STD25NF10LA N-Channel MOSFET 100V 25A Transistor in TO-220 Package by STMicroelectronics

  • This device operates as a high-efficiency N-channel MOSFET, enabling effective power switching and control.
  • It features a maximum drain-source voltage suitable for medium-voltage applications, ensuring safe operation under specified loads.
  • The compact TO-220 package reduces board space, facilitating easier integration into various electronic systems.
  • Ideal for power management in automotive or industrial circuits, it helps maintain stable performance under varying conditions.
  • Constructed with robust materials and tested for electrical endurance, it offers reliable operation over extended periods.
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STD25NF10LA Overview

The STD25NF10LA is a high-performance N-channel MOSFET designed for efficient switching and power management in industrial and automotive applications. With a low on-resistance and fast switching capability, this transistor supports reliable operation under demanding conditions, optimizing power efficiency and thermal performance. Its robust design ensures durability and consistent performance in high-current environments. Engineers and sourcing specialists value this device for its balance of electrical characteristics and integration ease. Detailed specifications and performance data make it a dependable choice for power conversion, motor control, and load switching solutions. For further information, visit IC Manufacturer.

STD25NF10LA Technical Specifications

ParameterValueUnit
Drain-Source Voltage (VDS)100V
Continuous Drain Current (ID)25A
Gate Threshold Voltage (VGS(th))2?C4V
Maximum Gate-Source Voltage (VGS)??20V
Static Drain-Source On-Resistance (RDS(on))??0.035?? @ VGS=10V
Total Gate Charge (Qg)35nC
Power Dissipation (PD)100W
Operating Temperature Range-55 to 150??C

STD25NF10LA Key Features

  • Low on-resistance: Minimizes conduction losses to enhance efficiency and reduce heat generation in power circuits.
  • High continuous drain current rating: Supports heavy loads and high current switching, ensuring reliable operation under demanding conditions.
  • Robust gate voltage tolerance: ??20V maximum gate-source voltage protects the device against voltage spikes and enhances durability.
  • Fast switching speed: Enables efficient high-frequency operation, suitable for PWM motor control and DC-DC converters.

Typical Applications

  • Power management in industrial motor drives, where efficient switching and thermal stability are critical for sustained performance and reliability.
  • DC-DC converters requiring low on-resistance to optimize power efficiency and minimize energy losses.
  • Load switching in automotive electronics, ensuring dependable operation in harsh environments with wide temperature ranges.
  • General-purpose high-current switching applications that demand robust and efficient MOSFET performance.

STD25NF10LA Advantages vs Typical Alternatives

This device offers a superior combination of low on-resistance and high current capacity, which reduces power dissipation compared to many typical MOSFETs. Its robust gate voltage tolerance and fast switching capability improve operational reliability and energy efficiency. These advantages make it well-suited for industrial and automotive power applications where durability and thermal management are essential, outperforming alternatives with higher losses or lower current ratings.

STD25NF10LA Brand Info

The STD25NF10LA is manufactured by STMicroelectronics, a global leader in semiconductor solutions. STMicroelectronics is renowned for delivering high-quality discrete components and power devices that meet stringent industrial standards. This MOSFET is part of their portfolio of power transistors designed for efficient energy management and reliable switching in demanding environments. The company??s commitment to innovation and quality ensures consistent performance and support for engineers and sourcing specialists worldwide.

FAQ

What is the maximum drain-source voltage rating for this MOSFET?

The maximum drain-source voltage for this device is 100 volts, allowing it to handle medium to high voltage power switching applications safely without breakdown.

How does the low on-resistance affect system performance?

A low on-resistance reduces conduction losses

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