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IPD50R520CP
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IPD50R520CP Description
IPD50R520CP Description
The IPD50R520CP is a high-performance N-Channel MOSFET from Infineon Technologies, designed for applications requiring high power and efficiency. With a drain-source voltage (Vdss) of 500V and a continuous drain current (Id) of 7.1A at 25°C, this device is suitable for a wide range of high-power electronic systems.
IPD50R520CP Features
- High Power Handling: The IPD50R520CP can handle power dissipation up to 66W (Tc), making it ideal for high-power applications.
- Low On-Resistance: With an RDS(on) of only 520mOhm at 3.8A and 10V, this MOSFET offers low power losses and high efficiency.
- Fast Switching: The device has a gate charge (Qg) of 17nC at 10V, enabling fast switching and reducing switching losses.
- Robust Construction: The IPD50R520CP is designed for surface mount applications and has a moisture sensitivity level (MSL) of 1, indicating unlimited storage time before reflow soldering.
- Reliability: This MOSFET is part of the CoolMOS™ CP series, known for their excellent reliability and performance in demanding applications.
IPD50R520CP Applications
The IPD50R520CP is ideal for various high-power applications, including:
- Power Supplies: Due to its high voltage and current ratings, it is suitable for power supply designs.
- Motor Controls: The low on-resistance and fast switching capabilities make it an excellent choice for motor control applications.
- Industrial Automation: Its robust construction and high power handling make it suitable for industrial automation systems.
- Automotive Electronics: The IPD50R520CP can be used in automotive electronics, such as power windows and seat controls.
Conclusion of IPD50R520CP
The IPD50R520CP is a high-performance N-Channel MOSFET from Infineon Technologies, offering a combination of high power handling, low on-resistance, and fast switching capabilities. Its robust construction and reliability make it an excellent choice for a wide range of high-power applications. Although the product is now obsolete, it remains a popular choice for legacy systems and applications where its performance characteristics are critical.



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