DS1557 Maxim, DS1557 Datasheet - Page 4

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DS1557

Manufacturer Part Number
DS1557
Description
The DS1557 is a full-function, year-2000-compliant (Y2KC), real-time clock/calendar (RTC) with an RTC alarm, watchdog timer, power-on reset, battery monitor, and 512k x 8 nonvolatile static RAM
Manufacturer
Maxim
Datasheet

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DATA WRITE MODE
The DS1557 is in the write mode whenever WE and CE are in their active state. The start of a write is
referenced to the latter occurring transition of WE or CE. The addresses must be held valid throughout
the cycle. CE and WE must return inactive for a minimum of t
read or write cycle. Data in must be valid t
afterward. In a typical application, the OE signal will be high during a write cycle. However, OE can be
active provided that care is taken with the data bus to avoid bus contention. If OE is low prior to WE
transitioning low, the data bus can become active with read data defined by the address inputs. A low
transition on WE will then disable the outputs t
DATA RETENTION MODE
The 5V device is fully accessible and data can be written and read only when V
However, when V
internal clock registers and SRAM are blocked from any access. When V
point V
battery. RTC operation and SRAM data are maintained from the battery until V
levels.
The 3.3V device is fully accessible and data can be written and read only when V
When V
switched from V
than V
below V
nominal levels.
All control, data, and address signals must be powered down when V
BATTERY LONGEVITY
The DS1557 has a lithium power source that is designed to provide energy for the clock activity, and
clock and RAM data retention when the V
supply is sufficient to power the DS1557 continuously for the life of the equipment in which it is
installed. For specification purposes, the life expectancy is 10 years at 25C with the internal clock
oscillator running in the absence of V
INTERNAL BATTERY MONITOR
The DS1557 constantly monitors the battery voltage of the internal battery. The Battery Low Flag (BLF)
bit of the Flags Register (B4 of 7FFF0h) is not writable and should always be a 0 when read. If a 1 is ever
present, an exhausted lithium energy source is indicated and both the contents of the RTC and RAM are
questionable.
POWER-ON RESET
A temperature compensated comparator circuit monitors the level of V
fail trip point, the RST signal (open drain) is pulled low. When V
signal continues to be pulled low for a period of 40 ms to 200 ms. The power-on reset function is
independent of the RTC oscillator and thus is operational whether or not the oscillator is enabled.
SO
SO
CC
SO
, the device power is switched from V
(battery supply level), device power is switched from the V
. RTC operation and SRAM data are maintained from the battery until V
falls below V
CC
CC
to the internal backup lithium battery when V
is below the power-fail point V
PF
, access to the device is inhibited. If V
CC
.
CC
supply is not present. The capability of this internal power
DS
WEZ
CC
prior to the end of the write and remain valid for t
4 of 17
to the internal backup lithium battery when V
after WE goes active.
PF
(point at which write protection occurs) the
WR
PF
CC
CC
prior to the initiation of a subsequent
is less than V
CC
CC
returns to nominal levels, the RST
drops below V
is powered down.
pin to the internal backup lithium
CC
CC
. When V
falls below the battery switch
CC
SO
CC
CC
is returned to nominal
CC
, the device power is
PF
is greater than V
is greater than V
. If V
falls to the power
CC
is returned to
PF
is greater
CC
drops
DH
PF
PF
.
.

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