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DS1558B Datasheet(PDF) 9 Page - Maxim Integrated Products

Part # DS1558B
Description  Watchdog Clock with NV RAM Control
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Manufacturer  MAXIM [Maxim Integrated Products]
Direct Link  https://www.maximintegrated.com/en.html
Logo MAXIM - Maxim Integrated Products

DS1558B Datasheet(HTML) 9 Page - Maxim Integrated Products

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DS1558
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Table 3. ALARM MASK BITS
AM4
AM3
AM2
AM1
ALARM RATE
1
1
1
1
Once per second
1
1
1
0
When seconds match
1
1
0
0
When minutes and seconds match
1
0
0
0
When hours, minutes, and seconds match
0
0
0
0
When date, hours, minutes, and seconds match
When the RTC register values match alarm register settings, AF is set to a 1. If AE is also set to a 1, the
alarm condition activates the IRQ /FT pin. The IRQ /FT signal is cleared by a read or write to the flags
register (address 7FFF0h). When CE is active, the IRQ /FT signal can be cleared by having the address
stable for as short as 15ns and either OE or WE active, but is not guaranteed to be cleared unless tRC is
fulfilled (Figure 2). Once the address has been selected for at least 15ns, the IRQ /FT signal can be cleared
immediately, but is not guaranteed to be cleared until tRC is fulfilled (Figure 3). The alarm flag is also
cleared by a read or write to the flags register, but the flag does not change states until the end of the
read/write cycle and the IRQ /FT signal has been cleared.
The IRQ /FT pin can also be activated in the battery-backed mode. The IRQ /FT goes low if an alarm
occurs and both ABE and AE are set. The ABE and AE bits are cleared during the power-up transition,
but an alarm generated during power-up sets AF. Therefore, the AF bit can be read after system power-up
to determine if an alarm was generated during the power-up sequence. Figure 4 illustrates alarm timing
during the backup-battery mode and power-up states.
Figure 2. CLEARING IRQ WAVEFORMS ACTIVE
Figure 3. CLEARING IRQ WAVEFORMS


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