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2―4 GHz wideband power amplifier with ultra-flat gain and high PAEDING, X; HE, S; YOU, F et al.Electronics letters. 2013, Vol 49, Num 5, pp 326-327, issn 0013-5194, 2 p.Article

RF knee walkout and source access region of unpassivated HFETsBILBRO, G. L; TREW, R. J.Electronics Letters. 2006, Vol 42, Num 24, pp 1425-1427, issn 0013-5194, 3 p.Article

On linearisation of microwave-transmitter solid- state power amplifiersO'DROMA, M; BERTRAN, E; PORTILLA, J et al.International journal of RF and microwave computer-aided engineering. 2005, Vol 15, Num 5, pp 491-505, 15 p.Article

Low DC current 2.4-2.5 GHz and 4.9-6.0 GHz linear power amplifier modules for IEEE802.11 a/b/g applicationsDOW, G. Samuel; HO, Richard; CHIN, Matthew et al.IEEE radio frequency integrated circuits symposium. 2004, pp 75-78, isbn 0-7803-8333-8, 1Vol, 4 p.Conference Paper

Trenched-sinker LDMOSFET (TS-LDMOS) structure for 2 GHz power amplifiersCHEON SOO KIM; SUNG DO KIM; PARK, Mun-Yang et al.ETRI journal. 2003, Vol 25, Num 3, pp 195-202, issn 1225-6463, 8 p.Article

A varactor diode based predistortion circuitGUPTA, Navin; TOMBAK, Ali; MORTAZAWI, Amir et al.IEEE MTT-S International Microwave Symposium. 2004, isbn 0-7803-8331-1, vol2, 689-692Conference Paper

Complementary metal-oxide semiconductor Doherty power amplifier based on voltage combining methodCHENXI ZHAO; BYUNGJOON PARK; BUMMAN KIM et al.IET microwaves, antennas & propagation (Print). 2014, Vol 8, Num 3, pp 131-136, issn 1751-8725, 6 p.Article

Prediction of inter-modulation rejection values for the first and second adjacent channels in feed-forward linearised microwave amplifiers using closed-form expressionsHEMMATYAR, A. M. A; FARZANEH, F.IET microwaves, antennas & propagation (Print). 2007, Vol 1, Num 3, pp 782-789, issn 1751-8725, 8 p.Article

Channel temperature model for microwave AlGaN/GaN power HEMTs on SiC and sapphireFREEMAN, Jon C.IEEE MTT-S International Microwave Symposium. 2004, isbn 0-7803-8331-1, vol3, 2031-2034Conference Paper

Status of the 140 GHz, 10 MW CW transmission system for ECRH on the stellarator W7-XKASPAREK, W; BRAND, P; LAQUA, H. P et al.Fusion engineering and design. 2005, Vol 74, Num 1-4, pp 243-248, issn 0920-3796, 6 p.Conference Paper

A diplexer-matching dual-band power amplifier LTCC module for IEEE 802.11a/b/g wireless LANsKUNIHIRO, Kazuaki; YAMANOUCHI, Shingo; MIYAZAKI, Takashi et al.IEEE radio frequency integrated circuits symposium. 2004, pp 303-306, isbn 0-7803-8333-8, 1Vol, 4 p.Conference Paper

Investigation of FEAs applied in vacuum electron gunXINGHUI LI; CHONGFENG YANG; GUODONG BAI et al.Applied surface science. 2003, Vol 215, Num 1-4, pp 249-252, issn 0169-4332, 4 p.Conference Paper

40 GHz MMIC power amplifier in InP DHBT technologyYUN WEI; SUNDARARAJAN, Krishnan; URTEAGA, Miguel et al.IEEE Lester Eastman conference on high performance devices. 2002, pp 352-357, isbn 0-7803-7478-9, 6 p.Conference Paper

Linearity improvement using a modified derivative superposition method in cascaded stages amplifierZHANG, J; ZIRATH, H; FUSCO, V et al.IET microwaves, antennas & propagation (Print). 2012, Vol 6, Num 8, pp 922-928, issn 1751-8725, 7 p.Article

ESD sensitivity of a GaAs MMIC microwave power amplifierTAZZOLI, Augusto; ROSSETTO, Isabella; ZANONI, Enrico et al.Microelectronics and reliability. 2011, Vol 51, Num 9-11, pp 1602-1607, issn 0026-2714, 6 p.Conference Paper

Gallium-nitride microwave doherty power amplifier with 40W PEP and 68% PAECHO, K. J; KIM, W. J; STAPLETON, S. P et al.Electronics Letters. 2006, Vol 42, Num 12, pp 704-705, issn 0013-5194, 2 p.Article

A high performance 5.8 GHz power amplifier design enabled by a new microwave power packageEVANGELISTA, Steven C; ROMAN, John W.SPIE proceedings series. 2002, pp 400-403, isbn 0-930815-66-1, 4 p.Conference Paper

Two-dimensional crest factor reduction for performance improvement of concurrent dual-band power amplifiersXIAOFAN CHEN; SILONG ZHANG; WENHUA CHEN et al.Electronics letters. 2013, Vol 49, Num 18, pp 1163-1165, issn 0013-5194, 3 p.Article

Highly efficient balanced CMOS linear power amplifier with load immunityJEON, H; YOON, Y; KIM, H et al.Electronics letters. 2011, Vol 47, Num 19, pp 1095-1096, issn 0013-5194, 2 p.Article

A 60 GHz CMOS Power Amplifier With Built-in Pre-Distortion LinearizerTSAI, Jeng-Han; WU, Chung-Han; YANG, Hong-Yuan et al.IEEE microwave and wireless components letters. 2011, Vol 21, Num 12, pp 676-678, issn 1531-1309, 3 p.Article

Analytic large-signal modeling of silicon RF power MOSFETsFIORAVANTI, Paolo; SPULBER, Oana; DE SOUZA, Maria Merlyne et al.IEEE transactions on microwave theory and techniques. 2007, Vol 55, Num 5, pp 829-837, issn 0018-9480, 9 p.Article

High efficiency and high linearity power amplifier designCOLANTONIO, Paolo; GARCIA, José Angel; GIANNINI, Franco et al.International journal of RF and microwave computer-aided engineering. 2005, Vol 15, Num 5, pp 453-468, 16 p.Article

Design of low-cost 4W & 6W MMIC high power amplifiers for Ka-band modulesLYONS, Michael R; GRONDAHL, Christopher D; DAOUD, Scarlet M et al.IEEE MTT-S International Microwave Symposium. 2004, isbn 0-7803-8331-1, vol3, 1673-1676Conference Paper

High efficiency microwave power amplifier: From the lab to industrySIMS, William Herbert.SPIE proceedings series. 2001, pp 405-409, isbn 0-8194-4317-4Conference Paper

Temperature Behavior and Compensation of Diode-Based Pre-Distortion LinearizerSUBHASH CHANDRA BERA; KUMAR, Virender; SINGH, Surinder et al.IEEE microwave and wireless components letters. 2013, Vol 23, Num 4, pp 211-213, issn 1531-1309, 3 p.Article

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