Manufacturer Part Number
2N4092
Manufacturer
Microchip Technology
Introduction
The 2N4092 is a versatile N-channel junction field-effect transistor (JFET) designed for a wide range of applications. This device offers excellent performance characteristics, including low on-resistance, high input impedance, and a broad operating temperature range.
Product Features and Performance
N-Channel JFET with a 40V Drain-Source Voltage Rating
15mA Drain Current at 20V Drain-Source Voltage
50 Ohms On-Resistance
16pF Maximum Input Capacitance at 20V Drain-Source Voltage
-65°C to 175°C Operating Temperature Range
Through-Hole TO-206AA and TO-18-3 Metal Can Packages
Product Advantages
Robust and reliable design for consistent performance
Versatile functionality for various circuit applications
Efficient power handling and low power consumption
Suitable for operation in challenging environmental conditions
Key Reasons to Choose This Product
Proven reliability and long-term durability
Excellent electrical characteristics for demanding applications
Wide operating temperature range for versatile usage
Cost-effective solution for budget-conscious projects
Quality and Safety Features
Thoroughly tested and screened for quality assurance
Compliant with relevant industry standards and regulations
Designed and manufactured to ensure safe and reliable operation
Compatibility
Compatible with a wide range of electronic circuits and systems
Suitable for use in various analog and digital applications
Application Areas
Amplifiers and switches in audio, video, and RF circuits
Impedance matching and buffering in analog signal processing
Low-noise and high-input impedance circuits
General-purpose switching and control applications
Product Lifecycle
The 2N4092 is an active and widely available product. There are several equivalent or alternative JFET models available from various manufacturers, including the 2N4091, 2N4093, and 2N4416. Customers are advised to consult with our website's sales team for more information on the latest product availability and potential alternatives.