2N2369AUBC-Transistor NPN Amplifier Transistor in TO-18 Metal Can Package – ON Semiconductor

  • This transistor amplifies electrical signals, enabling improved performance in electronic circuits.
  • With a high-frequency response, it supports fast switching essential for communication devices.
  • The compact package minimizes board space, facilitating efficient layout in dense circuit designs.
  • Ideal for use in RF amplifiers where stable gain and low noise enhance signal clarity.
  • Manufactured to meet standard quality controls, ensuring consistent operation under varied conditions.
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2N2369AUBC-Transistor Overview

The 2N2369AUBC is a high-speed NPN bipolar junction transistor designed for low-power switching and amplification applications in industrial electronics. Its fast switching capabilities and reliable gain characteristics make it an ideal choice for signal processing, amplifier circuits, and general-purpose transistor needs. Engineered to perform efficiently under various operating conditions, this transistor supports precise control in electronic designs requiring dependable performance. Sourced from a trusted supplier, the device??s compact package and robust electrical parameters offer engineers and sourcing specialists a versatile component for optimizing circuit functionality. For detailed technical specifications and sourcing, visit IC Manufacturer.

2N2369AUBC-Transistor Technical Specifications

Parameter Specification Unit
Transistor Type NPN Bipolar Junction ?C
Collector-Emitter Voltage (Vceo) 40 V
Collector Current (Ic) 0.6 A
Gain Bandwidth Product (fT) 150 MHz
DC Current Gain (hFE) 70 to 300 ?C
Power Dissipation (Ptot) 0.5 W
Transition Frequency 150 MHz
Operating Temperature Range -65 to +200 ??C

2N2369AUBC-Transistor Key Features

  • High-Speed Switching: Enables rapid signal transitions crucial for high-frequency amplifier and switching circuits.
  • Wide Operating Temperature Range: Supports robust performance in harsh industrial environments from -65??C to +200??C.
  • Low Power Dissipation: Efficient thermal management reduces heat generation, extending device and circuit reliability.
  • Consistent Current Gain: Provides stable gain ranging from 70 to 300, ensuring predictable amplification in analog and digital applications.

Typical Applications

  • High-frequency switching circuits where fast transistor response is critical to maintain signal integrity and reduce switching losses.
  • Low-power amplifier stages in industrial control systems requiring precise and stable signal gain.
  • Signal processing circuits in communication devices that demand consistent transistor performance over a wide temperature range.
  • General-purpose transistor replacement in electronic designs requiring reliable switching and amplification with a compact footprint.

2N2369AUBC-Transistor Advantages vs Typical Alternatives

This transistor offers superior switching speed and a wide operational temperature range compared to many standard NPN transistors. Its high gain bandwidth product and low power dissipation improve circuit efficiency and reliability, making it advantageous for industrial applications where precision and thermal stability are essential. The consistent gain performance supports accurate amplification, distinguishing it from alternatives with variable or lower gain.

2N2369AUBC-Transistor Brand Info

The 2N2369AUBC is a product typically manufactured by reputable semiconductor companies specializing in discrete components for industrial electronics. Known for quality and reliability, these manufacturers ensure compliance with strict industry standards. This transistor??s design aligns with legacy transistor specifications widely adopted in industrial and communication sectors, maintaining compatibility and performance consistency. For sourcing and detailed brand-specific datasheets, consult authorized distributors or the original equipment manufacturer catalogs.

FAQ

What is the maximum collector current rating for this transistor?

The maximum collector current is 0.6 amperes. Operating beyond this current may cause thermal stress or device failure, so it is important to design circuits within this limit for reliable performance.

Can this transistor operate at high frequencies?

Yes, it supports a gain bandwidth product of 150 MHz, making it suitable for high-frequency applications such as RF amplifiers or fast switching circuits.

What are the thermal limits for this transistor?

The device can operate safely within a temperature

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