ON Semiconductor NVMFS5C456NLWFAFT1G MOSFET
The NVMFS5C456NLWFAFT1G is a high-performance, single N-channel Power MOSFET product from ON Semiconductor, a leading provider of semiconductor-based solutions. This MOSFET is designed to meet the rigorous demands of power regulation in a variety of applications, making it an ideal choice for engineers and designers seeking efficient and reliable power management solutions.
Constructed with ON Semiconductor's advanced technology, the NVMFS5C456NLWFAFT1G offers low on-resistance and high switching performance, which translates into reduced conduction losses and improved overall energy efficiency. This feature is particularly important in applications where power conservation is crucial, such as in battery-powered devices, automotive systems, and energy-sensitive electronics.
The device boasts a compact footprint with a 5x6 mm² PQFN package, which is optimized for minimal space occupation on a PCB, while still delivering robust thermal performance. This makes it an excellent choice for space-constrained applications that require high power density and superior heat dissipation.
Key specifications of the NVMFS5C456NLWFAFT1G include:
- Drain-to-Source Voltage (VDS): 40V
- Continuous Drain Current (ID): 300A
- Power Dissipation (PD): 125W
- RDS(on): 0.75mΩ (typical) at VGS = 10V
- Gate Charge (Qg): 100nC (typical)
With a robust and durable design, the NVMFS5C456NLWFAFT1G is also characterized by its low gate charge and capacitance, which contribute to fast switching speeds, thus enabling high-frequency operation and reduced switching losses.
ON Semiconductor's NVMFS5C456NLWFAFT1G is RoHS compliant and designed to meet the environmental standards, ensuring that it is suitable for use in an eco-conscious market. Whether it's for use in power supplies, motor drives, or automotive applications, this MOSFET promises efficiency, reliability, and performance.
Overall, the NVMFS5C456NLWFAFT1G is a testament to ON Semiconductor's commitment to providing advanced power management solutions that meet the evolving needs of modern electronics.