HMC1055LP2CE Overview
The HMC1055LP2CE is a high-performance GaAs MMIC Voltage Controlled Oscillator (VCO) designed for applications requiring low phase noise and stable frequency generation in microwave systems. Operating over a frequency range of 6.0 to 7.2 GHz, this device offers excellent tuning linearity and low power consumption, making it suitable for integration in communication, radar, and instrumentation systems. Its compact surface-mount package supports efficient thermal management and easy PCB integration. Available through IC Manufacturer, the HMC1055LP2CE is optimized for demanding frequency synthesis and signal generation tasks in industrial and defense electronics.
HMC1055LP2CE Technical Specifications
| Parameter | Specification |
|---|---|
| Frequency Range | 6.0 GHz to 7.2 GHz |
| Phase Noise @ 100 kHz offset | -110 dBc/Hz typical |
| Supply Voltage (Vdd) | +5 V |
| Current Consumption | 35 mA typical |
| Tuning Voltage Range | 0.5 V to 4.5 V |
| Output Power | +7 dBm typical |
| Package Type | 4×4 mm QFN, surface-mount |
| Operating Temperature Range | -40??C to +85??C |
HMC1055LP2CE Key Features
- Wide Frequency Coverage: Covers 6.0 to 7.2 GHz, enabling flexible use across multiple microwave bands for communication and radar systems.
- Low Phase Noise Performance: Typical phase noise of -110 dBc/Hz at 100 kHz offset enhances signal purity and reduces spectral interference.
- Low Power Consumption: Consumes only 35 mA at 5 V supply, ensuring energy-efficient operation critical for portable and embedded applications.
- Compact Surface-Mount Package: The 4×4 mm QFN footprint supports high-density PCB layouts and simplifies thermal management.
HMC1055LP2CE Advantages vs Typical Alternatives
This voltage controlled oscillator delivers superior phase noise and power efficiency compared to typical alternatives in the 6 to 7 GHz range. Its GaAs MMIC technology ensures high reliability and consistent performance under varying operating conditions. The device??s compact surface-mount design facilitates easy integration into complex systems, while its linear tuning voltage range provides precise frequency control, making it a preferred choice for advanced microwave signal generation.
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Typical Applications
- Microwave communication systems requiring low phase noise oscillators for frequency synthesis and up/down conversion stages, enhancing overall system signal integrity.
- Radar and electronic warfare systems where frequency agility and phase noise performance are critical for detection and jamming capabilities.
- Test and measurement equipment demanding stable frequency sources with precise tuning for accurate signal generation and analysis.
- Industrial instrumentation requiring reliable oscillators with low power consumption in harsh temperature environments.
HMC1055LP2CE Brand Info
The HMC1055LP2CE is part of a family of high-performance GaAs MMIC components recognized for their precision and robustness. This product line is engineered to meet stringent requirements in aerospace, defense, and industrial markets. The device exemplifies the brand??s commitment to delivering reliable, high-frequency solutions with advanced semiconductor processing and quality assurance. Its integration-friendly design and documented performance make it a trusted choice for engineers designing next-generation microwave systems.
FAQ
What is the typical tuning voltage range for the HMC1055LP2CE?
The tuning voltage for this oscillator typically ranges from 0.5 V to 4.5 V. This range allows for precise and linear control of the output frequency across the specified 6.0 to 7.2 GHz band, facilitating accurate frequency synthesis in various applications.
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How does the phase noise performance impact system design?
Low phase noise, such as the -110 dBc/Hz at 100 kHz offset offered by this device, reduces unwanted signal jitter and spurious emissions. This improves signal clarity and system reliability, which is particularly important in radar, communication, and instrumentation systems where clean frequency sources are critical.
What is the power consumption of this voltage controlled oscillator?
The device typically consumes 35 mA when powered by a +5 V supply. This low current draw minimizes power requirements, making it suitable for battery-powered or energy-sensitive applications while maintaining high-performance





