JANS2N6676-Transistor Overview
The JANS2N6676 transistor is a high-performance NPN silicon transistor designed for robust amplification and switching applications. Engineered to meet stringent military specifications, it offers superior reliability and thermal stability under demanding conditions. With a maximum collector current of 10A and a collector-emitter voltage rating of 100V, it is well-suited for industrial and aerospace electronics where consistent operation is critical. The device??s high gain and low noise characteristics ensure precise signal amplification, making it a dependable choice for engineers and sourcing specialists seeking rugged, dependable transistor solutions. For detailed sourcing and technical support, visit IC Manufacturer.
JANS2N6676-Transistor Key Features
- High collector current capability: Supports up to 10A, enabling effective handling of power-intensive applications with minimal thermal stress.
- Voltage resilience: Collector-emitter voltage rated at 100V, providing flexibility in circuits requiring high voltage tolerance.
- Military-grade reliability: Built to JANS standards, ensuring consistent performance in harsh environments and extended operational life.
- Low noise figure: Enhances signal integrity in amplification applications, essential for precision analog and RF circuits.
JANS2N6676-Transistor Technical Specifications
| Parameter | Specification | Unit |
|---|---|---|
| Collector-Emitter Voltage (VCEO) | 100 | V |
| Collector-Base Voltage (VCBO) | 120 | V |
| Emitter-Base Voltage (VEBO) | 7 | V |
| Continuous Collector Current (IC) | 10 | A |
| Power Dissipation (PD) | 75 | W |
| DC Current Gain (hFE) | 40 to 160 | Unitless |
| Transition Frequency (fT) | 15 | MHz |
| Operating Temperature Range | -65 to +200 | ??C |
JANS2N6676-Transistor Advantages vs Typical Alternatives
This transistor offers enhanced power handling and voltage tolerance compared to typical low-power alternatives, making it ideal for demanding industrial and military applications. Its adherence to JANS military standards guarantees superior reliability and thermal stability, reducing failure rates. The broad gain range and low noise improve signal accuracy, while robust packaging supports harsh environments, ensuring long-term operational integrity where other transistors may underperform.
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Typical Applications
- Power amplification in military and aerospace systems requiring high current and voltage capability with reliable operation under extreme temperatures.
- Switching applications in industrial motor control circuits where high current flow and robust voltage handling are critical.
- Signal amplification in communication equipment benefiting from low noise and stable gain characteristics.
- General-purpose high-power transistor use in rugged electronic assemblies needing proven MIL-spec components.
JANS2N6676-Transistor Brand Info
The JANS2N6676 transistor is manufactured to meet strict military and aerospace quality standards, known collectively as JANS (Joint Army-Navy Specification). This designation ensures the product undergoes rigorous testing for durability, performance, and reliability. The JANS2N6676 is a trusted solution for engineers requiring consistent and robust transistor performance in harsh or mission-critical environments. Its production adheres to stringent quality controls, making it a preferred choice for defense contractors and industrial equipment manufacturers.
FAQ
What is the maximum collector current rating for this transistor?
The device supports a continuous collector current of up to 10 amperes, allowing it to handle high-power applications efficiently without thermal degradation.
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Can this transistor operate at high temperatures?
Yes, it is rated for an operating temperature range from -65??C to +200??C, making it suitable for extreme environmental conditions common in aerospace and military electronics.
What voltage levels can this transistor safely handle?
The maximum collector-emitter voltage is 100 volts, while the collector-base voltage rating is 120 volts. This enables the transistor to function reliably in circuits with relatively high voltage requirements.
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How does the device??s gain range affect circuit design?
The DC current gain ranges from 40 to 160, offering flexibility in amplification applications. This broad gain range allows engineers to tailor the transistor??s performance to specific signal amplification needs.
Is this transistor suitable for low-noise signal amplification?
Yes, the transistor features a low noise figure, making it well-suited for precise analog and RF amplification applications where signal clarity is essential.







