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Microwave power combining techniques
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Russell, K.J.1
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Millimeter-wave power-combining techniques
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Feb.
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K. Chang and C. Sun, “Millimeter-wave power-combining techniques,” IEEE Trans. Microwave Theory Tech., vol. MTT-31, pp. 91–107, Feb. 1983.
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Chang, K.1
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An X-band 10-W multiple-diode oscillator
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K. Kurokawa and F. M. Magalhae, “An X-band 10-W multiple-diode oscillator,” Proc. IEEE, vol. 59, pp. 102–103, Jan. 1971.
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Kurokawa, K.1
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The single-cavity multiple-device oscillator
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Oct.
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K. Kurokawa, “The single-cavity multiple-device oscillator,” IEEE Trans. Microwave Theory Tech., vol. MTT-19, pp. 793–801, Oct. 1971.
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Kurokawa, K.1
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Power combining ladder network with many active devices
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Oct.
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K. Fukui and S. Nogi, “Power combining ladder network with many active devices,” IEEE Trans. Microwave Theory Tech., vol. MTT-28, pp. 1059–1067, Oct. 1980.
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Fukui, K.1
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6
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0020125494
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Optimum design and performance of a microwave ladder oscillator with many diode mount pairs
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May
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S. Nogi and K. Fukui, “Optimum design and performance of a microwave ladder oscillator with many diode mount pairs,” IEEE Trans. Microwave Theory Tech., vol. MTT-30, pp. 743–753, May 1982.
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IEEE Trans. Microwave Theory Tech.
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, pp. 743-753
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Nogi, S.1
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1-W millimeter wave Gunn diode combiner
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Dec.
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T.-E. Ma and C. Sun, “1-W millimeter wave Gunn diode combiner,” IEEE Trans. Microwave Theory Tech., vol. MTT-28, pp. 1460–1463, Dec. 1980.
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Ma, T.-E.1
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A waveguide-cavity multiple-device FET oscillator
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Aug.
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A. Materka and S. Mizushina, “A waveguide-cavity multiple-device FET oscillator,” IEEE Trans. Microwave Theory Tech., vol. MTT-30, pp. 1237–1241, Aug. 1982.
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IEEE Trans. Microwave Theory Tech.
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Materka, A.1
Mizushina, S.2
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10
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Power combining of X-band IMPATT circuit modules
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Feb.
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R. S. Harp and H. L. Stover, “Power combining of X-band IMPATT circuit modules,” in 1973 IEEE-ISSCC Dig., vol. XVI, Feb. 1973, pp. 118–119.
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Harp, R.S.1
Stover, H.L.2
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11
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0018467350
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Techniques for increasing the bandwidth of a TM010-mode power combiner
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May
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R. Aston, “Techniques for increasing the bandwidth of a TM010-mode power combiner,” IEEE Trans. Microwave Theory Tech., vol. MTT-27, pp. 479–482, May 1979.
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Aston, R.1
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Efficient power combining
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July
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M. Dydyk, “Efficient power combining,” IEEE Trans. Microwave Theory Tech., vol. MTT-28, pp. 755–762, July 1980.
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Dydyk, M.1
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13
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A 1 kWpeak, 300W avg IMPATT diode injection locked oscillator
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May
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C. A. Drubin, A. L. Hieber, G. Jerinic, and A. S. Marinilli “A 1 kWpeak, 300Wavg IMPATT diode injection locked oscillator,” in 1982 IEEE MTT-S Symp. Dig., May 1982, pp. 126–128.
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1982 IEEE MTT-S Symp. Dig.
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Drubin, C.A.1
Hieber, A.L.2
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Marinilli, A.S.4
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14
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0006640856
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Stable power-combining mode operation of a cylindrical cavity multiple-device oscillator
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Sept.in Japanese
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K. Fukui, S. Nogi, and T. Sato, “Stable power-combining mode operation of a cylindrical cavity multiple-device oscillator,” Trans. IECEJ, vol. J68-B, pp. 1011–1019, Sept. 1985 (in Japanese).
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Trans. IECEJ
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Fukui, K.1
Nogi, S.2
Sato, T.3
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15
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0021934869
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An analytical method for multi-mode oscillators using the averaged potential
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Apr. 1983 (in Japanese), Also, M. Kuramitsu and F. Takase, “The analysis of the square array of van der Pol oscillators using the averaged potential,” Int. J. Nonlinear Mechanics, vol. 20, pp. 395–406, May
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M. Kuramitsu and F. Takase, “An analytical method for multi-mode oscillators using the averaged potential,” Trans. IECEJ, vol. J66-A, 336–343, Apr. 1983 (in Japanese), Also, M. Kuramitsu and F. Takase, “The analysis of the square array of van der Pol oscillators using the averaged potential,” Int. J. Nonlinear Mechanics, vol. 20, pp. 395–406, May 1985.
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Trans. IECEJ
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Kuramitsu, M.1
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17
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Cylindrical cavity multiple-device oscillator/power amplifier of window output
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May in Japanese
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S. Nogi and K. Fukui, “Cylindrical cavity multiple-device oscillator/power amplifier of window output,” IECE Japan, Tech. Rep. MW85-9, May 1985 (in Japanese).
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(1985)
IECE Japan, Tech. Rep. MW85-9
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Nogi, S.1
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