


Fairchild (onsemi)
FDC6329L
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FDC6329L Description
FDC6329L Description
The FDC6329L from Fairchild (onsemi) is a high-performance Load Switch IC designed for power distribution in compact electronic systems. Packaged in an SSOT-6 form factor, this SMD/SMT-mounted device operates within a 2.5V to 8V supply range, delivering 2.5A of output current with a low 105 mOhms maximum on-resistance. Its RoHS-compliant construction ensures environmental compliance, while its 700 mW power dissipation capability and +150°C maximum operating temperature make it suitable for demanding applications.
FDC6329L Features
- Low On-Resistance: 105 mOhms max minimizes power loss and improves efficiency.
- Wide Operating Voltage: 2.5V to 8V range supports diverse power supply configurations.
- High Current Handling: 2.5A output current for robust power delivery.
- Compact & Reliable: SSOT-6 package saves board space while ensuring durability.
- Thermal Performance: 700 mW power dissipation and +150°C tolerance for high-temperature environments.
- Compliance: RoHS-compliant and EAR99 (ECCN) certified for global use.
FDC6329L Applications
- Portable Electronics: Ideal for smartphones, tablets, and wearables due to low power loss and compact size.
- Industrial Controls: Suitable for PLC modules and sensor interfaces requiring reliable power switching.
- Automotive Systems: Used in infotainment and lighting controls where thermal resilience is critical.
- IoT Devices: Enables efficient power management in battery-operated sensors and edge devices.
- Power Sequencing: Facilitates controlled power-up/down in FPGA and microcontroller-based systems.
Conclusion of FDC6329L
The FDC6329L stands out as a high-efficiency, space-saving load switch with superior thermal and electrical performance. Its low on-resistance, wide voltage range, and robust current handling make it a preferred choice for portable, industrial, and automotive applications. Engineers benefit from its reliability, compliance, and compact footprint, ensuring optimal power management in modern electronic designs.



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