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Major Research Areas
* Intermodulation in passive circuits (PIM)
* Electronics packaging Inspection
* Antennas and RF components for mobile communications, broadcasting, etc.


Related Topics
* What is PIM?
* Significance of PIM studies
* Short-Circuited Transmission Line Method


Research Topics for Students

Doctor programs

    2012

    1. A study on Non-contact measurements method of passive intermodulations

    2006

    1. A study of low-profile unidirectional antennas

Master programs

    2012

    1. (^o^) Sorry! See Japanese page!
    2. (^o^) Sorry! See Japanese page!
    3. (^o^) Sorry! See Japanese page!
    4. (^o^) Sorry! See Japanese page!

    2011

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    2. (^o^) Sorry! See Japanese page!
    3. (^o^) Sorry! See Japanese page!
    4. (^o^) Sorry! See Japanese page!

    2010

    1. (^o^) Sorry! See Japanese page!
    2. (^o^) Sorry! See Japanese page!
    3. (^o^) Sorry! See Japanese page!
    4. (^o^) Sorry! See Japanese page!

    2009

    1. (^o^) Sorry! See Japanese page!
    2. (^o^) Sorry! See Japanese page!
    3. (^o^) Sorry! See Japanese page!
    4. (^o^) Sorry! See Japanese page!

    2008

    1. (^o^) Sorry! See Japanese page!
    2. (^o^) Sorry! See Japanese page!
    3. (^o^) Sorry! See Japanese page!
    4. (^o^) Sorry! See Japanese page!

    2007

    1. New measurement method of passive intermodulation using a standing wave coaxial utbe
    2. A study of EM-simmulation techniques for passive intermodulation caused by magnetic materials
    3. A study of passive intermodulation caused by surface condition of metallic materials
    4. Passive intermodulation measurement of lossy materials

    2006

    1. Suppression method of EM scattering by low-permittivity materials
    2. Evaluation method for intermodulation distortion of RF materials using standing wave transmission line

    2005

    1. Study of a low-profile monopole antenna

Bachelar programs

    2012

    1. (^o^) Sorry! See Japanese page!
    2. (^o^) Sorry! See Japanese page!
    3. (^o^) Sorry! See Japanese page!
    4. (^o^) Sorry! See Japanese page!

    2011

    1. (^o^) Sorry! See Japanese page!
    2. (^o^) Sorry! See Japanese page!
    3. (^o^) Sorry! See Japanese page!
    4. (^o^) Sorry! See Japanese page!

    2010

    1. (^o^) Sorry! See Japanese page!
    2. (^o^) Sorry! See Japanese page!
    3. (^o^) Sorry! See Japanese page!
    4. (^o^) Sorry! See Japanese page!

    2009

    1. (^o^) Sorry! See Japanese page!
    2. (^o^) Sorry! See Japanese page!
    3. (^o^) Sorry! See Japanese page!
    4. (^o^) Sorry! See Japanese page!

    2008

    1. (^o^) Sorry! See Japanese page!
    2. (^o^) Sorry! See Japanese page!
    3. (^o^) Sorry! See Japanese page!
    4. (^o^) Sorry! See Japanese page!

    2007

    1. FDTD-Simmulation of passive intermoudlation in conductive mateials
    2. A small antenna for detecting inplantable radio equipment in human body
    3. A miniasurization technique using resistive component for a passive intermoudlation measurement system.
    4. Reduction techniques of Passive intermoudlation in a duplexing device
    5. A study of higher-oder intermodulation in passive components

    2006

    1. Non-linearity measurement method for conductive foils
    2. Non-destructive inspection method for nonlinear electrical contacts
    3. Basic examination of PIM-source identification
    4. Characteristics of an antenna wrapped around a conductive cylinder
    5. An analysis of the characteristics of gate-array antenna
    6. PIM measurement method using standing wave coaxial tubes

    2005

    1. Configuration of the cross-bar contacts in microwave band
    2. Design of microstrip-Waveguide transducer with no electrical contacts
    3. Experimental study on PIM evaluation method for copper foils
    4. Radiation efficiency measurement with partial spherical scanning scheme using a reflector
    5. Simplified configuration of digital impedance matching network

    2004

    1. Switched matching network for receiving antenna
    2. A dual-polarized omni-directional pattern antenna composed of two panel elements
    3. Microwave PIM (passive intermodulation) evaluation in terms of circuit configuration



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