
Analog Devices Inc.
HMC753LP4E
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HMC753LP4E Description
HMC753LP4E Description
The HMC753LP4E from Analog Devices Inc. is a high-performance RF amplifier designed for general-purpose applications across a broad frequency range of 1GHz to 11GHz. Housed in a compact 24-lead QFN package, this surface-mount device delivers 14dB gain with an impressive noise figure of just 2dB, making it ideal for low-noise signal amplification. Operating at a 5V supply voltage and drawing 55mA current, it achieves a P1dB output power of 15dBm, ensuring robust linearity for demanding RF systems. The amplifier is RoHS3 compliant, REACH unaffected, and features an MSL 1 (Unlimited) moisture sensitivity rating, ensuring reliability in harsh environments.
HMC753LP4E Features
- Broadband Performance: Covers 1GHz–11GHz, suitable for multi-band applications.
- Low Noise Figure (2dB): Enhances signal integrity in sensitive receivers.
- High Gain (14dB): Reduces the need for additional amplification stages.
- Excellent Linearity (15dBm P1dB): Supports high dynamic range systems.
- Low Power Consumption (55mA @ 5V): Optimized for portable and battery-operated devices.
- Robust Packaging: 24QFN ensures thermal efficiency and mechanical stability.
- Compliance: RoHS3, REACH Unaffected, ECCN EAR99 for global deployment.
HMC753LP4E Applications
- Satellite & Radar Systems: Leverages broadband performance for L/S/C/X-band applications.
- Test & Measurement Equipment: Low noise and high gain improve instrument sensitivity.
- Military & Aerospace: Reliable operation under stringent environmental conditions.
- 5G & Wireless Infrastructure: Supports mmWave backhaul and small-cell amplification.
- GPS/GNSS Receivers: Enhances signal clarity in navigation systems.
Conclusion of HMC753LP4E
The HMC753LP4E stands out as a versatile, high-performance RF amplifier, combining broadband coverage, low noise, and high linearity in a compact form factor. Its low power consumption and compliance with industry standards make it a preferred choice for defense, telecom, and instrumentation applications. Engineers benefit from its ease of integration and reliability, ensuring optimal performance in next-generation RF systems.



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