1984
DOI: 10.1109/tmtt.1984.1132667
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2-20-GHz GaAs Traveling-Wave Power Amplifier

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Cited by 85 publications
(11 citation statements)
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“…Eq. (1.34) indicates that increased periphery per stage helps to increase efficiency if this increased periphery does not adversely affect the gain at highest frequency of interest (Ayasli, Mozzi et al, 1982;Ayasli, Reynolds et al, 1984).…”
Section: Traveling Wave Architecturementioning
confidence: 99%
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“…Eq. (1.34) indicates that increased periphery per stage helps to increase efficiency if this increased periphery does not adversely affect the gain at highest frequency of interest (Ayasli, Mozzi et al, 1982;Ayasli, Reynolds et al, 1984).…”
Section: Traveling Wave Architecturementioning
confidence: 99%
“…Usually TWA utilizes a single-stage design, but several papers propose different combinations, including parallel (Ayasli, Reynolds et al, 1984), cascaded single-stage (CSSDA) (Tarar et al, 2015), multistage, matrix (Kao & Chen et al, 2013) and even a distributed Doherty amplifier (Lee, Lee, Kam et al, 2009;Cho & Kim et al, 2007).…”
Section: Traveling Wave Architecturementioning
confidence: 99%
“…A frequently used approach for decade bandwidth amplifiers is the distributed amplifier [3]. However for low frequencies like the current 0.05-2GHz design distributed architecture leads to large inductive elements taking up excessive area.…”
Section: Broadband Pa Topologymentioning
confidence: 99%
“…The traditional technique to achieving wide-band amplification is either using travelling wave (TW) approach [1,2], or designing wide-band matching circuits to transform the device input and output impedances to 50 ohms [3]. The TW technique uses multiple devices to simulate a 50-ohm transmission line to achieve wide bandwidth.…”
Section: Introductionmentioning
confidence: 99%