Manufacturer Part Number
MP020A-5GS-Z
Manufacturer
Monolithic Power Systems
Introduction
The MP020A-5GS-Z is a high-performance, offline flyback converter power management IC (PMIC) from Monolithic Power Systems. It is designed for a wide range of AC-DC conversion applications, offering high efficiency, reliable operation, and robust protection features.
Product Features and Performance
Isolated flyback converter topology
Wide input voltage range of 6.6V to 28V
High switching frequency of 120kHz
High power output of up to 8W
Comprehensive protection features including current limiting, over-power, over-temperature, and over-voltage protection
Product Advantages
Compact 8-SOIC package for space-efficient design
High efficiency for improved energy savings
Robust protection features for reliable operation
Wide operating temperature range of -40°C to 125°C
Key Reasons to Choose This Product
Excellent power conversion efficiency for energy-efficient designs
Reliable and safe operation with comprehensive protection features
Flexible input voltage range and high power output for diverse applications
Small footprint and easy integration for space-constrained designs
Quality and Safety Features
Isolated topology for improved safety and reliability
Compliance with relevant safety and regulatory standards
Rigorous quality control and testing during manufacturing
Compatibility
The MP020A-5GS-Z is compatible with a wide range of power supplies and electronic devices that require an efficient and reliable AC-DC conversion solution.
Application Areas
Power supplies for consumer electronics, industrial equipment, and medical devices
Chargers and adapters for mobile devices, laptops, and other portable electronics
Industrial control systems and automation equipment
Product Lifecycle
The MP020A-5GS-Z is an active product in our website's sales team's portfolio. There are no immediate plans for discontinuation, and customers are encouraged to contact our website's sales team for the latest information on product availability and any potential alternative models.