MAX969ESE+
- Mfr.Part #
- MAX969ESE+
- Manufacturer
- Analog Devices, Inc.
- Package / Case
- 16-SOIC (0.154, 3.90mm Width)
- Datasheet
- Download
- Description
- IC COMPARATOR R-R 16-SOIC
- Stock
- 299
- In Stock :
- 299
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- Manufacturer :
- Analog Devices, Inc.
- Product Category :
- Comparators
- Supply Voltage Limit-Max :
- 6V
- Nominal Supply Current :
- 14µA
- Packaging :
- Tube
- Hysteresis :
- ±1mV
- Voltage - Supply, Single/Dual (±) :
- 1.6V~5.5V
- Max Power Dissipation :
- 696mW
- Input Bias Current :
- 50nA
- Length :
- 10mm
- Base Part Number :
- MAX969
- Terminal Form :
- Gull wing
- CMRR, PSRR (Typ) :
- 56.48dB CMRR, 80dB PSRR
- Mount :
- Surface Mount
- Number of Functions :
- 4
- Voltage - Input Offset (Max) :
- 7mV @ 5.5V
- Power Supply Rejection Ratio (PSRR) :
- 80dB
- Factory Lead Time :
- 6 Weeks
- Number of Elements :
- 4
- Pin Count :
- 16
- Width :
- 4mm
- Max Supply Current :
- 14µA
- Current - Input Bias (Max) :
- 0.05μA @ 5.5V
- Moisture Sensitivity Level (MSL) :
- 1 (Unlimited)
- Power Supplies :
- 1.5/5.5V
- Mounting Type :
- Surface Mount
- Operating Temperature :
- -40°C~85°C
- JESD-609 Code :
- e3
- Response Time :
- 20000 ns
- Quiescent Current :
- 22μA
- Terminal Pitch :
- 1.27mm
- Package / Case :
- 16-SOIC (0.154, 3.90mm Width)
- RoHS Status :
- ROHS3 Compliant
- Peak Reflow Temperature (Cel) :
- 260
- Input Offset Voltage (Vos) :
- 7mV
- Lead Free :
- Lead Free
- Pbfree Code :
- yes
- Average Bias Current-Max (IIB) :
- 0.005μA
- Radiation Hardening :
- No
- ECCN Code :
- EAR99
- Propagation Delay :
- 10 μs
- Terminal Position :
- Dual
- Common Mode Rejection Ratio :
- 56.48 dB
- Height :
- 1.5mm
- Output Type :
- Open-Drain, Rail-to-Rail
- Supply Voltage :
- 3V
- Propagation Delay (Max) :
- 20μs
- Number of Terminations :
- 16
- Published :
- 2007
- Number of Pins :
- 16
- Type :
- with Voltage Reference
- Terminal Finish :
- Matte Tin (Sn)
- REACH SVHC :
- Unknown
- Datasheets
- MAX969ESE+

Comparators Analog Devices, Inc. MAX969ESE+ Overview
The MAX969ESE+ by Analog Devices, Inc. is a precision voltage comparator designed to deliver high performance in systems requiring precise voltage monitoring and control. This integrated circuit is housed in a robust 16SOIC package, ensuring reliable operation across various environmental conditions. The MAX969ESE+ stands out for its rail-to-rail output and low power consumption, making it an ideal choice for applications where energy efficiency and space are critical. Its fast response time and high accuracy are particularly beneficial in critical monitoring systems, ensuring rapid and reliable responses to changes in input voltage.
MAX969ESE+ Features
The MAX969ESE+ includes several key features that enhance its suitability for demanding applications. These include rail-to-rail output, which allows the comparator to operate effectively across the entire power supply range, providing greater flexibility in mixed-voltage systems. Additionally, its low power consumption is vital for battery-operated devices, while the push-pull TTL/CMOS outputs ensure compatibility with most digital interfaces, facilitating easy integration into existing designs.
MAX969ESE+ Applications
- Portable Medical Devices: In portable medical devices, the MAX969ESE+ can be used to monitor battery voltage levels, ensuring devices operate within safe limits and alerting when recharging is necessary.
- Power Supply Management: This comparator helps in managing power supply systems by monitoring over-voltage and under-voltage conditions, thereby protecting sensitive electronics from damage due to voltage fluctuations.
- Automotive Systems: In automotive electronics, the MAX969ESE+ ensures that critical system voltages are maintained within required thresholds, contributing to the safety and reliability of vehicle operations.
- Telecommunication Equipment: The device monitors voltage levels in communication infrastructure, helping to maintain consistent performance and reliability in network operations.
- Industrial Control Systems: It is used in control systems to compare different sensor inputs, facilitating automated decisions based on precise threshold measurements.
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