Manufacturer Part Number
MAX17501AATB+T
Manufacturer
analog-devices
Introduction
The MAX17501AATB+T is a high-efficiency, step-down DC-DC converter that features a wide 4.5V to 60V input voltage range and a fixed 3.3V output voltage. Designed for industrial and automotive applications, this compact device offers a range of advanced features to ensure reliable and efficient power conversion.
Product Features and Performance
Wide input voltage range of 4.5V to 60V
Fixed 3.3V output voltage
Up to 500mA output current
High efficiency of up to 95%
600kHz switching frequency
Synchronous rectification for improved efficiency
Thermal shutdown and overcurrent protection
Small 10-pin WFDFN package with exposed thermal pad
Product Advantages
Wide input voltage range suitable for a variety of applications
Compact size and high efficiency for space-constrained designs
Robust protection features for reliable operation
Ease of use with fixed output voltage configuration
Key Reasons to Choose This Product
Reliable and efficient power conversion for industrial and automotive systems
Versatile input voltage range accommodates a wide range of power sources
Compact package and high efficiency enable compact and energy-efficient designs
Advanced protection features ensure safe and reliable operation
Quality and Safety Features
Thermal shutdown and overcurrent protection for safe operation
Meets industrial and automotive quality standards
Compatibility
The MAX17501AATB+T is compatible with a variety of industrial and automotive applications that require a wide input voltage range and a fixed 3.3V output.
Application Areas
Industrial automation and control systems
Automotive electronics and systems
Portable and battery-powered devices
Distributed power architectures
Product Lifecycle
The MAX17501AATB+T is an active product, and there are no immediate plans for discontinuation. However, as technology evolves, it's always best to consult with our website's sales team for the latest information on available options and any potential alternative models.