JANTXV2N1715-Transistor Overview
The JANTXV2N1715-Transistor is a robust silicon NPN bipolar junction transistor designed for high-reliability applications requiring stable performance under extreme conditions. Manufactured to meet stringent military standards (JAN – Joint Army Navy), this transistor offers dependable switching and amplification capabilities with enhanced temperature tolerance and surge handling. Its construction and parameter set make it ideal for aerospace, defense, and industrial electronics where long-term durability and consistent electrical characteristics are critical. Available through IC Manufacturer, it provides engineers and sourcing specialists with a trustworthy component to ensure system integrity in demanding environments.
JANTXV2N1715-Transistor Technical Specifications
| Parameter | Specification |
|---|---|
| Type | NPN Bipolar Junction Transistor |
| Collector-Emitter Voltage (Vceo) | 60 V |
| Collector Current (Ic) | 1 A (Max) |
| Power Dissipation (Ptot) | 1.2 W |
| Gain Bandwidth Product (fT) | 100 MHz (Typ) |
| DC Current Gain (hFE) | 40 to 160 (at Ic=150 mA) |
| Operating Temperature Range | -55??C to +200??C |
| Package | TO-18 Metal Can |
| Transition Frequency | 100 MHz (Typ) |
JANTXV2N1715-Transistor Key Features
- High voltage tolerance: Supports collector-emitter voltages up to 60 V, enabling reliable operation in moderate power circuits.
- Wide operating temperature range: Designed to function from -55??C to +200??C, making it suitable for harsh environmental conditions.
- Consistent gain performance: Offers a DC current gain range of 40 to 160, ensuring precise amplification in analog and switching applications.
- Robust metal can package: The TO-18 hermetic package provides enhanced mechanical protection and thermal dissipation for improved reliability.
Typical Applications
- Military and aerospace electronic circuits requiring rugged, high-reliability transistors that maintain performance under temperature extremes and mechanical stress.
- Industrial control systems where stable switching and amplification are critical for process automation and safety monitoring.
- High-frequency analog circuits leveraging the transistor??s 100 MHz transition frequency for signal processing tasks.
- Power regulation and driver circuits in embedded systems demanding robust transistor components with proven long-term stability.
JANTXV2N1715-Transistor Advantages vs Typical Alternatives
This transistor??s military-grade construction and wide temperature range provide significant advantages over typical commercial-grade alternatives. Its high voltage rating and consistent gain ensure precise control with enhanced reliability in critical applications. The hermetically sealed TO-18 package offers superior protection against environmental factors, resulting in longer operational life and reduced maintenance needs compared to plastic-encapsulated transistors.
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JANTXV2N1715-Transistor Brand Info
The JANTXV2N1715-Transistor is produced under stringent military standards, typically by manufacturers specializing in high-reliability semiconductor devices for defense and aerospace markets. These manufacturers adhere to the Joint Army Navy (JAN) certification, ensuring the component meets rigorous quality, performance, and environmental criteria. The transistor is commonly sourced from well-established suppliers known for meeting MIL-PRF-19500 specifications, providing engineers with confidence in its dependability for mission-critical electronics.
FAQ
What does the JAN prefix signify in the transistor??s part number?
The JAN prefix indicates that the transistor meets the Joint Army Navy military standard for electronic components. This means it has undergone rigorous testing for reliability, stability, and performance in harsh environments, making it suitable for defense and aerospace applications.
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What is the maximum collector current this transistor can handle?
The maximum continuous collector current is rated at 1 ampere. Exceeding this rating could risk device failure due to excessive heat or electrical stress, so designers should







