MV2N4857-JFET-NChannel N-Channel JFET Transistor – TO-92 Package by Sanken

  • This N-channel JFET controls current flow efficiently, enabling precise analog signal amplification and switching tasks.
  • The device features a low noise characteristic, essential for minimizing signal distortion in sensitive electronic circuits.
  • Its compact package design reduces board space, facilitating integration in densely populated printed circuit boards.
  • Ideal for audio preamplifiers, this component enhances sound quality by maintaining signal integrity and stability.
  • Manufactured with stringent quality standards, it ensures consistent performance and long-term reliability under typical operating conditions.
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MV2N4857-JFET-NChannel Overview

The MV2N4857-JFET-NChannel is a high-performance N-channel JFET designed for precision analog switching and low-noise amplification applications. Featuring low gate leakage current and stable electrical characteristics, this device is optimized for use in sensitive signal processing circuits. Its robust construction ensures reliable operation over a wide temperature range, making it suitable for industrial and instrumentation environments. The transistor??s compact package supports efficient PCB layout while maintaining excellent switching speed and low distortion. For detailed specifications and sourcing, visit IC Manufacturer.

MV2N4857-JFET-NChannel Technical Specifications

ParameterSpecificationUnit
Device TypeN-Channel JFET
Drain-Source Voltage (VDS)30V
Gate-Source Voltage (VGS)??30V
Continuous Drain Current (ID)10mA
Gate Leakage Current (IGSS)??1pA
Input Capacitance (Ciss)4.5pF
Power Dissipation (PD)350mW
Operating Temperature Range-55 to +125??C

MV2N4857-JFET-NChannel Key Features

  • Low Gate Leakage Current: Minimizes noise and enhances signal integrity in sensitive analog circuits.
  • High Input Impedance: Ensures minimal loading on preceding stages, preserving signal accuracy.
  • Wide Voltage Range: Supports up to ??30 V gate-source voltage, allowing flexible circuit design.
  • Compact Package: Facilitates space-saving PCB layouts while maintaining thermal stability.
  • Stable Operation Over Temperature: Reliable performance from -55 ??C to +125 ??C suits demanding industrial environments.

Typical Applications

  • Low-noise input stage for operational amplifiers and instrumentation amplifiers where signal fidelity is critical.
  • Precision analog switches in audio and measurement equipment requiring minimal distortion and leakage.
  • Voltage-controlled resistors or attenuators in analog signal processing circuits.
  • Sensors and transducer interface circuits benefiting from low input bias currents and high input impedance.

MV2N4857-JFET-NChannel Advantages vs Typical Alternatives

This N-channel JFET offers superior low gate leakage current and high input impedance compared to typical MOSFET alternatives, resulting in enhanced signal accuracy and lower noise in sensitive analog applications. Its ability to operate across a wide temperature range with stable electrical characteristics improves reliability in industrial settings. Additionally, the device??s low input capacitance supports faster switching speeds and better frequency response, making it a preferred choice for precision analog switching and amplification tasks.

MV2N4857-JFET-NChannel Brand Info

The MV2N4857-JFET-NChannel is manufactured by MV Microelectronics, a recognized supplier specializing in discrete semiconductor devices. Known for producing reliable and high-quality JFETs, MV Microelectronics focuses on delivering components that meet stringent industrial standards. This device reflects the brand??s commitment to precision engineering and consistent performance, making it a trusted option for engineers designing analog signal processing and industrial control systems.

FAQ

What is the maximum drain current rating of the MV2N4857-JFET-NChannel?

The maximum continuous drain current is rated at 10 mA. This ensures the device can handle moderate current levels typical in low-noise analog and switching applications without compromising reliability.

Can this transistor operate in

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