MQ2N4092-JFET-NChannel N-Channel JFET Transistor, TO-92 Package by Toshiba

  • This device serves as a JFET N-Channel transistor, enabling efficient signal amplification and switching in circuits.
  • The MQ2N4092-JFET-NChannel offers stable electrical characteristics, critical for maintaining consistent performance across varying conditions.
  • Its compact package design allows for board-space savings, making it suitable for dense electronic assemblies.
  • Ideal for use in analog signal processing, it enhances circuit responsiveness and precision in sensor interfacing applications.
  • Manufactured to meet industry reliability standards, ensuring long-term operational stability in diverse environments.
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MQ2N4092-JFET-NChannel Overview

The MQ2N4092-JFET-NChannel is a high-performance N-Channel Junction Field Effect Transistor designed for precision analog switching and amplification in industrial and electronic applications. It offers low input current and high gain, enabling efficient signal control with minimal power loss. This device is suitable for applications requiring stable operation over a wide temperature range and ensures reliable performance in demanding environments. As a key component for switching and amplification, it supports engineers and sourcing specialists in optimizing circuit designs for enhanced sensitivity and control. For detailed sourcing and technical support, visit IC Manufacturer.

MQ2N4092-JFET-NChannel Technical Specifications

Parameter Value Unit
Type N-Channel JFET ??
Drain-Source Voltage (V_DS) 30 V
Gate-Source Voltage (V_GS) ??20 V
Drain Current (I_D) 10 mA
Gate Leakage Current (I_GSS) <1 nA
Input Capacitance (C_iss) 5 pF
Cutoff Voltage (V_GS(off)) -0.5 to -4.0 V
Power Dissipation (P_D) 300 mW
Operating Temperature Range -55 to 150 ??C

MQ2N4092-JFET-NChannel Key Features

  • Low gate leakage current: Ensures minimal input signal distortion for high-precision analog circuits.
  • Wide voltage handling range: Supports operation up to 30 V drain-source voltage, enabling use in various industrial control systems.
  • High input impedance: Allows integration into sensitive sensor interfaces without loading the signal source.
  • Robust temperature tolerance: Reliable performance from -55??C to 150??C suits harsh environments and extended use cases.

Typical Applications

  • Analog signal amplification in sensor circuits where low noise and high input impedance are critical for accurate data acquisition.
  • Switching elements in low-power analog multiplexers and demultiplexers used in measurement systems.
  • Voltage-controlled resistors in audio and instrumentation equipment requiring stable gain control over temperature variations.
  • Buffer stages in precision analog front-ends, enhancing stability and reducing signal distortion in industrial instrumentation.

MQ2N4092-JFET-NChannel Advantages vs Typical Alternatives

This N-Channel JFET offers superior gate leakage performance and higher input impedance compared to typical MOSFET or bipolar transistors, resulting in enhanced sensitivity and lower signal distortion. Its wide operating voltage and temperature ranges provide dependable operation in industrial environments. These features contribute to improved circuit accuracy and reliability, making it an ideal choice over common discrete alternatives.

MQ2N4092-JFET-NChannel Brand Info

The MQ2N4092-JFET-NChannel is produced by IC Manufacturer, a leading supplier of high-quality semiconductor components. Known for stringent quality control and consistent device parameters, this product aligns with the brand??s commitment to industrial-grade electronics. The device is part of their JFET portfolio, designed to meet the demanding requirements of precision analog and switching applications in industrial automation, instrumentation, and control systems.

FAQ

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

The maximum drain-source voltage (V_DS) rating is 30 V. This rating ensures the device can safely operate within typical industrial control voltages without breakdown or damage.

How does the gate leakage current impact circuit performance?

The exceptionally low gate leakage current of less than 1 nA minimizes input current draw, which reduces signal distortion and noise. This is critical in sensitive analog circuits where preserving signal integrity is essential.

Can this device operate reliably in high-temperature environments?

Yes, the device supports an operating temperature range from -55??C up to

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