STW28NM50N N-Channel MDmesh Power MOSFET
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STW28NM50N
STW28NM50N Transistor: N-MOSFET; MDmesh™ ||; unipolar; 500V; 13A; 150W; TO247
£8.75
STW28NM50N Transistor: N-MOSFET; MDmesh™ ||; unipolar; 500V; 13A; 150W; TO247
Unleash unparalleled power efficiency and performance in your high-voltage applications with the STW28NM50N N-Channel MDmesh Power MOSFET. This cutting-edge power transistor is meticulously engineered to meet the demanding requirements of modern power conversion systems, offering a robust solution for designers seeking optimal energy management. Leveraging STMicroelectronics' innovative MDmesh technology, the STW28NM50N delivers a superior combination of low on-resistance (Rds(on)) and reduced gate charge, which are critical parameters for achieving high efficiency and minimizing power losses. Ideal for a diverse range of industrial and consumer electronics, this MOSFET provides the reliable switching capability necessary for next-generation power supplies, motor drives, and lighting solutions.
The STW28NM50N boasts an impressive 500V breakdown voltage and a continuous drain current of 13A, making it perfectly suited for high-power switching applications. Its substantial power dissipation capability of 150W, housed within the thermally efficient TO-247 package, ensures stable operation even under heavy loads and elevated temperatures. This superior thermal performance is crucial for extending the lifespan of your electronic systems and maintaining consistent output in challenging environments. Designers can confidently integrate this N-channel MOSFET into switched-mode power supplies (SMPS), power factor correction (PFC) stages, and DC-DC converters, knowing it will deliver consistent, high-frequency switching with minimal energy waste, contributing to overall system reliability and reduced operational costs.
STMicroelectronics' proprietary MDmesh technology is at the heart of the STW28NM50N's exceptional performance. This advanced super-junction structure significantly reduces the Rds(on) compared to conventional MOSFETs, while simultaneously improving the switching speed and minimizing switching losses. The result is a power device that operates with remarkable efficiency, translating directly into less heat generation and a smaller heatsink requirement, thereby reducing the overall size and cost of your power modules. This technological advantage makes the STW28NM50N a prime choice for compact and high-density power designs, where space and thermal management are critical considerations. Achieve superior energy conversion and thermal stability with this state-of-the-art power semiconductor.
Beyond its core electrical characteristics, the STW28NM50N is designed for ease of integration and long-term reliability. Its TO-247 package offers excellent mechanical robustness and simplified mounting, ensuring a secure and efficient thermal path to heatsinks. This package style is widely adopted in high-power applications due to its proven performance and ease of manufacturing integration. The device's gate threshold voltage is optimized for compatibility with standard gate driver ICs, streamlining the design of the drive circuit and reducing component count. Engineers can rely on the STW28NM50N for applications demanding high surge current capability and robust avalanche energy ratings, providing an extra layer of protection against transient events and ensuring stable operation over the product's lifespan.
The applications for the STW28NM50N are extensive and diverse, spanning across various sectors. In industrial automation, it can be found in high-power motor control units and robotic systems. For renewable energy, it's instrumental in solar inverters and wind turbine converters. Consumer electronics benefit from its efficiency in high-performance computing power supplies and electric vehicle charging stations. Its ability to handle significant power levels with high efficiency makes it a cornerstone component for designers aiming to create environmentally friendly and cost-effective power solutions. By choosing this advanced power MOSFET, you are investing in a component that not only meets current performance standards but also anticipates future demands for energy efficiency and system resilience across the power electronics landscape.
Empower your high-voltage designs with the STW28NM50N N-Channel MDmesh Power MOSFET – the ultimate choice for efficiency, reliability, and performance. With its 500V/13A rating, innovative MDmesh technology, and robust TO-247 package, it provides the foundation for superior power conversion in any demanding application. Don't compromise on the quality and efficiency of your power stage. Invest in the STW28NM50N today to achieve optimal thermal management, reduce energy losses, and build systems that truly stand apart. Take the decisive step towards enhanced power delivery and innovation by incorporating this exceptional power MOSFET into your next-generation electronic designs.
| Product Name | STW28NM50N N-Channel MDmesh Power MOSFET |
|---|---|
| SKU | STW28NM50N |
| Price | £8.75 |
| STW28NM50N N-Channel MDmesh Power MOSFET Color | As per image |
| Category | Mosfets |
| Brand | Nikko Electronics ltd |
| Product Code | STW28NM50N |
| Availability | Yes |
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Yes, certain models of STW28NM50N N-Channel MDmesh Power MOSFET are designed for high-temperature conditions.
STW28NM50N N-Channel MDmesh Power MOSFET has a long shelf life when stored in ideal conditions, typically up to several years. Rest depends on storage conditions and environment.
Select STW28NM50N N-Channel MDmesh Power MOSFET based on factors like voltage, current rating, size, and application.
Yes, proper installation is crucial for the optimal performance of STW28NM50N N-Channel MDmesh Power MOSFET; consult the installation guide.
Use the formula based on voltage and current ratings provided in the STW28NM50N N-Channel MDmesh Power MOSFET datasheet.
Yes, STW28NM50N N-Channel MDmesh Power MOSFET is designed for long-term use under recommended operating conditions.
Overheating of STW28NM50N N-Channel MDmesh Power MOSFET might indicate overuse; ensure proper cooling and consult the datasheet.