STD130N4F6AG Description
The STD130N4F6AG is a high-performance, automotive-grade MOSFET (Metal Oxide) from STMicroelectronics. This N-channel device is designed for applications requiring high power dissipation, low on-resistance, and high input capacitance. With a drain-to-source voltage (Vdss) of 40V and a continuous drain current (Id) of 80A at 25°C, the STD130N4F6AG is ideal for demanding power management and motor control applications.
STD130N4F6AG Features
- High Power Dissipation: The STD130N4F6AG can handle a maximum power dissipation of 143W (Tc), making it suitable for high-power applications.
- Low On-Resistance: With a maximum Rds(on) of 3.6mOhm at 40A and 10V, this MOSFET offers low conduction losses and high efficiency.
- High Input Capacitance: The STD130N4F6AG has a maximum input capacitance (Ciss) of 4260 pF at 25V, allowing for fast switching and reduced noise.
- Robust Gate Charge: The maximum gate charge (Qg) is 70 nC at 10V, ensuring reliable operation in high-speed switching applications.
- Automotive Grade: Designed for automotive applications, the STD130N4F6AG meets the stringent requirements of the automotive industry.
- Surface Mount: The DPAK package allows for easy integration into surface-mount applications, reducing footprint and improving thermal performance.
STD130N4F6AG Applications
The STD130N4F6AG is ideal for a variety of high-power applications, including:
- Power Management: In automotive systems, industrial equipment, and power supplies, where high power dissipation and low on-resistance are critical.
- Motor Control: For electric vehicles, industrial motor drives, and HVAC systems, where high current and voltage ratings are required.
- Automotive Electronics: In various automotive electronic systems, such as engine control units, battery management systems, and infotainment systems, where reliability and performance are paramount.
Conclusion of STD130N4F6AG
The STD130N4F6AG is a high-performance, automotive-grade MOSFET that offers a unique combination of high power dissipation, low on-resistance, and high input capacitance. Its robust design and automotive-grade specifications make it an ideal choice for demanding power management and motor control applications. While the product is now considered obsolete, its performance benefits and unique features make it a valuable option for legacy systems and applications where high performance and reliability are critical.