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MCH3302

Part No MCH3302
Manufacturer ON Semiconductor
Catalog HOT - SALES and EOL Components (M)
Sample
Rohs State Need to verify
ECAD Module
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Manufacturer ON Semiconductor
Win Source Part Number 225279-MCH3302
Popularity Low
Supply and Demand Status Balance
Ultra Librarian 3D Model Ultra Librarian MCH3302 CAD Model

Description

The MCH3302 from ON Semiconductor is a high-performance, P-Channel Power MOSFET designed to deliver efficient power management and switching capabilities for a wide range of applications. This advanced technology MOSFET is a superior choice for engineers looking to optimize their designs for both power and space efficiency.

Key Features

  • Low On-Resistance: The device features very low RDS(on), which minimizes conduction losses and improves overall efficiency, making it ideal for power-intensive applications.
  • High-Speed Switching: With its fast switching capabilities, the MCH3302 is suitable for high-frequency operations, contributing to reduced switching losses and better performance in applications such as DC-DC converters and motor drives.
  • Gate Charge: The optimized gate charge of this MOSFET allows for efficient gate drive performance, which is crucial in reducing switching-related power losses.
  • Thermal Performance: The MCH3302 is encapsulated in a compact package that enhances thermal dissipation, ensuring reliable operation even under high temperature conditions.

Applications

The versatility of the MCH3302 makes it suitable for a broad array of applications, including:

  • Power Management Systems
  • DC-DC Converters
  • Battery Management Systems
  • Load Switches
  • Motor Control Circuits
  • Portable Electronic Devices

Product Specifications

Parameter Value
Drain-Source Voltage (VDSS) -30 V
Continuous Drain Current (ID) -6 A
Power Dissipation (PD) 1.25 W
Operating Temperature Range -55°C to +150°C

With its robust performance and ON Semiconductor's commitment to quality, the MCH3302 is an excellent choice for designers seeking to enhance the efficiency and reliability of their power management systems.

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