Power Amplifier

QPA-5461-0-54BLGA-TR-01-0

  • Wide Frequency Range: This power amplifier operates effectively across a broad frequency range, typically from 1.7 GHz to 2.7 GHz. This wide bandwidth allows it to support multiple frequency bands, making it versatile for various wireless communication protocols and enabling seamless connectivity across different networks.
  • Compact BGA Package: The QPA-5461 is housed in a compact Ball Grid Array (BGA) package, which is advantageous for space-constrained applications. The small footprint facilitates easy integration into mobile devices and other compact electronic systems, allowing manufacturers to design sleeker products without compromising performance.

产品描述

The Qualcomm QPA-5461-0-54BLGA-TR-01-0 is a state-of-the-art power amplifier tailored for high-performance applications in the telecommunications sector. Its design emphasizes high efficiency and linearity, which are critical for modern wireless communication systems that demand reliable and high-quality signal transmission.

One of the key features of the QPA-5461 is its ability to maintain high linearity across a wide range of operating conditions. This characteristic is particularly important in environments where high data rates and complex modulation schemes are used, as it helps to prevent signal distortion and ensures that the transmitted data remains intact. This is essential for applications such as video streaming, online gaming, and other data-intensive services.

The amplifier's wide frequency range allows it to support various communication protocols, making it a versatile choice for manufacturers looking to develop devices that can operate on multiple networks. This flexibility is essential in today’s rapidly evolving telecommunications landscape, where devices must be capable of adapting to different standards and frequencies.

In terms of integration, the QPA-5461's compact BGA package allows for efficient use of space on circuit boards, which is crucial for modern mobile devices that prioritize slim designs. The integrated power control features further enhance usability by allowing the amplifier to adjust its output dynamically based on the operating conditions, thereby optimizing performance and reducing power consumption.

Thermal management is another critical aspect of the QPA-5461's design. The amplifier is built to handle heat effectively, ensuring that it can operate reliably in various environmental conditions without the risk of overheating. This robustness is vital for maintaining consistent performance over time, especially in outdoor applications where temperature fluctuations can be significant.

In summary, the Qualcomm QPA-5461-0-54BLGA-TR-01-0 is a cutting-edge power amplifier that combines high efficiency, a wide frequency range, and a compact design. Its specifications and features make it an excellent choice for manufacturers in the telecommunications industry, providing the performance needed for next-generation wireless communication systems while ensuring energy efficiency and reliability.


规格参数

  1. Operating Frequency: The QPA-5461 operates within a frequency range of 1.7 GHz to 2.7 GHz, making it suitable for various wireless communication standards, including LTE and 5G.

  2. Output Power: The amplifier can deliver a maximum output power of up to 30 dBm, providing sufficient power for effective signal transmission in mobile networks.

  3. Power Gain: The device offers a power gain of approximately 30 dB, which is essential for amplifying weak signals to a level suitable for transmission.

  4. Efficiency: The typical efficiency of the QPA-5461 is around 40% at maximum output power, which is competitive for power amplifiers in its class, ensuring minimal energy waste.

  5. Supply Voltage: The amplifier operates with a supply voltage of 5V, which is standard for many RF applications, ensuring compatibility with existing designs.

  6. Thermal Resistance: The thermal resistance of the device is designed to manage heat effectively, allowing for stable operation without overheating.


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