MV2N4093-JFET-NChannel N-Channel JFET Transistor, Amplifier, TO-92 Package by ON Semiconductor

  • This device functions as an N-channel JFET, enabling efficient signal amplification and switching in circuits.
  • Its low noise characteristics improve signal clarity, essential for sensitive analog applications.
  • The compact package design contributes to board-space savings, facilitating smaller, more efficient device layouts.
  • Ideal for use in sensor interfaces, where stable gain and low distortion enhance measurement accuracy.
  • Manufactured under strict quality controls, ensuring consistent performance and long-term reliability.
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MV2N4093-JFET-NChannel Overview

The MV2N4093-JFET-NChannel is a high-performance N-Channel Junction Field Effect Transistor designed for precision switching and amplification in industrial and electronic applications. This device offers excellent input impedance and low noise operation, making it ideal for sensitive analog signal processing. It supports stable operation at moderate voltages and currents, ensuring reliable functionality in a variety of circuits. Its robust electrical characteristics align well with demanding applications requiring efficient control of current flow and minimal power loss. For detailed technical support and purchasing options, visit IC Manufacturer.

MV2N4093-JFET-NChannel Technical Specifications

ParameterValueUnit
Drain-Source Voltage (VDS)30V
Gate-Source Voltage (VGS)??30V
Continuous Drain Current (ID)20mA
Power Dissipation (PD)310mW
Gate Leakage Current (IGSS)1nA
Input Capacitance (Ciss)15pF
Transconductance (gfs)2.5mS
Operating Temperature Range-55 to +150??C

MV2N4093-JFET-NChannel Key Features

  • High input impedance: Minimizes loading on preceding circuits, preserving signal integrity in sensitive analog designs.
  • Low gate leakage current: Ensures minimal power consumption and enhanced reliability in low-noise applications.
  • Stable transconductance: Provides consistent gain performance over a wide temperature range, improving circuit predictability.
  • Compact power dissipation: Supports efficient thermal management, enabling integration into space-constrained industrial systems.

Typical Applications

  • Precision analog switches and amplifiers in industrial measurement instruments where low noise and high input impedance are critical.
  • Signal conditioning circuits requiring stable current control for sensors and transducer interfaces.
  • Low-level audio amplification stages benefiting from minimal distortion and leakage.
  • Switching elements in battery-powered and portable electronics demanding low power loss and reliable operation.

MV2N4093-JFET-NChannel Advantages vs Typical Alternatives

This N-Channel JFET stands out due to its exceptionally low gate leakage and high input impedance, which reduce signal distortion and power consumption compared to standard MOSFETs or bipolar transistors. Its stable transconductance and wide operating temperature range enhance reliability in industrial environments. Additionally, the moderate voltage and current ratings offer a balanced solution ideal for precision analog circuits, making it a preferred choice for engineers focused on accuracy and efficiency.

MV2N4093-JFET-NChannel Brand Info

The MV2N4093-JFET-NChannel is part of a product portfolio commonly supplied by established semiconductor manufacturers specializing in analog and discrete components. These brands emphasize quality and reliability for industrial and instrumentation applications. This JFET device is manufactured to meet stringent standards, ensuring consistent performance and long-term availability. Users can rely on the support and supply chain infrastructure of reputable semiconductor producers to integrate this product into their designs with confidence.

FAQ

What is the maximum drain-source voltage rating of the device?

The maximum drain-source voltage (VDS) rating is 30 volts, ensuring the transistor can safely operate within moderate voltage environments commonly found in industrial control and signal processing applications.

How does the low gate leakage current benefit circuit design?

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