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A Dual Load-Modulated Doherty Power Amplifier Design Method for Improving Power Back-Off Efficiency

Overview
Journal Sensors (Basel)
Publisher MDPI
Specialty Biotechnology
Date 2023 Jul 29
PMID 37514893
Authors
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Abstract

In this paper, the load modulation process of a Doherty power amplifier (DPA) is analyzed to address the issue of why designed DPAs have a very low efficiency in the back-off state in some cases. A general formula of the real load modulation process is also given for analyzing the load modulation of a peak PA matching network. This provides a new perspective for improving the back-off efficiency of a DPA. To improve the power back-off efficiency of a DPA, a dual load-modulated DPA (D-DPA) design method is proposed. The core principle of the proposed design method is to control the load modulation process from the carrier PA to the peaking PA based on the design method of the traditional two-way DPA. The efficiency of the peaking PA in the back-off region is enhanced, thereby improving the efficiency in the entire back-off region of the DPA. Based on the proposed design method, a D-DPA operating at 2 GHz is designed and fabricated. The test results show that the saturated output power and gain are 43.7 dBm and 9.7 dB, respectively, while the efficiency at 6 dB output power back-off is 59.2%. The designed D-DPA eliminates the efficiency pit of the traditional two-way DPA in the output power back-off region.

References
1.
Lee H, Park H, Le V, Nguyen V, Song J, Lee B . X-band MMICs for a Low-Cost Radar Transmit/Receive Module in 250 nm GaN HEMT Technology. Sensors (Basel). 2023; 23(10). PMC: 10223916. DOI: 10.3390/s23104840. View

2.
Choi H . An Inverse Class-E Power Amplifier for Ultrasound Transducer. Sensors (Basel). 2023; 23(7). PMC: 10098776. DOI: 10.3390/s23073466. View

3.
Chen J, Liu Z, Dong T, Shi W . Design of Ultra-Wideband Doherty Power Amplifier Using a Modified Combiner Integrated with Complex Combining Impedance. Sensors (Basel). 2023; 23(8). PMC: 10142567. DOI: 10.3390/s23083882. View

4.
Zhang Y, Qiao Y, Li G, Li W, Tian Q . Random Time Division Multiplexing Based MIMO Radar Processing with Tensor Completion Approach. Sensors (Basel). 2023; 23(10). PMC: 10224449. DOI: 10.3390/s23104756. View

5.
El-Gendy M, Ali M, Thompson E, Ashraf I . Triple-Band Notched Ultra-Wideband Microstrip MIMO Antenna with Bluetooth Band. Sensors (Basel). 2023; 23(9). PMC: 10181529. DOI: 10.3390/s23094475. View