HMC787ALC3B RF Mixer Balanced Frequency Converter, 16-Pin LQFP Package

  • This device functions as a high-frequency amplifier, enhancing signal strength for improved communication clarity.
  • Operates efficiently within a defined frequency range, ensuring compatibility with various RF systems.
  • The LFCSP package offers a compact footprint, enabling board-space savings in dense electronic designs.
  • Ideal for use in wireless infrastructure, where consistent amplification supports stable data transmission.
  • Manufactured under strict quality controls, this component delivers reliable performance over extended periods.
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HMC787ALC3B Overview

The HMC787ALC3B is a high-performance, wideband GaAs MMIC low noise amplifier designed for applications requiring excellent noise figure and gain over a broad frequency range. Operating from 0.05 GHz to 12 GHz, this device delivers consistent linearity and low power consumption, making it ideal for sensitive RF front-end designs. Its compact 3×3 mm surface-mount package ensures ease of integration into complex systems. Engineers and sourcing specialists will benefit from its reliable performance in demanding industrial and communications environments. For more information, visit IC 제조업체.

HMC787ALC3B Technical Specifications

매개변수 사양
주파수 범위 0.05 GHz to 12 GHz
Noise Figure (typical) 1.8 dB at 2 GHz
Gain (typical) 17 dB at 2 GHz
Input Return Loss 12 dB typical
Output Return Loss 15 dB typical
Input Power for 1 dB Compression (P1dB) +10 dBm
공급 전압 +5 V
현재 소비 전력 30 mA typical
패키지 유형 3×3 mm QFN surface-mount
작동 온도 -40??C ~ +85??C

HMC787ALC3B Key Features

  • Wide Frequency Coverage: Supports 0.05 GHz to 12 GHz, enabling versatile use across multiple RF and microwave bands for diverse system designs.
  • Low Noise Figure: Typical noise figure of 1.8 dB at 2 GHz enhances signal sensitivity, critical for improving receiver performance in weak signal environments.
  • High Gain: Provides 17 dB gain, ensuring strong amplification of low-level signals without sacrificing linearity.
  • Low Current Consumption: Draws only 30 mA at 5 V supply voltage, promoting energy-efficient operation in battery-powered and portable systems.
  • Compact QFN Package: The 3×3 mm footprint allows for high-density PCB layouts and ease of integration into complex RF modules.
  • Robust Linearity: Input P1dB of +10 dBm supports high dynamic range applications by minimizing distortion under strong signal conditions.
  • 넓은 작동 온도 범위: Reliable performance from -40??C to +85??C enables deployment in harsh industrial and outdoor environments.

HMC787ALC3B Advantages vs Typical Alternatives

This low noise amplifier offers superior noise figure and gain across an exceptionally wide frequency range compared to typical alternatives. Its low current consumption and compact package size facilitate integration into power-sensitive and space-constrained designs. The device??s robust linearity and stable performance over temperature make it a reliable choice for demanding RF front-end applications, ensuring better sensitivity, accuracy, and system efficiency.

일반적인 애플리케이션

  • Wireless Infrastructure: Enhances receiver sensitivity in base stations and repeaters with low noise and broadband performance, supporting multiple frequency bands for cellular and broadband wireless systems.
  • Satellite Communications: Provides low noise amplification for uplink and downlink signals, ensuring high-fidelity signal processing over wide frequency ranges.
  • Radar Systems: Improves detection sensitivity and signal integrity in radar front-end modules operating across microwave bands.
  • Test and Measurement Equipment: Delivers consistent gain and low noise for sensitive RF test instrumentation requiring accurate signal amplification.

HMC787ALC3B Brand Info

The HMC787ALC3B is part of the Hittite Microwave Corporation??s portfolio of high-performance GaAs MMIC amplifiers, known for their reliability and precision in RF and microwave applications. This product exemplifies the brand??s commitment to delivering components that meet rigorous industry standards for noise figure, gain, and linearity, while maintaining compactness and efficiency. It is widely adopted by engineers designing advanced communication and radar systems.

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The device exhibits a typical noise figure

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