HMC8192-SX Overview
The HMC8192-SX is a high-performance, low-noise voltage-controlled oscillator (VCO) designed for applications requiring precise frequency synthesis and excellent phase noise characteristics. Operating in the 7.7 GHz to 8.8 GHz frequency range, this device delivers superior spectral purity with low phase noise and high output power, making it ideal for radar, communication, and test equipment systems. Its compact ceramic surface-mount package ensures ease of integration into demanding RF assemblies. The HMC8192-SX combines reliability with efficient performance, supported by proven technology from IC Manufacturer.
HMC8192-SX Technical Specifications
| Parameter | Specification |
|---|---|
| Frequency Range | 7.7 GHz to 8.8 GHz |
| Output Power (Pout) | +11 dBm minimum |
| Phase Noise @ 100 kHz Offset | -115 dBc/Hz typical |
| Supply Voltage (Vcc) | +5 V |
| Control Voltage (Vtune) | 0.5 V to 4.5 V |
| Current Consumption | 60 mA typical |
| Package Type | Ceramic surface-mount, 10-lead |
| Operating Temperature Range | -40??C to +85??C |
HMC8192-SX Key Features
- Wide Frequency Range: Covers 7.7 GHz to 8.8 GHz, enabling flexible use across multiple RF bands without additional hardware adjustments.
- Low Phase Noise Performance: Delivers phase noise as low as -115 dBc/Hz at 100 kHz offset, critical for systems requiring spectral purity and minimal signal distortion.
- High Output Power: Provides a minimum output power of +11 dBm, ensuring strong signal levels for downstream components and improving system link budgets.
- Compact Ceramic Package: Facilitates robust mechanical stability and thermal performance while supporting surface-mount assembly processes for high-volume manufacturing.
HMC8192-SX Advantages vs Typical Alternatives
This device offers superior phase noise and output power compared to common VCOs in the same frequency range, enhancing signal clarity and system reliability. Its broad tuning voltage range and compact form factor simplify integration and reduce external component count. The ceramic package improves thermal dissipation and long-term stability, delivering a dependable solution for demanding industrial and defense applications.
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Typical Applications
- Radar Systems: Provides stable and low-noise frequency sources essential for accurate target detection and range resolution in both military and commercial radar platforms.
- Communication Transmitters: Supports high-frequency local oscillator functions in point-to-point microwave links and satellite communication terminals.
- Test and Measurement Equipment: Enables precise frequency generation for signal analyzers and vector network analyzers requiring stable reference sources.
- Electronic Warfare Systems: Supplies low phase noise signals crucial for jamming and signal intelligence technologies.
HMC8192-SX Brand Info
The HMC8192-SX is part of the precision RF components portfolio from a leading semiconductor manufacturer specializing in high-frequency solutions. Known for rigorous quality standards and innovation, the brand delivers reliable, high-performance voltage-controlled oscillators tailored to industrial, defense, and communications markets. This product embodies the company??s commitment to advancing RF system capabilities through robust design and proven manufacturing excellence.
FAQ
What is the frequency tuning range of the HMC8192-SX?
The device offers a frequency tuning range from 7.7 GHz to 8.8 GHz, controlled via a tuning voltage between 0.5 V and 4.5 V. This wide range allows users to select frequencies within this band flexibly without hardware changes.
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How does the phase noise performance impact system operation?
Low phase noise, typically around -115 dBc/Hz at 100 kHz offset, minimizes spectral spreading and signal distortion. This is essential in high-performance applications such as radar and communication systems where signal integrity directly affects detection accuracy and data throughput.
What power supply voltage is required for this VCO?
The device operates from a single +5 V supply, simplifying system power design and making it compatible with standard industrial power rails.





