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Doherty amplifier using load modulation and phase compensation DGS microstrip line

  • Heung Jae Choi*
  • , Jong Sik Lim
  • , Yong Chae Jeong
  • , Chul Dong Kim
  • *Corresponding author for this work
  • Jeonbuk National University
  • Soonchunhyang University
  • Sewon Teletech, Inc.

Research output: Contribution to conferenceConference paperpeer-review

Abstract

In this paper, a new Doherty power amplifier having the ideal harmonic termination condition that has been usually ignored is proposed. A defected ground structure (DGS) is adopted on the ground pattern of the output λ/4 impedance inverter of the carrier amplifier and output offset transmission line of the peaking amplifier that are essential for proper load modulation operation of a conventional Doherty amplifier. As a result of the second and third harmonic termination, excellent improvement in power added efficiency (PAE), gain, maximum output power as well as linearity is obtained. The acquired improvements in gain, maximum output power (P1dB), PAE and adjacent channel leakage ratio (ACLR) to WCDMA 2FA signal are 0.42dB, 0.33dB, 12.7%, and 5.1dB, respectively. Moreover, physical length of microstrip line is shortened fairly by DGS, therefore the whole amplifier circuit size is considerably reduced.

Original languageEnglish
Title of host publicationProceedings of the 36th European Microwave Conference, EuMC 2006
PublisherIEEE Computer Society
Pages352-355
Number of pages4
ISBN (Print)2960055160, 9782960055160
DOIs
StatePublished - 2006
Event36th European Microwave Conference, EuMC 2006 - Manchester, United Kingdom
Duration: 2006.09.102006.09.12

Publication series

NameProceedings of the 36th European Microwave Conference, EuMC 2006

Conference

Conference36th European Microwave Conference, EuMC 2006
Country/TerritoryUnited Kingdom
CityManchester
Period06.09.1006.09.12

Keywords

  • DGS
  • Doherty amplifier
  • Linearity
  • PAE

Quacquarelli Symonds(QS) Subject Topics

  • Engineering - Electrical & Electronic
  • Engineering - Petroleum
  • Physics & Astronomy

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