JAN2N5795A-Dual-Transistor Overview
The JAN2N5795A-Dual-Transistor is a high-performance, complementary pair transistor designed for precision amplification and switching applications. This device features tightly matched NPN and PNP transistors in a single package, enabling improved circuit symmetry and simplified design. With robust voltage and current ratings, it delivers reliable operation in demanding industrial and military environments. Its construction ensures low noise and high gain, making it ideal for audio, analog, and signal processing circuits. Sourcing specialists and engineers benefit from its consistent quality and extensive qualification. Visit IC Manufacturer for detailed sourcing and support information.
JAN2N5795A-Dual-Transistor Technical Specifications
| Parameter | Value | Unit |
|---|---|---|
| Transistor Type | NPN and PNP Dual | – |
| Collector-Emitter Voltage (Vceo) | 100 | V |
| Collector Current (Ic) | 3 | A |
| Gain Bandwidth Product (fT) | 8 | MHz |
| DC Current Gain (hFE) | 40 to 160 | – |
| Power Dissipation (Pd) | 20 | W |
| Package | TO-39 Metal Can | – |
| Transition Frequency | 8 | MHz |
JAN2N5795A-Dual-Transistor Key Features
- Complementary Pair Integration: Includes both NPN and PNP transistors in a single package, simplifying push-pull amplifier designs and improving overall circuit balance.
- High Voltage and Current Ratings: Supports up to 100V collector-emitter voltage and 3A collector current, enabling use in power amplification and switching roles.
- Wide DC Current Gain Range: Provides gain from 40 to 160, allowing flexibility in amplification stages for various signal levels.
- Robust TO-39 Package: Hermetically sealed metal can ensures enhanced thermal dissipation and long-term reliability in harsh industrial environments.
Typical Applications
- Audio power amplifiers where complementary transistor pairs are essential for efficient push-pull output stages, ensuring low distortion and high fidelity sound reproduction.
- Switching regulators and power supply circuits that require reliable high-voltage, high-current transistor pairs for efficient load regulation.
- Signal processing circuits that benefit from matched transistor pairs for improved linearity and gain stability in analog front-end stages.
- Industrial control systems requiring durable, thermally stable transistors capable of operating under elevated temperature and power conditions.
JAN2N5795A-Dual-Transistor Advantages vs Typical Alternatives
This dual transistor device offers significant advantages over discrete transistor alternatives by integrating complementary NPN and PNP transistors in one package, reducing board space and improving thermal matching. Its high voltage and current capabilities enhance power handling, while the TO-39 metal can package ensures superior heat dissipation and reliability. These factors contribute to increased efficiency and stability in critical analog and power applications compared to separate transistor solutions.
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JAN2N5795A-Dual-Transistor Brand Info
The JAN2N5795A is a military-grade transistor series historically manufactured under the JAN (Joint Army-Navy) specification, ensuring stringent quality and reliability standards for defense and aerospace use. It is produced by established semiconductor manufacturers specializing in robust analog and power transistor devices. Known for its durable metal can package and tight parameter control, this device is widely recognized for dependable performance in demanding environments where long-term stability and ruggedness are paramount.
FAQ
What is the maximum collector current rating of the JAN2N5795A-Dual-Transistor?
The maximum collector current rating for this device is 3 amperes, allowing it to handle moderate power loads in amplification and switching circuits without degradation.
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How does the complementary transistor pair benefit amplifier design?
Having both NPN and PNP transistors in one matched pair simplifies push-pull amplifier configurations, improving symmetry, reducing distortion, and minimizing component count for more compact and efficient circuit layouts.







