
Analog Devices Inc.
HMC490LP5E
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HMC490LP5E Description
HMC490LP5E Description
The HMC490LP5E from Analog Devices Inc. is a high-performance RF amplifier designed for 12GHz to 16GHz applications. Packaged in a compact 32QFN surface-mount format, this IC is optimized for VSAT (Very Small Aperture Terminal) and DBS (Direct Broadcast Satellite) systems. It operates on a 5V supply voltage with a 200mA current draw, delivering 23dB gain and 25dBm output power at 1dB compression (P1dB). With a low noise figure of 2.5dB, it ensures superior signal integrity in high-frequency environments. The device is RoHS3 compliant, REACH unaffected, and rated for MSL 1 (unlimited shelf life), making it suitable for industrial and commercial deployments.
HMC490LP5E Features
- Frequency Range: 12GHz–16GHz, ideal for Ku-band satellite communications.
- High Gain & Power: 23dB gain and 25dBm P1dB for robust signal amplification.
- Low Noise Figure: 2.5dB minimizes signal degradation in sensitive receive chains.
- Efficient Power: 5V supply with 200mA current consumption balances performance and energy efficiency.
- Robust Packaging: 32QFN strip package ensures reliable surface-mount assembly.
- Compliance: RoHS3, REACH, and EAR99 (export-friendly) certified.
HMC490LP5E Applications
This amplifier excels in:
- VSAT Systems: Enhances uplink/downlink signal strength in satellite ground stations.
- DBS Receivers: Improves signal-to-noise ratio in broadcast satellite applications.
- Military/Aerospace: Suitable for radar, EW (Electronic Warfare), and secure comms due to its wide bandwidth and stability.
- Test Equipment: Used in RF signal generators and spectrum analyzers for high-fidelity amplification.
Conclusion of HMC490LP5E
The HMC490LP5E stands out for its high gain, low noise, and compact design, making it a top choice for Ku-band satellite and high-frequency RF systems. Its compliance with environmental standards and robust performance metrics ensure reliability in demanding applications. Engineers seeking a balance of power efficiency and signal integrity in the 12GHz–16GHz range will find this amplifier an optimal solution.



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