HMC1118LP3DE Overview
The HMC1118LP3DE is a high-performance integrated circuit designed for precision frequency synthesis applications. Engineered for low phase noise and excellent spurious performance, this device supports frequency generation in complex RF systems. Its wide frequency range and robust phase-locked loop (PLL) architecture make it suitable for communication infrastructure, test equipment, and radar systems. The compact, leadless package ensures easy integration and reliable operation under demanding industrial conditions. For sourcing and technical data, visit IC Manufacturer.
HMC1118LP3DE Technical Specifications
| Parameter | Value |
|---|---|
| Frequency Range | 100 MHz to 13 GHz |
| Phase Noise | -112 dBc/Hz at 10 kHz offset |
| Output Power | +3 dBm typical |
| Power Supply Voltage | +5 V ??5% |
| Lock Time | 2 ??s typical |
| Spurious Output Level | -70 dBc typical |
| Operating Temperature Range | -40??C to +85??C |
| Package Type | LP3 Leadless Package |
| Supply Current | 90 mA typical |
HMC1118LP3DE Key Features
- Wide frequency synthesis range: Supports frequencies up to 13 GHz, enabling versatile use in diverse RF applications.
- Low phase noise performance: Reduces signal jitter and improves system stability, critical for communication and radar systems.
- Fast lock time: Achieves PLL lock in approximately 2 ??s, enhancing system responsiveness and reducing downtime.
- Compact leadless packaging: Facilitates space-saving PCB layouts and improves thermal performance for reliable operation.
- Low supply current: Optimizes power efficiency, beneficial in battery-powered or energy-conscious systems.
- High output power level: Ensures strong signal drive capability, reducing the need for additional amplification stages.
- Wide operating temperature range: Suitable for industrial and outdoor environments requiring robust performance.
HMC1118LP3DE Advantages vs Typical Alternatives
This device stands out by delivering superior phase noise and fast lock times compared to typical frequency synthesizers. Its broad frequency range and high output power enable integration into complex RF systems with fewer external components. Additionally, the low power consumption and compact LP3 package improve overall system reliability and design flexibility, providing clear advantages in modern communication and radar applications.
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Typical Applications
- RF and microwave frequency synthesis in communication infrastructure, including base stations and satellite transceivers, where low phase noise and wide frequency coverage are essential for signal integrity.
- Test and measurement equipment requiring precise frequency control and rapid PLL lock for efficient operation during RF characterization.
- Radar systems that benefit from fast frequency switching and low noise to improve target detection accuracy.
- Instrumentation and signal generation platforms demanding stable, high-purity signals across a wide frequency span.
HMC1118LP3DE Brand Info
The HMC1118LP3DE is part of a well-established product family known for reliable, high-performance RF and microwave integrated circuits. Designed and manufactured with stringent quality standards, this device meets the demanding requirements of industrial and defense markets. Its proven technology platform ensures consistent performance, making it a preferred choice among engineers for frequency synthesis solutions in advanced communication and measurement systems.
FAQ
What is the frequency range supported by this device?
The device supports a frequency synthesis range from 100 MHz up to 13 GHz. This broad range enables its use in numerous high-frequency applications such as radar, satellite communication, and test instrumentation.
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How does the phase noise performance impact system design?
Low phase noise, such as the typical -112 dBc/Hz at 10 kHz offset offered by this device, reduces jitter and signal distortion. This enhances overall system stability, improving signal quality in sensitive RF applications and communication links.
What are the power supply requirements for this component?
The device operates on a single +5 V supply with a tolerance of ??5%. This standard voltage simplifies integration into existing power architectures and





