STP9NK65ZFP Description
The STP9NK65ZFP is a high-performance N-Channel MOSFET from STMicroelectronics, designed for applications requiring robust power handling and efficient switching. With a drain-to-source voltage rating of 650V and a continuous drain current of 6.4A at 25°C, this MOSFET is well-suited for a variety of power electronics applications.
STP9NK65ZFP Features
- High Voltage Rating: The STP9NK65ZFP boasts a drain-to-source voltage (Vdss) of 650V, making it suitable for high-voltage applications.
- Efficient Power Handling: Capable of handling a power dissipation of up to 30W (Tc), this MOSFET is designed for efficient power management.
- Low On-State Resistance: With an Rds(on) of 1.2Ω at 3.2A and 10V, the STP9NK65ZFP minimizes power losses during operation.
- Robust Gate Drive: A maximum gate-source voltage (Vgs) of ±30V ensures reliable operation under various gate drive conditions.
- Compliance and Environmental: This MOSFET is REACH unaffected and RoHS3 compliant, adhering to environmental standards.
- Moisture Sensitivity Level: With an MSL of 1, the STP9NK65ZFP is suitable for environments with unlimited storage time before reflow.
STP9NK65ZFP Applications
The STP9NK65ZFP is ideal for applications where high voltage and efficient power handling are crucial. Some specific use cases include:
- Power Supplies: Due to its high voltage rating and low on-state resistance, this MOSFET is perfect for power supply designs.
- Motor Controls: The STP9NK65ZFP's robustness makes it suitable for motor control applications, ensuring efficient and reliable operation.
- Industrial Automation: In industrial settings, this MOSFET can be used for controlling high-voltage devices, ensuring safety and performance.
Conclusion of STP9NK65ZFP
The STP9NK65ZFP from STMicroelectronics stands out for its high-voltage capability, efficient power handling, and compliance with environmental standards. Its unique features make it an excellent choice for power supply, motor control, and industrial automation applications, offering a reliable and efficient solution for high-voltage electronics design.