Manufacturer Part Number
MAX77663KEXJ+
Manufacturer
Analog Devices
Introduction
The MAX77663KEXJ+ is a high-efficiency, synchronous step-down DC-DC converter with an integrated power MOSFET. It is designed to provide a regulated output voltage from a higher input voltage source, typically a battery or other DC power supply. The converter features a wide input voltage range, fast transient response, and advanced power saving modes for extended battery life.
Product Features and Performance
Wide input voltage range: 3.5V to 26V
Integrated high-side and low-side power MOSFETs
Adjustable output voltage from 0.6V to 5.5V
Peak efficiency up to 95%
Switching frequency up to 2.2 MHz
Low quiescent current of 25 μA in standby mode
Thermal shutdown and overcurrent protection
Product Advantages
Compact solution with integrated power stage
High efficiency for extended battery life
Wide input voltage range for versatile applications
Advanced power saving modes for low power consumption
Robust protection features for reliable operation
Key Reasons to Choose This Product
High-performance and energy-efficient power conversion
Suitable for a wide range of portable and industrial applications
Reliable and safe operation with built-in protection features
Easy to integrate and configure for quick product development
Quality and Safety Features
Thermally enhanced package for improved heat dissipation
Overcurrent and thermal shutdown protection
RoHS-compliant and lead-free package
Compatibility
The MAX77663KEXJ+ is compatible with a variety of microcontrollers, processors, and other electronic devices that require a regulated power supply.
Application Areas
Portable electronics (smartphones, tablets, wearables)
Industrial automation and control equipment
Automotive electronics
Battery-powered devices and systems
Product Lifecycle
The MAX77663KEXJ+ is an obsolete product, meaning it is no longer in active production. Customers should contact our website's sales team or their authorized distributors for information on available alternative or equivalent models.