HMC520ALC4 Overview
The HMC520ALC4 is a high-performance monolithic integrated circuit designed for frequency conversion applications in microwave and RF systems. Operating across a broad frequency range, this device offers low noise figure and high linearity, making it ideal for sensitive receiver front-ends. Its compact surface-mount package supports efficient integration into complex communication and radar systems. Engineered to deliver consistent performance with excellent conversion gain and isolation, it enhances signal integrity while minimizing distortion. For engineers and sourcing specialists seeking reliable frequency conversion solutions, this component stands as a robust choice. Find more details at IC Üreticisi.
HMC520ALC4 Technical Specifications
Parametre | Şartname |
---|---|
Frequency Range (RF) | 2.0 to 20 GHz |
Dönüşüm Kazancı | 12 dB (tipik) |
Gürültü Şekli | 8 dB (typical) |
Input Third-Order Intercept Point (IIP3) | +18 dBm (typical) |
LO Drive Level | +7 dBm (typical) |
Besleme Gerilimi | +5 V |
DC Current | 70 mA (typical) |
Paket Tipi | 4×4 mm QFN Surface Mount |
HMC520ALC4 Key Features
- Wide frequency coverage: Supports RF input signals from 2 to 20 GHz, enabling versatile use in multifrequency systems.
- High conversion gain: Delivers approximately 12 dB gain, improving signal strength and system sensitivity.
- Düşük gürültü değeri: Maintains an 8 dB noise figure to minimize added noise, critical for low-level signal processing.
- Robust linearity: +18 dBm IIP3 ensures minimal distortion and intermodulation, enhancing signal fidelity.
- Integrated mixer design: Monolithic construction reduces external component count, simplifying PCB layout and improving reliability.
- Standard LO drive level: Operates with +7 dBm local oscillator input, compatible with common LO sources.
- Compact QFN package: Facilitates high-density assembly and thermal management in space-constrained applications.
HMC520ALC4 Advantages vs Typical Alternatives
This frequency mixer offers a superior balance of conversion gain and noise figure compared to typical discrete or hybrid alternatives. Its monolithic integration reduces signal losses and improves linearity, resulting in enhanced sensitivity and accuracy in RF front-end designs. The compact surface-mount package supports streamlined manufacturing and higher system reliability, making it a preferred choice for demanding industrial and communication applications.
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Tipik Uygulamalar
- Microwave and RF communication systems: Used as a downconverter or upconverter in transceiver signal chains to enable frequency translation with low noise and high linearity.
- Radar signal processing: Supports frequency conversion in radar receivers and transmitters, ensuring precise signal handling at microwave frequencies.
- Test and measurement equipment: Facilitates frequency mixing stages in analyzers and signal generators requiring stable, low-distortion performance.
- Satellite and aerospace communications: Enhances signal integrity in high-frequency satellite transponders and airborne communication modules.
HMC520ALC4 Brand Info
The HMC520ALC4 is manufactured by a leading semiconductor company specializing in high-frequency monolithic integrated circuits. This product reflects the brand??s commitment to precision RF solutions tailored for industrial, defense, and commercial markets. Designed with rigorous quality standards, it delivers consistent performance and reliability in challenging environments. The brand??s portfolio includes a wide range of mixers, amplifiers, and synthesizers, supporting engineers in building advanced microwave systems.
SSS
What is the operating frequency range of this frequency mixer?
The device operates effectively across a broad RF frequency range from 2.0 to 20 GHz. This wide coverage allows it to be used in various microwave and RF applications that span multiple communication bands.
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What power supply voltage and current does this component require?
The mixer requires a single +5 V supply voltage and typically draws about 70 mA of DC current. This voltage level is standard for many RF system designs, facilitating easy integration without additional regulators.
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