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PC87570-ICC/VUL 数据表(PDF) 67 Page - National Semiconductor (TI)

[Old version datasheet] Texas Instruments acquired National semiconductor.
部件名 PC87570-ICC/VUL
功能描述  PC87570 Keyboard and Power Management Controller
PDF  168 Pages
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制造商  NSC [National Semiconductor (TI)]
网页  http://www.national.com
标志 NSC - National Semiconductor (TI)

PC87570-ICC/VUL 数据表(HTML) 67 Page - National Semiconductor (TI)

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Real-Time Clock (RTC) and Advanced Power Control (APC)
67
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6.2.11
Alarms
The timekeeping function can be set to generate an alarm
when the current time reaches a stored alarm time. After
each RTC time update (every 1 second), the seconds, min-
utes, hours, day of the week, date of month, month and year
counters are compared with their corresponding registers in
the alarm settings. If equal, bit 5 (AF) of the CRC Register
is set. If the Alarm Interrupt Enable bit was previously set
(bit 5 of the CRB Register), IRQ8 interrupt request pin will
also go low (IRQ8 = 0). (Note: This pin is an open-drain out-
put and needs an external pull-up.)
Any alarm register may be set to “Don’t Care” by setting bits
7 and 6 to 11. This combination, not used by any BCD or bi-
nary time codes, results in a periodic alarm. The rate of this
periodic alarm is determined by the registers that were set
to “Don’t Care”.
For example, if only the seconds and minutes alarm regis-
ters are set to “Care”, an interrupt will be generated every
hour at the specified minute and second. If only the sec-
onds, minutes and hours alarm registers are set to “Care”,
an interrupt will be generated every day at the specified
hour, minute and second.
6.2.12
Power Supply
The PC87570 is supplied from two supply voltages, as
shown in Figure 6-4:
q
System standby power supply voltage, VSB
q
Backup voltage, from low capacity Lithium battery.
A standby (help) voltage (VSB) from the external AC/DC
power supply powers the RTC and APC under normal con-
ditions.
Figure 6-4. Power Supply Connections
Figure 6-5 represents a typical battery configuration. No ex-
ternal diode is required to meet the UL standard, due to the
internal switch and internal serial resistor RUL.
Figure 6-5. Typical Battery Configuration
The RTC/APC module is supplied from one of two power
supplies, VCC or VBAT, according to their levels. An internal
voltage comparator delivers the control signals to a pair of
switches. Battery backup voltage VBAT maintains the cor-
rect time and saves the CMOS memory when the VCC volt-
age is absent, due to power failure or disconnection of the
external AC/DC input power supply or VCC main battery.
To assure that the module uses power from VCC and not
from VBAT, the VCC voltage should be maintained above its
minimum, as detailed in Table 19-8. "Voltage Thresholds"
on page 136.
The actual voltage point where the module switches from
VBAT to VCC is lower than the minimum workable battery
voltage, but high enough to guarantee the correct function-
ality of the oscillator and the CMOS RAM.
Figure 6-6 shows typical battery current consumption dur-
ing battery-backed operation, and Figure 6-7 during normal
operation.
Figure 6-6. Typical Battery Current During Battery
Backed Power Mode
Figure 6-7. Typical Battery Current During Normal
Operation Mode
RTC
Host PC
Power
Backup
External
VDD
VSB
VDD
VSB
VBAT
ONCTL
PC87570
Battery
AC Power
Supply
VDD
VSB
VBAT
ONCTL
VCC
PC0
VBAT
and
APC
VBAT
0.1
µF
VSB
VCC
CF
CF
BT1
0.1
µF
1. Place a 0.1
µF capacitor on each V
CC power supply
pin as close as possible to the pin, and also on VBAT.
2. Place a 10-47
µF capacitor on the common power
supply net, as close as possible to the device.
RTC
and
APC
VPP
RUL
PC87570
VREF
IBAT (µA)
1.0
0.9
0.8
0.7
2.4 3.0 3.6
VBAT (V)
IBAT (µA)
0.20
0.15
0.10
0.05
3.0 3.3 3.6
VCC
Note: Battery voltage in this test is 3.0V.
4.5
5.0
5.5
(V)



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