NXP Semiconductors
A2I20D040GNR1
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A2I20D040GNR1 Description
A2I20D040GNR1 Description
The A2I20D040GNR1 from NXP Semiconductors is a high-performance RF amplifier designed for 1.4GHz to 2.2GHz frequency range, with a test frequency span of 1.8GHz to 2.2GHz. This surface-mount device operates at a 28V supply voltage with a 220mA current supply, delivering an impressive 36.3W P1dB output power and 32.7dB gain, making it ideal for high-power RF applications. Packaged in Tape & Reel (TR) for automated assembly, it complies with ROHS3 and REACH Unaffected standards, ensuring environmental and regulatory compatibility.
A2I20D040GNR1 Features
- Broad Frequency Range: Covers 1.4GHz–2.2GHz, suitable for diverse RF applications.
- High Power & Gain: 36.3W P1dB and 32.7dB gain ensure robust signal amplification.
- Surface-Mount Design: Compact TO270WBG package enables easy integration into PCB layouts.
- Low Noise & High Efficiency: Optimized for minimal signal degradation and power efficiency.
- Regulatory Compliance: ROHS3 Compliant, EAR99 ECCN, and REACH Unaffected status.
- Moisture Sensitivity Level (MSL) 3: Suitable for industrial environments with proper handling.
A2I20D040GNR1 Applications
- Wireless Infrastructure: Base stations, repeaters, and small-cell networks.
- Defense & Aerospace: Radar systems, satellite communications, and avionics.
- Test & Measurement Equipment: Signal generators, spectrum analyzers, and RF test setups.
- 5G & IoT Devices: High-frequency amplification for next-gen connectivity solutions.
- Broadcast Systems: High-power RF transmission for TV and radio broadcasting.
Conclusion of A2I20D040GNR1
The A2I20D040GNR1 stands out as a high-power, high-gain RF amplifier with broad frequency coverage, making it a versatile choice for demanding RF applications. Its surface-mount design, regulatory compliance, and superior performance make it ideal for wireless, aerospace, and test equipment markets. Engineers seeking reliable amplification with minimal noise will find this NXP amplifier a robust solution for their high-frequency needs.



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