RF IC

QPM-5641-0-LGA40E+S-MT-32-0

  • High Efficiency: The QPM-5641-0 is optimized for power efficiency, which is crucial for reducing energy consumption and extending battery life in mobile and portable devices. This efficiency contributes to improved overall system performance and energy savings.
  • Compact LGA Package: Encased in a compact Land Grid Array (LGA) package with 40 pins, this component is designed to fit into smaller PCB spaces while ensuring reliable electrical connections. The compact design is beneficial for high-density circuit boards and space-constrained applications.

Product description

The Qualcomm QPM-5641-0-LGA40E+S-MT-32-0 is engineered to deliver high performance in advanced RF and communication systems. Here’s a more detailed look at its functionality and applications:

  • Integration and Functionality: The QPM-5641-0 integrates advanced RF technology to support a range of communication needs, from cellular base stations to sophisticated mobile devices. Its high power efficiency and low noise characteristics enhance system performance by improving signal clarity and reducing power consumption.

  • Design and Construction: Featuring a compact LGA40E package with 40 pins, the QPM-5641-0 is designed for integration into high-density PCB layouts. The package ensures reliable electrical connections and effective thermal management. Its construction is optimized for durability, with materials chosen to withstand the stresses of continuous operation.

  • Application Suitability: The wide frequency range and high gain of the QPM-5641-0 make it versatile for various communication applications, including 4G LTE and 5G networks. Its ability to handle high power and operate across a broad spectrum of frequencies makes it suitable for different communication standards and protocols.

  • Performance Characteristics: The component’s low noise figure and high linearity are essential for maintaining high-quality signal transmission and reception. It minimizes signal distortion and interference, ensuring clear and reliable communication. The advanced thermal management design helps prevent overheating, maintaining stable performance even under high-power conditions.

  • Reliability and Longevity: Built for reliability, the QPM-5641-0 is designed to withstand continuous operation and varying environmental conditions. Its high-quality construction and advanced design features contribute to long-term reliability and consistent performance, making it a dependable choice for demanding RF applications.

In summary, the Qualcomm QPM-5641-0-LGA40E+S-MT-32-0 is a high-performance RF component that offers a combination of efficiency, reliability, and versatility. Its advanced features and specifications make it an essential element in modern communication systems, delivering exceptional performance and durability across a wide range of applications.


Specification parameters

  • Package Type: LGA40E, a Land Grid Array package with 40 pins. This package type provides reliable electrical connections and efficient thermal management in a compact form factor.

  • Frequency Range: The QPM-5641-0 operates across a wide frequency range. For detailed frequency range specifications and application suitability, it is recommended to consult the datasheet, which provides precise operational limits.

  • Power Handling: The component is designed to handle significant power levels, making it suitable for high-power applications. Exact power handling capabilities should be reviewed in the datasheet to ensure compatibility with specific application requirements.

  • Gain: The QPM-5641-0 offers high gain, which is crucial for amplifying weak signals and ensuring strong performance. Detailed gain characteristics are available in the datasheet.

  • Operating Temperature Range: The component operates reliably across a broad temperature range, ensuring consistent performance under various environmental conditions.

  • Impedance Matching: The QPM-5641-0 includes impedance matching features that optimize signal transfer and minimize reflections. This is important for maintaining signal integrity and achieving optimal performance.


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