Manufacturer Part Number
MAX6751KA46+T
Manufacturer
Analog Devices
Introduction
The MAX6751KA46+T is part of Analog Devices' power management integrated circuit product line, specifically categorized under PMIC supervisors designed for monitoring multiple voltages.
Product Features and Performance
Dual voltage monitoring capability
Voltage thresholds at 4.625V, adjustable
Output types include both open drain and open collector
Features an active low reset
Reset timeout can be adjusted or selectable
Operates efficiently in a wide temperature range from -40°C to 125°C
Product Advantages
Provides reliable multi-voltage supervision to ensure system stability
Adjustable voltage threshold and reset timeout for flexible application use
Wide operating temperature range suitable for various harsh environments
Key Technical Parameters
Number of Voltages Monitored: 2
Voltage Threshold: 4.625V, adjustable
Output Type: Open Drain or Open Collector
Reset: Active Low
Reset Timeout: Adjustable/Selectable
Operating Temperature: -40°C ~ 125°C (TA)
Mounting Type: Surface Mount
Package / Case: SOT-23-8
Quality and Safety Features
Built to stringent quality standards upheld by Analog Devices
Robust design ensures reliability and safety in critical applications
Compatibility
Designed for surface mount applications, compatible with SOT-23-8 package layouts
Application Areas
Power management and monitoring in consumer electronics
Industrial systems requiring reliable voltage supervision
Automotive electronics with multi-voltage systems
Product Lifecycle
Currently categorized as Active product status
No known discontinuation or replacement issues, ensuring long-term availability and support
Several Key Reasons to Choose This Product
Robust dual voltage monitoring feature that enhances system reliability
Flexible design with adjustable parameters to fit specific application needs
High-performance capabilities under extreme temperature conditions
Reliable product with continuous manufacturer support and availability
Compact SOT-23-8 packaging suitable for space-constrained applications