MAX706CSA+ Maxim Integrated Products, MAX706CSA+ Datasheet - Page 7

IC MPU SUPERVISORY CIRCUIT 8SOIC

MAX706CSA+

Manufacturer Part Number
MAX706CSA+
Description
IC MPU SUPERVISORY CIRCUIT 8SOIC
Manufacturer
Maxim Integrated Products
Type
Simple Reset/Power-On Resetr
Datasheet

Specifications of MAX706CSA+

Number Of Voltages Monitored
1
Output
Push-Pull, Totem Pole
Reset
Active Low
Reset Timeout
140 ms Minimum
Voltage - Threshold
4.4V
Operating Temperature
0°C ~ 70°C
Mounting Type
Surface Mount
Package / Case
8-SOIC (3.9mm Width)
Monitored Voltage
4.4 V
Undervoltage Threshold
4.25 V
Overvoltage Threshold
4.5 V
Manual Reset
Resettable
Watchdog
Yes
Battery Backup Switching
No
Power-up Reset Delay (typ)
280 ms
Supply Voltage (max)
5.5 V
Supply Voltage (min)
1 V
Supply Current (typ)
350 uA
Maximum Power Dissipation
471 mW
Mounting Style
SMD/SMT
Maximum Operating Temperature
+ 70 C
Chip Enable Signals
No
Minimum Operating Temperature
0 C
Output Type
Active Low or Push-Pull
Power Fail Detection
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
The power-fail comparator can be used for various pur-
poses because its output and noninverting input are
not internally connected. The inverting input is internal-
ly connected to a 1.25V reference.
Figure 3. MAX705/MAX706/MAX813L Watchdog Timing
Figure 4. MAX705/MAX706 RESET, MR, and WDO Timing with
WDI Three-Stated. The MAX707/MAX708/MAX813L RESET
output is the inverse of RESET shown.
RESET
WDO
(RESET)
MR
RESET
WDO
WDI
( ) ARE FOR MAX813L ONLY.
V
+5V
+5V
+5V
0V
0V
CC
0V
+5V
+5V
+5V
+5V
0V
0V
0V
0V
t
WP
V
RT
t
_______________________________________________________________________________________
WD
RESET EXTERNALLY
TRIGGERED BY MR
V
RT
Power-Fail Comparator
t
RS
MR EXTERNALLY DRIVEN LOW
t
WD
Low-Cost, µP Supervisory Circuits
t
RS
t
MD
t
MR
t
RS
t
WD
To build an early-warning circuit for power failure, con-
nect the PFI pin to a voltage divider (see Typical
Operating Circuit ). Choose the voltage divider ratio so
that the voltage at PFI falls below 1.25V just before the
+5V regulator drops out. Use PFO to interrupt the µP
so it can prepare for an orderly power-down.
When V
output no longer sinks current—it becomes an open cir-
cuit. High-impedance CMOS logic inputs can drift to
undetermined voltages if left undriven. If a pull-down
resistor is added to the RESET pin as shown in Figure 5,
any stray charge or leakage currents will be drained to
ground, holding RESET low. Resistor value (R1) is not
critical. It should be about 100kΩ, large enough not to
load RESET and small enough to pull RESET to ground.
Monitor voltages other than the unregulated DC by
connecting a voltage divider to PFI and adjusting the
ratio appropriately. If required, add hysteresis by con-
necting a resistor (with a value approximately 10 times
the sum of the two resistors in the potential divider net-
work) between PFI and PFO. A capacitor between PFI
and GND will reduce the power-fail circuit’s sensitivity
to high-frequency noise on the line being monitored.
RESET can be asserted on other voltages in addition to
the +5V V
pulse when PFI drops below 1.25V. Figure 6 shows the
MAX705-MAX708 configured to assert RESET when the
+5V supply falls below the reset threshold, or when the
+12V supply falls below approximately 11V.
The power-fail comparator can also monitor a negative
supply rail (Figure 7). When the negative rail is good (a
negative voltage of large magnitude), PFO is low, and
when the negative rail is degraded (a negative voltage
of lesser magnitude), PFO is high. By adding the resis-
tors and transistor as shown, a high PFO triggers reset.
As long as PFO remains high, the MAX705-
MAX708/MAX813L will keep reset asserted (RESET =
low, RESET = high). Note that this circuit’s accuracy
depends on the PFI threshold tolerance, the V
and the resistors.
__________Applications Information
CC
Monitoring Voltages Other Than the
CC
falls below 1V, the MAX705-MAX708 RESET
line. Connect PFO to MR to initiate a RESET
Monitoring a Negative Voltage
Output Down to V
Ensuring a Valid RESET
Unregulated DC Input
CC
CC
= 0V
line,
7

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