Power Amplifier

QPA-3920AQ-0-LGA36E+S-TR-J0-0

  • Compact Package: With its LGA36E package, the amplifier offers a small footprint while providing reliable electrical and mechanical connections, facilitating easy integration into compact electronic devices.
  • Low Noise Figure: Designed to minimize noise, the amplifier ensures clean signal amplification, which is essential for high-quality communication and data integrity.
  • Thermal Stability: It features robust thermal management to ensure consistent performance across a wide range of operating temperatures, enhancing reliability in diverse environments.

产品描述

The Qualcomm QPA-3920AQ-0-LGA36E+S-TR-J0-0 is a high-performance RF amplifier built to excel in demanding communication scenarios.

  • Design and Construction: The amplifier is housed in an LGA36E package, which provides a compact and efficient footprint. This package type ensures that the amplifier can be easily mounted on circuit boards and integrated into space-constrained systems without compromising performance or reliability. The design emphasizes robustness, with precise engineering to handle high-frequency signals efficiently.

  • Performance Characteristics: The QPA-3920AQ-0 offers a high gain that is crucial for amplifying weak signals to a level suitable for further processing or transmission. Its low noise figure ensures that the amplification process does not introduce significant noise, which is essential for maintaining signal integrity and quality. The wide frequency range of the amplifier makes it adaptable to various RF applications, whether in cellular base stations, satellite systems, or broadband communication networks.

  • Thermal Management: Effective thermal management is integral to the amplifier’s design, allowing it to operate reliably across a wide temperature range. This feature is particularly important in high-power applications where heat generation can impact performance and longevity. The amplifier is engineered to dissipate heat efficiently, ensuring stable operation and preventing thermal-related issues.

  • Applications: Due to its high gain, low noise, and broad frequency coverage, the QPA-3920AQ-0 is ideal for use in a variety of high-performance communication systems. Its compact size makes it suitable for integration into both portable and fixed systems, where space and performance are critical. The amplifier's versatility ensures it can be used in diverse scenarios, from consumer electronics to industrial and commercial communication systems.

In summary, the Qualcomm QPA-3920AQ-0-LGA36E+S-TR-J0-0 is a sophisticated RF amplifier that combines high gain, low noise, and broad frequency range with a compact and efficient design. Its advanced features make it a valuable component in high-performance communication systems, providing reliable signal amplification and robust performance.


规格参数

  • Package Type: LGA36E – A 36-pin Land Grid Array package providing a compact and efficient layout for integration onto circuit boards.

  • Frequency Range: The amplifier typically covers a wide frequency range, which can be detailed in the specific datasheet. This range allows it to be used in various RF bands and communication systems.

  • Gain: It offers high gain, often ranging from 25 to 35 dB, which amplifies signals effectively while minimizing signal loss.

  • Power Output: The amplifier is capable of delivering significant power output, usually measured in watts, suitable for high-demand applications.

  • Input/Output Impedance: It generally features a standard 50 ohms impedance for both input and output, ensuring compatibility with other RF components.

  • Noise Figure: The amplifier has a low noise figure, which is crucial for preserving signal clarity and reducing interference in the amplified signal.

  • Operating Voltage: The device operates within a specified voltage range, often between 5V and 12V, accommodating various system requirements.

  • Thermal Resistance: Designed with effective thermal resistance to manage heat dissipation, the amplifier maintains performance stability even under high power conditions.


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