2N4856UB-JFET-NChannel N-Channel JFET Transistor – TO-92 Package by ON Semiconductor

  • This transistor functions as an N-channel JFET, providing controlled current flow in analog switching circuits.
  • It features low noise characteristics, essential for maintaining signal integrity in sensitive electronic applications.
  • The compact package design enables efficient board space utilization, ideal for dense circuit layouts.
  • Commonly used in audio preamplifiers, it enhances sound quality by minimizing distortion and interference.
  • Manufactured to meet standard reliability tests, ensuring consistent performance under typical operating conditions.
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2N4856UB-JFET-NChannel Overview

The 2N4856UB is a high-performance N-Channel Junction Field Effect Transistor (JFET) designed for low-noise amplification and switching applications. Featuring a robust construction and reliable electrical characteristics, this transistor provides stable operation in analog circuits, offering efficient signal control with minimal distortion. Ideal for use in sensitive amplifier stages, the device ensures consistent gain and low input current, making it suitable for precision electronics. Its moderate power handling and low gate leakage current contribute to enhanced circuit longevity and reduced thermal stress. Detailed datasheets are available through IC Manufacturer.

2N4856UB-JFET-NChannel Technical Specifications

Parameter Value Unit
Type N-Channel JFET ?C
Drain-Source Voltage (VDS) 25 V
Gate-Source Cutoff Voltage (VGS(off)) -0.6 to -4.0 V
Drain Current (IDSS) 1.0 to 5.0 mA
Power Dissipation (PD) 310 mW
Input Capacitance (Ciss) 4.0 pF
Noise Figure Low ?C
Package Type TO-92 ?C

2N4856UB-JFET-NChannel Key Features

  • Low Noise Operation: Minimizes signal distortion, crucial for audio and RF amplifier circuits.
  • Wide Gate-Source Voltage Range: Enables flexible biasing conditions for precise control in analog designs.
  • Moderate Power Dissipation: Supports up to 310 mW, allowing reliable use in low to medium power applications without excessive heat.
  • Stable Drain Current: Ensures predictable performance across temperature and voltage variations, enhancing circuit reliability.

Typical Applications

  • Low-noise preamplifiers in audio and instrumentation systems, where signal integrity and minimal distortion are essential for accurate measurement.
  • Analog switching circuits benefiting from the fast response and low leakage current characteristics of the N-Channel JFET.
  • Buffer amplifiers providing high input impedance to avoid loading sensitive sensors or signal sources.
  • Small-signal amplifier stages in RF and communication equipment, leveraging the device??s low noise figure and stable operation.

2N4856UB-JFET-NChannel Advantages vs Typical Alternatives

This N-Channel JFET offers superior noise performance and consistent drain current compared to many standard transistors, making it ideal for precision amplification. Its low gate leakage and moderate power dissipation enhance reliability and reduce thermal management concerns. Compared to typical MOSFET alternatives, it provides better linearity and simpler biasing, which improves overall circuit accuracy and sensitivity in analog signal processing.

2N4856UB-JFET-NChannel Brand Info

The 2N4856UB is manufactured by a reputable semiconductor provider specializing in discrete components designed for industrial and commercial electronics. This brand is recognized for delivering high-quality JFETs that meet stringent performance and reliability standards, ensuring dependable operation in demanding applications. Their products often come with comprehensive datasheets and application notes, supporting engineers with detailed design insights and compatibility guidance.

FAQ

What is the typical gate-source cutoff voltage range for this N-Channel JFET?

The gate-source cutoff voltage (VGS(off)) typically ranges from -0.6 V to -4.0 V, which allows for precise control of the conduction channel in amplification and switching applications.

Can this transistor handle

Application

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