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SPD18P06P
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SPD18P06P Description
SPD18P06P Description
The SPD18P06P is a high-performance MOSFET P-CH 60V 18.6A TO252-3 from Infineon Technologies. This single FET is designed for applications requiring high power dissipation and low on-resistance. With a maximum drain-source voltage of 60V and a continuous drain current of 18.6A at 25°C, the SPD18P06P offers excellent performance in demanding electronic systems.
SPD18P06P Features
- Technology: MOSFET (Metal Oxide) - Provides high efficiency and low power loss.
- Input Capacitance (Ciss): 860 pF @ 25 V - Minimizes input capacitance for faster switching.
- Gate Charge (Qg): 33 nC @ 10 V - Reduces switching losses and improves efficiency.
- Drain to Source Voltage (Vdss): 60 V - Suitable for high voltage applications.
- Power Dissipation (Max): 80W (Tc) - Capable of handling high power loads.
- Rds On (Max): 130mOhm @ 13.2A, 10V - Offers low on-resistance for minimal power loss.
- Vgs(th) (Max): 4V @ 1mA - Ensures reliable gate control.
- Mounting Type: Surface Mount - Ideal for compact and space-constrained designs.
- Series: SIPMOS® - Known for its superior performance and reliability.
SPD18P06P Applications
The SPD18P06P is ideal for a variety of high-power applications, including:
- Power Supplies: Due to its high voltage and current ratings, it is suitable for power supply designs.
- Motor Controls: Its low on-resistance and high current capability make it ideal for motor control applications.
- Automotive Electronics: The high power dissipation and robustness of the SPD18P06P make it suitable for automotive electronics.
- Industrial Controls: Its ability to handle high power loads and high voltages makes it a good fit for industrial control systems.
Conclusion of SPD18P06P
The SPD18P06P is a high-performance MOSFET from Infineon Technologies, offering excellent technical specifications and performance benefits. Its low on-resistance, high voltage and current ratings, and robust construction make it ideal for a wide range of high-power applications. While it is now considered obsolete, its unique features and advantages still make it a valuable option for specific use cases where high performance and reliability are critical.



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