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1
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0027228669
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Full two-port on-wafer vector network analysis to 120 GHz using active probes
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June, Atlanta, Ga
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R. Yu, M. Reddy, J. Pusl, S. Allen, M. Case, and M. Rodwell, “Full two-port on-wafer vector network analysis to 120 GHz using active probes,” 1993 in Proc. IEEE Conf. Microwave Theory Tech., June, Atlanta, Ga.
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(1993)
1993 in Proc. IEEE Conf. Microwave Theory Tech.
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Yu, R.1
Reddy, M.2
Pusl, J.3
Allen, S.4
Case, M.5
Rodwell, M.6
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2
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0028468320
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A broadband free-space millimeter-wave vector transmission measurement system
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July
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Y. Konishi, M. Kamegawa, M. Case, R. Yu, S. T. Allen, and M. J. W. Rodwell, “A broadband free-space millimeter-wave vector transmission measurement system,” IEEE Trans. Microwave Theory Tech., vol. MTT42, no. 7, pp. 1131-1139, July 1994.
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(1994)
IEEE Trans. Microwave Theory Tech.
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Konishi, Y.1
Kamegawa, M.2
Case, M.3
Yu, R.4
Allen, S.T.5
Rodwell, M.J.W.6
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3
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0027913145
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Multi-THz sidewall-etched varactor diodes and their applications in sub-mm-wave sampling circuits
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Dec.
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S. T. Allen, U. Bhattacharya, and M. J. W. Rodwell, “Multi-THz sidewall-etched varactor diodes and their applications in sub-mm-wave sampling circuits,” Electron. Lett., vol. 29, no. 25, pp. 2227-2228, Dec. 1993.
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(1993)
Electron. Lett.
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Allen, S.T.1
Bhattacharya, U.2
Rodwell, M.J.W.3
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4
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0027568681
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500 GHz MMIC sampling wafer probe
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Mar.
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M. S. Shakouri, A. Black, B. A. Auld, and D. M. Bloom, “500 GHz MMIC sampling wafer probe,” Electron. Lett., vol. 29, no. 6, pp. 557-558, 18 Mar., 1993.
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Electron. Lett.
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Shakouri, M.S.1
Black, A.2
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Bloom, D.M.4
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5
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0013396634
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Delta-doped Schottky diode nonlinear transmission lines for 480-fs 3.5 V transitions
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Aug.
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D. W. Van der Weide, “Delta-doped Schottky diode nonlinear transmission lines for 480-fs 3.5 V transitions,” Appl. Phys. Lett., vol. 65, no. 7, Aug. 1994.
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Appl. Phys. Lett.
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Van der Weide, D.W.1
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6
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85045538406
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725 GHz sampling circuits integrated with nonlinear transmission lines
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Boulder, CO.,June
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S. T. Allen, U. Bhattacharya, and M. J. W. Rodwell, “725 GHz sampling circuits integrated with nonlinear transmission lines,” in Proc. IEEE Device Res. Conf., Boulder, CO., June 1994.
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(1994)
Proc. IEEE Device Res. Conf.
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Allen, S.T.1
Bhattacharya, U.2
Rodwell, M.J.W.3
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7
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0028464668
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Active and nonlinear wave propagation devices in ultrafast electronics and optoelectronics
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July
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M. J. W. Rodwell, S. T. Allen, R. Y. Yu, M. G. Case, M. Reddy, E. Carman, J. Pusl, M. Kamegawa, Y. Konishi, and R. Pullela, “Active and nonlinear wave propagation devices in ultrafast electronics and optoelectronics,” Invited Paper, IEEE Proc., vol. 82, no. 7, pp. 1037-1058, July 1994.
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(1994)
Invited Paper
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Rodwell, M.J.W.1
Allen, S.T.2
Yu, R.Y.3
Case, M.G.4
Reddy, M.5
Carman, E.6
Pusl, J.7
Kamegawa, M.8
Konishi, Y.9
Pullela, R.10
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8
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0026866146
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Current saturation in submillimeter wave varactors
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May
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E. L. Kollberg, T. J. Tolmunen, M. A. Frerking, and J. R. East, “Current saturation in submillimeter wave varactors,” IEEE Trans. Microwave Theory Tech., vol. MTT40, no. 5, pp. 831-838, May, 1992.
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(1992)
IEEE Trans. Microwave Theory Tech.
, vol.40 MTT
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, pp. 831-838
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Kollberg, E.L.1
Tolmunen, T.J.2
Frerking, M.A.3
East, J.R.4
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9
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0027612176
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Consideration of velocity saturation in the design of varactor diodes
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June
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T. W. Crowe, W. C. B. Peatman, and R. Zimmermann, “Consideration of velocity saturation in the design of varactor diodes,” IEEE Microwave and Guided Wave Lett., vol. 3, no. 6, pp. 161-163, June, 1993.
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(1993)
IEEE Microwave and Guided Wave Lett.
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Crowe, T.W.1
Peatman, W.C.B.2
Zimmermann, R.3
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