
Power Integrations
LNK3696G-TL
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LNK3696G-TL Description
LNK3696G-TL Description
The LNK3696G-TL from Power Integrations is a high-performance offline switcher IC designed for flyback topology applications. This surface-mount device integrates a 900V breakdown voltage MOSFET, making it suitable for robust power conversion in compact designs. With an 11W power rating and 66kHz switching frequency, it delivers efficient energy conversion while maintaining high reliability. The IC features isolated output and complies with RoHS and REACH standards, ensuring environmental and regulatory compatibility. Packaged in Tape & Reel (TR) for automated assembly, it is ideal for high-volume manufacturing.
LNK3696G-TL Features
- Integrated 900V MOSFET: Enhances durability and reduces external component count.
- Comprehensive Protection: Includes current limiting, over-temperature, and over-voltage fault protection for system safety.
- High Efficiency: 65% duty cycle and 66kHz switching frequency optimize power delivery.
- Compact Design: 8-pin SMD package saves board space in space-constrained applications.
- Wide Operating Range: Suitable for universal input voltage applications.
- Automation-Ready: MSL 3 (168 hours) moisture sensitivity and TR packaging streamline production.
LNK3696G-TL Applications
This IC is ideal for:
- Low-power AC/DC adapters for consumer electronics.
- Auxiliary power supplies in industrial systems.
- LED lighting drivers requiring high-voltage isolation.
- Home appliances with stringent efficiency requirements.
- Battery chargers where compact size and reliability are critical.
Conclusion of LNK3696G-TL
The LNK3696G-TL stands out for its high integration, robust protection features, and efficiency, making it a superior choice for offline power conversion. Its 900V MOSFET and isolated output ensure reliability in demanding environments, while its surface-mount design caters to modern manufacturing needs. Engineers designing compact, high-efficiency power supplies will find this IC an optimal solution for cost-sensitive and space-constrained applications.



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