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2SK3497

Part No 2SK3497
Manufacturer Toshiba Semiconductor and Storage
Catalog JFETs (Junction Field Effect)
Description High Power Amplifier Application / Trans MOSFET N-CH Si 180V 10A 3-Pin(3+Tab) TO-3PN
Sample
Rohs State rohs
ECAD Module
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Category Discrete Semiconductor Products
Family JFETs(Junction Field Effect)
Manufacturer Toshiba Semiconductor and Storage
Win Source Part Number 160096-2SK3497
Popularity Medium
Supply and Demand Status Limited
Family Name 2SK3497
Introduction Date July 30, 2003
ECCN EAR99
Country of Origin Japan
Estimated EOL Date Obsolete / End of life
Ultra Librarian 3D Model Ultra Librarian 2SK3497 CAD Model

Description

2SK3497 N-channel MOSFET

The 2SK3497 is designed to deliver high power and advanced efficiency in demanding electronic environments. This MOSFET is ideal for engineers looking for reliability and performance in their electronic components, particularly in applications that require high-frequency operation.

Applications and Projects:

  • Renewable energy converters
  • Automated control systems
  • High-power consumer electronics
  • Smart grid devices
  • Electric vehicle powertrains

Features and Benefits:

  • Efficient Power Handling: Provides low power loss, aiding in the overall efficacy of systems.
  • Advanced Switching Capabilities: Optimized for rapid switching to suit demanding applications.
  • Reliability Under Stress: Durable structure withstands high voltage and current without failure.
  • Compact and Versatile: Small size and high performance fit for diverse applications.
  • Thermal Efficiency: Comprehensive design reduces thermal constraints, allowing for cooler operation.

Additional Details:

The 2SK3497 features a TO-220 package for streamlined mounting and optimal thermal management. Its capabilities are enhanced by a low internal gate resistance and fast switching times, making it a preferred choice for high-frequency electronic designs. Certified under industry standards, this MOSFET offers reliable integration with emerging technologies while upholding superior performance and safety.

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