JAN1N5294-1 Overview
The JAN1N5294-1 is a high-performance silicon NPN transistor specifically designed for industrial and military-grade electronic applications. It offers reliable operation with robust voltage and current handling capabilities, making it suitable for demanding switching and amplification tasks. With a maximum collector-emitter voltage of 100 V and a collector current rating of up to 10 A, this transistor provides strong drive capability and thermal stability. Its construction ensures enhanced ruggedness and long-term reliability, essential for mission-critical environments. For sourcing and detailed specifications, visit IC Manufacturer.
JAN1N5294-1 Technical Specifications
| Parameter | Specification |
|---|---|
| Collector-Emitter Voltage (VCEO) | 100 V |
| Collector-Base Voltage (VCBO) | 120 V |
| Emitter-Base Voltage (VEBO) | 5 V |
| Collector Current (IC) | 10 A (continuous) |
| Power Dissipation (PD) | 125 W |
| DC Current Gain (hFE) | 20 to 70 (at IC = 4 A) |
| Transition Frequency (fT) | ?? 3 MHz |
| Operating Temperature Range | -65??C to +200??C |
JAN1N5294-1 Key Features
- High Voltage and Current Handling: Supports collector-emitter voltages up to 100 V and continuous collector current up to 10 A, enabling robust performance in power switching and amplification.
- Wide Operating Temperature Range: Rated for -65??C to +200??C, ensuring dependable operation in harsh industrial and military environments.
- Strong DC Current Gain: Offers a gain between 20 and 70 at 4 A, facilitating efficient signal amplification with lower base drive requirements.
- Industrial-Grade Reliability: Designed to meet stringent military standards, guaranteeing long-term stability and ruggedness against thermal and electrical stress.
JAN1N5294-1 Advantages vs Typical Alternatives
This transistor excels compared to standard counterparts by combining high voltage tolerance with substantial continuous current capability. Its wide temperature range and military-grade design provide superior reliability and consistent performance in critical applications. These advantages make it a preferred choice where sensitivity, accuracy, and ruggedness are paramount, reducing system failure risks while maintaining efficient power management.
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Typical Applications
- Power amplification and switching in industrial control systems, where high voltage and current demands require durable and reliable transistor solutions capable of enduring elevated temperatures.
- Military and aerospace electronic circuits that demand components with extended temperature tolerance and enhanced ruggedness for mission-critical use.
- High-power audio amplifiers requiring transistors with stable gain and robust electrical characteristics for clean signal reproduction.
- General-purpose switching in power supplies and motor control circuits benefiting from the transistor??s efficient current handling and voltage ratings.
JAN1N5294-1 Brand Info
Produced under strict military standards, this transistor is part of a legacy series renowned for ruggedness and reliability. The JAN prefix denotes a Joint Army-Navy qualification, ensuring compliance with rigorous testing for performance under extreme conditions. This product is trusted by engineers sourcing components for demanding industrial and defense projects that require verified quality and consistent operation over extended lifetimes.
FAQ
What is the maximum collector current that this transistor can handle continuously?
The transistor supports a continuous collector current of up to 10 A, which allows it to manage substantial power levels in switching and amplification applications without degradation.
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What temperature range can the device reliably operate within?
This device is rated for operation from -65??C to +200??C, making it suitable for use in harsh environmental conditions commonly found in industrial and military applications.
How does the DC current gain affect the transistor??s performance?
The DC current gain, ranging between 20 and 70 at a collector current of 4 A, determines the amplification capability of the transistor. A higher gain reduces the required base current, improving overall circuit efficiency.
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Is this transistor suitable for high-frequency applications?
With a transition frequency of approximately 3 MHz, the transistor can function effectively in moderate-frequency applications, including audio amplification and some industrial switching circuits.
What reliability standards does this device meet?
This transistor conforms to military-grade standards, ensuring enhanced ruggedness, thermal stability, and long-term reliability. This makes it suitable for critical systems where component failure is not an option.





