MQ2N4416A-JFET-NChannel Overview
The MQ2N4416A is an N-Channel JFET designed for use in low-noise, low-power analog circuits. This transistor delivers high input impedance and low gate leakage current, making it ideal for precision amplification and switching applications. With a robust pinch-off voltage and low noise figure, it supports stable operation in sensitive signal environments. Its compact TO-92 package eases integration into diverse electronic modules, ensuring reliable performance in industrial and commercial designs. For detailed technical data and purchasing options, visit IC Manufacturer.
MQ2N4416A-JFET-NChannel Key Features
- High input impedance: Enables minimal signal distortion and preserves signal integrity, crucial for low-level signal amplification.
- Low gate leakage current: Reduces power loss and enhances device efficiency in sensitive circuits.
- Stable pinch-off voltage: Ensures consistent switching behavior under varying operating conditions, improving circuit reliability.
- Compact TO-92 package: Facilitates easy PCB mounting and integration into space-constrained industrial applications.
MQ2N4416A-JFET-NChannel Technical Specifications
| Parameter | Value | Unit |
|---|---|---|
| Drain-Source Voltage (VDS) | 30 | V |
| Gate-Source Voltage (VGS) | -25 | V |
| Drain Current (ID) | 10 | mA |
| Zero Gate Voltage Drain Current (IDSS) | 1 to 5 | mA |
| Pinch-Off Voltage (VGS(off)) | -0.8 to -6 | V |
| Power Dissipation (PD) | 310 | mW |
| Input Capacitance (Ciss) | 10 | pF |
| Noise Figure | Low | n/a |
MQ2N4416A-JFET-NChannel Advantages vs Typical Alternatives
Compared to typical N-channel JFETs, this device offers a wide pinch-off voltage range and low gate leakage, ensuring superior sensitivity and accuracy in analog signal control. Its low noise figure enhances signal clarity, while the moderate power dissipation rating supports efficient thermal management. This combination makes it a reliable choice for precision industrial applications requiring stable, low-noise operation.
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Typical Applications
- Low-noise amplifiers: Ideal for enhancing weak signals in sensor interfaces and audio preamplifiers due to its high input impedance and low noise.
- Analog switches: Suitable for precision switching tasks where minimal signal distortion is critical.
- Buffer stages: Provides stable voltage buffering in measurement and control circuits.
- Signal processing circuits: Enables efficient handling of analog signals in industrial instrumentation and data acquisition systems.
MQ2N4416A-JFET-NChannel Brand Info
The MQ2N4416A JFET N-Channel transistor is manufactured under stringent quality standards to ensure consistency and reliability in industrial electronics. Designed for low-noise and low-power applications, it is a trusted component for engineers seeking precision and stability. Its production adheres to established semiconductor fabrication processes, guaranteeing device uniformity and long-term operational integrity in demanding environments.
FAQ
What is the maximum drain-source voltage rating of this N-channel JFET?
The maximum drain-source voltage (VDS) for this transistor is 30 volts, which defines the maximum voltage the device can safely handle between drain and source terminals without breakdown.
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How does the gate-source voltage range affect device operation?
The gate-source voltage (VGS) ranges from 0 to -25 volts, with a pinch-off voltage between -0.8 V and -6 V. This range controls the channel conductivity, allowing precise current regulation in analog circuits.
What are typical applications where this transistor excels?
It performs well in low-noise amplifiers, analog switches, buffer stages, and signal processing circuits, especially where high input impedance and low noise are critical.
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What packaging is used for this transistor and why is it important?
The device comes in a TO-92 package, which is compact and easy to mount on PCBs. This packaging supports convenient integration in space-sensitive industrial electronic designs.
How does the low gate leakage current benefit circuit performance?
Low gate leakage current minimizes power loss and prevents unwanted signal distortion, which is vital for maintaining accuracy and efficiency in sensitive analog applications.

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