ON Semiconductor FDMF3160 Smart Power Stage (SPS) Module
The ON Semiconductor FDMF3160 is a high-performance, fully optimized Smart Power Stage (SPS) module that offers an integrated solution for advanced DC/DC applications. This power module is specifically designed to meet the needs of high-efficiency and high-density power conversion in computing and telecommunication equipment.
Key Features
- Integrated Power Stage: The FDMF3160 combines high- and low-side MOSFETs and a driver IC in a single package, streamlining the design process and reducing the footprint on the PCB.
- High-Efficiency: With its state-of-the-art technology, the FDMF3160 achieves excellent efficiency, making it suitable for applications where power consumption is critical.
- Optimized Thermal Performance: The module's design and materials are chosen to enhance thermal performance, ensuring reliability even under high power operation.
- Monolithic Integration: The integration of components within the module reduces parasitic inductance and resistance, improving overall performance.
- Power Density: Its compact form factor allows for high power density, which is essential for modern, space-constrained electronic devices.
Applications
The FDMF3160 is versatile and can be used in a wide range of applications, including:
- Multi-phase DC/DC converters for CPU and GPU power supplies
- Memory power supplies
- Point of Load (POL) modules
- Telecommunication equipment
- Data center servers and storage systems
Technical Specifications
The FDMF3160 offers a comprehensive set of technical specifications that make it a robust choice for power management solutions:
- Voltage range: Optimized for 5V gate drive
- High-current capability
- Integrated high-precision current and temperature sensors
- Low inductance power loop
- Over-temperature protection
- Under-voltage lockout (UVLO) for both high-side and low-side
- Compact 5x5 mm² PQFN package
With the FDMF3160, ON Semiconductor provides a high-quality, efficient, and reliable solution for advanced power conversion that meets the rigorous demands of modern electronic devices.