JANTX2N5796U-Dual-Transistor Overview
The JANTX2N5796U is a dual NPN transistor designed for high-reliability and military-grade applications, offering robust electrical performance under demanding conditions. Featuring matched transistor pairs in a single package, it simplifies circuit designs requiring differential amplifiers and current mirrors. Its high gain bandwidth product and low noise characteristics make it ideal for precision analog circuits. Manufactured to stringent JANTX specifications, this device ensures consistent quality and enhanced durability. Engineers and sourcing specialists will find the JANTX2N5796U a reliable choice for applications requiring stable, high-frequency switching and amplification. Learn more at IC Manufacturer.
JANTX2N5796U-Dual-Transistor Technical Specifications
| Parameter | Specification |
|---|---|
| Transistor Type | Dual NPN |
| Collector-Emitter Voltage (VCEO) | 30 V |
| Collector-Base Voltage (VCBO) | 40 V |
| Emitter-Base Voltage (VEBO) | 5 V |
| Collector Current (IC) | 200 mA |
| Power Dissipation (PD) | 625 mW |
| DC Current Gain (hFE) | 40 to 120 |
| Transition Frequency (fT) | 70 MHz |
| Package Type | TO-39 Metal Can |
JANTX2N5796U-Dual-Transistor Key Features
- Matched Dual Transistors: Provides tightly matched transistor pairs, critical for differential amplifier applications, improving circuit symmetry and performance.
- High Voltage Ratings: Supports up to 30V collector-emitter voltage, enabling reliable operation in moderately high-voltage environments.
- Military-Grade Reliability: Built to JANTX specifications, ensuring enhanced ruggedness and long-term stability in harsh industrial conditions.
- Wide Frequency Response: Transition frequency of 70 MHz facilitates use in high-speed switching and analog signal processing.
Typical Applications
- Differential amplifiers and current mirrors in precision analog circuits, benefiting from matched transistor pairs for optimal performance and noise reduction.
- High-frequency switching applications requiring consistent gain and reliability under varying operating conditions.
- Military and aerospace electronics where device ruggedness and compliance with JANTX standards are mandatory.
- Signal processing circuits demanding stable amplification and low distortion in industrial instrumentation systems.
JANTX2N5796U-Dual-Transistor Advantages vs Typical Alternatives
This dual transistor offers superior matching and reliability compared to standard discrete transistors, reducing circuit complexity and improving accuracy. Its military-grade qualification ensures enhanced durability and long-term performance under harsh environments. With a high transition frequency and adequate voltage ratings, it meets critical industrial and aerospace requirements, delivering consistent gain and low noise. These advantages make it a compelling choice over generic transistor pairs lacking equivalent precision and ruggedness.
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JANTX2N5796U-Dual-Transistor Brand Info
The JANTX2N5796U is a product typically manufactured under military and aerospace industry standards, often by established semiconductor manufacturers specializing in high-reliability components. The JANTX prefix indicates compliance with military specification MIL-PRF-19500, denoting rigorous screening for quality and performance. This dual transistor is sourced from reputable suppliers that ensure traceability and consistent manufacturing quality, meeting the stringent demands of defense and industrial sectors.
FAQ
What does the JANTX prefix in the transistor model indicate?
The JANTX prefix signifies that the transistor complies with the MIL-PRF-19500 military specification. This means the device has undergone extensive screening and testing to ensure high reliability, enhanced performance, and suitability for demanding defense and aerospace applications.
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Can the dual transistor be used for high-frequency analog circuits?
Yes, with a transition frequency of approximately 70 MHz, this dual transistor supports high-frequency analog applications. Its matched transistor pairs also help maintain signal integrity and low distortion in such circuits.







