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ICL7665S_06 Datasheet, PDF (1/14 Pages) Intersil Corporation – CMOS Micropower Over/Under Voltage Detector
®
Data Sheet
April 5, 2006
ICL7665S
FN3182.8
CMOS Micropower Over/Under Voltage
Detector
The ICL7665S Super CMOS Micropower Over/Under
Voltage Detector contains two low power, individually
programmable Voltage detectors on a single CMOS chip.
Requiring typically 3µA for operation, the device is intended
for battery-operated systems and instruments which require
high or low voltage warnings, settable trip points, or fault
monitoring and correction. The trip points and hysteresis of
the two voltage detectors are individually programmed via
external resistors. An internal bandgap-type reference
provides an accurate threshold voltage while operating from
any supply in the 1.6V to 16V range.
The ICL7665S, Super Programmable Over/Under Voltage
Detector is a direct replacement for the industry standard
ICL7665B offering wider operating voltage and temperature
ranges, improved threshold accuracy (ICL7665SA), and
temperature coefficient, and guaranteed maximum supply
current. All improvements are highlighted in the electrical
characteristics section. All critical parameters are
guaranteed over the entire commercial and industrial
temperature ranges.
Pinout
ICL7665S
(SOIC, PDIP)
TOP VIEW
OUT 1 1
HYST 1 2
SET 1 3
GND 4
8 V+
7 OUT 2
6 SET 2
5 HYST 2
Features
• Guaranteed 10µA Maximum Quiescent Current Over
Temperature
• Guaranteed Wider Operating Voltage Range Over Entire
Operating Temperature Range
• 2% Threshold Accuracy (ICL7665SA)
• Dual Comparator with Precision Internal Reference
• 100ppm/°C Temperature Coefficient of Threshold Voltage
• 100% Tested at 2V
• Output Current Sinking Ability . . . . . . . . . . . . Up to 20mA
• Individually Programmable Upper and Lower Trip Voltages
and Hysteresis Levels
• Pb-Free Plus Anneal Available (RoHS Compliant)
Applications
• Pocket Pagers
• Portable Instrumentation
• Charging Systems
• Memory Power Back-Up
• Battery Operated Systems
• Portable Computers
• Level Detectors
1
CAUTION: These devices are sensitive to electrostatic discharge; follow proper IC Handling Procedures.
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