Presentation 2003/10/14
A Dual-Band Matching Network for Loads Representable as a Parallel Resonant Circuit Based on Network Synthesis Theory
Takeshi OSHIMA, Toru FUKASAWA, Masataka OHTSUKA,
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Abstract(in English) In this report, a dual-band matching network for loads representable as a parallel resonant circuit such as input impedance of patch antennas is proposed based on the network synthesis theory of a single frequency band. The fundamental concept to obtain dual-band matching is to perform twice frequency transformations for a low-pass matching network for loads representable as a parallel C-R circuit. Through the this process, frequency conditions which should be satisfied between matched two frequency bands and resonant frequency of the load are derived. Moreover, the elements of the matching network are uniquely detected by giving these frequencies, quality factor of the load, and the number of stages of the matching network.
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Keyword(in English) matching networks / dual band / network synthesis / parallel resonance / antennas
Paper # EMCJ2003-79,MW2003-176
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Committee EMCJ
Conference Date 2003/10/14(1days)
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Registration To Electromagnetic Compatibility (EMCJ)
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) A Dual-Band Matching Network for Loads Representable as a Parallel Resonant Circuit Based on Network Synthesis Theory
Sub Title (in English)
Keyword(1) matching networks
Keyword(2) dual band
Keyword(3) network synthesis
Keyword(4) parallel resonance
Keyword(5) antennas
1st Author's Name Takeshi OSHIMA
1st Author's Affiliation Information Technology R&D Center, Mitsubishi Electric Corporation()
2nd Author's Name Toru FUKASAWA
2nd Author's Affiliation Information Technology R&D Center, Mitsubishi Electric Corporation
3rd Author's Name Masataka OHTSUKA
3rd Author's Affiliation Information Technology R&D Center, Mitsubishi Electric Corporation
Date 2003/10/14
Paper # EMCJ2003-79,MW2003-176
Volume (vol) vol.103
Number (no) 370
Page pp.pp.-
#Pages 8
Date of Issue