Manufacturer Part Number
MAX887HESA+T
Manufacturer
Analog Devices
Introduction
The MAX887HESA+T is a versatile, high-efficiency, adjustable output step-down (buck) DC-DC switching regulator.
Product Features and Performance
Switching regulator with buck topology
Adjustable output voltage
Single output channel
Low minimum input voltage of 3.5V
High maximum input voltage of 11V
Adjustable output voltage from 1.25V to 10.5V
Output current capability of 600mA
Switching frequency range from 250kHz to 350kHz
Integrated synchronous rectifier for improved efficiency
Reliable operation at temperatures ranging from -40°C to 85°C
Surface mount SOIC-8 package for compact design
Product Advantages
High efficiency for power saving
Stable adjustable output for design flexibility
Wide range of input voltage suitable for various applications
Thermal shutdown and overcurrent protection for enhanced safety
Low Rds(on) internal switches to increase efficiency
Key Technical Parameters
Input Voltage Min: 3.5V
Input Voltage Max: 11V
Output Voltage Min: 1.25V
Output Voltage Max: 10.5V
Output Current: 600mA
Switching Frequency: 250kHz to 350kHz
Temperature Range: -40°C to 85°C
Quality and Safety Features
Overcurrent protection
Thermal shutdown
Built-in synchronous rectifier
Wide operating temperature range
Compatibility
Compatible with various input sources within 3.5V to 11V range
Suitable for multiple battery technologies
Adaptable to a broad spectrum of electronics due to adjustable output
Application Areas
Portable devices
Power supply modules
Consumer electronics
Telecommunications
Computing equipment
Product Lifecycle
Active product lifecycle stage
Not indicated as nearing discontinuation
Several Key Reasons to Choose This Product
Efficient power conversion for battery life extension
Adjustable output for versatile applications
Protection features safeguard against power anomalies
Operates effectively across wide temperature ranges
Space-saving surface mount package suitable for compact designs
Well-suited for a broad range of electronics due to flexibility in input voltage