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2SC5407

Part No 2SC5407
Manufacturer Panasonic
Catalog Hard To Find
Description Silicon NPN triple diffusion mesa type(For horizontal deflection output)
Sample
Rohs State Need to verify
ECAD Module
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RoHS State Request Verification
Manufacturer Panasonic
Win Source Part Number 1125939-2SC5407
Manufacturer Homepage www.panasonic.com/industrial/
Popularity Medium
Supply and Demand Status Limited
Ultra Librarian 3D Model Ultra Librarian 2SC5407 CAD Model

Description

The 2SC5407 is a silicon NPN epitaxial planar transistor manufactured by Panasonic. It is primarily designed for high-frequency amplification purposes.

Applications:

  • RF Amplifiers
  • Oscillators
  • Mixers
  • Communication Equipment

Features:

  • NPN Silicon Epitaxial Planar Transistor
  • High Transition Frequency (fT): Specifically designed for high-frequency applications, facilitating efficient signal processing and amplification.
  • Low Noise Figure (NF): Provides minimal signal degradation, making it suitable for sensitive receiver applications.
  • High Power Gain: Ensures significant signal amplification for improved performance.
  • Excellent Linearity: Reduces distortion and preserves signal fidelity.

Benefits:

  • Efficient Signal Amplification: Delivers robust and reliable signal amplification across a broad frequency spectrum.
  • Minimized Noise: Reduces unwanted noise interference, enhancing the clarity and quality of signal reception.
  • Improved Circuit Performance: Enhances the overall efficiency and stability of electronic circuits.
  • Stable Operation: Maintains consistent performance under varying operational conditions.

Additional Details:

The 2SC5407 is commonly packaged for surface mounting. The datasheet provides comprehensive details on parameters such as collector-emitter voltage (VCEO), collector current (IC), power dissipation (PC), transition frequency (fT), and collector-base capacitance (Cob). Adherence to the specifications outlined in the datasheet is essential for optimal circuit design and performance.

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