Envelope Tracker

QET-5100-0-40DWLNSP-SR-04-0

  • Wide Frequency Range: This module operates across a broad frequency spectrum, typically from 1 GHz to 6 GHz. This versatility enables compatibility with various wireless standards, including LTE and 5G, ensuring robust connectivity and high data rates for mobile devices.
  • Integrated Design: The QET-5100 integrates multiple functions, including power amplification and filtering, within a compact form factor. This integration simplifies the overall system design, reduces component count, and minimizes the required board space, which is critical for modern, space-constrained devices.

Product description

The Qualcomm QET-5100-0-40DWLNSP-SR-04-0 RF front-end module represents a significant advancement in wireless technology. As the demand for high-speed, reliable communication continues to grow, this module is tailored to meet the evolving needs of the industry.

Wide Frequency Range: The QET-5100’s operational range from 1 GHz to 6 GHz makes it highly adaptable for various applications, including 4G LTE and 5G networks. This broad frequency support enables seamless communication across different devices and services, ensuring that users can enjoy fast data rates and minimal latency. Such flexibility is vital for today’s diverse ecosystem of connected devices, from smartphones to IoT applications.

Integrated Design: The module’s integrated architecture allows for the combination of power amplification and filtering in a single package. This design not only reduces the overall size of the module but also simplifies the manufacturing process. By minimizing the number of discrete components required, manufacturers can streamline production, reduce costs, and improve reliability. This integration is particularly advantageous in mobile devices, where space is at a premium and performance must not be compromised.

Enhanced Power Efficiency: One of the most significant advantages of the QET-5100 is its high power-added efficiency. Achieving PAE levels between 30% and 38% means that the module can amplify signals effectively while minimizing energy loss. This efficiency is crucial for battery-powered devices, as it extends battery life and enhances overall device performance. Furthermore, the lower thermal output reduces the need for complex cooling solutions, making it ideal for compact designs where heat management is a concern.

Robust Thermal Management: The QET-5100 is engineered with effective thermal management features that allow it to operate reliably under various conditions. With optimized thermal resistance, the module can dissipate heat efficiently, ensuring consistent performance even during high-demand scenarios. This reliability is essential for maintaining signal integrity and operational stability, particularly in environments where devices may be subjected to varying thermal conditions.

High Linearity: The module is designed for high linearity, which preserves signal quality and reduces distortion. This characteristic is particularly important for applications requiring high fidelity, such as video streaming and real-time communications. By maintaining signal integrity, the QET-5100 ensures a superior user experience, meeting the demands of modern multimedia applications.


Specification parameters

  • Frequency Range: 1 GHz to 6 GHz, accommodating a variety of wireless communication protocols and ensuring versatility in application.

  • Output Power: Capable of providing up to 30 dBm output power, essential for strong signal transmission over extended distances.

  • Power Added Efficiency (PAE): Typically ranges from 30% to 38%, allowing for effective power management and lower energy costs.

  • Input/Output Impedance: Standard 50 Ohm, ensuring compatibility with a wide range of RF components for straightforward integration.

  • Operating Voltage: Designed to operate efficiently across a specified voltage range, enhancing flexibility in different power supply configurations.

  • Thermal Resistance: Optimized to support effective heat dissipation, maintaining performance under demanding operational conditions.


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