HMC260ALC3BTR-R5 GaAs MMIC Amplifier in 3mm ?? 3mm QFN Package

  • This device amplifies high-frequency signals, enhancing communication system performance and signal clarity.
  • Featuring a wide frequency range, it supports versatile applications requiring consistent gain across bands.
  • The compact LFCSP package reduces board space, simplifying integration in dense circuit designs.
  • Ideal for use in RF front-end modules, it improves signal strength in wireless communication devices.
  • Manufactured under strict quality controls, it ensures reliable operation in demanding environments.
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HMC260ALC3BTR-R5 Overview

The HMC260ALC3BTR-R5 is a high-performance GaAs MMIC low noise amplifier designed for operation across a wide frequency range from 30 MHz up to 2.5 GHz. This device delivers excellent gain and low noise figure, making it ideal for applications requiring enhanced signal integrity and sensitivity. Packaged in a compact 3×3 mm leadless surface-mount package, it supports high linearity and low current consumption, providing reliable and efficient amplification in demanding RF environments. For detailed technical support and sourcing options, visit Produttore di circuiti integrati.

HMC260ALC3BTR-R5 Technical Specifications

Parametro Specifiche
Gamma di frequenza 30 MHz to 2.5 GHz
Gain 18 dB (typical)
Noise Figure 1.3 dB (typical)
Input Return Loss 15 dB (typical)
Output Return Loss 15 dB (typical)
Output P1dB Compression Point +15 dBm (typical)
Tensione di alimentazione +5 V DC
Corrente di alimentazione 45 mA (typical)
Pacchetto 3 x 3 mm Leadless SMT

HMC260ALC3BTR-R5 Key Features

  • Wide Frequency Coverage: Supports 30 MHz to 2.5 GHz, allowing versatile use in diverse RF systems.
  • Low Noise Figure: Typical 1.3 dB noise figure enhances signal clarity, improving system sensitivity.
  • High Gain: Approximately 18 dB gain ensures strong signal amplification for weak input signals.
  • Compact SMT Package: The 3×3 mm leadless surface mount design facilitates easy PCB integration and reduces board space.
  • High Linearity: +15 dBm output P1dB supports handling of high input power without distortion.
  • Basso consumo di corrente: 45 mA typical current draw optimizes power efficiency in battery-powered or constrained systems.
  • Robust Input/Output Matching: 15 dB return loss improves impedance matching, minimizing reflection and signal loss.

HMC260ALC3BTR-R5 Advantages vs Typical Alternatives

This low noise amplifier offers superior noise performance and gain across a broad frequency range, outperforming many typical alternatives in sensitivity and linearity. Its low current consumption and compact package deliver efficient integration into space-constrained designs, ensuring reliability and consistent performance in demanding RF applications. The device??s excellent input/output return loss minimizes signal reflections, enhancing overall system accuracy and stability.

Applicazioni tipiche

  • Wireless communications systems requiring low noise amplification and wideband frequency support from VHF to low microwave bands.
  • RF front-end modules in radar and electronic warfare systems where sensitivity and linearity are critical.
  • Signal amplification in instrumentation and test equipment demanding high gain with low distortion.
  • Broadband receivers and transceivers benefiting from compact, low power, and high-performance amplification solutions.

HMC260ALC3BTR-R5 Brand Info

The HMC260ALC3BTR-R5 is part of a family of GaAs MMIC amplifiers known for their precision and reliability in industrial and defense-grade RF applications. Manufactured using advanced gallium arsenide technology, this model exemplifies a commitment to high-frequency, low noise amplification with robust performance under a variety of operating conditions. Its brand reputation emphasizes consistent quality, tight manufacturing tolerances, and comprehensive technical support tailored to engineers and sourcing professionals.

FAQ

What is the typical operating frequency range of this amplifier?

The device operates effectively from 30 MHz up to 2.5 GHz, covering a broad spectrum suitable for various RF applications including V

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