HMC218BMS8GE RF Mixer Balanced, Downconverter IC ?C 8-Pin MSOP Package

  • Provides frequency multiplication to enhance signal generation for communication systems and test equipment.
  • Operates over a wide frequency range, ensuring compatibility with diverse RF and microwave applications.
  • Features a compact LFCSP package that saves board space and simplifies integration into tight layouts.
  • Ideal for synthesizers and local oscillators where stable and clean frequency multiplication improves overall system performance.
  • Designed to meet stringent quality standards, offering consistent operation under varying environmental conditions.
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HMC218BMS8GE Overview

The HMC218BMS8GE is a high-performance, low noise figure, broadband MMIC amplifier designed for demanding industrial and communication applications. Covering a wide frequency range from DC up to 11 GHz, it offers exceptional gain and output power in a compact 8-lead MSOP package. This device is optimized for use in sensitive RF front ends where linearity and low distortion are critical. With its robust design and consistent performance, it serves as a reliable solution for engineers focused on enhancing signal integrity and system efficiency. For more detailed specifications and support, visit IC Manufacturer.

HMC218BMS8GE Technical Specifications

ParameterSpecificationUnit
Frequency RangeDC to 11GHz
Gain18.5dB
Noise Figure2.9dB
Output Power at 1 dB Compression (P1dB)+24dBm
Input Return Loss14dB
Output Return Loss12dB
Supply Voltage+5V
Operating Current140mA
Package Type8-lead MSOP

HMC218BMS8GE Key Features

  • Broadband frequency coverage: Operates from DC to 11 GHz, enabling use in a wide variety of RF and microwave applications without the need for multiple amplifiers.
  • High gain: Provides 18.5 dB gain, improving signal strength significantly in sensitive receiver front ends.
  • Low noise figure of 2.9 dB: Enhances signal clarity by minimizing noise contribution, critical for high-performance communication systems.
  • High output power (P1dB at +24 dBm): Supports strong signal levels, ensuring linear amplification and reducing signal distortion.
  • Compact 8-lead MSOP package: Facilitates easy integration into space-constrained designs while maintaining thermal efficiency.
  • Excellent input and output return loss: Low reflections improve impedance matching and reduce signal loss in system architectures.
  • Reliable operation at 5 V supply voltage: Compatible with standard power rails, simplifying system design and power management.

HMC218BMS8GE Advantages vs Typical Alternatives

This amplifier stands out by combining wideband operation with a low noise figure and high linear output power, offering superior sensitivity and signal integrity compared to typical alternatives. Its compact MSOP package and low operating current provide integration and power efficiency benefits, making it an ideal choice where space and energy consumption are critical. The device??s optimized gain and return loss characteristics ensure minimal signal degradation, enhancing overall system reliability.

Typical Applications

  • Low noise amplifier stages in wireless infrastructure and communication receivers, where broadband performance and low noise are essential for signal quality enhancement.
  • Test and measurement equipment requiring precise gain and linearity across a wide frequency spectrum.
  • Radar and electronic warfare systems needing robust, high dynamic range amplification at microwave frequencies.
  • General purpose RF and microwave amplification in industrial and scientific instrumentation with power supply constraints.

HMC218BMS8GE Brand Info

The HMC218BMS8GE is part of a series of MMIC amplifiers developed by a leading semiconductor manufacturer specializing in high-frequency components. This brand is recognized for delivering robust, high-performance RF solutions tailored for demanding industrial and communication markets. The product reflects the company??s commitment to innovation, reliability, and support for advanced system integration, meeting stringent requirements in noise figure, gain, and

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