JAN2N5002-Transistor Overview
The JAN2N5002 is a high-voltage NPN bipolar junction transistor designed for robust switching and amplification in industrial and military-grade applications. Rated to handle collector-emitter voltages up to 500V and collector currents up to 0.8A, it ensures reliable performance under demanding electrical conditions. With a gain bandwidth product suitable for medium-frequency operation, this transistor supports efficient signal amplification and power switching. Its rugged construction and stringent JAN (Joint Army-Navy) qualification make it a dependable choice for aerospace, defense, and industrial electronics. For detailed sourcing and technical support, visit IC Manufacturer.
JAN2N5002-Transistor Technical Specifications
| Parameter | Specification |
|---|---|
| Collector-Emitter Voltage (VCEO) | 500 V |
| Collector-Base Voltage (VCBO) | 700 V |
| Emitter-Base Voltage (VEBO) | 7 V |
| Collector Current (IC) | 0.8 A (max) |
| Power Dissipation (Ptot) | 30 W |
| DC Current Gain (hFE) | 40 to 160 |
| Transition Frequency (fT) | 10 MHz (typical) |
| Operating Junction Temperature (TJ) | -65??C to +200??C |
JAN2N5002-Transistor Key Features
- High voltage capability: Supports collector-emitter voltages up to 500V, enabling operation in high-voltage circuits without breakdown.
- Robust collector current rating: Handles collector currents up to 0.8A, suitable for moderate power amplification and switching tasks.
- Wide operating temperature range: Qualified for junction temperatures from -65??C to +200??C, ensuring reliable performance in harsh environments.
- JAN military specification compliance: Guarantees stringent quality, reliability, and consistency, ideal for defense and aerospace electronics.
Typical Applications
- High-voltage switching circuits where reliable transistor operation at up to 500V is critical, such as in power supplies or motor control.
- Medium power amplification in industrial electronics requiring stable gain and frequency response.
- Military and aerospace electronic systems demanding rugged components with extended temperature tolerances.
- Signal processing circuits in harsh environments where transistor reliability is paramount.
JAN2N5002-Transistor Advantages vs Typical Alternatives
This transistor offers superior voltage and temperature ratings compared to typical commercial transistors, making it ideal for high-reliability industrial and military applications. Its compliance with JAN standards ensures enhanced durability and consistent electrical performance. The combination of high voltage tolerance and moderate current handling provides a balanced solution for demanding power and switching tasks, outperforming many standard transistors in sensitivity and long-term stability.
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JAN2N5002-Transistor Brand Info
The JAN2N5002 is a Joint Army-Navy (JAN) certified transistor, historically produced by multiple manufacturers specializing in military-grade semiconductor devices. JAN-marked transistors represent a category of components manufactured to meet strict U.S. military standards for quality, reliability, and environmental endurance. These devices are typically sourced from established semiconductor manufacturers that maintain legacy lines for defense and aerospace sectors, ensuring traceability and adherence to rigorous testing protocols.
FAQ
What does the JAN prefix mean in the transistor part number?
The JAN prefix indicates that the transistor complies with Joint Army-Navy standards, which are military specifications ensuring high reliability, quality, and environmental robustness. This makes the device suitable for defense and aerospace applications requiring strict performance guarantees.
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Can this transistor be used in high-temperature environments?
Yes, the transistor is rated for junction temperatures ranging from -65??C to +200??C, allowing it to operate reliably in extreme temperature conditions commonly found in industrial and military applications.
What is the maximum collector current the transistor can handle?
The maximum collector current rating is 0.8 amperes, which allows the device to manage moderate power levels in switching and amplification circuits without risk of damage.







