Search Results - "Kamogawa, K"

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  1. 1

    Three-dimensional MMIC technology for low-cost millimeter-wave MMICs by Nishikawa, K., Kamogawa, K., Piernas, B., Tokumitsu, M., Sugitani, S., Toyoda, I., Araki, K.

    Published in IEEE journal of solid-state circuits (01-09-2001)
    “…This paper highlights the key advantages of the three-dimensional (3-D) MMIC technology in the millimeter-wave frequency band and describes recently developed…”
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    Journal Article
  2. 2

    High-Q factor three-dimensional inductors by Piernas, B., Nishikawa, K., Kamogawa, K., Nakagawa, T., Araki, K.

    “…In this paper, the great flexibility of three-dimensional (3-D) monolithic-microwave integrated-circuit technology is used to improve the performance of…”
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    Journal Article
  3. 3

    Injection-locked oscillator chain: a possible solution to millimeter-wave MMIC synthesizers by Kamogawa, K., Tokumitsu, T., Aikawa, M.

    “…An injection-locked oscillator (ILO) monolithic-microwave integrated-circuit (MMIC) chain-a cascade of low- and high-frequency-band ILOs-is proposed for simple…”
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    Journal Article
  4. 4

    Miniaturized millimeter-wave masterslice 3-D MMIC amplifier and mixer by Nishikawa, K., Kamogawa, K., Inoue, R., Onodera, K., Tokumitsu, T., Tanaka, M., Toyoda, I., Hirano, M.

    “…Masterslice three-dimensional MMIC (3-D MMIC) technology has (even in the millimeter-wave region) the advantages of high integration levels, simple design…”
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    Journal Article
  5. 5

    A compact V-band 3-D MMIC single-chip down-converter using photosensitive BCB dielectric film by Nishikawa, K., Sugitani, S., Kamogawa, K., Tokumitsu, T., Toyoda, I., Tanaka, M.

    “…A high-density monolithic-microwave integrated-circuit (MMIC) V-band down-converter, which employs the masterslice three-dimensional (3-D) MMIC technology and…”
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    Journal Article
  6. 6

    A broadband and miniaturized V-band PHEMT frequency doubler by Piernas, B., Hayashi, H., Nishikawa, K., Kamogawa, K., Nakagawa, T.

    Published in IEEE microwave and guided wave letters (01-07-2000)
    “…We present the design and measured performances of a V-band frequency doubler fabricated using 0.15 μm GaAs pseudomorphic HEMTs and the three-dimensional (3-D)…”
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    Journal Article
  7. 7

    Pyrene fluorescence measurements of metastable oil droplets in surfactant-free oil-in-water emulsions by SAKAI, T, KAMOGAWA, K, KWON, K. O, SAKAI, H, ABE, M

    Published in Colloid and polymer science (01-02-2002)
    “…The fluorescence behavior of pyrene in oil droplets of a surfactant-free oil-in-water emulsion was studied for benzene, fluorobenzene, n-hexane and cyclohexane…”
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    Journal Article
  8. 8
  9. 9

    Multifrequency microstrip antennas using alumina-ceramic/polyimide multilayer dielectric substrate by Kamogawa, K., Tokumitsu, T., Aikawa, M.

    “…A novel microstrip antenna using an alumina-ceramic/polyimide multilayer dielectric substrate is presented. The multilayer configuration, in which two…”
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    Journal Article
  10. 10

    Three-dimensional silicon MMIC's operating up to K-band by Nishikawa, K., Toyoda, I., Kamogawa, K., Tokumitsu, T.

    “…This paper presents three-dimensional (3-D) Si monolithic microwave integrated circuit (MMIC) technology and Si MMIC operation up to K-band using this…”
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    Journal Article
  11. 11
  12. 12

    Three-dimensional masterslice MMIC on Si substrate by Toyoda, I., Nishikawa, K., Tokumitsu, T., Kamogawa, K., Yamaguchi, C., Hirano, M., Aikawa, M.

    “…This paper describes Si-based three-dimensional (3-D) monolithic microwave integrated circuit (MMIC) technology. This technology greatly improves the operating…”
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    Journal Article
  13. 13

    Cloning and characterization of the Bacillus sphaericus genes controlling the bioconversion of pimelate into dethiobiotin by Gloeckler, R, Ohsawa, I, Speck, D, Ledoux, C, Bernard, S, Zinsius, M, Villeval, D, Kisou, T, Kamogawa, K, Lemoine, Y

    Published in Gene (01-03-1990)
    “…Using 8.8 kb of genetic information from Bacillus sphaericus, it was possible to confer to Escherichia coli bio- strains, including delta bioA-D, bioC-, bioH-,…”
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    Journal Article
  14. 14

    A case of myasthenia gravis with an invasive thymoma infiltrating the superior vena cava and right atrium and causing lung metastasis by Ochi, Masayuki, Toi, Takayuki, Kamogawa, Kenji, Nagai, Tokihisa, Taguchi, Keiko, Kawano, Yuji, Igase, Michiya, Kohara, Katsuhiko, Miki, Tetsuro

    Published in Nihon Rōnen Igakkai zasshi (2010)
    “…A 72-year-old woman was admitted to a local hospital with general fatigue, ptosis and dysarthria. Her anti-AchR antibody titer was high, so myasthenia gravis…”
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    Journal Article
  15. 15

    Wide-tuning range Si bipolar VCOs based on three-dimensional MMIC technology by Kamogawa, K., Nishikawa, K., Yamaguchi, C., Hirano, M., Toyoda, I., Tokumitsu, T.

    “…The first completely integrated silicon (Si) bipolar junction transistor (BJT) voltage-controlled oscillators (VCOs), based on three-dimensional (3-D)…”
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    Journal Article
  16. 16

    A line-unified-FET combiner/divider with built-in 3D amplifiers (LUFET-amp) and its application to a very small injection-locked oscillator by Tokumitsu, T., Kamogawa, K., Nishikawa, K., Tanaka, M.

    “…A 20-GHz-band injection-locked oscillator MMIC, which incorporates a novel active four-port combiner/divider and a simple feedback path, is presented. This ILO…”
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    Conference Proceeding Journal Article
  17. 17
  18. 18

    A novel high-Q inductor based on Si 3D MMIC technology and its application by Kamogawa, K., Nishikawa, K., Tokumitsu, T., Tanaka, M.

    “…A novel high-Q spiral inductor, implemented on a conductive Si wafer by applying a 3D MMIC structure over it, is proposed. The proposed inductor effectively…”
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    Conference Proceeding Journal Article
  19. 19

    A novel injection-locked oscillator MMIC with combined ultrawide-band active combiner/divider and amplifiers by Tokumitsu, T., Kamogawa, K., Toyoda, I., Aikawa, M.

    “…A subharmonically injection-locked oscillator (ILO) MMIC for local oscillators, synthesizers, and phased-array antennas is proposed. An ultrawide-band…”
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    Journal Article Conference Proceeding
  20. 20

    New methodology for microwave/millimeter-wave MMIC development by Kamogawa, K., Nishikawa, K., Toyoda, I., Tokumitsu, M., Hirano, M., Nakagawa, T., Muraguchi, M.

    “…A new MMIC development methodology that combines suitable devices with the 3D/multilayer interconnection process is presented. This approach allows the…”
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    Conference Proceeding Journal Article