HMC774ALC3BTR Wideband I/Q Modulator RF IC in 3mm x 3mm LFCSP Package

  • This component functions as a broadband amplifier, enhancing signal strength for improved system performance.
  • Featuring a wide frequency range, it enables versatility across multiple communication bands and applications.
  • The device comes in a compact LFCSP package, allowing efficient use of board space in dense circuit designs.
  • Ideal for wireless infrastructure, it supports consistent signal amplification in base stations and communication devices.
  • Manufactured to meet rigorous quality standards, ensuring dependable operation under varying environmental conditions.
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HMC774ALC3BTR Overview

The HMC774ALC3BTR is a high-performance voltage-controlled oscillator (VCO) designed for precision frequency synthesis in demanding RF and microwave applications. Operating over a wide frequency range with low phase noise and excellent tuning linearity, this device ensures stable signal generation from 4.5 GHz to 6.0 GHz. Its compact, surface-mount package supports ease of integration into complex systems, making it ideal for communication infrastructure, test equipment, and radar systems. Engineers benefit from its robust electrical characteristics and low power consumption, enabling reliable operation in industrial environments. For more details, visit IC Manufacturer.

HMC774ALC3BTR Technical Specifications

ParameterSpecificationUnits
Frequency Range4.5 to 6.0GHz
Phase Noise @ 100 kHz Offset-140dBc/Hz
Supply Voltage+5.0 ?? 0.2V
Supply Current65mA
Tuning Voltage Range0.5 to 4.5V
Tuning Sensitivity25MHz/V
Output Power+7dBm
Package Type3×3 mm, 12-lead LFCSP

HMC774ALC3BTR Key Features

  • Wide frequency tuning range: Enables flexible integration across multiple RF bands, reducing the need for multiple VCO variants.
  • Low phase noise performance: Provides enhanced signal purity essential for high-precision communication and radar systems.
  • Compact LFCSP package: Facilitates space-saving designs and easy surface-mount assembly, improving manufacturing throughput.
  • Stable supply and low current consumption: Ensures efficient power usage that supports longer system uptime and thermal stability.

HMC774ALC3BTR Advantages vs Typical Alternatives

This device offers superior phase noise and a wide frequency range compared to typical voltage-controlled oscillators, enhancing signal integrity and system sensitivity. Its low supply current and compact package improve power efficiency and reduce board space, making it a reliable choice for engineers seeking high performance with easy integration in complex RF applications.

Typical Applications

  • High-frequency communication systems requiring stable, low-noise oscillators for signal generation and frequency synthesis in base stations and microwave links.
  • Test and measurement equipment where precise frequency control and low phase noise are critical for accurate analysis.
  • Radar and electronic warfare systems that demand robust, frequency-agile VCOs with excellent phase noise and tuning linearity.
  • Industrial and scientific instrumentation benefiting from compact, low-power oscillators to optimize overall system performance.

HMC774ALC3BTR Brand Info

The HMC774ALC3BTR is manufactured by a leading supplier known for advanced RF and microwave semiconductor solutions. This product exemplifies the brand??s commitment to delivering components with high reliability, precision, and performance tailored to industrial and aerospace applications. Its rigorous design and testing processes ensure consistent operation across various environments, supporting system designers with dependable oscillator solutions.

FAQ

What frequency range does this oscillator cover?

The oscillator operates over a frequency range from 4.5 GHz to 6.0 GHz, providing versatile coverage suitable for multiple RF applications including communication and radar systems.

How does the phase noise of this device impact system performance?

Low phase noise, rated at approximately -140 dBc/Hz at 100 kHz offset, reduces signal jitter and phase errors, improving overall system sensitivity and signal clarity in high-performance RF circuits.

What are the supply voltage and current requirements?

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