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40-DIP
Integrated Circuits (ICs)

ICL7126CPL+

Active
Analog Devices Inc./Maxim Integrated

LCD DRIVERS LOW-POWER, 3 1/2 DIGIT A/D CONVERTER

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40-DIP
Integrated Circuits (ICs)

ICL7126CPL+

Active
Analog Devices Inc./Maxim Integrated

LCD DRIVERS LOW-POWER, 3 1/2 DIGIT A/D CONVERTER

Technical Specifications

Parameters and characteristics for this part

SpecificationICL7126CPL+
Mounting TypeThrough Hole
Number of Channels [custom]1
Operating Temperature [Max]70 °C
Operating Temperature [Min]0 °C
Package / Case40-DIP (0.600
Resolution (Bits)3.5 Digit
Supplier Device Package40-PDIP
TypeDisplay Driver
Voltage - Supply9 V
Voltage Supply SourceSingle Supply

Pricing

Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly

DistributorPackageQuantity$Updated
DigikeyN/A 0$ 15.871m+
480$ 15.87
Tube 30$ 16.461m+
MouserN/A 1$ 23.371m+
10$ 18.28
20$ 16.27
50$ 13.56

Description

General part information

ICL7126 Series

The Maxim ICL7126 is a monolithic analog to digital converter with very high input impedance. On-board active components include segment drivers, segment decoders, voltage reference and a clock circuit. The ICL7126 directly drives a non-multiplexed liquid crystal (LCD) display, requiring no external display drive circuitry. Significantly reduced power consumption makes the ICL7126 a superior device, especially for portable systems.Versatility and accuracy are inherent features of this converter. The dual-slope conversion technique automatically rejects interference signals common in industrial environments. The true differential input and reference are particularly useful when making ratiometric measurements (ohms or bridge transducers), and the zero-integrator phase in Maxim's ICL7126 eliminates overrange hangover and hysteresis effects. The Zero Integrator phase also allows the use of larger auto zero capacitors reducing noise further. Finally, this device offers high accuracy by lowering rollover error to less than one count and zero reading drift to less than 1μV/°C.ApplicationsConductanceCurrentMaterial ThicknessPressureResistanceSpeedTemperatureVoltage