Title :
Efficiency Enhancement of Feedforward Amplifiers by Employing a Negative Group-Delay Circuit
Author :
Choi, Heungjae ; Jeong, Yongchae ; Kim, Chul Dong ; Kenney, J. Stevenson
Author_Institution :
Dept. of Inf. & Commun. Eng., Chonbuk Nat. Univ., Jeonju, South Korea
fDate :
5/1/2010 12:00:00 AM
Abstract :
We will demonstrate an alternative topology for the feedforward amplifier. This amplifier does not use a delay element, thus providing an efficiency enhancement and a size reduction by employing a distributed-element negative group-delay circuit. The insertion loss of the delay element in the conventional feedforward amplifier seriously degrades the efficiency. Usually, a high-power coaxial cable or a delay-line filter is utilized for a low loss, but the insertion loss, cost, and size of the delay element still act as a bottleneck. The proposed negative group-delay circuit removes the necessity of the delay element required for a broadband signal suppression loop. With the fabricated two-stage distributed-element negative group-delay circuit with 30 MHz of bandwidth and -9 ns of group delay for a wideband code-division multiple-access downlink band, the feedforward amplifier with the proposed topology experimentally achieved 19.4% power-added efficiency and -53.2-dBc adjacent channel leakage ratio with 44-dBm average output power.
Keywords :
code division multiple access; delay circuits; feedforward amplifiers; network topology; adjacent channel leakage ratio; bandwidth 30 MHz; broadband signal suppression loop; delay element; delay-line filter; distributed-element negative group-delay circuit; efficiency 19.4 percent; feedforward amplifier enhancement; high-power coaxial cable; insertion loss; power-added efficiency; time -9 ns; wideband code-division multiple-access downlink band; Distributed element; efficiency enhancement; feedforward amplifier; negative group-delay circuit; transmission-line resonator; wideband code-division multiple access (WCDMA);
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2010.2045576