptions...
Страница 323: ......
Страница 371: ......
Страница 372: ...D Instruction Set Opcodes and Clock Cycles...
Страница 373: ......
Страница 396: ...Index...
Страница 397: ......