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TMP93CS32F датащи(PDF) 23 Page - Toshiba Semiconductor

номер детали TMP93CS32F
подробное описание детали  CMOS 16-Bit Microcontroller
PDF  180 Pages
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производитель  TOSHIBA [Toshiba Semiconductor]
домашняя страница  http://www.semicon.toshiba.co.jp/eng
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TMP93CS32F датащи(HTML) 23 Page - Toshiba Semiconductor

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TMP93CS32
2004-02-10
93CS32-21
4. STOP mode
The STOP mode is selected to stop all internal circuits including the internal
oscillator. The pin status in the STOP mode depends on setting of a bit in the
watchdog timer mode register WDMOD<DRVE>. (See Figure 3.3.5 for setting of
WDMOD<DRVE>.) Table 3.3.5 summarizes the state of these pins in the STOP
mode.
The STOP mode is released by external interrupts ( NMI , INT0). When the
STOP mode is released, the system clock output starts after the warm-up time
required to attain stable oscillation. The warm-up time can be set using
WDMOD<WARM>. See the example of warm-up time (Table 3.3.4).
In a system which supplies stable clock generated by an external oscillator, the
warm-up time can be reduced by using the setting of T45CR<QCU>.
Figure 3.3.8 illustrates the timing for releasing the halt state by interrupts
during the STOP mode.
Figure 3.3.8 Timing Chart of Halt State Release by Interrupts in STOP Mode
Table 3.3.4 The Example of Warm-up Time after Releasing the STOP Mode
Warm-up Time [ms]
Clock Operation
Frequency after
the STOP Mode
WDMOD<WARM>
= 0
WDMOD<WARM>
= 1
Remark
fc
fc/2
fc/4
fc/8
fc/16
0.8192
1.6384
3.2768
6.5536
13.1072
3.2768
6.5536
13.1072
26.2144
52.4288
fc
= 20 MHz
How to calculate the warm-up time
WDMOD<WARM>
= “0”: 214/(Clock operation frequency after releasing the HALT in STOP mode)
WDMOD<WARM>
= “1”: 216/(Clock operation frequency after releasing the HALT in STOP mode)
Address
Data
Address
Data
STOP
mode
X1
CLK
A0 to A23
ALE
AD0 to AD15
RD
WR
NMI
INT0
(Level)
INT0
(Rising edge)
Warm-up
time
Address
+ 2
Address



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