
Analog Devices Inc.
HMC573LC3B
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HMC573LC3B Description
HMC573LC3B Description
The HMC573LC3B from Analog Devices Inc. is a high-performance frequency multiplier designed for demanding RF applications. Operating within a broad frequency range of 8GHz to 22GHz, this surface-mount device is optimized for DBS (Direct Broadcast Satellite) and VSAT (Very Small Aperture Terminal) systems. Packaged in a strip format, it complies with ROHS3 and REACH environmental standards, ensuring reliability in stringent conditions. With a Moisture Sensitivity Level (MSL) of 3 (168 hours), it is suitable for extended storage and handling in industrial environments.
HMC573LC3B Features
- Frequency Range: 8GHz–22GHz, enabling versatile use in high-frequency RF systems.
- Function: Precision ×2 frequency multiplication with low phase noise and high output power.
- RF Type: Optimized for DBS and VSAT, ensuring superior signal integrity in satellite communications.
- Compliance: ROHS3 Compliant and REACH Unaffected, meeting global environmental standards.
- Mounting: Surface-mount (SMD) design for compact PCB integration in space-constrained applications.
- Reliability: MSL 3 rating ensures robustness during assembly and storage.
HMC573LC3B Applications
- Satellite Communications: Ideal for VSAT terminals and DBS receivers, providing stable frequency multiplication.
- Military & Aerospace: Suitable for radar and EW (Electronic Warfare) systems requiring high-frequency stability.
- Test & Measurement: Used in signal generators and spectrum analyzers for precise frequency synthesis.
- 5G Infrastructure: Supports mmWave backhaul and RF front-end modules due to its wide bandwidth.
Conclusion of HMC573LC3B
The HMC573LC3B stands out as a high-reliability, broadband frequency multiplier with exceptional performance in satellite, military, and test equipment applications. Its wide frequency range, compliance with environmental standards, and compact SMD packaging make it a superior choice over competing models. Engineers seeking low-noise, high-efficiency frequency multiplication in 8GHz–22GHz systems will find this device indispensable for cutting-edge RF designs.



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