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PBYL1625B

Part No PBYL1625B
Manufacturer NXP / Nexperia
Catalog HOT - SALES and EOL Components (N - P)
Sample
Rohs State Need to verify
ECAD Module
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Manufacturer NXP
Win Source Part Number 268666-PBYL1625B
Popularity Low
Supply and Demand Status Limited
Ultra Librarian 3D Model Ultra Librarian PBYL1625B CAD Model

Description

NXP PBYL1625B Schottky Barrier Rectifier

The NXP PBYL1625B is a robust Schottky barrier rectifier designed for high-efficiency power conversion applications. This component is part of NXP's extensive line of discrete semiconductor products, known for their reliability and performance in challenging environments.

Key Features:

  • Low Forward Voltage Drop: The PBYL1625B features a low forward voltage drop, which enhances power efficiency by minimizing power loss during conduction.
  • High Surge Current Capability: It is capable of withstanding high surge currents, making it suitable for applications that experience frequent power surges or spikes.
  • Reverse Polarity Protection: The device provides protection against reverse polarity, thus safeguarding other components in the circuit from potential damage.
  • Fast Switching Speed: With its fast switching capability, the PBYL1625B can handle high-frequency operations, which is essential for modern power regulation systems.

Applications:

The NXP PBYL1625B is versatile and can be used in a variety of applications, including:

  • Switch-mode power supplies (SMPS)
  • DC-to-DC converters
  • Free-wheeling diodes in power inverters
  • Battery charging systems
  • Power management in portable devices

Specifications:

Parameter Value
Package TO-220AB
Maximum Repetitive Reverse Voltage (VRRM) 25V
Average Rectified Forward Current (IF(AV)) 16A
Non-Repetitive Peak Forward Surge Current (IFSM) 150A
Operating Junction Temperature (Tj) -40°C to +125°C

With its combination of efficiency, durability, and protection features, the NXP PBYL1625B Schottky barrier rectifier is an excellent choice for designers looking to enhance the performance and reliability of their power management systems.

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