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2SC1923-O(FT)

Part No 2SC1923-O(FT)
Manufacturer Toshiba Semiconductor and Storage
Catalog Transistors (BJT) - Single
Description Trans RF BJT NPN 30V 0.02A 3-Pin TO-92
Sample
Rohs State rohs
ECAD Module
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Category Discrete Semiconductor Products
Family Transistors(BJT) - Single
Manufacturer Toshiba Semiconductor and Storage
Win Source Part Number 155140-2SC1923-O(FT)
Popularity Low
Supply and Demand Status Limited
Family Name 2SC1923O
ECCN EAR99
Estimated EOL Date Obsolete / End of life
Ultra Librarian 3D Model Ultra Librarian 2SC1923-O(FT) CAD Model

Description

The 2SC1923-O(FT) is a versatile NPN transistor ideal for use in various electronic applications requiring amplification and switching. This transistor model offers an optimal balance of performance and reliability, which makes it suitable for high-frequency amplification purposes.

Features and Benefits

  • High Current Capability: The 2SC1923-O(FT) can handle significant current loads, making it suitable for power-intensive applications.
  • Low Noise: This device ensures minimal noise during operation, ideal for sensitive audio and signal processing tasks.
  • Robust Design: Its durable construction ensures longevity and reliability in various operational environments.
  • Enhanced Frequency Range: The 2SC1923 series offers a wide frequency range, making them suitable for RF applications.

Applications

Due to its balanced performance and features, the 2SC1923-O(FT) transistor can be used in the following projects and applications:

  • Audio Amplifiers
  • Radio Frequency (RF) Transceivers
  • Power Management Systems
  • Signal Amplification
  • Switching Circuits

Additional Details

This model does not specify a manufacturer, indicating that it might be manufactured by various semiconductor companies. Its broad usability across different electronic platforms emphasizes its adaptability and performance consistency across multiple application domains. When implementing the 2SC1923-O(FT) in your projects, consider the specifications and ensure compatibility with your circuit requirements for optimal efficiency.

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