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Product Detailed Parameters
- Description:17-24 GHZ LNA
- Series:*
- Mfr:Analog Devices Inc.
- Package:Bulk
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- RF Type:-
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Overview
The HMC517-SX is a GaAs pHEMT MMIC low noise amplifier designed for VSAT and DBS applications. It operates within the 17 GHz to 26 GHz frequency range, with specific testing conducted between 22 GHz and 26 GHz. The device provides a typical gain of 18 dB and features a noise figure of 2.6 dB. It requires a 3 V power supply and draws 67 mA of current. Key performance metrics include a P1dB compression point of 13 dBm. The component is supplied in a die package format.
Feature Summary
- Utilizes GaAs pHEMT technology for high-performance RF amplification
- Optimized specifically for VSAT and DBS signal chain requirements
- Provides stable gain and low noise characteristics across Ku-band frequencies
Applications
- VSAT communication systems
- DBS receiver front-ends
- Point-to-point microwave links
Procurement Notes
Verify the specific suffix designation against official Analog Devices documentation to confirm exact electrical tolerances and testing conditions. Ensure that the die-level packaging requirements align with the intended assembly process. Confirm RoHS compliance status and moisture sensitivity levels prior to integration into the manufacturing flow.
Selection Notes
Select this component when designing Ku-band amplifiers requiring low noise figures and moderate output power. Consider the die form factor for custom substrate integration. Evaluate the 3V supply constraint against system power budgets. Compare gain and noise specifications against alternative MMICs for optimal link budget calculations.
Part Context
This part belongs to the HMC517 series from Analog Devices, focusing on monolithic microwave integrated circuits. The SX suffix typically denotes specific packaging or testing variations within the product line. It serves as a critical active component in satellite downlink receivers, replacing discrete transistor stages with a compact, reliable solution.
Replacement Considerations
Public confirmed substitute part numbers are not available in the provided source material.
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