TPS65218D0RSLT Description
The TPS65218D0RSLT from Texas Instruments is a highly integrated power management IC (PMIC) designed for ARM Cortex-A8/A9 processors, offering a compact and efficient solution for multi-rail power requirements. Housed in a 48-pin VQFN package, this surface-mount device supports an input voltage range of 2.2V to 5.5V and delivers seven configurable outputs, making it ideal for space-constrained applications. Compliant with ROHS3 and REACH standards, it features a moisture sensitivity level (MSL) of 3 (168 hours) and is supplied in Tape & Reel (TR) packaging for automated assembly.
TPS65218D0RSLT Features
- Multi-Output Flexibility: Seven independent outputs with adjustable voltage rails, enabling precise power sequencing for processors and peripherals.
- Wide Input Range: Operates from 2.2V to 5.5V, accommodating diverse power sources such as Li-ion batteries or regulated supplies.
- High Integration: Combines buck converters, LDOs, and load switches, reducing external component count and PCB footprint.
- Robust Protection: Includes thermal shutdown, overcurrent protection, and undervoltage lockout (UVLO) for enhanced system reliability.
- Optimized for ARM Processors: Tailored for Cortex-A8/A9 architectures, ensuring seamless compatibility and performance.
TPS65218D0RSLT Applications
- Portable Electronics: Smartphones, tablets, and handheld devices requiring efficient power management.
- Embedded Systems: Industrial controllers, IoT edge devices, and automotive infotainment systems.
- FPGA/Processor Power: Ideal for applications needing multiple voltage rails with strict sequencing requirements.
- Battery-Powered Devices: Leverages low quiescent current and high efficiency to extend battery life.
Conclusion of TPS65218D0RSLT
The TPS65218D0RSLT stands out as a versatile, high-performance PMIC, offering integration, efficiency, and reliability for ARM-based designs. Its compact form factor, multi-output capability, and robust protection features make it a superior choice over discrete solutions, particularly in portable and embedded applications. Engineers seeking a streamlined power architecture for Cortex-A8/A9 systems will find this IC an optimal solution.