MAX6710OUT-T Maxim Integrated, MAX6710OUT-T Datasheet - Page 7

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MAX6710OUT-T

Manufacturer Part Number
MAX6710OUT-T
Description
Supervisory Circuits
Manufacturer
Maxim Integrated
Series
MAX6700, MAX6710r
Datasheet

Specifications of MAX6710OUT-T

Number Of Voltages Monitored
4
Monitored Voltage
1.8 V, 2.5 V, 3 V, 3.3 V, 5 V
Undervoltage Threshold
2.55 V, 1.53 V, Adjustable
Overvoltage Threshold
2.7 V, 1.62 V, Adjustable
Output Type
Active Low, Open Drain
Manual Reset
Resettable
Watchdog
No Watchdog
Battery Backup Switching
No Backup
Power-up Reset Delay (typ)
200 ms
Supply Voltage - Max
5.5 V
Maximum Operating Temperature
+ 85 C
Mounting Style
SMD/SMT
Package / Case
SOT-23
Chip Enable Signals
No
Maximum Power Dissipation
695.7 mW
Minimum Operating Temperature
- 40 C
Power Fail Detection
No
Supply Voltage - Min
1 V
Figure 3.
Figure 4. Interfacing to Different Logic-Supply Voltage
Figure 5. Setting the Auxiliary Monitor
Voltage µP Supervisory Circuits in SOT Package
RESET
V
IN_
TH_
RESET Output Timing Diagram
IN2 = +3.3V
MAX6700
MAX6710
IN2
GND
V
t
RD
INTH
R1
R2
_______________________________________________________________________________________
RESET
Low-Voltage, High-Accuracy, Triple/Quad
10%
100kΩ
V
REF
RESET
= 0.62V
R1 = R2
GND
+5V
V
t
RP
CC
(
V
0.62V
INTH
V
TH_
- 1
)
90%
V
monitored voltage. IN2 powers all other options for the
MAX6710 and is a monitored voltage. When any supply
drops below its threshold, the reset output asserts low
and remains low while either IN1 or IN2 is above 1.0V.
The MAX6700/MAX6710 offer several monitor options
with adjustable reset thresholds. The threshold voltage at
each adjustable IN_ input is typically 0.62V. To monitor a
voltage > 0.62V, connect a resistor-divider network to the
circuit as shown in Figure 5.
or, solved in terms of R1:
Because the MAX6700/MAX6710 have a guaranteed
input current of ±0.2µA (±0.4µA for IN1) on their
adjustable inputs, resistor values up to 100kΩ can be
used for R2 with < 1% error. The MAX6700/MAX6710Q
include an internal voltage clamp (1.5V typ) at each of
the adjustable voltage inputs. An input voltage higher
than 1.5V induces a higher input current.
Connect unused monitor inputs to a supply voltage
greater in magnitude than their specified threshold volt-
ages. For unused IN_ adjustable inputs, connect a 1MΩ
series resistor between the unused input and IN2 (or
V
tion (device power-supply pin). Do not connect unused
monitor inputs to ground or allow them to float.
Figure 6 shows an application circuit adding manual reset
to the MAX6710. Depressing the pushbutton switch short-
circuits the analog input to ground and initiates a RESET
pulse. The switch must be open for at least 140ms in
order to deassert the RESET output. No external switch
debounce is required. Use a small capacitor to improve
noise immunity when using long leads from the pushbut-
ton switch to the adjustable input.
The MAX6700/MAX6710 are normally powered from the
monitored IN2 or from the V
inputs are immune to short supply transients. For higher
immunity in noisy applications, connect a 0.1µF bypass
capacitor from the IN2 input to ground. Add capacitance
to IN1, IN3, and IN4 to increase their noise immunity.
CC
CC
) to limit the bias current. Use IN2 for normal opera-
Power-Supply Bypassing and Grounding
powers the MAX6700/MAX6710Q and is not a
V
R1 = R2 ((V
INTH
Adding Manual Reset Capability
= 0.62V x (R1 + R2) / R2
INTH
CC
Adjustable Thresholds
/ 0.62V) - 1)
supply input. All monitored
Unused Inputs
(MAX6710)
7

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