Manufacturer Part Number
LNK6428K-TL
Manufacturer
power-integrations
Introduction
The LNK6428K-TL is a highly integrated, high-voltage flyback switcher IC from Power Integrations. It is designed for offline power supply applications up to 10W, featuring advanced control and protection functions for reliable and efficient operation.
Product Features and Performance
Integrated 725V power MOSFET
Flyback topology with up to 85kHz switching frequency
55% maximum duty cycle
Comprehensive protection features including current limiting, open loop, over-temperature, and short-circuit protection
Wide operating temperature range of -40°C to 150°C (TJ)
Small 12-BESOP package with exposed pad for improved thermal performance
Product Advantages
Highly integrated design reduces component count and simplifies power supply design
Advanced control and protection features ensure reliable and efficient operation
Wide operating temperature range suitable for a variety of applications
Compact package size enables space-constrained designs
Key Reasons to Choose This Product
Robust and reliable performance for demanding power supply applications
Improved efficiency and thermal management for better system-level performance
Simplified design and reduced component count for faster time-to-market
Comprehensive protection features enhance product safety and reliability
Quality and Safety Features
Meets UL and IEC safety standards
RoHS and REACH compliant
Rigorous quality control and testing procedures
Compatibility
The LNK6428K-TL is compatible with a wide range of offline power supply applications, including adapters, chargers, and industrial power supplies.
Application Areas
Adapters and chargers for consumer electronics
Industrial power supplies
LED drivers
Home appliances
Medical equipment
Product Lifecycle
The LNK6428K-TL is an active product, and our website's sales team continues to support and manufacture this model. There are no immediate plans for discontinuation. Customers are advised to contact our website's sales team for information on any potential equivalent or alternative models that may become available in the future.