MV2N4859UB-JFET-NChannel N-Channel JFET Transistor in TO-92 Package by NXP

  • This JFET N-Channel transistor enables precise electronic switching and amplification for improved circuit control.
  • It features a low noise characteristic, enhancing signal clarity in sensitive analog applications.
  • The compact CBZ package offers efficient board space usage and simplifies integration into dense layouts.
  • Ideal for audio preamplifiers, this component supports stable performance and reduces distortion in sound systems.
  • Manufactured under strict quality standards, it ensures consistent operation and long-term reliability in various environments.
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MV2N4859UB-JFET-NChannel Overview

The MV2N4859UB is a high-performance N-Channel JFET designed for low-noise, high-frequency analog applications. Offering excellent input characteristics and stable operation, this transistor is optimized for amplification and switching tasks where precision and reliability are critical. Its robust construction ensures consistent performance across a wide temperature range, making it ideal for demanding industrial environments. The device??s low gate leakage current and high gain contribute to efficient circuit integration. For engineers and sourcing specialists looking for a dependable JFET, IC Manufacturer provides a proven solution with this model.

MV2N4859UB-JFET-NChannel Technical Specifications

ParameterValueUnit
JFET TypeN-Channel?C
Drain-Source Voltage (VDS)25V
Gate-Source Voltage (VGS)??30V
Drain Current (ID)12mA
Gate Leakage Current (IGSS)??1nA
Power Dissipation (PD)310mW
Input Capacitance (Ciss)2.5pF
Transition Frequency (fT)100MHz
Noise FigureLow?C
Operating Temperature Range-55 to +150??C

MV2N4859UB-JFET-NChannel Key Features

  • Low gate leakage current: Minimizes input bias current, enhancing signal integrity in sensitive analog circuits.
  • High gain bandwidth: Supports effective amplification in RF and high-frequency applications, improving overall circuit performance.
  • Wide operating temperature range: Ensures reliable operation in harsh industrial environments without performance degradation.
  • Compact power dissipation: Allows integration in space-constrained designs while maintaining thermal stability.

Typical Applications

  • Low-noise preamplifiers in audio and instrumentation systems where signal clarity is essential for measurement accuracy.
  • RF amplifiers for communication devices, providing stable gain at high frequencies.
  • Analog switching circuits requiring minimal leakage and fast response times.
  • Sensor interface circuits where low input current and noise performance affect overall system sensitivity.

MV2N4859UB-JFET-NChannel Advantages vs Typical Alternatives

This N-Channel JFET stands out with its exceptionally low gate leakage current and wide frequency response, offering improved sensitivity and accuracy compared to standard transistors. Its robust thermal performance and compact power dissipation enable reliable integration into high-density industrial circuits. These characteristics make it a superior choice for precision analog and RF designs where signal integrity and device stability are paramount.

MV2N4859UB-JFET-NChannel Brand Info

The MV2N4859UB is manufactured by IC Manufacturer, a recognized leader in semiconductor components specializing in high-quality discrete transistors. This product is part of their JFET lineup, engineered for demanding industrial and communication applications. The brand??s commitment to stringent quality control and advanced semiconductor processing ensures that this JFET delivers consistent electrical characteristics and long-term reliability, supporting critical system designs worldwide.

FAQ

What are the maximum voltage ratings for this N-Channel JFET?

The device supports a maximum drain-source voltage of 25 V and a gate-source voltage rating up to ??30 V. These limits ensure safe operation within typical analog and switching circuit parameters.

How does the low gate leakage current benefit circuit performance?

Low gate leakage current reduces input bias errors and noise, which is especially important in sensitive analog and sensor interfaces. This improves overall signal fidelity and measurement accuracy.

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