MAX693EWE+ Maxim Integrated Products, MAX693EWE+ Datasheet - Page 15

IC SUPERVISOR MPU 16-SOIC

MAX693EWE+

Manufacturer Part Number
MAX693EWE+
Description
IC SUPERVISOR MPU 16-SOIC
Manufacturer
Maxim Integrated Products
Type
Battery Backup Circuitr
Datasheets

Specifications of MAX693EWE+

Number Of Voltages Monitored
1
Output
Push-Pull, Push-Pull
Reset
Active High/Active Low
Reset Timeout
35 ms Minimum
Voltage - Threshold
4.4V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
16-SOIC (0.300", 7.5mm Width)
Monitored Voltage
4.4 V
Output Type
Active High, Active Low, Push-Pull
Manual Reset
Not Resettable
Watchdog
Watchdog
Battery Backup Switching
Backup
Supply Voltage (max)
5.5 V
Supply Voltage (min)
4.5 V
Supply Current (typ)
10000 uA
Maximum Power Dissipation
600 mW
Maximum Operating Temperature
+ 85 C
Mounting Style
SMD/SMT
Minimum Operating Temperature
- 40 C
Power Fail Detection
Yes
Undervoltage Threshold
4.25 V
Overvoltage Threshold
4.5 V
Power-up Reset Delay (typ)
70 ms
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
The V
the battery switchover comparator and should not
exceed 0.03V/µs. A standard rule of thumb for filter
capacitance on most regulators is on the order of 100µF
per amp of current. When the power supply is shut off or
the main battery is disconnected, the associated initial
V
The V
nentially, which more than satisfies the maximum fall-time
requirement.
A way to help the watchdog timer keep a closer watch
on software execution involves setting and resetting the
watchdog input at different points in the program,
rather than “pulsing” the watchdog input high-low-high
or low-high-low. This technique avoids a “stuck” loop
where the watchdog timer continues to be reset within
the loop, keeping the watchdog from timing out. Figure
14 shows an example flow diagram where the I/O dri-
ving the watchdog input is set high at the beginning of
the program, set low at the beginning of every subrou-
tine or loop, then set high again when the program
returns to the beginning. If the program should “hang”
in any subroutine, the I/O is continually set low and the
watchdog timer is allowed to time out, causing a reset
or interrupt to be issued.
CC
fall rate is just the inverse or 1A/100µF = 0.01V/µs.
CC
CC
fall rate decreases with time as V
fall time is limited by the propagation delay of
Watchdog Software Considerations
______________________________________________________________________________________
Maximum V
Microprocessor Supervisory Circuits
CC
CC
Fall Time
falls expo-
Figure 14. Watchdog Flow Diagram
OR PROGRAM LOOP
SUBROUTINE
SET WDI
RETURN
START
LOW
HIGH
END
WDI
SET
15

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