RF IC

QPM-6582-0-LGA61C-MT-01-0

  • High-Performance Amplification: The Qualcomm QPM-6582-0-LGA61C-MT-01-0 is engineered to deliver superior RF amplification, ensuring high signal quality and reliable performance. It is designed for demanding communication applications where both efficiency and performance are critical.
  • Compact LGA Package: This amplifier is housed in an LGA61C package, which features 61 leads. The compact design allows for efficient use of space on the PCB (Printed Circuit Board), making it suitable for applications with size constraints while maintaining robust performance and durability.

Product Description

The Qualcomm QPM-6582-0-LGA61C-MT-01-0 is a cutting-edge RF power amplifier designed to meet the rigorous demands of modern communication systems. Its LGA61C package, with 61 leads, offers a compact yet robust form factor that supports secure and efficient integration into various circuit designs. This packaging solution provides a balance between space efficiency and mechanical durability, making it suitable for high-density PCB layouts.

This amplifier is engineered to deliver high performance across a wide frequency spectrum, which makes it versatile for a range of communication protocols. Its broad frequency range from 1.7 GHz to 2.7 GHz allows it to support advanced wireless standards, including 4G LTE and 5G technologies, ensuring compatibility with evolving communication networks.

The QPM-6582-0 excels in providing high gain with excellent linearity. With a typical gain range of 28 dB to 32 dB, it ensures effective signal amplification with minimal distortion. This high linearity is critical for preserving the quality and clarity of transmitted signals, which is essential for reliable and efficient communication.

The amplifier's design emphasizes efficiency, with high power-added efficiency (PAE) reducing both power consumption and thermal output. This efficient performance is particularly beneficial for battery-operated devices, as it helps extend battery life and minimizes the need for complex thermal management solutions.

In practical applications, the QPM-6582-0 is ideal for use in compact and high-performance wireless devices, such as smartphones, tablets, and other advanced communication equipment. Its compact size does not compromise its capability to deliver high power output, making it a valuable component for achieving robust signal transmission and connectivity in a variety of environments.

Overall, the Qualcomm QPM-6582-0-LGA61C-MT-01-0 stands out for its advanced amplification technology, wide frequency range, and high efficiency. It is designed to meet the demanding requirements of modern wireless communication systems, providing reliable and high-quality performance in a compact and efficient package.


Specification

  • Frequency Range: The QPM-6582-0 operates across a frequency range typically from 1.7 GHz to 2.7 GHz. This broad range supports various communication standards, including 4G LTE and emerging 5G networks, ensuring versatility in different applications.

  • Gain and Linearity: The amplifier provides a gain of approximately 28 dB to 32 dB. It is designed to offer high linearity, which minimizes signal distortion and ensures clear, high-fidelity signal amplification. This characteristic is crucial for maintaining the integrity of data transmission.

  • Power Output: The QPM-6582-0 is capable of delivering significant power output, typically in the range of +30 dBm to +33 dBm. This high output power supports strong and reliable signal transmission over longer distances, which is important for effective communication in various environments.

  • Efficiency: The device features high power-added efficiency (PAE), which helps in optimizing power consumption and reducing thermal output. This efficiency is particularly advantageous for portable and battery-powered applications, as it extends battery life and reduces the need for extensive cooling solutions.

  • Operating Voltage and Current: The amplifier generally operates at a voltage of around 5V. The current draw depends on the specific operating conditions and modes, with careful power management designed to ensure reliability and operational longevity.


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