STL24N60M2 N-Channel MOSFET 600V 18A PowerFlat HV

STL24N60M2 N-Channel MOSFET 600V 18A PowerFlat HV

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High-Performance Power MOSFET for Demanding Applications

The STL24N60M2 from STMicroelectronics represents the cutting-edge evolution of MDmesh™ II Plus technology, delivering exceptional efficiency and reliability in high-voltage power conversion systems. This 600V N-channel MOSFET combines advanced silicon design with ST's proprietary PowerFlat™ (8x8) HV packaging to create a component that's redefining performance benchmarks in industrial electronics.

Engineered for Efficiency

At the heart of this device lies a sophisticated MOSFET architecture optimized for minimal conduction losses. With a maximum Rds(on) of just 210mΩ at 9A and 10V gate drive, the STL24N60M2 demonstrates remarkable efficiency in power switching applications. The device's advanced gate charge management system, featuring 29nC typical Qg at 10V, enables rapid switching transitions while maintaining thermal stability even under heavy load conditions.

ParameterValue
Drain-Source Voltage600V
Continuous Drain Current18A
Rds(on) Max210mΩ
Gate Charge29nC
Operating TemperatureUp to 150°C
Thermal Performance Redefined

The innovative PowerFlat™ HV package isn't just about compact form factor - it's a thermal engineering marvel. With its 8-PowerVDFN configuration and enhanced heat dissipation capabilities, this device maintains exceptional thermal stability even in demanding environments. The surface-mount design facilitates automated assembly while ensuring reliable mechanical connections in harsh operating conditions.

What truly sets the STL24N60M2 apart is its combination of high-voltage capability with exceptional switching performance. The device's 1060pF input capacitance at 100V Vds enables efficient parallel operation in multi-device configurations, making it ideal for high-current power supplies and motor control applications where reliability is paramount.

Industrial-Grade Reliability

Engineered for industrial environments, this MOSFET meets the most stringent reliability requirements. Its ±25V gate voltage rating provides robust protection against transient conditions, while the 4V Vgs(th) threshold ensures stable operation across temperature extremes. The device's 125W power dissipation rating at case temperature demonstrates its ability to handle demanding power conversion tasks in confined spaces.

Applications benefiting from this advanced component include:

  • Switch-mode power supplies for industrial equipment
  • Motion control systems in automation
  • Renewable energy inverters
  • High-efficiency LED lighting systems
  • Motor drives for industrial machinery

Design Flexibility and Compatibility

The STL24N60M2's compatibility with standard 10V gate drive circuits simplifies integration with common PWM controllers. Its optimized switching characteristics reduce electromagnetic interference (EMI) generation, easing compliance with international EMC standards. The device's robust short-circuit withstand capability further enhances system reliability in challenging operating conditions.

For design engineers seeking to push the boundaries of power density and efficiency, this MOSFET offers an ideal combination of performance parameters. The device's availability in tape & reel packaging (TR) facilitates automated PCB assembly, while its Pb-free construction meets modern environmental compliance requirements.

Conclusion

The STL24N60M2 from STMicroelectronics stands as a testament to the continuous evolution of power semiconductor technology. By combining high-voltage capability with low on-resistance and advanced packaging, this component enables the development of more compact, efficient, and reliable power systems. Whether you're designing next-generation industrial equipment or upgrading existing power architectures, this MDmesh™ II Plus device offers a compelling solution that balances performance, reliability, and ease of use.

Tags: Power Electronics, High Voltage MOSFET, Industrial Transistors, Surface Mount Technology, Power Conversion

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