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BFU590GX
+БОМRF TRANS NPN 12V 8.5GHZ SOT223
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ПроизводительКомпания NXP USA Inc.
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Мфр. Часть #BFU590GX
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Лист данных BFU590GX DataSheet
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Пакет TO-261-4,TO-261AA
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В наличии7405
365 Дни гарантии качества
7*24 часы обслуживания каранти
90-гарантия послепродажного дня
Гарантия подлинного продукта
Спецификации
| Атрибут | Ценность |
| Package | Tape & Reel (TR),Cut Tape (CT) |
| ProductStatus | Active |
| TransistorType | NPN |
| Voltage-CollectorEmitterBreakdown(Max) | 12V |
| Frequency-Transition | 8.5GHz |
| Gain | 8dB |
| Power-Max | 2W |
| DCCurrentGain(hFE)(Min)@IcVce | 60 @ 80mA, 8V |
| Current-Collector(Ic)(Max) | 200mA |
| OperatingTemperature | -40°C ~ 150°C (TJ) |
| MountingType | Surface Mount |
| Package/Case | TO-261-4, TO-261AA |
Обзор
Description
The BFU590GX offers a transition frequency (fT) of approximately 45 GHz, ensuring robust performance at high frequencies. It operates at a low supply voltage, typically around 3.3V, and has a collector current rating suitable for small-signal applications. Encased in a compact SOT-363 package, it supports miniaturization in circuit design.
The component's high gain and linearity make it ideal for use in wireless communication equipment, including mobile phones, satellite receivers, and RF modules. Its reliability and efficiency are further enhanced by advanced manufacturing techniques, ensuring consistent performance across various applications.
Equivalent
1. BFR92A
2. BFS17A
3. BFP420
4. MMBTH81 (similar performance parameters)
5. Infineon's BFP520 and BFP540 (depending on specific application needs)
When seeking an equivalent, always verify the specifications like frequency range, gain, noise figure, and power handling to ensure compatibility with your application.
Features
1. High Frequency Performance: Optimized for frequencies up to 12 GHz, making it suitable for RF amplification and oscillator applications in the GHz range.
2. Low Noise Figure: Offers a low noise figure, typically around 0.75 dB at 2 GHz, which is ideal for low-noise amplifier designs requiring minimal signal distortion.
3. High Gain: Provides high gain performance, which is beneficial for applications demanding strong signal amplification.
4. High Linearity: Ensures high linearity, which helps in reducing distortion in amplified signals, crucial for maintaining signal integrity in communication systems.
5. Compact Package: Available in a small SOT-363 package, allowing for space-efficient designs.
6. Thermal Stability: Designed for stable performance across a wide temperature range, contributing to reliable operation in various environmental conditions.
These features make the BFU590GX suitable for use in wireless communication devices, satellite receivers, and other RF systems.
Pinout
1. Emitter (E1): This is one of the two emitter connections in a dual-emitter configuration, helping to optimize the transistor's performance.
2. Base (B): This pin is used to control the transistor's operation. A small current at this pin allows a larger current to flow between the collector and emitter.
3. Collector (C): This pin is where the main current flows out of the transistor, controlled by the base current.
4. Emitter (E2): The second emitter pin, which works in conjunction with E1 for better signal performance.
5. Substrate/Ground (Gnd): Often connected to ground, providing a return path for current and helping in thermal and electrical stability.
6. Not Connected (NC): This pin is often not internally connected and may be used for mechanical stability or heat dissipation.
These pins work together to amplify RF signals in various applications, such as wireless communication systems.
Manufacturer
Application
1. Wireless Communication: Amplifiers in cellular base stations, Wi-Fi, and Bluetooth devices.
2. Broadband Applications: Cable modems and set-top boxes.
3. Low-Noise Amplifiers (LNA): Improving signal quality in receivers.
4. Satellite and Radar Systems: Signal processing and amplification.
5. Automotive Applications: Vehicle communication systems like V2X.
6. Industrial and Scientific Equipment: RF heating and medical imaging systems.
Its high gain and low noise figure make it suitable for applications requiring signal amplification with minimal distortion.