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1
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0014632520
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Development of microwave communication engineering in Japan
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H. Kurokawa, “Development of microwave communication engineering in Japan,” Japan Telecommun. Rev., vol. 11, no. 1, 1969.
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(1969)
Japan Telecommun. Rev.
, vol.11
, Issue.1
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Kurokawa, H.1
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2
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0014642909
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2 GHz microwave PCM system
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K. Yoshida et al., “2 GHz microwave PCM system,” Japan Telecommun, Rev., vol. 11, no. 1, 1969.
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(1969)
Japan Telecommun, Rev.
, vol.11
, Issue.1
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Yoshida, K.1
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3
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84948588659
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Research on millimeter wave communication
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Mar./Apr.
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B. Oguchi, “Research on millimeter wave communication,” Rev. Elec. Commun, Lab., vol. 16, p. 169, Mar./Apr. 1968.
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(1968)
Rev. Elec. Commun, Lab.
, vol.16
, pp. 169
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Oguchi, B.1
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4
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84948590232
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Circular waveguide low-loss transmission for millimeter waves
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presented at the, Aug.
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—, “Circular waveguide low-loss transmission for millimeter waves,” presented at the l6th Int. Scientific Radio Union, Gen. Ass. Comm. 6, Aug. 1969.
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(1969)
l6th Int. Scientific Radio Union, Gen. Ass. Comm.
, pp. 6
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5
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84948601357
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Microwave space diversity system
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Y. Hayashi, “Microwave space diversity system,” Japan Telecommun. Rev., vol. 9, no. 3, 1967.
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(1967)
Japan Telecommun. Rev.
, vol.9
, Issue.3
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Hayashi, Y.1
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6
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74549131152
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Design of space diversity receiving and transmitting system of line-of-sight microwave links
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Aug.
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H. Makino and K. Morita, “Design of space diversity receiving and transmitting system of line-of-sight microwave links,” IEEE Trans. Commun. Technol., vol. COM-15, pp. 603–614, Aug. 1967.
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(1967)
IEEE Trans. Commun. Technol.
, vol.COM-15
, pp. 603-614
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Makino, H.1
Morita, K.2
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7
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84948591405
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Over-the horizon communication system between Kyushu and Okinawa
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T. Takasu, “Over-the horizon communication system between Kyushu and Okinawa,” Japon Telecommun. Rev., vol. 4, no. 2, 1962.
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(1962)
Japon Telecommun. Rev.
, vol.4
, Issue.2
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Takasu, T.1
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8
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0042854531
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An application of diffractor grating to the 11 Gc/s microwave systems, “
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July
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M. Takada and M. Shinji, “An application of diffractor grating to the 11 Gc/s microwave systems, “IEEE Trans. Antennas Propagat., vol. AP-13, pp. 532–541, July 1965.
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(1965)
IEEE Trans. Antennas Propagat.
, vol.AP-13
, pp. 532-541
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Takada, M.1
Shinji, M.2
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9
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0015049263
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Horn-reflector antenna and feeder system using 4, 6 and 7 GHz bands
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Apr.
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H. Sugahara et al., “Horn-reflector antenna and feeder system using 4, 6 and 7 GHz bands,” Rev. Elec. Commun. Lab., vol. 19, p. 455, Apr. 1971.
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(1971)
Rev. Elec. Commun. Lab.
, vol.19
, pp. 455
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Sugahara, H.1
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10
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0015049288
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New 11 GHz 1,800 channel radio relay system
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Y. Kikuchi et al., “New 11 GHz 1,800 channel radio relay system,” Japan Telecommun. Rev. vol. 13, no. 2, 1971.
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(1971)
Japan Telecommun. Rev
, vol.13
, Issue.2
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Kikuchi, Y.1
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11
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0014855623
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New short-haul microwave system operating in the 15 GHz band
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—, “New short-haul microwave system operating in the 15 GHz band,” Japan Telecommun. Rev. vol. 12, no. 4, 1970.
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(1970)
Japan Telecommun. Rev
, vol.12
, Issue.4
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12
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0014537081
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Simultaneous transmission of color television and sound programs
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T. Miyoshi et al., “Simultaneous transmission of color television and sound programs,” Japan Telecommun. Rev., vol. 11, no. 3, 1969.
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(1969)
Japan Telecommun. Rev.
, vol.11
, Issue.3
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Miyoshi, T.1
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13
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0014538997
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2,700-channel microwave radio relay system
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Y. Nakamura et al., “2,700-channel microwave radio relay system,” Japan Telecommun. Rev., vol. 11, no. 3, 1969.
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(1969)
Japan Telecommun. Rev.
, vol.11
, Issue.3
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Nakamura, Y.1
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14
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0014617881
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Solid-state microwave relay systems in Japan
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Dec.
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F. Ikegami and Y. Ninomiya, “Solid-state microwave relay systems in Japan,” IEEE Spectrum, vol. 6, pp. 48–56, Dec. 1969.
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(1969)
IEEE Spectrum
, vol.6
, pp. 48-56
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Ikegami, F.1
Ninomiya, Y.2
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15
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84948605081
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New 6 GHz 1,800 channel radio relay system
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Apr.
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T. Miyoshi and T. Hirabayashi, “New 6 GHz 1,800 channel radio relay system,” Japan Telecommun. Rev. vol. 11, p. 87, Apr. 1969.
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(1969)
Japan Telecommun. Rev
, vol.11
, pp. 87
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Miyoshi, T.1
Hirabayashi, T.2
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16
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84948592932
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Designing high reliability 4 GHz all solid-state repeater equipment
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July/Aug.
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I. Sugiura and S. Takita, “Designing high reliability 4 GHz all solid-state repeater equipment,” Rev. Elec. Commum. Lab, vol. 18, p. 446, July/Aug. 1970.
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(1970)
Rev. Elec. Commum. Lab
, vol.18
, pp. 446
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Sugiura, I.1
Takita, S.2
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17
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84948597644
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Frequency modulators using variable capacitance diodes
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July/Aug.
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K. Noda, “Frequency modulators using variable capacitance diodes,” Rev. Elec. Commun, Lab., vol. 15, p. 507, July/Aug. 1967.
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(1967)
Rev. Elec. Commun, Lab.
, vol.15
, pp. 507
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Noda, K.1
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18
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84948607798
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On the digital radio relay system in millimeter wave region
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(in Japanese), Tech. Rec. CS70-37 July
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M. Takada, “On the digital radio relay system in millimeter wave region” (in Japanese), Inst. Electron. Commun. Eng. Jap., Tech. Rec. CS70-37 July 1970.
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(1970)
Inst. Electron. Commun. Eng. Jap.
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Takada, M.1
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19
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0015099661
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Statistical studies on electromagnetic wave attenuation due to rain
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July/Aug.
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K. Morita and I. Higuchi, “Statistical studies on electromagnetic wave attenuation due to rain,” Rev. Elec. Commun. Lab., vol. 19, pp. 798-842, July/Aug. 1971.
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(1971)
Rev. Elec. Commun. Lab.
, vol.19
, pp. 798-842
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Morita, K.1
Higuchi, I.2
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20
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84948589241
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Design and performance of an experimental 400 MB-4PSK guided millimeter-wave transmission system
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presented at the, London, England, Sept.
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K. Miyauchi et al., “Design and performance of an experimental 400 MB-4PSK guided millimeter-wave transmission system,” presented at the Conf. Trunk Telecommunication by Guided Waves, London, England, Sept. 1970.
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(1970)
Conf. Trunk Telecommunication by Guided Waves
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Miyauchi, K.1
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21
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0015049136
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Design and performance of an experimental millimeter-wave PCM-AM repeater
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Apr.
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K. Noda et al., “Design and performance of an experimental millimeter-wave PCM-AM repeater,” Rev. Elec. Commun, Lab., vol. 19, pp. 596, Apr. 1971.
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(1971)
Rev. Elec. Commun, Lab.
, vol.19
, pp. 596
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Noda, K.1
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22
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84948601164
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A 448 Mbit./s 4-phase PSK solid-state regenerative repeater for guided millimeter-wave communication systems
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London, England, Sept.
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S. Sugimoto et al., “A 448 Mbit./s 4-phase PSK solid-state regenerative repeater for guided millimeter-wave communication systems,” presented at the Conf. Trunk Telecommunication by Guided Waves,London, England, Sept. 1970.
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(1970)
presented at the Conf. Trunk Telecommunication by Guided Waves
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Sugimoto, S.1
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23
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84948602885
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Guided millimeter-wave PCM repeater equipment
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presented at the, London, England, Sept
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F. Iwai et al., “Guided millimeter-wave PCM repeater equipment,” presented at the Conf. Trunk Telecommunication by Guided Waves, London, England, Sept, 1970.
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(1970)
Conf. Trunk Telecommunication by Guided Waves
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Iwai, F.1
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24
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84948608279
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Strip-line high-speed amplitude and phase sampling circuits in the 4-GHz region
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presented at the, Sept.
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K. Miyauchi et al., “Strip-line high-speed amplitude and phase sampling circuits in the 4-GHz region,” presented at the 1969 European Microwave Conf., Sept. 1969.
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(1969)
European Microwave Conf.
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Miyauchi, K.1
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25
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84948612317
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Strip-line high-speed switches and modulators in the 4 GHz region
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presented at the, Sept.
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“Strip-line high-speed switches and modulators in the 4 GHz region,” presented at the 1969 European Microwave Conf., Sept. 1969.
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(1969)
European Microwave Conf.
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-
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26
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0014628834
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Millimeter-wave up-converter with gain using germanium avalanche diodes
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presented at the, Feb.
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S. Kita, “Millimeter-wave up-converter with gain using germanium avalanche diodes,” presented at the 1969 Int. Solid-State Circuit Conf., Feb. 1969.
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(1969)
Int. Solid-State Circuit Conf.
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Kita, S.1
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27
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84939332837
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Amplification of high-speed PCM phase-shift-keyed millimeter-wave signals through an injection-locked IMPATT oscillator
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presented at the, Feb.
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Y. Fukatsu et al., “Amplification of high-speed PCM phase-shift-keyed millimeter-wave signals through an injection-locked IMPATT oscillator,” presented at the 1971 Int. Solid-State Circuit Conf., Feb. 1971.
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(1971)
Int. Solid-State Circuit Conf.
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Fukatsu, Y.1
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28
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84938015838
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A new millimeter-wave band-splitting filter using figure-8 hybrids
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S. Shimada et al., “A new millimeter-wave band-splitting filter using figure-8 hybrids,” in 1969 G-MTT Int. Microwave Symp. Dig. Tech. Papers, p. 232.
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(1969)
G-MTT Int. Microwave Symp. Dig. Tech. Papers, p
, pp. 232.
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Shimada, S.1
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29
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84948612143
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Ring type channel-dropping filter for a guided millimeter-wave communication system
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presented at the, London, England, Sept.
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—, “Ring type channel-dropping filter for a guided millimeter-wave communication system,” presented at the Conf. Trunk Telecommunication by Guided Waves, London, England, Sept. 1970.
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(1970)
Conf. Trunk Telecommunication by Guided Waves
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-
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30
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84937350372
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Construction and characteristics of the dielectric-coated waveguide and the helix waveguide
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Sept./Oct.
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K. Yamaguchi and N. Suzuki, “Construction and characteristics of the dielectric-coated waveguide and the helix waveguide,” Rev. Elec. Commun. Lab., vol. 16, pp. 765, Sept./Oct. 1968.
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(1968)
Rev. Elec. Commun. Lab.
, vol.16
, pp. 765
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Yamaguchi, K.1
Suzuki, N.2
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31
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84948607177
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Transmission characteristics of buried millimeter waveguide lines
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presented at the, London, England, Sept.
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N. Sushi et al., “Transmission characteristics of buried millimeter waveguide lines,” presented at the Conf. Trunk Telecommunication by Guided Waves, London, England, Sept. 1970.
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(1970)
Conf. Trunk Telecommunication by Guided Waves
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Sushi, N.1
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