參數(shù)資料
型號(hào): M38504M6A-XXXFP
元件分類: 微控制器/微處理器
英文描述: 8-BIT, MROM, 6.25 MHz, MICROCONTROLLER, PDSO42
封裝: 8.40 X 17.50 MM, 0.80 MM PITCH, PLASTIC, SSOP-42
文件頁(yè)數(shù): 31/90頁(yè)
文件大?。?/td> 899K
代理商: M38504M6A-XXXFP
Rev.2.10
2005.11.14
page 35 of 86
REJ03B0093-0210
3850 Group (Spec.A)
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, be-
cause of a software run-away). The watchdog timer consists of an
8-bit watchdog timer L and an 8-bit watchdog timer H.
Initial Value of Watchdog Timer
At reset or writing to the watchdog timer control register (address
003916), each of watchdog timer H and L is set to “FF16”. Any in-
struction which generates a write signal such as the instructions of
STA, LDM, CLB and others can be used to write. The data of bits
6 and 7 are only valid when writing to the watchdog timer control
register. Each of watchdog timer is set to “FF16” regardless of the
written data of bits 0 to 5.
Operation of Watchdog Timer
The watchdog timer stops at reset and starts to count down by
writing to the watchdog timer control register. An internal reset oc-
curs at an underflow of the watchdog timer H. The reset is
released after waiting for a reset release time and the program is
processed from the reset vector address. Accordingly, program-
ming is usually performed so that writing to the watchdog timer
control register may be started before an underflow of the watch-
dog timer H. If writing to the watchdog timer control register is not
performed once, the watchdog timer does not function.
Fig. 38 Structure of Watchdog timer control register
Bit 6 of Watchdog Timer Control Register
When bit 6 of the watchdog timer control register is “0”, the MCU
enters the stop mode by execution of STP instruction. Just after
releasing the stop mode, the watchdog timer restarts counting
(Note). When executing the WIT instruction, the watchdog timer
does not stop.
When bit 6 is “1”, execution of STP instruction causes an internal
reset. When this bit is set to “1” once, it cannot be rewritten to “0”
by program. Bit 6 is “0” at reset.
The necessary time after writing to the watchdog timer control reg-
ister to an underflow of the watchdog timer H is shown as follows.
When bit 7 of the watchdog timer control register is “0”:
32 s at XCIN = 32.768 kHz frequency and
65.536 ms at XIN = 16 MHz frequency.
When bit 7 of the watchdog timer control register is “1”:
125 ms at XCIN = 32.768 kHz frequency and
256
s at XIN = 16 MHz frequency.
Note: The watchdog timer continues to count for waiting for a stop mode
release time. Do not generate an underflow of the watchdog timer H
during that time.
Fig. 37 Block diagram of Watchdog timer
XIN
Data bus
XCIN
“10”
“00”
“01”
Main clock division
ratio selection bits
(Note)
“0”
“1”
1/16
Watchdog timer H count
source selection bit
Reset
circuit
STP instruction function selection bit
Watchdog timer H (8)
“FF16” is set when
watchdog timer
control register is
written to.
Internal reset
RESET
Watchdog timer L (8)
Note: Any one of high-speed, middle-speed or low-speed mode is selected by bits 7 and 6 of the CPU mode register.
STP instruction
“FF16” is set when
watchdog timer
control register is
written to.
b0
STP instruction function selection bit
0: Entering Stop mode by execution of STP instruction
1: Internal reset by execution of STP instruction
Watchdog timer H count source selection bit
0: Watchdog timer L underflow
1: f(XIN)/16 or f(XCIN)/16
Watchdog timer H (for read-out of high-order 6 bit)
Watchdog timer control register
(WDTCON : address 003916)
b7
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