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AM186ED-20KC/W 데이터시트(PDF) 41 Page - Advanced Micro Devices

부품명 AM186ED-20KC/W
상세설명  High Performance, 80C186- and 80C188-Compatible, 16-Bit Embedded Microcontrollers
PDF  88 Pages
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제조업체  AMD [Advanced Micro Devices]
홈페이지  http://www.amd.com
Logo AMD - Advanced Micro Devices

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Am186ED/EDLV Microcontrollers
41
PRELI M INARY
D
RA
F T
External Source Clock
Alternately, the internal oscillator can be driven from an
external clock source. This source should be con-
nected to the input of the inverting amplifier (X1), with
the output (X2) not connected.
System Clocks
The base system clock of AMD’s original 80C186 and
80C188 microcontrollers is renamed CLKOUTA and
the additional output is called CLKOUTB. CLKOUTA
and CLKOUTB operate at either the processor fre-
quency or the PLL frequency. The output drivers for
both clocks are individually programmable for disable.
Figure 9 shows the organization of the clocks.
The second clock output (CLKOUTB) allows one clock
to run at the PLL frequency and the other clock to run
at the power-save frequency. Individual drive enable
bits allow selective enabling of just one or both of these
clock outputs.
Power-Save Operation
The power-save mode of the Am186ED/EDLV micro-
controllers reduces power consumption and heat dissi-
pation, thereby extending battery life in portable
systems. In power-save mode, operation of the CPU
and internal peripherals continues at a slower clock fre-
quency. When an interrupt occurs, the microcontroller
automatically returns to its normal operating frequency
on the internal clock’s next rising edge of t3.
Note: Power-save operation requires that clock-de-
pendent devices be reprogrammed for clock frequency
changes. Software drivers must be aware of clock fre-
quency. The power-save divisor should not be set to
operate the processor core below 100 kHz.
Initialization and Processor Reset
Processor initialization or startup is accomplished by
driving the RES input pin Low. RES must be held Low
for 1 ms during power-up to ensure proper device ini-
tialization. RES forces the Am186ED/EDLV microcon-
trollers to terminate all execution and local bus activity.
No instruction or bus activity occurs as long as RES is
active. After RES becomes inactive and an internal
processing interval elapses, the microcontroller begins
execution with the instruction at physical location
FFFF0h, with UCS asserted with three wait states.
RES also sets some registers to predefined values and
resets the watchdog timer.
Reset Configuration Register
When the RES input is asserted Low, the contents of
the address/data bus (AD15–AD0) are written into the
reset configuration register. The system can place con-
figuration information on the address/data bus using
weak external pullup or pulldown resistors, or using an
external driver that is enabled during reset. The pro-
cessor does not drive the address/data bus during re-
set.
For example, the reset configuration register could be
used to provide the software with the position of a con-
figuration switch in the system. Using weak external
pullup and pulldown resistors on the address and data
bus, the system can provide the microcontroller with a
value corresponding to the position of the jumper dur-
ing a reset.
Figure 9.
Clock Organization
PLL
X1, X2
/2
CLKDIV2
Processor Clock
PSEN
CAD
CAF
CBF
CBD
CLKOUTB
CLKOUTA
Mux
Mux
Mux
Mux
Time
Delay
6 ns ±
Power-Save
Divisor
/1 to /128
Note: For frequencies under 16 MHz, use PLL bypass.



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