HMC560A-SX Overview
The HMC560A-SX is a high-performance GaAs MMIC single balanced mixer designed for precise frequency conversion in RF and microwave systems. It operates over a broad frequency range from 5 GHz to 18 GHz, making it suitable for demanding communication and radar applications. This mixer offers excellent conversion loss, high linearity, and robust port-to-port isolation, ensuring superior signal integrity. Its compact surface-mount package supports easy integration into complex system designs. Available through IC Manufacturer, the device delivers reliable performance for advanced industrial and defense electronics.
HMC560A-SX Technical Specifications
| Parameter | Specification |
|---|---|
| Frequency Range (RF/LO) | 5 to 18 GHz |
| Conversion Loss | 8.5 dB typical |
| LO Drive Level | +17 dBm typical |
| Input Third Order Intercept Point (IIP3) | +20 dBm typical |
| LO to RF Isolation | 30 dB typical |
| LO to IF Isolation | 30 dB typical |
| IF Frequency Range | DC to 4 GHz |
| Supply Voltage | +5 V |
| Package Type | Surface Mount 4×4 mm QFN |
HMC560A-SX Key Features
- Wide RF and LO frequency range: Enables versatile use across multiple communication bands, facilitating broad system compatibility.
- Low conversion loss: Improves system noise figure, enhancing overall signal quality and receiver sensitivity.
- High linearity with +20 dBm IIP3: Supports high dynamic range applications by minimizing intermodulation distortion.
- Strong port-to-port isolation: Reduces unwanted signal feedthrough, ensuring cleaner frequency conversion performance.
- Compact surface-mount QFN package: Simplifies PCB layout and supports high-density system integration.
- Standard +5 V supply: Allows easy power management within typical RF front-end designs.
- Robust GaAs MMIC technology: Provides reliable operation over temperature and frequency, ideal for industrial and defense environments.
HMC560A-SX Advantages vs Typical Alternatives
This device offers a superior combination of low conversion loss and high linearity compared to typical mixers, resulting in improved sensitivity and signal fidelity. Its wide frequency coverage and robust isolation reduce interference and simplify system design. The compact QFN package enhances integration flexibility without compromising performance, making it a reliable choice for high-frequency industrial and defense applications.
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Typical Applications
- Frequency conversion in radar and EW systems requiring high linearity and broad frequency coverage for accurate signal processing and detection.
- Microwave communication transceivers where low conversion loss and strong isolation improve overall system noise figure and dynamic range.
- Test and measurement equipment demanding stable mixer performance across wide frequency bands.
- Satellite and aerospace RF front-end modules benefiting from compact footprint and robust GaAs technology for reliable operation.
HMC560A-SX Brand Info
Produced using advanced GaAs MMIC fabrication technology, this mixer reflects the brand??s commitment to high-performance RF components. The product line is well-known for delivering reliable, high-precision semiconductor devices engineered to meet the stringent requirements of industrial, aerospace, and defense markets. This model exemplifies the brand??s integration of compact design with superior electrical characteristics to support cutting-edge electronic systems.
FAQ
What is the typical conversion loss of this mixer?
The typical conversion loss is approximately 8.5 dB, which ensures efficient frequency conversion with minimal signal attenuation, supporting high-performance RF system designs.
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What frequency ranges does this mixer support for RF and LO inputs?
It supports RF and LO frequencies from 5 GHz up to 18 GHz, enabling use in a wide variety of microwave and millimeter-wave applications.
What level of linearity can be expected from this device?
The mixer offers a typical input third-order intercept point (IIP3) of +20 dBm, which indicates excellent linearity and suitability for high dynamic range applications.





