MX2N4092-JFET-NChannel N-Channel JFET Transistor, TO-92 Package by Mitsubishi

  • This device operates as an N-channel JFET, enabling precise control of current flow in analog circuits.
  • Low gate leakage current ensures minimal signal distortion, improving overall circuit performance.
  • The compact package design allows efficient use of PCB space, supporting smaller and lighter electronic devices.
  • Ideal for use in low-noise amplifiers where maintaining signal integrity is critical for accurate data processing.
  • Manufactured to meet industry reliability standards, ensuring consistent operation under varied environmental conditions.
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MX2N4092-JFET-NChannel Overview

The MX2N4092-JFET-NChannel is a high-performance N-channel junction field-effect transistor designed for precision analog switching and low-noise amplification. This device features low input capacitance and low gate leakage current, making it ideal for sensitive signal processing applications. With robust electrical characteristics, the transistor ensures stable operation in various industrial and instrumentation environments. Engineers and sourcing specialists will find its compact TO-92 package convenient for integration into diverse circuit designs. For reliable sourcing and detailed specifications, refer to IC Manufacturer.

MX2N4092-JFET-NChannel Technical Specifications

ParameterValueUnit
Drain-Source Voltage (VDS)30V
Gate-Source Voltage (VGS)??30V
Drain Current (ID)10mA
Gate Leakage Current (IGSS)?? 100pA
Input Capacitance (Ciss)5pF
Forward Transfer Admittance (|Yfs|)5mS
Noise FigureLow
Operating Temperature Range-55 to +125??C

MX2N4092-JFET-NChannel Key Features

  • Low Gate Leakage Current: Minimizes input bias current for enhanced signal integrity, critical in high-impedance sensor circuits.
  • Low Input Capacitance: Supports high-frequency operation with reduced signal distortion, benefiting RF and audio applications.
  • Stable Forward Transfer Admittance: Ensures consistent gain performance, improving reliability in analog amplification stages.
  • Wide Operating Temperature Range: Enables dependable function in harsh industrial environments, extending device lifecycle.

Typical Applications

  • Precision analog switches and multiplexers, where low leakage and high input impedance are essential for signal fidelity.
  • Low-noise preamplifiers in audio and instrumentation systems requiring minimal distortion and stable gain.
  • Sensor interface circuits that demand low input current to maintain sensor accuracy and reduce power consumption.
  • High-frequency oscillator and mixer circuits benefiting from reduced input capacitance and consistent device parameters.

MX2N4092-JFET-NChannel Advantages vs Typical Alternatives

This transistor offers superior sensitivity and low noise performance compared to typical bipolar junction transistors, thanks to its extremely low gate leakage and input capacitance. Its wide voltage operating range and stable electrical characteristics enhance reliability and integration flexibility in precision analog circuits. These advantages make it a preferred choice where accuracy and power efficiency are critical.

MX2N4092-JFET-NChannel Brand Info

The MX2N4092-JFET-NChannel is manufactured by MXIC, a globally recognized semiconductor company specializing in analog and mixed-signal components. MXIC is known for delivering reliable, high-quality discrete devices tailored for industrial and instrumentation applications. This product reflects MXIC??s commitment to precision engineering, ensuring consistent device performance and extensive application support in demanding electronic designs.

FAQ

What is the maximum drain-source voltage rating for this N-channel JFET?

The maximum drain-source voltage (VDS) is rated at 30 volts, which defines the highest voltage the transistor can withstand between the drain and source terminals without damage, suitable for low to medium voltage analog circuits.

How does the low gate leakage current benefit circuit performance?

Low gate leakage current, typically less than 100 picoamperes, reduces input bias current, minimizing signal

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