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MAX6468US37D3-T

Description
Supervisory Circuits MPU Supervisory Reset Circuit
CategoryPower/power management    The power supply circuit   
File Size1MB,10 Pages
ManufacturerMaxim
Websitehttps://www.maximintegrated.com/en.html
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MAX6468US37D3-T Overview

Supervisory Circuits MPU Supervisory Reset Circuit

MAX6468US37D3-T Parametric

Parameter NameAttribute value
Is it lead-free?Contains lead
Is it Rohs certified?incompatible
MakerMaxim
Parts packaging codeSOT-143
package instructionTO-253, SOT-143, 4 PIN
Contacts4
Reach Compliance Codenot_compliant
ECCN codeEAR99
Adjustable thresholdYES
Analog Integrated Circuits - Other TypesPOWER SUPPLY SUPPORT CIRCUIT
JESD-30 codeR-PDSO-G4
JESD-609 codee0
length2.92 mm
Humidity sensitivity level1
Number of channels1
Number of functions1
Number of terminals4
Maximum operating temperature125 °C
Minimum operating temperature-40 °C
Package body materialPLASTIC/EPOXY
encapsulated codeLSOP
Encapsulate equivalent codeTO-253
Package shapeRECTANGULAR
Package formSMALL OUTLINE, LOW PROFILE
Peak Reflow Temperature (Celsius)245
power supply1.2/5.5 V
Certification statusNot Qualified
Maximum seat height1.22 mm
Maximum supply current (Isup)0.013 mA
Maximum supply voltage (Vsup)5.5 V
Minimum supply voltage (Vsup)1 V
Nominal supply voltage (Vsup)1.8 V
surface mountYES
technologyBICMOS
Temperature levelAUTOMOTIVE
Terminal surfaceTin/Lead (Sn/Pb)
Terminal formGULL WING
Terminal pitch1.92 mm
Terminal locationDUAL
Threshold voltage nominal+3.7V
Maximum time at peak reflow temperatureNOT SPECIFIED
width1.3 mm
MAX6467/MAX6468
Microprocessor Supervisory Reset Circuits
with Edge-Triggered, One-Shot Manual Reset
General Description
The MAX6467/MAX6468 microprocessor (µP) supervisory
circuits monitor single power-supply voltages from +1.8V
to +5.0V and assert a reset if the supply voltage drops
below its preset threshold. An edge-triggered, one-shot
manual reset function ensures that the µP enters the reset
mode for a fixed timeout period only, even in the event
of a continuously asserted manual reset. The MAX6467/
MAX6468 significantly improve system reliability compared
to traditional manual reset supervisory circuits.
A variety of factory-trimmed threshold options accommodate
different supply voltages and tolerances, eliminating
external components. The factory-set thresholds range
from +1.575V to +4.625V to monitor +5.0V, +3.3V, +3.0V,
+2.5V, and +1.8V supplies with various tolerances. Reset
timeout periods of 150ms (min) and 1200ms (min) are
available to accommodate different µP platforms.
A single, active-low
RESET
output asserts when V
CC
drops below its threshold or if the edge-triggered
MR
asserts low.
RESET
remains low for the reset time-
out period after V
CC
rises above its threshold and for
a fixed, one-shot timeout period after a manual reset
input falling edge.
RESET
remains valid as long as V
CC
remains above +1V. Open-drain (MAX6467) and push-
pull (MAX6468) output options provide additional flexibility
in the system design.
The MAX6467/MAX6468 are offered in the space-saving
4-pin SOT143 package and the ultra-small 4-pin SC70
package and are specified over the automotive (-40°C to
+125°C) temperature range.
Features
Precision Factory-Set Reset Threshold Voltages for
+5.0V, +3.3V, +3.0V, +2.5V, and +1.8V Supplies
Edge-Triggered Manual Reset Input with One-Shot
Pulsed Reset Output
Two Reset Timeout Period Options (150ms or
1200ms min)
Immune to Short Voltage Transients
Low Supply Current (3µA at V
CC
= +1.8V)
RESET Valid to V
CC
= +1V
Active-Low Open-Drain and Push-Pull RESET
Output Options
-40°C to +125°C Operating Temperature Range
Small 4-Pin SC70 and SOT143 Packages
No External Components Required
Pin Compatible with MAX811, MAX6315, MAX6384,
and MAX6386
Ordering Information
appears at end of data sheet.
Typical Operating Circuit
+1.0V TO +5.5V
Applications
V
CC
V
CC
Cell Phones/PDAs
Embedded Control Systems
Industrial Equipment
Automotive Products
Portable/Battery-Powered Equipment
Medical Devices
DSL Modems
MP3 Players
GPS Systems
Digital Cameras
MAX6467
MAX6468
MR
RESET
RESET
INPUT
µP
GND
GND
19-2523; Rev 5; 10/15
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