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Tang, Y.-L.1
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A 94 ghz mmic tripler using anti-parallel diode arrays for idler separation
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0034187645
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A high-power w-band monolithic fgc doubler
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John Papapolymerou, Jack East, Linda P. B. Katehi, "A high-power W-band monolithic FGC doubler," IEEE Microwave and Guided Wave Letters, Vol. 10, pp. 195-197, May, 2000.
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Seng-Woon Chen, Thomas Ho, Fred R. Phelleps, Jack L. Singer, Krishna Pande, Paul Rice, James Adair, and Mohammad Ghahremani, "A high-performance 94-GHz MMIC doubler," IEEE Microwave and Guided Wave Letters, Vol. 3, pp. 167-169, June, 1993.
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7
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0034205746
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An optimized 25.5-76.5 ghz phemt-based coplanar frequency tripler
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Y. Campos-Roca, L. Verweyen, M. Fernández-Barciela, E. Sánchez, M. C. Currás-Francos, W. Bronner, A. Hülsmann, and M. Schlechtweg "An optimized 25.5-76.5 GHz PHEMT-based coplanar frequency tripler," IEEE Microwave and Guided Wave Letters, Vol. 10, pp. 242-244, June, 2000.
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Dec.
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Ali Boudliaf, Didier Bachelet and Christian Rumelhard, "A high-efficiency and low-phase-noise 38-GHz PHEMT MMIC tripler," IEEE Trans. Microwave Theory Tech., vol. MTT-48, pp 2546-2553, Dec. 2000.
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Vesna Radisic, Miro Micovic, Ming Hu, Paul Janke, Catherine Ngo, Loi Nguyen, Lorene Samoska and Matthew Morgan, "164-GHz MMIC HEMT doubler," IEEE Microwave and Wireless Components Letters, Vol. 11, pp. 241-243, June, 2001.
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Nov.
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Microwave Office VoltaireXL/LSTM User's Guide, Applied Wave Research, Inc.
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A 94-ghz 0.35-w power amplifier module
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Dec.
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Pin-Pin Huang, Tian-Wei Huang, Huei Wang, Eric W. Lin, Yonghui Shu, Gee S. Dow, Richard Lai, Michael Biedenbender and Jeffery H. Elliot, "A 94-GHz 0.35-W power amplifier module," IEEE Trans. Microwave Theory Tech., vol. MTT-45, pp 2418-2423, Dec. 1997.
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