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M38B53M4-059FP Datasheet(PDF) 74 Page - Mitsubishi Electric Semiconductor

Part # M38B53M4-059FP
Description  8-BIT SINGLE-CHIP MICROCOMPUTER
PDF  355 Pages
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Manufacturer  MITSUBISHI [Mitsubishi Electric Semiconductor]
Direct Link  http://www.mitsubishichips.com
Logo MITSUBISHI - Mitsubishi Electric Semiconductor

M38B53M4-059FP Datasheet(HTML) 74 Page - Mitsubishi Electric Semiconductor

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38B5 Group User’s Manual
1-58
HARDWARE
FUNCTIONAL DESCRIPTION
Fig. 65 Structure of watchdog timer control register
“0,” the underflow signal of watchdog timer L becomes the count
source. The detection time is set then to f(XIN) = 2.1 s at 4 MHz
frequency and f(XCIN) = 512 s at 32 kHz frequency.
When this bit is set to “1,” the count source becomes the signal
divided by 8 for f(XIN) (or divided by 16 for f(XCIN)). The detection
time in this case is set to f(XIN) = 8.2 ms at 4 MHz frequency and
f(XCIN) = 2 s at 32 KHz frequency. This bit is cleared to “0” after
resetting.
(3) Operation of STP instruction disable bit
Bit 6 of the watchdog timer control register (address 002B16) permits
disabling the STP instruction when the watchdog timer is in opera-
tion.
When this bit is “0,” the STP instruction is enabled.
When this bit is “1,” the STP instruction is disabled.
Once the STP instruction is executed, an internal resetting occurs.
When this bit is set to “1,” it cannot be rewritten to “0” by program.
This bit is cleared to “0” after resetting.
s Note
When releasing the stop mode, the watchdog timer performs its count
operation even in the stop release waiting time. Be careful not to
cause the watchdog timer H to underflow in the stop release waiting
time, for example, by writing data in the watchdog timer control reg-
ister (address 002B16) before executing the STP instruction.
Fig. 64 Block diagram of watchdog timer
Watchdog Timer
The watchdog timer gives a mean of returning to the reset status
when a program cannot run on a normal loop (for example, because
of a software runaway). The watchdog timer consists of an 8-bit watch-
dog timer L and a 12-bit watchdog timer H.
qStandard operation of watchdog timer
When any data is not written into the watchdog timer control register
(address 002B16) after resetting, the watchdog timer is in the stop
state. The watchdog timer starts to count down by writing an optional
value into the watchdog timer control register (address 002B16) and
an internal reset occurs at an underflow of the watchdog timer H.
Accordingly, programming is usually performed so that writing to the
watchdog timer control register (address 002B16) may be started
before an underflow. When the watchdog timer control register
(address 002B16) is read, the values of the high-order 6 bits of the
watchdog timer H, STP instruction disable bit, and watchdog timer H
count source selection bit are read.
(1) Initial value of watchdog timer
At reset or writing to the watchdog timer control register (address
002B16), a watchdog timer H is set to “FFF16” and a watchdog timer
L to “FF16.”
(2) Watchdog timer H count source selection bit operation
Bit 7 of the watchdog timer control register (address 002B16) permits
selecting a watchdog timer H count source. When this bit is set to
XIN
Data bus
XCIN
“1”
“0”
Internal system clock
selection bit
(Note)
“0”
“1”
1/8
Watchdog timer H count
source selection bit
Reset
circuit
STP instruction disable bit
Watchdog timer H (12)
“FFF16” is set
when watchdog
timer control
register is written
to.
Internal reset
RESET
Watchdog timer L (8)
Note: Either high-speed, middle-speed or low-speed mode is selected by bit 7 of CPU mode register.
STP instruction
“FF16” is set when
watchdog timer
control register is
written to.
1/2
b0
STP instruction disable bit
0: STP instruction enabled
1: STP instruction disabled
Watchdog timer H count source selection bit
0: Watchdog timer L underflow
1: f(XIN)/8 or f(XCIN)/16
Watchdog timer H (for read-out of high-order 6 bit)
Watchdog timer control register
(WDTCON : address 002B16)
b7



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