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MAX969ESE-T

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MAX969ESE-T

IC COMPARATR 4 W/VOLT REF 16SOIC

Manufacturer: Analog Devices Inc./Maxim Integrated

Categories: Comparators

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Analog Devices Inc./Maxim Integrated MAX969ESE-T is a quad comparator featuring an integrated voltage reference, designed for applications requiring precise signal comparison. This component offers open-drain, rail-to-rail output capabilities, facilitating flexible interfacing with various logic families. With a low quiescent current of 22µA maximum and a typical input bias current of 0.05µA at 5.5V, it is suitable for power-sensitive systems. The comparator exhibits minimal hysteresis of ±1mV and a voltage input offset of 7mV maximum at 5.5V, ensuring accurate threshold detection. Operating across a wide temperature range of -40°C to 85°C, the MAX969ESE-T is housed in a 16-SOIC package. Its robust performance, indicated by a CMRR of 56.48dB and PSRR of 80dB, makes it valuable in industrial control and battery-powered equipment.

Additional Information

Series: -RoHS Status: ROHS3 CompliantManufacturer Lead Time: No lead time information availableProduct Status: ObsoletePackaging: Tape & Reel (TR)Datasheet:
Technical Details:
PackagingTape & Reel (TR)
Package / Case16-SOIC (0.154"", 3.90mm Width)
Output TypeOpen-Drain, Rail-to-Rail
Mounting TypeSurface Mount
Number of Elements4
Typewith Voltage Reference
Operating Temperature-40°C ~ 85°C
Voltage - Supply, Single/Dual (±)1.6V ~ 5.5V
Supplier Device Package16-SOIC
Propagation Delay (Max)20µs
Current - Quiescent (Max)22µA
Voltage - Input Offset (Max)7mV @ 5.5V
Current - Input Bias (Max)0.05µA @ 5.5V
Current - Output (Typ)-
CMRR, PSRR (Typ)56.48dB CMRR, 80dB PSRR
Hysteresis±1mV

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An integrated circuit (IC) is a semiconductor chip that contains transistors, resistors, capacitors, and other electronic components on a single silicon substrate. ICs are the foundation of modern electronics and power devices such as smartphones, computers, automotive systems, and industrial equipment.

Integrated circuits work by routing electrical signals through microscopic semiconductor components fabricated onto a silicon chip. Depending on the design, ICs can process, amplify, store, or control electronic data.

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