参数资料
型号: ADM692AN
厂商: Analog Devices Inc
文件页数: 11/16页
文件大小: 0K
描述: IC SUPER MPU 4.4 100MA WD 8DIP
产品培训模块: Voltage Supervisor 101
标准包装: 50
类型: 备用电池电路
监视电压数目: 1
输出: 推挽式,图腾柱
复位: 低有效
复位超时: 最小为 35 ms
电压 - 阀值: 4.4V
工作温度: -40°C ~ 85°C
安装类型: 通孔
封装/外壳: 8-DIP(0.300",7.62mm)
供应商设备封装: 8-PDIP
包装: 管件
ADM690–ADM695
+5V INPUT
POWER
CONTROL
OSC SEL
BATTERY
10M ?
V BATT
PFI
V CC
ADM69x
PFO
LOW BATTERY
SIGNAL TO
μ P I/O PIN
INPUT*
D1
D2
ADM69x
OSC IN
20k ?
OPTIONAL
TEST LOAD
10M ?
CE OUT
CE IN
FROM μ P I/O PIN
APPLIES TEST LOAD
TO BATTERY
*LOW = INTERNAL TIMEOUT
HIGH = EXTERNAL TIMEOUT
Figure 20. Monitoring the Battery Status
Alternate Watchdog Input Drive Circuits
The watchdog feature can be enabled and disabled under pro-
gram control by driving WDI with a 3-state buffer (Figure 21a).
When three-stated, the WDI input will float thereby disabling
the watchdog timer.
Figure 21b. Programming the Watchdog Input
Replacing the Backup Battery
When changing the backup battery with system power on, spuri-
ous resets can occur when the battery is removed. This occurs
because the leakage current flowing out of the V BATT pin will
charge up the stray capacitance. If the voltage on V BATT reaches
within 50 mV of V CC , a reset pulse is generated.
WATCHDOG
STROBE
CONTROL
INPUT
WDI
ADM69x
If spurious resets during battery replacement are acceptable,
then no action is required. If not, then one of the following
solutions should be considered:
1. A capacitor from V BATT to GND. This gives time while the
capacitor is charging up to replace the battery. The leakage
current will charge up the external capacitor towards the V CC
Figure 21a. Programming the Watchdog Input
This circuit is not entirely foolproof, and it is possible that a
software fault could erroneously 3-state the buffer. This would
then prevent the ADM69x from detecting that the microproces-
sor is no longer operating correctly. In most cases a better
method is to extend the watchdog period rather than disabling
the watchdog. This may be done under program control using
the circuit shown in Figure 21b. When the control input is high,
the OSC SEL pin is low and the watchdog timeout is set by the
external capacitor. A 0.01 μ F capacitor sets a watchdog timeout
delay of 100 seconds. When the control input is low, the OSC
SEL pin is driven high, selecting the internal oscillator. The
100 ms or the 1.6 s period is chosen, depending on which diode
in Figure 21b is used. With D1 inserted the internal timeout is
set at 100 ms, while with D2 inserted the timeout is set at 1.6 s.
level. The time taken is related to the charging current, the
size of external capacitor and the voltage differential between
the capacitor and the charging voltage supply.
t = C EXT × V DIFF / I
The maximum leakage (charging) current is 1 μ A over tem-
perature and V DIFF = V CC –V BATT . Therefore, the capacitor
size should be chosen such that sufficient time is available to
make the battery replacement.
C EXT = T REQD (1 μ A /( V CC – V BATT ))
If a replacement time of 5 seconds is allowed and assuming a
V CC of 4.5 V and a V BATT of 3 V
C EXT = 3.33 μ F
V BATT
BATTERY
C EXT
ADM69x
Figure 22a. Preventing Spurious RESETS During
Battery Replacement
2. A resistor from V BATT to GND. This will prevent the voltage
on V BATT from rising to within 50 mV of V CC during battery
replacement.
REV. A
–11 –
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