Search Results - "Möttönen, S."

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  1. 1

    Loss of the ability to generate large burst-forming unit-like megakaryocytic colonies from thawed cord blood in semisolid cultures after short term suspension culture by Eskola, M., Bäckman, S., Möttönen, S., Kekomäki, R.

    Published in Vox sanguinis (01-04-2015)
    “…Background and Objectives Total colony‐forming cells from thawed cord blood units (CBUs) include megakaryocytic colony‐forming units (CFU‐Mks), which survive…”
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    Journal Article
  2. 2

    Wideband coplanar waveguide-to-rectangular waveguide transition using fin-line taper by Mottonen, V.S.

    “…This letter introduces a new wideband coplanar waveguide-to-rectangular waveguide transition. The transition uses a uniplanar circuit in line with the…”
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    Journal Article
  3. 3
  4. 4

    W-Band Waveguide Impedance Tuner Utilizing Dielectric-Based Backshorts by Kiuru, T., Mottonen, V., Raisanen, A.

    “…We present the design, simulations, fabrication, and measurements of a W-band waveguide impedance tuner. The design consists of a WR-10 waveguide with two…”
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    Journal Article
  5. 5

    Novel tunable waveguide backshort for millimeter and submillimeter wavelengths by Mottonen, V.S., Piironen, P., Raishanen, A.V.

    “…A new tunable waveguide backshort with low loss and reliable performance has been designed. Based on a fixed short and dielectric phase shifter, it has a…”
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    Journal Article
  6. 6

    Novel wide-band coplanar waveguide-to-rectangular waveguide transition by Mottonen, V.S., Raisanen, A.V.

    “…A new coplanar waveguide (CPW)-to-rectangular waveguide transition is proposed for wide-band millimeter-wave applications. The transition has an in-line…”
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    Journal Article
  7. 7

    Low-loss wideband microwave coaxial bias T by Möttönen, V. S., Piironen, P., Räisänen, A. V.

    Published in Microwave and optical technology letters (20-05-2001)
    “…A low‐loss and well‐matched wideband microwave coaxial bias T is presented. A simple structure makes the bias T easy and low cost to design and fabricate. Test…”
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    Journal Article
  8. 8

    Subharmonic waveguide mixer at 215 GHz utilizing quasivertical Schottky diodes by Möttönen, V. S., Piironen, P., Zhang, J., Räisänen, A. V., Lin, C.-I., Simon, A., Hartnagel, H. L.

    Published in Microwave and optical technology letters (20-10-2000)
    “…The design of a 215 GHz subharmonic waveguide mixer utilizing an antiparallel pair of quasivertical Schottky diodes is presented. The impedance matching is…”
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    Journal Article
  9. 9

    Design of a dielectric-based tunable waveguide backshort by Mottonen, V.S., Raisanen, A.V.

    “…This paper describes a dielectric-based tunable waveguide backshort and precision tuning mechanism for it. It also gives measured and simulated results for a…”
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    Conference Proceeding
  10. 10

    General-purpose fifth-harmonic waveguide mixer for 500-700 GHz by Mottonen, V.S., Raisanen, A.V.

    “…This paper presents the design of a wideband fah-harmonic waveguide mixer. The mixer uses two single planar Schottky diode chips in a balanced-mixer-type…”
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    Conference Proceeding
  11. 11

    Characterisation of european millimetre-wave planar diodes by Mottonen, V.S., Mallat, J., Raisanen, A.V.

    “…This paper describes a process for characterisation of millimetre-wave planar diode chips. It comprises dc-characteristics, capacitance, and wide-band (7-220…”
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    Conference Proceeding
  12. 12

    Model of quasi-vertical planar anti-parallel Schottky diode by Jian Zhang, Piironen, P.V., Mottonen, V.S., Louhi, J.T., Lehto, A.O., Simon, A., Lin, C.-I., Raisanen, A.V.

    “…A model of Quasi-Vertical planar Anti-parallel Schottky Diode (QVPAPD) is developed by using electromagnetic (EM) analyses of the diode structure. The mounting…”
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    Conference Proceeding
  13. 13

    Near-Field Amplitude Measurement of Passive Intermodulation in Antennas by Hienonen, S., Golikov, V., Mottonen, V. S., Vainikainen, P., Raisanen, A. V.

    Published in 2001 31st European Microwave Conference (01-09-2001)
    “…Near-field measurement method of passive intermodulation (PIM) in antennas is introduced. Scanning with a near-field probe inside an antenna structure is…”
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    Conference Proceeding