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SXA389BZ
+NomenclatureRF Amplifier 4-2500MHz SSG 13.6dB NF 4.8dB P1dB 25dBm
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FabricantLa société qorvo
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Pièce fabricant #SXA389BZ
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Fiche technique SXA389BZ DataSheet
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En stock3464
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Spécifications
| Attribut | Valeur |
| Packaging | MouseReel |
| Standard Pack Qty | 1000 |
Présentation
Description
Equivalent
1. RFMD/RF Micro Devices RFDA0017
2. Mini-Circuits GALI-39+
3. Analog Devices ADL5536
4. Qorvo TQP3M9009
These alternatives usually have similar gain, frequency range, and power handling capabilities. However, always check the datasheets to confirm matching specifications for your particular application.
Features
1. Frequency Range: It often supports a wide frequency range, suitable for RF communication systems.
2. Gain: The amplifier provides a consistent gain, which is crucial for signal boosting.
3. Output Power: It delivers a specific output power level, ensuring efficient performance in RF applications.
4. Noise Figure: A low noise figure is a feature, ensuring minimal signal degradation.
5. Supply Voltage: Operates at a specified voltage level, optimizing power consumption.
6. Impedance: Typically designed to match standard 50-ohm systems.
7. Package Type: Comes in a compact, easy-to-integrate package suitable for various applications.
8. Reliability: Built to withstand various operating conditions, ensuring long-term performance.
9. Applications: Used in wireless infrastructure, satellite communication, and other RF systems.
Please verify these features with the manufacturer's datasheet for precise specifications, as they can vary slightly based on the design or version.
Pinout
1. Pin 1 (RF Input): This is the input pin for the RF signal that needs to be amplified. It usually requires proper matching circuitry to ensure optimal performance.
2. Pin 2 (Ground/Case): This pin is connected to the ground and is often tied to the metal case of the package, providing a common ground reference and heat dissipation.
3. Pin 3 (RF Output/Bias): This pin serves as both the output for the amplified RF signal and the biasing point for the amplifier. Proper biasing is needed for the amplifier to function correctly.
Please refer to the specific datasheet of the SXA389BZ for detailed electrical characteristics and recommended application circuits, as this summary provides only a general overview.
Manufacturer
Application
1. Cellular Infrastructure: Enhances signal strength and quality in base stations.
2. Wi-Fi and WLAN Systems: Improves wireless connectivity performance in routers and access points.
3. Satellite Communications: Boosts signal transmission and reception for satellite links.
4. Microwave Radio Systems: Used in point-to-point communication systems.
5. RFID Systems: Enhances the range and reliability of RFID readers.
6. Military and Aerospace: Supports robust communication in demanding environments.
Its versatility and efficiency make it suitable for various RF amplification needs across these sectors.