ON Semiconductor NTMFS10N3D2C N-Channel Power MOSFET
The ON Semiconductor NTMFS10N3D2C is a high-performance N-Channel Power MOSFET designed for a wide range of applications, including power supplies, motor control, and high-efficiency DC-DC converters. This MOSFET features advanced technology that provides low on-resistance, reduced gate charge, and exceptional thermal performance, making it an ideal choice for power management tasks where efficiency is crucial.
Key Features
- Low RDS(on): The NTMFS10N3D2C boasts an extremely low on-state resistance, which minimizes conduction losses and improves overall efficiency.
- High Continuous Drain Current: With a high continuous drain current (ID) rating, this MOSFET can handle significant power without overheating, making it suitable for demanding applications.
- Fast Switching Performance: The device's fast switching capabilities reduce switching losses, which is particularly beneficial in high-frequency power conversion systems.
- Robust Thermal Characteristics: Its excellent thermal properties ensure stable operation even at elevated temperatures, contributing to the reliability of the end application.
- PowerTrench® Technology: ON Semiconductor's proprietary PowerTrench® technology is used to optimize the device for low voltage operation, which enhances performance in low voltage applications.
Applications
- DC-DC Converters
- Power Supply Units (PSUs)
- Motor Drives
- Computing Systems
- Automotive Applications
- Power Management Circuits
Specifications
The NTMFS10N3D2C operates with a drain-to-source voltage (VDSS) of 30V and a continuous drain current (ID) of 100A. Its gate threshold voltage (VGS(th)) is specified as 2.5V, which is conducive to low voltage drive conditions. The device is housed in a compact, surface-mount 5x6mm footprint, which is ideal for space-constrained applications.
Overall, the ON Semiconductor NTMFS10N3D2C N-Channel Power MOSFET is a robust, efficient solution for power management requirements, offering designers a combination of performance, reliability, and versatility.