Manufacturer Part Number
HMC509LP5ETR
Manufacturer
Analog Devices
Introduction
The HMC509LP5ETR from Analog Devices is a dual-band Voltage Controlled Oscillator designed for high-performance RF applications.
Product Features and Performance
Dual-band VCO covering frequency ranges of 3.9 ~ 4.4GHz and 7.8 ~ 8.8GHz
Center frequencies at 4.15GHz and 8.3GHz
Supplied voltage of 5V with a tuning voltage range of 2 V ~ 13 V
Typical second harmonic suppression of 10 dBc
Maximum current consumption (Icc) of 270mA
Pushing factor of 10 MHz/V
Output power of 7.5±2.5 dBm and 12.5±2.5 dBm
Typical phase noise of -115 dBc/Hz
Packaged in a 32-VFQFN Exposed Pad
Product Advantages
Dual frequency operation suitable for versatile RF applications
Exceptional phase noise performance enhances signal integrity
Compact package size suitable for space-constrained applications
Key Technical Parameters
Frequency Range: 3.9 ~ 4.4GHz, 7.8 ~ 8.8GHz
Center Frequency: 4.15GHz, 8.3GHz
Supply Voltage: 5V
Tuning Voltage: 2 V ~ 13 V
2nd Harmonic, Typical: 10 dBc
Max Current Consumption: 270mA
Pushing: 10 MHz/V
Power Output: 7.5±2.5, 12.5±2.5 dBm
Phase Noise Typical: -115 dBc/Hz
Quality and Safety Features
Operates reliably within a temperature range of -40°C to 85°C
Compatibility
Suitable for integration in RF systems requiring precise frequency control and stability with minimal phase noise.
Application Areas
Telecommunications
Satellite communications
Test instrumentation
Defense and aerospace systems
Product Lifecycle
Currently in active production with no near-term discontinuation planned. Availability of upgrades or replacements will be announced as per market demand and technological advancements.
Several Key Reasons to Choose This Product
Industry-leading phase noise performance for superior signal clarity
Dual-band capability offering flexibility in application design
Reliable operation across a broad temperature spectrum (-40°C to 85°C)
Compact size facilitates integration in size-sensitive applications
Backed by Analog Devices' reputation and support in the semiconductor industry